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Practical Stress Analysis in Engineering Design: Mechanical Engineering

Autor Ronald Huston, Harold Josephs
en Limba Engleză Hardback – 17 dec 2008
Updated and revised, this book presents the application of engineering design and analysis based on the approach of understanding the physical characteristics of a given problem and then modeling the important aspects of the physical system. This third edition provides coverage of new topics including contact stress analysis, singularity functions, gear stresses, fasteners, shafts, and shaft stresses. It introduces finite element methods as well as boundary element methods and also features worked examples, problems, and a section on the finite difference method and applications. This text is suitable for undergraduate and graduate students in mechanical, civil, and aerospace engineering.
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Specificații

ISBN-13: 9781574447132
ISBN-10: 1574447130
Pagini: 664
Ilustrații: 507 b/w images and 41 tables
Dimensiuni: 178 x 254 x 38 mm
Greutate: 1.34 kg
Ediția:Revizuită
Editura: CRC Press
Colecția CRC Press
Seria Mechanical Engineering


Public țintă

Professional Practice & Development

Cuprins

Fundamental Relations and Concepts. Straight and Long Structural Components: Beams, Rods, and Bars. Plates, Panels, Flanges, and Brackets. Dynamic Loadings, Fatigue, and Fracture. Piping and Pressure Vessels. Advanced and Specialized Problems.

Descriere

Updated and revised, this book presents the application of engineering design and analysis based on the approach of understanding the physical characteristics of a given problem and then modeling the important aspects of the physical system. This third edition provides coverage of new topics including contact stress analysis, singularity functions, gear stresses, fasteners, shafts, and shaft stresses. It introduces finite element methods as well as boundary element methods and also features worked examples, problems, and a section on the finite difference method and applications. This text is suitable for undergraduate and graduate students in mechanical, civil, and aerospace engineering.