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Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers Book

Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers
Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers, This text emphasizes the mechanical behavior of elastomers. It discusses the molecular and micro configuration of the rubber matrix and how they produce the observed mechanical behavior.
The fatigue testing of specimens, curve fitting of equations to t, Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers has a rating of 3 stars
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Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers, This text emphasizes the mechanical behavior of elastomers. It discusses the molecular and micro configuration of the rubber matrix and how they produce the observed mechanical behavior. The fatigue testing of specimens, curve fitting of equations to t, Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers
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  • Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers
  • Written by author Judson T. Bauman
  • Published by Hanser-Gardner Publications, November 2008
  • This text emphasizes the mechanical behavior of elastomers. It discusses the molecular and micro configuration of the rubber matrix and how they produce the observed mechanical behavior. The fatigue testing of specimens, curve fitting of equations to t
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Book Categories

Authors

1 Introduction 1

2 Rubber Stress-Strain Behavio 9

3 A Theory of the Elastomer Stress-Strain Curve 19

4 Stress-Strain Testing 43

5 Design Equations 69

6 Calculation Methods for Spherical Elastomer Bearings 89

7 Finite Element Analysis 107

8 Fatigue Testing 117

9 Fitting the Strain-Life Curve 127

10 Fatigue Life Estimation 135

11 Fatigue Crack Growth and Tearing Energy 143

Appendix 1 Rubber Nomenclature 159

Appendix 2 Fatigue Terminology 167

Appendix 3 English to Metric Conversion 177

Appendix 4 Fitting the Strain-Life Curve 179

Appendix 5 Derivation of Tearing Energy Equations 187

Appendix 6 Derivation of Equations for Spherical Elastomer Bearings 193

Index 213


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Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers, This text emphasizes the mechanical behavior of elastomers. It discusses the molecular and micro configuration of the rubber matrix and how they produce the observed mechanical behavior.
The fatigue testing of specimens, curve fitting of equations to t, Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers

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Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers, This text emphasizes the mechanical behavior of elastomers. It discusses the molecular and micro configuration of the rubber matrix and how they produce the observed mechanical behavior.
The fatigue testing of specimens, curve fitting of equations to t, Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers

Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers

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Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers, This text emphasizes the mechanical behavior of elastomers. It discusses the molecular and micro configuration of the rubber matrix and how they produce the observed mechanical behavior.
The fatigue testing of specimens, curve fitting of equations to t, Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers

Fatigue, Stress, and Strain of Rubber Components: A Guide for Design Engineers

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