机械加工
计量系统
机械工程
校准
虚拟力
金刚石切割
钻石
测功机
压电传感器
机制(生物学)
噪音(视频)
压电
振动
声学
材料科学
刀具磨损
准确度和精密度
工程类
滤波器(信号处理)
测量不确定度
金刚石车削
计量学
刀具
精密工程
过程(计算)
线性
测量原理
表面微加工
机床
惯性参考系
接触力
作者
Zhongwei Li,Liang An,Yuqi Ding,Huanbin Lin,Yuan-Liu Chen
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2026-03-13
卷期号:26 (6): 1817-1817
被引量:1
摘要
Ultra-precision diamond milling is a crucial technology for machining precision components with complex-shaped surfaces and microstructure array surfaces. Machining process monitoring is a promising approach to improving machining quality. This paper proposes a spindle-integrated three-axis cutting force measurement method for ultra-precision diamond milling using force piezoelectric force sensors. A spindle-integrated force measurement mechanism utilizing four piezoelectric force sensors arranged symmetrically and diagonally for measuring three-axis cutting forces was designed. Calibration tests showed that the linearity of force detection in three directions was less than 2%. Tool-setting experiments based on force detection signals were conducted, demonstrating the capacity of precision tool-setting in the Z-direction with an accuracy of less than 100 nm. A Wiener filter was employed to eliminate measurement noise from vibration and inertial forces under spindle rotation. Ultra-precision milling experiments were carried out based on the designed spindle-integrated force measurement mechanism, and the measurement results demonstrated that the system could effectively detect cutting forces below 50 mN and exhibited good correlation with the measurement results of commercial standard dynamometers. This paper provides a promising and effective in-process force measurement technology for the ultra-precision milling process.
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