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Strain Transfer Analysis of a Clamped Fiber Bragg Grating Sensor

机译:固定光纤布拉格光栅传感器的应变传递分析

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Clamped fiber Bragg grating (FBG) sensors have been widely applied in engineering strain measurements due to their advantages of high flexibility and efficiency. However, due to the existence of the interlayer, the strain measured by the encapsulated FBG sensor is not equal to the strain of the host material, which causes strain measurement errors. In this paper, the strain transfer analysis of a clamped FBG sensor based on the shear-lag theory is conducted to improve the accuracy of strain measurements. A novel theoretical model for the axial strain distribution of a clamped FBG sensor is proposed. It is also discussed how the gauge ratio and interlayer thickness affect the strain transfer rate. The accuracy of the proposed theoretical model is verified by experimental tensile tests. The theoretical value of the strain transfer rate matches well with the tested value.
机译:夹紧式光纤布拉格光栅(FBG)传感器具有高灵活性和高效率的优点,已广泛应用于工程应变测量。然而,由于中间层的存在,由密封的FBG传感器测量的应变不等于主体材料的应变,这导致应变测量误差。本文基于剪切滞后理论对夹紧式FBG传感器进行了应变传递分析,以提高应变测量的准确性。提出了一种新型的FBG传感器轴向应变分布的理论模型。还讨论了标距比和夹层厚度如何影响应变传递速率。通过实验拉伸试验验证了所提出理论模型的准确性。应变传递速率的理论值与测试值非常吻合。

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