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An aerostatic bearing device with arrayed restrictors for roll-to-roll printed electronics

机译:带有成排的限流器的空气静压轴承装置,用于卷对卷印刷电子产品

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High precision overlay alignment is of great importance to guarantee the quality of Roll-to-Roll printed electronics (R2RPE) products. Aiming at removing machining and assembling errors of the roller with both support and transport uses, an aerostatic bearing device with arrayed restrictors is proposed. In this paper the design of the whole device is presented. The mathematical model of the air film existed between the flexible substrate and the aerostatic bearing device is given by adopting simplified Navier-Stokes equations. In order to modeling the pressure distribution of the air film, numerical simulation is processed with Computational Fluid Dynamics (CFD) software FLUENT. Load capacity curve and stiffness cure are generated to optimize the size and distribution of restrictors on the device. The simulation results indicate that: 1) air film with homogeneous pressure distribution is obtained from the designed arrayed restrictors; 2) diameter of the restrictors has a major influence on load capacity and stiffness when the number of the restrictors reaches a certain quantity.
机译:高精度的覆盖层对齐对于确保卷对卷印刷电子产品(R2RPE)的质量至关重要。为了消除在支撑和运输两种情况下辊子的机械加工和装配误差,提出了一种带有排列的限流器的空气静压轴承装置。本文介绍了整个设备的设计。通过简化的Navier-Stokes方程,给出了柔性基板与空气静压轴承装置之间存在的气膜的数学模型。为了对空气膜的压力分布进行建模,使用计算流体动力学(CFD)软件FLUENT进行了数值模拟。生成载荷曲线和刚度固化,以优化限制器在设备上的尺寸和分布。仿真结果表明:1)从设计的阵列式限流器中获得了压力分布均匀的气膜。 2)当限流器的数量达到一定数量时,限流器的直径对负载能力和刚度产生重大影响。

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