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논문 기본 정보

자료유형
학위논문
저자정보

신필선 (공주대학교, 공주대학교 일반대학원)

지도교수
전의식
발행연도
2023
저작권
공주대학교 논문은 저작권에 의해 보호받습니다.

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이 논문의 연구 히스토리 (4)

초록· 키워드

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The Inconel 718 is nickel-based and is increasingly used as a key
component in the nuclear, aerospace, and chemical industries, where high
fatigue strength and oxidation resistance are essential due to its relatively
excellent corrosion resistance, heat resistance, and wear resistance. Inconel
718 which is a heat-resistant alloy has relatively excellent mechanical
properties, but material deformation, cracking, shaking, etc. occur due to
high cutting temperature accumulated on the cutting surface during cutting
processing, and heat accumulates at the insert boundary. Due to these
characteristics, various research is being conducted, such as developing a
tool exclusively for non-deletion, analyzing tool wear, and developing a tool
cooling system, but optimization of the cutting process is still insufficient.
This paper derived the optimal process conditions by experiment by cutting
conditions according to insert type during inconel 718 cutting.

목차

1. 서 론 ················································································· 1
1.1 연구배경 및 필요성 ························································· 1
2. 실험 대상 및 방법 ······························································ 2
2.1 실험 장치 및 대상 ···························································· 2
2.2 절삭 조건 및 범위 설정 ···················································· 5
2.3 반응표면분석법을 이용한 실험 설계 ·································· 7
3. 결과 분석 ········································································ 11
3.1 초경 인서트 가공 결과 분석 ············································ 11
3.2 세라믹 인서트 가공 결과 분석 ········································ 17
3.3 최적 공정조건 도출 및 고찰 ············································ 23
4. 결론 ··············································································· 26

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