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Mechanics Of Granular Materials by U.s. Japanseminar On New Models And Constitutive Relations In The Mechanics Of Granular Materials (1982 Ithaca%2c N.y)
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1Mechanics Of Granular Materials (MGM) Test Cell
By NASA/Marshall Space Flight Center
A test cell for Mechanics of Granular Materials (MGM) experiment is shown approximately 20 and 60 minutes after the start of an experiment on STS-89. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: NASA/Marshall Space Flight Center (MSFC)
“Mechanics Of Granular Materials (MGM) Test Cell” Metadata:
- Title: ➤ Mechanics Of Granular Materials (MGM) Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Test Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado - Where -- Marshall Space Flight Center (MSFC)
Edition Identifiers:
- Internet Archive ID: MSFC-0004360
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2Mechanics Of Granular Materials (MGM)
By NASA/Marshall Space Flight Center
The heart of the MGM experiment is a set of six test cells, each containing a sleeve of 2.8 lbs. of Ottawa F-75 banding sand. Because Ottawa sand is widely used in the civil engineering experiments and evaluations, its use on MGM will allow results to be compared directly with results already obtained on Earth. The soil specimen is contained in a latex sleeve that is 0.3 mm thick and printed with a grid pattern so cameras can record changes in shape and position. Each specimen is contained in a test cell shaped like an equilateral prism and includes a Lexan jacket sandwiched between metal end plates cornected by guide rods. During the experiment, a test cell is held on a rigid observation pad mounted between an array of three CCD cameras and banks of small light-emitting diodes. The MGM video control system electronically interleaves the images for a video recorder. MGM was designed and developed by Sandia National Laboratories and the U.S. Department of Energy in Albuquerque, N.M.
“Mechanics Of Granular Materials (MGM)” Metadata:
- Title: ➤ Mechanics Of Granular Materials (MGM)
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM)” Subjects and Themes:
- Subjects: What -- Earth - Where -- Ottawa
Edition Identifiers:
- Internet Archive ID: MSFC-9802455
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The book is available for download in "image" format, the size of the file-s is: 0.06 Mbs, the file-s for this book were downloaded 63 times, the file-s went public at Thu Nov 19 2009.
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3Mechanics Of Granular Materials Test Cell
By NASA/Marshall Space Flight Center
Astronaut James Reilly uses a laptop computer monitor the Mechanics of Granular Materials (MGM) experiment during STS-89. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: NASA/Marshall Space Flight Center (MSFC)
“Mechanics Of Granular Materials Test Cell” Metadata:
- Title: ➤ Mechanics Of Granular Materials Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials Test Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado - Where -- Marshall Space Flight Center (MSFC)
Edition Identifiers:
- Internet Archive ID: MSFC-0004362
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The book is available for download in "image" format, the size of the file-s is: 0.26 Mbs, the file-s for this book were downloaded 109 times, the file-s went public at Thu Nov 19 2009.
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4Mechanics Of Granular Materials (MGM0 Flight Hardware In Bench Test
By NASA/Marshall Space Flight Center
Engineering bench system hardware for the Mechanics of Granular Materials (MGM) experiment is tested on a lab bench at the University of Colorado in Boulder. This is done in a horizontal arrangement to reduce pressure differences so the tests more closely resemble behavior in the microgravity of space. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditions that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. (Credit: University of Colorado at Boulder).
“Mechanics Of Granular Materials (MGM0 Flight Hardware In Bench Test” Metadata:
- Title: ➤ Mechanics Of Granular Materials (MGM0 Flight Hardware In Bench Test
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM0 Flight Hardware In Bench Test” Subjects and Themes:
- Subjects: What -- Space Shuttle Orbiter - What -- Earth - What -- STS-107 - Where -- Colorado
Edition Identifiers:
- Internet Archive ID: MSFC-0003866
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The book is available for download in "image" format, the size of the file-s is: 0.27 Mbs, the file-s for this book were downloaded 79 times, the file-s went public at Thu Nov 19 2009.
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5NASA Technical Reports Server (NTRS) 19870007342: Computer-aided Analysis For The Mechanics Of Granular Materials (MGM) Experiment
By NASA Technical Reports Server (NTRS)
The Mechanics of Granular Materials (MGM) program is planned to provide experimental determinations of the mechanics of granular materials under very low gravity conditions. The initial experiments will use small glass beads as the granular material, and a precise tracking of individual beads during the test is desired. Real-time video images of the experimental specimen were taken with a television camera, and subsequently digitized by a frame grabber installed in a microcomputer. Easily identified red tracer beads were randomly scattered throughout the test specimen. A set of Pascal programs was written for processing and analyzing the digitized images. Filtering the image with Laplacian, dilation, and blurring filters when using a threshold function produced a binary (black on white) image which clearly identified the red beads. The centroids and areas for each bead were then determined. Analyzing a series of the images determined individual red bead displacements throughout the experiment. The system can provide displacement accuracies on the order of 0.5 to 1 pixel is the image is taken directly from the video camera. Digitizing an image from a video cassette recorder introduces an additional repeatability error of 0.5 to 1 pixel. Other programs were written to provide hardcopy prints of the digitized images on a dot-matrix printer.
