Micromechanics of fiber-reinforced laminae / Andreas Öchsner.
2022
TA418.9.C6 O34 2022
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Title
Micromechanics of fiber-reinforced laminae / Andreas Öchsner.
Author
ISBN
3030940918 electronic book
9783030940911 (electronic bk.)
303094090X
9783030940904
9783030940911 (electronic bk.)
303094090X
9783030940904
Published
Cham, Switzerland : Springer, [2022]
Copyright
©2022
Language
English
Description
1 online resource (x, 52 pages)
Item Number
10.1007/978-3-030-94091-1 doi
Call Number
TA418.9.C6 O34 2022
Dewey Decimal Classification
620.1/18
Summary
This book provides an introduction to the micromechanics of fiber-reinforced laminae, which deals with the prediction of the macroscopic mechanical lamina properties based on the mechanical properties of the constituents, i.e., fibers and matrix. Composite materials, especially fiber-reinforced composites, are gaining increasing importance since they can overcome the limits of many structures based on classical metals. Particularly, the combination of a matrix with fibers provides far better properties than the components alone. Despite their importance, many engineering degree programs do not treat the mechanical behavior of this class of advanced structured materials in detail, at least on the Bachelor degree level. Thus, some engineers are not able to thoroughly apply and introduce these modern engineering materials in their design process. The focus is on unidirectional lamina which can be described based on orthotropic constitutive equations. Three classical approaches to predict the elastic properties, i.e., the mechanics of materials approach, the elasticity solutions with contiguity after Tsai, and the HalpinTsai relationships, are presented. The quality of each prediction is benchmarked based on two different sets of experimental values. The book concludes with optimized representations, which were obtained based on the least square approach for the used experimental data sets.
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Includes bibliographical references.
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text file PDF
Source of Description
Description based on online resource; title from digital title page (viewed on June 08, 2022).
Series
SpringerBriefs in applied sciences and technology. Continuum mechanics.
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Table of Contents
1. Introduction
2 Prediction of Elastic Properties of Laminae
3 Comparison with Experimental Results
4. Comparison between Theoretical Predictions and Experimental Results
5 Optimized Representation of Theoretical Predictions.
2 Prediction of Elastic Properties of Laminae
3 Comparison with Experimental Results
4. Comparison between Theoretical Predictions and Experimental Results
5 Optimized Representation of Theoretical Predictions.