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Coupled Influence of Temperature and Strain Rate on Tensile Deformation Characteristics of Hot-Extruded AZ31 Magnesium Alloy
Authors:Ying Yan  Wan-Peng Deng  Zhan-Feng Gao  Jing Zhu  Zhong-Jun Wang  Xiao-Wu Li
Affiliation:1.Institute of Materials Physics and Chemistry, School of Materials Science and Engineering, Northeastern University,Shenyang 110819, China2 College of Materials and Metallurgy, Liaoning University of Science and Technology, Anshan 114051, China3 Key Laboratory for Anisotropy and Texture of Materials,Ministry of Education, Northeastern University, Shenyang 110819, China
Abstract:To explore the coupled effect of temperature T and strain rate_e on the deformation features of AZ31 Mg alloy,mechanical behaviors and microstructural evolutions as well as surface deformation and damage features were systematically examined under uniaxial tension at T spanning from 298 to 523 K and_e from 10-4to 10-2s-1. The increase in T or the decrease in_e leads to the marked decrease in flow stress, the appearance of a stress quasi-plateau after an initially rapid strain hardening, and even to the occurrence of successive strain softening. Correspondingly, the plastic deformation modes of AZ31 Mg alloy transform from the predominant twinning and a limited amount of dislocation slip into the enhanced non-basal slip and the dynamic recrystallization(DRX) together with the weakened twinning. Meanwhile, the cracking modes also change from along grain boundaries(GBs) and at twin boundaries(TBs) or the end of twins into nearby GBs where the DRX has occurred. The appearance of a stress quasi-plateau, the formation of large-sized cracks nearby GBs, and the occurrence of continuous strain softening, are intimately related to the enhancement of the non-basal slip and the DRX.
Keywords:AZ31  Mg  alloy  Uniaxial  tension  Temperature  Strain  rate  Deformation  Damage  Twinning  
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