现代制造工程 ›› 2026, Vol. 550 ›› Issue (7): 106-112.doi: 10.16731/j.cnki.1671-3133.2026.07.012

• 制造技术/工艺装备 • 上一篇    下一篇

圆筒薄壁件圆周内侧壁埋头孔的加工工艺研究

陈思涛1, 万宇桐2, 何川2, 刘子杨1, 陈伟1, 印文典1, 金琳嵩1, 黄烁1   

  1. 1 成都飞机工业(集团)有限责任公司,成都 610000;
    2 中国人民解放军93147部队,成都 610000
  • 收稿日期:2026-02-02 出版日期:2026-07-18 发布日期:2026-08-05
  • 作者简介:陈思涛,高级工程师。E-mail:cst_520@163.com

Research on machining process of countersunk cluster holes on circumferential inner wall of cylindrical thin-walled parts

CHEN Sitao1, WAN Yutong2, HE Chuan2, LIU Ziyang1, CHEN Wei1, YIN Wendian1, JIN Linsong1, HUANG Shuo1   

  1. 1 Chengdu Aircraft Industry (Group) Co.,Ltd.,Chengdu 610000,China;
    2 Unit 93147 of the People′s Liberation Army of China,Chengdu 610000,China
  • Received:2026-02-02 Online:2026-07-18 Published:2026-08-05

摘要: 针对圆筒薄壁件圆周内侧壁高精度埋头孔加工中存在的加工变形、加工精度低和加工效率低等工程难题,提出了一种基于立式四轴加工中心的集成工艺解决方案。通过建立"薄壁支撑式胀套夹具+偏心反镗铣刀+参数化宏程序"三位一体的加工体系,有效解决了因薄壁件刚性不足导致的加工变形问题。创新设计楔形胀套机构实现薄壁件的多向约束装夹,设计具有偏心距的反镗铣刀完成锥度为107°的埋头孔一次成型加工,并构建了包含双层嵌套结构的参数化宏程序模块。实际应用表明,该加工体系使单件加工时间由8 h缩短至2.6 h,加工后经三坐标检测,加工精度完全达到图样要求。研究成果对圆筒薄壁件圆周内侧壁埋头孔的高效优质加工工艺具有重要的实际工程应用价值。

关键词: 圆筒薄壁件, 内侧壁埋头孔, 群孔加工, 反镗铣削, 参数化编程

Abstract: Aiming at the engineering problems such as difficult deformation control, challenging precision achievement and low processing efficiency in the machining of high-precision countersunk cluster holes on the circumferential inner wall of cylindrical thin-walled parts, it proposes an integrated process solution based on a vertical four-axis machining center. By establishing a three-in-one machining system of ″thin-walled supporting expansion sleeve fixture + eccentric back boring and milling cutter + parametric macro program″, the machining deformation problem caused by insufficient rigidity of thin-walled parts is effectively solved. An innovatively designed wedge-shaped expansion sleeve mechanism realizes multi-directional constrained clamping of thin-walled parts, a back boring and milling cutter with eccentricity is designed to complete the one-step forming of 107° taper countersunk holes, and a parametric macro program module with a double-layer nested structure is constructed. Practical application shows that this process shortens the single-piece processing time from 8 h to 2.6 h, and the three-coordinate inspection results after processing fully meet the drawing requirements. The research results have important practical engineering application value for the efficient and high-quality machining process of countersunk holes on the circumferential inner wall of cylindrical thin-walled parts.

Key words: cylindrical thin-walled parts, inner wall countersunk holes, cluster hole machining, back boring and milling, parametric programming

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