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Influence of production process chain on grain size stability of a microalloyed 20CrMo5 case hardening steel

机译:生产工艺链对20CrMo5微合金表面硬化钢晶粒尺寸稳定性的影响

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Within the scope of a research project in cooperation with steelmakers and steel users, the whole production process chain of gear parts was investigated concerning the influence on the grain size stability. Three different case hardening steels were investigated in a basic and a microalloyed state. This paper discusses the results gained with a case hardening steel with a new alloying concept, called 20CrMo5. The grain size stabilities of four different industrially produced states of the microalloyed material are compared to the standard material produced in a standard production chain. As a result, it emerged that additional annealing treatments above the eutectoid temperature within the production process chain reduce the grain stability of microalloyed steels.
机译:在与钢铁制造商和钢铁用户合作的研究项目范围内,对齿轮零件的整个生产过程链进行了研究,以研究其对晶粒尺寸稳定性的影响。在基本和微合金状态下研究了三种不同的表面硬化钢。本文讨论了采用一种新的合金化概念称为20CrMo5的表面硬化钢所获得的结果。将四种不同工业生产状态的微合金材料的晶粒尺寸稳定性与标准生产链中生产的标准材料进行比较。结果表明,在生产过程链中在共析温度以上进行额外的退火处理会降低微合金钢的晶粒稳定性。

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