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Nonlinear characterization of half and full wavelength power ultrasonic devices

机译:半波和全波功率超声波器件的非线性表征

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摘要

It is well known that power ultrasonic devices whilst driven under elevated excitation levels exhibit nonlinear behaviors. If no attempt is made to understand and subsequently control these behaviors, these devices can exhibit poor performance or even suffer premature failure. This paper presents an experimental method for the dynamic characterization of a commercial ultrasonic transducer for bone cutting applications (Piezosurgery® Device) operated together with a variety of rod horns that are tuned to operate in a longitudinal mode of vibration. Near resonance responses, excited via a burst sine sweep method were used to identify nonlinear responses exhibited by the devices, while experimental modal analysis was performed to identify the modal parameters of the longitudinal modes of vibration of the assemblies between 0-80 kHz. This study tries to provide an understanding of the effects that geometry and material choices may have on the nonlinear behavior of a tuned device.
机译:众所周知,功率超声设备在较高的激励水平下驱动时表现出非线性行为。如果未尝试理解并随后控制这些行为,则这些设备可能会表现出较差的性能,甚至遭受过早的故障。本文介绍了一种动态表征用于骨切割应用的商用超声换能器(Piezosurgery®Device)的实验方法,该换能器与各种杆角一起使用,这些杆角经调整可在纵向振动模式下运行。通过脉冲正弦波扫描方法激发的近共振响应被用于识别设备所表现出的非线性响应,而实验模态分析被执行以识别0-80 kHz之间组件纵向振动模态的模态参数。这项研究试图提供对几何形状和材料选择可能对调谐设备的非线性行为产生影响的理解。

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