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High-resolution optical study of the impact of carbon-fibre reinforced polymers with different lay-ups

机译:高分辨率光学研究不同叠层碳纤维增强聚合物的影响

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摘要

The impact deformation of carbon-fibre reinforced polymer samples with different lay-ups was studied using high-speed optical techniques. The in-plane deformation of the sample was measured using time-resolved fine-grid analysis. The residual velocities of the projectiles were determined using streak photography and hence the energy dissipated during the penetration was obtained. Both microscopic damage and macroscopic damage to the plates were studied. The deformation, energy dissipation and damage all had a strong dependence on the composite lay-up. Unidirectional composites exhibited anisotropic behaviour and were significantly weaker than the other lay-ups. Though this is intuitively reasonable, this paper gives quantitative measures of this effect. Composite samples examined using the fine-grid technique exhibited cracking in the rear ply suprisingly early in the impact with wide-reaching delamination of this ply. Comparative measurements are presented for polymethylmethacrylate which deformed more isotropically until fragmentation.
机译:使用高速光学技术研究了具有不同叠层的碳纤维增强聚合物样品的冲击变形。使用时间分辨细网格分析测量样品的面内变形。使用条纹照相法确定弹丸的残余速度,从而获得在穿透过程中耗散的能量。研究了板的微观损伤和宏观损伤。变形,能量耗散和损坏都对复合材料铺层有很大的依赖性。单向复合材料表现出各向异性,并且比其他叠层要弱得多。尽管从直觉上讲这是合理的,但本文给出了对此效果的定量度量。使用细网格技术检查的复合材料样品在冲击中表现出令人惊讶的早期破裂,且该层压板发生了广泛的分层。提供了对聚甲基丙烯酸甲酯的比较测量,该聚甲基丙烯酸甲酯更各向同性变形直至断裂。

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