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Microstructure and mechanical properties of cold drawn pearlitic steel wires: Effects of drawing-induced heating

机译:冷绘珠光钢丝的微观结构与力学性能:拉丝诱导加热的影响

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摘要

To investigate the effects of drawing-generated heating on the microstructural and mechanical properties of cold drawn pearlitic steel wires, cryogenic and room temperature (RT) drawing were carried out. Microstructure evolution of the steel wires was examined by scanning electron microscope (SEM), transmission electron microscope (TEM) and X-ray diffraction (XRD) analysis. Experimental results show that with the increase of cold drawing strain interlamellar spacing of pearlite was reduced, while the crystalline cementite was gradually transformed into amorphous state. Only slight difference in the microstructure and mechanical properties was identified between the RT and cryogenic drawings. Specifically, as the drawing strain increased, the cryogenic drawn wires have lower strength but better ductility. For example, the tensile strength of cryogenic drawn wires (ε = 2.2) is about 2050 MPa, about 90 MPa lower than that of RT drawn wires. On the other hand, cryogenic drawing wires have produced a lower volume fraction of nano-crystalline cementite particles. As the nano-crystalline cementite particles could hinder the movement of dislocations, a lower fraction of nano-crystalline cementite in cryogenic drawn wires is believed to be responsible for observed lower strength and better ductility.
机译:为了研究拉伸产生的加热对冷绘制珠光体钢丝的微观结构和力学性能的影响,进行了低温和室温(RT)拉伸。通过扫描电子显微镜(SEM),透射电子显微镜(TEM)和X射线衍射(XRD)分析来检查钢丝的微观结构演变。实验结果表明,随着珠光体的冷拉伸应变层间距的增加,晶体渗碳晶体逐渐转化为无定形状态。在RT和低温附图之间鉴定了微观结构和机械性能的轻微差异。具体地,随着拉伸应变的增加,低温拉伸线具有较低的强度但更好的延展性。例如,低温拉伸线(ε= 2.2)的拉伸强度为约2050MPa,约90mPa低于RT拉伸线的90mPa。另一方面,低温拉伸线已经产生纳米结晶渗碳岩颗粒的较低体积分数。随着纳米结晶渗碳石颗粒可能妨碍脱位的运动,据信在低温拉伸线中纳米结晶渗碳物的较低部分负责观察到的较低强度和更好的延展性。

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