Fundamentals of engineering plasticity / William F. Hosford.

"This book is ideal for those involved in designing sheet metal forming processes. Knowledge of plasticity is essential for the computer simulation of metal forming processes, and understanding the advances in plasticity theory is key to formulating sound analyses. In this book, William Hosford...

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Year of Publication:2013
Language:English
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Physical Description:vii, 267 p. :; ill.
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spelling Hosford, William F.
Fundamentals of engineering plasticity [electronic resource] / William F. Hosford.
Cambridge : Cambridge University Press, 2013.
vii, 267 p. : ill.
Includes bibliographical references and index.
Machine generated contents note: 1. An overview of the history of plasticity theory; 2. Yielding; 3. Stress and strain; 4. Isotropic yield criteria; 5. Bounding theorems and work principles; 6. Slip-line field theory; 7. Anisotropic plasticity; 8. Slip and dislocations; 9. Taylor and Bishop and Hill models; 10. Pencil glide calculations of yield loci; 11. Mechanical twinning and Martensitic shear; 12. Effects of strain hardening and strain-rate dependence; 13. Defect analysis; 14. Effects of pressure and sign of stress state; 15. Lower bound analysis; 16. Plasticity tests.
"This book is ideal for those involved in designing sheet metal forming processes. Knowledge of plasticity is essential for the computer simulation of metal forming processes, and understanding the advances in plasticity theory is key to formulating sound analyses. In this book, William Hosford makes the subjects simple by avoiding notations used by specialists in mechanics. R. Hill's authoritative book, Mathematical Theory of Plasticity (1950), presented a comprehensive treatment of continuum plasticity theory up to that time; although much of the treatment in this book covers the same ground, it focuses on more practical topics. Hosford has also included recent developments in continuum theory, including a newer treatment of anisotropy that has resulted from calculations of yielding based on crystallography, analysis of the role of defects, and forming limit diagrams. This text also puts a much greater emphasis on deformation mechanisms, and includes chapters on slip and dislocation theory and twinning"-- Provided by publisher.
Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.
Plasticity.
Metal-work.
Electronic books.
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https://ebookcentral.proquest.com/lib/oeawat/detail.action?docID=1139751 Click to View
language English
format Electronic
eBook
author Hosford, William F.
spellingShingle Hosford, William F.
Fundamentals of engineering plasticity
Machine generated contents note: 1. An overview of the history of plasticity theory; 2. Yielding; 3. Stress and strain; 4. Isotropic yield criteria; 5. Bounding theorems and work principles; 6. Slip-line field theory; 7. Anisotropic plasticity; 8. Slip and dislocations; 9. Taylor and Bishop and Hill models; 10. Pencil glide calculations of yield loci; 11. Mechanical twinning and Martensitic shear; 12. Effects of strain hardening and strain-rate dependence; 13. Defect analysis; 14. Effects of pressure and sign of stress state; 15. Lower bound analysis; 16. Plasticity tests.
author_facet Hosford, William F.
ProQuest (Firm)
ProQuest (Firm)
author_variant w f h wf wfh
author2 ProQuest (Firm)
author2_role TeilnehmendeR
author_corporate ProQuest (Firm)
author_sort Hosford, William F.
title Fundamentals of engineering plasticity
title_full Fundamentals of engineering plasticity [electronic resource] / William F. Hosford.
title_fullStr Fundamentals of engineering plasticity [electronic resource] / William F. Hosford.
title_full_unstemmed Fundamentals of engineering plasticity [electronic resource] / William F. Hosford.
title_auth Fundamentals of engineering plasticity
title_new Fundamentals of engineering plasticity
title_sort fundamentals of engineering plasticity
publisher Cambridge University Press,
publishDate 2013
physical vii, 267 p. : ill.
contents Machine generated contents note: 1. An overview of the history of plasticity theory; 2. Yielding; 3. Stress and strain; 4. Isotropic yield criteria; 5. Bounding theorems and work principles; 6. Slip-line field theory; 7. Anisotropic plasticity; 8. Slip and dislocations; 9. Taylor and Bishop and Hill models; 10. Pencil glide calculations of yield loci; 11. Mechanical twinning and Martensitic shear; 12. Effects of strain hardening and strain-rate dependence; 13. Defect analysis; 14. Effects of pressure and sign of stress state; 15. Lower bound analysis; 16. Plasticity tests.
isbn 9781107348530 (electronic bk.)
callnumber-first T - Technology
callnumber-subject TA - General and Civil Engineering
callnumber-label TA418
callnumber-sort TA 3418.14 H67 42013
genre Electronic books.
genre_facet Electronic books.
url https://ebookcentral.proquest.com/lib/oeawat/detail.action?docID=1139751
illustrated Illustrated
dewey-hundreds 600 - Technology
dewey-tens 620 - Engineering
dewey-ones 620 - Engineering & allied operations
dewey-full 620.1/633
dewey-sort 3620.1 3633
dewey-raw 620.1/633
dewey-search 620.1/633
oclc_num 846492947
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