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In vitro corrosion and hemocompatibility evaluation of electrical discharge treated cobalt-chromium implant

机译:放电处理钴铬植入物的体外腐蚀和血液相容性评估

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摘要

The current paper focuses on the issue associated with the biological response of medical grade cobalt chromium (Co-Cr) alloy treated with electrical discharge at different spark energy levels by a varying current, pulse on-time, and pause (off) time. Three types of electrodes, namely, graphite (C), tungsten (W), and copper tungsten (Cu-W) were utilized for treating Co-Cr substrates in two different dielectric media such as mineral oil and deionized water. Electrochemical potentiodynamic tests were performed to investigate the corrosion resistance of untreated and treated surfaces. Furthermore, in vitro hemocompatibility tests were executed on the superior corrosion resistance samples for scrutinizing the red blood cell lysis (human blood response). The study revealed a significant improvement in the corrosion resistivity (80%) and biological response for the surface treated with W-Cu electrode at low pulse pause duration. X-ray diffraction verified the formation of oxides and phosphides on the treated surface that promotes the biocompatibility.
机译:本论文重点研究与医用级钴铬合金(Co-Cr)的生物学响应有关的问题,该合金在不同的火花能级下通过变化的电流,脉冲开启时间和暂停(关闭)时间进行放电处理。三种类型的电极,即石墨(C),钨(W)和铜钨(Cu-W)用于在两种不同的介电介质(例如矿物油和去离子水)中处理Co-Cr衬底。进行了电化学电位动力学测试以研究未处理和已处理表面的耐腐蚀性。此外,对优异的耐腐蚀性样品进行了体外血液相容性测试,以检查红细胞溶解(人血反应)。研究表明,在低脉冲停顿持续时间下,用W-Cu电极处理过的表面的耐蚀性(<80%)和生物学响应有了显着改善。 X射线衍射证实了在处理过的表面上形成了氧化物和磷化物,从而促进了生物相容性。

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