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Processing of Porous Stainless Steel by Compaction Method Using Egg Shell as Space Holder

机译:用蛋壳作为空间夹持器通过压实法加工多孔不锈钢

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Development of lightweight materials becomes essential and has been applied for various structural and functional applications in industrial field since last decade. Porous metal can contribute to lightweight material with great mechanical, thermal and electrical properties. In this study, porous stainless steel was fabricated by using powder metallurgy technique and egg shell as a new potential space holder material. Stainless steel 316L was used as metal matrix powder, egg shells as space holder material, and polyethylene glycol (PEG) as binder to increase the density of the green compacts. The material was mixed using roller mill before the mixtures are ready to the next process of compaction by using uniaxial pressing machine. The samples were sintered to two-stage sintering at temperature 1000°C in a tube furnace. Physical properties of porous stainless steel were studies by conducting density and porosity test. Scanning Electron Microscopy (SEM) apparatus was performed to characterize morphology properties. The results show that, porous stainless steel with the composition of 30 wt. % of egg shells added into formulation yields the highest porosity compared to other compositions and the distribution of pores can be classify as micro-pores.
机译:自去年以来,轻质材料的开发变得必不可少,并已在工业领域的各种结构和功能应用。多孔金属可以为轻质材料有助于具有巨大的机械,热和电性能。在这项研究中,通过使用粉末冶金技术和蛋壳作为新的潜在空间夹具材料来制造多孔不锈钢。不锈钢316L用作金属基质粉末,蛋壳作为空间夹持器材料,以及聚乙二醇(PEG)作为粘合剂,以增加绿色块的密度。通过使用单轴压制机将混合物准备好的辊磨机将该材料混合。将样品在管炉中的温度1000℃下烧结至两级烧结。多孔不锈钢的物理性质通过导电密度和孔隙率试验进行研究。进行扫描电子显微镜(SEM)装置以表征形态学性质。结果表明,多孔不锈钢与30重量%的组成。加入制剂中的蛋壳的百分比与其他组合物相比产生最高的孔隙率,并且孔的分布可以分类为微孔。

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