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首页> 外文期刊>Journal of Materials Engineering and Performance >Drawing Direction Effect on Microstructure and Mechanical Properties of Twinning-Induced Plasticity Steel During Wire Drawing
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Drawing Direction Effect on Microstructure and Mechanical Properties of Twinning-Induced Plasticity Steel During Wire Drawing

机译:绘制线材诱导塑性钢组织和力学性能的绘制方向效应

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摘要

The effect of drawing direction on microstructure and mechanical properties in twinning-induced plasticity (TWIP) steel during wire drawing has been investigated to improve drawability for wire rod applications. The steel wires subjected to unidirectional (UD) and reverse-directional (RD) wire drawing were analyzed. The yield and tensile strength processed by the RD were slightly higher than those by the UD, whereas the ductility and drawability have inverse features, which is totally different from the results of plain carbon steel and Al wire. Although final shear strain of wires deformed by the RD is lower than that by the UD, the RD wires had a more complex stress history and a higher <111> texture component at the surface area, which encouraged twinning rate, resulting in fast exhaustion of ductility, finally earlier fracture of wires. In contrast to the materials deformed by mainly slip mechanism, the RD process cannot improve the ductility and drawability in TWIP steel due to the stress state dependency of twinning mechanism. Also, based on the different strengthening behaviors between pearlitic and TWIP steels during UD and RD, it is induced that microstructure and applied stress state simultaneously control the mechanical properties.
机译:研究了拉伸方向对缠绕诱导的塑性(Twip)钢中的微观结构和机械性能的影响,提高了线材应用的可拉伸性。分析了经过单向(UD)和反向(RD)线图的钢丝。由RD处理的产量和拉伸强度略高于UD,而延展性和拉伸性具有逆特征,其与普通碳钢和Al线的结果完全不同。尽管由RD变形的导线的最终剪切应变低于UD的电线,但是RD线在表面积处具有更复杂的应力历史和更高的<111>纹理组分,这促进了孪晶率,导致快速耗尽延展性,最终较早的电线骨折。与主要滑移机构变形的材料相反,RD工艺由于孪晶机制的应力状态依赖性而不能改善TWIP钢中的延展性和拉伸性。此外,在UD和Rd期间,基于珠光体和Twip钢之间的不同强化行为,诱导微观结构和施加应力状态同时控制机械性能。

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