首页> 外文会议>ASME international mechanical engineering congress and exposition >DAMAGE CHARACTERIZATION OF CARBON AND GLASS FIBER COMPOSITE PLATES SUBJECTED TO LOW-VELOCITY IMPACT USING THERMOGRAPHY
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DAMAGE CHARACTERIZATION OF CARBON AND GLASS FIBER COMPOSITE PLATES SUBJECTED TO LOW-VELOCITY IMPACT USING THERMOGRAPHY

机译:热成像法对低速冲击作用下碳和玻璃纤维复合板的损伤表征

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Composites are prone to delamination damage when impacted by low velocity projectiles because of the poor through-thickness strength. Therefore, some of the problems with composites are their poor impact damage resistance, weak post-impact mechanical properties, and the difficulty to inspect the impacted area by nondestructive means. Damage characterization of composite materials requires a scientific methodology, knowledge of polymeric materials, and direct field experience. In this work, low-velocity impact response of composite laminates was experimentally studied using drop-tower to determine the energy absorption. Three types of composites were used: carbon fiber, glass fiber, and mixed fiber composite laminates. In addition, these composites were characterized using thermography to quantify their post impact damage. It was found with the 3D temperature distribution that a strong correlation can be determined between the measured temperatures at the impact region with the quantification of the damage using thermal imaging with advanced mid-wave camera.
机译:由于厚度较差的强度,复合材料易于受到低速射弹时的分层损坏。因此,复合材料的一些问题是它们差的影响损伤阻力,较弱的后冲击机械性能,难以通过非破坏性手段检查受影响的区域。复合材料的损伤表征需要科学方法,聚合物材料知识,以及直接现场经验。在这项工作中,使用滴塔实验研究复合层压板的低速冲击响应,以确定能量吸收。使用了三种复合材料:碳纤维,玻璃纤维和混合纤维复合层压材料。另外,这些复合材料的特征是使用热成像来量化其后撞击损伤。它发现,在撞击区域的测量温度下,通过使用高级中波相机的热成像的量化,可以在撞击区域的测量温度之间确定强的相关性。

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