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首页> 外文期刊>Journal of Micromechanics and Microengineering >Bonding process using integrated electrothermal actuators for microfluidic circuit fabrication
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Bonding process using integrated electrothermal actuators for microfluidic circuit fabrication

机译:用于微流体电路制造的集成电热致动器的粘合工艺

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摘要

In this paper, the fabrication of plastic microfluidic circuits using integrated electrothermal actuators is described. The materials used to do this task are aluminium, biocompatible glue and polymethylmethacrylate (PMMA). These materials are processed to integrate electrothermal actuators on transparent and biocompatible PCB-like substrates. The actuators reach a temperature between the glass transition temperature and the melting point of the PMMA in order to perform the bonding. The PCB-like substrate allows the integration of additional circuitry if required. The proposed method of fabrication guarantees transparent devices. To do this task, the facilities are not expensive, and allow industrial production because many devices can be assembled at the same time. Finally, the proposed method is checked. In order to do so, a T-junction microfluidic circuit for bubbles generation is fabricated. The microchannels have a width of 600 mu m and a height of 1300 mu m. The generation of bubbles was tested with successful results and good correspondence with the theoretical behaviour. Leakages were not observed during experiments, demonstrating the feasibility of the bonding method for fabricating microfluidic devices using thermoplastics materials.
机译:本文描述了使用集成电热致动器的塑料微流体电路的制造。用于做这项任务的材料是铝,生物相容性胶和聚甲基丙烯酸甲酯(PMMA)。处理这些材料以将电热致动器集成在透明和生物相容性PCB样衬底上。致动器达到PMMA的玻璃化转变温度和PMMA的熔点之间的温度以进行粘合。如果需要,PCB样衬底允许积分附加电路。所提出的制造方法可确保透明装置。为执行此任务,该设施并不昂贵,并且允许工业生产,因为许多设备可以同时组装。最后,检查所提出的方法。为此,制造用于泡沫产生的T型连接微流体电路。微通道的宽度为600μm,高度为1300 mu m。用成功的结果和与理论行为进行良好的对应来测试气泡的产生。实验期间未观察到泄漏,证明使用热塑性材料制造微流体装置的粘合方法的可行性。

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