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Ductile Fracture in Metal Forming

- Modeling and Simulation

Om Ductile Fracture in Metal Forming

Ductile Fracture in Metal Forming provides an approach to micromechanical ductile fracture prediction which is applicable to all metal-forming processes. It also examines, in detail, our current understanding of the mechanics and physics of ductile fracture in metal-forming processes. Starting with an overview of different ductile fracture scenarios, this book goes on to explain modeling techniques that predict a range of mechanical phenomena that can lead to ductile fracture. The particular challenges in creating micromechanical models are addressed, as are methods of applying these models to several common metal-forming processes. Explains innovative micromechanical modeling techniques for a variety of material behaviorsExamines how these models can be applied to metal forming processes in practice, including blanking, arrowed cracks in drawing, and surface cracks in upset forgingProvides a thorough examination of both macroscopic and microscopic ductile fracture theory

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  • Språk:
  • Engelsk
  • ISBN:
  • 9780128147726
  • Bindende:
  • Paperback
  • Sider:
  • 294
  • Utgitt:
  • 15. oktober 2019
  • Dimensjoner:
  • 152x229x0 mm.
  • Vekt:
  • 450 g.
  Gratis frakt
Leveringstid: 2-4 uker
Forventet levering: 16. mars 2026

Beskrivelse av Ductile Fracture in Metal Forming

Ductile Fracture in Metal Forming provides an approach to micromechanical ductile fracture prediction which is applicable to all metal-forming processes. It also examines, in detail, our current understanding of the mechanics and physics of ductile fracture in metal-forming processes. Starting with an overview of different ductile fracture scenarios, this book goes on to explain modeling techniques that predict a range of mechanical phenomena that can lead to ductile fracture. The particular challenges in creating micromechanical models are addressed, as are methods of applying these models to several common metal-forming processes.
Explains innovative micromechanical modeling techniques for a variety of material behaviorsExamines how these models can be applied to metal forming processes in practice, including blanking, arrowed cracks in drawing, and surface cracks in upset forgingProvides a thorough examination of both macroscopic and microscopic ductile fracture theory

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