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Reliability modeling and testing of optical fiber Bragg sensors for strain measurements

机译:应变测量光纤布拉格传感器可靠性建模与测试

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Surveillance of facilities and critical structures by monitoring mechanical strength and integrity is necessary for safety in use. Fiber-optic sensors still have poor industrial acceptance due to their lack of demonstrated reliability and long-term stability. Reliability testing for objects with expected life times of 10 to 100 years has to rely on accelerated aging procedures. We report on a series of aging tests of optical fibers and Bragg gratings at elevated temperature, humidity and mechanical stress performed in regard to field applications. Tensile and climate tests were performed with optical fibers embedded in glass fiber reinforced polymers (GFRP) and surface attached to carbon fiber reinforced polymers (CFRP). For surface attached fiber sensors relative humidity was found to be a critical parameter with strong influence on life time. A cable-stayed bridge (Storchenbrucke in Winterthur, CH, still under construction) where for the first time two steel cables are replaced by CFRP cables was equipped with optical-fiber Bragg gratings and standard resistance strain sensors.
机译:通过监测机械强度和完整性的设施和关键结构是必要的,因为使用安全性是必要的。由于缺乏显示的可靠性和长期稳定性,光纤传感器仍然具有较差的工业验收。具有预期寿命时间为10到100年的物体的可靠性测试必须依赖加速的老化程序。我们报告了在升高的温度,湿度和机械应力下的光纤和布拉格光栅的一系列老化测试。用嵌入玻璃纤维增​​强聚合物(GFRP)的光纤和附着在碳纤维增强聚合物(CFRP)的表面进行拉伸和气候试验。对于表面附着的光纤传感器,发现相对湿度是具有强烈影响的临界参数。一座斜拉桥(斯坦宁堡,在Winththur,CH,仍在建设中),在第一次由CFRP电缆代替两个钢电缆配有光纤布拉格光栅和标准电阻应变传感器。

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