完全烧结牙科氧化锆陶瓷延性域铣削的研究
Research on Ductile Regime Milling of Fully Sintered Dental Zirconia
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摘要: 为提高完全烧结牙科氧化锆陶瓷的加工质量,降低加工成本,进行了陶瓷铣削的延性域试验研究. 根据小切削量条件推导得出铣削深度与其它切削参数的关系式,同时根据能量法估算出理论脆延转变临界切削深度值. 进行了不同铣削深度下的铣削试验;利用扫描电镜观测代表不同铣削深度的试样表面形貌,得出陶瓷的实际脆延转变临界铣削深度值. 根据试验的结果,综合运用应力均布效应理论和滑移理论阐释了陶瓷铣削脆延转变的机理. 通过切削力、切削温度、表面粗糙度和表面残余应力的测量和分析,研究了陶瓷延性域铣削的性能. 切削性能研究结果表明陶瓷延性域铣削可行,实现了高质量的表面加工.Abstract: The feasibility and performance of ductile regime milling were investigated based on experiments to improve the machining quality and to reduce machining cost of fully sintering dental Zirconia. The formula about the relation between milling depth and other cutting parameters was derived based on condition of little cutting output, while theoretical critical cutting depth of ductile-brittle transition was estimated according to energy method. A series of milling experiments in different cutting depths were conducted on above basis. The practical critical cutting depth of ductile-brittle transition of ceramics was found through scanning the surface of specimens representing different milling depths by SEM. The principle of ductile-brittle transition of ceramics milling was illustrated by theories of stress equispaced effect and gliding based on the results of experiments. The performance of ductile regime milling was studied according to the measurement and analysis of cutting force, cutting temperature, surface roughness and residual stress. Results of the performance show that ductile regime milling of ceramics is feasible and can achieve high quality of machining.
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