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Theoretical and Experimental Study on Vibration Propagation in PMMA Components in Ultrasonic Bonding Process

机译:超声粘接过程中PMMA组件振动传播的理论和实验研究

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Ultrasonic bonding has an increasing application in the micro assembly of polymeric micro-electro mechanical systems (MEMS) with high requirements for fusion precision. In the ultrasonic bonding process, the propagation of ultrasonic vibration in polymer components is related to the interfacial fusion, which can be used as a monitoring parameter to control ultrasonic energy. To study the vibration propagation in viscoelastic polymer components, finite element analysis on the bonding of poly methyl methacrylate (PMMA) micro connector to substrate for microfluidic system is carried out. Curves of propagated vibration amplitude corresponding to interfacial temperatures are obtained. The ultrasonic vibration propagated in PMMA components are measured through experiments. The theoretical and experimental results are contrasted to analyze the change mechanism of vibration propagation related to temperature. Based on the ultrasonic bonding process controlled by the feedback of vibration propagation, interfacial fusions at different vibration propagation states are obtained through experiments. Interfacial fusion behavior is contrasted to the propagated vibration amplitude in theoretical and experimental studies. The relation between vibration propagation and fusion degree is established with the proper parameter range for the obtained high quality bonding.
机译:超声波键合在对融合精度有很高要求的聚合物微机电系统(MEMS)的微装配中有越来越多的应用。在超声粘接过程中,聚合物组件中超声振动的传播与界面融合有关,可以用作控制超声能量的监测参数。为了研究粘弹性聚合物组分中的振动传播,对聚甲基丙烯酸甲酯(PMMA)微连接器与微流体系统基底之间的键合进行了有限元分析。获得与界面温度相对应的传播振动幅度的曲线。通过实验测量在PMMA组件中传播的超声振动。对比了理论和实验结果,分析了与温度有关的振动传播的变化机理。基于受振动传播反馈控制的超声结合过程,通过实验获得了不同振动传播状态下的界面融合。在理论和实验研究中,界面融合行为与传播的振动幅度形成对比。在适当的参数范围内建立振动传播与融合程度之间的关系,以获得高质量的粘结。

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