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Lightweight design of high strength medical nickel free stainless steel implants

机译:高强度医用无镍不锈钢植入物的轻量化设计

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Introduction High nitrogen nickel free stainless steel has begun to be used in clinic, which possesses excellent mechanical properties, corrosion resistance and biocompatibility. Especially its strength is two times more than that of the conventional 316L stainless steel, but this advantage is not fully used in optimization of both the structure and the size of the implant devices. Materials and experiments The Fe-18Cr-15Mn-2Mo-0.85N, developed by Institute of Metal Research, Chinese Academy of Science, was melted in a 50 kg pressurized induction melting furnace under 1 MPa pure nitrogen gas pressure, then was forged, rolled and solution treated to obtain a homogeneous austenitic microstructure. In this paper, the mechanical properties of nickel free stanless steel was studied firstly, Lightweight design model of nickel free stainless steel implants was set up using bone plate, and the effect of dimensional of stainless steel bone plate on the biomechanical behavior was studied by means of finite element analysis, finally the effects of lightweight on bone plate biomechanical behavior and implantation performance were studied and veriefied through animal tests. Conclusion The results showed that high nitrogen nickel free stainless steel has excellent mechanical properties, especially after cold deformation. The high nitrogen steel bone plate with 0.8mm in thickness still has better bending strength, compared with 316L stainless steel bone plate with 1.1mm in thickness. The preliminary animal test result also showed the high nitrogen steel bone plate with 0.9mm in thickness (lightweight ratio is about 18%) has better biomechanical compatibility, the lightweight design of High nitrogen nickel free stainless steel implants will promote the development and potential clinical application of high strength stainless steel implant devices.
机译:简介高氮无镍不锈钢已开始在临床中使用,它具有出色的机械性能,耐腐蚀性和生物相容性。特别是它的强度是传统316L不锈钢的两倍,但是在优化植入装置的结构和尺寸方面,这一优势并未得到充分利用。材料与实验将中国科学院金属研究所开发的Fe-18Cr-15Mn-2Mo-0.85N在1kg纯氮气压力下于50kg加压感应熔炼炉中熔融,然后进行锻造,轧制。和固溶处理以获得均匀的奥氏体微观结构。本文首先研究了无镍不锈钢的力学性能,利用骨板建立了无镍不锈钢植入物的轻量化设计模型,并研究了不锈钢骨板尺寸对生物力学行为的影响。有限元分析的基础上,最后通过动物试验研究并验证了轻量化对骨板生物力学行为和植入性能的影响。结论结果表明,高氮无镍不锈钢具有优异的机械性能,尤其是冷变形后。与厚度为1.1mm的316L不锈钢骨板相比,厚度为0.8mm的高氮钢骨板仍具有更好的抗弯强度。初步的动物实验结果还表明,厚度为0.9mm(重量比约为18%)的高氮钢骨板具有更好的生物力学相容性,无氮高镍不锈钢植入物的轻量化设计将促进其发展和潜在的临床应用高强度不锈钢植入装置。

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