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Void growth due to creep and grain boundary diffusion at high triaxialities

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Publication:1354914
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DOI10.1016/0022-5096(94)00059-EzbMath0879.73009MaRDI QIDQ1354914

M. W. D. van der Burg, Erik Van der Giessen, Alan Needleman, Viggo Tvergaard

Publication date: 22 January 1998

Published in: Journal of the Mechanics and Physics of Solids (Search for Journal in Brave)


zbMATH Keywords

damageaxisymmetric sterss statescylindrical unit cell modelhydrogen attackremote stress triaxiality


Mathematics Subject Classification ID

Fracture and damage (74R99) Generalities, axiomatics, foundations of continuum mechanics of solids (74A99)


Related Items (4)

Vapor pressure and void size effects on failure of a constrained ductile film ⋮ Micromechanics of high temperature hydrogen attack ⋮ A micromechanical approach to damage in viscoplastic materials by evolution in size, shape and distribution of voids ⋮ Phase field microelasticity accommodating large deformation and modeling of voids evolution under creep



Cites Work

  • Inelastic deformation of porous materials
  • Effect of grain boundary sliding on creep constrained diffusive cavitation
  • Unnamed Item




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