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首页> 外文期刊>Biomedical Microdevices >Applying Taguchi methods for solvent-assisted PMMA bonding technique for static and dynamic μ-TAS devices
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Applying Taguchi methods for solvent-assisted PMMA bonding technique for static and dynamic μ-TAS devices

机译:使用Taguchi方法进行静态和动态μ-TAS器件的溶剂辅助PMMA键合技术

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摘要

This work examines numerous significant process parameters in the solvent-assistant Polymethyl methacrylate (PMMA) bonding scheme and presents two Micro-total-analysis System (μ-TAS) devices generated by adopting the optimal bonding parameters. The process parameters considered were heating temperature, applied loading, duration and solution. The effects of selected process parameters on bonding dimensions loss and strength, and subsequent optimal setting of the parameters were accomplished using Taguchi's scheme. Additionally, two μ-TAS devices were realized using a static paraffin microvalve and a dynamic diffuser micropump. The PMMA chips were carved using a CO_2 laser that patterned device micro-channels and microchambers. The operation principles, fabrication processes and experimental performance of the devices are discussed. This bonding technique has numerous benefits, including high bonding strength (240 kgf/cm~2) and low dimension loss (2-6%). For comparison, this work also demonstrates that the normal stress of this technology is 2-15 times greater than that of other bonding technologies, including hot embossing, anodic bonding, direct bonding and thermal fusion bonding.
机译:这项工作检查了溶剂辅助型聚甲基丙烯酸甲酯(PMMA)键合方案中的许多重要工艺参数,并提出了采用最佳键合参数生成的两个微总分析系统(μ-TAS)设备。考虑的工艺参数是加热温度,施加的载荷,持续时间和溶液。选定的工艺参数对粘结尺寸损失和强度的影响以及随后使用Taguchi的方案对参数进行最佳设置。此外,使用静态石蜡微阀和动态扩散器微泵实现了两个μ-TAS设备。 PMMA芯片是使用CO_2激光雕刻而成的,该激光可以图案化设备的微通道和微腔。讨论了器件的工作原理,制造工艺和实验性能。这种粘合技术具有许多优点,包括高粘合强度(240 kgf / cm〜2)和低尺寸损失(2-6%)。为了进行比较,这项工作还表明,该技术的法向应力是其他粘合技术(包括热压花,阳极粘合,直接粘合和热熔粘合)的正应力的2-15倍。

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