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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effect of electropulsing treatment on microstructure and mechanical behavior of Ti-6Al-4V alloy sheet under argon gas protection
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Effect of electropulsing treatment on microstructure and mechanical behavior of Ti-6Al-4V alloy sheet under argon gas protection

机译:仿真处理对氩气保护下Ti-6Al-4V合金板微观结构和力学行为的影响

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AbstractThe effect of electropulsing on microstructure and mechanical behavior of Ti-6Al-4V alloy sheet was studied by the electropulsing treatment tests under argon gas protection. Compared to conventional treatment test without current, the specimen tensile strength keeps constant and the maximum plasticity increases by 21.67% with current density of 17.8 A/mm2under electropulsing treatment. An empirical model to predict the temperature evolution of Ti-6Al-4V sheet under electropulsing was established. To understand the mechanism of electropulsing treatment, the microstructure of electropulisng treated specimens was analyzed. The results show that the electropulsing can accelerate the recrystallization and phase transformation of Ti-6Al-4V under a relatively low temperature compared to heat treatment. The enhancement of elongation at 17.8 A/mm2is attributed to rapid recrystallization. Based on the contribution of thermal and athermal effect on thermodynamics and kinetics, the mechanism of the electropulsing on the recrystallization and phase transformation are discussed.Highlights?Electropulsing treatment on Ti6Al4V alloy was carried out in an argon
机译:<![CDATA [ 抽象 通过拍摄处理研究了Ti-6A-4V合金板的微观结构和机械行为的效果在氩气保护下的测试。与无电流的常规处理测试相比,样品抗拉强度保持恒定,最大塑性随着电流密度为17.8A / mm:sup =“post”> 2 在电禁忌术治疗中增加21.67% 。建立了预测电禁区下Ti-6Al-4V板温度演化的实证模型。为了了解电禁止处理的机理,分析了电源性处理标本的微观结构。结果表明,与热处理相比,电禁止可以在相对低的温度下加速Ti-6Al-4V的再结晶和相变。在17.8A / mm 2 归因于快速再结晶,提高伸长率。基于热力学和动脉效应对热力学和动力学的贡献,讨论了电禁止在重结晶和相变的机理。 亮点 Ti6Al4V合金的电泳处理在氩气中进行

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