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Analysis of a damage sensor based on elastic-plastic metal coatings on optical fibers

机译:基于光纤上弹塑性金属涂层的损伤传感器分析

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摘要

Optical-fiber sensors coated with linear work hardening elastic-plastic materials are analytically explored to determine the effects the coating properties have on the sensor performance. The optical-fiber system is analytically subjected to both an axial load and a uniform thermal gradient. The nonlinear analysis reveals a mechanism for designing coatings which provide a memory to the optical-fiber sensor by undergoing permanent deformations in response to large thermal or mechanical strain excursions. This behavior is exploited to design a damage sensor.
机译:分析研究了涂有线性加工硬化弹塑性材料的光纤传感器,以确定涂层性能对传感器性能的影响。光纤系统在分析上既承受轴向载荷又承受均匀的热梯度。非线性分析揭示了一种设计涂层的机制,该涂层通过响应大的热或机械应变偏移而发生永久变形,从而为光纤传感器提供记忆。利用此行为来设计损坏传感器。

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