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Pyroplastic deformation of porcelain stoneware tiles: Wet vs. dry processing
Affiliation:1. LaRC, Laboratório de Revestimentos Cerâmicos, Departamento de Engenharia de Materiais, Universidade Federal de São Carlos, São Carlos, SP, Brazil;2. CRC, Centro de Revestimentos Cerâmicos, São Carlos, SP, Brazil;3. CNR-ISTEC, Istituto di Scienza e Tecnologia dei Materiali Ceramici, Faenza, Italy;1. Department of Materials, Royal School of Mines, Imperial College London, SW7 2AZ, UK;2. Centre for Nuclear Engineering, Department of Materials, Imperial College London, SW7 2AZ, UK;1. Department of Earth Sciences “Ardito Desio”, University of Milan, Via Botticelli 23, 20133 Milan, Italy;2. National Research Council, IDPA, Section of Milan, Via Botticelli 23, I-20133 Milan, Italy;3. Department of Earth Sciences, University of Turin, Via Valperga-Caluso 35, 10125 Turin, Italy;4. Ideal Standard International, C.O.E., Ceramic Process Technology, Via Cavassico Inferiore 160, I-32026 Trichiana, BL, Italy;1. Department of Earth Science, University of Milan, Via Botticelli 23, 20133 Milano, Italy;2. National Research Council, IDPA, Section of Milan, Via Botticelli 23, 20133 Milan, Italy;3. Ideal Standard International, C.O.E., Ceramic Process Technology, Via Cavassico Inferiore 160, 32026 Trichiana, BL, Italy;4. ex-SIBELCO, Group Central Laboratory, Moneystone Quarry, Whiston, Stoke-on-Trent ST10 2DZ, United Kingdom;1. Department of Engineering “Enzo Ferrari”, University of Modena and Reggio Emilia, Via Pietro Vivarelli 10, 41125, Modena, Italy;2. Colorobbia Italia S.P.A., Via Pietramarina 53, 50053, Sovigliana, Vinci, Florence, Italy;1. Instituto de Tecnología Cerámica (ITC), Universitat Jaume I, 12071, Castellón, Spain;2. GEA CERAMICA S.L., Castellón, Spain;3. Kaleseramik Canakkale Kalebodur, Çan, Turkey
Abstract:Several batches of porcelain stoneware were formulated by partial replacement of coarse Na and Na-K feldspars (standard batch) with quartz in two different grain sizes, micronized K-feldspar or a mixture of these components. Everyone was processed (laboratory scale) by wet and dry routes to compare: sintering curve, microstructure, phase composition and viscosity of the liquid phase at high temperature. Pyroplasticity index was determined by 3-point bending test. Results indicate that finer the quartz particles, more they dissolved in liquid phase, increasing viscosity and reducing deformation. Micronized K-feldspar increased the sintering kinetics (causing deformation). However, when K-feldspar was combined with quartz, densification rate was improved without compromising integrity of tile. About dry route, microstructural heterogeneity turned as fundamental to prevent Pyroplastic deformation. As conclusion, pyroplastic deformation occurs by different mechanisms in samples prepared by the two processing routes and bodies prepared via dry route are less likely to undergo pyroplastic deformation.
Keywords:Pyroplastic deformation  Porcelain stoneware tiles  Vitreous phase
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