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High temperature strain sensor based on a fiber Bragg grating and rhombus metal structure

机译:基于光纤布拉格光栅和菱形金属结构的高温应变传感器

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摘要

In this paper, a novel high temperature strain sensor based on a polyimide-coated fiber Bragg grating (FBG) and a rhombus metal structure is presented and experimentally demonstrated. By heating low softening point glass via a micro torch, the polyimide-coated FBG could be fixed into the rhombus metal structure. Consequently, when the rhombus structure is stretched and compressed, respectively, then the FBG will be subjected to a reverse state. Moreover, the strain sensitivity is controllable and enhanced by adjusting the dimension of the rhombus metal structure appropriately. The experiment was then carried out by using an equi-intensity cantilever beam and high temperature chamber, and the result showed that the proposed high temperature strain sensor could be used at the high temperature of 300 degrees C. A resolution of similar to 10 mu epsilon has been experimentally achieved. The average wavelength strain sensitivity at 300 degrees C is 1.821 and 1.814 pm/mu epsilon, for the compressed and stretched states, respectively.
机译:本文提出了一种新型的高温应变传感器,该传感器基于聚酰亚胺涂层的光纤布拉格光栅(FBG)和菱形金属结构。通过微火炬加热低软化点玻璃,可以将聚酰亚胺涂层的FBG固定在菱形金属结构中。因此,当菱形结构分别被拉伸和压缩时,FBG将处于相反状态。此外,通过适当地调节菱形金属结构的尺寸,可以控制和提高应变灵敏度。然后使用等强度悬臂梁和高温室进行了实验,结果表明所提出的高温应变传感器可以在300摄氏度的高温下使用。分辨率类似于10με已经通过实验实现。对于压缩状态和拉伸状态,在300℃下的平均波长应变灵敏度分别为1.821和1.814pm /με。

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