[1] 钦椿凯. FGH95镍基高温合金拉削模拟及拉刀参数优化[D]. 湘潭:湘潭大学,2019. [2] 林翔,孙刚,张顺琦,等. 拉削工艺和装备设计方法研究综述[J]. 机电工程,2019,36(2):124-130. [3] 易林峰,吴时盛,李克,等. 小尺寸轮盘榫槽拉刀结构参数优化设计研究[J]. 工具技术,2021,55(6):57-63. [4] 高冠群. 不锈钢轮盘燕尾槽拉削表面缺陷形成机理及消除对策研究[D]. 长沙:湖南大学,2022. [5] 郑喜朝. 拉刀拉削表面质量缺陷及其消除方法[J]. 企业导报,2015(14):49-50. [6] SEDIGHI M,NASROLLAHI M,JOUDAKI J. Surface integrity in broaching of AA 7075-T651 aluminum alloys[J]. Machining Science and Technology,2019,23(1):79-94. [7] ZANGER F,BOEV N,SCHULZE V. Surface quality after broaching with variable cutting thickness[J].Procedia CIRP,2014,13:114-119. [8] ORTIZ-DE-ZARATE G,MADARIAGA A,SOLER D,et al. Broaching digital twin to predict forces,local overloads,and surface topography irregularities[J]. Materials,2024,17(22):5471. [9] CHAMANFAR A,MONAJATI H,ROSENBAUM A,et al. Microstructure and mechanical properties of surface and subsurface layers in broached and shot-peened Inconel-718 gas turbine disc fir-trees[J]. Materials Characterization,2017,132:53-68. [10] MEIER H,NINOMIYA K,DORNFELD D,et al. Hard broaching of case hardened SAE 5120[J]. Procedia CIRP,2014,14:60-65. [11] CHEN Z,PENG R,MOVERARE J,et al. Surface integrity and structural stability of broached Inconel 718 at high temperatures[J]. Metallurgical and Materials Transactions a-Physical Metallurgy and Materials Science,2016,47A(7):3664-3676. [12] HOSSEINI A. On the quality and integrity of broached surfaces[J]. International Journal of Advanced Manufacturing Technology,2019,102(1/2/3/4):95-103. [13] 王洪娇,秦襄培. 涂层表面形貌的分形表征研究[J]. 机械,2020,47(11):71-75. |