Tribological study on the surface modification of metal-on-polymer bioimplants

被引:3
|
作者
Shen, Gang [1 ]
Zhang, Jufan [1 ]
Culliton, David [2 ]
Melentiev, Ruslan [1 ]
Fang, Fengzhou [1 ,3 ]
机构
[1] Univ Coll Dublin, Ctr Micro Nano Mfg Technol MNMT Dublin, Sch Mech & Mat Engn, Dublin 4, Ireland
[2] Inst Technol Carlow, Dept Aerosp Mech & Elect Engn, Carlow, Ireland
[3] Tianjin Univ, Ctr Micro Nano Mfg Technol MNMT, State Key Lab Precis Measuring Technol & Instrume, Tianjin 300072, Peoples R China
基金
爱尔兰科学基金会;
关键词
artificial joints; surface roughness; friction; surface texturing; MOLECULAR-WEIGHT POLYETHYLENE; LUBRICANT FILM FORMATION; TOTAL HIP-ARTHROPLASTY; IN-SITU OBSERVATION; ARTIFICIAL JOINTS; STAINLESS-STEEL; ARRAY GEOMETRY; WEAR DEBRIS; FRICTION; ROUGHNESS;
D O I
10.1007/s11465-022-0682-6
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The tribological performance of artificial joints is regarded as the main factor of the lifespan of implanted prostheses. The relationship between surface roughness and coefficient of friction (COF) under dry and lubricated conditions is studied. Results show that under dry test, friction coefficient is not reduced all the time with a decrease in surface roughness. On the contrary, a threshold of roughness value is observed, and frictional force increases again below this value. This critical value lies between 40 and 100 nm in S-a (roughness). This phenomenon is due to the transfer of friction mechanisms from abrasion to adhesion. Under wet test, COF always decreases with reduction in surface roughness. This result is mainly attributed to the existence of a thin layer of lubricant film that prevents the intimate contact of two articulating surfaces, thus greatly alleviating adhesion friction. Furthermore, surface texturing technology is successful in improving the corresponding tribological performance by decreasing friction force and mitigating surface deterioration. The even-distribution mode of texturing patterns is most suitable for artificial joints. By obtaining the optimal surface roughness and applying texturing technology, the tribological performance of polymer-based bioimplants can be greatly enhanced.
引用
收藏
页数:13
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