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Microstructure and mechanical property evolution of CFRP/Al electromagnetic riveted lap joint in a severe condition

机译:严重条件下CFRP / Al电磁铆接搭接接头的组织和力学性能演变

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This paper investigated the microstructure and mechanical property evolution of CFRP/Al electromagnetic riveted structures exposed at a neutral salt spray environment. Electrochemical tests, microstructure observations, weight measurements and mechanical property tests were conducted. The observed results showed that corrosion pits on Al sheet were mainly located at the edge of the overlapping area due to the galvanic and crevice corrosion. Beside, visible cracks were observed on the surface of CFRP sheets after 3 weeks ageing. Maximum pit depth and weight evolution showed that the corrosion rate after the ageing time of 1 week was the fastest. The reason was that the corrosion products existed in pit and clearance effectively prevented oxygen and water contacting with Al matrix, which led to a decrease in the subsequent corrosion rate. The mechanical property tests results showed that the maximum shear loads after the ageing time of 1 week dropped the quickest due to faster corrosion rate at this stage. In addition, at the ageing time of 1 to 7 weeks, the maximum shear load after the ageing time of 3 weeks decreased faster. This was due to the surface of CFRP sheet was obviously damaged after the ageing time of 3 weeks, which further reduced the joint strength. In general, this work is expected to deeply understand the corrosion characteristics of the CFRP/Al electromagnetic riveted joints in engineering application.
机译:本文研究了在中性盐雾环境下暴露的CFRP / Al电磁铆接结构的微观结构和力学性能演变。进行了电化学测试,微观结构观察,重量测量和机械性能测试。观察结果表明,由于电偶和缝隙腐蚀,铝片上的腐蚀点主要位于重叠区域的边缘。另外,老化3周后,在CFRP片材的表面观察到可见的裂缝。最大凹坑深度和重量演变表明,老化1周后的腐蚀速率最快。原因是腐蚀产物存在于坑中,间隙清除有效地阻止了氧气和水与Al基体接触,从而导致随后的腐蚀速率降低。力学性能测试结果表明,由于此阶段的腐蚀速度加快,老化1周后的最大剪切载荷下降最快。此外,在1到7周的老化时间下,老化3周后的最大剪切载荷下降得更快。这是由于CFRP板的表面在老化3周后明显受损,从而进一步降低了接头强度。总的来说,这项工作有望深入了解CFRP / Al电磁铆接接头在工程应用中的腐蚀特性。

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