Mechanical Behavior of Materials

Fundamentals, Analysis, and Calculations

Specificaties
Paperback, blz. | Engels
Springer International Publishing | 2022
ISBN13: 9783030849290
Rubricering
Springer International Publishing e druk, 2022 9783030849290
Onderdeel van serie Mechanical Engineering Series
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Samenvatting

This textbook supports a range of core courses in undergraduate materials and mechanical engineering curricula given at leading universities globally. It presents fundamentals and quantitative analysis of mechanical behavior of materials covering engineering mechanics and materials, deformation behavior, fracture mechanics, and failure design. This book provides a holistic understanding of mechanical behavior of materials, and enables critical thinking through mathematical modeling and problem solving. Each of the 15 chapters first introduces readers to the technologic importance of the topic and provides basic concepts with diagrammatic illustrations; and then its engineering analysis/mathematical modelling along with calculations are presented. Featuring 200 end-of-chapter calculations/worked examples, 120 diagrams, 260 equations on mechanics and materials, the text is ideal for students of mechanical, materials, structural, civil, and aerospace engineering.

 

Specificaties

ISBN13:9783030849290
Taal:Engels
Bindwijze:paperback
Uitgever:Springer International Publishing

Inhoudsopgave

Part I: Materials: Deformation, Testing, and Strengthening<div>1) INTRODUCTION</div><div>2) PHYSICS OF DEFORMATION</div><div>3) MECHANICAL TESTING AND PROPERTIES OF MATERIALS&nbsp;</div><div>4) STRENGTHENING MECHNAISMS IN METALS/ALLOYS&nbsp;</div><div>5) MATERIALS IN ENGINEERING</div>Part II: Stresses, Strains, and Deformation Behaviors<div>6) STRESS-STRAIN RELATIONS AND DEFORMATION MODELS</div><div>7) ELASTICITY AND VISCOELASTICITY</div><div>8) COMPLEX/PRINCIPAL STRESSES AND STRAINS&nbsp;</div><div>9) PLASTICITY AND SUPERPLASTICITY – Theory and Applications&nbsp;</div><div>10) TORSION IN SHAFTS&nbsp;</div><div>Part III: Failure, Design, and Composites Behavior</div><div>11) FAILURE THEORIES AND DESIGN</div><div>12) FRACTURE MECHNAICS AND DESIGN&nbsp;</div><div>13) FATIGUE BEHAVIOR OF MATERIALS&nbsp;</div><div>14) CREEP BEHAVIOR OF MATERIALS&nbsp;</div><div>15) MECHANICAL BEHAVIOR OF COMPOSITE MATERIALS&nbsp;</div><div><br></div>
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        Mechanical Behavior of Materials