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Manufacturing of medium carbon steel wires with improved spheroidization by non-circular drawing sequence

机译:用非圆形拉伸序列制造中型碳钢线,具有改进的球化

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A non-circular drawing sequence was investigated for manufacturing medium carbon steel wires with improved spheroidization of cementite for better cold workability compared to those produced by the conventional wire drawing. The wire drawing and non-circular drawing processes with 20% area reduction per each pass were numerically and experimentally applied up to the fourth pass (total area reduction of 59%). The drawn wire by the non-circular drawing sequence shows higher average effective strain value than the one of the wire drawing in the numerical result. To investigate the effect of prior cold working on spheroidization of the drawn wire, spheroidization annealing was conducted at subcritical temperature of 705°C for 2 h for both processes. According to the present investigation, the wires subject to subcritical annealing following the non-circular drawing sequence showed the reduced ultimate tensile strength and micro-hardness, and the enhanced reduction of area compared to those for the wire drawing. From upsetting test results, cold workability was also improved for the annealed specimen processed by the non-circular drawing sequence compared to the one produced by the wire drawing. Scanning electron microscopy (SEM) was employed to investigate microstructure changes during spheroidization annealing. Owing to the SEM results, the spheroidization of the annealed specimens processed by the non-circular drawing sequence was improved than the one produced by the wire drawing. It is demonstrated that the non-circular drawing sequence could manufacture the wires with improved spheroidization of cementite and cold workability compared to the wire drawing in the present work.
机译:研究了非圆形拉伸序列,用于制造介质碳钢线,其具有渗碳石的改善球化,与传统线材拉伸产生的那些相比,用于更好的冷却可加工性。每次通行量为20%面积减少的电线拉伸和非圆形拉伸工艺在数值上,并实验施加到第四次通过(总面积减少59%)。由非圆形拉伸序列的绘制的导线显示了比数值结果中的一个线图的平均有效应变值更高。为了研究先前冷工作对拉伸线的球化的效果,对于两种方法,在705℃的亚临界温度下进行球化退火。根据本发明的研究,在非圆形拉伸序列之后对亚临界退火的电线显示出降低的抗拉强度和微硬度,与电线拉伸相比,面积的增强减少。从扰乱测试结果,对于由线拉伸产生的非圆形拉伸序列处理的退火样本也改善了冷加工性。使用扫描电子显微镜(SEM)来研究球化退火过程中的微观结构变化。由于SEM结果,由非圆形拉伸序列加工的退火试样的球化比用线材拉伸产生的原样。结果证明,与本作工作中的线材拉伸相比,非圆形拉伸序列可以制造具有改进的渗碳石球化和冷加工性的线。

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