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Measuring delamination severity of glass fiber-reinforced epoxy composites during drilling process

机译:在钻孔过程中测量玻璃纤维增​​强的环氧复合材料的分层严重性

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摘要

Glass fiber-reinforced epoxy composites are one of the potential light-weight structural materials used in various engineering applications due to its excellent properties. Drilling is most widely applied for fastening the composite structures; nevertheless, the damage induced by this operation may reduce the component performance drastically. To establish the damage level, delamination is measured quantitatively using digital imaging techniques. In this study, to quantify the delamination severity effectively, a new refined delamination factor (F_(DR)) is proposed and validated using experimental results observed from three-point bend tests (3PT) and modified short beam shear tests. The value of determined refined delamination factor (F_(DR)) is more accurate compared to the calculated conventional (F_D) and adjusted (F_(DA)) delamination factors.
机译:玻璃纤维增​​强的环氧复合材料由于其优异的性能而成为各种工程应用中潜在的轻质结构材料之一。钻孔最广泛地用于紧固复合结构。但是,此操作引起的损坏可能会大大降低组件性能。为了确定损坏程度,使用数字成像技术对脱层进行了定量测量。在这项研究中,为了有效地量化分层严重程度,提出了一种新的改进分层因子(F_(DR)),并使用从三点弯曲试验(3PT)和改进的短梁剪切试验中观察到的实验结果进行了验证。与计算的常规分层系数(F_D)和调整后的分层分层系数(F_(DA))相比,确定的精确分层系数(F_(DR))的值更准确。

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