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Carbide Precipitation during Tempering and Its Effect on the Wear Loss of a High-Carbon 8 Mass Cr Tool Steel

机译:回火过程中碳化物的析出及其对高碳8质量%Cr工具钢的磨损损失的影响

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摘要

In this paper, the precipitation of carbide and wear loss of high-carbon 8 mass% Cr tool steel at two tempering conditions (i.e., 773–803 K and 823–853 K) were studied by INCA Steel, EPMA-1720H, XRD, and ML-10 tester. The results show that the particles of test steels include the carbides (Cr7C3 and Cr23C6) and carbides nucleated on Al2O3. When carbides are of the same size, the number of carbides in test steel at a tempering temperature of 773–803 K is greater than that at a tempering temperature of 823–853 K, especially when the size of carbides is less than 5 μm. Compared with the test steel tempered at 823–853 K, the distance between adjacent actual particles reduced by 80.6 μm and the maximum amount of reduction was 9.4% for single wear loss at the tempering temperature of 773–803 K. It can be concluded from thermodynamics results that Al2O3 inclusions began to precipitate in liquid, and the precipitation of carbides was at the solid–liquid region. Al2O3 can be used as the nucleation interface of carbide, thus promoting the formation of carbides. During the cooling of molten steel, a lower temperature can increase the difference of actual solubility product bigger than equilibrium solubility product, thus promoting the carbide formation.
机译:本文通过INCA Steel,EPMA-1720H,XRD研究了两种回火条件(即773–803 K和823–853 K)下高碳8质量%Cr工具钢的碳化物沉淀和磨损损失,和ML-10测试仪。结果表明,试验钢的颗粒包括碳化物(Cr7C3和Cr23C6)和在Al2O3上成核的碳化物。当碳化物的尺寸相同时,在773-803 K的回火温度下,试验钢中的碳化物数量要比在823-853 K的回火温度下的数量更多,特别是当碳化物的尺寸小于5μm时。与在823–853 K上回火的试验钢相比,在773–803 K的回火温度下,单个磨损量减少时,相邻实际颗粒之间的距离减少了80.6μm,最大减少量为9.4%。热力学结果表明,Al2O3夹杂物开始在液体中沉淀,而碳化物的沉淀则在固液区域。 Al 2 O 3可以用作碳化物的成核界面,从而促进碳化物的形成。在钢水冷却过程中,较低的温度会增加实际溶解度积的差异,使之大于平衡溶解度积,从而促进碳化物的形成。

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