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Increasing the functionalities of 3D printed microchemical devices by single material, multimaterial, and print-pause-print 3D printing

机译:通过单材料,多国和打印暂停印刷3D打印增加3D印刷微型化学设备的功能

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摘要

3D printing has emerged as a valuable approach for the fabrication of fluidic devices and may replace soft-lithography as the method of choice for rapid prototyping. The potential of this disruptive technology is much greater than this - it allows for functional integration in a single, highly automated manufacturing step in a cost and time effective manner. Integration of functionality with a 3D printer can be done through spatial configuration of a single material, inserting pre-made components mid-print in a print-pause-print approach, and/or through the precise spatial deposition of different materials with a multimaterial printer. This review provides an overview on the ways in which 3D printing has been exploited to create and use fluidic devices with different functionality, which provides a basis for critical reflection on the current deficiencies and future opportunities for integration by 3D printing.
机译:3D打印已成为制造流体装置的宝贵方法,可以将软光刻替换为快速原型设计的选择方法。 这种破坏性技术的潜力远大于这 - 它允许以成本和时间有效的方式在单个高度自动化的制造步骤中进行功能集成。 可以通过单个材料的空间配置来完成功能与3D打印机的集成,在打印暂停打印方法中插入预先制造的组件中间打印,和/或通过具有多维打印机的不同材料的精确空间沉积 。 此审查概述了概述了3D打印已被剥削以创建和使用具有不同功能的流体设备,这为基于当前缺陷和3D打印集成的未来机会提供了基础。

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