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FLEXURE DESIGN FOR EIGHT-BAR RECTILINEAR MOTION MECHANISM

机译:八杆直线运动机构的挠性设计

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This paper replaces the hinged pivots of an eight-bar linkage withflexure joints in order to achieve aflexure-connected linkage system that guides rectilinear movement of its end-effector. The goal is a linkage design that can be reduced in size to provide a suspension for the proof masses of a MEMS gyroscope. The symmetric design of the linkage and its long travel relative to other MEMS suspensions has the potential to provide a number of advantages, such as the reduction of quadrature error. The design presented yields 0.1% deviation over its range of movement. An example also presents the driving linkage of the MEMS gyroscope, which is also designed asflexure connected linkage.
机译:本文取代了八杆连杆的铰接枢轴,以实现难以实现其末端效应器的直线运动的难以连接的连杆系统。目标是连杆设计,其尺寸可以减小,以提供MEMS陀螺仪的验证块的悬架。相对于其他MEMS悬浮液相对于其他MEMS悬浮液的相对性设计及其长行程具有提供许多优点,例如降低正交误差的优点。呈现的设计在其运动范围内产生0.1%的偏差。一个例子还呈现了MEMS陀螺的驱动连杆,其也设计了ASFLEXURE连接的连杆。

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