...
首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Diamond-like carbon coatings enhance scratch resistance of bearing surfaces for use in joint arthroplasty: hard substrates outperform soft.
【24h】

Diamond-like carbon coatings enhance scratch resistance of bearing surfaces for use in joint arthroplasty: hard substrates outperform soft.

机译:类金刚石碳涂层增强了关节置换术中轴承表面的抗划伤性:坚硬的基材优于柔软的基材。

获取原文
获取原文并翻译 | 示例
           

摘要

The purpose of this study was to test the hypotheses that diamond-like carbon (DLC) coatings will enhance the scratch resistance of a bearing surface in joint arthroplasty, and that a hard ceramic substrate will further enhance scratch resistance by reducing plastic deformation. We tested these hypotheses by applying a hard DLC coating to medical-grade cobalt chromium alloy (CoCr) and magnesia-stabilized zirconia (Mg-PSZ) femoral heads and performing scratch tests to determine the loads required to cause cohesive and adhesive fracture of the coating. Scratch tracks of DLC-coated and noncoated heads were then scanned by optical profilometry to determine scratch depth, width, and pile-up (raised edges), as measures of susceptibility to scratching. DLC-coated CoCr specimens exhibited cohesive coating fracture as wedge spallation at an average load of 9.74 N, whereas DLC-coated Mg-PSZ exhibited cohesive fracture as arc-tensile cracks and chipping at a significantly higher average load of 41.3 N (p < 0.0001). At adhesive coating fracture, DLC-CoCr delaminated at an average load of 35.2 N, whereas DLC-Mg-PSZ fractured by recovery spallation at a significantly higher average load of 46.8 N (p < 0.05). Both DLC-CoCr and DLC-Mg-PSZ specimens exhibited significantly shallower scratches and less pile-up than did uncoated specimens (p < 0.005 and p < 0.01, respectively). However, the harder ceramic substrate of DLC-Mg-PSZ better resisted plastic deformation, requiring significantly higher loads for cohesive and adhesive coating fracture. These findings supported both of our hypotheses.
机译:这项研究的目的是检验以下假说:类金刚石碳(DLC)涂层将在关节置换术中增强轴承表面的抗划伤性,而坚硬的陶瓷基材将通过减少塑性变形进一步增强抗划伤性。我们通过在医学级钴铬合金(CoCr)和氧化镁稳定的氧化锆(Mg-PSZ)股骨头上施加硬质DLC涂层并进行划痕测试以确定造成涂层内聚和粘合破裂所需的载荷,从而测试了这些假设。然后通过光学轮廓仪扫描涂有DLC涂层的和未涂层的磁头的划痕,以确定划痕的深度,宽度和堆积(凸起的边缘),以作为划痕敏感性的量度。 DLC涂层的CoCr试样在9.74 N的平均载荷下表现出楔形剥落的粘结涂层破裂,而DLC涂层的Mg-PSZ的电弧拉伸裂纹和内切的粘结破裂表现出明显更高的平均载荷41.3 N(p <0.0001 )。在胶粘剂涂层断裂时,DLC-CoCr在35.2 N的平均载荷下分层,而DLC-Mg-PSZ在较高的平均载荷46.8 N的情况下因恢复性剥落而断裂(p <0.05)。与未涂层的样品相比,DLC-CoCr和DLC-Mg-PSZ样品均表现出明显更浅的划痕和更少的堆积(分别为p <0.005和p <0.01)。但是,较硬的DLC-Mg-PSZ陶瓷基材可以更好地抵抗塑性变形,因此需要更大的载荷才能使内聚和粘合剂涂层破裂。这些发现支持了我们的两个假设。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号