실험계획법을 이용한 M2-Cu 기능성 경사 재료의 마이크로 드릴링 특성 평가
Characterization of Microscale Drilling Process for Functionally Graded M2–Cu Material Using Design of Experiments
심종우(서울과학기술대학교); 최대철(서울과학기술대학교); 신기훈(서울과학기술대학교); 김홍석(서울과학기술대학교)
24권 5호, 502~507쪽
초록
In this study, a microscale drilling process was conducted to evaluate the cutting characteristics of functionally graded materials. A mixture of M2 and Cu powders were formed and sintered to produce disk specimens of various compositions. Subsequently, a microscale hole was created in the specimen by using a desktop-size micro-machining system. By using design of experiments and analysis of variance, it was found that the M2–Cu composition, spindle speed, and the interactions between these two factors had significant effects on the magnitude of cutting forces. However, the influence of feed rate on the cutting force was negligible. A mathematical model was established to predict the cutting force under a wide range of process conditions, and the reliability of the model was confirmed experimentally. In addition, it was observed that increasing the wt% of Cu in an M2–Cu specimen increased the high-frequency amplitude of cutting forces.
Abstract
In this study, a microscale drilling process was conducted to evaluate the cutting characteristics of functionally graded materials. A mixture of M2 and Cu powders were formed and sintered to produce disk specimens of various compositions. Subsequently, a microscale hole was created in the specimen by using a desktop-size micro-machining system. By using design of experiments and analysis of variance, it was found that the M2–Cu composition, spindle speed, and the interactions between these two factors had significant effects on the magnitude of cutting forces. However, the influence of feed rate on the cutting force was negligible. A mathematical model was established to predict the cutting force under a wide range of process conditions, and the reliability of the model was confirmed experimentally. In addition, it was observed that increasing the wt% of Cu in an M2–Cu specimen increased the high-frequency amplitude of cutting forces.
- 발행기관:
- 한국생산제조학회
- 분류:
- 기계공학