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Optimisation of a cymbal transducer for its use in a high-power ultrasonic cutting device for bone surgery

机译:优化钹式换能器,用于骨科手术的高功率超声波切割装置

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摘要

The class V cymbal is a flextensional transducer commonly used in low-power ultrasonic applications. The resonance frequency of the transducer can be tailored by the choice of end-cap and driver materials, and the dimensions of the end-caps. The cymbal transducer has one significant limitation which restricts the operational vibration amplitude of the device. This is the limit imposed by the mechanical strength of the bonding agent between the metal end-cap and the piezoceramic driver. Therefore, when there is an increase in the input power or displacement, the stresses in the bonding layer can lead to debonding, thereby rendering the cymbal transducer ineffective for high-power ultrasonic applications. In this paper, several experimental analyses have been performed, complemented by the use of Abaqus/CAE finite element analysis, in order to develop a high-power ultrasonic cutting device for bone surgery using a new configuration of cymbal transducer, which is optimised for operation at high displacement and high input power. This new transducer uses a combination of a piezoceramic disc with a metal ring as the driver, thereby improving the mechanical coupling with the metal end-cap.
机译:V类c片是通常在低功率超声应用中使用的弯曲张力传感器。换能器的谐振频率可以通过选择端盖和驱动器材料以及端盖的尺寸来定制。 c换能器具有一个明显的限制,它限制了设备的工作振动幅度。这是金属端盖和压电陶瓷驱动器之间粘合剂的机械强度所施加的极限。因此,当输入功率或位移增加时,粘合层中的应力会导致脱胶,从而使the换能器对于高功率超声应用无效。在本文中,已经进行了一些实验分析,并辅以Abaqus / CAE有限元分析,以开发一种采用新型configuration摆换能器的大功率超声切割设备,该设备已针对操作进行了优化高排量和高输入功率。这种新型换能器结合了压电陶瓷盘和金属环作为驱动器,从而改善了与金属端盖的机械耦合。

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