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首页> 外文期刊>Journal of Materials Science >In situ analysis of the influence of twinning on the strain hardening rate and fracture mechanism in AZ31B magnesium alloy
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In situ analysis of the influence of twinning on the strain hardening rate and fracture mechanism in AZ31B magnesium alloy

机译:原位分析孪晶对AZ31B镁合金应变硬化速率和断裂机理的影响

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摘要

The influence of twinning on the strain hardening rate and fracture mechanism in AZ31B magnesium alloy was studied in this work by in situ microstructural analysis during tensile testing in a chamber of scanning electron microscope. Three types of samples used in this study were obtained by (1) extrusion (as-supplied), (2) I-ECAP and (3) I-ECAP followed by side upsetting. Microstructures, textures and mechanical properties were examined after each processing step. An analytical equation was used to describe flow stress curves of the samples which exhibited various modes of deformation (1) only by slip, (2) dominated by tensile twinning followed by slip and (3) dominated by contraction twinning followed by slip. It was shown that tensile twinning increases strain hardening rate, while the opposite is observed for contraction twinning. The effective Schmid factors for slip in volumes deformed by tensile and contraction twinning were determined in this work using modelling approach as 0.215 and 0.45, respectively. Contraction twinning was also revealed to be responsible for an earlier fracture of the extruded sample subjected to tension, since microcracking was shown explicitly to be initiated within twins.
机译:在扫描电子显微镜腔内拉伸试验过程中,通过原位显微组织分析,研究了孪晶对AZ31B镁合金中应变硬化速率和断裂机理的影响。通过(1)挤压(按原样提供),(2)I-ECAP和(3)I-ECAP,然后进行侧面obtained粗,获得了三种用于本研究的样品。在每个加工步骤之后检查微观结构,织构和机械性能。使用分析方程式描述了样品的流变应力曲线,这些样品表现出各种变形模式(1)仅由滑移,(2)以拉伸孪晶紧随其后的滑移为主,(3)以收缩孪生紧随其后的滑移为主。结果表明,拉伸孪生可提高应变硬化速率,而收缩孪生则相反。在这项工作中,使用建模方法确定了因拉伸和收缩孪生变形而产生的体积滑移的有效Schmid因子,分别为0.215和0.45。还显示出收缩孪晶是造成拉伸样品承受拉力的较早断裂的原因,因为微裂纹被明确表明是在孪晶中引发的。

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