首页> 外文会议>International Conference on Metallurgy and Materials >MECHANICAL ALLOYING OF HIGH NITROGEN STAINLESS STEEL POWDERS WITH METAL NITRIDES AND NITROGEN-CONTAINING FERROALLOY AS A NITROGEN SOURCE
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MECHANICAL ALLOYING OF HIGH NITROGEN STAINLESS STEEL POWDERS WITH METAL NITRIDES AND NITROGEN-CONTAINING FERROALLOY AS A NITROGEN SOURCE

机译:用金属氮化物和含氮铁合金作为氮源的高氮不锈钢粉末机械合金化

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16Cr - 2Ni - Mn - Mo - xN (wt%) stainless steel powders were synthesized by mechanical alloying (MA) of elemental powders, metal nitride (MeN) powders and nitrogen-containing ferroalloy (FeMeN) powders at argon atmosphere. The microstructural and phase evolution of the powders at different times of alloying and microstructure were studied. The X-Ray diffraction (XRD) and Scanning Electron Microscopy (SEM) analysis showed that chemical homogeneity improves with increasing alloying time and decreasing nitrides powder content. The phase composition changes during the MA up to 30 ks processing time showed dissolving of alloying elements and formation of a-phase solid solution for the sample with low nitrogen contents. Samples with high nitrogen contents have a nitrides inclusion, which partially dissolves with increasing processing time.
机译:通过元素粉末的机械合金(MA),金属氮化物(男性)粉末和含氮在氩气氛下,通过机械合金化(MA)合成了16Cr - 2Ni - Mn - Mo-XN(WT%)不锈钢粉末。 研究了不同时间在合金化和微观结构的粉末的微观结构和相位演化。 X射线衍射(XRD)和扫描电子显微镜(SEM)分析表明,随着合金化时间的增加和氮化物粉末含量降低,所述化学均匀性改善。 在MA期间的相组合物变化,高达30ks加工时间显示溶解合金元素和形成具有低氮含量的样品的相固溶液。 具有高氮含量的样品具有氮化物包合物,其部分溶解随着加工时间的增加。

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