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Thin-disk piezoceramic ultrasonic motor. Part I: design and performance evaluation

机译:薄盘压电陶瓷超声波马达。第一部分:设计和性能评估

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The purpose of this study is to gain the knowledge and experience in the design of thin-disk piezoceramic-driving ultrasonic actuator dedicated. In this paper, the design and construction of an innovative ultrasonic actuator is developed as a stator, which is a composite structure consisting of piezoceramic (PZT) membrane bonded on a metal sheet. Such a concentric PZT structure possesses the electrical and mechanical coupling characteristics in flexural wave. The driving ability of the actuator comes from the mechanical vibration of extension and shrinkage of a metal sheet due to the converse piezoelectric effect, corresponding to the frequency of a single-phase AC power. By applying the constraints on the specific geometry positions on the metal sheet, the various behaviors of flexural waves have been at the different directions. The rotor is impelled by the actuator with rotational speeds of 600 rpm in maximum using a friction-contact mechanism. Very high actuating and braking abilities are obtained. This simple and inexpensive structure of actuator demonstrates that the mechanical design of actuator and rotor could be done separately and flexibly according to the requirements for various applications. And, its running accuracy and positioning precision are described in Part II. A closed loop servo positioning control i.e. sliding mode control (SMC) is used to compensate automatically for nonlinearly mechanical behaviors such as dry friction, ultrasonic vibrating, slip-stick phenomena. Additionally, SMC scheme has been successfully applied to position tracking to prove the excellent robust performance in noise rejection. (C) 2003 Elsevier B.V. All rights reserved. [References: 7]
机译:这项研究的目的是获得专门设计的薄盘压电陶瓷超声驱动器的知识和经验。在本文中,开发了一种创新的超声波致动器的设计和构造作为定子,该定子是一种由压电陶瓷(PZT)膜粘结在金属板上构成的复合结构。这种同心的PZT结构在弯曲波中具有电气和机械耦合特性。致动器的驱动能力来自于金属片因逆压电效应而产生的伸缩振动,对应于单相交流电源的频率。通过对金属板上的特定几何形状位置施加约束,弯曲波的各种行为都处于不同的方向。执行器使用摩擦接触机构以最大600 rpm的转速推动转子。获得了非常高的致动和制动能力。执行器的这种简单而廉价的结构表明,执行器和转子的机械设计可以根据各种应用的要求分别灵活地完成。并且,其运行精度和定位精度在第二部分中进行了描述。闭环伺服定位控制即滑模控制(SMC)用于自动补偿非线性机械行为,例如干摩擦,超声振动,粘滑现象。此外,SMC方案已成功地应用于位置跟踪,以证明其在噪声抑制方面的出色鲁棒性能。 (C)2003 Elsevier B.V.保留所有权利。 [参考:7]

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