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A Research Factory for Polymer Microdevices: muFac

机译:聚合物微生物研究厂:MUFAC

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As part of our research on the manufacturing science of micron scale polymer-based devices, an automated production cell has been developed to explore its use in a volume manufacturing environment. This "micro-factory" allows the testing of models and hardware that have resulted from research on material characterization and simulation, tooling and equipment design and control, and process control and metrology. More importantly it has allowed us to identify the problems that exist between and within unit-processes. This paper details our efforts to produce basic micro-fluidic products in high volume at acceptable production rates and quality levels. The device chosen for our first product is a simple binary micromixer with 40x50 micron channel cross section manufactured by embossing of PMMA. The processes in the cell include laser cutting and drilling, hot embossing, thermal bonding and high-speed inspection of the components. Our goal is to create a "lights-out" factory that can make long production runs (e.g. an 8 hour shift) at high rates (Takt time of less than 3 minutes) with consistent quality. This contrasts with device foundries where prototypes in limited quantities but with high variety are the goal. Accordingly, rate and yield are dominant factors in this work, along with the need for precise material handling strategies. Production data will be presented to include process run charts, sampled functional testing of the products and measures of the overall system throughput.
机译:作为我们对基于微米制造科学的制造科学的研究的一部分,已经开发了一种自动化生产细胞来探索其在体积制造环境中的使用。这种“微工厂”允许测试材料和硬件的测试,这些模型和硬件是由材料表征和仿真,工具和设备设计和控制以及过程控制和计量的研究。更重要的是,它允许我们识别单位过程中存在的问题。本文详细介绍了在可接受的生产率和质量水平上高批量生产的基本微流体产品。为我们的第一个产品选择的设备是一个简单的二进制微混合器,具有通过压花制造的40x50微米通道横截面。电池中的过程包括激光切割和钻孔,热压花,热粘合和元件的高速检查。我们的目标是创建一个“熄灯”工厂,可以长期生产(例如,8小时班次),在高速度(少于3分钟的时间),质量一致。这与设备铸造件形成鲜明对比,其中数量有限但具有高品种的原型是目标。因此,速率和产量是这项工作中的主要因素,以及需要精确的材料处理策略。将提出生产数据以包括流程运行图表,对产品的采样功能测试和整体系统吞吐量的测量。

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