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Large strain detection of SRM composite shell based on fiber Bragg grating sensor

机译:基于光纤布拉格光栅传感器的SRM复合壳体大应变检测

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摘要

Abstract There may be more than 2% strain of carbon fiber composite material on solid rocket motor (SRM) in some extreme cases. A surface-bonded silica fiber Bragg grating (FBG) strain sensor coated by polymer is designed to detect the large strain of composite material. The strain transfer relation of the FBG large strain sensor is deduced, and the strain transfer mechanism is verified by finite element simulation. To calibrate the sensors, the tensile test is done by using the carbon fiber composite plate specimen attached to the designed strain sensor. The results show that the designed sensor can detect the strain more than 3%, the strain sensitivity is 0.0762 pm/με, the resolution is 13.13με, and the fitting degree of the wavelength-strain curve fitting function is 0.9988. The accuracy and linearity of the sensor can meet the engineering requirements.
机译:摘要在一些极端情况下,固体火箭电机(SRM)可能存在超过2%的碳纤维复合材料菌株。由聚合物涂覆的表面粘合的二氧化硅纤维布拉格光栅(FBG)应变传感器被设计成检测大规模的复合材料。推导出FBG大应变传感器的应变传递关系,并通过有限元模拟验证应变传递机制。为了校准传感器,通过使用连接到设计的应变传感器的碳纤维复合板试样来完成拉伸试验。结果表明,设计的传感器可以检测到3%以上的应变,应变灵敏度为0.0762μm/με,分辨率为13.13με,波长应变曲线配件函数的装配程度为0.9988。传感器的准确性和线性可以满足工程要求。

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