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Fracture analysis of Kevlar-49/epoxy and e-glass/epoxy doublers for reinforcement of cracked aluminum plates

机译:Kevlar-49 /环氧树脂和电子玻璃/环氧树脂加倍物裂缝铝板加固裂缝分析

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摘要

Adhesively bonded composite patch repair is an efficient means to regain load carrying capacity, alleviate the crack growth, and improve the service life of the damaged structure. In this paper, three dimensional finite element models are developed to ex­amine the fracture behavior of a single edge V-notched Aluminum plate repaired with Kevlar-49/epoxy or e-glass/epoxy pre-preg patches on both sides. Contour integral method was used for evaluating the stress intensity factor (SIF), an indicator of the crack stability. The load transfer mechanisms, stress distribution, damage variable (D), and crack mouth opening displacement (CMOD), were also presented to estimate the effectiveness of composite patch repair. The influence of the patch material, crack length and the adhesive thickness has been investigated. Results have shown that the crack induced damage increased nonlin­early with a larger crack size. With the composite patch repairs, SIF is reduced to 1/7–1/10 of that of the bare plate and CMOD decreased by 79%. The damage variable is reduced significantly and the load capacity is increased. A thinner adhesive layer re­sults in a higher percentage of load shared by the composite patch.
机译:胶粘复合材料修补程序是重新获得承载能力,减轻裂纹扩展并提高受损结构使用寿命的有效手段。在本文中,建立了三维有限元模型,以检查用Kevlar-49 /环氧树脂或电子玻璃/环氧树脂预浸料修补的单边V型缺口铝板的断裂行为。轮廓积分法用于评估应力强度因子(SIF),该强度因子是裂纹稳定性的指标。还提出了载荷传递机制,应力分布,损伤变量(D)和裂口张开位移(CMOD),以评估复合材料修补的有效性。已经研究了贴剂材料,裂缝长度和粘合剂厚度的影响。结果表明,裂纹引起的损伤随着裂纹尺寸的增大而非线性增加。通过修复复合补丁,SIF降低到裸板的1 / 7–1 / 10,CMOD降低79%。损坏变量明显减少,负载能力增加。较薄的粘合剂层导致复合贴片分担的负载百分比更高。

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