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Metal injection molding method of Ni-free austenitic stainless steel II--Microstructure and mechanical properties

机译:无Ni - 无奥氏体不锈钢II的金属注塑成型方法 - 微观结构和机械性能

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Microstructure and mechanical properties of high nitrogen steels whose chemical composition were Fe-17Cr-12Mn-3Mo and that was produced by using metal injection molding method and nitrogen absorption methods were examined. A compact which is furnace cooled from 1573 K has a brittle surface layer with high chromium and nitrogen contents but the surface layer disappears when the compact is held at 1473 K. The compact which is furnace cooled at 1473 K is observed precipitates in the grains and the grain boundary, while the compact which is quenched at 1473 K shows homogeneous microstructure. In the heat treatments at 1473 K for 2, 5, and 10 h, the nitrogen content becomes higher with increasing of holding time. In the holding times of 5 and 10 h, the microstructure is austenite. In the tensile tests, tensile strength becomes larger with increasing of nitrogen content. In the specimen which is conducted the heat treatment at 1473 K for 10 h, tensile strength is about 1,000 MPa and elongation is 80 percent , which shows better balance of strength and elongation than SUS304 and SUS316 steels.
机译:研究了化学成分为Fe-17Cr-12Mn-3Mo的高氮钢的微观结构和力学性能,并通过使用金属注射成型方法和氮吸收方法制备的高氮钢。作为从1573k冷却的炉子的紧凑型具有具有高铬和氮含量的脆性表面层,但是当压块保持在1473k时,表面层消失。观察到在1473k的炉子下冷却的压块,并在谷物中沉淀晶界,而在1473k下淬火的紧凑型显示均匀的微观结构。在1473k的热处理中,对于2,5和10小时,随着保持时间的增加,氮含量变得更高。在5和10小时的保持时间中,微观结构是奥氏体。在拉伸试验中,随着氮含量的增加,拉伸强度变大。在将热处理的样品中在1473K进行10小时的试样中,拉伸强度为约1,000MPa,伸长率为80%,这表明比SUS304和SUS316钢的强度和伸长率更好。

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