首页> 外文会议>Pacific Rim Conference on Lasers and Electro-Optics >FIBER ALIGNMENT SHIFTS IN BUTTERFLY LASER PACKAGING BY LASER WELDING TECHNIQUE:MEASUREMENT AND FINITEELEMENT-METHOD ANALYSIS
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FIBER ALIGNMENT SHIFTS IN BUTTERFLY LASER PACKAGING BY LASER WELDING TECHNIQUE:MEASUREMENT AND FINITEELEMENT-METHOD ANALYSIS

机译:通过激光焊接技术在蝶形激光封装中偏移偏移偏移技术:测量和有限元方法分析

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The post-weld-shift (PWS) induced fiber alignment shifts of fiber ferrule-clip (FFC) joints in butterfly laser packaging by laser welding technique have been studied experimentally and numerically. There are two designs of clip dimension in the FFC joint: the type I of no gap between clip and ferrule and the type II of 10 μm gap. Using a novel 230x high magnification video probe camera with image acquisition system, the results showed that the fiber shifts of FFC joints with the type II exhibited shifts less than that with the type I. This suggests that the 10 μm gap design may be more suitable for FFC joints than the no gap. The experimental measurements of fiber shifts were in reasonable agreement with the numerical calculations of the finite-element method (FEM) analysis. The major fiber shift formation mechanisms of FFC joints in laser welding process may come from the coefficient of thermal expansion mismatch, the solidification shrinkage, and the residual stresses within the FFC joint. This study has shown that the FEM is an effective method for predicting the PWS induced fiber alignment shifts in butterfly laser packaging.
机译:通过在实验和数值上研究了通过激光焊接技术的抗焊接型偏移(PWS)诱导的纤维纤维夹(FFC)接头的纤维对准偏移。 FFC接头中有两种夹子尺寸设计:夹子和套圈之间没有间隙的I型,II型间隙为10μm间隙。使用具有图像采集系统的新型230x高放大倍率视频探针相机,结果表明,II型表现出的FFC接头的纤维偏移比与I型的换档。这表明10μm间隙设计可能更适合对于FFC关节而不是无差距。纤维移位的实验测量与有限元方法(FEM)分析的数值计算合理一致。激光焊接过程中FFC接头的主要纤维移位机制可能来自热膨胀系数,凝固收缩率和FFC接头内的残余应力。本研究表明,FEM是预测PWS诱导纤维对准在蝶形激光封装中的有效方法。

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