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optimal composition in synthetic graphite (SG)–phenolic nanocomposites subjected to an in-plane heat flux. Several numerical and analytical studies have been devoted to transient thermal analysis to investigate the effect of main parameters in

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associated to higher reactivity. In this study, the decomposition kinetics of two carbonaceous materials: petroleum coke and synthetic graphite, added to a mold flux is studied. Thermogravimetric (TG) analysis was carried out at different heating

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matrix to form the pebbles. Both natural and synthetic graphite powders are used as fillers in the matrix. This study represents a small step towards developing an understanding of the factors controlling the oxidation kinetics of typical graphite

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) The raw material was synthetic graphite powder (Sigma Aldrich, <20 μm, Synthetic). The graphite was milled in a high efficient attritor mill (Union Process, type 01-HD/HDDM) equipped with zirconia discs and grinding media (diameter of 1 mm) in a 750-mL

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