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Experimental and numerical investigations on push-out delamination in drilling of composite laminates

机译:复合层压板钻井中推出分层的实验性和数值研究

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This study conducts experimental and numerical studies on the progressive damage occurring during the drilling of composite laminates. In particular, this work focuses on push-out delamination, which occurs at the interface around the drill-exit and is the most critical damage suffered during the drilling process. To investigate the damage progression mechanisms, penetration and interruption drilling tests are performed on composite laminate consisting of quasi-isotropic CFRP plies and fabric GFRP ply (bottom side). After drilling tests, the damage evolution is evaluated using X-ray computed tomography and optical microscopy. Based on the experimental results, a simplified simulation model is established, and damage progression simulation is performed using an explicit dynamic finite element method. The results show that the bending deformation in the bottom two plies triggers the propagation of push-out delamination. Therefore, the extent of delamination is significantly affected by the thickness and the material properties of the bottom plies.
机译:本研究对复合层压板钻井期间发生的渐进损伤进行了实验和数值研究。特别是,这项工作侧重于推出分层,这在钻出口周围的界面处发生,并且是钻井过程中遭受的最关键的损失。为了研究损伤的进展机制,对由准各向同性CFRP层和织物GFRP层(底侧)组成的复合层压板进行渗透和中断钻探试验。钻探测试后,使用X射线计算机断层扫描和光学显微镜评估损伤的进化。基于实验结果,建立了简化的仿真模型,使用明确的动态有限元方法进行损坏探讨模拟。结果表明,底部两层弯曲变形触发了推出分层的传播。因此,分层的程度受到底层厚度和材料性质的显着影响。

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