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首页> 外文期刊>Journal of Micromechanics and Microengineering >Development of an aerostatic bearing system for roll-to-roll printed electronics
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Development of an aerostatic bearing system for roll-to-roll printed electronics

机译:开发用于滚动印刷电子产品的空气静力轴承系统

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摘要

Roll-to-roll printed electronics is proved to be an effective way to fabricate electrical devices on various substrates. High precision overlay alignment plays a key role to create multi-layer electrical devices. Multiple rollers are adopted to support and transport the substrate web. In order to eliminate the negative effect of the machining error and assembling error of the roller, a whole roll-to-roll system including two aerostatic bearing devices with arrayed restrictors is proposed in this paper. Different to the conventional roller, the aerostatic bearing device can create a layer of air film between the web and the device to realize non-contact support and transport. Based on simplified Navier-Stokes equations, the theoretical model of the air film is established. Moreover, the pressure distribution of the whole flow field and single restrictor in different positions are modeled by conducting numerical simulation with computational fluid dynamics (CFD) software FLUENT. The load capacity curves and stiffness curves are generated to provide guidance for optimizing the structure of the device. A prototype of the aerostatic bearing system is set up and the experiment tests are carried out. For the proposed aerostatic bearing roller with a diameter of 100 mm and length of 200 mm, the experimental results show the aerostatic bearing method can achieve the position accuracy in a range of 1 mu m in the vertical direction of the web, which is much better than that using existing methods.
机译:证明了滚动印刷电子产品是制造各种基板上的电气设备的有效方法。高精度覆盖对齐对齐播放了创建多层电气设备的关键作用。采用多个辊来支撑和运输基材网。为了消除辊的加工误差和装配误差的负效应,本文提出了一种包括两个具有阵列限流器的空气静压轴承装置的整个卷卷系统。与传统辊不同,空气静止轴承装置可以在幅材和装置之间产生一层空气膜,以实现非接触支撑和运输。基于简化的Navier-Stokes方程,建立了空气膜的理论模型。此外,通过使用计算流体动力学(CFD)软件流畅的数值模拟来建模不同位置的整个流场和单个限制器的压力分布。产生负载能力曲线和刚度曲线以提供用于优化设备结构的指导。建立了空气静力轴承系统的原型,进行了实验测试。对于直径为100毫米和长度为200毫米的拟议的空气静力轴承辊,实验结果表明,空气静止轴承方法可以在幅材的垂直方向上达到1μm的位置精度,这更好比使用现有方法。

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