Structural analysis of polymeric composite materials - Info and Reading Options
By M. E. Tuttle

"Structural analysis of polymeric composite materials" was published by Marcel Dekker in 2004 - New York, it has 638 pages and the language of the book is English.
“Structural analysis of polymeric composite materials” Metadata:
- Title: ➤ Structural analysis of polymeric composite materials
- Author: M. E. Tuttle
- Language: English
- Number of Pages: 638
- Publisher: Marcel Dekker
- Publish Date: 2004
- Publish Location: New York
“Structural analysis of polymeric composite materials” Subjects and Themes:
- Subjects: ➤ Structural analysis (Engineering) - Polymeric composites - Engineering - Composites polymères - Théorie des constructions - Structural analysis - TECHNOLOGY & ENGINEERING - Material Science - Mechanical properties - Analysis
Edition Specifications:
- Pagination: xv, 638 p. :
Edition Identifiers:
- The Open Library ID: OL15573698M - OL11553044W
- Online Computer Library Center (OCLC) ID: 53029987 - 55872268
- Library of Congress Control Number (LCCN): 2003064017
- ISBN-10: 0824747178
- All ISBNs: 0824747178
AI-generated Review of “Structural analysis of polymeric composite materials”:
"Structural analysis of polymeric composite materials" Table Of Contents:
- 1- Review of force, stress, and strain tensors --
- 2- Material properties --
- 3- Elastic response of anisotropic materials --
- 4- Unidirectional composite laminates subject to plane stress --
- 5- Thermomechanical behavior of multiangle composite laminates --
- 6- Predicting failure of a multiangle composite laminate --
- 7- Composite beams --
- 8- The governing equations of thin-plate theory --
- 9- Some exact solutions for specially orthotropic laminates --
- 10- Some approximate solutions for symmetric laminates.
"Structural analysis of polymeric composite materials" Description:
The Open Library:
"This text/reference studies the mechanics of composite materials and structures and combines classical lamination theory with macromechanical failure principles for prediction and optimization of composite structural performance - specifically addressing topics such as high-strength fibers, manufacturing techniques, commercially available compounds, and the behavior of anisotropic, orthotropic, and transversely isotropic materials and structures subjected to complex loading."--BOOK JACKET
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