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Shape-tunable wax microparticle synthesis via microfluidics and droplet impact

机译:通过微流控和液滴撞击合成形状可调的蜡微粒

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摘要

Spherical and non-spherical wax microparticles are generated by employing a facile two-step droplet microfluidic process which consists of the formation of molten wax microdroplets in a flow-focusing microchannel and their subsequent off-chip crystallization and deformation via microdroplet impingement on an immiscible liquid interface. Key parameters on the formation of molten wax microdroplets in a microfluidic channel are the viscosity of the molten wax and the interfacial tension between the dispersed and continuous fluids. A cursory phase diagram of wax morphology transition is depicted depending on the Capillary number and the Stefan number during the impact process. A combination of numerical simulation and analytical modeling is carried out to understand the physics underlying the deformation and crystallization process of the molten wax. The deformation of wax microdroplets is dominated by the viscous and thermal effects rather than the gravitational and buoyancy effects. Non-isothermal crystallization kinetics of the wax illustrates the time dependent thermal effects on the droplet deformation and crystallization. The work presented here will benefit those interested in the design and production criteria of soft non-spherical particles (i.e., alginate gels, wax, and polymer particles) with the aid of time and temperature mediated solidification and off-chip crosslinking.
机译:球形和非球形蜡微粒是通过采用一种容易的两步液滴微流体过程生成的,该过程包括在流动聚焦微通道中形成熔融蜡微粒,并随后通过微粒在不混溶液体上的撞击而发生片外结晶和变形。接口。在微流体通道中形成熔融蜡微滴的关键参数是熔融蜡的粘度和分散流体与连续流体之间的界面张力。根据冲击过程中的毛细管数和斯蒂芬数,描绘了蜡形态转变的粗略相图。进行了数值模拟和分析建模的结合,以了解熔融蜡变形和结晶过程的基础物理原理。蜡微滴的变形主要由粘性和热效应而不是重力和浮力效应决定。蜡的非等温结晶动力学说明了对液滴变形和结晶的时间依赖性热效应。此处介绍的工作将借助时间和温度介导的固化和片外交联,使对软非球形颗粒(即藻酸盐凝胶,蜡和聚合物颗粒)的设计和生产标准感兴趣的人员受益。

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