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Metals 2015, 5(1), 371-382; doi:10.3390/met5010371

Formulation of the Effect of Different Alloying Elements on the Tensile Strength of the in situ Al-Mg2Si Composites

Technical Sciences, University of Gaziantep, 27310 Gaziantep, Turkey
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Author to whom correspondence should be addressed.
Academic Editor: Hugo F. Lopez
Received: 25 December 2014 / Revised: 2 March 2015 / Accepted: 5 March 2015 / Published: 11 March 2015
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Abstract

In this paper, the effect of different alloying elements on the ultimate tensile strength of Al-Mg2Si composites is theoretically studied. The feed forward back propagation neural network with sigmoid function is used. The extensive experimental results taken from literature are modeled and mathematical formula is presented in explicit form. In addition, it is observed that magnesium and copper have a stronger effect on the ultimate tensile strength of Al-Mg2Si composites comparison to other alloying elements. The proposed model shows good agreement with test results and can be used to find the ultimate tensile strength of Al-Mg2Si composites. View Full-Text
Keywords: Al-Mg2Si; composites; metal matrix composites; modeling Al-Mg2Si; composites; metal matrix composites; modeling
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This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. (CC BY 4.0).

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MDPI and ACS Style

Kurt, H.I.; Oduncuoglu, M. Formulation of the Effect of Different Alloying Elements on the Tensile Strength of the in situ Al-Mg2Si Composites. Metals 2015, 5, 371-382.

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