“NASA Technical Reports Server (NTRS) 19870007342: Computer-aided Analysis For The Mechanics Of Granular Materials (MGM) Experiment” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19870007342: Computer-aided Analysis For The Mechanics Of Granular Materials (MGM) Experiment
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19870007342: Computer-aided Analysis For The Mechanics Of Granular Materials (MGM) Experiment” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - BEADS - GLASS - GRANULAR MATERIALS - GRAVITATIONAL EFFECTS - IMAGE PROCESSING - SPACE SHUTTLE PAYLOADS - DIGITAL TECHNIQUES - MICROGRAVITY - PASCAL (PROGRAMMING LANGUAGE) - VIDEO SIGNALS - Parker, Joey K.
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19870007342
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6DTIC ADA274192: Computer Simulation And Experiments On The Quasi-Static Mechanics And Transport Properties Of Granular Materials
By Defense Technical Information Center
This report presents the results of a new quasi-static algorithm developed to compute the mechanical and scalar transport properties of three- dimensional sphere assemblages. The algorithm incorporates several new techniques, including a shuffling algorithm for generation of initial random granular packings, an improved microcell-adjacency method to accelerate particle-contact search, and a relaxation method to overcome a singularity in the quasi-linear system of equilibrium equations. The calculated Reynolds dilatancy for random dense-packed granular assemblages is found to depend on the interparticle friction, contrary to Reynolds' original hypothesis, and the use of linear contact mechanics is found to be valid near the ideal rigid-particle limit. Triaxial compression tests, employing steel balls as electrically conductive granular particles, confirm our simulation of both mechanical and transport properties, when account is taken of the actual electrical contact resistance between steel balls. The latter is much higher than for Hertzian contact and exhibits a strong dependence on normal load, probably due to asperities and oxide films on the steel-ball surfaces. A major conclusion of our study is that scalar transport can serve as a useful macroscopic probe for stress anisotropy and particle-contact topology in granular media.
“DTIC ADA274192: Computer Simulation And Experiments On The Quasi-Static Mechanics And Transport Properties Of Granular Materials” Metadata:
- Title: ➤ DTIC ADA274192: Computer Simulation And Experiments On The Quasi-Static Mechanics And Transport Properties Of Granular Materials
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA274192: Computer Simulation And Experiments On The Quasi-Static Mechanics And Transport Properties Of Granular Materials” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Zhuang, Xuejin - CALIFORNIA UNIV SAN DIEGO LA JOLLA DEPT OF APPLIED MECHANICS AND ENGINEERING SCIENCES - *COMPUTERIZED SIMULATION - *TRANSPORT PROPERTIES - *GRANULAR MATERIALS - *TRIAXIAL STRESSES - TEST AND EVALUATION - COMPRESSION - PROBES - FILMS - ELECTRICAL CONDUCTIVITY - SURFACES - PARTICLES - FRICTION - STATICS - EQUATIONS - RELAXATION - MEDIA - TRANSPORT - ANISOTROPY - OXIDES - TOPOLOGY - THREE DIMENSIONAL - MECHANICS - STEEL - SPHERES - RESISTANCE - LINEAR SYSTEMS - ALGORITHMS
Edition Identifiers:
- Internet Archive ID: DTIC_ADA274192
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The book is available for download in "texts" format, the size of the file-s is: 79.05 Mbs, the file-s for this book were downloaded 118 times, the file-s went public at Wed Mar 14 2018.
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7Ottawa Sand For Mechanics Of Granular Materials (MGM) Experiment
By NASA/Marshall Space Flight Center
What appear to be boulders fresh from a tumble down a mountain are really grains of Ottawa sand, a standard material used in civil engineering tests and also used in the Mechanics of Granular Materials (MGM) experiment. The craggy surface shows how sand grans have faces that can cause friction as they roll and slide against each other, or even causing sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM uses the microgravity of space to simulate this behavior under conditions that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. These images are from an Electron Spectroscopy for Chemical Analysis (ESCA) study conducted by Dr. Binayak Panda of IITRI for Marshall Space Flight Center (MSFC). (Credit: NASA/MSFC)
“Ottawa Sand For Mechanics Of Granular Materials (MGM) Experiment” Metadata:
- Title: ➤ Ottawa Sand For Mechanics Of Granular Materials (MGM) Experiment
- Author: ➤ NASA/Marshall Space Flight Center
“Ottawa Sand For Mechanics Of Granular Materials (MGM) Experiment” Subjects and Themes:
- Subjects: ➤ What -- Space Shuttle Orbiter - What -- Earth - What -- STS-107 - Where -- Ottawa - Where -- Colorado - Where -- Marshall Space Flight Center (MSFC)
Edition Identifiers:
- Internet Archive ID: MSFC-0003831
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The book is available for download in "image" format, the size of the file-s is: 0.30 Mbs, the file-s for this book were downloaded 106 times, the file-s went public at Thu Nov 19 2009.
