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Effect of elongation deformation on power losses in polymer optical fibers

机译:伸长变形对聚合物光纤功率损耗的影响

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摘要

We investigate the effect of fiber elongation on power loss as rays propagate along deformed polymer optical fibers (POFs). Variations in core diameter, incident angle, stress and strain distributions, and necking of the POFs during fiber elongation are studied. The power losses in the deformed POFs are analyzed both experimentally and numerically. Theoretical analysis based on an elastic-plastic finite-element model and a planar waveguide assumption is proposed. It is found that fiber elongation significantly affects the power loss in POFs, particularly at higher values of elongation. Good agreement between the measured results and the results simulated from the proposed model is obtained. The maximum difference is less than 5percent. Results indicate that the proposed theoretical analysis based on an elastic-plastic finite-element model and a planar waveguide assumption is feasible to predict the power loss variation introduced by elongated deformations. A curve-fitted equation is also proposed to estimate the power loss of POFs under different fiber elongation conditions.
机译:当光线沿着变形的聚合物光纤(POF)传播时,我们研究了纤维伸长对功率损耗的影响。研究了纤芯直径,入射角,应力和应变分布以及纤维伸长过程中POF颈缩的变化。对变形的POF中的功率损耗进行了实验和数值分析。提出了基于弹塑性有限元模型和平面波导假设的理论分析。已经发现,纤维伸长率显着影响POF中的功率损耗,特别是在较高伸长率值时。测量结果与所提出模型的仿真结果之间具有良好的一致性。最大差异小于5%。结果表明,所提出的基于弹塑性有限元模型和平面波导假设的理论分析对于预测由拉长变形引起的功率损耗变化是可行的。还提出了曲线拟合方程来估计在不同纤维伸长条件下POF的功率损耗。

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