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초록
This study employs molecular dynamics simulations to investigate the material behavior of workpieces in waterjet machining processes. To gain fundamental insights into waterjet machining, simulations were conducted using pure water, excluding abrasive particles. The simulation model comprised thousands of water molecules interacting with a single crystal metal workpiece. Water molecule clusters were imparted with various velocities to initiate collisions with the metal workpiece. The material behavior of the metal surface was analyzed with respect to the applied velocity conditions, considering the intricate interplay between water molecules and the workpiece at the atomic scale. The results demonstrated that the machining of the metal workpiece occurred only when water molecules were endowed with velocities above a certain threshold. In cases where energy was insufficient, the metal workpiece exhibited a slight increase in surface roughness due to mild plastic deformation, without undergoing substantial material removal. When machining occurred, the ejection of material revealed a 3-fold symmetric pattern, confirming that material removal in waterjet machining of the metal workpiece is primarily driven by plastic deformation-induced material ejection. This research provides crucial insights into the mechanisms underlying waterjet machining and enhances our understanding of material behavior during the process. The findings can be valuable in optimizing waterjet machining techniques.
키워드
- 제목
- 나노스케일 워터젯 가공에 대한 분자시뮬레이션 연구
- 제목 (타언어)
- Molecular Simulation of Nano-Scale Waterjet Machining
- 저자
- 이상훈; 김현준; 김태욱
- 발행일
- 2023-10
- 유형
- Y
- 저널명
- 한국트라이볼로지학회지
- 권
- 39
- 호
- 5
- 페이지
- 216 ~ 219
- 언어
- KOR
- 출판사
- 한국트라이볼로지학회
- 발행국가
- 대한민국
- 분량
- 4 페이지
- ISSN
- E 2713-802X
P 2713-8011