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Influence of hardening type on self-heating of metallic materials under cyclic loadings at low amplitude
Authors:Cédric Doudard  Sylvain Calloch
Institution:1. IMDEA Materials Institute, Eric Kandel 2, Getafe, 28906, Madrid, Spain;2. E.T.S. de Ingenieros de Caminos, Universidad Politécnica de Madrid, 28040, Madrid, Spain;3. ETSI Industriales, Jose Gutierrez Abascal 2, Universidad Politécnica de Madrid, 28006, Madrid, Spain;1. Faculty of Mechanical Engineering, Bialystok University of Technology (BUT), 45C Wiejska Street, 15-351 Bialystok, Poland;2. Institute of Fundamental Technological Research, Polish Academy of Sciences, 5B Pawinskiego Street, 02-106 Warsaw, Poland;1. MOE Key Laboratory of Deep Earth Science and Engineering, College of Architecture and Environment, Sichuan University, China;2. College of Architecture and Environment, Sichuan University, China;3. School of Architecture and Civil Engineering, Chengdu University, China;4. Failure Mechanics and Engineering Disaster Prevention and Mitigation Key Laboratory of Sichuan Province, Sichuan University, China
Abstract:For several years, some authors have worked on the rapid estimation of the High-Cycle Fatigue (HCF) properties of metallic materials based upon temperature measurements under cyclic loadings. This method is so-called “self-heating tests”. More recently, the development of a two-scale probabilistic model has shown that self-heating tests permit to identify, not only, the mean fatigue limit, but also, the scatter of classical fatigue results. So, it is proposed, in this paper, to extend the previous approach for materials with different kinds of hardening and different kinds of hardening evolution (i.e., cyclic hardening or cyclic softening) and to show the influence of the hardening type on self-heating and on the partition of the plastic energy (i.e., dissipated and stored energies). The identification and the validation of the proposed approach have been performed on two different metallic materials (i.e., a dual-phase steel and a chrome–cobalt alloy).
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