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Mechanisms responsible for synergy between fretting and corrosion for three biomaterials in saline solution

机译:对盐水溶液中三种生物材料进行调节和腐蚀之间的协同作用的机制

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The material removal caused by synergistic interaction of fretting and corrosion is much larger than the summation of individual fretting and corrosion loss. The increment of removal should result from the synergistic effect of mechanical and corrosive losses of materials, i.e. the acceleration of corrosion by fretting and the increase of fretting by corrosion. The fretting corrosion behaviors of three biomaterials, 316L stainless steel, Co-Cr-Mo and Ti-6Al-4V alloys were investigated. The total removals of materials should come from five components, pure corrosion, pure wear, corrosion increment caused by fretting, fretting increment caused by corrosion and synergy. Experimental results showed that the dissolution processes of three materials were accelerated significantly by fretting. The approximate removals of materials caused by synergy in saline solution are 31.6% for 316L stainless steel, 15.3% for Co-Cr-Mo alloy and 7.2% for Ti-6Al-4V alloy of total loss, respectively. The corrosion alone was a small percentage, just accounting for about 3% of total loss for three materials, The synergistic process of three materials was discussed based on three important stages, pure fretting, pure corrosion and synergy. The results suggested that both factors of materials and surface contact state should be considered simultaneously for the protection of three biomaterials under fretting corrosion conditions. The possible mechanism responsible for synergy between fretting and corrosion was also discussed.
机译:由微动和腐蚀的协同相互作用引起的材料去除远大于单个微动和腐蚀损失的总和。拆卸的增量应是由机械和腐蚀性损失的协同效应,即通过腐蚀的腐蚀加速腐蚀和烦恼的增加。研究了三种生物材料,316L不锈钢,CO-CR-MO和TI-6AL-4V合金的微动腐蚀行为。材料的总删除应来自五种部件,纯腐蚀,纯磨损,腐蚀增量造成的烦恼,腐蚀和协同造成的烦恼增量。实验结果表明,通过烦恼,三种材料的溶解过程显着加速。 316L不锈钢的协同作用引起的材料的近似除去了31.6%,对于CO-CR-MO合金15.3%,分别为总损失的Ti-6Al-4V合金7.2%。仅腐蚀的百分比小,仅占三种材料总损失的约3%,三种材料的协同过程是基于三个重要阶段,纯净的烦躁,纯腐蚀和协同作用。结果表明,应同时考虑材料和表面接触状态的因素,以保护三种生物材料在微动腐蚀条件下。还讨论了负责协同作用的可能机制和腐蚀之间的协同作用。

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