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Design of hermetically metal-coated optical fibers to simultaneously minimize thermally and hydrostatic pressure induced stresses

机译:设计密封金属涂层的光纤,以同时最小化热和静水压力引起的应力

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摘要

The design of hermetically metal-coated optical fibers to simultaneously minimize the thermally and hydrostatic pressure induced stresses is investigated. The thermally and hydrostatic pressure induced stresses would produce the microbending loss, the delamination of metallic coatings or the static fatigue of the glass fiber, so these stresses should be minimized. The selection of physical properties of metallic coatings and their thicknesses for the minimization of these stresses is proposed. The calculated stresses in hermetically metal-coated optical fibers with some selected metallic coatings are also discussed. It reveals that no pure metal is suitable for the simultaneous minimization of thermally and hydrostatic pressure induced stresses. However, we can expect that the metal alloy with high water-prevention, high tensile strength, low Young's modulus, low Poisson's ratio (between 0.2 and 0.25) and low thermal expansion coefficient will be the best metallic materials for the simultaneous minimization of thermally and hydrostatic pressure induced stresses in hermetically metal-coated optical fibers.
机译:研究了同时最小化热压力和静水压力引起的应力的密封金属涂层光纤的设计。热和静水压力引起的应力会产生微弯损失,金属涂层的分层或玻璃纤维的静态疲劳,因此应将这些应力降至最低。为了最小化这些应力,提出了选择金属涂层的物理性质及其厚度的选择。还讨论了带有某些选定金属涂层的密封金属涂层光纤的计算应力。结果表明,没有任何一种纯金属适合同时减小热和静水压力引起的应力。但是,我们可以预期,具有高防水性,高抗拉强度,低杨氏模量,低泊松比(0.2到0.25之间)和低热膨胀系数的金属合金将是同时最小化热和热损失的最佳金属材料。静水压力引起的金属密封光纤中的应力。

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