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Investigation of Indentation Fracture Toughness (KIC) and Weibull Parameters of 0.25Li2O.2SiO2-0.75BaO.2SiO2 Glass-Ceramic

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Gökçe, Hasan
Dr.
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Öveçoğlu, Mustafa Lutfi
Prof. Dr.

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Walter de Gruyter GmbH

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AbstractIn the present study, mechanical properties of 0.25Li2O.2SiO2-0.75BaO.2SiO2glass-ceramic were investigated. The trans-formations‘ temperatures were determined by DTA instrument. The optimum nucleation temperature was found to be 540°C. This suggested the crystallization temperatures as 675, 720 and 800°C. After carrying out crystallization heat treatments, Vickers indentation test was applied. In order to determine the indentation fracture toughness (KIC), crack half-length ‚c‘ of the samples was measured. To calculateKIC, Young’s modulus,Eand the measured hardness,Hvwere used. UsingKICand probability of fracture ‚P‘, ln ln[1/(1 −P)] – lnKICgraph was drawn based on the Weibull distribution equation. Consequently, Weibull modulus, ‚m‘ and scale parameter, ‚K0‘ were determined and compared with each other.

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Archives of Metallurgy and Materials

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OPEN

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Mining engineering. Metallurgy, Lithium barium silicate glass-ceramic, P2O5, TN1-997, MECHANICAL-PROPERTIES, Indentation Fracture Toughness, Statistical Analysis, Weibull modulus, Hardness, Strength, TA401-492, Crystallization, Microstructure, Materials of engineering and construction. Mechanics of materials, System

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