四种最常用的光纤涂层材料的力学特性

Y. P. Michel, M. Lucci, M. Casalboni, P. Steglich, S. Schrader
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引用次数: 10

摘要

多模光纤具有广泛的应用范围,从工业用途到医疗用途。因此,即使它们只是用作波导或传感器,重要的是表征整个指纹,包括这种纤维的光学和机械性能。由于材料的刚度/弹性会因微弯曲而影响纤维的光输出,因此在本文中,我们报告了丙烯酸酯、氟化丙烯酸酯、聚酰亚胺和硅酮的杨氏模量的计算结果,这四种材料是此类光学元件最常用的涂层材料。结果表明,杨氏模量对沿光纤传播的光的衰减有影响。然而,涂层材料的折射率对光纤的性能仍然有很大的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical characterisation of the four most used coating materials for optical fibres
Optical multimode fibres have a wide variety of applications ranging from industrial to medical use. Therefore, even if they are just used as waveguides or sensors, it is important to characterise the whole fingerprint, including the optical and mechanical properties of such fibres. Since the stiffness/elasticity of a material could influence the optical output of a fibre due to micro-bendings, in this paper we report the calculated Young's Modulus of acrylate, fluorinated acrylate, polyimide and silicone, which are the four most used coating materials for such optical components. The results demonstrate that Young's Modulus does have an impact on the attenuation of propagating light along the optical fibre. However, the refractive index of the coating materials still has a significant impact on the performance of optical fibres.
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