Creep failure simulations of 316H at 550 degrees C: Part I - A method and validation

  • Oh, Chang-Sik
  • Kim, Nak-Hyun
  • Kim, Yun-Jae
  • Davies, Catrin
  • Nikbin, Kamran
  • 외 1명
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초록

This paper proposes a method to simulate creep failure using finite element damage analysis. The creep damage model is based on the creep ductility exhaustion concept, and incremental damage is defined by the ratio of incremental creep strain and multi-axial creep ductility. A simple linear damage summation rule is applied and, when accumulated damage becomes unity, element stresses are reduced to zero to simulate progressive crack growth. For validation, simulated results are compared with experimental data for a compact tension specimen of 316H at 550 degrees C. Effects of the mesh size and scatter in uniaxial ductility are also investigated. (C) 2011 Elsevier Ltd. All rights reserved.

키워드

Creep crack initiation and growthCreep ductilityFinite element damage analysisHIGH-STRENGTH STEELSCRACK-GROWTHCONTINUUM DAMAGESTRESS TRIAXIALITYDUCTILE FRACTUREPREDICTIONRUPTUREINITIATIONSTRAINSTATES
제목
Creep failure simulations of 316H at 550 degrees C: Part I - A method and validation
저자
Oh, Chang-SikKim, Nak-HyunKim, Yun-JaeDavies, CatrinNikbin, KamranDean, David
DOI
10.1016/j.engfracmech.2011.08.015
발행일
2011-12
유형
Article
저널명
Engineering Fracture Mechanics
78
17
페이지
2966 ~ 2977