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A Study on the Effect of the Contact Point and the Contact Force of a Glass Fiber under End-Face Polishing Process

机译:端面抛光过程中玻璃纤维接触点和接触力的影响研究

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摘要

The offset between the center lines of the polished end-face and the fiber core has a significant effect on coupling efficiency. The initial contact point and the contact force are two of the most important parameters that induce the offset. This study proposes an image assistant method to find the initial contact point and a mathematical model to estimate the contact force when fabricating the double-variable-curvature end-face of single mode glass fiber. The repeatability of finding the initial contact point via the vision assistant program is 0.3 μm. Based on the assumption of a large deflection, a mathematical model is developed to study the relationship between the contact force and the displacement of the lapping film. In order to verify the feasibility of the mathematical model, experiments, as well as DEFORM simulations, are carried out. The results show that the contact forces are alomst linearly proportional to the feed amounts of the lapping film and the errors are less than 9%. By using the method developed in this study, the offset between the grinding end-face and the center line of the fiber core is within 0.15 to 0.35 μm.
机译:抛光端面的中心线和光纤纤芯之间的偏移对耦合效率有很大影响。初始接触点和接触力是引起偏移的两个最重要的参数。这项研究提出了一种图像辅助方法来寻找初始接触点,并建立了一个数学模型来估算单模玻璃纤维的双变量曲率端面时的接触力。通过视觉辅助程序找到初始接触点的可重复性为0.3μm。基于大挠度的假设,建立了数学模型来研究接触力和研磨膜位移之间的关系。为了验证该数学模型的可行性,进行了实验以及DEFORM模拟。结果表明,接触力与研磨膜的进料量成线性​​比例,误差小于9%。通过使用本研究中开发的方法,磨削端面与纤芯中心线之间的偏移在0.15至0.35μm之间。

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