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Ultrasonic bonding method controlled by the characteristic waveform of ultrasonic propagation

机译:由超声波传播的特征波形控制的超声波键合方法

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摘要

The vibration propagated in polymer components is related to the interfacial fusion in ultrasonic bonding process, which can be employed to be reference variables to control the ultrasonic energy. In this paper, an ultrasonic precise bonding method controlled by characteristic waveform from the wavelet decomposition of the ultrasonic propagation is proposed. The vibration propagated from ultrasonic horn, through polymer components, to the anvil finally is analysed by wavelet packet decomposition. The node signal in the frequency band of 109,375-125,000 Hz, which contains more information related to the interfacial fusion behaviour, is reconstructed as the characteristic waveform. The ultrasonic bonding control procedure is designed by the recognition of two characteristic points on the characteristic waveform. Results indicate that, at the second characteristic point, high-quality interfacial fusion bonding is achieved without overflow out of the edge.
机译:聚合物组分中传播的振动与超声键合过程中的界面融合有关,可以用作控制超声能量的参考变量。本文提出了一种由特征波形控制的超声精确键合方法,该特征波形来自于超声传播的小波分解。最后,通过小波包分解来分析从超声变幅杆传播到聚合物成分的超声波振动。 109,375-125,000 Hz频带中的节点信号被重建为特征波形,该信号包含与界面融合行为有关的更多信息。通过识别特征波形上的两个特征点来设计超声波焊接控制程序。结果表明,在第二个特征点,可以实现高质量的界面融合,而不会溢出边缘。

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