Cr-Mo预合金钢烧结硬化与碳含量的关系

Q4 Materials Science Powder Metallurgy Progress Pub Date : 2020-12-01 DOI:10.2478/pmp-2020-0008
G. Kalss, C. Gierl-Mayer, H. Danninger, G. Stetina
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引用次数: 0

摘要

摘要烧结硬化是一种经济、清洁、环保的粉末冶金零件生产技术。然而,由于冷却速率明显低于例如在水或油淬火中的冷却速率,因此必须使用确保已经在中等冷却速率下形成马氏体的合金系统。本研究采用淬火膨胀法研究了两种不同碳含量的铬预合金钢Fe-3Cr-0.5Mo和Fe-1.5Cr-0.2Mo的淬透性,并绘制了烧结硬化图。结果表明,该参数对3%Cr合金的淬透性有显著影响;特别是在0.3…0.4%的组合C的范围内。相比之下,对于较低的合金体系,即使0.52%的组合C也不足以确保在工业烧结硬化的典型冷却速率下形成马氏体。最后,以工业典型的冷却速率通过烧结硬化制备了冲击试样,并测定了硬度和冲击能量。
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Sinter Hardening of Cr-Mo Pre-Alloyed Steels as a Function of the Carbon Content
Abstract Sinter hardening is a technique that is frequently employed in powder metallurgy parts production since it is an economical, clean, and environmentally friendly procedure. Since the cooling rates are however significantly lower than e.g. in water or oil quenching, alloy systems have to be used that ensure martensite formation already at moderate cooling rates. In the present study, quenching dilatometry was used to investigate the hardenability of two types of Cr pre-alloyed steels, Fe-3Cr-0.5Mo and Fe-1.5Cr-0.2Mo, the carbon content being varied, and sinter hardening diagrams were plotted. It showed that this parameter has a pronounced influence on the hardenability of the 3 % Cr alloy; in particular in the range 0.3…0.4 % combined C. For the lower alloyed system, in contrast, even 0.52 % combined C was insufficient to ensure martensite formation at the cooling rates typical for industrial sinter hardening. Finally, impact test specimens were prepared by sinter hardening at cooling rates typical for industry, and hardness, as well as impact energy, were determined.
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Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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