Fr. 135.00

Equivalent Stress Concept for Limit State Analysis

English · Paperback / Softback

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Description

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This book discusses arbitrary multiaxial stress states using the concept of equivalent stress. It highlights the most useful criteria, which can be applied to various classes of isotropic materials. Due to its simplicity and clarity, this concept is now widely used in component design, and many strength and yield criteria based on the equivalent stress concept have been formulated. Choosing the appropriate criterion for a given material remains the main challenge in applications.

The most useful criteria can be applied best when the plausibility assumptions are known. Accordingly, the book introduces fitting methods based on mathematical, physical, and geometrical objective functions. It also features a wealth of examples that demonstrate the application of different approaches in modeling certain limit behaviors.

List of contents

Introduction.- Criteria of Equivalent Stress Concept.-Visualization Methods.- Formulations of Classical Strength.- Values for Comparison.- Visualization of Standard Criteria.- Alternative Formulations of Standard Criteria.- Conditions and Assumptions of Strength Criteria.- Generalized Pressure-Insensitive Criteria.- Generalized Pressure-Sensitive Criteria.- Multi-Surface Criteria.- Fitting of Criteria.- Experiments & Equipment.- Applications. Summary and Outlook.

Summary



Product details

Authors Vladimir A Kolupaev, Vladimir A. Kolupaev
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2019
 
EAN 9783319892313
ISBN 978-3-31-989231-3
No. of pages 365
Dimensions 155 mm x 237 mm x 22 mm
Weight 596 g
Illustrations XVII, 365 p. 210 illus., 205 illus. in color.
Series Advanced Structured Materials
Advanced Structured Materials
Subjects Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

B, Materialwissenschaft, engineering, Solid Mechanics, Materials science, Mechanics, Mechanics, Applied, Structural engineering, Structural Materials

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