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The Effect of Chemical Composition of Sintering Atmosphere on the Structure and Mechanical Properties of PM Manganese Steels with Chromium and Molybdenum Additions

机译:烧结气氛化学成分对PM锰钢与铬和钼添加的结构和力学性能

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摘要

The effect of chemical composition of the sintering atmosphere on the density, micro-structure and mechanical properties of Fe-3%Mn-(Cr)-(Mo)-0.3%C is described. Pre-alloyed Asta-loy CrM and CrL, ferromanganese and graphite powders were the starting powders. Following the pressing in rigid dies, compacts (green density approx. 6.8-7.1 g/cm~3) were sintered at 1120 and 1250°C in atmospheres with different H_2 and N_2 content. The dew point of the sintering atmospheres was below -60°C. Subsequently samples were furnace cooled to room temperature. Tensile and transverse rupture strengths, elongation, R_(0.2) yield offset, impact toughness and apparent surface hardness were examined. Following the mechanical tests, to investigate microstruc-ture optical microscopy was employed. As the results show, sintering in nitrogen-rich atmospheres allow to achieve comparable properties of the specimens with those of the specimens sintered in hydrogen-rich atmosphere. It means that it is possible to produce sintered Fe-Mn-Cr-Mo-C PM steels in safe and cheaper nitrogen-rich atmosphere.
机译:描述了烧结气氛的化学成分对Fe-3%Mn-(Cr) - (Mo)-0.3%C的密度,微结构和机械性能的影响。预合金的ASTA-LOY CRM和CRL,铁锰和石墨粉是起始粉末。在刚性模具中压制后,紧凑(绿色密度约为6.8-7.1g / cm〜3)在1120和1250℃下,在大气中烧结,具有不同的H_2和N_2含量。烧结气氛的露点低于-60°C。随后的样品是冷却至室温的炉。拉伸和横向断裂强度,伸长率,R_(0.2)产率偏移,对冲击韧性和表观表面硬度进行检查。在机械试验之后,研究了研究微动力学的光学显微镜。作为结果表明,富含氮气的烧结允许达到标本的可比性与富含富含氢气中的样本的标本。这意味着可以在安全和更便宜的富含氮气氛中生产烧结的Fe-Mn-Cr-Mo-C钢。

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