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8Mechanics Of Granular Materials Test Cell
By NASA/Marshall Space Flight Center
A test cell for Mechanics of Granular Materials (MGM) experiment is shown from all three sides by its video camera during STS-89. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: NASA/Marshall Space Flight Center (MSFC)
“Mechanics Of Granular Materials Test Cell” Metadata:
- Title: ➤ Mechanics Of Granular Materials Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials Test Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado - Where -- Marshall Space Flight Center (MSFC)
Edition Identifiers:
- Internet Archive ID: MSFC-0004361
Downloads Information:
The book is available for download in "image" format, the size of the file-s is: 0.26 Mbs, the file-s for this book were downloaded 90 times, the file-s went public at Thu Nov 19 2009.
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9NASA Technical Reports Server (NTRS) 20020063606: Educational Brief: Using Space For A Better Foundation On Earth Mechanics Of Granular Materials
By NASA Technical Reports Server (NTRS)
Soils are three-phase composite materials that consist of soil, solid particles, and voids filled with water and/or air. Based on the particle-size distribution, they are generally classified as fine-grained (clays and plastic silts) and coarse-grained soils (nonplastic silts, sand, and gravel). Soil's resistance to external loadings is mainly derived from friction between particles and cohesion. Friction resistance is due to particles' surface-to-surface friction, interlocking, crushing, rearrangement, and dilation (or expansion) during shearing. Cohesion can be due to chemical cementation between particles, electrostatic and electromagnetic forces, and soil-water reaction and equilibrium. The basic factor responsible for the strength of coarse-grained soils is friction. Cohesion can be ignored. This educational brief focuses on measuring shear strength of sands (typical example of coarse-grained soils) where, for the same material, packing density is a main factor to be considered when one asks about the shear strength value. As the external load is applied, the soil's resistance is attained through shearing resistance, which causes the soil volume to increase (expand) or decrease (compress) depending on the initial packing density.
“NASA Technical Reports Server (NTRS) 20020063606: Educational Brief: Using Space For A Better Foundation On Earth Mechanics Of Granular Materials” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 20020063606: Educational Brief: Using Space For A Better Foundation On Earth Mechanics Of Granular Materials
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 20020063606: Educational Brief: Using Space For A Better Foundation On Earth Mechanics Of Granular Materials” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - SOILS - EDUCATION - SHEAR STRENGTH - SOIL MECHANICS - FRICTION - PACKING DENSITY - Dooling, Dave [Editor]
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_20020063606
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10Mechanics Of Granular Materials (MGM) Flight Hardware
By NASA/Marshall Space Flight Center
A test cell for the Mechanics of Granular Materials (MGM) experiment is shown in its on-orbit configuration in Spacehab during preparations for STS-89. The twin locker to the left contains the hydraulic system to operate the experiment. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Note: Because the image on the screen was muted in the original image, its brightness and contrast are boosted in this rendering to make the test cell more visible. Credit: NASA/Marshall Space Flight Center (MSFC)
“Mechanics Of Granular Materials (MGM) Flight Hardware” Metadata:
- Title: ➤ Mechanics Of Granular Materials (MGM) Flight Hardware
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Flight Hardware” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado - Where -- Marshall Space Flight Center (MSFC)
Edition Identifiers:
- Internet Archive ID: MSFC-0004363
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The book is available for download in "image" format, the size of the file-s is: 0.34 Mbs, the file-s for this book were downloaded 124 times, the file-s went public at Thu Nov 19 2009.
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11Mathematics And Mechanics Of Granular Materials
A test cell for the Mechanics of Granular Materials (MGM) experiment is shown in its on-orbit configuration in Spacehab during preparations for STS-89. The twin locker to the left contains the hydraulic system to operate the experiment. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Note: Because the image on the screen was muted in the original image, its brightness and contrast are boosted in this rendering to make the test cell more visible. Credit: NASA/Marshall Space Flight Center (MSFC)
“Mathematics And Mechanics Of Granular Materials” Metadata:
- Title: ➤ Mathematics And Mechanics Of Granular Materials
- Language: English
“Mathematics And Mechanics Of Granular Materials” Subjects and Themes:
- Subjects: ➤ Granular materials -- Mathematical models - Granular materials -- Fluid dynamics -- Mathematical models - Bulk solids flow -- Mathematical models
Edition Identifiers:
- Internet Archive ID: mathematicsmecha0000unse
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The book is available for download in "texts" format, the size of the file-s is: 758.80 Mbs, the file-s for this book were downloaded 27 times, the file-s went public at Thu Aug 11 2022.
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12DTIC ADA135463: Studies On The Mechanics Of Rapidly Flowing Granular-Fluid Materials.
By Defense Technical Information Center
This work addresses the subset of flows of granular materials known as rapidly flowing, granular-fluid materials. Experiments were conducted in an annular, parallel plate shear cell with two primary goals in mind. The first was to investigate the existence of an internal boundary above which the material deformed rapidly, but below which the material remained rigidly locked in place. The second goal was to examine the constitutive behavior of rapidly flowing granular-fluid materials bounded by parallel, roughened plates. The constitutive theories of McTigue (1979) and Jenkins and Savage (1983) are applied to study the steady, rapid flow of a semi-infinite granular bed under the influence of gravity and traction applied to its surface. Analytic solutions based upon McTigue's theory and numerical solutions based upon Jenkins and Savage's theory both suggest that there is a finite thickness of motion in the bed.
