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Rapid prototyping method for 3D PDMS microfluidic devices using a red femtosecond laser

机译:使用红色飞秒激光器3D PDMS微流体装置的快速原型方法

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A rapid prototyping technique is demonstrated which uses a red femtosecond laser to produce a metallic mould which is then directly used for the replica moulding of PDMS. The manufacturing process can be completed in less than 6?h making it a viable technique for testing new designs quickly. The technique is validated by creating a microfluidic device with channels of height and depth of 300?μm, with a ramp test structure where the height and width of the channels reduces to 100?μm to demonstrate the techniques 3D capabilities. The resulting PDMS device was easily removed from the metallic mould and closely replicated the shape aside the expected shrinkage during thermal curing. As the technique uses a single replica process, the surface roughness at the base of the channels corresponds to the un-ablated polished metal mould, resulting in a very low surface roughness of 0.361?nm. The ablated metallic mould surface corresponds to the top of the PDMS device, which is bonded to glass and does not affect the flow within the channels, reducing the need for optimisation of laser parameters. Finally, the device is validated by demonstrating laminar flow with the no-slip condition.
机译:演示了一种快速的原型技术,它使用红色飞秒激光器产生金属模具,然后直接用于PDMS的复制成型。制造过程可以在不到6°的时间内完成,使其成为快速测试新设计的可行技术。通过创建具有高度和300Ωμm的通道的微流体装置来验证该技术,其中斜坡测试结构,其中通道的高度和宽度降低到100?μm以演示技术3D能力。通过金属模具容易地除去所得到的PDMS装置,并在热固化过程中密切地覆盖预期收缩的形状。当技术使用单个复制过程时,通道基部的表面粗糙度对应于未烧蚀抛光金属模具,导致非常低的表面粗糙度为0.361Ω·nm。烧蚀金属模具表面对应于PDMS装置的顶部,该PDMS装置粘合到玻璃上,不会影响通道内的流动,从而减少对激光参数的优化的需求。最后,通过用无滑移条件证明层流验证该装置。

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