减小蝴蝶激光模块封装中焊接致对准畸变的焊接夹设计

Yaomin Lin, F. Shi
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引用次数: 2

摘要

焊接致对准畸变(WIAD)或焊后移位(PWS)是激光焊接光纤组件组装过程中存在的一个严重问题,对封装成品率有重要影响。我们之前的研究表明,如果可以优化激光焊接顺序和焊接激光器的脉冲形状,则可以消除或最小化蝴蝶激光模块封装中的WIAD。这项工作代表了我们通过设计焊接工具(焊接夹)来最大限度地减少WIAD的进一步尝试。通过数值模拟的方法,研究了7种不同类型的焊接夹头对蝴蝶激光模块封装装配WIAD的影响。采用了一种基于现实物理的激光-材料相互作用模型,该模型结合了激光光束的时空特性和材料的热物理特性。结果表明,焊接夹的设计在蝶形模块的封装中起着重要的作用,通过合理设计焊接夹和选择焊接顺序等工艺参数,可以将激光焊接过程中产生的对中畸变控制在最小的范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Weld clip design for minimization of welding-induced-alignment-distortion in butterfly laser module packages
The welding-induced-alignment-distortion (WIAD) or post-weld-shift (PWS) is a serious issue in assembling of fiberoptic components using laser welding, which may significantly affect the packaging yield. Our previous investigations have revealed that an elimination or minimization of the WIAD in butterfly laser module packaging is possible if laser welding sequence and pulse shape of the welding lasers can be optimized. This work represents our further attempt in minimizing the WIAD by design of welding tools: the weld clip. By means of numerical simulations, the influence of seven different types of weld clip on the WIAD in the assembly of the butterfly laser module packages has been investigated. A realistic physics based laser-materials interaction model is employed and the model combines the spatal and temporal characteristics of the laser beam and the thermophysical properties of the material. The results show that the design of weld clip is important in packaging of the butterfly modules and the alignment distortion induced during the laser welding process can be controlled within the minimal range by proper design of weld clip and selection of process parameters such as the welding sequence.
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