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首页> 外文期刊>Journal of Materials Science >Reverse ageing in hot-rolled high-carbon steel wire rod
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Reverse ageing in hot-rolled high-carbon steel wire rod

机译:热轧高碳钢盘条的时效

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摘要

Effects of ageing time on area reduction of hot-rolled high-carbon steel wire rods were studied. Tensile testing and X-ray study of as-rolled wire rods were carried out. Gleeble simulation and hydrogen content determination were also conducted. The results show that the reduction of area increases with ageing time at room temperature and the UTS remain unchanged which are contrary to normal ageing or strain ageing. In normal ageing, the ductility drops and the yield strength increases. In this study, the Gleeble simulation and X-ray data support that the transformation from pearlite to austenite is normal and there is no evidence of retained austenite or martensitic transformation in the steel. The hydrogen content drops as the time passes. The drop is rapid in first few days and this drop increases the ductility in rolled high-carbon wire rod. Hydrogen reduces the cohesive strength and the pressure generated due to transformation of atomic hydrogen-to-molecular state combines with tensile stress and causes cleavage or mixed type of fracture.
机译:研究了时效时间对热轧高碳钢盘条减少的影响。进行了轧制线材的拉伸测试和X射线研究。还进行了挠性模拟和氢含量测定。结果表明,面积的减小随着室温下老化时间的增加而增加,而UTS保持不变,这与正常老化或应变老化相反。在正常时效下,延展性下降,屈服强度增加。在这项研究中,Gleeble模拟和X射线数据支持从珠光体到奥氏体的转变是正常的,并且没有证据表明钢中存在残留的奥氏体或马氏体转变。随着时间的流逝,氢含量下降。刚开始的几天下降很快,这种下降增加了轧制高碳线材的延展性。氢降低内聚强度,并且由于原子氢到分子态的转变而产生的压力与拉伸应力相结合,并导致分裂或混合型断裂。

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