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Towards the generation of controlled one-inch impact damage in thick CFRP composites for SHM and NDE validation

机译:在SHM和NDE验证的厚CFRP复合材料中产生受控的一英寸冲击损伤

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摘要

In this paper, an attempt has been made to conduct controlled low velocity impact experiments in quasi-isotropic carbon fiber reinforced polymer (CFRP) composites of increasing thicknesses to generate barely visible impact damage (BVID) that creates 1 '' impact damage diameter. Such impacted CFRP coupons with controlled damage diameter would serve in the future for validation of structural health monitoring (SHM) and nondestructive evaluation (NDE) damage detection methodologies. Various 2-mm, 4-mm and 6-mm thick quasi-isotropic CFRP composite plates having similar stacking sequence were manufactured in a compression molding machine. These plates were cut into numerous 6 '' x 4 '' coupons to be impacted in accordance with ASTM D7136 standard on a Dynatup impact testing machine. The goal of the experiments was to identify the combination of impactor mass, energy and momentum at which approximately 1 '' impact damage diameter could be produced for test coupons of increasing thicknesses. Interesting observations were made with respect to the size and shape of the impact damage as the thickness of the composite coupons was increased from 2-mm to 6-mm. Modified experiments were also conducted on 6-mm coupons to achieve close to 1 '' impact damage diameter. The greatest challenge in conducting these experiments was in the thick 4-mm and 6-mm coupons which did not display a predictable trend. Future work should focus on overcoming this challenge towards achieving a predictable impact damage size methodology.
机译:在本文中,已经尝试在增加厚度的准各向同性碳纤维增强聚合物(CFRP)复合材料中进行控制的低速冲击实验,以产生几乎没有造成1''冲击损伤直径的近似可见的冲击损伤(BVID)。这种受控损伤直径的CFRP优惠券将在未来为结构健康监测(SHM)和非破坏性评估(NDE)损伤检测方法的验证。在压缩成型机中制造具有类似堆叠序列的各种2mm,4mm和6mm厚的准各向同性CFRP复合板。将这些板切割成众多6''X 4'的优惠券,以根据Dynatup冲击试验机上的ASTM D7136标准受到影响。实验的目的是识别撞击件质量,能量和动量的组合,其可以为厚度增加的试样产生约1'冲击损伤的损伤直径。由于复合试样的厚度从2mm至6mm增加,对冲击损伤的尺寸和形状进行了有趣的观察。还在6mm试样上进行改性实验,以实现接近1'的冲击损伤直径。在进行这些实验中的最大挑战是厚的4毫米和6毫米的优惠券,该券没有显示可预测的趋势。未来的工作应该侧重于克服这种挑战,以实现可预测的影响伤害尺寸方法。

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