首页> 外文期刊>International Journal of Modern Physics: Conference Series >STUDIES ON VARIOUS FUNCTIONAL PROPERTIES OF TITANIA THIN FILM DEVELOPED ON GLAZED CERAMIC WALL TILES
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STUDIES ON VARIOUS FUNCTIONAL PROPERTIES OF TITANIA THIN FILM DEVELOPED ON GLAZED CERAMIC WALL TILES

机译:釉面陶瓷墙砖上二氧化钛薄膜的各种功能特性研究

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A sol-gel based TiO_(2) thin film was applied on glazed wall tiles for studying its various functional properties. Thin film was deposited by spin coating on the substrate and subjected to curing at different temperatures such as 600°C, 650, 700°C, 750°C and 800°C with 10 minutes soaking. The gel powder was characterized by FTIR, DTA/TG and XRD. Microstructure of thin film was analyzed by FESEM and EDX. Surface properties of the coatings such as gloss, colour difference, stain resistance, mineral hardness and wettability were extensively studied. The antibacterial activity of the surface of coated substrate against E. coli was also examined. The durability of the coated substrate in comparison to the uncoated was tested against alkali in accordance with ISO: 10545 (Part 13):1995 standard. FESEM images showed that thin films are dense and homogeneous. Coated substrates after firing results in lustre with high gloss, which increased from 330 to 420 GU as the curing temperature increases compared to that of uncoated one (72 GU). Coated substrate cured at 800°C shows higher mineral hardness (5 Mohs’) compared to uncoated one (4 Mohs’) and films cured at all temperatures showed stain resistance. The experimental results showed that the resistance towards alkali attack increase with increase in curing temperature and alkali resistance of sample cured at 800 °C was found to be superior compared to uncoated substrate. Contact angle of water on coated surface of substrates decreased with increase in temperature. Bacterial reduction percentages of the coated surface was 97% for sample cured at 700°C and it decreased from 97% to 87% as the curing temperature increased to 800 °C when treated with E. coli bacteria.
机译:基于溶胶-凝胶的TiO_(2)薄膜应用于釉面墙地砖,以研究其各种功能特性。通过旋涂将薄膜沉积在基板上,并在不同的温度(例如600°C,650°C,700°C,750°C和800°C)下进行10分钟浸泡固化。通过FTIR,DTA / TG和XRD对凝胶粉末进行表征。通过FESEM和EDX分析薄膜的微观结构。广泛研究了涂料的表面性能,例如光泽,色差,耐污性,矿物硬度和润湿性。还检查了涂覆底物表面对大肠杆菌的抗菌活性。根据ISO:10545(第13部分):1995标准,相对于未涂覆的基材,经涂覆的基材的耐久性针对碱进行了测试。 FESEM图像显示薄膜致密且均匀。焙烧后的涂层基材产生高光泽的光泽,与未涂层的基材(72 GU)相比,随着固化温度的升高,光泽度从330 GU增加到420 GU。与未涂覆的基材(4 Mohs)相比,在800°C下固化的涂覆基材显示出更高的矿物硬度(5 Mohs'),并且在所有温度下固化的薄膜均具有耐污染性。实验结果表明,随着固化温度的升高,耐碱侵蚀性增强,并且在800°C下固化的样品的耐碱性优于未涂层的基材。水在基材涂层表面的接触角随温度升高而降低。对于经700°C固化的样品,其涂层表面的细菌减少率为97%,当用大肠杆菌进行处理时,随着固化温度升高至800°C,涂层表面的细菌减少率从97%降低至87%。

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