Study of the Behavior of the AL 2017-A Aluminium Plate Corroded and with Horizontal Cracks Treated by the Technique of Composite Materials

IF 1.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Materials Science Pub Date : 2023-06-01 DOI:10.2478/adms-2023-0008
Berrahou Mohamed, B. Hayet
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Abstract

Abstract This work presents a comprehensive study consisting of two aspects: a numerical analytical aspect and a laboratory experimental aspect. The numerical study was a three-dimensional finite element numerical analysis of performance of corroded and horizontally cracked aluminium plates, which were repaired by composite patching. The effect of the composite types on the variance of the damaged area of the adhesive (FM-73) and their efficiency on the stress intensity factor were studied. In the experimental study, corroded aluminium plates were prepared and repaired them using technology of the composite. The results showed that the panels that were repaired with composite (boron/epoxy) give values of stress intensity factor (KI) and damaged area ratio (DR) less than the other two studied composites (glass/epoxy and graphite/epoxy), and increase the ultimate strength of plates damage, and this leads to the conclusion that (Boron/epoxy) increases the performance and durability of (Al 2017-A) plates.
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复合材料技术处理AL - 2017-A铝板腐蚀及水平裂纹行为研究
这项工作提出了一个全面的研究,包括两个方面:一个数值分析方面和实验室实验方面。采用三维有限元数值分析方法,对腐蚀和水平裂纹铝板进行了复合修补修复。研究了复合材料类型对胶粘剂(FM-73)损伤面积变化的影响及其对应力强度因子的影响。在试验研究中,采用复合材料技术对腐蚀铝板进行了制备和修复。结果表明:复合材料(硼/环氧树脂)修复后面板的应力强度因子(KI)和损伤面积比(DR)均小于其他两种复合材料(玻璃/环氧树脂和石墨/环氧树脂),并提高了板的损伤极限强度,从而得出(硼/环氧树脂)提高了(Al - 2017-A)板的性能和耐久性的结论。
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Advances in Materials Science
Advances in Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
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