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首页> 外文期刊>Journal of Micromechanics and Microengineering >Manufacturing microstructured tool inserts for the production of polymeric microfluidic devices
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Manufacturing microstructured tool inserts for the production of polymeric microfluidic devices

机译:制造用于生产聚合物微流体装置的微结构化工具刀片

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摘要

Tooling is critical in defining multi-scale patterns for mass production of polymeric microfluidic devices using the microinjection molding process. In the present work, fabrication of various microstructured tool inserts using stainless steel, nickel and bulk metallic glasses (BMGs) is discussed based on die-sinking EDM (electrical discharge machining), electroforming, focused ion beam milling and thermoplastic forming processes. Tool performance is evaluated in terms of surface roughness, hardness and tool life. Compared to stainless steel, nickel and BMGs are capable of integrating length scales from 10(0) to 10(-8) m and are good candidates for producing polymeric microfluidics. Selection of tool materials and manufacturing technologies should consider the end-user requirements of actual applications.
机译:在使用微注射成型工艺为聚合物微流体装置的批量生产定义多尺度图案方面,工具至关重要。在当前的工作中,基于沉模EDM(电火花加工),电铸,聚焦离子束铣削和热塑性成型工艺,讨论了使用不锈钢,镍和块状金属玻璃(BMG)制造各种微结构化刀具刀片的方法。根据表面粗糙度,硬度和工具寿命评估工具性能。与不锈钢相比,镍和BMG能够整合10(0)到10(-8)m的长度刻度,并且是生产聚合物微流体的良好候选者。工具材料和制造技术的选择应考虑最终用户对实际应用的要求。

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