Effects of sp2/sp3 Ratio and Hydrogen Content on In Vitro Bending and Frictional Performance of DLC-Coated Orthodontic Stainless Steels

被引:21
作者
Muguruma, Takeshi [1 ]
Iijima, Masahiro [1 ]
Kawaguchi, Masahiro [2 ]
Mizoguchi, Itaru [1 ]
机构
[1] Hlth Sci Univ Hokkaido, Sch Dent, Div Orthodont & Dentofacial Orthoped, Tobetsu, Hokkaido 0610293, Japan
[2] Tokyo Metropolitan Ind Technol Res Inst, Surface Coating & Chem Technol Grp, Koto Ku, 2-4-10 Aomi, Tokyo 1350064, Japan
关键词
diamond-like carbon; frictional property; hydrogen content; surface modification; sp(2)/sp(3) ratio; DIAMOND-LIKE; CARBON DLC; TRIBOLOGICAL PERFORMANCE; CORROSION BEHAVIOR; GALVANIC CORROSION; COATINGS; ARCHWIRES; WIRES; BRACKETS; FILMS;
D O I
10.3390/coatings8060199
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study investigated a diamond-like carbon (DLC) coating formed on stainless steels (disk and wire specimens) using a plasma-based ion implantation/deposition method with two different parameters (DLC-1, DLC-2). These specimens were characterized using high-resolution elastic recoil analysis, microscale X-ray photoelectron spectroscopy and nanoindentation testing to determine the hydrogen content, sp(2)/sp(3) ratio and mechanical properties of the coating. Three-point bending and frictional properties were estimated. DLC-1 had a diamond-rich structure at the external surface and a graphite-rich structure at the inner surface, while DLC-2 had a graphite-rich structure at the external surface and a diamond-rich structure at the inner surface. Mean mechanical property values obtained for the external surface were lower than those for the inner surface in both types of DLC-coated specimens. The hydrogen content of DLC-2 was slightly higher versus DLC-1. Both DLC-coated wires produced a significantly higher elastic modulus according to the three-point bending test versus the non-coated wire. DLC-2 produced significantly lower frictional force than the non-coated specimen in the drawing-friction test. The coating of DLC-1 was partially ruptured by the three-point bending and drawing-friction tests. In conclusion, the bending and frictional performance of DLC-coated wire were influenced by the hydrogen content and sp(2)/sp(3) ratio of the coating.
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页数:12
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