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首页> 外文期刊>Sensors and Actuators, A. Physical >A high-temperature resistant photonic crystal fiber sensor with single-side sliding Fabry-Perot cavity for super-large strain measurement
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A high-temperature resistant photonic crystal fiber sensor with single-side sliding Fabry-Perot cavity for super-large strain measurement

机译:具有单侧滑动法布里 - 珀氏腔的高温耐光晶体光纤传感器,用于超大型应变测量

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摘要

A photonic crystal fiber (PCF) Fabry-Perot (F-P) sensor capable of super-large strain measurement under high temperatures has been proposed and investigated in this paper. Two PCFs have been inserted inside of both sides of a quartz capillary with laser welding fixed and freely suspended layouts, respectively. Such configuration leads to a single-side sliding F-P cavity with a large measurement range. The designed sensor is compact and support a simple fabrication procedure with low cost. The sensing principle and validation experiments have been derived and implemented, respectively. Experiments results demonstrate that the sensor has an excellent resistance for the temperature within the range of 28 degrees C similar to 1100 degrees C. A large mechanical-induced strain of 9436.66 mu epsilon can be accurately detected under a high-the temperature reaching 1000 degrees C. These merits enable the designed sensor to detect the super-large strain of turbine blades under a high-temperature environment. (C) 2020 Published by Elsevier B.V.
机译:本文提出并研究了一种能够在高温下测量超大应变的光子晶体光纤(PCF)法布里-珀罗(F-P)传感器。在石英毛细管的两侧分别插入两个PCF,分别采用激光焊接固定和自由悬挂布局。这种结构导致了具有大测量范围的单侧滑动F-P腔。设计的传感器结构紧凑,制造工艺简单,成本低。分别推导并实现了传感原理和验证实验。实验结果表明,该传感器在28摄氏度(相当于1100摄氏度)的温度范围内具有良好的电阻。在1000摄氏度的高温下,可以准确地检测到9436.66με的大机械诱导应变。这些优点使所设计的传感器能够在高温下检测涡轮叶片的超大应变高温环境。(C) 2020年爱思唯尔公司出版。

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