AbstractHigh-speed milling of thin-walled part is a widely used application for aerospace industry. Th'/> Investigation on chatter stability of thin-walled parts considering its flexibility based on finite element analysis
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Investigation on chatter stability of thin-walled parts considering its flexibility based on finite element analysis

机译:基于有限元分析的薄壁零件抗骨骼抗稳定性研究

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AbstractHigh-speed milling of thin-walled part is a widely used application for aerospace industry. The low rigidity components, large quantities of material removed in machining progress, are in the risk of the instability of the progress. In this paper, the thin-walled parts have the similar characteristics with the tools. Therefore, the dynamic model and the stability critical condition determined by the relative dynamic behavior between tool subsystem and workpiece subsystem are put forward. The thin-walled parts’ dynamic character varies greatly with time when machining. The whole workpiece has been divided into several stages by finite element analysis (FEA) so that its various modal parameters in the milling progress can be obtained gradually; thus, the variation due to metal removal has been accurately taken into account. The stability critical condition is predicted by frequency domain method based on the dynamic behavior of the two subsystems. With the respect to time-varying critical stability condition, a three-dimensional lobe diagram has been developed to show the changing conditions of chatter. Finally, the proposed methods and models were proven by series milling experiments.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>高速铣削薄壁部分是一个广泛应用于航空航天业的应用。低刚性部件,在加工进度中除去的大量材料,是进度不稳定性的风险。在本文中,薄壁部件具有与工具相似的特性。因此,提出了由工具子系统和工件子系统之间的相对动态行为确定的动态模型和稳定性临界条件。薄壁零件的动态字符随机械加工时变化很大。通过有限元分析(FEA)将整个工件分为几个阶段,使其在铣削进度中的各种模态参数逐渐获得;因此,已经精确地考虑了金属去除引起的变化。基于两个子系统的动态行为,通过频域方法预测稳定性临界条件。在相对于时变关键稳定性条件的方面,已经开发了三维叶片图来示出喋喋不休的变化条件。最后,通过系列铣削实验证明了所提出的方法和模型。 ]]>

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