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Effect of Ring Configuration on the Deviation in Cooling Rate and Mechanical Properties of a Wire Rod during the Stelmor Cooling Process

机译:环形配置对碑架冷却过程中线材冷却速率和力学性能的影响

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摘要

The temperature of a wire ring with various ring pitch was measured with thermocouples using the experimentally simulated Stelmor cooling process to determine the origin of deviation in cooling rate and mechanical properties of the wire ring. The measured temperature histories of each region within the wire ring were analyzed via a numerical simulation and confirmed based on tensile tests and microstructure evolution. The deviation in cooling rate and mechanical properties of the wire ring mainly occurred due to the upper edge region that cooled very slowly, particularly when the ring pitch was small. The head and tail regions of the wire ring tend to cool fast due to lower packing density, and thus, the strength of the wire rod exceeds that of the middle region. Four conceptual solutions were proposed to decrease the deviation in mechanical properties of the wire ring by reducing the effect of the upper edge region and head/tail regions. These suggestions can aid in designing cooling and working conditions to produce high-quality wire rod steels.
机译:使用实验模拟的Stelmor冷却工艺用热电偶测量具有各种环距的线环的温度,以确定焊速和线环的机械性能的偏差起源。通过数值模拟分析线环内的每个区域的测量温度历史,并基于拉伸试验和微观结构演化来证实。电线环的冷却速率和机械性能的偏差主要发生在冷却的上边缘区域非常缓慢,特别是当环距小时。由于较低的填充密度,线环的头部和尾部倾向于快速冷却,因此,线材的强度超过中间区域的强度。提出了四种概念解,以通过降低上边缘区域和头部/尾部区域的效果来降低线环的机械性能偏差。这些建议可以帮助设计冷却和工作条件以生产高质量的线材钢材。

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