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EXPERIMENTAL INVESTIGATION OF MICROFLUIDIC FEATURE MANUFACTURING BY DIGITAL LIGHT PROCESSING STEREOLITHOGRAPHY

机译:数字光加工立体刻录微流体特征制造的实验研究

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摘要

Lab on Chips (LOCs) are devices, mostly based on microfluidics, that allow to perform one or several chemical, biochemical or biological analysis in a miniaturized format on a single chip. The Additive Manufacturing processes, and in particular the Digital Light Processing stereolithography (DLP-SLA), could quickly produce a complete LOC with high resolution 3D features in a single step, i.e. without the need for assembly processes, and using low cost and user-friendly desktop machines. However, the potential of DLP-SLA to produce non-planar channels or channels with complex sections has not been fully investigated yet. This study proposes a benchmark artifact (including also some channels with their axis lying in a plane parallel to the machine building platform) aiming at assessing the capability and performance of DLP-SLA for manufacturing microfeatures for microfluidic devices. A proper experimental campaign was performed to evaluate the effect of the main process parameters (namely, layer thickness and exposure time) on the process performance. The results pointed out that both the process parameters influence the quality and dimensional accuracy of the analyzed features.
机译:芯片(LOC)的实验室(LOC)是设备,主要基于微流体,允许以单个芯片上的小型化格式进行一种或多种化学,生物化学或生物学分析。添加剂制造过程,特别是数字光处理立体光刻(DLP-SLA),可以在单个步骤中快速生产具有高分辨率3D特征的完整LOC,即不需要组装过程,并使用低成本和用户 - 友好的台式机。然而,DLP-SLA的电位尚未完全研究具有复杂部分的非平面通道或通道的电位。本研究提出了一种基准工件(包括一些具有它们轴位于平行于机器建筑平台的平面的通道),其旨在评估DLP-SLA的用于制造微流体装置的微泡的能力和性能。进行了适当的实验活动,以评估主要过程参数(即层厚度和曝光时间)对工艺性能的影响。结果指出,过程参数都影响分析的特征的质量和尺寸精度。

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