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Predicted curvatures and stresses in a fiber-optic interconnect subjected to bending

机译:预测光纤弯曲中的曲率和应力

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摘要

Simple formulas are obtained for the evaluation of the curvatures and stresses in a fiber-optic interconnect subjected to mechanical bending due to linear and angular misalignments of its end cross-sections. In addition, it is shown how to consider the compression caused by the thermal contraction mismatch of the glass material with the material of the enclosure. The obtained formulas can be helpful when predicting the added transmission losses and the maximum stress in optical interconnects experiencing bending. Particularly, they enable one to establish the allowable misalignments in, and/or the minimum allowable length of, the interconnect, which are permissible from the standpoint of its optical performance and mechanical reliability.
机译:通过简单的公式可以评估光纤互连中由于端部横截面的线性和角度未对准而遭受机械弯曲的曲率和应力。另外,示出了如何考虑由玻璃材料与外壳的材料的热收缩失配引起的压缩。所获得的公式在预测增加的传输损耗和发生弯曲的光学互连中的最大应力时会很有帮助。特别地,它们使人们能够建立互连中的允许的未对准和/或最小的允许的长度,从其光学性能和机械可靠性的角度来看这是允许的。

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