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Dual Sacrificial Molding: Fabricating 3D Microchannels with Overhang and Helical Features

机译:双重牺牲成型:制造具有悬垂和螺旋形特征的3D微通道

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摘要

Fused deposition modeling (FDM) has become an indispensable tool for 3D printing of molds used for sacrificial molding to fabricate microfluidic devices. The freedom of design of a mold is, however, restricted to the capabilities of the 3D printer and associated materials. Although FDM has been used to create a sacrificial mold made with polyvinyl alcohol (PVA) to produce 3D microchannels, microchannels with free-hanging geometries are still difficult to achieve. Herein, dual sacrificial molding was devised to fabricate microchannels with overhang or helical features in PDMS using two complementary materials. The method uses an FDM 3D printer equipped with two extruders and filaments made of high- impact polystyrene (HIPS) and PVA. HIPS was initially removed in limonene to reveal the PVA mold harboring the design of microchannels. The PVA mold was embedded in PDMS and subsequently removed in water to create microchannels with 3D geometries such as dual helices and multilayer pyramidal networks. The complementary pairing of the HIPS and PVA filaments during printing facilitated the support of suspended features of the PVA mold. The PVA mold was robust and retained the original design after the exposure to limonene. The resilience of the technique demonstrated here allows us to create microchannels with geometries not attainable with sacrificial molding with a mold printed with a single material.
机译:熔融沉积建模(FDM)已成为3D打印用于牺牲模制以制造微流控设备的模具的必不可少的工具。但是,模具设计的自由度仅限于3D打印机和相关材料的功能。尽管FDM已用于创建由聚乙烯醇(PVA)制成的牺牲模具以生产3D微通道,但仍然难以实现具有自由悬挂的几何形状的微通道。在此,双牺牲模制被设计为使用两种互补材料在PDMS中制造具有悬垂或螺旋特征的微通道。该方法使用FDM 3D打印机,该打印机配备两个挤出机和由高抗冲聚苯乙烯(HIPS)和PVA制成的长丝。最初在柠檬烯中除去了HIPS,以揭示具有微通道设计的PVA模具。将PVA模具嵌入PDMS中,然后在水中除去,以创建具有3D几何形状的微通道,例如双螺旋和多层锥体网络。在印刷过程中,HIPS和PVA细丝的互补配对有助于支撑PVA模具的悬浮特征。 PVA模具坚固耐用,并在暴露于柠檬烯后仍保持原始设计。这里展示的技术的弹性使我们能够创建具有用单一材料印刷的模具进行牺牲模塑无法达到的几何形状的微通道。

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