Optimization of Surface Texturing for Contact Between Steel and Ultrahigh Molecular Weight Polyethylene Under Boundary Lubrication

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초록

In this study, we developed a design method for surface texturing optimization and evaluated it experimentally. Square patterns composed of different fractions of pore shapes were prepared by using a nanosecond pulse laser on AISI 1045 steel surfaces. A pore diameter of 75 mu m was used to design the area densities. The area density was 5-25 %, and the pore depth was 20-75 mu m. Different area densities and pore depths were examined for optimization, and pin-on-disk sliding tests were performed using ultrahigh molecular weight polyethylene pins. The results showed that all of the coefficients of friction of the textured specimens were reduced regardless of the area density and aspect ratio. Optimization was performed according to the measured dimensions of the pores, and the optimized area density and pore depth under the current sliding conditions were found to be 25 % and 25 mu m, respectively.

키워드

Optimum texturing; Response surface model; Uncertainty; Laser texturing; FRICTION REDUCTION; LASER; DESIGN
제목
Optimization of Surface Texturing for Contact Between Steel and Ultrahigh Molecular Weight Polyethylene Under Boundary Lubrication
저자
Cho, Minhaeng; Choi, Hae-Jin
DOI
10.1007/s11249-014-0418-9
발행일
2014-12
유형
Article
저널명
Tribology Letters
권
56
호
3
페이지
409 ~ 422