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Structural and Magnetic Properties of Duplex Stainless steel (UNS S31803) Powders Obtained by high Energy Milling of Chips with Additions of NbC

机译:高能铣削添加NbC的芯片获得的双相不锈钢(UNS S31803)粉末的结构和磁性

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In this study, the high energy mechanical milling was utilized to the production of duplex stainless steel powders from the recycling chips with and without the addition niobium carbide. The effect of milling time and addition carbide on the morphology, particle size and magnetic properties of the powders was investigated. The utilization of the powder metallurgy constitute an important alternative for the reuse of waste in the industrial sector. The milling was realized using a planetary ball mill for 20 hours at a milling speed of 350 rpm and ball-to-powder weight ratio of 15:1were used, and the (0% and 3 wt. %) niobium carbide (NbC) addition. Scanning electron microscopy and particle distribution analysis were used for characterization of morphology and measure of particle size. Also, to analyze the transformations of phases were investigated using the magnetic characterization and x-ray diffraction. The results indicated that the addition of niobium carbide results in the reduction of the particle size of steel of the order of 20%, besides the reduces the transformation of austenite into strain induced martensitic phase.
机译:在这项研究中,高能机械研磨被用于由添加和不添加碳化铌的循环屑生产双相不锈钢粉末。研究了研磨时间和添加碳化物对粉末形貌,粒度和磁性能的影响。粉末冶金的利用构成了工业领域废物再利用的重要选择。使用行星式球磨机以350 rpm的研磨速度进行20小时的研磨,使用的球粉重量比为15:1,并添加了(0%和3 wt。%)碳化铌(NbC) 。使用扫描电子显微镜和颗粒分布分析来表征形态并测量粒度。另外,为了分析相变,还使用了磁特性和X射线衍射进行了研究。结果表明,除了减少奥氏体向应变诱发马氏体相的转变之外,碳化铌的添加还使钢的粒度减小了约20%。

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