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  • Methodology for evaluation of uniaxial thermo-mechanical fatigue test is presented. Classical evaluation provides dependence average strain range of specimen - cycles to failure. Proposed methodology evaluates localized strain range in the place of the specimen's rupture. The principle of this methodology is finite element simulation of real fatigue test and assigning of computed local mechanical strain range to cycles to failure from experiment. This methodology was applied to GGV 30 vermicular grey cast iron.
  • Methodology for evaluation of uniaxial thermo-mechanical fatigue test is presented. Classical evaluation provides dependence average strain range of specimen - cycles to failure. Proposed methodology evaluates localized strain range in the place of the specimen's rupture. The principle of this methodology is finite element simulation of real fatigue test and assigning of computed local mechanical strain range to cycles to failure from experiment. This methodology was applied to GGV 30 vermicular grey cast iron. (en)
Title
  • Evaluation of thermo-mechanical fatigue test based on FEM simulation
  • Evaluation of thermo-mechanical fatigue test based on FEM simulation (en)
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  • Evaluation of thermo-mechanical fatigue test based on FEM simulation
  • Evaluation of thermo-mechanical fatigue test based on FEM simulation (en)
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  • RIV/68407700:21220/11:00187736!RIV12-MSM-21220___
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  • P(1M0568)
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  • 198404
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  • RIV/68407700:21220/11:00187736
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  • Thermomechanical fatigue; Fatigue test; Coffin apparatus; FE simulation; GGV 30 cast iron (en)
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  • [B7DC705BAF24]
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  • Znojmo
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  • Brno
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  • Experimentální analýza napětí 2011
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  • Dvořák, Milan
  • Španiel, Miroslav
  • Novotný, Ctirad
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  • Vysoké učení technické v Brně
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  • 978-80-214-4275-7
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  • 21220
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