Initial cyclic hardening behavior of cracked structures under large-amplitude cyclic loading

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초록

A new cyclic hardening model is proposed based on combined experimental and numerical analyses to simulate the deformation of a cracked structure under large amplitude cyclic loading. In the experiment conducted herein, compact tension specimen tests made of TP304 stainless steel were subjected to large-amplitude cyclic loading. Then, finite element (FE) analysis was performed using the ABAQUS debond option to develop a cyclic hardening model. In the proposed cyclic hardening law, isotropic hardening was calculated in the first loading cycle. To assess the unloading of the first cycle, a Chaboche combined hardening model was used. The model results agreed well with the experimental displacement data. The effects of hardening in the first loading cycle on the yield surface and equivalent plastic strains in the subsequent cycles are presented as well.

키워드

Cracked specimenCyclic hardening modelCyclic hardening FE debond analysisLarge amplitude cyclic loadingCONSTITUTIVE MODELDYNAMIC RECOVERYCRITICAL STATEPLASTICITYRULESEQUATIONSSTEEL
제목
Initial cyclic hardening behavior of cracked structures under large-amplitude cyclic loading
저자
Hwang, Jin-HaKim, Yun-JaeKim, Jin-WeonKim, Sang-Eon
DOI
10.1016/j.engfracmech.2021.107911
발행일
2021-09
유형
Article
저널명
Engineering Fracture Mechanics
254