“DTIC ADA135463: Studies On The Mechanics Of Rapidly Flowing Granular-Fluid Materials.” Metadata:
- Title: ➤ DTIC ADA135463: Studies On The Mechanics Of Rapidly Flowing Granular-Fluid Materials.
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA135463: Studies On The Mechanics Of Rapidly Flowing Granular-Fluid Materials.” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Hanes,D M - CALIFORNIA UNIV SAN DIEGO LA JOLLA - *Fluid flow - *Granules - Flow rate - Quick reaction - Cells - Shear properties - Boundaries - Internal - Deformation - Bonding - Plates - Theory - Gravity - Traction - Surfaces - Thickness - Motion - Layers - Stresses - Ratios - Kinetics - Inertia - Glass - Sand
Edition Identifiers:
- Internet Archive ID: DTIC_ADA135463
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The book is available for download in "texts" format, the size of the file-s is: 68.57 Mbs, the file-s for this book were downloaded 73 times, the file-s went public at Tue Jan 16 2018.
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13Mechanics Of Granular Materials : An Introduction
This work addresses the subset of flows of granular materials known as rapidly flowing, granular-fluid materials. Experiments were conducted in an annular, parallel plate shear cell with two primary goals in mind. The first was to investigate the existence of an internal boundary above which the material deformed rapidly, but below which the material remained rigidly locked in place. The second goal was to examine the constitutive behavior of rapidly flowing granular-fluid materials bounded by parallel, roughened plates. The constitutive theories of McTigue (1979) and Jenkins and Savage (1983) are applied to study the steady, rapid flow of a semi-infinite granular bed under the influence of gravity and traction applied to its surface. Analytic solutions based upon McTigue's theory and numerical solutions based upon Jenkins and Savage's theory both suggest that there is a finite thickness of motion in the bed.
“Mechanics Of Granular Materials : An Introduction” Metadata:
- Title: ➤ Mechanics Of Granular Materials : An Introduction
- Language: English
“Mechanics Of Granular Materials : An Introduction” Subjects and Themes:
- Subjects: Bulk solids handling - Granualr materials
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- Internet Archive ID: mechanicsofgranu0000unse
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14Mechanics Of Granular Materials (MGM) Z Axis
By NASA/Marshall Space Flight Center
Mechanics of Granular Materials (MGM) Z Axis
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- Title: ➤ Mechanics Of Granular Materials (MGM) Z Axis
- Author: ➤ NASA/Marshall Space Flight Center
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15Mechanics Of Granular Materials (MGM)
By NASA/Marshall Space Flight Center
The packing of particles can change radically during cyclic loading such as in an earthquake or when shaking a container to compact a powder. A large hole (1) is maintained by the particles sticking to each other. A small, counterclockwise strain (2) collapses the hole, and another large strain (3) forms more new holes which collapse when the strain reverses (4). Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditions that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. (after T.L. Youd, Packing Changes and Liquefaction Susceptibility, Journal of the Geotechnical Engieering Division, 103: GT8,918-922, 1977)(Credit: NASA/Marshall Space Flight Center.)(Credit: University of Colorado at Boulder).
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- Title: ➤ Mechanics Of Granular Materials (MGM)
- Author: ➤ NASA/Marshall Space Flight Center
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- Subjects: What -- Space Shuttle Orbiter - What -- Earth - What -- STS-107 - Where -- Colorado
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- Internet Archive ID: MSFC-0003870
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16ERIC ED463179: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 9-12.
By ERIC
This publication presents a science activity and instructional information on the mechanics of granular materials, interparticle friction and geometric interlocking between particles which is a fundamental concept in many fields like in the study of earthquakes. This document describes the Mechanics of Granular Materials (MGM) experiments which are conducted under the microgravity of orbit to test sand columns. This information can be applied to engineering, agriculture and other industries to improve the Earth's foundation. These concepts are discussed in terms of the National Science Education Standards. Student activity worksheets, such as the "Laboratory Direct Shear Test Data Sheet," are provided. A brief glossary and list of related Internet resources are also included. (Contains 12 figures.) (YDS)
“ERIC ED463179: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 9-12.” Metadata:
- Title: ➤ ERIC ED463179: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 9-12.
- Author: ERIC
- Language: English
“ERIC ED463179: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 9-12.” Subjects and Themes:
- Subjects: ➤ ERIC Archive - Earth Science - Gravity (Physics) - High Schools - Physics - Science Activities - Science Education - Space Sciences - Alshibli, Khalid
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- Internet Archive ID: ERIC_ED463179
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17Mechanics Of Granular Materials : New Models And Constitutive Relations : Proceedings Of The U.S./Japan Seminar On New Models And Constitutive Relations In The Mechanics Of Granular Materials, Ithaca, New York, August 23-27, 1982
By U.S./Japan Seminar on New Models and Constitutive Relations in the Mechanics of Granular Materials (1982 : Ithaca, N.Y.)
