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A review on nickel-free nitrogen containing austenitic stainless steels for biomedical applications

机译:生物医学应用的无镍含氮奥氏体不锈钢综述

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摘要

The field of biomaterials has become a vital area, as these materials can enhance the quality and longevity of human life. Metallic materials are often used as biomaterials to replace structural components of the human body. Stainless steels, cobalt-chromium alloys, commercially pure titanium and its alloys are typical metallic biomaterials that are being used for implant devices. Stainless steels have been widely used as biomaterials because of their very low cost as compared to other metallic materials, good mechanical and corrosion resistant properties and adequate biocompatibility. However, the adverse effects of nickel ions being released into the human body have promoted the development of "nickel-free nitrogen containing austenitic stainless steels" for medical applications. Nitrogen not only replaces nickel for austenitic structure stability but also much improves steel properties. Here we review the harmful effects associated with nickel and emphatically the advantages of nitrogen in stainless steel, as well as the development of nickel-free nitrogen containing stainless steels for medical applications. By combining the benefits of stable austenitic structure, high strength, better corrosion and wear resistance and superior biocompatibility in comparison to the currently used austenitic stainless steel (e.g. 316L), the newly developed nickel-free high nitrogen austenitic stainless steel is a reliable substitute for the conventionally used medical stainless steels.
机译:生物材料领域已成为至关重要的领域,因为这些材料可以提高人类的生活质量和寿命。金属材料通常被用作生物材料来代替人体的结构成分。不锈钢,钴铬合金,商业纯钛及其合金是用于植入设备的典型金属生物材料。不锈钢由于与其他金属材料相比非常低的成本,良好的机械和耐腐蚀性能以及足够的生物相容性而被广泛用作生物材料。然而,镍离子释放到人体中的不利影响促进了用于医疗应用的“无镍含氮奥氏体不锈钢”的发展。氮不仅可以代替镍以提高奥氏体组织的稳定性,而且可以大大改善钢的性能。在这里,我们回顾了与镍相关的有害影响,着重介绍了氮在不锈钢中的优势,以及用于医疗应用的无镍含氮不锈钢的发展。与目前使用的奥氏体不锈钢(例如316L)相比,结合了稳定的奥氏体结构,高强度,更好的耐腐蚀性和耐磨性以及优异的生物相容性的优点,新开发的无镍高氮奥氏体不锈钢是可靠的替代品。常规使用的医用不锈钢。

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