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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Microfluidic Fabrication and Micromechanics of Permeable and Impermeable Elastomeric Microbubbles
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Microfluidic Fabrication and Micromechanics of Permeable and Impermeable Elastomeric Microbubbles

机译:渗透和不可渗透的弹性微气泡的微流体制备和微力学。

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We use droplet microfluidics to produce monodisperse elastomeric microbubbles consisting of gas encapsulated in a polydimethylsiloxane shell. These microbubbles withstand large, repeated deformations without rupture. We perform mu N-scale compression tests on individual microbubbles and find their response to be highly dependent on the shell permeability; during deformation, the pressure inside impermeable microbubbles increases, resulting in an exponential increase in the applied force. Finite element models are used to interpret and extend these experimental results enabling the design and development of deformable microbubbles with a predictable mechanical response. Such microbubbles can be designed to repeatedly transit through the narrow constrictions found in a porous medium functioning as probes of the local pressure.
机译:我们使用液滴微流控技术来生产由分散在聚二甲基硅氧烷壳中的气体组成的单分散弹性微泡。这些微气泡可承受较大的反复变形而不会破裂。我们对单个微气泡进行μN级压缩测试,发现它们的响应高度依赖于外壳的渗透性;在变形过程中,不可渗透微气泡内部的压力会增加,从而导致施加力呈指数增长。有限元模型用于解释和扩展这些实验结果,从而能够设计和开发具有可预测机械响应的可变形微泡。可以将此类微气泡设计为反复通过在多孔介质中发现的狭窄收缩部分,该狭窄收缩部分充当局部压力的探针。

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