津贴(工程)
叶轮
机械加工
理论(学习稳定性)
过程(计算)
极限(数学)
刚度
有限元法
固有频率
控制理论(社会学)
工程类
机械工程
数学
结构工程
计算机科学
振动
数学分析
物理
声学
机器学习
操作系统
控制(管理)
人工智能
作者
Yan Wu,Kaifa Wang,gang zheng,Boxin Lv,Yong He
出处
期刊:Science Progress
[SAGE Publishing]
日期:2020-06-25
卷期号:103 (3): 36850420933418-36850420933418
被引量:7
标识
DOI:10.1177/0036850420933418
摘要
In order to accurately improve and predict chatter stability region of machining process, an optimization method of machining process with non-uniform allowance of integral impeller was proposed. The modal parameters of the workpiece process system were obtained using the finite element analysis. Based on the regenerative chatter analysis theory, a limit comparison diagram of the stability with uniform allowance and non-uniform allowance was established. The simulation results showed that the non-uniform allowance natural frequency is about 1.43 times as much as the uniform allowance natural frequency, and the machining system stiffness non-uniform allowance is twice as much as the uniform allowance, while the limit of chatter stability region is increased by 3 times. This article studied uniform allowance and non-uniform allowance of milling chatter stability with experimental method. Tool path for five-axis machining and machine tool simulation based on NX CAM were planned. The comparisons of cutting processing uniform allowance and non-uniform allowance were done, and the surface profile detection of the test part with the three-dimensional scanning was carried out. The experimental results showed that the average optimization rate for manufacturing precision of blade suction surface after optimization and pressure surface was 63.8% and 48.84%. The total experiment showed that this process optimization strategy could effectively improve the stiffness of the integral impeller blade and reduce the cutting chatter of the blade during the cutting process.
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