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Comparative study of warm and hot cross-wedge rolling:numerical simulation and experimental trial

机译:温暖和热交叉楔入的比较研究:数值模拟与实验试验

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摘要

The forming temperature of cross-wedge rolling (CWR) usually ranges from 950 to 1150 A degrees C, but reducing the forming temperature has some advantages. This paper presents a comprehensive study of warm and hot cross-wedge rolling by using high-strength bolts as a case. Numerical simulation and experimental trials were conducted to make a detailed comparison of warm and hot cross-wedge rolling. Forming quality, microstructure, and mechanical properties of the rolled rods were investigated using scanning electron microscopy (SEM) and tensile testing. The results show that the rolling force and torque of warm cross-wedge rolling (WCWR) are more than three times greater than those of hot cross-wedge rolling (HCWR), and the workpiece rolled by WCWR shows more pit and stacking defects but fewer central cavities. The dispersing spheroidized cementite on ferrite matrix generated in WCWR results in decreased hardness and tensile strength of the rolled rods and a significant increase of elongation, which improves subsequent machinability.
机译:交叉楔形轧制(CWR)的成形温度通常为950至1150℃,但降低成形温度具有一些优点。本文采用高强度螺栓为例,综合了研究了温暖和热交叉楔形轧制。进行了数值模拟和实验试验,以详细比较温暖和热交叉楔形轧制。使用扫描电子显微镜(SEM)和拉伸试验研究了轧制棒的形成质量,微观结构和机械性能。结果表明,温暖交叉楔形轧制(WCWR)的轧制力和扭矩大于热交叉楔形轧制(HCWR)的三倍以上,由WCWR轧制的工件显示更多的凹坑和堆叠缺陷,但较少中心腔。在WCWR中产生的铁氧体基质上的分散球化渗透晶铁矿导致轧制棒的硬度和拉伸强度降低,伸长率显着增加,这提高了随后的可加工性。

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