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Comparison of the Wear Behavior of UHMWPE Lubricated by Human Plasma and Brine
作者姓名:WANG  Shi-bo  GE  Shi-rong  NORM  Gitis  MICHAEL  Vinogradov  XIAO  Jun
作者单位:[1]Institute of Reliability Engineering China University of Mining & Technology Xuzhou Jiangsu 221008, China [2]Center for Tribology Incorporated Campell California 95008, USA
摘    要:

关 键 词:磨损微粒  磨损机械  润滑  UHMWPE
收稿时间:2 December 2006
修稿时间:2006-11-02

Comparison of the Wear Behavior of UHMWPE Lubricated by Human Plasma and Brine
WANG Shi-bo GE Shi-rong NORM Gitis MICHAEL Vinogradov XIAO Jun.Comparison of the Wear Behavior of UHMWPE Lubricated by Human Plasma and Brine[J].Journal of China University of Mining and Technology,2007,17(3):335-340.
Authors:WANG Shi-bo  GE Shi-rong  NORM Gitis  MICHAEL Vinogradov  XIAO Jun
Affiliation:1. Institute of Reliability Engineering, China University of Mining & Technology, Xuzhou, Jiangsu 221008, China;2. Center for Tribology Incorporated, Campell, California 95008, USA
Abstract:The effect of plasma and brine lubricants on the friction and wear behavior of UHMWPE were studied by using the geometry of a Si3N4 ball sliding on a UHMWPE disc under patterns of uni-directional reciprocation and bi-directional sliding motions. The worn surface and wear particles produced in these two lubricants were analyzed. Sliding motion pattern affected the friction coefficients lubricated with plasma, while seldom affected that lubricated with brine. UHMWPE lubricated with plasma showed about half of the wear rate of that lubricated with brine. The two rates were 0.75 pg/m and 2.19 pg/m for the two motion patterns, respectively. However, wear particles generated in plasma included a greater amount of small particles, compared to that in brine. In uni-directional reciprocation, the main wear mechanism is ploughing both in plasma and in brine. In bi-directional sliding modes, the significant characteristic is ripples on the worn surface in plasma, while there are oriented fibers on the worn surface in brine.
Keywords:UHMWPE  wear  lubrication  wear particles  wear mechanism
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