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In situ formation of strain sensors by breaking optical fibers in structural materials

机译:通过破坏结构材料中的光纤原位形成应变传感器

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摘要

This article describes the formation of strain sensors embedded in a matrix material by breaking a notched optical fiber in the matrix. When a specimen with an embedded optical fiber with a notch is tensile tested, fracture of the fiber at the notch occurs, producing an optical interference type strain sensor. During the formation process optical transmission loss is recorded. The case of multiply notched optical fibers is also considered and it is shown that the optical loss of the embedded optical fiber during tensile test increases with the number of breaks. Using bending, instead of tension, to form the sensor, allows a reduction of break pitch and consequently improves the local nature of the sensor. The multiple fractured type optical fiber sensor has also been used on an active laminate to monitor its curvature change during actuation.
机译:本文介绍了通过破坏基体中的缺口光纤来形成嵌入基体材料中的应变传感器的方法。对带有带切口的埋入式光纤的试样进行拉伸试验时,会在切口处发生光纤断裂,从而产生光干涉型应变传感器。在形成过程中,记录光传输损耗。还考虑了多切口光纤的情况,并且显示出,在拉伸试验期间,埋入式光纤的光学损耗随着断裂次数的增加而增加。使用弯曲而不是张力来形成传感器,可以减小中断间距,从而改善传感器的局部特性。多断裂型光纤传感器也已经用于有源层压板上,以监测其在致动期间的曲率变化。

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