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A Numerical Study on Low Failure Strength of CFRP Laminates with Impact Damage

机译:冲击损伤下碳纤维布层合板低强度破坏的数值研究

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摘要

Compression behavior and failure mechanism of impact damaged composite laminates are numerically discussed by using finite element method to explain the compression strength reduction due to barely-visible-damage (CAI). Impact damage is modeled as a double-spiral-shape damage consisting of delaminations and matrix cracks. The numerical results considering geometrical nonlinearity and contact condition show that buckling of the entire damage area causes a rapid increase of the energy release rate and compressive stress. The failure load is investigated through energy release rate distribution along the delamination front and the stress concentration at the side of the buckled portion.
机译:利用有限元方法对冲击损伤复合材料层合板的压缩行为和破坏机理进行了数值分析,解释了由于几乎看不见损伤(CAI)导致的压缩强度降低。冲击损伤被建模为由分层和基体裂纹组成的双螺旋形损伤。考虑几何非线性和接触条件的数值结果表明,整个损伤区域的屈曲导致能量释放率和压应力迅速增加。通过沿脱层前沿的能量释放率分布和屈曲部分侧面的应力集中来研究失效载荷。

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