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Design optimization of active microfluidic mixer incorporating micropillar on flexible membrane

机译:柔性膜上含有微量微量微流体混合器的设计优化

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摘要

In this paper, the optimization of a new design of active microfluidic mixer incorporating micropillar for accelerating the mixing of fluids was performed. The studied microfluidic mixer consists of the microfluidic, mechanical, and electromagnetic parts. The finite element analysis is used to study the effect of input channel angle, micropillar's radius and spacing, and shape of membrane on the performance of mixer. In particular, the mixing flow rate, membrane deflection and micropillar swivel or bending were evaluated. The results show that the flow rate in the range of 3.78-3.88 A mu l/s which is almost two times of the input flow rate was obtained. The results also show that the deflection height ranging from 40 to 170 A mu m, micropillar swivel from 7A degrees to 20A degrees were obtained. Furthermore, from the comparison among the membrane shapes, it revealed that the membrane in circular shape generates higher deflection and swivel than the other membranes in square and rectangle shapes due to the uniform tensile stress distribution.
机译:在本文中,进行了一种新设计,其具有用于加速流体混合的微细胞的活性微流体混合器的新设计。研究的微流体混合器由微流体,机械和电磁零件组成。有限元分析用于研究输入通道角,微储物半径和间距的影响,以及膜的形状对混合器的性能。特别地,评估混合流速,膜偏转和微磷酸次旋转或弯曲。结果表明,在几乎是输入流速的几乎两倍的3.78-3.88AU L / S范围内的流速。结果还表明,从40至170Aμm,微小硅旋转的偏转高度从7A度到20A度的偏转高度。此外,从膜形状的比较来看,由于均匀的拉伸应力分布,圆形形状中的膜在正方形和矩形形状中的其他膜中产生较高的偏转和旋转。

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  • 来源
    《Microsystem technologies》 |2019年第4期|共7页
  • 作者单位

    Univ Teknol Malaysia Malaysia Japan Int Inst Technol Adv Devices &

    Mat Engn Jalan Sultan Yahya Petra Kuala Lumpur 54100 Malaysia;

    Univ Kebangsaan Malaysia Inst Microengn &

    Nanoelect Bangi 43600 Selangor Malaysia;

    Univ Teknol Malaysia Malaysia Japan Int Inst Technol Adv Devices &

    Mat Engn Jalan Sultan Yahya Petra Kuala Lumpur 54100 Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微电子学、集成电路(IC);
  • 关键词

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