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Micro-Hole Drilling on Glass Substrates—A Review

机译:在玻璃基板上进行微孔钻孔的评论

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摘要

Glass micromachining is currently becoming essential for the fabrication of micro-devices, including micro- optical-electro-mechanical-systems (MOEMS), miniaturized total analysis systems (μTAS) and microfluidic devices for biosensing. Moreover, glass is radio frequency (RF) transparent, making it an excellent material for sensor and energy transmission devices. Advancements are constantly being made in this field, yet machining smooth through-glass vias (TGVs) with high aspect ratio remains challenging due to poor glass machinability. As TGVs are required for several micro-devices, intensive research is being carried out on numerous glass micromachining technologies. This paper reviews established and emerging technologies for glass micro-hole drilling, describing their principles of operation and characteristics, and their advantages and disadvantages. These technologies are sorted into four machining categories: mechanical, thermal, chemical, and hybrid machining (which combines several machining methods). Achieved features by these methods are summarized in a table and presented in two graphs. We believe that this paper will be a valuable resource for researchers working in the field of glass micromachining as it provides a comprehensive review of the different glass micromachining technologies. It will be a useful guide for advancing these techniques and establishing new hybrid ones, especially since this is the first broad review in this field.
机译:目前,玻璃微机械加工对于制造包括微光机电系统(MOEMS),小型化总分析系统(μTAS)以及用于生物传感的微流控设备在内的微设备变得至关重要。此外,玻璃是射频(RF)透明的,使其成为用于传感器和能量传输设备的极佳材料。在该领域中不断取得进步,但是由于玻璃的机械加工性差,因此加工具有高深宽比的光滑玻璃通孔(TGV)仍然具有挑战性。由于若干微型设备需要TGV,因此正在对多种玻璃微加工技术进行深入研究。本文回顾了玻璃微孔钻孔的成熟技术和新兴技术,描述了它们的工作原理和特性,以及它们的优缺点。这些技术分为四个加工类别:机械加工,热加工,化学加工和混合加工(结合了多种加工方法)。这些方法实现的功能汇总在一个表中,并以两个图形表示。我们相信,本文将为玻璃微机械加工领域的研究人员提供宝贵的资源,因为它对不同的玻璃微机械加工技术进行了全面的综述。这将是推进这些技术并建立新的混合技​​术的有用指南,尤其是因为这是该领域的首次广泛综述。

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