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Materials, Methods & Technologies, Volume 9, 2015

AN ADAPTIVE NETWORK BASED FUZZY INFERENCE (ANFIS) MODEL TO PREDICT THE GLAZE COMPOSITIONS AND GLASSING VALUES IN CERAMIC GLAZE APPLICATIONS
Ugur Kut, Iskender Isik, Eyyup Gulbandilar
Strony: 291-297
Opublikowano: 31 May 2015
Wyświetlenia: 3,882
Pobrania: 830
Citations: 2 (Google Scholar)
Streszczenie: In this study, it is aimed to predict the glazing and appropriate glaze composition with computer software to reduce of the product costs during prototype production in the ceramic industry. Hence, formulas were prepared to use washed Uşak Kaolin, Minium and Quartz. Samples were prepared using these formulas and fired at deformation temperatures 950 and 1150 0C. An adaptive network based fuzzy inference (ANFIS) model to predict the glaze compositions and glassing values were chosen as output values while temperature, surface tension and expansion coefficient were chosen as input values. To this end, MatLab 2010 Toolbox package program was used in this study. A comparative evaluation of the predicted and experimental results has shown that ANFIS model has a high accuracy and absolute relative error is less than 17.39%. As a result of training, high performance was obtained between regression for glaze components R2=0.5301and R2=0.9984. Likewise, according to test results, high performance was obtained between regression for glassing R2=0.8167 and regressions for glaze components R2=0.9996 and 0.9986. Moreover, the ANFIS model was an easy and practical method to predict the glaze compositions and glassing values.
Słowa kluczowe: artificial neuronal network, an adaptive network based fuzzy inference, ceramic, chemical properties, glazing, glaze component
Cytowanie artykułu: Ugur Kut, Iskender Isik, Eyyup Gulbandilar. AN ADAPTIVE NETWORK BASED FUZZY INFERENCE (ANFIS) MODEL TO PREDICT THE GLAZE COMPOSITIONS AND GLASSING VALUES IN CERAMIC GLAZE APPLICATIONS. Journal of International Scientific Publications: Materials, Methods & Technologies 9, 291-297 (2015). https://www.scientific-publications.net/en/article/1000776/
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