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The role of viscosity on microstructure development and stain resistance in porcelain stoneware tiles

机译:黏度对陶土瓷砖微结构发展和耐污性的作用

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摘要

Effect of composition on viscosity of porcelain stoneware tiles and role of the viscosity on microstructure development and stain resistance in porcelain stoneware tiles were investigated. The viscosity of the tiles was successfully measured by a thermomechanical analyzer. Na_2O/K_2O ratio was used as a parameter to change the viscosity. As the Na_2O/K_2O ratio increases, the viscosity decreases. This reduction in the viscosity results in improvement of icrostructure (i.e., spherical pore morphology and reduced closed porosity) and usually increases the stain resistance significantly. However, too low viscosity may also cause deformation of the tile during production. Therefore, the viscosity of the tiles should be carefully controlled and it should lie between a lower limit (in this study this value is between 10~(7.93) and~10~(8.35) P) and an upper limit (in this study this value is 10~(8.67) P) to achieve high stain resistant porcelain tiles with no deformation.
机译:研究了组成对陶土瓷砖粘度的影响以及粘度对陶土瓷砖微结构发展和耐污性的作用。用热机械分析仪成功地测量了砖的粘度。以Na_2O / K_2O比作为改变粘度的参数。随着Na_2O / K_2O比的增加,粘度降低。粘度的这种降低导致微结构的改善(即,球形孔形态和降低的闭孔率),并且通常显着提高了耐污性。但是,太低的粘度也会在生产过程中引起瓷砖变形。因此,应仔细控制瓷砖的粘度,其粘度应介于下限(本研究中该值介于10〜(7.93)和〜10〜(8.35)P之间)和上限(本研究中值为10〜(8.67)P),以获得高抗污性瓷砖,且不变形。

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