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Low-velocity impact damage research on CFRPs with Kevlar-fiber toughening

机译:凯夫拉尔纤维增韧对CFRP的低速冲击损伤研究

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摘要

This paper provides a comprehensive understanding of the influence mechanism of short fiber toughening on low-velocity impact resistance of carbon fiber reinforced polymer composite laminates (CFRPs). Three kinds of layup laminates with and without short Kevlar-fiber toughening were designed and experimental tests were conducted using a drop-weight impact machine. After the low-velocity impact test, ultrasonic C-scan and industrial computed tomography (ICT) were utilized to comprehensively reveal the internal damage, including damage area and damage distribution. Based on the energy absorption and the impact dynamic responses, mechanical behaviors of CFRPs were analyzed in detail. Furthermore, the residual compression strength and failure strain of CFRPs with and without short Kevlar-fiber toughening were tested. It was observed that damage resistance of toughened laminates at lower impact energy did not show obvious advantages, but the compression-after-impact (CAI) strengths and the failure strain values improved under all energy levels with short Kevlar-fiber toughening. Three-dimensional distribution of internal damage and electron microscope analysis, together with fracture toughness analysis, were employed to explain the experimental findings and relevant mechanisms.
机译:本文全面了解了短纤维增韧对碳纤维增强聚合物复合材料层压板(CFRP)的低速抗冲击性的影响机理。设计了三种具有和不具有短芳纶纤维增韧的叠层层压板,并使用落锤式冲击机进行了实验测试。低速冲击试验后,利用超声波C扫描和工业计算机断层扫描(ICT)全面显示内部损伤,包括损伤面积和损伤分布。基于能量吸收和冲击动力响应,详细分析了CFRP的力学行为。此外,测试了具有和不具有短的凯夫拉尔纤维增韧的CFRP的残余压缩强度和破坏应变。观察到,在较低的冲击能量下,增韧层压板的抗损伤性没有明显的优势,但是在短短的凯夫拉尔纤维增韧条件下,在所有能级下,冲击后压缩强度和破坏应变值都有所提高。利用内部损伤的三维分布和电子显微镜分析以及断裂韧性分析来解释实验结果和相关机理。

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