Improvement of Adhesive Strength of DLC Film Coated on Metallic Substrate by Finishing Condition Selection(Nanoprecision Elid grinding)
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概要
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This study investigated the effects of grinding wheels on the surface modification properties in Electrolytic In-process Dressing grinding. Three specimens were ground with different abrasive grinding wheels: diamond wheel, SiO_2 wheel, and diamond+SiO_2 wheel. These three different grinding wheels produced surfaces modified by the diffusion of the abrasive elements. Adhesive strength evaluation tests between the substrate surface and the DLC film were performed using micro-scratch testing. The finished surface ground by the diamond+SiO_2 wheel showed the highest adhesive strength due to the physical and chemical properties of the diffused elements. As a result, application of this proposed grinding method to mold fabrication shows considerable promise.
- 一般社団法人日本機械学会の論文
- 2005-10-18
著者
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Iwaki Masaya
Riken
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Ohmori Hitoshi
Materials Fabrication Laboratory Riken:the Institute Of Physical And Chemical Research
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Ohmori Hitoshi
Riken (the Institute Of Physical And Chemical Research) Wako
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Mizutani Masayoshi
Materials Fabrication Laboratory Riken (the Institute Of Physical And Chemical Research)
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Maehama Fumihito
Keio University
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KATAHIRA Kazutoshi
RIKEN
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KOMOTORI Jun
Keio University
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MIZUTANI Masayoshi
Keio University
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Katahira Kazutoshi
Materials Fabrication Laboratory Riken (the Institute Of Physical And Chemical Research)
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- Basic Grinding Characteristics of Ceramic Materials for Dental Crown
- Subsurface Properties of Ceramics for Lightweight Mirrors after ELID Grinding(Advanced Manufacturing Technology)
- Improvement of Adhesive Strength of DLC Film Coated on Metallic Substrate by Finishing Condition Selection(Nanoprecision Elid grinding)
- Surface Composition and Electrochemical Properties of High-Dose Carbon-Implanted Iron
- Surface Properties of Biomaterials (Ti-6Al-4V alloy) Finished by a New ELID Grinding System(Nanoprecision Elid grinding)
- Effect of ELID Grinding on Fatigue Properties of Stainless Steel (Special Issue The First International Conference on the Material Testing Research and Technology--Evaluation Technology of Advanced Materials in Japan and Korea)
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- Preface