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Analysis of Oxide Inclusions on Medical Grade 316L Stainless Steel using Local Raw

机译:用本地原料分析医用级316L不锈钢中的氧化物夹杂物

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The type of stainless steel that is most commonly used in bone implants is austenitic 316L stainless steel, which has an excellent corrosion resistance and high strength. The Center for Materials Technology, BPPT, in cooperation with a local industry, is currently undertaking research into integrating, refining and alloying processes for the production of medical grade 316L stainless steel, using raw material originating from the ferronickel of Pomalaa. Natural resources of ferronickel, one of the main raw materials for stainless steel, are locally available in Indonesia. Other alloy metals such as steel scrap, ferro chrome and ferro molybdenum are bought in the market. The charging calculation is done by computer-aided simulation, before the melting processes are carried out. The melting facility used is an induction furnace of 250 kg capacity, following the procedures commonly used in the industry. Chemical composition analysis is done by a spectrophotometer. Tensile and hardness tests are conducted, and a microstructure observation is also carried out using an optical microscope and a scanning electron microscope. The selection of raw material inputs and refining and annealing processes affect the quality of the alloy. In our study, we found various forms of oxide inclusions in the stainless steel microstructure: triangular, hexagonal and spherical. The tensile strength of the specimen of 316L stainless steel casting materials was influenced by the presence of oxide phases.
机译:骨植入物中最常用的不锈钢类型是奥氏体316L不锈钢,它具有出色的耐腐蚀性和高强度。 BPPT材料技术中心正在与当地行业合作,正在研究整合,精炼和合金化工艺,以使用来自Pomalaa镍铁的原材料生产医用级316L不锈钢。镍铁是不锈钢的主要原材料之一,其自然资源可在印尼当地获得。市场上还购买了其他合金金属,例如废钢,铬铁和钼铁。在进行熔化过程之前,通过计算机辅助模拟完成装料计算。按照工业上常用的程序,使用的熔炼设备是容量为250 kg的感应炉。化学成分分析通过分光光度计进行。进行拉伸和硬度测试,并且还使用光学显微镜和扫描电子显微镜进行显微组织观察。原材料输入的选择以及精炼和退火工艺会影响合金的质量。在我们的研究中,我们发现了不锈钢微观结构中各种形式的氧化物夹杂物:三角形,六边形和球形。 316L不锈钢铸造材料试样的拉伸强度受氧化物相的存在影响。

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