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首页> 外文期刊>Materials transactions >Corrosion Behavior of Nickel-Free High Nitrogen Austenitic Stainless Steel in Simulated Biological Environments
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Corrosion Behavior of Nickel-Free High Nitrogen Austenitic Stainless Steel in Simulated Biological Environments

机译:无镍高氮奥氏体不锈钢在模拟生物环境中的腐蚀行为

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The corrosion resistance of the nickel-free high nitrogen austenitic stainless steel without manganese, Fe-23Cr-2Mo-1.5N (mass percent) (HNS) as biomaterials, was evaluated by the polarization test in various electrolytes: 0.9 percent NaCl solution (saline), phosphate buffered saline (PBS(-)), Hanks' solution (Hanks) and Eagle's minimum essential medium (E-MEM). Conventional austenitic stainless steel, 316L, was also polarized for comparison. The both alloys were spontaneously passivated in all electrolytes. The HNS didn't show pitting corrosion in the polarization range in all electrolytes although the 316L showed pitting corrosion. Passive current densities of the HNS in all electrolytes were lower than those of 316L. Therefore, the HNS shows higher passivity and resistance to pitting corrosion than 316L. The passive current density in Hanks of HNS was lower than that in saline, indicating that the protectiveness of surface oxide film increased with the existence of inorganic ions such as phosphate and calcium ions. On the other hand, the passive current density in E-MEM was higher than that in Hanks, but was lower than that in saline. Consequently, the HNS must show high corrosion resistance in viva and be a promising biomaterials.
机译:通过极化测试在各种电解质中评估了无锰的无镍高氮奥氏体不锈钢(Fe-23Cr-2Mo-1.5N(质量百分比)(HNS)作为生物材料)的耐腐蚀性:0.9%NaCl溶液(盐水) ),磷酸盐缓冲液(PBS(-)),汉克斯溶液(Hanks)和伊格尔的基本必需培养基(E-MEM)。常规奥氏体不锈钢316L也被极化以进行比较。两种合金均在所有电解质中自发钝化。尽管316L表现出点蚀,但HNS并未在所有电解质的极化范围内显示出点蚀。所有电解质中HNS的无源电流密度均低于316L。因此,与316L相比,HNS具有更高的钝化性和抗点蚀性。 HNS Hanks中的无源电流密度低于盐水中的无源电流密度,这表明表面氧化物膜的保护性随着诸如磷酸根离子和钙离子等无机离子的存在而增加。另一方面,E-MEM中的无源电流密度高于Hanks,但低于盐水。因此,HNS必须在体内显示出高耐腐蚀性,并且是有前途的生物材料。

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