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Enhanced delamination resistance of thick-section glass-epoxy composite laminates using compliant thermoplastic polyurethane interlayers

机译:使用顺应性热塑性聚氨酯中间层增强了厚截面玻璃环氧树脂复合层压板的耐分层性

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摘要

In this work, we present a novel approach for improving the delamination resistance and durability of structural composite laminates using compliant thermoplastic polyurethane (TPU) interlayers that allow decoupling of the structural plies within the laminate thus preventing catastrophic delamination. Laminates with different compliant interlayer thicknesses are fabricated and characterized under multiple low velocity impacts (LVI) to demonstrate the significant improvement in delamination resistance that can be achieved. Finite element analysis and experimental data on samples of the interlayer laminates subjected to three-point bending is presented to provide additional insight into the unique decoupling phenomena enabling significant improvements in delamination resistance of structural composite laminates.
机译:在这项工作中,我们提出了一种使用顺应性热塑性聚氨酯(TPU)中间层来改善结构复合层压板的抗分层性和耐久性的新颖方法,该中间层允许层压板中结构层的脱耦,从而防止灾难性分层。在多次低速冲击(LVI)的作用下,制造并使用了具有不同柔顺夹层厚度的层压板并进行了表征,以证明可实现的抗分层性显着提高。介绍了经过三点弯曲的层间层压板样品的有限元分析和实验数据,以提供对独特的解耦现象的进一步了解,从而可以显着提高结构复合材料层压板的抗分层性。

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