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基于逆滤波原理的铣削力补偿研究

侯马骁 曹宏瑞 史江海 任军旗

航空科学技术2024,Vol.35Issue(12):103-110,8.
航空科学技术2024,Vol.35Issue(12):103-110,8.DOI:10.19452/j.issn1007-5453.2024.12.013

基于逆滤波原理的铣削力补偿研究

Research on Milling Force Compensation Based on Inverse Filtering

侯马骁 1曹宏瑞 1史江海 1任军旗2

作者信息

  • 1. 西安交通大学 精密微纳制造技术全国重点试验室,陕西 西安 710049
  • 2. 中国航发西安动力控制科技有限公司,陕西 西安 710077
  • 折叠

摘要

Abstract

Milling force is an important parameter in machining processes that affects the aerospace part quality and tool life.Aiming at the distortion problem of dynamometer in the high frequency,this paper compensates the measured milling force based on the inverse filtering.First,the milling force measurement error is analyzed with respect to the structure and dynamic characteristics of the dynamometer system.Next,the principle of inverse filtering and its application to milling force compensation is presented.In addition,6061 aluminum alloy,which is widely used in aerospace and other fields,is selected for milling experiments.The inverse filter is used to compensate the milling force,and the characteristics of the compensated milling force are analyzed.Finally,shaker experiments and high-frequency calibration experiments of the displacement signal are used to verify the necessity and accuracy of milling force compensation.The experimental results show that the EVE of the input force and the compensated force is less than 6%,and the error of the identified milling force and the compensated milling force is 5.49%.The proposed milling force compensation method can accurately compensate the milling force during the machining process of the parts in aerospace and other fields.

关键词

6061铝合金/铣削力/误差分析/补偿/试验验证

Key words

6061 aluminum alloy/milling force/error analysis/compensation/experimental validation

分类

航空航天

引用本文复制引用

侯马骁,曹宏瑞,史江海,任军旗..基于逆滤波原理的铣削力补偿研究[J].航空科学技术,2024,35(12):103-110,8.

基金项目

航空科学基金(2022Z072070002) Aeronautical Science Foundation of China(2022Z072070002) (2022Z072070002)

航空科学技术

1007-5453

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