This publication presents a science activity and instructional information on the mechanics of granular materials, interparticle friction and geometric interlocking between particles which is a fundamental concept in many fields like in the study of earthquakes. This document describes the Mechanics of Granular Materials (MGM) experiments which are conducted under the microgravity of orbit to test sand columns. This information can be applied to engineering, agriculture and other industries to improve the Earth's foundation. These concepts are discussed in terms of the National Science Education Standards. Student activity worksheets, such as the "Laboratory Direct Shear Test Data Sheet," are provided. A brief glossary and list of related Internet resources are also included. (Contains 12 figures.) (YDS)
“Mechanics Of Granular Materials : New Models And Constitutive Relations : Proceedings Of The U.S./Japan Seminar On New Models And Constitutive Relations In The Mechanics Of Granular Materials, Ithaca, New York, August 23-27, 1982” Metadata:
- Title: ➤ Mechanics Of Granular Materials : New Models And Constitutive Relations : Proceedings Of The U.S./Japan Seminar On New Models And Constitutive Relations In The Mechanics Of Granular Materials, Ithaca, New York, August 23-27, 1982
- Author: ➤ U.S./Japan Seminar on New Models and Constitutive Relations in the Mechanics of Granular Materials (1982 : Ithaca, N.Y.)
- Language: English
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- Internet Archive ID: mechanicsofgranu0007usja
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18Mechanics Of Granular Materials (MGM)
By NASA/Marshall Space Flight Center
MGM Post Test Vibration
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- Title: ➤ Mechanics Of Granular Materials (MGM)
- Author: ➤ NASA/Marshall Space Flight Center
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- Internet Archive ID: MSFC-9709260
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19Mechanics Of Granular Materials Labeled Hardware
By NASA/Marshall Space Flight Center
Mechanics of Granular Materials (MGM) flight hardware takes two twin double locker assemblies in the Space Shuttle middeck or the Spacehab module. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditions that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. (Credit: NASA/MSFC).
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- Title: ➤ Mechanics Of Granular Materials Labeled Hardware
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials Labeled Hardware” Subjects and Themes:
- Subjects: What -- Space Shuttle Orbiter - What -- Earth - What -- STS-107 - Where -- Colorado
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- Internet Archive ID: MSFC-0003872
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20Advances In The Mechanics And The Flow Of Granular Materials
Mechanics of Granular Materials (MGM) flight hardware takes two twin double locker assemblies in the Space Shuttle middeck or the Spacehab module. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditions that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. (Credit: NASA/MSFC).
“Advances In The Mechanics And The Flow Of Granular Materials” Metadata:
- Title: ➤ Advances In The Mechanics And The Flow Of Granular Materials
- Language: English
“Advances In The Mechanics And The Flow Of Granular Materials” Subjects and Themes:
- Subjects: Granular materials - Mechanics, Applied - Bulk solids flow
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- Internet Archive ID: advancesinmechan0001unse
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21Mechanics Of Granular Materials (MGM) Test Cell
By NASA/Marshall Space Flight Center
A test cell for Mechanics of Granular Materials (MGM) experiment is tested for long-term storage with water in the system as plarned for STS-107. This view shows the compressed sand column with the protective water jacket removed. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that cannot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: University of Colorado at Boulder
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- Title: ➤ Mechanics Of Granular Materials (MGM) Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Test Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado
Edition Identifiers:
- Internet Archive ID: MSFC-0004359
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22Installing Mechanics Of Granular Materials (MGM) Experiment Test Cell
By NASA/Marshall Space Flight Center
Astronaut Carl Walz installs Mechanics of Granular Materials (MGM) test cell on STS-79. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: NASA/John Space Center
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- Title: ➤ Installing Mechanics Of Granular Materials (MGM) Experiment Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Installing Mechanics Of Granular Materials (MGM) Experiment Test Cell” Subjects and Themes:
- Subjects: Who -- Carl Walz - What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado
Edition Identifiers:
- Internet Archive ID: MSFC-0004356
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23Mechanics Of Granular Materials (MGM)
By Alshibli, Khalid A., Costes, Nicholas C. and Porter, Ronald F
The constitutive behavior of uncemented granular materials such as strength, stiffness, and localization of deformations are to a large extend derived from interparticle friction transmitted between solid particles and particle groups. Interparticle forces are highly dependent on gravitational body forces. At very low effective confining pressures, the true nature of the Mohr envelope, which defines the Mohr-Coulomb failure criterion for soils, as well as the relative contribution of each of non-frictional components to soil's shear strength cannot be evaluated in terrestrial laboratories. Because of the impossibility of eliminating gravitational body forces on earth, the weight of soil grains develops interparticle compressive stresses which mask true soil constitutive behavior even in the smallest samples of models. Therefore the microgravity environment induced by near-earth orbits of spacecraft provides unique experimental opportunities for testing theories related to the mechanical behavior of terrestrial granular materials. Such materials may include cohesionless soils, industrial powders, crushed coal, etc. This paper will describe the microgravity experiment, 'Mechanics of Granular Materials (MGM)', scheduled to be flown on Space Shuttle-MIR missions. The paper will describe the experiment's hardware, instrumentation, specimen preparation procedures, testing procedures in flight, as well as a brief summary of the post-mission analysis. It is expected that the experimental results will significantly improve the understanding of the behavior of granular materials under very low effective stress levels.
