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Visco-plastic constitutive modeling on Ohno-Wang kinematic hardening rule for uniaxial ratcheting behavior of Z2CND18.12N steel
Authors:Dunji YuGang Chen  Weiwei YuDuomin Li  Xu Chen
Institution:a School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China
b Suzhou Nuclear Power Institute, Suzhou 240051, China
c Guangdong University of Petrochemical Technology, Maoming 525000, China
Abstract:Experimental results of monotonic uniaxial tensile tests at different strain rates and the reversed strain cycling test showed the characteristics of rate-dependence and cyclic hardening of Z2CND18.12N austenitic stainless steel at room temperature, respectively. Based on the Ohno-Wang kinematic hardening rule, a visco-plastic constitutive model incorporated with isotropic hardening was developed to describe the uniaxial ratcheting behavior of Z2CND18.12N steel under various stress-controlled loading conditions. Predicted results of the developed model agreed better with experimental results when the ratcheting strain level became higher, but the developed model overestimated the ratcheting deformation in other cases. A modified model was proposed to improve the prediction accuracy. In the modified model, the parameter mi of the Ohno-Wang kinematic hardening rule was developed to evolve with the accumulated plastic strain. Simulation results of the modified model proved much better agreement with experiments.
Keywords:Ratcheting  B  Elastic-viscoplastic material  B  Constitutive behavior  B  Cyclic loading  C  Mechanical testing
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