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Morphology and compression-after-impact strength relationship in interleaved toughened composites

机译:交错增韧复合材料的形貌与冲击后强度关系

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摘要

Morphology and compression after impact (CAI) strength relationships in interleaved toughened high performance composites are investigated using a quantitative two-dimensional image analysis approach. A group of six quasi-isotropic carbon fiber-epoxy composites with identical compositions, but having variations in CAI strengths, were analyzed to study how the interleaf particle size, particle size distribution, and location of particles in the interlaminar region affect the CAI strength values and the corresponding damage mechanisms. It is found that the CAI strength of interleaved-toughened composites is significantly affected by the size and size distribution of toughener particles in the interlaminar regions of the composite. In general, high CAI strength composites exhibit more uniform particle size distribution throughout the interlaminar regions. Whereas, for low CAI strength composites, the interleaf particles tend to cluster together and have varied size distribution.
机译:使用定量二维图像分析方法研究了交错的增韧高性能复合材料的形态和冲击后压缩(CAI)强度关系。分析了一组六种具有相同组成但CAI强度有所不同的准各向同性碳纤维-环氧树脂复合材料,以研究叶片间粒径,粒径分布以及层间区域中颗粒的位置如何影响CAI强度值以及相应的损坏机制。已发现,交错增韧复合材料的CAI强度受复合材料层间区域中增韧剂颗粒的尺寸和尺寸分布的显着影响。通常,高CAI强度的复合材料在整个层间区域表现出更均匀的粒度分布。而对于低CAI强度的复合材料,插层颗粒往往会聚在一起并具有变化的尺寸分布。

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