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A flexure-based 3-DOF parallel mechanism for optical fiber assembly

机译:一种基于挠性三维三进的光纤组件的平行机构

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In order to bring down the cost of fiber assembly, passive method is prior to be adopted in compensation of offsets caused by positioning errors and dimensional tolerances. According to this method, this paper presents a three degree-of-freedom (DOF) planar compliant mechanism based on RCC (Remote Center of Compliance) concept. The structure of the mechanism is composed of two parts each consist of three parallel legs re-spectively, and these two components are arranged in series. In the case of passive application, compliance is mainly concerned. Therefore, theoretical calculation is imperative. This paper mainly uses pseudo-rigid-body-model (PRBM) methodology to calculate the stiffness of the mechanism. To verify the effectiveness of the theoretical model, finite element simulation is conducted. For sake of stability of the mechanism, natural frequency analysis is performed by using finite element software ANSYS.
机译:为了降低光纤组件的成本,在通过定位误差和尺寸公差引起的偏移补偿之前采用无源方法。根据该方法,本文提出了一种基于RCC(综合偏远中心)概念的三维自由度(DOF)平面兼容机制。该机构的结构由两个部分组成,每个部分由三个平行的腿部重新定步,并且这两个部件串联排列。在被动应用的情况下,合规主要涉及。因此,理论计算势在必行。本文主要使用伪刚体模型(PRBM)方法来计算机制的刚度。为了验证理论模型的有效性,进行有限元模拟。为稳定性的机构稳定,通过使用有限元软件ANSYS进行固有频率分析。

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