Analysis of the machining stability in milling thin-walled plate

Sheng Qu, Ji-bin Zhao, Tian-Duo WAng
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引用次数: 2

Abstract

The thin-walled plate parts are widely used in the aeronautical industry. Research on the machining stability in end milling of thin-walled plate is of great significance to improve the materials remove rates and optimize milling parameters. Analyzing the influence of milling parameters on the milling stability is conducive to choosing appropriate cutter and milling machine in actual milling. In this study, statistical variances of the dynamic displacements are employed as a chatter detection criterion to acquire the stability lobe diagram. The milling experiment results show that the obtained stability lobe diagram can predict the stability domain well. Based on this stability theory, the influences of modal parameters and tooth number on the machining stability are analyzed systematically by simulation, which is significant for choosing an appropriate cutting condition.
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铣削薄壁板加工稳定性分析
薄壁板件在航空工业中有着广泛的应用。研究薄壁板立铣削加工稳定性对提高材料去除率和优化铣削参数具有重要意义。分析铣削参数对铣削稳定性的影响,有助于在实际铣削中选择合适的刀具和铣床。在本研究中,采用动态位移的统计方差作为颤振检测的判据,得到了系统的稳定性瓣图。铣削实验结果表明,所得到的稳定波瓣图能较好地预测稳定域。在此基础上,通过仿真系统分析了模态参数和齿数对加工稳定性的影响,为选择合适的切削条件提供了理论依据。
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