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An energy approach to predict fatigue crack propagation in metals and alloys

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Publication:604328
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DOI10.1007/S10704-007-9156-4zbMath1198.74089OpenAlexW1968922777MaRDI QIDQ604328

Morris E. Fine, Yao Yao, Leon M. Keer

Publication date: 10 November 2010

Published in: International Journal of Fracture (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s10704-007-9156-4


zbMATH Keywords

energyphase transformationcrack propagationfatigue


Mathematics Subject Classification ID

Anelastic fracture and damage (74R20)


Related Items (1)

Dwell fatigue crack nucleation model based on crystal plasticity finite element simulations of polycrystalline titanium alloys




Cites Work

  • A model of evolving damage bands in materials
  • A total dissipated energy theory of fatigue crack growth in ductile solids
  • Fatigue crack-growth behavior of materials in viscous fluid environments
  • Thin Inclusions and Cracks in Anisotropic Media




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