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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Integration of functionality into polymer-based microfluidic devices produced by high-volume micro-moulding techniques
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Integration of functionality into polymer-based microfluidic devices produced by high-volume micro-moulding techniques

机译:将功能集成到通过大量微成型技术生产的基于聚合物的微流控设备中

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摘要

Microfluidic devices with integrated functional elements have gained increasing attention in recent years. Many prototypes covering a wide range of applications have been fabricated and tested, especially in the fields of chemical and biomedical sciences. Nevertheless, integrated microfluidic devices are still far from being widely used as cost-efficient commercial products, often because they are produced by fabrication methods that are not suitable for mass production. Several methods have been recently introduced for cost-efficient high-volume production of micro-featured plastic parts, such as microinjection moulding and hot embossing. These methods have been widely used for fabricating simple disposable microfluidic chips on a commercial scale, but have not yet been similarly applied for producing integrated microfluidic devices. This review paper aims at presenting the state of the art in integrated microfluidic devices produced by cost-efficient high-volume replication processes. It takes microinjection moulding and hot embossing as its two process examples. Several types of elements are classified according to their functions, defined relative to their physical inputs and outputs. Their level of integration is reviewed. In addition, elements are discussed from a manufacturing viewpoint in terms of being readily produced by replication techniques or by back-end processes. Current and future challenges in integration are presented and discussed.
机译:近年来,具有集成功能元件的微流体装置越来越受到关注。已经制造并测试了涵盖广泛应用的许多原型,尤其是在化学和生物医学领域。然而,集成微流体装置仍远未广泛用作具有成本效益的商业产品,这通常是因为它们是通过不适合大规模生产的制造方法生产的。最近已经引入了几种方法来经济高效地大量生产微特征塑料零件,例如微注射成型和热压花。这些方法已被广泛用于以商业规模制造简单的一次性微流体芯片,但尚未类似地应用于生产集成的微流体装置。这篇综述文章旨在介绍由具有成本效益的大批量复制工艺生产的集成微流控设备的最新技术。它以微注射成型和热压花为两个工艺示例。几种类型的元素根据其功能分类,相对于其物理输入和输出进行定义。他们的集成水平进行了审查。另外,从制造的观点出发,就易于通过复制技术或通过后端工艺制造来讨论元件。介绍和讨论了集成中的当前和未来挑战。

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