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Corrosion behavior of metal-composite hybrid joints: Influence of precipitation state and bonding zones

机译:金属复合混合接头的腐蚀行为:沉淀状态和结合区的影响

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The corrosion behavior of AA2024-T3/carbon-fiber-reinforced polyphenylene sulfide joints was investigated. The joints were exposed to salt spray from one to six weeks. The residual strength of these joints was assessed using lap shear test. The corroded surfaces and interfaces were analyzed using small angle X-ray scattering, scanning electron microscopy, and energy dispersive spectroscopy. Regarding the top surface of the joints, the aluminum part corroded preferably in the heat-affected zone (HAZ). It was demonstrated that the HAZ is more susceptible to corrosion than the stir zone (SZ) due to the anodic sites formed by coarse intermetallic particles and S'(S) phase precipitation. Besides, the macro-galvanic coupling between the zones may also potentialize the corrosion in HAZ as the base material and SZ displayed a lower volume fraction of S'(S) than HAZ. In addition, the corrosion at the interface of the joints was evaluated. Four different stages in the development of corrosion at the interface were identified. At Stage I, the joints showed fast strength degradation (0% to -24% of ultimate lap shear force (ULSF) due to water absorption and NaCl migration into the composite. At Stage II, the strength degradation of the joints was stalled (-24% to -28% of ULSF) due to the protection provided to the bonding area by the reconsolidated layer of polymer at the borders of the joint. The polymeric layer acted as a protective coating on the aluminum surface. At Stage In, the corrosion overcame the polymeric layer by reaching the bonding area of the joint. As a result, the strength of the joints rapidly degraded from -28% to -44% of ULSF. Finally, at Stage IV, one expects generalized corrosion in the bonding area, leading to the final strength degradation of the joint.
机译:研究了AA2024-T3 /碳纤维增强聚苯硫醚接头的腐蚀行为。将关节​​暴露于盐雾中1至6周。使用搭接剪切试验评估这些接头的残余强度。使用小角度X射线散射,扫描电子显微镜和能量色散光谱分析腐蚀的表面和界面。关于接头的顶表面,铝部分优选在热影响区(HAZ)中腐蚀。结果表明,由于粗金属间颗粒和S'(S)相形成的阳极部位,热影响区比搅拌区(SZ)更容易受到腐蚀。此外,区域之间的宏电耦合也可能会使热影响区中的腐蚀成为基础材料,而SZ的S'(S)体积分数低于HAZ。另外,评估了接头界面处的腐蚀。在界面腐蚀发生的四个不同阶段被确定。在第一阶段,由于吸水和NaCl迁移到复合材料中,接头显示出快速的强度退化(极限搭接剪切力(ULSF)的0%到-24%)。在第二阶段,接头的强度退化停滞了(-由于在接缝边界处的聚合物再固结层提供了对粘合区域的保护,因此该聚合物层在铝表面上起到了保护涂层的作用。通过到达接缝的粘结区域克服了聚合物层,结果,接缝的强度从ULSF的-28%迅速降低到-44%。最后,在第IV阶段,人们期望粘结区域出现普遍腐蚀,导致接头的最终强度降低。

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