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Large area UV casting using diverse polyacrylates of microchannels separated by high aspect ratio microwalls

机译:使用由高深宽比微壁分隔的微通道的各种聚丙烯酸酯进行大面积UV铸造

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摘要

Large area molding of long and deep microchannels separated by high aspect ratio microwalls is important for high sensitivity and high throughput microfluidic devices.Ultraviolet (UV) casting is a feasible,economical and convenient method of replication of such microstructures in plastics.It is shown that a wide variety of polyacrylates with diverse properties such as those made from epoxy (EP),polyurethane (UR),polyester (ES),poly (ethylene glycol) (EG) and poly(propylene glycol) (PG) can be used for the high aspect ratio (7-9) UV casting of such linear microstructures over a 100 mm diameter,enlarging the range of applications of the replicated microstructures.Some challenges arise.With the EG formulation,wavy microstructures were observed;this can be overcome by stress relaxation.With non-polar PG formulation,poor adhesion between the polyester substrate and resin can lead to delamination of the casting from the substrate during demolding;this can be overcome by pre-coating a partially cured same resin on the polyester substrate.An optimum UV irradiation time was important for cure at the deepest end of the microstructure without excessive crosslinking leading to much increased demolding forces.The viscosity and wetting capability of the formulations were found to affect replication fidelity.
机译:由高长宽比微壁分隔的长而深的微通道的大面积成型对于高灵敏度和高通量微流体装置很重要。紫外线(UV)铸造是在塑料中复制此类微结构的一种可行,经济且方便的方法,结果表明:可以使用各种具有各种特性的聚丙烯酸酯,例如由环氧(EP),聚氨酯(UR),聚酯(ES),聚(乙二醇)(EG)和聚(丙二醇)(PG)制成的聚丙烯酸酯。高纵横比(7-9)的此类线性微结构的UV铸造直径超过100 mm,扩大了复制的微结构的应用范围。出现了一些挑战。使用EG配方,观察到波浪形的微结构;可以通过应力来克服使用非极性PG配方时,聚酯基材和树脂之间的不良粘合性可能导致脱模过程中铸件从基材上脱层;这可以通过预涂部分涂料来克服在聚酯基材上固化相同的树脂。最佳的紫外线照射时间对于在微观结构的最深端进行固化非常重要,而不会过度交联而导致脱模力大大增加。已发现配方的粘度和润湿能力会影响复制保真度。

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