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Rapid prototyping of microchannels with surface patterns for fabrication of polymer fibers

机译:具有表面图案的微通道的快速原型设计,用于制造聚合物纤维

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摘要

Microfluidic technology has provided innovative solutions to numerous problems, but the cost of designing and fabricating microfluidic channels is impeding its expansion. In this work, Shrinky-Dink thermoplastic sheets are used to create multilayered complex templates for microfluidic channels. We used inkjet and laserjet printers to raise a predetermined microchannel geometry by depositing several layers of ink for each feature consecutively. We achieved feature heights over 100 mu m, which were measured and compared with surface profilometry. Templates closest to the target geometry were then used to create microfluidic devices from soft-lithography with the molds as a template. These microfluidic devices were in turn used to fabricate polymer microfibers using the microfluidic focusing approach to demonstrate the potential that this process has for microfluidic applications. Finally, an economic analysis was conducted to compare the price of common microfluidic template manufacturing methods. We showed that multilayer microchannels can be created significantly quicker and cheaper than current methods for design prototyping and point-of-care applications in the biomedical area.
机译:微流体技术为许多问题提供了创新的解决方案,但设计和制造微流体通道的成本正在妨碍其扩张。在这项工作中,收缩浸入热塑性片材用于为微流体通道产生多层复合模板。我们使用喷墨和LaserJet打印机通过连续沉积多层墨水来升高预定的微通道几何形状。我们实现了超过100μm的特征高度,与表面轮廓测量测量并与表面轮廓测量进行比较。然后使用最接近目标几何形状的模板从软光刻用模具作为模板来产生微流体装置。这些微流体装置又使用使用微流体聚焦方法制造聚合物微纤维,以证明该方法具有微流体应用的潜力。最后,进行了经济分析以比较普通的微流体模板制造方法的价格。我们表明,多层微通道可以比目前的设计原型设计和生物医学领域的护理点应用更便宜,更便宜。

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