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Effect of patch hybridization on the compression behavior of patch repaired glass/epoxy composite laminates using acoustic emission monitoring

机译:用声发射监测对贴片杂交对贴片修复玻璃/环氧复合层压板压缩行为的影响

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This article investigates the compressive response of damaged glass/epoxy composite laminates repaired using hybrid external patches. Hybrid external patches based on glass and Kevlar woven fabrics bonded on both faces of the damaged parent laminate were considered. Five different kinds of plain weave woven fabrics with a different ratio between glass and Kevlar fibers (100/0, 75/25, 50/50, 25/75, and 0/100) were used as the external patches. The intention of using these hybrid patches is to build up a patch of optimum stiffness that facilitate to restrict the critical adhesive or cohesive failure on the joints unlike high stiff glass fibers or extensive fiber micro-buckling of the external patches unlike low stiff Kevlar fibers under compression loading and consequently to produce repaired laminates with a strain to failure and residual strength nearly close or similar as that of virgin or normal components. The virgin and damaged specimens were taken as the reference specimens for comparison of residual mechanical properties and damage mechanisms. Damage evolution and the failure progression of the repaired glass/epoxy specimens were monitored using real-time Acoustic Emission (AE) monitoring technique. Specimens repaired with the equal volume fraction of glass and Kevlar fibers in the external patches presented the most favorable residual compressive response by effectively releasing the stress concentration in the damaged area. POLYM. COMPOS., 39:1922-1935, 2018. (c) 2016 Society of Plastics Engineers
机译:本文研究了使用杂种外部贴片修复的受损玻璃/环氧复合层压板的压缩响应。考虑了基于玻璃和kevlar织物的混合外部贴片在损坏的母体层压板的两张面上粘合。使用玻璃和凯夫拉纤维(100/0,75 / 25,50 / 50,25 / 75和0/100)之间具有不同比例的五种不同类型的普通编织织物用作外部贴片。使用这些混合贴片的意图是建立一个最佳刚度的曲线,便于限制关节上的关键粘合剂或内聚失效,与外部贴片的高僵硬的玻璃纤维或广泛的纤维微屈曲不同于低僵硬的kevlar纤维压缩负荷,因此产生具有菌株的修复的层压板,与原始或正常成分的菌株和残余强度几乎关闭或类似。作为参考标本作为剩余机械性能和损伤机制的参考标本作为参考标本。使用实时声发射(AE)监测技术监测修复玻璃/环氧树脂标本的损伤演化和故障进展。通过有效地释放受损区域中的应力浓度,在外部贴片中修复的标本和外部贴片中的玻璃和Kevlar纤维修复的标本呈现最有利的残余压缩响应。聚合物。 Compos。,39:1922-1935,2018。(c)2016年塑料工程师协会

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