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Durability and mechanical behavior of CFRP/Al structural joints in accelerated cyclic corrosion environments

机译:CFRP / Al结构关节在加速环状腐蚀环境中的耐久性和力学行为

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摘要

This study aims to evaluate detailed corrosion characteristics and mechanical performance of CFRP/Al bonded and hybrid bonded-riveted joints subjected to cyclic salt mist-dry-wet environments. Results indicated that joint strength of both bonded and hybrid joints progressively declined with increased ageing cycles with up to 40.4% and 31.9% degradation, respectively. Compared with purely bonded joints, hybrid joints presented superior mechanical properties and less degradation rate. Light fiber tearing failure and cohesive failure predominated for less aged joints, while more apparent interface failure and accumulated corrosion products were observed at higher ageing cycles. The main corrosion mechanism was the pitting corrosion on the aluminum substrate surface, which further led to the formation of accumulated corrosion products and disbonding of the aluminum/ adhesive interface. Rivet body of hybrid joints remained pristine and rivet heads experienced severe galvanic corrosion, while these corrosion features generated limited impact on joint performance.
机译:本研究旨在评估CFRP / Al键合和杂交键合的关节的详细腐蚀特性和机械性能,所述含有环盐雾雾化环境的CFRP / Al键合和杂交键合的关节。结果表明,粘结和杂合关节的关节强度逐渐下降,随着增长的循环增加,分别增加了40.4%和31.9%的降解。与纯净的关节相比,杂交接头呈现出优异的机械性能和降低的降解速率。光纤撕裂衰竭和粘性故障占较低老化的关节,而在较高老化循环中观察到更明显的界面故障和累积的腐蚀产物。主要腐蚀机制是铝基板表面上的蚀腐蚀,其进一步导致形成累积的腐蚀产物和铝/粘合剂界面的脱屑。混合接头的铆钉体保持原始,铆钉头部经历了严重的电抗腐蚀,而这些腐蚀功能对联合性能产生有限的影响。

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