Lukong Environmental Protection Co., Ltd., Jinan 250000, China
| Abstract: | In recent years, high-speed cutting technology characterized by high cutting speed, small feed rate and high cutting accuracy has developed rapidly. High speed cutting technology can improve cutting quality, reduce cost and improve production stability by optimizing cutting parameters. In the actual production process, there are many factors affecting the final cutting quality and the factors are not completely independent, so it is difficult to select the best combination of process parameters. The optimal parameter ratio was determined by using Taguchi analysis through experiments with different combinations of process parameters. The data of tool wear, cutting quality and chip length were obtained through the experimental combination of different cutting parameters; Through Taguchi analysis and fuzzy control, the influence of cutting parameters such as cutting speed, feed rate and cutting depth on the life and quality of the cutting tool is clarified; After optimizing the material of the tool, changing the cutting process parameters and the coating of the tool, the test analysis is carried out in the workshop production process to obtain the best combination. The service life of the edge cutting machine tool is significantly improved, the operation efficiency is effectively improved, the enterprise cost is effectively reduced, and the production continuity is guaranteed. |
| Keywords: | High Speed Cutting; Control Factor; Tool Life; Taguchi Design |
| DOI: | 10.57237/j.mse.2022.01.001 |
| 1. | 2022年度盐城市政府社会科学基金项目 (22skA12, 22skA11) |
| 2. | 2021年江苏省盐城市自然科学软课题基金项目 (yckxrkt2021-1) |
| 3. | 2022年江苏省镇江市社科联社科应用研究基金项目 (2022YBL048). |
| [1] | 艾兴. 高速切削加工技术[M]北京. 国防工业出版社. 2003. |
| [2] | 汤志年. 高速切削加工在机械制造中的应用[J]. 内燃机与配件. 2021. (10): 102-103. |
| [3] | 祁志旭, 陈兴媚. 钛合金切削加工技术研究进展 [J]. 材料研究与应用. 2021, 15 (01): 71-76. |
| [4] | 王兵, 刘战强, 梁晓亮等. 钛合金高质高效切削加工刀具技术 [J]. 金属加工(冷加工). 2022. (03): 1-5+13. |
| [5] | 沈宇峰, 许爱军. 高速切削技术的研究与发展 [J]. 新技术新工艺. 2022. (02): 5-9. |
| [6] | 占刚. 切削参数对切削能影响实验研究 [J]. 组合机床与自动化加工技术. 2017. (07): 146-148+151. |
| [7] | 淡书桥. 高速切削刀具在数控加工中的应用 [J]. 河北农机. 2020. (07): 45. |
| [8] | 阙燚彬. 基于田口法和主成分分析法的高速铣削316L不锈钢的参数优化 [J]. 机床与液压. 2016. 44 (04): 11-13. |
| [9] | 张幼桢. 金属切削理论 [M]. 北京. 航空工业出版社. 1988. |
| [10] | 肖诗纲. 刀具材料及其合理选择 [M]. 北京. 机械工业出版社. 1990. |
| [11] | 程政文.PVD硬质合金涂层刀具切削和摩擦学性能研究 [D]. 武汉理工大学. 硕士论文. 2012. |
| [12] | 王奔.不同切削距离下硬质合金刀具加工GH4169的切削性能研究 [J]. 组合机床与自动化加工技术. 2019. 7. (7): 119-121. |
| [13] | 李军. 一种光伏组件自动削边机削边刀具 [P]. 中国专利CN205572488U. 2016. (9). |
| [14] | 胡伟楠. 钛合金TC4高速切削加工性试验研究 [D]. 沈阳理工大学, 硕士论文, 2020. |
| [15] | 沙智华, 袁琳, 刘宇. 挤压切削加工工艺参数的多目标优化 [J]. 机床与液压, 2021. 49 (19): 10-14. |
| [16] | 葛传志, 朱留宪, 杨林嵩. TC4 圆弧形槽铣削刀具的研发设计及试验研究 [J]. 工具技术, 2022. 56 (08): 49-51. |
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