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首页> 外文期刊>Sensors and materials >Improvement in Performance of Cold-drawn SCM435 Alloy Steel Wires through Optimization of Intercritical Annealing Parameters
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Improvement in Performance of Cold-drawn SCM435 Alloy Steel Wires through Optimization of Intercritical Annealing Parameters

机译:通过优化临界间退火参数来改善SCM435合金冷拔钢丝的性能

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摘要

The cold-forging quality alloy steel wire is generally fabricated by drawing, followed by intercritical annealing treatment to achieve the necessary formability for cold forming. The quality of a spheroidized annealing wire affects the forming quality of fasteners. The Taguchi method along with the analysis of variance (ANOVA) is used to obtain optimal intercritical annealing parameters to improve the performance of cold-drawn SCM435 alloy steel wires. The spheroidized annealing qualities of alloy steel wires are affected by various factors, such as preheating rate, spheroidized annealing temperature, prolonged heating time, holding temperature and time, low cooling rate, and temperature. The spheroidized annealing conditions affect the quality characteristics of alloy steel wires, such as tensile strength, hardness, and ductility. A series of experimental tests on cold-drawn SCM435 alloy steel wires is carried out in a commercial bell furnace with protective hydrogen atmosphere. The temperatures are precisely controlled within +/- 2 degrees C and a closed-loop atmosphere control system is applied to determine the optimal atmosphere flow settings by using a zirconium oxide sensor in conjunction with annealing process equilibrium. It is experimentally revealed that the spheroidized annealing temperature, prolonged heating time, and holding temperature significantly affect the quality of annealed cold-drawn SCM435 alloy steel wires. The optimal combination of intercritical process parameters leads to obtaining the optimal mean tensile strength of 527.1 MPa, the optimal mean hardness of 76.2 HRB, and the optimal mean ductility of 0.437 with a shorter processing time. The variations of the properties are significantly reduced to achieve a much even quality for annealed wires. The new spheroidizing parameter settings evidently improve the performance measures over their values at the original settings. The performance of cold-drawn SCM435 alloy steel wires is substantially improved.
机译:冷锻优质合金钢丝通常是通过拉深加工而成,然后进行临界退火处理以实现冷成型所需的可成形性。球形退火线的质量会影响紧固件的成型质量。 Taguchi方法与方差分析(ANOVA)一起用于获得最佳的临界退火参数,以改善冷拔SCM435合金钢丝的性能。合金钢丝的球化退火质量受预热速率,球化退火温度,加热时间延长,保温温度和时间,冷却速率低和温度等因素影响。球化退火条件会影响合金钢丝的质量特性,例如拉伸强度,硬度和延展性。在具有保护性氢气氛的商用钟罩炉中,对冷拔SCM435合金钢丝进行了一系列实验测试。将温度精确地控制在+/- 2摄氏度内,并应用闭环气氛控制系统,通过使用氧化锆传感器与退火过程平衡相结合来确定最佳的气氛流量设置。实验表明,球化退火温度,延长的加热时间和保持温度会显着影响退火冷拉SCM435合金钢丝的质量。临界工艺参数的最佳组合可以在较短的加工时间内获得最佳平均抗拉强度527.1 MPa,最佳平均硬度76.2 HRB和最佳平均延展性0.437。显着降低了性能变化,以使退火线达到更高的质量。新的球化参数设置明显改善了其原始设置下的性能指标。 SCM435合金冷拔钢丝的性能得到显着改善。

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