Dental Ni-Ti files must ensure stability and resistance to fatigue fracture. DLC and ta-C were coated to remove defects on the surface and ensure stability, and the surface characteristics were investigated. When coated with DLC, it was black, and in case of ta-C coating, it was blue-black. Scratches, which are defects caused by mechanical processing, were formed on the surface of the un-coated Ni-Ti file from the end of the file along the direction of processing, with the Profile appearing in the vertical direction and the K-file appearing in the file direction. Scratches were reduced on the coated surface, and the surface roughness was greatly reduced after coating compared to before coating. The un-coated Ni-Ti file had the lowest hardness, the DLC-coated file had the highest hardness, and ta-C showed relatively high hardness. The elastic modulus of the DLC coating film was high, and the ta-C elastic modulus was low. The adhesion of the DLC coating film tended to be higher than that of ta-C, and the wear loss amount of DLC coating of ta-C was lower. The corrosion potential of the ta-C coating increased significantly, and the corrosion current density decreased.
机构:
Nihon Univ, Dept Dent Mat, Sch Dent, Tokyo, Japan
Nihon Univ, Dent Res Ctr, Div Biomat Sci, Sch Dent, Tokyo, JapanNihon Univ, Dept Dent Mat, Sch Dent, Tokyo, Japan
Yoneyama, Takayuki
Hanawa, Takao
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机构:
Tokyo Med & Dent Univ, Inst Biomat & Bioengn, Dept Metall Biomat, Tokyo, JapanNihon Univ, Dept Dent Mat, Sch Dent, Tokyo, Japan