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Minimisation of thermally induced microbending losses in dual-coated optical fibres caused by viscoelastic behaviour of commercial polymeric coatings

机译:最小化由商用聚合物涂层的粘弹性行为引起的双涂层光纤中的热诱导微弯曲损耗

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摘要

The viscoelastic behaviour of commercial polymeric coatings for optical fibres is measured at room temperature using dynamic mechanic analysis, and the relationship between strain and stress in polymeric coatings is obtained. The thermally induced viscoelastic stresses in dual-coated optical fibres are derived from the viscoelastic behaviour of commercial polymeric coatings. The compressive radial stress on the glass fibre surface produces microbending losses, which can be diminished by properly choosing the thickness and material properties of polymeric coatings. The design of dual-coated optical fibres to diminish thermally induced microbending losses caused by viscoelastic behaviour of polymeric coatings is proposed. The thermally induced microbending loss in dual-coated optical fibres evaluated by Maxwell model is underestimated.
机译:使用动态力学分析在室温下测量用于光纤的商用聚合物涂层的粘弹性行为,并获得聚合物涂层中的应变和应力之间的关系。双涂层光纤中的热诱导粘弹性应力源自商业聚合物涂层的粘弹性行为。玻璃纤维表面的径向压缩应力会产生微弯损耗,可以通过适当选择聚合物涂层的厚度和材料性能来减小这种损耗。提出了双涂层光纤的设计,以减少由聚合物涂层的粘弹性行为引起的热致微弯曲损耗。通过Maxwell模型评估的双涂层光纤中的热诱导微弯曲损耗被低估了。

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