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The Kinematic and Engineering Designs of Planetary Optical Fiber Polisher

机译:行星光纤抛光机的运动学和工程设计

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The traditional grinding machine can not be used to polish optical fiber ferrules. In the early day, planetary polisher was proposed for polishing the optical fiber ferrule. However, this conventional planetary grinding device just can only polish one optical fiber ferrule at one time. 2008, Hsieh proposed a planetary polisher for polishing many optical fiber ferrules at the same time. Based on the research of Hsieh et al., the complete planetary optical fiber polisher is proposed, in which three position pins (A, B and C) are sitting on the three planet gears and grinding disk is positioned by these three position pins. Hence, the three points of A, B and C have the same donut traces, all points on the grinding disk will have the same donut polishing traces and have same polishing qualities. According to kinematic equations, we derive the equations of polishing trace and velocity of planetary optical fiber polisher. Then, based on the polishing velocity, velocity deviation percentage (V_(dp)) is calculated, which is an important design parameter. Area ratio (A_R) is defined as polishing area divided by grinding pad area. The area ratio (A_R) is another important design parameter for designing planetary optical fiber polishers. For the fixed value of A_R (for example A_R =88.36%), according to design constraints and requirements, the optical fiber polisher with suitable velocity deviation percentage (V_(dp)) is synthesized. This paper provides an application experience in the design of planetary optical fiber polishers.
机译:传统的磨床不能用于抛光光纤套圈。在早期,提出了抛光光纤套圈的行星抛光机。然而,这种传统的行星磨削装置只能一次抛光一个光纤套圈。 2008年,HSIEH提出了一个行星抛光机,用于同时抛光许多光纤套圈。基于HSIEH等人的研究。提出了完整的行星光纤抛光机,其中三个位置销(A,B和C)坐在三个行星齿轮上,并且研磨盘位于这三个位置销。因此,A,B和C的三点具有相同的甜甜圈迹线,磨盘上的所有点都具有相同的甜甜圈抛光迹线并具有相同的抛光品质。根据运动学方程,我们推出了行星光纤抛光机的抛光轨迹和速度方程。然后,基于抛光速度,计算速度偏差百分比(V_(DP)),这是一个重要的设计参数。面积比(A_R)被定义为抛光区域除以研磨焊盘区域。面积比(A_R)是设计行星光纤抛光器的另一个重要设计参数。对于A_R的固定值(例如A_R = 88.36%),根据设计约束和要求,合成具有合适速度偏差百分比(V_(DP))的光纤抛光机。本文提供了行星光纤抛光剂设计中的应用体验。

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