用嵌入式FBG光学传感器监测木胶合接头在I型分层试验中的非均匀应变

R. S. Maciel, O. Frazão, J. Morais, J. R. Fernandes
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引用次数: 2

摘要

在这项工作中,介绍了在双悬臂梁(DCB) I型分层测试中,将光纤布拉格光栅传感器嵌入到两个木臂之间的环氧胶线中所产生的反射光谱的研究。当施加在层压板上的应力不断增加直至发生断裂时,使用光谱分析仪Fibersensing Bragmeter FS2200SA在规定的时间间隔内获得反射光谱。它们最初表现为典型的布拉格光栅反射光谱,由于沿板线的应变分布不均匀,逐渐转变为更复杂的多峰光谱。在此基础上,推导了不规则应变分布下光栅有效折射率的变化模型,该模型与观测光谱吻合。该模型由布拉格光栅有效指数线性相位变化的通常余弦描述,加上沿光纤长度的对数相位变化,导致光栅波长随距离加载点的增加而增加。此外,根据该模型得到了沿光栅方向的应变分布,得到了预期的结果。
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Monitoring of non-homogeneous strains in wood glued joints with embedded FBG optical sensors in mode I delamination tests
In this work it is presented a study of the reflection spectra yielded by a Fiber Bragg Grating sensor embedded into an epoxy glue line between two wood arms, in a double cantilever beam (DCB) Mode I delamination test. The reflection spectra were obtained using a Spectral Analyzer Fibersensing Bragmeter FS2200SA in regular time intervals, as the stress applied to the laminates is continuously increased until fracture occurs. They initially show a typical Bragg grating reflection spectrum, which gradually changes into more complicated, multiple-peak spectra, resulting from a non-homogenous strain distribution along the board line. Based on these results, a model was derived for the variation of the grating effective index which fits the observed spectra when the irregular strain distribution is observed. This model consists of usual cosine description of Bragg grating effective index with linear phase variation, plus a logarithmic phase change along the fiber length, resulting in the increment of the grating wavelength with increasing distance from the load application point. Moreover, from this model the strain distribution along the grating is found, yielding the expected result.
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