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Avoidance of fabricational thermal residual stresses in co-cure bonded metal-composite hybrid structures

机译:避免共固化粘结金属-复合杂化结构中的制造热残余应力

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摘要

In this work,a smart cure cycle with cooling,polymerization and reheating was devised to nearly completely eliminate thermal residual stresses in the bonding layer of the co-cure bonded hybrid structure.In situ dielectrometry cure monitoring,DSC experiments and rheometric measurements were performed to investigate the physical state and the cure kinetics of the neat epoxy resin in the carbon fiber/epoxy composite materials.From the experimental results,an optimal cooling point in the cure cycle was obtained.Also,process parameters such as cooling rate,polymerization temperature and polymerization time in the curing process were investigated.Then,the thermal residual stresses were estimated by measuring the curvatures of co-cure bonded steel/composite strips and their effects on the static lap-shear strengths of co-cure bonded steel/composite lap joints were measured.Also,the effects of thermal residual stresses on the tensile strength,the interlaminar shear strength and the interlaminar fracture toughness of the composite material itself were measured using tensile,short beam shear and double cantilever beam tests.From these results,it was found that the smart cure cycle with cooling,polymerization and reheating eliminated the thermal residual stresses completely and improved the interfacial strength of the co-cure bonded hybrid structures,as well as the tensile strength of the composite structures.
机译:在这项工作中,设计了一个具有冷却,聚合和再加热的智能固化循环,以几乎完全消除共固化键合杂化结构键合层中的热残余应力。在原位介电法固化监测,DSC实验和流变测量中研究了纯净环氧树脂在碳纤维/环氧树脂复合材料中的物理状态和固化动力学。根据实验结果,获得了固化周期中的最佳冷却点。此外,工艺参数如冷却速率,聚合温度和研究了固化过程中的聚合时间。然后,通过测量共固化粘结钢/复合带的曲率及其对共固化粘结钢/复合搭接接头的静态搭接剪切强度的影响,估算了残余热应力。还测量了残余热应力对拉伸强度,层间剪切强度和层间强度的影响。通过拉伸,短梁剪切和双悬臂梁测试来测量复合材料本身的断裂韧性。从这些结果可以看出,具有冷却,聚合和再加热的智能固化循环完全消除了热残余应力并改善了界面共固化粘合混合结构的强度以及复合结构的拉伸强度。

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