“Mechanics Of Granular Materials (MGM)” Metadata:
- Title: ➤ Mechanics Of Granular Materials (MGM)
- Authors: Alshibli, Khalid A.Costes, Nicholas C.Porter, Ronald F
- Language: English
“Mechanics Of Granular Materials (MGM)” Subjects and Themes:
- Subjects: ➤ MICROGRAVITY - GRAVIRECEPTORS - METAMORPHISM (GEOLOGY) - LARVAE - GRAVITATION - OTOLITH ORGANS - UTRICLE - SPACEBORNE EXPERIMENTS - ABNORMALITIES
Edition Identifiers:
- Internet Archive ID: nasa_techdoc_19970022141
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24Mechanics Of Granular Materials (MGM) Test Cell
By NASA/Marshall Space Flight Center
Test cells comprise specimen sand contained in a latex membrane (with a grid pattern for CCD cameras) between metal end plates and housed in a water-filled Lexan jacket. Experiment flown on STS-79 and STS-89. Principal Investigator: Dr. Stein Sture.
“Mechanics Of Granular Materials (MGM) Test Cell” Metadata:
- Title: ➤ Mechanics Of Granular Materials (MGM) Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Test Cell” Subjects and Themes:
- Subjects: What -- STS-79 - What -- STS-89
Edition Identifiers:
- Internet Archive ID: MSFC-9900739
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25Installing Mechanics Of Granular Materials (MGM) Experiment Test Cell
By NASA/Marshall Space Flight Center
Astronaut Jay Apt installs Mechanics of Granular Materials (MGM0 test cell on STS-79. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditions that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. (Credit: NASA/John Space Center).
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- Title: ➤ Installing Mechanics Of Granular Materials (MGM) Experiment Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Installing Mechanics Of Granular Materials (MGM) Experiment Test Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado
Edition Identifiers:
- Internet Archive ID: MSFC-0004351
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26NASA Technical Reports Server (NTRS) 19880006244: Computer-aided Analysis For The Mechanics Of Granular Materials (MGM) Experiment, Part 2
By NASA Technical Reports Server (NTRS)
Computer vision based analysis for the MGM experiment is continued and expanded into new areas. Volumetric strains of granular material triaxial test specimens have been measured from digitized images. A computer-assisted procedure is used to identify the edges of the specimen, and the edges are used in a 3-D model to estimate specimen volume. The results of this technique compare favorably to conventional measurements. A simplified model of the magnification caused by diffraction of light within the water of the test apparatus was also developed. This model yields good results when the distance between the camera and the test specimen is large compared to the specimen height. An algorithm for a more accurate 3-D magnification correction is also presented. The use of composite and RGB (red-green-blue) color cameras is discussed and potentially significant benefits from using an RGB camera are presented.
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- Title: ➤ NASA Technical Reports Server (NTRS) 19880006244: Computer-aided Analysis For The Mechanics Of Granular Materials (MGM) Experiment, Part 2
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19880006244: Computer-aided Analysis For The Mechanics Of Granular Materials (MGM) Experiment, Part 2” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - COMPUTER TECHNIQUES - GRANULAR MATERIALS - MECHANICAL PROPERTIES - SOILS - ALGORITHMS - CAMERAS - COLOR TELEVISION - DIFFRACTION - MODELS - THREE DIMENSIONAL BODIES - THREE DIMENSIONAL MODELS - TRIAXIAL STRESSES - VOLUMETRIC ANALYSIS - VOLUMETRIC STRAIN - Parker, Joey K.
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19880006244
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27ERIC ED463178: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 5-8.
By ERIC
This publication presents a science activity and instructional information on mechanics of granular materials, interparticle friction and geometric interlocking between particles which is a fundamental concept in many fields like earthquakes. The activity described in this document focuses on the principal strength of granular materials, specifically the liquefaction phenomena, which increases the risk factors in an earthquake. This phenomena is tested with the Mechanics of Granular Materials (MGM) experiment which is conducted under the microgravity of orbit to test sand columns. Concepts are discussed in terms of the National Science Education Standards. A brief glossary of terms and Internet resource list are also included. (YDS)
“ERIC ED463178: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 5-8.” Metadata:
- Title: ➤ ERIC ED463178: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 5-8.
