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Thermal Plasma Spheroidization of High-Nitrogen Stainless Steel Powder Alloys Synthesized by Mechanical Alloying

机译:机械合金化合成的高氮不锈钢粉合金的热等离子体球化

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This paper presents the results of experimental studies on the treatment of Fe-23Cr-11Mn-1N high-nitrogen stainless steel powder alloys, synthesized by the mechanical alloying (MA) of elemental powders in the flow of a thermal plasma. Fe-23Cr-11Mn-1N high-nitrogen stainless steel powder alloys were prepared by MA in the attritor under an argon atmosphere. For spheroidization of Fe-23Cr-11Mn-1N high-nitrogen stainless steel powder alloys, the TekSphero 15 plant manufactured by Tekna Plasma Systems Inc was used. The studies have shown the possibility of obtaining Fe-23Cr-11Mn-1N high-nitrogen spherical powders steel alloys from the powder obtained by MA. According to the results of a series of experiments, it was found that the results of plasma spheroidization of powders essentially depend on the size of the fraction due to some difference in the particle shape and flowability, and on the gas regime of the plasma torch. It is established that during the plasma spheroidization process, some of the nitrogen leaves the alloy. The loss rate of nitrogen depends on the size of the initial particles.
机译:本文介绍了对Fe-23Cr-11mN-1N高氮不锈钢粉合合金的实验研究结果,通过元素粉末在热等离子体流动中合成的。 Fe-23Cr-11mn-1N高氮不锈钢粉合金由MA在氩气氛下的蒸炉中制备。对于Fe-23CR-11MN-1N高氮不锈钢粉合金的球化,使用Teksphero 15植物由Tekna血浆系统公司制造。研究表明,从MA获得的粉末获得Fe-23Cr-11mn-1N高氮球形粉末合金的可能性。根据一系列实验的结果,发现由于颗粒形状和流动性的某些差异,以及在等离子体炬的气体状态下,粉末的等离子体球化的结果基本上取决于馏分的大小。建立在等离子体球化过程中,一些氮使合金留下。氮的损失率取决于初始颗粒的尺寸。

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