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Corrosion and tribocorrosion behavior of CoCrMo alloys used as hip joint implant materials under simulated body fluids: Effect of proteins and normal load

机译:COCRMO合金用作模拟体液下用作髋关节植入材料的COCRMO合金的腐蚀和腐蚀行为:蛋白质和正常载荷的影响

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The release of metal ions and wear debris are raising serious concerns on metal-on-metal (MoM) hip prosthesis. The purpose of this work was to evaluate the corrosion and tribocorrosion behavior, of a low-carbon CoCrMo alloy, as a function of proteins content in the biological fluid and normal applied load. Electrochemical tests were performed to study the corrosion behavior of the alloy, under two simulated body fluids: phosphate buffer solution (PBS) and bovine calf serum (BCS). The tribocorrosion tests were performed using the same solutions, under different loading conditions and tribometer configuration. An attempt was made to evaluate the synergistic interactions between corrosion and wear. The surface characterization of the sample was also studied. The presence of proteins was found to improve the corrosion resistance and passive behavior due to their protective boundary lubricant effect. Normal applied load showed to increase the passive film destruction.
机译:金属离子和磨损碎片的释放是对金属(MOM)髋关节假体的严重关注。这项工作的目的是评估低碳COCRMO合金的腐蚀和染色腐蚀行为,作为生物流体和正常施加负荷的蛋白质含量的函数。进行电化学试验以研究合金的腐蚀行为,在两个模拟体液下:磷酸盐缓冲溶液(PBS)和牛犊血清(BCS)。在不同的负载条件和摩擦计配置下使用相同的溶液进行Tribocorion测试。尝试评估腐蚀和磨损之间的协同相互作用。还研究了样品的表面表征。发现蛋白质的存在提高由于其保护界润滑剂效应引起的耐腐蚀性和被动行为。正常施加的负荷显示出增加被动膜的破坏。

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