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The novel process of spheroidizing-critical annealing used to optimize the properties of carburized steel and its effect on hardening mechanism of quenching and tempering

机译:用于优化渗碳钢性能的球化-临界退火新工艺及其对淬火和回火硬化机理的影响

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摘要

A new annealing process, spheroidation-critical annealing, was designed to optimize the properties of carburized steel 15CrNiMo instead of the traditional process. In this study, four factors and three levels of orthogonal experiment were used to design annealing experiments with different parameters, and the optimal combination of performance was obtained, giving consideration to both surface hardness and core toughness. After complete heat treatment, the vickers hardness of the surface of experimental steel could reach 752HV, and the impact energy of the core could reach 175 J/cm(2). On this basis, the effects of new annealing process and traditional high temperature tempering process on the machinability of the experimental (the surface hardness of the experimental is taken as the performance index after the treatment of the two processes) are studied. At the same time, the effects of two processes on the surface hardening mechanism and core toughness of subsequent quenching and tempering processes of experimental steel are discussed. The results show that the new annealing process can hardly reduce the cutting property of the surface of experimental steel (after two kinds of process, the surface of the experimental steel vickers hardness is 302 HV and 325 HV), through the way of stable carbides, promote the quenching process of experimental steel surface high carbon martensite hardened, promoted 70 HV hardness compared with the traditional process. However, the toughness of the experimental core is insensitive to the two processes, so the new process can improve the surface hardness without reducing the toughness of the experimental.
机译:设计了一种新的退火工艺,即球化临界退火,以优化渗碳钢15CrNiMo的性能,而不是传统工艺。本研究采用四个因素和三个水平的正交试验设计不同参数的退火实验,并在兼顾表面硬度和芯部韧性的前提下,获得了最佳的性能组合。经过完全热处理,实验钢表面的维氏硬度可以达到752HV,铁心的冲击能可以达到175 J / cm(2)。在此基础上,研究了新的退火工艺和传统的高温回火工艺对实验机加工性能的影响(以实验机的表面硬度为两种工艺处理后的性能指标)。同时,讨论了两种工艺对随后的实验钢淬火和回火工艺的表面硬化机理和芯韧性的影响。结果表明,新的退火工艺几乎不会通过稳定碳化物的方式降低实验钢表面的切削性能(经过两种处理后,实验钢的维氏硬度分别为302 HV和325 HV),促进了实验钢表面淬火过程中高碳马氏体的硬化,与传统工艺相比提高了70 HV硬度。但是,实验芯的韧性对这两个过程不敏感,因此新工艺可以在不降低实验韧性的情况下提高表面硬度。

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