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Fracture toughness of filament wound BFR and GFR arc shaped specimens with Charpy impact test method

机译:夏比冲击试验法测定缠绕长丝BFR和GFR弧形试样的断裂韧性

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摘要

The aim of this study is an examination of Charpy impact behaviors of ±6 layered basalt (BFR) and glass fiber reinforced (GFR) epoxy composite pipe at the degree of ±55° filament winding angle with the arc-shaped specimen technique of different notch depth ratios (a/W). As a result of Charpy impact experiments, BFR composites were determined to have higher impact energy level and impact fracture toughness than GFR composites. The occurred average delamination areas in between layers were detected by an image processing method during the impact process. The delamination damage in GFR composites was observed to be more dominant damage than in BFR composites. It is understood that damage modes change when the notch depth ratio increases for composites. In BFR composites, the predominant damage mode was determined to be fiber breakage as a consequence of experiments and SEM analyses.
机译:这项研究的目的是使用不同缺口的弧形试样技术,以±55°的细丝缠绕角度检查±6层玄武岩(BFR)和玻璃纤维增​​强(GFR)环氧复合管的夏比冲击性能。深度比(a / W)。夏比冲击试验的结果是,确定BFR复合材料比GFR复合材料具有更高的冲击能级和冲击断裂韧性。在冲击过程中,通过图像处理方法检测在层之间发生的平均分层区域。观察到,与BFR复合材料相比,GFR复合材料的分层损伤是主要的损伤。可以理解的是,当复合材料的切口深度比增加时,损伤模式就会改变。在BFR复合材料中,由于实验和SEM分析,主要的破坏模式被确定为纤维断裂。

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