Effect of addition of rare earth metal on hot tensile properties of low carbon, low alloy martensite

Y. Ohmori, T. Kunitake
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引用次数: 1

Abstract

AbstractThe effects of the addition of rare earth metal (REM) on the stress relief cracking susceptibility of low alloy martensite have been examined by slow strain rate tensile tests. The partial dissolution of MnS by austenitization before quenching at temperatures as high as 1573 K promoted the intergranular decohesive mode of fracture in hot tensile tests, and the stabilization of free S atoms by the addition of REM increases ductility at temperatures between 823 and 890 K and the fracture morphology changes to that of intergranular microvoid coalescence. However, in higher temperature deformation in the range from 890 to 973 K, the addition of REM reduces ductility and increases the fraction of intergranular microvoid coalescence at the expense of the transgranular ductile fracture mode. This can be explained in terms of AlN precipitation in relation to the dispersion of fine MnS particles.
稀土金属添加量对低碳低合金马氏体热拉伸性能的影响
摘要采用慢应变速率拉伸试验研究了稀土金属(REM)对低合金马氏体应力解除开裂敏感性的影响。在1573 K高温淬火前,奥氏体化对MnS的部分溶解促进了热拉伸断裂的晶间解聚模式,而在823 ~ 890 K温度下,加入REM对自由S原子的稳定提高了韧性,断口形貌转变为晶间微孔聚结。然而,在890 ~ 973 K的高温变形中,REM的加入降低了塑性,增加了晶间微空洞合并的比例,牺牲了穿晶韧性断裂模式。这可以解释为AlN的沉淀与细颗粒MnS的分散有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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