In this paper the implementation of piezoelectrics to a state-of-the-art wafer gripper is investigated. The objective is to propose and validate a solution method, which includes a mechanical design and control system, to achieve at least 5% damping for two eigenmodes of a wafer gripper. This objective serves as a 'proof of concept' to show the possibilities of implementing a state-of-the-art damping method to an industrial application, which in turn can be used to dampen different thin structures. The coupling relation between the piezoelectrics and their host structure were used to design the placement of the piezoelectric patches, together with modal analysis data of the a state-of-the-art wafer gripper. This data had been measured through an experimental setup. Active damping has been succesfully implemented onto the wafer gripper where positive position feedback (PPF) is used as a control algorithm to dampen two eigenmodes.
翻译:本文调查了将电压用于最先进的蓄水器的情况。 目的是提出并验证一种包括机械设计和控制系统在内的解决方案方法, 以实现至少5%的电压, 用于两种电压牵引器的顶部。 这个目标作为“ 防概念” 的“ 防概念 ”, 以向工业应用程序展示实施最先进的压压压方法的可能性, 工业应用程序反过来可以用来压压不同的薄结构。 将电压电压与其主机结构的连接关系用于设计配电接合装置, 以及一个电压牵引器的模型分析数据。 这些数据是通过实验性设置测量的。 积极的压压压在电压杆上, 积极的位置反馈( PPFF) 用作控制算法, 以抑制两种电压压压两种电压。