Porcelain Stoneware Slabs: An Investigation into Pyroplastic Deformation in New Body Formulations Containing Waste Glasses

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Abstract

The ceramics industry has consistently applied circular economy principles by efficiently reusing and recovering raw materials in the production process. Incorporating secondary raw materials, such as production scraps and recycled materials, reduces costs and improves sustainability. In the ceramics sector, raw materials like feldspars can be substituted with secondary raw materials from other production processes, particularly glass-based ones. This study selected waste glass, such as bottle glass or glass fiber processing scraps, to investigate its performance in a porcelain stoneware slab mixture. The behavior of this mixture was compared to a traditional porcelain stoneware mixture and a mixture containing a glass-ceramic frit, which exhibits significantly different behavior from waste glass. The study involved a comprehensive characterization of the fired samples, with a specific focus on addressing pyroplastic deformation—an issue that occurs in large slabs during the firing process. Although pyroplastic deformation has been extensively studied in the past using various waste glasses, this research work uniquely employed waste glass fiber and glass-ceramic material to mitigate pyroplastic deformation compared to the more commonly studied waste soda–lime glass. The pyroplastic deformation tests were conducted using an instrument from Expert Lab Service-MDF.

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Sgarlata, C., Varghese, L., Ferrari, F., Venturelli, D., & Siligardi, C. (2025). Porcelain Stoneware Slabs: An Investigation into Pyroplastic Deformation in New Body Formulations Containing Waste Glasses. Ceramics, 8(1). https://doi.org/10.3390/ceramics8010005

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