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Design and modeling of microneedle integrated with microactuator for drug delivery

机译:集成有微致动器的微针设计和建模

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摘要

Today's world has very much demand for the development of microscale devices, due to its less cost, space requirements, high-dimensional stability and especially manufacturing time. In this paper, we have design and simulated MEMS based microactuator and microneedle integration which will be very helpful for blood sampling device like e-mosquito. The dimensions of the modeled beam are of 100 mm long, 30 mm width, 10 mm thickness. This new design model consists of piezoceramic material sandwiched between two metal electrodes and the piezoelectric actuator is made with microneedle which will help for blood sampling purposes. The results after the simulation of this new model present that it will be suitable for blood sampling analysis with aluminum as electrodes and silicon as microneedle.
机译:当今世界,由于其成本低,空间要求小,尺寸稳定性高,尤其是制造时间短,因此对微型设备的开发有很高的需求。在本文中,我们已经设计并模拟了基于MEMS的微致动器和微针集成,这将对电子蚊子等采血设备非常有用。建模梁的尺寸为100毫米长,30毫米宽,10毫米厚。这种新的设计模型由夹在两个金属电极之间的压电陶瓷材料组成,压电致动器由微针制成,有助于血液采样。对新模型进行仿真后的结果表明,该模型适用于以铝为电极,硅为微针的血液采样分析。

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