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Measurement of stress concentrations using embedded optical fiber Bragg grating sensors

机译:使用嵌入式光纤布拉格光栅传感器测量应力浓度

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This paper investigates the use of embedded optical fiber Bragg gratings to measure strain near a stress concentration within a solid structure. Due to the nature of a stress concentration (i.e. the strong non-uniformity of the strain field) the assumption that the grating spectrum in reflection remains a single peak with a constant bandwidth may not be valid. Compact tension specimens including a controlled notch shape are fabricated with embedded optical fiber Bragg gratings at identical locations but with different gauge lengths. The spectra in transmission varies between such specimens for given loading conditions. This variation is shown to be due to the difference in gauge length. By using the strain field measured on the specimen surface with electronic speckle pattern interferometry and a discretized model of the grating, the spectra in transmission are then verified analytically. Thus, by considering the non-uniformity of the strain field, the optical fiber Bragg gauge functions well as an embedded strain gauge near the stress concentration. Due to the distributed nature of the measurements within a specific gauge length, the optical fiber Bragg gauge has a large potential to measure debonding in fiber reinforced composites.
机译:本文研究了嵌入式光纤布拉格光栅的使用来测量固体结构内应力集中的应变。由于应力集中的性质(即应变场的强不均匀性),假设光栅光谱反射中的光栅仍然是具有恒定带宽的单个峰值可能无效。紧凑的张力标本,包括受控的凹口形状,采用相同位置的嵌入式光纤布拉格光栅制造,但具有不同的仪表长度。传输中的光谱在这种样本之间变化,用于给定负载条件。该变化被显示为由于规格长度的差异。通过使用具有电子散斑图案干涉法测量的样本表面上测量的应变场和光栅的离散模型,然后分析验证传输中的光谱。因此,通过考虑应变场的不均匀性,光纤布拉格表仪作为靠近应力集中的嵌入式应变仪。由于在特定规格长度内测量的分布性质,光纤布拉格表具有很大的可能性来测量纤维增强复合材料的剥离。

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