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Fundamentals of strength : principles, experiment, and applications of an internal state variable constitutive formulation / [electronic resource]

by Follansbee, Paul S [author.].
Material type: materialTypeLabelBookPublisher: Hoboken, New Jersey : John Wiley & Sons, [2014]Description: 1 online resource.ISBN: 9781118808542; 1118808541; 9781118808351; 1118808355; 9781118808405; 1118808401; 9781118808412; 111880841X; 1118413415; 9781118413418.Subject(s): Strength of materials -- Mathematical models | Strains and stresses | TECHNOLOGY & ENGINEERING -- Material Science | SCIENCE -- Mechanics -- General | TECHNOLOGY & ENGINEERING -- Civil -- General | Strains and stresses | Strength of materials -- Mathematical models | Electronic booksOnline resources: Wiley Online Library Summary: "Written in a manner that is accessible to both students and practitioners, Fundamentals of Strength discusses the basis and implementation of the Mechanical Threshold Stress (MTS) model. Author P.S. Follansbee, a recognized authority in the field, reviews topics related to mechanical testing, crystal structure, thermodynamics, dislocation motion, dislocation-obstacle interactions, hardening through dislocation accumulation, and deformation kinetics. The text includes an abundance of data and actual model correlations that support the model as well as examples of how the model has been implemented and used to understand the effects of new strengthening mechanisms"-- Provided by publisher.Summary: "The text includes an abundance of data and actual model correlations that support the model as well as examples of how the model has been implemented and used to understand the effects of new strengthening mechanisms"-- Provided by publisher.
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Includes index.

Includes bibliographical references at the end of each chapters and index.

"Written in a manner that is accessible to both students and practitioners, Fundamentals of Strength discusses the basis and implementation of the Mechanical Threshold Stress (MTS) model. Author P.S. Follansbee, a recognized authority in the field, reviews topics related to mechanical testing, crystal structure, thermodynamics, dislocation motion, dislocation-obstacle interactions, hardening through dislocation accumulation, and deformation kinetics. The text includes an abundance of data and actual model correlations that support the model as well as examples of how the model has been implemented and used to understand the effects of new strengthening mechanisms"-- Provided by publisher.

"The text includes an abundance of data and actual model correlations that support the model as well as examples of how the model has been implemented and used to understand the effects of new strengthening mechanisms"-- Provided by publisher.

Print version record and CIP data provided by publisher.

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Last Updated on September 15, 2019
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