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Ultrasonic cutting with a d31-mode PMN-PT-driven planar tool

机译:使用d31模式PMN-PT驱动的平面工具进行超声波切割

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Ultrasonic cutting tools based on a mass-spring configuration of a drive transducer are widely used in surgery. However, the weight and self-heating of this configuration are weaknesses. An alternative approach is to use a planar tool to which piezoelectric drive components are bonded directly. This paper details the design and characterization of such a tool, utilizing PMN-PT relaxor single crystal material operated in the d31 mode. The tool, resembling a dagger, is able to produce longitudinal displacements > 6 µm when driven with 50 Vp-p at the resonance frequency, 73 kHz. The effectiveness of finite element analysis has been observed as the behavior of the tool was accurately predicted prior to its fabrication. Furthermore, ways to improve the efficiency of the tool by reconfiguring the material have been explored and implemented.
机译:基于驱动换能器的质量-弹簧构造的超声波切割工具被广泛用于外科手术中。但是,这种结构的重量和自发热是缺点。一种替代方法是使用平面工具,将压电驱动组件直接粘合到该工具上。本文利用在d31模式下运行的PMN-PT弛豫单晶材料详细介绍了这种工具的设计和特性。该工具类似于匕首,当在共振频率73 kHz下以50 Vp-p驱动时,能够产生大于6 µm的纵向位移。由于已经在制造工具之前准确预测了工具的行为,因此已经观察到有限元分析的有效性。此外,已经探索和实现了通过重新配置材料来提高工具效率的方法。

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