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논문 기본 정보

자료유형
학술저널
저자정보
이정화 (국립금오공과대학교) 권현규 (국립금오공과대학교) 여찬주 (컨셉션) 정구상 (컨셉션) 김동규 (대구기계부품연구원)
저널정보
한국기계가공학회 한국기계가공학회지 한국기계가공학회지 제24권 제1호
발행연도
2025.1
수록면
16 - 22 (7page)

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초록· 키워드

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In this study, a milling cutter was optimized using Design for Additive Manufacturing(DfAM). The primary objective was to significantly reduce the weight of the cutting tool while simultaneously enhancing its performance. Traditional manufacturing methods often impose limitations on shape complexity, making it challenging to produce intricate designs such as hollow structures or curved internal channels. However, additive manufacturing, with its unparalleled design freedom, offers solutions to these constraints. Topology optimization and lattice structure integration were used to achieve a weight reduction of 30 % in the milling cutter. Additionally, the DfAM-optimized design yielded substantial performance improvements. These include a decrease in the cutting power consumption, an increase in the material removal rate (MRR), a significant extension of the tool life, and enhanced stability against vibrations and chatter. This study shows that DfAM can be used effectively in the design and manufacturing of cutting tools in additive manufacturing using 3D printers and is efficient in terms of weight reduction and securing structural stability.

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ABSTRACT
1. 서론
2. 이론적배경
3. Milling Cutter 위상최적화 설계
4. 결론
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