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Design and simulation of a normally closed glucose sensitive hydrogel based microvalve

机译:常闭葡萄糖敏感水凝胶微阀的设计与仿真

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In drug delivery systems microvalves are the key components that have been developed for active control of drugs. In this research a normally closed microvalve with a glucose sensitive hydrogel actuating system is designed and simulated. Swelling of the hydrogel forces a silicone rubber membrane to deflect and causes the valve to be opened. The component of the valve that can be opened because of the hydrogel pressure is a silicon nitride cantilever beam which is sealed with a parylene layer. Simulations have been done by FEM analysis and the results show that membrane deflection is large enough to enable the valve to be opened and the fluid to flow through the microchannel. For both rectangular and trapezoidal microchannels with various hydraulic diameters, output flow rates less than 50 μl/min to several hundreds of μl/min can be achieved. Final design has been optimized for the opening point of microvalve at glucose concentration of 15 mM. Overall investigation has been done for a microvalve with specific dimensions and with 4 kPa input pressure the output flow rate of 100 μl/min has been generated which is in the desired range.
机译:在药物输送系统中,微型阀是为主动控制药物而开发的关键组件。在这项研究中,设计并模拟了一个带有葡萄糖敏感水凝胶驱动系统的常闭微型阀。水凝胶的膨胀迫使硅橡胶膜挠曲并导致阀门打开。由于水凝胶压力而可打开的阀组件是氮化硅悬臂梁,该梁用聚对二甲苯层密封。通过有限元分析进行了仿真,结果表明膜的挠度足够大,可以打开阀门并使流体流过微通道。对于具有各种水力直径的矩形和梯形微通道,输出流量都可以达到50μl/ min以下至数百μl/ min。最终设计已针对15 mM葡萄糖浓度下的微阀开启点进行了优化。已经对具有特定尺寸的微型阀进行了全面研究,并在4 kPa输入压力下产生了100μl/ min的输出流速,该流速在所需范围内。

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