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Comparison of Micro Trench Machining Characteristics with Nonferrous Metal and Polymer using Single Diamond Cutting Tool
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HOME > J Korean Powder Metall Inst > Volume 20(5); 2013 > Article
단결정 다이아몬드 공구에 의한 비철금속과 폴리머 소재의 마이크로 트렌치 가공특성 비교
최환진, 전은채, 최두선, 제태진, 강명창
Comparison of Micro Trench Machining Characteristics with Nonferrous Metal and Polymer using Single Diamond Cutting Tool
Hwan-Jin Choi, Eun-Chae Jeon, Doo-Sun Choi, Tae-Jin Je, Myung-Chang Kang
Journal of Korean Powder Metallurgy Institute 2013;20(5):355-358
DOI: https://doi.org/10.4150/KPMI.2013.20.5.355
1한국기계연구원 나노공정연구실
2한국기계연구원 나노공정연구실
3한국기계연구원 나노공정연구실
4한국기계연구원 나노공정연구실
5부산대학교 하이브리드소재 솔루션 국가핵심연구센터(융합대학원)
1Devision of Nano-Mechanical Systems, Korea Institute of Machinery and Materials
2Devision of Nano-Mechanical Systems, Korea Institute of Machinery and Materials
3Devision of Nano-Mechanical Systems, Korea Institute of Machinery and Materials
4Devision of Nano-Mechanical Systems, Korea Institute of Machinery and Materials
5National Core Research Center for Hybrid Materials Solution, Pusan National University
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Micro trench structures are applied in gratings, security films, wave guides, and micro fluidics. These micro trench structures have commonly been fabricated by micro electro mechanical system (MEMS) process. However, if the micro trench structures are machined using a diamond tool on large area plate, the resulting process is the most effective manufacturing method for products with high quality surfaces and outstanding optical characteristics. A nonferrous metal has been used as a workpiece; recently, and hybrid materials, including polymer materials, have been applied to mold for display fields. Thus, the machining characteristics of polymer materials should be analyzed. In this study, machining characteristics were compared between nonferrous metals and polymer materials using single crystal diamond (SCD) tools; the use of such materials is increasing in machining applications. The experiment was conducted using a square type diamond tool and a shaper machine tool with cutting depths of 2, 4, 6 and 10 µm and a cutting speed of 200 mm/s. The machined surfaces, chip, and cutting force were compared through the experiment.

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