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Preliminary Simulation and Optimization Design of Ultrasonic Harmonic Scalpel

机译:超声谐波手术刀的初步仿真与优化设计

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In this paper, the structure and vibration mechanism of the ultrasonic harmonic scalpel are studied theoretically. According to the one-dimensional longitudinal vibration theory of elastic rod and finite element simulation method, the structure of ultrasonic transducer and amplitude transformer are designed with the resonant frequency of 55.5 kHz and the output amplitude greater than 40 microns. Then, an axisymmetric cylindrical arbor structure was studied and optimized by the finite element method (FEM). Optimization includes reducing the diameter of the scalpel head and thickening the cylinder at the antinode of radial displacement, such that the radial vibration and the stress of the scalpel rod is reduced; finally, a simple simulation analysis of the three-dimensional structure with the scalpel head is carried out, the result shows that the structure of the asymmetry scalpel head can increase the radial vibration of the scalpel rod.
机译:本文从理论上研究了超声波谐波手术刀的结构和振动机理。根据弹性杆和有限元仿真方法的一维纵向振动理论,超声换能器和振幅变压器的结构具有55.5 kHz的谐振频率,输出幅度大于40微米。然后,通过有限元方法(FEM)研究并优化了轴对称圆柱形轴结构。优化包括减小手术刀头的直径,并在径向位移的抗腹探剂处加厚气缸,使得径向振动和手术刀杆的应力减小;最后,执行与手术刀头的三维结构的简单模拟分析,结果表明,不对称手术刀头的结构可以增加手术刀杆的径向振动。

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