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预压缩-反向拉伸加载路径下镁合金AZ31轧制板材的孪生-退孪生行为 被引量:2
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作者 郭晓倩 段星 +2 位作者 马超 张连英 茅献彪 《中国有色金属学报》 EI CAS CSCD 北大核心 2023年第4期1047-1062,共16页
为了定量研究孪生和退孪生行为在镁合金塑性变形中的作用,开展了镁合金AZ31板材沿轧制方向单调拉伸、单调压缩及预压缩-反向拉伸下的宏观力学行为及微观EBSD试验,并基于考虑孪生-退孪生行为的弹黏塑性自洽模型(EVPSC-TDT),模拟预测了镁... 为了定量研究孪生和退孪生行为在镁合金塑性变形中的作用,开展了镁合金AZ31板材沿轧制方向单调拉伸、单调压缩及预压缩-反向拉伸下的宏观力学行为及微观EBSD试验,并基于考虑孪生-退孪生行为的弹黏塑性自洽模型(EVPSC-TDT),模拟预测了镁合金板材的宏微观塑性变形行为。结果表明:随着压缩量的增大,(0002)极图在RD附近的强度值逐渐增大,孪晶体积分数增加;反向拉伸时,RD附近的强度值逐渐减弱,孪晶体积分数降低;当反向拉伸量与预压缩量相同时,孪晶体积分数几乎减小到0,几乎所有晶粒c轴均转动至ND方向;随着预压缩量的增加,位错密度逐渐提升,增强了对滑移和孪生的阻碍作用,导致反向拉伸时的屈服应力随着预压缩量的增加而增大。反向拉伸初始阶段各滑移-孪生系的开启率相似,表明拉伸阶段的屈服应力与压缩后各滑移和孪生系的硬化有关;EVPSC-TDT模型可准确预测镁合金在以孪生-退孪生为主导的变形模式下的宏观力学行为、织构演化规律及孪晶体积分数。 展开更多
关键词 孪生-退孪生 镁合金 晶体塑性 反向加载
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Microstructure and formability evolutions of AZ31 magnesium alloy sheets undergoing continuous bending process 被引量:5
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作者 Ting-zhuang HAN Guang-sheng HUANG +3 位作者 You-gen WANG Guan-gang WANG Yan-chun ZHAO Fu-sheng PAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第8期2043-2050,共8页
Continuous bending (CB) process along rolling direction was performed to improve the formability of AZ31 magnesium alloy sheets. The microstructure and texture evolutions were characterized by optical microscopy (OM) ... Continuous bending (CB) process along rolling direction was performed to improve the formability of AZ31 magnesium alloy sheets. The microstructure and texture evolutions were characterized by optical microscopy (OM) and electronic backscatter diffraction (EBSD). The results reveal that the basal texture intensity of continuously bent and annealed (CBA) sample is drastically weakened. A large number of twins are induced on the concave surface by the 1st pass bending and the density of twins obviously declines during the 2nd pass bending owing to the occurrence of detwinning. Due to the asymmetric tension?compression strain states between the outer and inner regions during V-bending, twinning and detwinning are generated alternatively during the CB process. The Erichsen value is 5.2 mm which increases by 41% compared with that of as-received sample. This obvious improvement of formability can be attributed to the weakened basal texture, which leads to a smaller plastic strain ratio (r-value)together with a larger strain-hardening exponent (n-value). 展开更多
关键词 AZ31 magnesium alloy continuous bending TWINNING detwinning MICROSTRUCTURE FORMABILITY
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