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Investigations on the impact behaviour of fibre-reinforced composites: effect of impact energy and impactor shape

机译:对纤维增强复合材料的影响行为的研究:冲击能源和撞击效果

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In the present research, a detailed experimental study of the impact behaviour of CFRP composites is performed. To investigate the effects of impactor velocity, a round-nosed steel impactor is employed to strike the composite specimens at two impact velocities (i.e. 2.40 m.s~(-1) and 4.16 m.s~(-1)). To investigate the effects of the geometry of the head of the impactor, a flat-faced steel impactor is also employed to strike the composite specimens at a velocity of 2.40 m.s~(-1). After the impact experiments, all the tested composite specimens are inspected using a C-scan device to assess the damage due to the different types of impact. The experimental results, including the loading response and impact-induced damage, are employed to analyse the effects of impact velocity and impactor shapes on the impact behaviour of the composite laminates. The results indicate that, at the higher impact velocity (i.e. 4.16 m.s~(-1)), delamination is more extensive near the rear face of the composite, whilst the delamination near the front face is less sensitive to the increase in the impact velocity. For the lower impact velocity (i.e. 2.40 m.s~(-1)), the area of the damage footprint from the round-nosed steel impactor and the flat-faced steel impactor are similar in extent, but the shape of the damage footprint is very different. The round-nosed steel impactor causes a centrally symmetric damage area, whilst the flat-faced steel impactor causes damage in which the central area shows much less damage.
机译:在本研究中,进行了对CFRP复合材料的影响行为的详细实验研究。为了研究撞击速度的影响,采用圆形钢冲击器在两个冲击速度下撞击复合样品(即2.40m,-1)和4.16米〜(-1))。为了研究撞击头的几何形状的影响,还采用平面钢冲击器,以将复合标本置于2.40mm的速度〜(-1)。在冲击实验之后,使用C扫描装置检查所有测试的复合标本,以评估由于不同类型的撞击而导致的损坏。实验结果包括加载响应和冲击诱导的损伤,用于分析冲击速度和撞击器形状对复合层压板的冲击行为的影响。结果表明,在更高的冲击速度(即4.16ms〜(-1)),分层在复合材料的后表面附近更广泛,同时前面附近的分层对冲击速度的增加敏感。对于较低的冲击速度(即2.40ms〜(-1)),圆形钢冲击器的损坏占地面积和平面钢冲击器的面积在范围内类似,但损坏足迹的形状非常不同的。圆形钢冲击器导致中央对称的损伤区域,同时平面钢冲击器导致中央区域损坏的损坏。

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