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Moire interferometry measurements of composite laminate repair behavior: Influence of grating thickness on interlaminar response

机译:云纹干涉法测量复合强化修复行为:光栅的影响厚层间的反应

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摘要

Bonded scarf-lap and step-lap specimens representative of fully repaired composites were fabricated from two quasi-isotropic sixteen ply panels made from 1M6/3501-6 material. The full-field optical displacement measuring technique, moire interferometry, was used to gather detailed information about the distribution of interlaminar strain on the edge of these specimens. Highly detailed 3D numerical models were constructed for both specimen geometries and results obtained. Instead of modeling idealized bondline geometries, the geometries were obtained through digitization of micrographs of the actual test specimens. As a further enhancement on a second set of models, a thin resin layer representing the moire interferometry diffraction grating was added to each model. Comparisons between the model and experimental results showed that a localized effect over the bondline was more accurately represented when the grating layer was modeled. Surprisingly, it was found that in regions away from the bondline, the through-thickness interlaminar normal strain was found to be amplified by the presence of the modeled grating. A series of parametric models were conducted on a laminated composite while varying grating thickness and modulus to further examine this phenomenon. A mechanism for the strain amplification is proposed.
机译:保税scarf-lap step-lap标本代表完全修复复合材料制作两个准各向同性十六层面板1 m6/3501-6材料制成。藉由此光学位移测量技术,云纹干涉法,用于收集的详细信息层间压力分布的边缘这些标本。标本的模型构建几何图形和结果。理想化的不同几何图形建模几何图形是通过数字化实际试样的显微图。第二组模型,进一步增强薄的树脂层代表了波纹添加到干涉衍射光栅每个模型。实验结果表明,局部效应在不同更准确光栅层建模时表示。令人惊讶的是,它发现的地区从不同,全厚度层间法向应变被发现放大的模型光栅。一系列的参数模型上进行层压复合而不同的光栅厚度和模量进一步检查的现象。提出了放大。

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