现代制造工程 ›› 2026, Vol. 550 ›› Issue (7): 160-165.doi: 10.16731/j.cnki.1671-3133.2026.07.019

• 设备设计/诊断维修/再制造 • 上一篇    

数控机床集成式水驱动打磨装置的研发与实验*

韦世勇1, 陈平2, 万珍平2   

  1. 1 巨冈精工(广东)股份有限公司,东莞 523962;
    2 华南理工大学机械与汽车工程学院,广州 510640
  • 收稿日期:2025-12-10 出版日期:2026-07-18 发布日期:2026-08-05
  • 作者简介:韦世勇,本科,副教授,主要研究方向为机械设计与制造、CAD/CAM数控技术。E-mail:shiyong.91@163.com
  • 基金资助:
    *东莞市工业母机与模具创新联合体项目(20251201500012)

Research and experiment of integrated water-driven grinding device for CNC machine tool

WEI Shiyong1, CHEN Ping2, WAN Zhenping2   

  1. 1 CATO Precision Machinery (Guangdong) Co., Ltd., Dongguan 523962,China;
    2 School of Mechanical and Automotive Engineering,South China University of Technology, Guangzhou 510640,China
  • Received:2025-12-10 Online:2026-07-18 Published:2026-08-05

摘要: 3C产业中的金属结构件在数控(Computer Numerical Control,CNC)机床加工完成后,其表面通常需要额外的打磨处理。但目前行业普遍依赖人工离线打磨方式,效率低且产品一致性不足。为此,设计了一种可与数控加工中心主轴集成的水驱动打磨装置,该装置以主轴中心的高压冷却水作为唯一驱动力:一方面驱动叶轮及打磨组件实现旋转加工;另一方面通过水流喷射作用完成冷却、除尘和碎屑清理。该方法实现了介质双用,简化了结构并提高了装置可靠性。在五轴数控机床上进行实验,以某品牌笔记本电脑外壳的铝合金D面为样件,结果表明,在相同加工条件下,该装置可将表面粗糙度降至0.6 μm,打磨时间缩短至120 s,较人工离线打磨方式效率提高了一倍以上。与传统气动打磨方式相比,集成式水驱动打磨装置在粉尘控制、噪声抑制及砂纸寿命方面均表现出明显优势。研究验证了集成式水驱动打磨的可行性与高效性,为数控加工中心集成精整技术提供了新思路,具有较高的推广与应用价值。

关键词: 五轴数控机床, 打磨装置, 水驱动, 一体化加工, 3C产品加工

Abstract: After machining metal structural parts in the 3C industry using Computer Numerical Control (CNC) machine tool, their surfaces typically require additional grinding. However,the industry currently relies heavily on manual offline grinding,which is inefficient and results in inconsistent product quality. To address this,a water-driven grinding device integrated with the spindle of a CNC machining center was designed and implemented. This device used high-pressure cooling water at the spindle center as the sole driving force. On one hand,it drived the impeller and grinding components to achieve rotational machining;on the other hand,it used water jets for cooling,dust removal,and debris cleaning. This method achieved dual-purpose use of the grinding medium,simplified the structure,and improved the reliability of the device. Experiments were conducted on a five-axis CNC machine tool,using the D-side of a computer aluminum alloy as a sample. The results show that,under the same machining conditions,the device can reduce the surface roughness to 0.6 μm and shorten the grinding time to 120 s,more than doubling the efficiency compared to manual offline grinding. Compared with traditional pneumatic solutions,the water-driven grinding device exhibits significant advantages in dust control,noise suppression,and sandpaper life. The study verified the feasibility and efficiency of water-driven grinding,providing a new approach for integrated finishing technology in machining centers,and has high promotion and application value.

Key words: five-axis CNC machine tool, grinding device, water-driven, integrated machining, 3C product manufacturing

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