원문정보
초록
영어
Abrasive machining is a widely employed finishing process for different materials such as metals, ceramics, glass, rocks, etc to achieve close tolerances and good dimensional accuracy and surface integrity. High efficiency abrasive machining is one of the important techniques of advanced manufacture. Combined with raw and finishing machining, it can attain high material removal rate like turning, milling and planning. The difficult-to-grinding materials can also be ground by means of this method with high performance. In the present paper, development status and latest progresses on high efficiency abrasive machining technologies relate to high speed and super-high speed grinding, quick point-grinding, high efficiency deep-cut grinding, creep feed deep grinding, heavy-duty snagging and abrasive belt grinding were summarized. The efficiency and parameters range of these abrasive machining processes were compared. The key technologies of high efficiency abrasive machining, including grinding wheel, spindle and bearing, grinder, coolant supplying, installation and orientation of wheel and workpiece and safety defended, as well as intelligent monitor and NC grinding were investigated. It is concluded that high efficiency abrasive machining is a promising technology in the future.
목차
1. Introduction
2. High-speed/super-high Speed Grinding
2.1. Development of high-speed/super-high Speed Grinding
2.2. Characteristics of high-speed/super-high Speed Grinding Technique
2.3. Key Technologies in high-speed/super-high Speed Grinding
2.4. Key Technologies in high-speed/super-high Speed Grinding
2.5. Research Directions of high-speed/super-high Speed Grinding
3. Powerful Grinding
4. Belt Grinding
5. Hard and Brittle Materials High-efficiency Grinding
6. Grinding Improvement in Respect of Numerical Control, Automation, Intelligence and Virtualization
7. High-speed/high-efficiency Grinding Abrasives
8. Problems and Differences
8.1. Differences
8.2. Problems
9. Research Direction
10. Conclusion
Acknowledgements
References
