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Formation of Tribofilm in the Friction of Fluorinated Diamond-Like Carbon (FDLC) Film against Ti6Al4V in Bovine Serum Albumin (BSA) Solution

机译:在牛血清白蛋白(BSA)溶液中氟化金刚石状碳(FDLC)薄膜摩擦摩擦摩擦摩擦形成

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A route to reducing the wear of the metal counterpart in the friction of meatal against diamond-like carbon (DLC) is to form a lubricating tribofilm on the metal counterface. However, in liquid lubricating conditions, the formation of tribofilm can be influenced by both the lubricating medium and the counterpart material. Here we report the effect of lubricating biomolecule and doping fluorine element on the formation of tribofilm in fluorinated DLC (FDLC)-Ti6Al4V friction system. A group of ball-on-disc frictional experiments with different sliding speeds and normal loads were performed in phosphate buffer solution (PBS) and bovine serum albumin (BSA) solution. The results showed the formation of tribofilm was inhibited by the absorption of biomolecules on the frictional surface, thus improving the friction coefficient and wear of Ti6Al4V counterpart. Doping fluorine into DLC film also can restrain the formation of tribofilm on Ti6Al4V counterface. As a result, tribofilm is difficult to form when Ti6Al4V counterface slides against FDLC in BSA solution. Fluorinated DLC film should be considered carefully for the anti-wear use in body fluid containing biomolecules because it might cause severe wear of the counterpart material.
机译:减少金属对应物的磨损在碎石状碳(DLC)摩擦中的磨损的途径是在金属配对表面上形成润滑呋喃酚。然而,在液体润滑条件下,呋喃酚的形成可以受润滑介质和对应材料的影响。在这里,我们报道了润滑生物分子和掺杂氟元素对氟化DLC(FDLC)-ti6A14V摩擦系统形成呋脱石的影响。在磷酸盐缓冲溶液(PBS)和牛血清白蛋白(BSA)溶液中进行具有不同滑动速度和正常载荷的一组具有不同滑动速度和正常载荷的滚珠丝盘摩擦实验。结果表明,在摩擦表面上吸收生物分子的吸收抑制了呋喃酚的形成,从而提高了Ti6Al4V对应的摩擦系数和磨损。将氟掺杂到DLC膜中也可以抑制Ti6Al4V逆面的呋喃木的形成。结果,当Ti6Al4V反面对BSA解决方案中的FDLC幻灯片难以形成呋喃夫。氟化DLC薄膜应仔细考虑用于含有生物分子的体液中的抗磨损,因为它可能导致对应物质的严重磨损。

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