现代制造工程 ›› 2026, Vol. 550 ›› Issue (7): 119-128.doi: 10.16731/j.cnki.1671-3133.2026.07.014

• 制造技术/工艺装备 • 上一篇    下一篇

基于力-热耦合的CF/PEEK螺旋铣削制孔表面及亚表面质量研究

郑炎钊1, 李远辰1,2, 李澳1, 梁凯1, 郭义3   

  1. 1 天津工业大学机械工程学院,天津 300387;
    2 天津市现代机电装备技术重点实验室,天津 300387;
    3 天津凯华绝缘材料股份有限公司,天津 300300
  • 收稿日期:2025-10-21 出版日期:2026-07-18 发布日期:2026-08-05
  • 通讯作者: 李远辰,博士,讲师,主要研究方向为复合材料加工理论工艺和方法、超声振动辅助制造。E-mail:liyuanchen@tiangong.edu.cn
  • 作者简介:郑炎钊,硕士研究生,主要研究方向为复合材料加工。E-mail:17864219382@163.com

Research on surface and subsurface quality in helical milling of CF/PEEK holes based on thermo-mechanical coupling effects

ZHENG Yanzhao1, LI Yuanchen1,2, LI Ao1, LIANG Kai1, GUO Yi3   

  1. 1 School of Mechanical Engineering, Tiangong University, Tianjin 300387,China;
    2 Tianjin Key Laboratory of Morden Electromechinical Equipment Technology, Tianjin 300387,China;
    3 Tianjin Kaihua Insulation Material Co., Ltd., Tianjin 300300,China
  • Received:2025-10-21 Online:2026-07-18 Published:2026-08-05

摘要: 为了深入研究CF/PEEK复合材料螺旋铣孔时力-热耦合对加工孔壁表面及亚表面形貌的影响机制,进行了螺旋铣孔微观仿真,分析了切削过程中的纤维断裂、基体破碎及界面脱粘等失效机制;开展了螺旋铣孔试验,探究了工艺参数、切削力和切削热对孔壁出入口表面粗糙度、孔壁整体表面粗糙度以及亚表面损伤的影响规律。研究表明,由于热量积累导致的基体涂抹现象,使孔壁出口表面粗糙度明显低于入口表面粗糙度。孔壁整体表面粗糙度随自转转速的增加而降低,随公转转速的增加而升高;当螺距小于0.5 mm时,其随螺距的增大而升高,当螺距大于0.5 mm时,其随螺距的增大而降低。这是由于当螺距增大时,切削力随之增大,切削力增大导致温度升高,过高的温度引发基体涂抹现象,从而使表面粗糙度降低。不同的纤维方向角以及力-热耦合对于孔壁表面及亚表面损伤区域有显著影响。

关键词: CF/PEEK复合材料, 螺旋铣孔, 力-热耦合, 表面及亚表面质量

Abstract: In order to deeply investigate the influencing mechanism of thermo-mechanical coupling effects on the surface and subsurface morphology of machined hole walls during the helical milling of CF/PEEK composites. A microscopic simulation analysis was conducted to elucidate the failure mechanisms encompassing fiber fracture,matrix fragmentation,and interfacial debonding during the cutting process. An experimental study was also conducted on spiral milling to investigate the effects of process parameters,cutting forces and cutting heat on the surface quality which includes the roughness at the entrance and exit holes,the overall hole wall roughness,and the subsurface damage. Research results indicate that the phenomenon of matrix smearing,induced by heat accumulation,results in a significantly lower surface roughness at the exit orifice wall compared to that at the entrance. The overall roughness of the hole wall decreases with the increase in rotational speed and increases with the increase in revolution speed. When the pitch is less than 0.5 mm,the roughness increases with the increase of pitch;when the pitch exceeds 0.5 mm,the roughness decreases with further increase in pitch. This phenomenon occurs because as the pitch increases,the cutting force rises accordingly,leading to an elevation of temperature. Excessive temperatures induce material smearing on the substrate,consequently reducing surface roughness. The fiber orientation angle and thermo-mechanical coupling exert a significant influence on both surface and subsurface damage zones of hole walls.

Key words: CF/PEEK composite material, helical milling, thermo-mechanical coupling, surface and subsurface quality

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