基于有限元分析的超声手术刀优化实验

Fangrui Li, Tongyu Wang
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摘要

超声手术刀作为微创手术的重要器械,其性能对手术效果和手术安全起着决定性的作用。首先,借助ANSYS Workbench有限元分析平台对原超声手术刀进行模态分析,得到超声手术刀在40khz-70khz范围内的固有频率和振动模态;根据公式C= λ f.优化了手术刀的尺寸,并将尺寸长度优化为半波长的整数倍,使手术刀的最大振幅出现在刀头处。其次,对优化后的超声手术刀进行了模态分析和谐波响应分析。分析了各频率的固有频率模态、位移幅值和应力幅值曲线。最后确定了优化后的手术刀尺寸、工作频率和振幅放大比。结果表明,优化后的刀头输出振幅增加了3倍,最大应力点减小到原来的一半。振幅放大比由1:2提高到1:9,提高了超声手术刀的工作效率。
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Optimization experiment of ultrasonic scalpel based on finite element analysis
As an important instrument in minimally invasive surgery, the performance of ultrasonic scalpel is decisive for surgical results and surgical safety. Firstly, the modal analysis of the original ultrasonic scalpel is carried out with the help of ANSYS Workbench finite element analysis platform, and the natural frequency and vibration mode of the ultrasonic scalpel in 40khz-70khz are obtained. According to formula C= λ f. The size of the scalpel is optimized, and the size length is optimized to be an integral multiple of the half wavelength, so that the maximum amplitude of the scalpel occurs at the knife head. Secondly, the modal analysis and harmonic response analysis of the optimized ultrasonic scalpel are carried out. The natural frequency mode, displacement amplitude and stress amplitude curves of each frequency are analyzed. Finally, the optimized scalpel size, working frequency and amplitude amplification ratio are determined. The results show that the output amplitude of the optimized scalpel head increases three times and the maximum stress point decreases to half of the original. The amplitude amplification ratio is increased from 1:2 to 1:9, which increases the working efficiency of ultrasonic scalpel.
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