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Information Journal Paper

Title

DOUBLE CRACKS IDENTIFICATION IN FUNCTIONALLY GRADED BEAMS USING ARTIFICIAL NEURAL NETWORK

Pages

  14-21

Abstract

 This study presents a new procedure based on ARTIFICIAL NEURAL NETWORK (ANN) for identification of DOUBLE CRACKS in FUNCTIONALLY GRADED BEAMs (FGBs). A cantilever beam is modeled using Finite Element Method (FEM) for analyzing a double-cracked FGB and evaluation of its first four natural frequencies for different cracks depths and locations. The obtained FEM results are verified against available references. Furthermore, four Multi-Layer Perceptron (MLP) neural networks are employed for identification of locations and depths of both cracks of FGB. Back-Error Propagation (BEP) method is used to train the ANNs. The accuracy of predicted results shows that the proposed procedure is suitable for DOUBLE CRACKS identification detection in FGBs.

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  • Cite

    APA: Copy

    NAZARI, F., & ABOLBASHARI, M.H.. (2013). DOUBLE CRACKS IDENTIFICATION IN FUNCTIONALLY GRADED BEAMS USING ARTIFICIAL NEURAL NETWORK. JOURNAL OF SOLID MECHANICS, 5(1), 14-21. SID. https://sid.ir/paper/319297/en

    Vancouver: Copy

    NAZARI F., ABOLBASHARI M.H.. DOUBLE CRACKS IDENTIFICATION IN FUNCTIONALLY GRADED BEAMS USING ARTIFICIAL NEURAL NETWORK. JOURNAL OF SOLID MECHANICS[Internet]. 2013;5(1):14-21. Available from: https://sid.ir/paper/319297/en

    IEEE: Copy

    F. NAZARI, and M.H. ABOLBASHARI, “DOUBLE CRACKS IDENTIFICATION IN FUNCTIONALLY GRADED BEAMS USING ARTIFICIAL NEURAL NETWORK,” JOURNAL OF SOLID MECHANICS, vol. 5, no. 1, pp. 14–21, 2013, [Online]. Available: https://sid.ir/paper/319297/en

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