基于爆破阀的微流体引流控制芯片研究
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TP212 TH83

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江苏省高等学校自然科学研究面上项目(19KJB530013)、南京信息工程大学人才启动经费(2019R16)、江苏省“双创博士”项目(R2020SCB50)资助


Research on the microfluidic liquid-introduction-control chip based on bursting valves
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    摘要:

    微量流体的收集与控制是微流控领域的关键技术,微流体引流控制不仅需要对流速、时间等参数进行精确控制,而且要 避免流体在多个检测区的交叉混染。 本文设计一种基于爆破阀的微流体引流控制芯片。 首先,对爆破阀机理进行分析,并采用 MEMS 工艺制备微流控芯片;然后,对影响爆发阀特性的材料亲水性进行跟踪测量,对微流控芯片的引流特性进行宏观和微观 观测;更进一步地,对爆破阀的爆破压力进行理论计算和实验实测,3 种爆破阀的实测爆破压力分别为 90、690、2 440 Pa;最后, 对不同进样速率下爆破阀的爆破特性进行测试。 实验结果表明,通过爆破阀的合理设计,可实现微流体的引流控制,使其按预 定次序、预定时间流入检测区,进而有效避免流体的交叉混染。

    Abstract:

    The collection and control of micro-fluid are key technologies in the field of microfluidics. The introduction control of microfluid requires not only the precise control of velocity, time and other parameters, but also the avoidance of cross contamination of fluids in multiple detection areas. In this article, a microfluidic liquid-introduction-control chip based on the bursting valves is designed. Firstly, the mechanism of the bursting valve is analyzed and the microfluidic chip is fabricated by the MEMS process. Then, the hydrophilicity of PDMS that affects the characteristics of the bursting valves is tracked. The liquid introduction characteristics of the microfluidic chip are observed at both macro and micro levels. Furthermore, the theoretical calculation and experimental measurement of the bursting pressure of the bursting valves are carried out, and the measured bursting pressure values of the three types of bursting valves are 90, 690 and 2 440 Pa, respectively. Finally, the blasting characteristics of the bursting valves under different injection rates are tested. Experimental results show that, through the reasonable design of the bursting valves, the introduction control of micro-fluid can be effectively controlled. The liquid can flow into the detection area in a predetermined order and time, and the cross contamination of fluids can be avoided effectively.

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杨明鹏,刘 佳,李言杰,葛 静.基于爆破阀的微流体引流控制芯片研究[J].仪器仪表学报,2022,43(1):54-61

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  • 在线发布日期: 2023-02-06
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