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Corrosion of Metals During Use in Arthroplasty

摩擦腐蚀 腐蚀 微动 缝隙腐蚀 材料科学 原电池 电偶腐蚀 钝化 冶金 点蚀 电偶阳极 阳极 复合材料 电化学 电极 阴极保护 化学 物理化学 图层(电子)
作者
Chinedu C. Ude,Godwin K. Dzidotor,Kamsiyochukwu Iloeje,Lakshmi S. Nair,Cato T. Laurencin
出处
期刊:ACS applied bio materials [American Chemical Society]
卷期号:6 (6): 2029-2042 被引量:5
标识
DOI:10.1021/acsabm.2c01082
摘要

Arthroplasty implants can undergo corrosion at the modular components, trunnion, and hinges, owing to implant material makeup, micromotion, and interaction with body fluid. In this review, various mechanisms of corrosion in arthroplasty were explored with suggestions on means of improvement. We identified 10 methods including pitting, crevice, mechanically assisted crevice corrosion, fretting, fretting initiated crevice corrosion, mechanically assisted taper corrosion, galvanic corrosion, stress/tension, fatigue corrosion, and inflammatory cell induced corrosion. The position of implants on the galvanic series, and their ability to maintain passivation contribute to their longevity in service. Due to the relative motion of arthroplastic components, bio-tribocorrosion may disrupt passive oxide films, and pitting is initiated at interfaces. Thus, corrosion in arthroplasty as an electrochemical phenomenon mainly starts on one spot and progresses in 3 steps: (1) the oxidative dissolution of metal from implant surfaces into the aqueous active environment, releasing cations, (2) the attraction of electrons to the opposite charge created at another point of the implant surface, producing current flow, and (3) the formation of oxides of metal and metal hydroxides deposited as rust at the surface of the implant. Recent innovations in material manufacturing continue to improve the efficiency of arthroplasty; however, the component parts remain susceptible to bio-tribocorrosion. Thus, a complete eradication of corrosion in arthroplasty would require futuristic materials with improvement in recent materials and designs, derived from knowledge of existing retrieved implants, and strategies to provide overall surface finishes that protect against bio-tribocorrosion.
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