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A probabilistic model for LCF

delete2013-11-01
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OA
AI
S
Sebastian Schmitz *
T
Thomas Seibel
T
Tilmann Beck
G
G. Rollmann
R
Rolf Krause
H
Hanno Gottschalk
DOI:10.1016/j.commatsci.2013.07.015delete
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Abstract

Abstract

En 中文
Fatigue life of components or test specimens often exhibit a significant scatter. Furthermore, size effects have a non-negligible influence on fatigue life of parts with different geometries. We present a new probabilistic model for low-cycle fatigue (LCF) in the context of polycrystalline metal. The model takes size effects and inhomogeneous strain fields into account by means of the Poisson point process (PPP). This approach is based on the assumption of independently occurring LCF cracks and the Coffin-Manson-Basquin (CMB) equation. Within the probabilistic model, we give a new and more physical interpretation of the CMB parameters which are in the original approach no material parameters in a strict sense, as they depend on the specimen geometry. Calibration and validation of the proposed model is performed using results of strain controlled LCF tests of specimens with different surface areas. The test specimens are made of the nickel base superalloy RENE 80. (C) 2013 Elsevier B. V. All rights reserved.
Keywords:
Fatigue
Poisson point process
Coffin-Manson-Basquin equation
Probabilistic models
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Computational Materials Science cover
Computational Materials Science
IF:
3.3
Papers:
1.3W
Citations:
3.6W

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Universita della Svizzera Italiana
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siemens ag
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University of Wuppertal
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