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"NASA Technical Reports Server (NTRS) 20020063606: Educational Brief: Using Space For A Better Foundation On Earth Mechanics Of Granular Materials" and the language of the book is English.


“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: ➤  
  • Language: English

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  • Internet Archive ID: NASA_NTRS_Archive_20020063606

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"NASA Technical Reports Server (NTRS) 20020063606: Educational Brief: Using Space For A Better Foundation On Earth Mechanics Of Granular Materials" Description:

The Internet Archive:

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.

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