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Volumn 28, Issue 5-6, 2006, Pages 643-651

Service-type creep-fatigue experiments with cruciform specimens and modelling of deformation

Author keywords

Constitutive material model; Creep fatigue; Cruciform testing system; Finite element; Heat resistant steel; Neural networks; Thermomechanical fatigue

Indexed keywords

CREEP; DEFORMATION; FINITE ELEMENT METHOD; MATHEMATICAL MODELS; NEURAL NETWORKS; STRAIN; THERMOMECHANICAL TREATMENT;

EID: 30844432670     PISSN: 01421123     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.ijfatigue.2005.08.010     Document Type: Article
Times cited : (49)

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    • M. Itoh, M. Sakane, and M. Ohnami High temperature multiaxial low cycle fatigue of cruciform specimen Trans ASME JEMT 116 1 1994 90 98
    • (1994) Trans ASME JEMT , vol.116 , Issue.1 , pp. 90-98
    • Itoh, M.1    Sakane, M.2    Ohnami, M.3
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    • Berger C. AVIF-Forschungsvorhaben A166. IfW, TU-Darmstadt; 2002 bis 2004
    • Berger C. AVIF-Forschungsvorhaben A166. IfW, TU-Darmstadt; 2002 bis 2004.
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    • The principle of generalized energy equivalence in continuum damage mechanics
    • Berlin: Springer [ISBN: 3-540-00848-9]
    • Tsakmakis C, Reckwerth D. The principle of generalized energy equivalence in continuum damage mechanics. In: Deformation and failure in metallic materials. Berlin: Springer: 2003. p. 3 [ISBN: 3-540-00848-9].
    • (2003) Deformation and Failure in Metallic Materials , pp. 3
    • Tsakmakis, C.1    Reckwerth, D.2
  • 8
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    • A neural network tool for identifying the material parameters of a finite deformation viscoplasticity model with static recovery
    • N. Huber, and Ch. Tsakmakis A neural network tool for identifying the material parameters of a finite deformation viscoplasticity model with static recovery Comput Method Appl Mech Eng 191 2001 353 384
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    • Huber, N.1    Tsakmakis, Ch.2
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    • Application of an extrapolation method in thermocyclic failure analysis
    • H. Kiewel, J. Aktaa, and D. Munz Application of an extrapolation method in thermocyclic failure analysis Comput Method Appl Mech Eng 182 2000 55 71
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.