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Application of chirped fiber Bragg grating sensors for damage identification in composites

机译:fiber光纤布拉格光栅传感器在复合材料损伤识别中的应用

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摘要

Chirped fiber Bragg grating (FBG) sensors were applied for the identification of damages in carbon fiber reinforced plastic (CFRP) laminates since the reflection spectrum from a chirped FBG was expressed as a function of the position along the grating. First, for the identification of crack locations in the 90° ply of cross-ply laminates, chirped FBG sensors, whose grating length and spectrum width were 50mm and about 5nm respectively, were embedded in CFRP cross-ply laminates, and the reflection spectra were measured after tensile loadings to the laminates. As a result, the spectra had dips corresponding to locations of transverse cracks. This change in the form of the spectrum was also confirmed by a theoretical calculation. Hence, the crack locations could be identified from the form of the spectrum. Secondly, this technique was applied to the identification of the delamination originating from a tip of a transverse crack in a cross-ply laminate. Since theoretical calculations indicated that the reflection spectrum changed its form corresponding to the progress of the delamination, it was also found that the chirped FBG sensor could be applied to the identification of the length and position of the delamination.
机译:from光纤布拉格光栅(FBG)传感器用于识别碳纤维增强塑料(CFRP)层压板中的损伤,因为from FBG的反射光谱表示为沿着光栅位置的函数。首先,为识别90度交叉层压板的裂纹位置,将CF长FBG传感器(其光栅长度和光谱宽度分别为50mm和约5nm)嵌入CFRP交叉层压板中,并且反射光谱为在层压板上拉伸载荷后测量。结果,光谱具有对应于横向裂纹位置的倾斜。光谱形式的这种变化也通过理论计算得到证实。因此,可以从光谱的形式识别裂纹位置。其次,该技术被用于识别由交叉层状层压板中的横向裂纹的尖端引起的分层。由于理论计算表明反射光谱随分层的进行而改变其形式,因此还发现theFBG传感器可用于识别分层的长度和位置。

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