Bian Rong, Ding Wenzheng, Liu Shuqing, He Ning
Industrial Center, Nanjing Institute of Technology; Nanjing 211167, China.
Jiangsu Key Laboratory of Precision and Micro-Manufacturing Technology, Nanjing University of Aeronautics & Astronautics; Nanjing 210016, China.
Materials (Basel). 2019 Jan 2;12(1):122. doi: 10.3390/ma12010122.
The setting of cutting variables for precision milling of ceramics is important to both the machined surface quality and material removal rate (MRR). This work specifically aims at the performance of corner radius PCD (polycrystalline diamond) end mill in precision milling of zirconia ceramics with relatively big cutting parameters. The characteristics of the cutting zone in precision milling ceramics with corner radius end mill are analyzed. The relationships between the maximum uncut chip thickness () and the milling parameters including feed per tooth (), axial depth of cut () and tool corner radius () are discussed. Precision milling experiments with exploratory milling parameters that cause uncut chip thickness larger than the critical value were carried out. The material removal mechanism was also analyzed. According to the results, it is advisable to increase appropriately during precision milling ZrO₂ ceramics with corner radius end mill. There is still a chance to obtain ductile processed surface, as long as the brittle failure area is controlled within a certain range. The appropriate increasing of , not only can prevent the brittle damage from affecting the machined surface, but also could increase the MRR. The milling force increases with increasing MRR, but the surface roughness can still be stabilized within a certain range.
陶瓷精密铣削加工中切削参数的设定对加工表面质量和材料去除率(MRR)都很重要。这项工作专门针对具有较大切削参数的圆角聚晶金刚石(PCD)立铣刀在氧化锆陶瓷精密铣削中的性能进行研究。分析了使用圆角立铣刀精密铣削陶瓷时切削区的特性。讨论了最大未切削切屑厚度()与每齿进给量()、轴向切削深度()和刀具圆角半径()等铣削参数之间的关系。进行了采用导致未切削切屑厚度大于临界值的探索性铣削参数的精密铣削实验。还分析了材料去除机理。根据实验结果,在使用圆角立铣刀精密铣削ZrO₂陶瓷时适当增加是可取的。只要将脆性破坏区域控制在一定范围内,仍有机会获得延性加工表面。适当增加,不仅可以防止脆性损伤影响加工表面,还可以提高材料去除率。铣削力随材料去除率的增加而增大,但表面粗糙度仍可稳定在一定范围内。