首页> 外文会议>Modularity and tapers in total joint replacement devices >A Servoelectric Apparatus with Potentiostat to Study the Fretting Corrosion of Cobalt-Chromium-Titanium Alloy Couples
【24h】

A Servoelectric Apparatus with Potentiostat to Study the Fretting Corrosion of Cobalt-Chromium-Titanium Alloy Couples

机译:带有恒电位仪的伺服电装置,用于研究钴-铬-钛合金对的微动腐蚀

获取原文
获取原文并翻译 | 示例

摘要

The study of fretting degradation in prosthetic modular junctions requires a combination of tribological testing and electrochemical measurements. The goal of this study was to design a testing apparatus that offers this combination using servoelectric actuator technology because such technology provides ease of installation and handling and is cost-effective. A line-contact configuration that more closely simulates in vivo conditions than the usual point-contact geometry was used. The operation of the apparatus was demonstrated in a study of fretting of a high carbon CoCrMo-Ti-6Al-4V couple. A custom-made fretting corrosion apparatus using a servoelectric universal testing machine (THELKIN, Winterthur, Switzerland) in combination with a standard three-electrode electrochemical system was built. Line contact between the test surfaces was achieved by pressing the flat surfaces of two CoCrMo pins against a vertical Ti-6Al-4V rod attached to the machine actuator. The pins and rod served as the working electrode in an electrochemical cell controlled by a potentiostat. Fretting corrosion conditions were as follows: ±50μm, 17 N normal force, diluted bovine serum (30g/l proteins) medium at pH 4.5 or 7.6, 5000 cycles test duration, under potentiostatic conditions (-0.25 V versus SCE). The servoelectric actuator system was shown not to interfere with the electrochemical measurements. The fretting loops were consistent with a gross slip regime and indicated good system rigidity. The amount of Co and Cr released to the medium was significantly greater at pH 4.5 than at pH 7.6, whereas release of Ti was independent of pH. The reason for the higher wear and corrosion rate of the CoCrMo under acidic conditions appears to be connected with the decreased formation or stability of a chromium-rich protective tribofilm. Significance: A novel fretting corrosion apparatus that goes beyond point contact was constructed and validated to advance the study of fretting degradation in prosthetic modular junctions.
机译:假体模块化连接中微动降解的研究需要摩擦学测试和电化学测量相结合。这项研究的目的是设计一种使用伺服电动执行器技术提供这种组合的测试设备,因为这种技术提供了易于安装和处理的优势,并且具有成本效益。使用的线接触配置比通常的点接触几何结构更紧密地模拟体内条件。在对高碳CoCrMo-Ti-6Al-4V对进行微动的研究中证明了该设备的操作。使用伺服电能万能试验机(瑞士温特图尔(THELKIN),瑞士)结合标准的三电极电化学系统,构建了定制的微动腐蚀设备。通过将两个CoCrMo引脚的平坦表面压在连接到机器执行器的垂直Ti-6Al-4V杆上,可以实现测试表面之间的线接触。销和棒在恒电位仪控制的电化学电池中充当工作电极。微动腐蚀条件如下:在恒电位条件下(-0.25 V对SCE),在pH 4.5或7.6的条件下,±50μm,17 N法向力,稀释的牛血清(30g / l蛋白)培养基,5000个测试周期。示出了伺服电动致动器系统不干扰电化学测量。微动回路与整体滑移状态相一致,表明系统刚性良好。在pH 4.5下,释放到介质中的Co和Cr的量明显大于在pH 7.6下,而Ti的释放与pH无关。酸性条件下CoCrMo较高的磨损和腐蚀速率的原因似乎与富铬保护性摩擦膜的形成或稳定性降低有关。意义:构造并验证了一种新型的微动腐蚀装置,其超越了点接触,从而进一步推进了人工模块化连接处微动降解的研究。

著录项

  • 来源
  • 会议地点 New Orleans LA(US)
  • 作者单位

    Rush University Medical Center, Dept. of Orthopedic Surgery, 1611 W. Harrison St., Suite 204, Chicago, IL 60612,Laboratoire de Tribologie et Dynamique des Systemes, Ecole Centrale de Lyon-LTDS, Lyon, France;

    Rush University Medical Center, Dept. of Orthopedic Surgery, 1611 W. Harrison St., Suite 204, Chicago, IL 60612;

    Hamburg University of Technology, Central Laboratory of Analytical Chemistry, Hamburg, Germany;

    Rush University Medical Center, Dept. of Orthopedic Surgery, 1611 W. Harrison St., Suite 204, Chicago, IL 60612;

    Rush University Medical Center, Dept. of Orthopedic Surgery, 1611 W. Harrison St., Suite 204, Chicago, IL 60612;

    Laboratoire de Tribologie et Dynamique des Systemes, Ecole Centrale de Lyon-LTDS, Lyon, France;

    Rush University Medical Center, Dept. of Orthopedic Surgery, 1611 W. Harrison St., Suite 204, Chicago, IL 60612;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    taper; fretting; tribocorrosion;

    机译:锥度微动摩擦腐蚀;
  • 入库时间 2022-08-26 14:20:13

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