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Viser: Fundamentals of Strength - Principles, Experiments, and Applications

Fundamentals of Strength, 2. udgave
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Fundamentals of Strength Vital Source e-bog

Paul Follansbee
(2022)
Springer Nature
1.197,00 kr. 1.077,30 kr.
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Fundamentals of Strength, 2. udgave

Fundamentals of Strength Vital Source e-bog

Paul Follansbee
(2022)
Springer Nature
778,00 kr.
Leveres umiddelbart efter køb
Fundamentals of Strength, 2. udgave

Fundamentals of Strength Vital Source e-bog

Paul Follansbee
(2022)
Springer Nature
598,00 kr.
Leveres umiddelbart efter køb
Fundamentals of Strength - Principles, Experiments, and Applications, 2. udgave

Fundamentals of Strength

Principles, Experiments, and Applications
Paul Follansbee
(2022)
Sprog: Engelsk
Springer International Publishing AG
1.227,00 kr.
Print on demand. Leveringstid vil være ca 2-3 uger.
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Detaljer om varen

  • 2. Udgave
  • Vital Source searchable e-book (Reflowable pages)
  • Udgiver: Springer Nature (Juli 2022)
  • ISBN: 9783031045561
This second edition updates and expands on the class-tested first edition text, augmenting discussion of dynamic strain aging and austenitic stainless steels and adding a section on analysis of nickel-base superalloys that shows how the mechanical threshold stress (MTS) model, an internal state variable constitutive formulation, can be used to de-convolute synergistic effects. The new edition retains a clear and rigorous presentation of the theory, mechanistic basis, and application of the MTS model. Students are introduced to critical competencies such as crystal structure, dislocations, thermodynamics of slip, dislocation–obstacle interactions, deformation kinetics, and hardening through dislocation accumulation. The model described in this volume facilitates readers’ understanding of integrated computational materials engineering (ICME), presenting context for the transition between length scales characterizing the mesoscale (mechanistic) and the macroscopic. Presenting readers a model buttressed by detailed examples and applications, the textbook is ideal for students, practitioners, and materials researchers.
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Detaljer om varen

  • 2. Udgave
  • Vital Source 180 day rentals (dynamic pages)
  • Udgiver: Springer Nature (Juli 2022)
  • ISBN: 9783031045561R180
This second edition updates and expands on the class-tested first edition text, augmenting discussion of dynamic strain aging and austenitic stainless steels and adding a section on analysis of nickel-base superalloys that shows how the mechanical threshold stress (MTS) model, an internal state variable constitutive formulation, can be used to de-convolute synergistic effects. The new edition retains a clear and rigorous presentation of the theory, mechanistic basis, and application of the MTS model. Students are introduced to critical competencies such as crystal structure, dislocations, thermodynamics of slip, dislocation–obstacle interactions, deformation kinetics, and hardening through dislocation accumulation. The model described in this volume facilitates readers’ understanding of integrated computational materials engineering (ICME), presenting context for the transition between length scales characterizing the mesoscale (mechanistic) and the macroscopic. Presenting readers a model buttressed by detailed examples and applications, the textbook is ideal for students, practitioners, and materials researchers.
Licens varighed:
Online udgaven er tilgængelig: 180 dage fra købsdato.
Offline udgaven er tilgængelig: 180 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • 2. Udgave
  • Vital Source 90 day rentals (dynamic pages)
  • Udgiver: Springer Nature (Juli 2022)
  • ISBN: 9783031045561R90
This second edition updates and expands on the class-tested first edition text, augmenting discussion of dynamic strain aging and austenitic stainless steels and adding a section on analysis of nickel-base superalloys that shows how the mechanical threshold stress (MTS) model, an internal state variable constitutive formulation, can be used to de-convolute synergistic effects. The new edition retains a clear and rigorous presentation of the theory, mechanistic basis, and application of the MTS model. Students are introduced to critical competencies such as crystal structure, dislocations, thermodynamics of slip, dislocation–obstacle interactions, deformation kinetics, and hardening through dislocation accumulation. The model described in this volume facilitates readers’ understanding of integrated computational materials engineering (ICME), presenting context for the transition between length scales characterizing the mesoscale (mechanistic) and the macroscopic. Presenting readers a model buttressed by detailed examples and applications, the textbook is ideal for students, practitioners, and materials researchers.
Licens varighed:
Online udgaven er tilgængelig: 90 dage fra købsdato.
Offline udgaven er tilgængelig: 90 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • 2. Udgave
  • Hardback
  • Udgiver: Springer International Publishing AG (Juli 2022)
  • ISBN: 9783031045554

This second edition updates and expands on the class-tested first edition text, augmenting discussion of dynamic strain aging and austenitic stainless steels and adding a section on analysis of nickel-base superalloys that shows how the mechanical threshold stress (MTS) model, an internal state variable constitutive formulation, can be used to de-convolute synergistic effects. The new edition retains a clear and rigorous presentation of the theory, mechanistic basis, and application of the MTS model. Students are introduced to critical competencies such as crystal structure, dislocations, thermodynamics of slip, dislocation-obstacle interactions, deformation kinetics, and hardening through dislocation accumulation. The model described in this volume facilitates readers' understanding of integrated computational materials engineering (ICME), presenting context for the transition between length scales characterizing the mesoscale (mechanistic) and the macroscopic. Presenting readers a model buttressed by detailed examples and applications, the textbook is ideal for students, practitioners, and materials researchers.

Contributions to Strength. - Dislocation-Obstacle Interactions. - A Constitutive Law for Metal Deformation. - Further MTS Model Developments. - Data Analysis: Deriving MTS Model Parameters - Application to Copper and Nickel. - Application to BCC Metals and Alloys. - Application to HCP Metals and Alloys. - Application to Austenitic Stainless Steels. - Application to the Strength of Heavily Deformed Metals. - Summary and Status Of Model Development.
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