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Effect of Interlaminar Toughness on the Low-Velocity Impact Damage in Composite Laminates

机译:层间韧性对复合材料层合板低速冲击损伤的影响

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摘要

Based on the continuum damage mechanics (CDM) and the cohesive zone model (CZM), a numerical analysis method for the evaluation of damage in composite laminates under low-velocity impact is proposed. The intraply damage including matrix crack and fiber fracture is represented by the CDM which takes into account the progressive failure behavior in the ply, using the damage variable to describe the intraply damage state. The delamination is characterized by a special contact law including the CZM which takes into account the normal crack and the tangential slip. The effect of the interlaminar toughness on the impact damage is investigated, which is as yet seldom discussed in detail. The results reveal that as the interlaminar fracture toughness enhances, the delamination area and the dissipated energy caused by delamination decrease. The contribution of normal crack and tangential slip to delamination is evaluated numerically, and the later one is the dominant delamination type during the impact process. Meanwhile, the numerical prediction has a good agreement with the experimental results. The study is helpful for the optimal design and application of composite laminates, especially for the design of interlaminar toughness according to certain requirements. (C) 2014 Society of Plastics Engineers
机译:基于连续损伤力学(CDM)和内聚力区模型(CZM),提出了一种低速冲击复合材料损伤评估的数值分析方法。 CDM代表了包括基体裂纹和纤维断裂在内的内部损坏,该CDM考虑了帘布层中的渐进式破坏行为,使用损坏变量来描述内部损坏状态。分层的特点是包括CZM在内的特殊接触定律,其中考虑了法向裂纹和切向滑动。研究了层间韧性对冲击损伤的影响,至今很少详细讨论。结果表明,随着层间断裂韧性的增强,层错区域和层错引起的耗散能量减小。数值评估了法向裂纹和切向滑动对分层的贡献,而后一种是冲击过程中的主要分层类型。同时,数值预测与实验结果吻合良好。该研究有助于复合材料层压板的优化设计和应用,特别是根据某些要求的层间韧性设计。 (C)2014年塑料工程师学会

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