首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Real-Time Deflection Monitoring for Milling of a Thin-Walled Workpiece by Using PVDF Thin-Film Sensors with a Cantilevered Beam as a Case Study
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Real-Time Deflection Monitoring for Milling of a Thin-Walled Workpiece by Using PVDF Thin-Film Sensors with a Cantilevered Beam as a Case Study

机译:以带有悬臂梁的PVDF薄膜传感器为例对薄壁工件的铣削进行实时变形监控

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摘要

Thin-walled workpieces, such as aero-engine blisks and casings, are usually made of hard-to-cut materials. The wall thickness is very small and it is easy to deflect during milling process under dynamic cutting forces, leading to inaccurate workpiece dimensions and poor surface integrity. To understand the workpiece deflection behavior in a machining process, a new real-time nonintrusive method for deflection monitoring is presented, and a detailed analysis of workpiece deflection for different machining stages of the whole machining process is discussed. The thin-film polyvinylidene fluoride (PVDF) sensor is attached to the non-machining surface of the workpiece to copy the deflection excited by the dynamic cutting force. The relationship between the input deflection and the output voltage of the monitoring system is calibrated by testing. Monitored workpiece deflection results show that the workpiece experiences obvious vibration during the cutter entering the workpiece stage, and vibration during the machining process can be easily tracked by monitoring the deflection of the workpiece. During the cutter exiting the workpiece stage, the workpiece experiences forced vibration firstly, and free vibration exists until the amplitude reduces to zero after the cutter exits the workpiece. Machining results confirmed the suitability of the deflection monitoring system for machining thin-walled workpieces with the application of PVDF sensors.
机译:薄壁工件,例如航空发动机叶盘和外壳,通常由难以切削的材料制成。壁厚很小,在铣削过程中在动态切削力的作用下很容易变形,从而导致工件尺寸不正确和表面完整性差。为了了解加工过程中的工件变形行为,提出了一种实时的非侵入式变形监测方法,并详细分析了整个加工过程中不同加工阶段的工件变形。薄膜聚偏二氟乙烯(PVDF)传感器连接到工件的非加工表面,以复制由动态切削力激发的偏斜。监视系统的输入偏转和输出电压之间的关系通过测试进行校准。监测到的工件挠度结果表明,在刀具进入工件工作台期间,工件会经历明显的振动,并且通过监测工件的挠度可以轻松跟踪加工过程中的振动。在刀具离开工件台的过程中,工件首先受到强制振动,并且存在自由振动,直到刀具离开工件后振幅减小到零为止。加工结果证实了挠度监测系统适用于通过PVDF传感器加工薄壁工件的情况。

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