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A New Method to Recycle Stainless–Steel Duplex UNS S31803 Chips

机译:回收不锈钢双相UNS S31803芯片的新方法

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Due to the increased consumption of raw materials, energy, and the waste it generates, recycling has become very important and fundamental for the environment and the industrial sector. The production of duplex stainless–steel powders with the addition of vanadium carbide in the high energy mechanical milling process is a new method for recycling materials for the manufacture of components in the industrial sector. This study aims to reuse the chips from the duplex stainless–steel UNS S31803 by powder metallurgy with the addition of Vanadium carbide (VC). The mechanical milling was performed using a planetary ball mill for 50 h at a milling speed of 350 rpm and a ball-to-powder weight ratio of 20:1, and the addition of 3 wt % of VC. The material submitted to milling with an addition of carbide has a particle size of less than 140 μm. After milling, the sample went through a stress relief treatment performed at 1050 °C for 1 h and the isostatic compaction process loaded with 300 MPa. The sintered powders and material was characterized by scanning electron microscopy, X-ray diffraction, and micro-hardness tests. The milling process with an addition of 3% VC produced a particle size smaller than the initial chip size. The measurement of micrometric sizes obtained was between 26 and 132 μm. The sintered material had a measurement of porosity evaluated at 15%. The obtained density of the material was 84% compared to the initial density of the material as stainless–steel duplex UNS S31803. The value of the microhardness measurement was 232 HV. The material submitted for grinding presented the formation of a martensitic structure and after the thermal treatment, the presence of ferrite and austenite phases was observed. Thus, in conclusion, this study demonstrates the efficacy in the production of a metal-ceramic composite using a new method to recycle stainless–steel duplex UNS S31803 chips.
机译:由于原材料,能源及其产生的废物消耗的增加,回收对于环境和工业部门已经变得非常重要和基础。在高能机械铣削过程中,添加碳化钒生产双相不锈钢粉末是一种用于工业领域中用于组件制造的材料回收的新方法。这项研究的目的是通过粉末冶金与碳化钒(VC)的再利用来重复利用双相不锈钢UNS S31803中的切屑。机械研磨是使用行星式球磨机以350 rpm的研磨速度和20:1的球粉重量比,并添加3 wt%的VC进行50 h。加入碳化物进行研磨的材料的粒径小于140μm。研磨后,样品经过在1050°C下进行的应力消除处理1 h,并且等静压过程承受300 MPa的载荷。通过扫描电子显微镜,X射线衍射和显微硬度测试对烧结的粉末和材料进行了表征。加入3%VC的研磨过程产生的颗粒尺寸小于初始切屑尺寸。测得的微米尺寸在26至132μm之间。烧结材料的孔隙率测量值估计为15%。与不锈钢双相钢UNS S31803的初始密度相比,该材料的密度为84%。显微硬度测量值为232 HV。提交用于磨削的材料呈现出马氏体结构的形成,并且在热处理之后,观察到铁素体和奥氏体相的存在。因此,总而言之,这项研究证明了使用一种新的方法来回收不锈钢双相不锈钢UNS S31803芯片的金属陶瓷复合材料的生产效率。

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