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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Chatter stability and surface location error predictions in milling with mode coupling and process damping
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Chatter stability and surface location error predictions in milling with mode coupling and process damping

机译:铣削模式耦合和工艺阻尼铣削中的颤动稳定性和表面位置误差预测

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摘要

Together with machining chatter, surface location error induced by forced vibration may also inhibit productivity and affect workpiece surface quality in milling process. Addressing these issues needs the combined consideration of stability lobes diagram and surface location error predictions. However, mode coupling and process damping are seldom taken into consideration. In this article, an extended dynamic milling model including mode coupling and process damping is first built based on classical 2-degree-of-freedom dynamic model with regeneration. Then, a second-order semi-discretization method is proposed to simultaneously predict the stability lobes diagram and surface location error by solving this extended dynamic model. The rate of convergence of the proposed method is also investigated. Finally, a series of experiments are conducted to verify the veracity of the extended dynamic model. The modal parameters including direct and cross terms are identified by impact experiments. Via experimental verification, the experimental results show a good correlation with the predicted stability lobes diagram and surface location error based on the extended dynamic model. Also, the effects of mode coupling and process damping are revealed. Mode coupling increases the whole stability region; however, process damping plays a vital role in stability improvement mainly at low spindle speeds.
机译:通过加工聊天,由强制振动引起的表面位置误差也可能抑制生产率并影响研磨过程中的工件表面质量。解决这些问题需要组合稳定性Lobes图和表面定位误差预测的综合考虑。但是,耦合和处理阻尼很少考虑。在本文中,首先基于具有再生的经典二维的动态模型,首先构建包括模式耦合和处理阻尼的扩展动态铣削模型。然后,提出了一种二阶半离散化方法,同时通过解决这种扩展动态模型来同时预测稳定性凸起图和表面位置误差。还研究了所提出的方法的收敛速度。最后,进行了一系列实验以验证扩展动态模型的真实性。包括直接和横向术语的模态参数由影响实验识别。通过实验验证,实验结果与基于扩展动态模型的预测稳定性裂片图和表面定位误差呈现出良好的相关性。而且,揭示了模式耦合和处理阻尼的影响。模式耦合增加了整个稳定性区域;然而,过程阻尼主要在稳定性改善中起到重要作用,主要处于低主轴速度。

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