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Prediction of the tensile properties of ultrafine grained Al-SiC nanocomposites using machine Learning
Faculty
Engineering
Year:
2023
Type of Publication:
ZU Hosted
Pages:
17
Authors:
Abdallah Mahmoud Bayoumi Kabel
Staff Zu Site
Abstract In Staff Site
Journal:
Journal of Materials Research and Technology Elsevier
Volume:
24
Keywords :
Prediction , , tensile properties , ultrafine grained Al-SiC
Abstract:
We discovered and analyzed the new prediction model by using machine learning (ML) for the tensile strength of aluminum nanocomposites reinforced with µ-SiC particles fabricated by accumulative roll bonding (ARB). The effect of the number of cycles and SiC content on the microstructure, phase analysis, tensile, and hardness properties have been investigated for the ARBed sheets and their composites. The experimental results showed the distribution of SiC particles improved by increasing ARB passes. The ARB approach greatly enhanced the ultimate tensile strength (UTS), yield strength (YS), and hardness. The UTS achieved was 254 MPa for 4% SiC after 9 ARB cycles. The hardness values of the ARBed AA1050, and AA1050-4 wt% SiC are 60, and 76.5, respectively, after 9 ARB cycles. The modified version of random vector functional link based on Growth Optimizer Algorithm is developed as a machine-learning model to predict the tensile properties of the produced composites. The efficiency of the developed ML model is evaluated with other methods according to the performance criteria.
Author Related Publications
Abdallah Mahmoud Bayoumi Kabel, "Net-tension strength of double-lap joints under bearing-bypass loading conditions using the cohesive zone model", Elsevier, 2015
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Abdallah Mahmoud Bayoumi Kabel, "Optimum design of laminated composite plates under dynamic excitation", Elsevier, 2012
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Abdallah Mahmoud Bayoumi Kabel, "Effect of loading and lamination parameters on the optimum design of laminated plates", Springer, 2011
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Abdallah Mahmoud Bayoumi Kabel, "Net-tension strength of double lap joints taking into account the material cohesive law", ScienceDirect, 2014
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Abdallah Mahmoud Bayoumi Kabel, "Nominal strength of quasi-brittle open hole specimens under biaxial loading conditions", SciVerse ScienceDirect, 2013
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Department Related Publications
Soliman Soliman Soliman Alieldien, "A first-order shear deformation finite element model for elastostatic analysis of laminated composite plates and the equivalent functionally graded plates", Ain Shams Engineering Journal, 2011
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Soliman Soliman Soliman Alieldien, "Size-dependent analysis of functionally graded ultra-thin films", Structural Engineering and Mechanics, Vol. 44, No. 4 (2012) 431-448, 2012
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Soliman Soliman Soliman Alieldien, "Bending Analysis of Ultra-thin Functionally Graded Mindlin Plates Incorporating Surface Energy Effects", International Journal of Mechanical Sciences, 2013
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Soliman Soliman Soliman Alieldien, "Finite element analysis of functionally graded nano-scale films", Finite Elements in Analysis and Design, 2013
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Soliman Soliman Soliman Alieldien, "Finite Element Analysis of the Deformation of Functionally Graded Plates under Thermomechanical Loads", Mathematical Problems in Engineering, 2013
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