Experimental and numerical investigation of fatigue crack growth in aluminum plates repaired by FML composite patch

Author:

Rahmani Kalestan M.,Moayeri Kashani H.,Pourkamali Anaraki A.,Ashena Ghasemi F.

Abstract

Purpose – The purpose of this paper is to use the fiber metal laminates (FML) composites as a patch for repairing a single notched specimen made of AL1035 aluminum alloy. The FML composite patch was bonded on one side of the cracked specimens by adhesive Araldite 2015. Then the fatigue crack growth tests were conducted on the specimens and the effects of both FML patch lay-up sequence and pre-crack angle on the fatigue life were investigated. Finally, the effect of repairing on the fracture parameters (SIF and crack propagation direction) at the crack front has also been calculated using three-dimensional finite element analysis. Design/methodology/approach – The fatigue crack growth tests were conducted on the specimens and the effects of both FML patch lay-up sequence and pre-crack angle on the fatigue life were investigated. Findings – The results show that the fatigue life of the patched specimens with inclined crack increased approximately 2-6.02 times compared to the un-patched specimens. In addition, the fatigue crack growth rate decreased significantly when the patch was used. Generally, the FML patch with Plate-Fiber-Fiber-AL lay-up has more efficiency than other lay-up sequences. Originality/value – Recently, composite patches are used in the structure repair processes to increase the service life of cracked components. The bonded patch method is one of the efficient methods among repairing methods. Today, the FMLs are used in the aircraft structures as a replacement of high-strength aluminum alloys due to their lightweight and high-strength properties. Many researches have been performed on single and double side repaired panels using composite patches. In this study, the FML composites have been used as a patch for repairing a single notched specimen made of AL1035 aluminum alloy.

Publisher

Emerald

Subject

Mechanical Engineering,Mechanics of Materials,Civil and Structural Engineering

Reference22 articles.

1. Alderliesten, R.C. (2001), Chapter 11 in Fibre Metal Laminates: An Introduction, Kluwer Academic Publishers, Dordrecht.

2. ASTM D 2651 (2001), ASTM Standard Guide for Preparation of Metal Surfaces for Adhesive Bonding, American Society for Testing Material (ASTM), West Consnohocken, PA.

3. ASTM E 8M-09 (2010), ASTM standard Test Methods for Tension Testing of Metallic Materials, ASTM.

4. Ayatollahi, M.R. and Hashemi, R. (2007), “Mixed mode fracture in an inclined centre crack repaired by composite patching”, Composite Structures, Vol. 81 No. 2, pp. 264-273.

5. Baker, A. (1999), “Bonded composite repair of fatigue-cracked primary aircraft structure”, Composite Structures, Vol. 47 Nos 1/4, pp. 431-443.

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Towards hybridization of composite patch in repair of cracked Aluminum panel;International Journal of Structural Integrity;2019-12-02

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