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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Abrasion response and abrasion-corrosion interactions for a coated biomedical stainless steel
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Abrasion response and abrasion-corrosion interactions for a coated biomedical stainless steel

机译:涂层生物医学不锈钢的磨损响应和磨损-腐蚀相互作用

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A simple screening test has been developed to assess the suitability of surface coatings to protect the femoral articular surfaces of Ortron 90 total hip replacement (THR) prostheses from abrasion damage. A detailed comparison was conducted of the dimensions of scratches on explanted Charnley (Ortron 90) femoral heads and those of scratches produced on polished Ortron 90 barstock (of similar hardness) in the laboratory using a Rockwell C indenter and a range of static loads. From this comparison a load of 0.5 kg was found to give similar scratch depths (D) and lip heights (H) to the upper limits of scratches on the explants. Additionally a "multi -scratch" grid of two sets of five intersecting scratches (giving 25 scratch intersections) was used to simulate the multi-directional nature of in vivo abrasion damage. Commercial titanium nitride (TIN) and diamond-like carbon (DLC) coated Ortron 90 samples were subjected to this multi-scratch test in addition to single scratch tests. Adhesive and cohesive coating failures were observed at some of the scratch intersections for all of the coatings except the magnetron sputter deposited DLC coating which showed only through-coating fracture. These adhesive and cohesive failures were also observed in single scratches but at higher loads. Corrosion testing of the coated samples showed that the multi-scratch grid introduced additional sites at which substrate corrosion could take place.
机译:已经开发出一种简单的筛选测试,以评估表面涂层在保护Ortron 90全髋关节置换(THR)假体的股骨关节表面免受磨损损害方面的适用性。在实验室中使用罗克韦尔C压头和一系列静载荷,对移植的Charnley(Ortron 90)股骨头上的划痕尺寸与在抛光的Ortron 90压力棒(硬度类似)上产生的划痕进行了详细的比较。通过该比较,发现0.5kg的载荷赋予外植体上的划痕上限类似的划痕深度(D)和唇高度(H)。另外,使用两组五个交叉的划痕(产生25个划痕交叉点)的“多划痕”网格来模拟体内磨损损伤的多方向性质。除单划痕测试外,对商用氮化钛(TIN)和类金刚石碳(DLC)涂覆的Ortron 90样品进行了这种多划痕测试。对于所有涂层,在某些刮痕相交处观察到粘合和内聚涂层失效,但磁控溅射沉积DLC涂层除外,该涂层仅显示贯穿涂层破裂。在单次刮擦但在较高载荷下也观察到了这些粘合和内聚破坏。涂层样品的腐蚀测试表明,多划痕格栅引入了可能腐蚀基材的其他位置。

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