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Surface Integrity and Corrosion Performance of Biomedical Magnesium-Calcium Alloy Processed by Hybrid Dry Cutting-Finish Burnishing

机译:用杂交干切削抛光加工生物医学镁 - 钙合金的表面完整性和腐蚀性能

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Biodegradable magnesium-calcium (MgCa) alloy is a very attractive orthopedic biomaterial compared to permanent metallic alloys. However, the critical issue is that MgCa alloy corrodes too fast in the human organism. Compared to dry cutting, the synergistic dry cuttmg-finish burnishing can significantly improve corrosion perfomiance of MgCa0.8 (wt %) alloy by producing a superior surface integrity including good surface finish, high compressive hook-shaped residual stress profile, extended strain hardening in subsurface, and little change of grain size. The measured polarization curves, surface micrographs, and element distributions of the corroded surfaces by burnishing show an increasing and uniform corrosion resistance to simulated body fluid.
机译:可生物降解的镁 - 钙(MgCA)合金是与永久金属合金相比非常有吸引力的整形外科生物材料。然而,关键问题是MGCA合金在人体中腐蚀太快。与干切割相比,协同干切割结尾抛光可以通过生产良好的表面光洁度,高压缩钩形残余应力曲线,延长应变硬化,显着改善MgCA0.8(WT%)合金的腐蚀性能。地下,谷物尺寸的变化很小。通过吹塑的腐蚀表面的测量偏振曲线,表面显微照片和元件分布显示了模拟体液的增加和均匀的耐腐蚀性。

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