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Adhesive Joints Between Carbon Fiber and Aluminum Foam Reinforced by Surface-Treated Aramid Fibers

机译:表面处理的芳纶纤维增强的碳纤维和铝泡沫之间的粘合接缝

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摘要

Short aramid fibers have been successfully used to reinforce the interface adhesive property between carbon fiber/epoxy composites and aluminum foam, and to form aramid-fiber composite adhesive joints. In this study, to further improve the reinforcing effect of the aramid-fiber-reinforced adhesive joints, aramid fibers were ultrasonic treated to conduct different surface conditions. Critical energy release rate of the carbon fiber/aluminum foam sandwich beams with as-received and treated interfacial aramid fibers were measured to study the influence of the surface treatment on aramid fibers. It was found that reinforcements in critical energy release rate were achieved for all samples with treated aramid fiber as measured under double cantilever beam condition. The interfacial characteristics of the short aramid fibers with different surface condition were investigated and discussed based on scanning electron microscopy observations. It is suggested that advanced bonding between aramid fibers and epoxy resin was conducted after surface treatment, and more energy was therefore absorbed through fiber bridging during crack opening and extension process. POLYM. COMPOS., 36:192-197, 2015. (c) 2014 Society of Plastics Engineers
机译:短的芳族聚酰胺纤维已成功用于增强碳纤维/环氧树脂复合材料与铝泡沫之间的界面粘合性能,并形成芳纶-纤维复合材料粘合接头。在这项研究中,为进一步提高芳纶纤维增强的粘合接头的增强效果,对芳纶纤维进行了超声波处理,使其具有不同的表面条件。测量并处理了界面芳纶纤维的碳纤维/铝泡沫夹层梁的临界能量释放速率,以研究表面处理对芳纶纤维的影响。发现在双悬臂梁条件下测量的所有经芳族聚酰胺纤维处理的样品均实现了临界能量释放速率的增强。基于扫描电子显微镜观察和讨论了不同表面条件下的短芳纶纤维的界面特性。建议在表面处理后进行芳族聚酰胺纤维和环氧树脂之间的高级粘结,因此在裂纹扩展和扩展过程中通过纤维桥接吸收更多的能量。 POLYM。 COMPOS。,36:192-197,2015.(c)2014年塑料工程师学会

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