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Machining vibration monitoring based on dynamic clamping force measuring in thin-walled components milling

机译:基于动态夹紧力测量薄壁组件铣削的加工振动监测

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In milling of thin-walled structures such as impellers or blisks, critical workpiece vibrations occur due to the excitation by the cutting forces and the dynamic interface between the workpiece and the fixture. Vibrations may cause instable state of the milling process, thus decreasing the production outcome by causing rejects. In respect to the milling process of thin-walled workpiece, a challenging task is to monitor the critical vibrations occurred in the workpiece itself or the contact surface between the workpiece and the clamping system. Vibrations can be reflected in the clamping system, and thus the clamping force variation monitoring is a potential scenario or solution to the challenging task. This article introduces a measurement prototype for the real-time dynamic clamping force monitoring. With respect to the measurement of clamping force, two case studies are carried out by a direct sensing method with PVDF thin-film sensors. In the first study, the measurement prototype with embedded PVDF sensors is located on the dynamometer, and an additional eddy-current transducer is applied for monitoring the workpiece deflection during the milling process. Deflection signals and cutting force signals from dynamometer are used as two referential signals to demonstrate the reliability of the prototype with embedded PVDF sensors. In the second study, milling test with the same tool and workpiece is implemented with only PVDF sensors monitoring. Dynamic clamping signal varying with different cutting durations in time, frequency, and time-frequency domain and different milling surface results is performed. Relationship between the collected signals and machining results is preliminarily analyzed. Case studies with thin-walled workpiece show the performance of the measurement prototype.
机译:在铣削诸如叶轮或​​外部的薄壁结构中,由于切割力和工件和固定装置之间的动态界面而发生临界工件振动。振动可能导致铣削过程的不稳定状态,从而通过引起拒绝来降低生产结果。关于薄壁工件的铣削过程,具有挑战性的任务是监测工件本身或工件和夹紧系统之间的接触表面中发生的临界振动。振动可以反射在夹紧系统中,因此夹紧力变化监测是挑战任务的潜在场景或解决方案。本文介绍了实时动态夹紧力监测的测量原型。关于夹紧力的测量,通过具有PVDF薄膜传感器的直接传感方法进行两种情况。在第一研究中,具有嵌入式PVDF传感器的测量原型位于测功机上,并且施加了另外的涡流换能器,用于在铣削过程中监测工件偏转。来自测功机的偏转信号和切割力信号用作两个参考信号,以展示用嵌入式PVDF传感器的原型的可靠性。在第二种研究中,仅使用相同的工具和工件进行铣削测试,只有PVDF传感器监控。动态钳位信号随时间,频率和时频域的不同切割持续时间而变化和不同的铣削表面结果。预先分析收集信号与加工结果之间的关系。薄壁工件案例研究显示了测量原型的性能。

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