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Effect of plastic strain energy density on polymer optical fiber power losses

机译:塑性应变能密度对聚合物光纤功率损耗的影响

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摘要

We explore the dependence of power losses on average plastic energy densities as rays propagate along deformed polymer optical fibers (POFs). The variation of power losses in deformed POFs with different bend radii and elongations are measured and analyzed. Three-dimensional elastic-plastic finite-element models are used to calculate average plastic energy densities in deformed POFs. The results indicate that the average plastic energy density introduced in a deformed POF can be considered a key index with which to study the power loss. Based on the experimental results, a curve-fitted equation is proposed for estimating the power loss by using the average plastic energy density for various bend radii.
机译:当射线沿着变形的聚合物光纤(POF)传播时,我们探索了功率损耗对平均塑性能量密度的依赖性。测量并分析了具有不同弯曲半径和伸长率的变形POF中的功率损耗变化。三维弹塑性有限元模型用于计算变形POF中的平均塑性能量密度。结果表明,在变形的POF中引入的平均塑性能量密度可以视为研究功率损耗的关键指标。根据实验结果,提出了一个曲线拟合方程,通过使用各种弯曲半径的平均塑性能量密度来估算功率损耗。

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