Sintered Structural Steels Containing Mn, Cr And Mo – The Summary of the Investigations

Q4 Materials Science Powder Metallurgy Progress Pub Date : 2016-12-01 DOI:10.1515/pmp-2016-0006
M. Sułowski
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Abstract

Abstract The paper is presented the development and method of production of modern, Ni-free sintered structural steels which contain carbide forming alloying elements (Cr) with high affinity for oxygen (Cr, Mn) and the much smaller additive of an expensive alloying element (Mo), enabling the production of structural sintered steels in commercial belt furnaces, using safe sintering atmospheres. The investigations reported deal with the analysis of microstructure and mechanical properties of these sintered structural steels produced in different processing conditions, especially modification of chemical composition of sintering atmosphere and also the connections between the microstructure of sintered material and its mechanical properties. This analysis was done to propose the appropriate chemical composition of sintered Ni-free steels with properties which are comparable or even better than those of sintered structural steels containing rich and carcinogenic nickel. The investigations of PM Mn- Cr-Mo steels were preceded by those on Mn steels.
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含锰、铬、钼烧结结构钢研究综述
摘要本文介绍了现代无镍烧结结构钢的发展和生产方法,这种钢含有对氧具有高亲和力的碳化物形成合金元素(Cr) (Cr, Mn)和更少的昂贵合金元素(Mo)添加剂,从而能够在商业带式炉中使用安全的烧结气氛生产结构烧结钢。本文研究了不同工艺条件下烧结结构钢的显微组织和力学性能,特别是烧结气氛的化学成分的改变,以及烧结材料的显微组织与力学性能之间的关系。这一分析是为了提出适当的无镍烧结钢的化学成分,这些钢的性能与含有丰富的致癌镍的烧结结构钢相当甚至更好。对PM Mn- Cr-Mo钢的研究先于对Mn钢的研究。
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来源期刊
Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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