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Prediction of dynamic milling stability considering time variation of deflection and dynamic characteristics in thin-walled component milling process

机译:考虑薄壁零件铣削过程中挠度和动态特性随时间变化的动态铣削稳定性预测

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摘要

The milling stability of thin-walled component is an important problem in the aviation manufacturing industry. The milling stability is influenced by both deflection characteristic and dynamic characteristic of workpiece. Moreover, in the material removal, the deflection and dynamic characteristics of workpiece are time-variant on the change of machining positions. Thus, the milling stability is also time-variant. In order to investigate the time variation of deflection and dynamic characteristics of workpiece, a new computational model was established in this paper. Based on the influences of the deflection and the dynamic characteristics of workpiece, a new stability lobes diagram which can show different stability domains and chatter domains in different process positions was obtained. Experimental testing has been conducted to validate the established new model.
机译:薄壁部件的铣削稳定性是航空制造业中的重要问题。铣削稳定性受工件的挠曲特性和动态特性的影响。此外,在材料去除中,工件的挠度和动态特性随加工位置的变化而随时间变化。因此,铣削稳定性也是随时间变化的。为了研究工件的挠度和动态特性随时间的变化,建立了新的计算模型。基于挠度和工件动力学特性的影响,获得了一种新的稳定性凸角图,该图可以显示不同工艺位置的不同稳定性域和颤动域。已经进行了实验测试以验证建立的新模型。

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