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超声焊接的力负载特性研究
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作者 姚震 莫毅强 +1 位作者 罗子伦 雷广伟 《机械设计与制造》 北大核心 2025年第4期159-162,168,共5页
超声焊接过程中,力负载对换能器的阻抗影响较大,超声电源匹配参数也要依据负载特性进行设计。分析了塑料超声焊接换能器的静压力和动态力的阻抗特性,通过实验验证静压力下机械等效谐振电阻与加工过程的电学谐振电阻平均值近似;区别于传... 超声焊接过程中,力负载对换能器的阻抗影响较大,超声电源匹配参数也要依据负载特性进行设计。分析了塑料超声焊接换能器的静压力和动态力的阻抗特性,通过实验验证静压力下机械等效谐振电阻与加工过程的电学谐振电阻平均值近似;区别于传统的串联谐振频率匹配理论,提出基于力负载下的换能器纯阻性谐振频率匹配方法,并以电感电容L型匹配拓扑为例进行了测试试验。结果表明,新方法能够适应焊接过程的阻抗变化,在频率跟踪的前提下实现理想匹配。 展开更多
关键词 超声焊接 负载特性 LC匹配 谐振 电谐振频率
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A new hybrid piezoelectric ultrasonic motor with two stators 被引量:2
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作者 易幼平 Wolfgang Seemann +1 位作者 Rainer Gausmann 钟掘 《Journal of Central South University of Technology》 2005年第3期324-328,共5页
A new hybrid piezoelectric ultrasonic motor, which consists of one rotor and two stators, was proposed in this paper. In order to match the resonance frequencies of longitudinal vibration and torsional vibration excit... A new hybrid piezoelectric ultrasonic motor, which consists of one rotor and two stators, was proposed in this paper. In order to match the resonance frequencies of longitudinal vibration and torsional vibration excited in the stators, a symmetrical structure was adopted in design of the motor. A so-called mass matching method, namely adding two rings to the outside circumference of the two stators respectively, was used to adjust the resonance frequencies of these two vibrations. A finite element model was developed using ANSYS software for the purpose of analyzing the resonance frequencies of longitudinal vibration and torsional vibration as well as the function of the adjusting rings. The results show that the resonance frequency of torsional vibration varies with the position of the ring, but the resonance frequency of longitudinal vibration changes little. By means of adjusting the mass and the position of the rings, the first order resonance frequency of longitudinal vibration is coincided with that of torsional vibration and the value is 20.75kHz. An experimental prototype motor was fabricated according to the analytical results and its performance is in agreement with the theoretical predictions. The speed of motor reaches the maximum 92r/min at the working frequency 19.0kHz. 展开更多
关键词 PIEZOELECTRIC ultrasonic motor lead zirconate titanate resonance frequency VIBRATION
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