- Author: ERIC
- Language: English
“ERIC ED463178: Using Space For A Better Foundation On Earth: Mechanics Of Granular Materials. Educational Brief. Grades 5-8.” Subjects and Themes:
- Subjects: ➤ ERIC Archive - Earth Science - Gravity (Physics) - Intermediate Grades - Junior High Schools - Physics - Science Activities - Science Education - Space Sciences - Alshibli, Khalid
Edition Identifiers:
- Internet Archive ID: ERIC_ED463178
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28Mechanics Of Granular Materials (MGM) Test Cell
By NASA/Marshall Space Flight Center
A test cell for Mechanics of Granular Materials (MGM) experiment is tested for long-term storage with water in the system as plarned for STS-107. This view shows the top of the sand column with the metal platten removed. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that cannot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: University of Colorado at Boulder
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- Title: ➤ Mechanics Of Granular Materials (MGM) Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Test Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado
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- Internet Archive ID: MSFC-0004357
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29Ottawa Sand For Mechanics Of Granular Materials (MGM) Experiment
By NASA/Marshall Space Flight Center
What appear to be boulders fresh from a tumble down a mountain are really grains of Ottawa sand, a standard material used in civil engineering tests and also used in the Mechanics of Granular Materials (MGM) experiment. The craggy surface shows how sand grans have faces that can cause friction as they roll and slide against each other, or even causing sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM uses the microgravity of space to simulate this behavior under conditions that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. These images are from an Electron Spectroscopy for Chemical Analysis (ESCA) study conducted by Dr. Binayak Panda of IITRI for Marshall Space Flight Center (MSFC). (Credit: NASA/MSFC)
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- Title: ➤ Ottawa Sand For Mechanics Of Granular Materials (MGM) Experiment
- Author: ➤ NASA/Marshall Space Flight Center
“Ottawa Sand For Mechanics Of Granular Materials (MGM) Experiment” Subjects and Themes:
- Subjects: ➤ What -- Space Shuttle Orbiter - What -- Earth - What -- STS-107 - Where -- Ottawa - Where -- Colorado - Where -- Marshall Space Flight Center (MSFC)
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- Internet Archive ID: MSFC-0003830
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30Mechanics Of Granular Materials (MGM) Investigators
By NASA/Marshall Space Flight Center
Key persornel in the Mechanics of Granular Materials (MGM) experiment at the University of Colorado at Boulder include Tawnya Ferbiak (software engineer), Susan Batiste (research assistant), and Christina Winkler (graduate research assistant). Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. MGM experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditions that cannot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. (Credit: University of Colorado at Boulder).
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- Title: ➤ Mechanics Of Granular Materials (MGM) Investigators
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Investigators” Subjects and Themes:
- Subjects: What -- Space Shuttle Orbiter - What -- Earth - What -- STS-107 - Where -- Colorado
Edition Identifiers:
- Internet Archive ID: MSFC-0003871
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31Mechanics Of Granular Materials (MGM) Test Cell
By NASA/Marshall Space Flight Center
A test cell for Mechanics of Granular Materials (MGM) experiment is tested for long-term storage with water in the system as plarned for STS-107. This view shows the compressed sand column with the protective water jacket removed. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that cannot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: University of Colorado at Boulder
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- Title: ➤ Mechanics Of Granular Materials (MGM) Test Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Test Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado
Edition Identifiers:
- Internet Archive ID: MSFC-0004358
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32Modeling And Mechanics Of Granular And Porous Materials
A test cell for Mechanics of Granular Materials (MGM) experiment is tested for long-term storage with water in the system as plarned for STS-107. This view shows the compressed sand column with the protective water jacket removed. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that cannot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: University of Colorado at Boulder
“Modeling And Mechanics Of Granular And Porous Materials” Metadata:
- Title: ➤ Modeling And Mechanics Of Granular And Porous Materials
- Language: English
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- Internet Archive ID: modelingmechanic0000unse
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33DTIC ADA563780: Mechanics Of Granular Materials: Experimentation And Simulations For Determining The Compressive And Shear Behaviors Of Sand At Granular And Meso Scales
By Defense Technical Information Center
We present the results of experiments conducted to study the compressive and shear behavior of sand. Static and dynamic studies on the compression of sand grains were conducted. Nanoindentation was performed on single grains on sand of different sizes in order to determine the elastic and fracture properties of individual sand grains. Finite Element method (FEM) was used to solve the inverse problem so as to obtain the material properties from the load-displacement curves obtained from nanoindentation experiments. We also report the results of quasi-static compression tests conducted on sand held in a passive confinement. An in-house built compression fixture enabled the compression of sand grains up to axial stresses as high as 3 GPa.
