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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Improvements in Micro structure Homogenization and Mechanical Properties of Diffusion-Alloyed Steel Compact by the Addition of Cr-Containing Powders
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Improvements in Micro structure Homogenization and Mechanical Properties of Diffusion-Alloyed Steel Compact by the Addition of Cr-Containing Powders

机译:添加含铬粉末改善扩散合金钢坯的组织均匀化和力学性能

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摘要

The use of diffusion-alloyed powders for fabricating powder metal parts, despite alleviating the segregation problem of the alloying elements while retaining good compressibility, still cannot attain homogeneous microstructure in as-sintered products. The presence of soft Ni-rich areas and pores causes poor mechanical properties compared to those of wrought steel counterparts. This study investigated the effects of adding 0.5 wt pct Cr, which was introduced in the 316L stainless steel powder form, on the microstructure and mechanical properties of diffusion-alloyed Fe-4Ni-1.5Cu-0.5Mo-0.5C (Metal Powder Industries Federation (MPIF) FD-0405) steels. The results show that weak Ni-rich areas were present in the Cr-free specimen when sintered at 1120 deg C and 1250 deg C. These areas were lean in carbon because of the strong repelling effect between Ni and C. With the addition of 316L powders, the Cr was uniformly distributed and helped eliminate the soft Ni-rich areas, particularly in specimens sintered at 1250 deg C. The distribution of carbon also improved. With a more uniform distribution of Ni and C, and more homogeneous microstructure, which consisted mainly of bainite and martensite, the mechanical properties of the Fe-4Ni-1.5Cu-0.5Mo-0.5C diffusion alloy steels were improved significantly.
机译:尽管减轻了合金元素的偏析问题,同时保持了良好的可压缩性,但使用扩散合金粉末来制造粉末金属零件仍然不能在烧结产品中获得均匀的微观结构。与变形钢对应物相比,富含镍的柔软区域和孔的存在会导致较差的机械性能。这项研究调查了以316L不锈钢粉末形式引入的0.5 wt pct Cr对扩散合金Fe-4Ni-1.5Cu-0.5Mo-0.5C的组织和力学性能的影响(金属粉末工业联合会(MPIF)FD-0405)钢。结果表明,在1120℃和1250℃烧结时,无铬试样中存在弱的富Ni区域。由于Ni和C之间的强排斥作用,这些区域贫碳。添加316L粉末中的Cr分布均匀,有助于消除柔软的富Ni区域,特别是在1250℃烧结的样品中。碳的分布也得到了改善。由于Ni和C的分布更加均匀,并且组织主要由贝氏体和马氏体组成,因此组织更加均匀,Fe-4Ni-1.5Cu-0.5Mo-0.5C扩散合金钢的力学性能得到了显着改善。

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