Structural Integrity and Reliability Analysis Open access Peer reviewed

Mechanical Behavior of Corroded Aluminum Tanks Repaired with Composite Patches: A Numerical Investigation and Experimental Stiffness Validation

Leila Belkaddour, Sidi Mohamed Medjdoub, Mostefa Hani, Ahmed Belaadi and 4 more

Journal of Natural Fibers | Jun 26, 2026

Abstract

Abstract

To enhance the structural durability of degraded metallic assets, this study investigates an advanced repair strategy for corroded aluminum tanks using composite patches. An epoxy matrix reinforced with four distinct fiber types high-performance synthetic (carbon, boron, glass) and eco-friendly natural (flax) is evaluated to balance mechanical restoration with environmental sustainability. The methodology relies on a combined numerical-experimental validation framework. Finite element analysis (FEA) is conducted via ABAQUS to comprehensively map Von Mises stress distributions within the repaired zone as a function of defect length, internal pressure, and three distinct defect orientations (longitudinal, transverse, and circumferential). In parallel, experimental tensile testing of repaired specimens is performed to assess the global mechanical response of the structure and to validate the effectiveness of the composite patching strategy under service-like loading conditions. The results reveal that corrosion orientation critically governs repair efficiency. Carbon/epoxy patches applied over circumferential defects yield the highest mechanical resilience, successfully restoring structural integrity. While the bio-based flax/epoxy patches exhibit lower absolute strength than their synthetic counterparts, they deliver substantial structural reinforcement. Ultimately, this validated framework provides a powerful tool to optimize composite patch repairs, paving the way for reliable, sustainable, and eco-friendly maintenance in industrial pressure vessel applications.

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Authors

Researchers on this paper

Leila Belkaddour

first | Ahmed Zabana University - Relizane | ORCID 0000-0003-0774-198X

Sidi Mohamed Medjdoub

middle | Université Djilali de Sidi Bel Abbès

Mostefa Hani

middle | University of Jijel | ORCID 0000-0002-1540-6113

Ahmed Belaadi

middle | University of Skikda

Ali Erçetin

middle | Korea University | ORCID 0000-0002-7631-1361

Yazid Chetbani

middle | Centre de Recherche sur l'Information Scientifique et Technique | ORCID 0009-0002-5877-2196

Adhya-Eddine Hamitouche

middle | Centre de Recherche sur l'Information Scientifique et Technique

Herbert Mukalazi

last | Kyambogo University | ORCID 0000-0001-9729-3943

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Citation

BibTeX

@article{Belkaddour2026Mechanical,
  title = {Mechanical Behavior of Corroded Aluminum Tanks Repaired with Composite Patches: A Numerical Investigation and Experimental Stiffness Validation},
  author = {Leila Belkaddour and Sidi Mohamed Medjdoub and Mostefa Hani and Ahmed Belaadi and Ali Erçetin and Yazid Chetbani and Adhya-Eddine Hamitouche and Herbert Mukalazi},
  journal = {Journal of Natural Fibers},
  year = {2026},
  doi = {10.1080/15440478.2026.2693252},
  url = {https://doi.org/10.1080/15440478.2026.2693252}
}

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