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- Title: ➤ DTIC ADA563780: Mechanics Of Granular Materials: Experimentation And Simulations For Determining The Compressive And Shear Behaviors Of Sand At Granular And Meso Scales
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA563780: Mechanics Of Granular Materials: Experimentation And Simulations For Determining The Compressive And Shear Behaviors Of Sand At Granular And Meso Scales” Subjects and Themes:
- Subjects: ➤ DTIC Archive - OKLAHOMA STATE UNIV STILLWATER SCHOOL OF MECHANICAL AND AEROSPACE ENGINEERING - *SAND - COMPRESSIVE PROPERTIES - FINE GRAINED MATERIALS - FINITE ELEMENT ANALYSIS - SHEAR PROPERTIES
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- Internet Archive ID: DTIC_ADA563780
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34Mechanics Of Granular Materials (MGM) Cell
By NASA/Marshall Space Flight Center
One of three Mechanics of Granular Materials (MGM) test cells after flight on STS-79 and before impregnation with resin. Note that the sand column has bulged in the middle, and that the top of the column is several inches lower than the top of the plastic enclosure. Sand and soil grains have faces that can cause friction as they roll and slide against each other, or even cause sticking and form small voids between grains. This complex behavior can cause soil to behave like a liquid under certain conditions such as earthquakes or when powders are handled in industrial processes. Mechanics of Granular Materials (MGM) experiments aboard the Space Shuttle use the microgravity of space to simulate this behavior under conditons that carnot be achieved in laboratory tests on Earth. MGM is shedding light on the behavior of fine-grain materials under low effective stresses. Applications include earthquake engineering, granular flow technologies (such as powder feed systems for pharmaceuticals and fertilizers), and terrestrial and planetary geology. Nine MGM specimens have flown on two Space Shuttle flights. Another three are scheduled to fly on STS-107. The principal investigator is Stein Sture of the University of Colorado at Boulder. Credit: University of Colorado at Boulder
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- Title: ➤ Mechanics Of Granular Materials (MGM) Cell
- Author: ➤ NASA/Marshall Space Flight Center
“Mechanics Of Granular Materials (MGM) Cell” Subjects and Themes:
- Subjects: What -- STS-107 - What -- Space Shuttle Orbiter - What -- Earth - Where -- Colorado
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- Internet Archive ID: MSFC-0004354
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35Mechanics Of Granular Materials (MGM)
By NASA/Marshall Space Flight Center
Astronauts Jim Reilly and Bornie Dunbar are going through the Mechanics of Granular Materials (MGM) experiment procedures as they are expected to run in flight; to gain experience with the experiment equipment and to test the clarity and language of the procedures as written.
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- Title: ➤ Mechanics Of Granular Materials (MGM)
- Author: ➤ NASA/Marshall Space Flight Center
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- Internet Archive ID: MSFC-9709414
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36NASA Technical Reports Server (NTRS) 19970022141: Mechanics Of Granular Materials (MGM)
By NASA Technical Reports Server (NTRS)
The constitutive behavior of uncemented granular materials such as strength, stiffness, and localization of deformations are to a large extend derived from interparticle friction transmitted between solid particles and particle groups. Interparticle forces are highly dependent on gravitational body forces. At very low effective confining pressures, the true nature of the Mohr envelope, which defines the Mohr-Coulomb failure criterion for soils, as well as the relative contribution of each of non-frictional components to soil's shear strength cannot be evaluated in terrestrial laboratories. Because of the impossibility of eliminating gravitational body forces on earth, the weight of soil grains develops interparticle compressive stresses which mask true soil constitutive behavior even in the smallest samples of models. Therefore the microgravity environment induced by near-earth orbits of spacecraft provides unique experimental opportunities for testing theories related to the mechanical behavior of terrestrial granular materials. Such materials may include cohesionless soils, industrial powders, crushed coal, etc. This paper will describe the microgravity experiment, 'Mechanics of Granular Materials (MGM)', scheduled to be flown on Space Shuttle-MIR missions. The paper will describe the experiment's hardware, instrumentation, specimen preparation procedures, testing procedures in flight, as well as a brief summary of the post-mission analysis. It is expected that the experimental results will significantly improve the understanding of the behavior of granular materials under very low effective stress levels.
“NASA Technical Reports Server (NTRS) 19970022141: Mechanics Of Granular Materials (MGM)” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19970022141: Mechanics Of Granular Materials (MGM)
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19970022141: Mechanics Of Granular Materials (MGM)” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - GRANULAR MATERIALS - GRAVITATIONAL EFFECTS - DEFORMATION - STIFFNESS - MECHANICAL PROPERTIES - SHEAR STRENGTH - COMPRESSIBILITY - SOILS - FLIGHT TESTS - MICROGRAVITY - SPACE SHUTTLE MISSIONS - Alshibli, Khalid A. - Costes, Nicholas C. - Porter, Ronald F.
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37Advances In The Mechanics And The Flow Of Granular Materials
The constitutive behavior of uncemented granular materials such as strength, stiffness, and localization of deformations are to a large extend derived from interparticle friction transmitted between solid particles and particle groups. Interparticle forces are highly dependent on gravitational body forces. At very low effective confining pressures, the true nature of the Mohr envelope, which defines the Mohr-Coulomb failure criterion for soils, as well as the relative contribution of each of non-frictional components to soil's shear strength cannot be evaluated in terrestrial laboratories. Because of the impossibility of eliminating gravitational body forces on earth, the weight of soil grains develops interparticle compressive stresses which mask true soil constitutive behavior even in the smallest samples of models. Therefore the microgravity environment induced by near-earth orbits of spacecraft provides unique experimental opportunities for testing theories related to the mechanical behavior of terrestrial granular materials. Such materials may include cohesionless soils, industrial powders, crushed coal, etc. This paper will describe the microgravity experiment, 'Mechanics of Granular Materials (MGM)', scheduled to be flown on Space Shuttle-MIR missions. The paper will describe the experiment's hardware, instrumentation, specimen preparation procedures, testing procedures in flight, as well as a brief summary of the post-mission analysis. It is expected that the experimental results will significantly improve the understanding of the behavior of granular materials under very low effective stress levels.
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- Title: ➤ Advances In The Mechanics And The Flow Of Granular Materials
- Language: English
“Advances In The Mechanics And The Flow Of Granular Materials” Subjects and Themes:
- Subjects: Granular materials - Mechanics, Applied - Bulk solids flow
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