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Processing and properties of sinter hardened Fe-Cr-Mo steels with admixed extra-fine nickel

机译:混合超细镍烧结硬化Fe-Cr-Mo钢的加工和性能

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The processing and properties of chromium-molybdenum, powder metallurgy steels with admixed extra-fine nickel (XF Ni) were investigated. Prealloyed Fe-1.5Cr-0.2Mo powder was blended with different quantities of XF Ni, while a hybrid steel with lower Cr content was prepared by blending Fe-1.5Cr-0.2Mo and Fe-0.5Mo prealloyed powders, with additions of XF Ni and copper powders. These steels were compacted into different part shapes in order to evaluate the effect of part thickness on sinterhardening behaviour. These parts were also subjected to different cooling rates after sintering. This study showed that additions of XF Ni improve the compressibility, densification behaviour and mechanical properties of Cr-Mo steels. Furthermore, the properties of the hybrid steel were shown to be either equal to or greater than those of the reference material. Hardenability of all steels was sufficiently high such that part thickness was seen to have negligible impact. Higher cooling rates generally resulted in improved mechanical properties.
机译:研究了混合有超细镍(XF Ni)的铬钼粉末冶金钢的工艺和性能。将预合金化的Fe-1.5Cr-0.2Mo粉末与不同数量的XF Ni混合,同时通过将Fe-1.5Cr-0.2Mo和Fe-0.5Mo的预合金粉末与XF Ni混合来制备低Cr含量的杂化钢。和铜粉。将这些钢压制成不同的零件形状,以评估零件厚度对烧结硬化行为的影响。这些零件在烧结后还经受不同的冷却速度。这项研究表明,添加XF Ni可以改善Cr-Mo钢的可压缩性,致密化行为和力学性能。此外,杂化钢的性能显示为等于或大于参考材料的性能。所有钢的淬透性都很高,以至于零件厚度的影响可忽略不计。较高的冷却速率通常导致改善的机械性能。

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