[1] LIANG X,LIN Z,WANG B.State-of-the-art of surface integrity induced by tool wear effects in machining process of titanium and nickel alloys:a review[J].Measurement,2018,132(1):150-181. [2] 李家豪,舒林森,衡钊,等.基于PCA与RSM-DE算法的激光熔覆参数多目标优化[J].焊接学报,2023,44(2):67-73,133. [3] 刘丽兰,李思聪,豆卫涛,等.316L不锈钢表面激光熔覆Ni60合金粉末的工艺优化与性能研究[J].中国激光,2024,51(16):1602204. [4] 祝国梁,罗桦,贺戬,等.镍基高温合金增材制造研究进展[J].材料工程,2024,52(2):1-15. [5] 张杰,张群莉,姚建华,等.激光熔覆IN718合金工艺优化及界面组织性能分析[J].中国激光,2022,49(16):204-213. [6] 崔权维,孙文磊,孙耀宁,等.激光熔覆工艺参数对镍基高温合金成形形貌的影响[J].有色金属工程,2021,11(12):29-37. [7] LIU Z Y,LI C,FANG X Y,et al.Cumulative energy demand and environmental impact in sustainable machining of inconel superalloy[J].Journal of Cleaner Production,2018,181:329-336. [8] NATARAJAN S P,VlAUDREUIL S,CHIBANE H,et al.Tool life and surface integrity characteristics in milling of SLM and C & W Inconel 718 in dry and MQL condition[J].The International Journal of Advanced Manufacturing Technology,2022,121(1):647-659. [9] LE C G,DUDZINSKI D.Temperature variation in the workpiece and in the cutting tool when dry milling Inconel 718[J].The International Journal of Advanced Manufacturing Technology,2014,74(5):1133-1139. [10] 樊文刚,叶佩青.复杂曲面五轴端铣加工刀具轨迹规划研究进展[J].机械工程学报,2015,51(15):168-182. [11] 罗智文,赵文祥,焦黎,等.平面曲线端铣加工过程铣削力的建模与预测[J].兵工学报,2015,36(9):1727-1735. [12] KASIM M S,HAFIZ M S A,GHANI J A,et al.Investigation of surface topology in ball nose end milling process of Inconel 718[J].Wear,2019,426:1318-1326. [13] SHU L S,CHANG X Y,ZHOU J,et al.Study on machinability and grain deformation of laser cladding manufactured and wrought IN718 alloys in dry milling process[J].Materials Today Communications,2023,34:105066. [14] 沈雪红,张定华,姚倡锋,等.钛合金切削加工表面完整性形成机制研究进展[J].航空材料学报,2021,41(4):1-16. [15] 唐志涛,刘战强,艾兴,等.金属切削加工热弹塑性大变形有限元理论及关键技术研究[J].中国机械工程,2007(6):746-751. [16] 吴泽刚,侯永峰,苗清,等.TC11钛合金整体叶轮铣削加工表面完整性研究[J].中国机械工程,2023,34(23):2862-2872. [17] 郑开魁,林有希,蔡建国,等.超声滚压工艺对模具钢激光熔覆层表面质量的影响[J].机械工程学报,2022,58(12):111-120. |