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Design of a novel 5-DOF flexure-based compound alignment stage for Roll-to-Roll Printed Electronics

机译:用于卷对卷印刷电子的新型基于5自由度弯曲的复合对准平台的设计

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摘要

Alignment stage is a pivotal component for Roll-to-Roll Printed Electronic (R2RPE), especially for Roll-to-Roll inkjet printing. This paper presents the design, modeling, and testing of a new flexure based compound alignment stage for R2RPE. In this design, the alignment stage has 5-DOF (Degree of Freedom) motions for compensating the alignment errors and only the rotation motion about the y-axis is redundant. The stage is constructed in series by four key parts and adopts a compounded flexure structure to achieve a great performance. Each part is driven by a piezoelectric actuator or voice coil motor actuator to obtain one or two DOF motion. In order to enlarge the travel range of the alignment stage, a Scott-Russell mechanism and a lever mechanism are arranged in series for forming a two-grade displacement amplifier to overcome the small displacement of the actuator. Based on the pseudo rigid-body simplification method, alignment models are developed. Kinematic and static analyses are conducted to evaluate the performance of the stage in terms of travel range and input stiffness. Finite element simulation is carried out to examine the mechanical performance and the theoretical models. A prototype is fabricated and experiments are conducted. Results show that the proposed alignment stage possesses an error compensation workspace of 148.11 µm × 149.73 µm × 813.61 µm × 1.558 mrad × 3.501 mrad with output coupling errors of 0.693% and 0.637% between the x- and y-axis, which meets the requirements of Roll-to-Roll inkjet printing.
机译:对准台是卷对卷印刷电子(R2RPE)的关键组件,特别是对卷对卷喷墨打印。本文介绍了一种用于R2RPE的新的基于挠曲的复合对准平台的设计,建模和测试。在这种设计中,对准台具有5-DOF(自由度)运动,用于补偿对准误差,并且只有绕y轴的旋转运动是多余的。该平台由四个关键部分串联构建,并采用复合挠曲结构以实现出色的性能。每个部分由压电致动器或音圈电机致动器驱动,以获得一个或两个自由度运动。为了扩大对准台的行程范围,Scott-Russell机构和杠杆机构串联布置,以形成两级位移放大器,以克服致动器的小位移。基于伪刚体简化方法,开发了对准模型。进行了运动学和静态分析,以根据行程范围和输入刚度评估平台的性能。进行了有限元模拟以检查机械性能和理论模型。制作了原型并进行了实验。结果表明,所提出的对准台具有148.11 µm×149.73 µm×813.61 µm×1.558 mrad×3.501 mrad的误差补偿工作空间,x和y轴之间的输出耦合误差为0.693%和0.637%,符合要求。卷对卷喷墨打印。

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