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Optimal Design of PZT actuated Ultrasonic Vibration Mechanism based on Taguchi Method for Precision Laser Machining

机译:基于田口法的精密激光加工PZT超声振动机构的优化设计

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摘要

Recently, medical devices are high value added products that requires challenging machining process. In this research, a novel vibration-assisted laser machining mechanism with PZT (Piezoelectric Transducers) is proposed for the fabrication of micro sized holes. If the mechanism vibrates the eyepiece of the laser machining head vertically, the laser spot on the workpiece will move vertically because objective lens in the eyepiece are shaken by the mechanism's vibration. The objective of this research is to get larger amplitude of vibration mechanism under the constraint of high vibrating frequency. Using Taguchi methods, several parameters and factors that deeply affect the performance of the vibration mechanism are optimized. Finally, the requirements of high frequency and large amplitude of the PZT actuated ultrasonic vibration mechanism are achieved, and the deviation error of vibration mechanism is less than 5% of linear motion through experimental verification.
机译:最近,医疗设备是高附加值的产品,需要具有挑战性的加工过程。在这项研究中,提出了一种新型的PZT(压电换能器)振动辅助激光加工机制,用于制造微孔。如果该机构垂直振动激光加工头的目镜,则工件上的激光光斑将垂直移动,因为该目镜中的物镜会因该机构的振动而振动。这项研究的目的是在高振动频率的约束下获得更大的振动机制振幅。使用田口方法,对影响振动机构性能的几个参数和因素进行了优化。最后,通过实验验证,达到了PZT驱动超声振动机构高频,大振幅的要求,振动机构的偏差误差小于线性运动的5%。

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