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NICKEL AND COPPER-FREE SINTERED STRUCTURAL STEELS CONTAINING Mn, Cr, Si, AND Mo DEVELOPED FOR HIGH PERFORMANCE APPLICATIONS

机译:含有Mn,Cr,Si和Mo的镍和无铜烧结结构钢用于高性能应用

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In an attempt to study the sinterability of potential high-strength nickel-free sintered structural steels containing Mn, Cr, Si and Mo compacts were prepared based on sponge and water atomised iron powders and on Astaloy prealloyed powders. To these were admixed ferromanganese, ferroslicon, and graphite. The samples were sintered at temperatures 1120 and 1250 degrees C in laboratory tube furnaces in hydrogen, hydrogen-nitrogen atmospheres with dew points better than -60 degrees C or in nitrogen in a semiclosed container in a local microatmosphere. After sintering the samples were slowly cooled or sinterhardened. Generally resultant microstructures were inhomogeneous, consisted of pearlite/bainite/martensite, but were characterised by an absence of oxide networks. Sintering studies performed over a range of compositions have shown that superior strength, ranging beyond 900 MPa, along with reasonable tensile elongation, can be achieved with these new steels.
机译:在研究含有Mn,Cr,Si和Mo紧凑型的潜在高强度镍烧结结构钢的烧结性的尝试是基于海绵和水雾化的铁粉和阿斯洛伊替代的粉末制备。 对这些是混合的铁霉喃,硼氏霉素和石墨。 在氢气的实验室管炉中,在氢气管炉中的温度1120和1250℃下烧结样品,在局部微型晶圈的半成体中的露点比-60℃或氮气中的露点。 在烧结后,将样品缓慢冷却或干燥。 通常,得到的微观结构不均匀,由珠光体/贝氏体/马氏体组成,但是通过没有氧化物网络的表征。 在一系列组合物中进行的烧结研究表明,通过这些新钢可以实现优异的强度,范围超过900MPa,以及合理的拉伸伸长率。

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