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Acoustic emission characterization of local bending behavior for adhesively bonded hybrid external patch repaired glass/epoxy composite laminates

机译:粘合混合外部贴片修复的玻璃/环氧树脂复合层压板的局部弯曲行为的声发射表征

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This article investigates the influence of homogeneous and hybrid external patches based on glass and Kevlar plain weave woven fabrics on local bending response of adhesively bonded external patch repairs in damaged glass/epoxy composite laminates. The intent of using hybrid external patches was to combine the excellent high displacement to failure property of Kevlar fiber as a ductile reinforcement with the superior mechanical property of glass fiber as a brittle reinforcement. The undamaged normal specimens were taken as the standard specimen for evaluation of residual mechanical properties. In all hybrid patches, the proportion of Kevlar and glass fibers was equal (i.e. 50% of Kevlar and 50% of glass by volume fraction), while lay-up configurations were different. This further allowed studying the associated effects of hybridization and lay-up configuration on local bending response of the repaired laminates. All the specimens were subjected to cyclic quasi-static indentation tests with a step loading method. The indentation tests have also been monitored in real time by acoustic emission system. The acoustic emission results illustrated various damage profiles and correlates with the mechanical test results to point out the load to a transformation in damage mechanisms during indentation loading with respect to the effect of each patch material on the performance of the repaired glass/epoxy specimens. Results showed that hybridization and lay-up configurations of the external patches played a significant role on local bending response (i.e. ultimate load, stiffness, residual deformation, displacement to failure, and damage pattern) of the repaired glass/epoxy specimens. Specimens repaired using intra-ply hybrid patches showed the best local bending response.
机译:本文研究了基于玻璃和凯夫拉平纹机织织物的均质和混合外部贴剂对受损的玻璃/环氧树脂复合层压板中粘结的外部贴剂修补物的局部弯曲响应的影响。使用混合外部贴剂的目的是将凯夫拉尔纤维作为延性增强材料的出色的高位移破坏性能与玻璃纤维作为脆性增强材料的优异机械性能相结合。将未损坏的正常样品作为评估残余机械性能的标准样品。在所有混合贴片中,凯夫拉纤维和玻璃纤维的比例相等(即按体积分数计为50%的凯夫拉纤维和50%的玻璃),而铺层构造则有所不同。这进一步允许研究杂交和铺层构型对修复的层压材料的局部弯曲响应的相关影响。所有样品均采用阶梯加载法进行了循环准静态压痕测试。压痕测试也已通过声发射系统实时监控。声发射结果说明了各种损伤情况,并与机械测试结果相关,以指出在压痕加载过程中损伤机理相对于每种贴剂材料对修复的玻璃/环氧树脂样品性能的影响的转变。结果表明,外部贴片的杂交和叠层构型在修复的玻璃/环氧树脂样品的局部弯曲响应(即极限载荷,刚度,残余变形,破坏位移和破坏模式)中起着重要作用。使用层内混合贴片修复的标本显示出最佳的局部弯曲响应。

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