首页> 外文会议>Wear of Materials >Corrosion response of surface engineered titanium alloys damaged by prior abrasion
【24h】

Corrosion response of surface engineered titanium alloys damaged by prior abrasion

机译:表面工程化的钛合金在事先磨损下的腐蚀响应

获取原文
获取外文期刊封面目录资料

摘要

During use, bio-implant materials like Ti-alloys need to endure and resist corrosion-wear. Here, a synergy between corrosion and wear takes place; wear is increased by the action of corrosion and corrosion is increased by the action of wear. In this paper, the corrosion response of SP700 (Ti―4.5Al―3V―2Fe―2Mo) and Ti―6Al―4V alloys, with and without surface treatments are described. Both kinds of alloy were surface-treated with: (ⅰ) an oxygen diffusion hardening process called "thermal oxidation" (TO) and (ⅱ) a TiN coating procedure known as arc ion plating (AIP). The effect of prior mechanical (abrasive) surface damage on corrosion behaviour was simulated by scratching samples using a diamond indenter. A standard potentiodynamic or cyclic polarisation (CP) procedure, was conducted in de-aerated 0.89 wt.% NaCl (physiological saline) controlled at 37°C at a scan rate of 0.167mV/s, from ―1V Ag/AgCl up to +4 V Ag/AgCl. Results showed that the TO-treated samples offered the best resistance to the sequential actions of mechanical damage (simulated abrasion) and corrosion. This is attributed to the TO-treatment producing a stable oxide layer, for both Ti-alloys, which displayed a superior repassivation rate and adhesive strength compared to untreated and TiN coated Ti-alloys. The TiN coated Ti-alloys were also prone to pitting and blistering during corrosion testing whilst the TO-treated alloys were not affected by blistering. However, the TO-treated Ti―6Al―4V showed evidence of superficial pitting. On balance, the TO-process appears to offer significant future promise for use in bio-implants and other engineering components subjected to corrosive-wear processes.
机译:在使用过程中,诸如钛合金之类的生物植入材料需要耐久并抵抗腐蚀磨损。在此,腐蚀与磨损之间产生协同作用。腐蚀增加了磨损,而腐蚀增加了腐蚀。本文描述了SP700(Ti-4.5Al-3V-2Fe-2Mo)和Ti-6Al-4V合金在经过和不经过表面处理的情况下的腐蚀响应。两种合金均经过以下表面处理:(ⅰ)一种称为“热氧化”(TO)的氧扩散硬化工艺,以及(ⅱ)一种称为电弧离子镀(AIP)的TiN涂层工艺。通过使用金刚石压头刮擦样品来模拟先前的机械(磨料)表面损伤对腐蚀行为的影响。标准电位动力学或循环极化(CP)程序在控制于37°C的脱气0.89 wt。%NaCl(生理盐水)中进行,扫描速率为0.167mV / s,从-1V Ag / AgCl直至+ 4 V Ag / AgCl。结果表明,经TO处理的样品对机械损伤(模拟磨损)和腐蚀的顺序作用具有最佳抵抗力。这归因于TO处理对于两种钛合金都产生了稳定的氧化物层,与未处理的和TiN涂层的钛合金相比,它表现出了更高的再钝化率和粘合强度。 TiN涂层的钛合金在腐蚀测试过程中也容易出现点蚀和起泡,而经TO处理的合金不受起泡的影响。但是,经过TO处理的Ti-6Al-4V表现出表面点蚀的迹象。总而言之,TO工艺似乎为在生物植入物和经过腐蚀磨损工艺的其他工程部件中使用提供了广阔的未来前景。

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