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Analysis of screw pitch effects on the performance of bolt-clamped Langevin-type transducers

机译:螺距对螺栓固定兰格文式传感器性能的影响分析

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摘要

Bolt-clamped Langevin-type transducers (BLTs) are common vibration sources in high-power ultrasonic applications such as ultrasonic plastic joining. In this paper, the authors propose a low-aspect-ratio BLT shape based on numerical solutions of a complex elastic contact problem concerning the bearing stress (prestress) imposed on the interfaces between the parts by clamping with the screw bolt. The prestress distribution at the interface has significant influence on the mechanical quality factor (Q) of the BLT. It is found that the screw pitch of the clamping bolt heavily affects the prestress distribution in the simulation using the finite element method. The newly developed BLTs with a high resonance frequency of approximately 80 kHz has a relatively wide radiating face and sufficient volume ratio of the piezoelectric elements that convert electrical energy into mechanical energy. The average of their measured Q values exceeds 1000 despite their high resonance frequency when they are driven at a voltage higher than 17 V rms. (C) 2004 Acoustical Society of America.
机译:在大功率超声应用(例如,超声塑料连接)中,螺栓夹紧的Langevin型换能器(BLT)是常见的振动源。在本文中,作者基于复杂的弹性接触问题的数值解提出了一种低纵横比的BLT形状,该问题涉及通过用螺栓夹紧施加在零件之间的界面上的轴承应力(预应力)。界面处的预应力分布对BLT的机械品质因数(Q)有重要影响。发现在有限元法模拟中,夹紧螺栓的螺距会严重影响预应力分布。新开发的具有大约80 kHz高谐振频率的BLT具有相对较宽的辐射面和足够的压电元件体积比,这些压电元件将电能转换为机械能。尽管在高于17 V rms的电压下驱动它们时,尽管它们具有很高的谐振频率,但它们的测量Q值的平均值仍超过1000。 (C)2004年美国声学学会。

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