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Simulation of low rigidity part machining applied to thin-walled structures

机译:低刚度零件加工应用于薄壁结构的仿真

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摘要

The aim of this study is to evaluate the modelling of machining vibrations of thin-walled aluminium work- pieces at high productivity rate. The use of numerical simulation is generally aimed at giving optimal cutting conditions for the precision and the surface finish needed. The proposed modelling includes all the ingredients needed for real productive machining of thin-walled parts. It has been tested with a specially designed machining test with high cutting engagement and taking into account all the phenomena involved in the dynamics of cutting. The system has been modelled using several simulation techni- ques. On the one hand, the milling process was modelled using a dynamic mechanistic model, with time domain simulation. On the other hand, the dynamic parameters of the system were obtained step by step by finite element analysis; thus the variation due to metal removal and the cutting edge position has been accurately taken into account. The results of the simulations were compared to those of the experiments; the discussion is based on the analysis of the cutting forces, the amplitude and the frequency of the vibrations evaluating the presence of chatter. The specific difficulties to perfect simulation of thin-walled workpiece chatter have been finely analysed.
机译:这项研究的目的是评估高生产率的薄壁铝工件的加工振动建模。数值模拟的使用通常旨在为所需的精度和表面光洁度提供最佳的切削条件。拟议的建模包括实际生产薄壁零件所需的所有要素。它已经过特别设计的加工测试,具有很高的切削啮合度,并且考虑了切削动力学中涉及的所有现象,因此进行了测试。该系统已使用多种仿真技术进行了建模。一方面,使用动态机械模型对铣削过程进行建模,并进行时域仿真。另一方面,通过有限元分析逐步获得系统的动态参数。因此,已经精确地考虑了由于去除金属和切削刃位置而引起的变化。模拟结果与实验结果进行了比较;讨论基于对切削力,振动幅度和频率的分析,从而评估颤振的存在。完美地分析了薄壁工件振颤的精确模拟的具体困难。

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