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Measurement of residual internal stresses in optical fiber preforms

机译:光纤预制棒中残余内应力的测量

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A non-destructive experimental procedure is presented which enables the determination of residual thermal stresses in optical fiber preforms. The procedure is based on integrated photoelasticity. We carry out the measurement of the optical retardation using the traditional Sénarmont compensation method combined with a fringe shifting technique. The radial distribution of the axial stress is reconstructed using Abel transform. We have investigated two different refractive-index profiles, adopted in the realization of monomode and multimode optical fibers. It was shown that in both cases the results obtained experimentally and those analytically predicted by the Timoshenko elastic model were in good agreement. To obtain accurate experimental results, it was necessary to apply a correction procedure to take into account the fact that the trafectories of the light rays inside the preforms are not straight lines.
机译:提出了一种非破坏性的实验程序,该程序能够确定光纤预制棒中的残余热应力。该程序基于集成的光弹性。我们使用传统的Sénarmont补偿方法结合条纹偏移技术来测量光学延迟。使用Abel变换重建轴向应力的径向分布。我们研究了用于实现单模和多模光纤的两种不同的折射率分布。结果表明,在两种情况下,通过实验获得的结果和由Timoshenko弹性模型进行的分析预测的结果均吻合良好。为了获得准确的实验结果,有必要应用校正程序以考虑到预成型坯内部的光线轨迹不是直线的事实。

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