基于动态光学焦散的I型裂纹层合复合材料低速冲击研究

X. Yao, Wei Xu, G. Jin, H. Yeh
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引用次数: 13

摘要

采用光学焦散与高速沙尔丁相机相结合的方法,研究了层合材料I型裂纹尖端应力奇点的动态演化规律。模拟了两种不同纤维层压复合材料的理论散散量和初始曲线。分析了裂纹尖端应力奇异性的一些特征。另一方面,裂纹尖端周围动态破坏的产生和随后的演变可以通过光学阴影点来可视化。提取了局部应力集中的特征尺寸,确定了裂纹尖端的应力强度因子。利用一系列光学焦散图像和复合材料的变形分析了层合复合材料在冲击后的局部响应和破坏演化机制。
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Low Velocity Impact Study of Laminate Composites with Mode I Crack Using Dynamic Optical Caustics
The dynamic evolutions of stress singularities at mode I crack tip in laminate composites are studied by combining optical caustic with high-speed schardin camera. Theoretical caustics and initial curve for two different fiber laminate composites are simulated. Some characteristics of stress singularity at crack tip are analyzed. On the other hand, the generation and the subsequent evolution of dynamic failure around the crack tip are visualized by the optical shadow spots. The characteristic sizes of local stress concentration are extracted and the stress intensity factors at crack tip are determined. The local response and failure evolution mechanism of laminated composite after impact are analyzed by means of a series of optical caustic image and the deformation of composites.
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