Euler force actuation mechanism for siphon valving in compact disk-like microfluidic chips
Deng Y. B. ; Fan J. H. ; Zhou S. ; Zhou T. ; Wu J. F. ; Li Y. ; Liu Z. Y. ; Xuan M. ; Wu Y. H.
刊名Biomicrofluidics
2014
卷号8期号:2页码:18
ISSN号ISBN/1932-1058
英文摘要Based on the Euler force induced by the acceleration of compact disk (CD)-like microfluidic chip, this paper presents a novel actuation mechanism for siphon valving. At the preliminary stage of acceleration, the Euler force in the tangential direction of CD-like chip takes the primary place compared with the centrifugal force to function as the actuation of the flow, which fills the siphon and actuates the siphon valving. The Euler force actuation mechanism is demonstrated by the numerical solution of the phase-field based mathematical model for the flow in siphon valve. In addition, experimental validation is implemented in the polymethylmethacrylate-based CD-like microfluidic chip manufactured using CO2 laser engraving technique. To prove the application of the proposed Euler force actuation mechanism, whole blood separation and plasma extraction has been conducted using the Euler force actuated siphon valving. The newly introduced actuation mechanism overcomes the dependence on hydrophilic capillary filling of siphon by avoiding external manipulation or surface treatments of polymeric material. The sacrifice for highly integrated processing in pneumatic pumping technique is also prevented by excluding the volume-occupied compressed air chamber. (C) 2014 AIP Publishing LLC.
收录类别SCI
语种英语
内容类型期刊论文
源URL[http://ir.ciomp.ac.cn/handle/181722/43976]  
专题长春光学精密机械与物理研究所_中科院长春光机所知识产出
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GB/T 7714
Deng Y. B.,Fan J. H.,Zhou S.,et al. Euler force actuation mechanism for siphon valving in compact disk-like microfluidic chips[J]. Biomicrofluidics,2014,8(2):18.
APA Deng Y. B..,Fan J. H..,Zhou S..,Zhou T..,Wu J. F..,...&Wu Y. H..(2014).Euler force actuation mechanism for siphon valving in compact disk-like microfluidic chips.Biomicrofluidics,8(2),18.
MLA Deng Y. B.,et al."Euler force actuation mechanism for siphon valving in compact disk-like microfluidic chips".Biomicrofluidics 8.2(2014):18.
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