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The tempering parameter for evaluating softening of hot and warm forging die steels

机译:用于评估热锻模具和热锻模具钢软化的回火参数

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The tempering characteristics of three different hot and warm forging die steels (FX, 2714, and WF) were systematically studied over a range of temperatures (316-677℃) and a range of times (1-300 h). The softening rate for each steel was determined by the change in room temperature hardness. In this study, the hardness data are quantitatively related to the tempering parameter via regression analysis. The tempering parameter (also known as the Hollomon-Jaffe parameter or the Larson-Miller parameter) accounts for the effects of both tempering time and tempering temperature. Room temperature hardness is a measure of the microstructural change that occurs during the tempering process. Results from this study show a bilinear softening as a function of the tempering parameter. For hot and warm forging application the second portion of the curve is more applicable, since these die steels are tempered to some extent before initial use. The slope of the curve can be used as a measure of softening, which is one of the contributing factors on how well the die steel will perform in actual forging operations. These results indicate that WF has the highest resistance to softening during use, FX is somewhat less resistance to softening, and 2714 is the least resistant of the three die steels studied.
机译:在温度范围(316-677℃)和时间范围(1-300 h)内,系统地研究了三种不同的热锻模具和热锻模具钢(FX,2714和WF)的回火特性。每种钢的软化率取决于室温硬度的变化。在这项研究中,通过回归分析将硬度数据与回火参数定量相关。回火参数(也称为Hollomon-Jaffe参数或Larson-Miller参数)说明了回火时间和回火温度的影响。室温硬度是回火过程中发生的微观结构变化的量度。这项研究的结果表明,双线性软化是回火参数的函数。对于热锻和热锻应用,曲线的第二部分更适用,因为这些模具钢在初次使用之前已进行了一定程度的回火。曲线的斜率可以用作软化的量度,这是决定模具钢在实际锻造操作中表现如何的重要因素之一。这些结果表明,在使用过程中,WF具有最高的抗软化性,而FX的抗软化性稍差,而2714是研究的三种模具钢中抗性最低的。

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