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Mechanical and optical properties of clay-based nanocomposites coatings for wood flooring

机译:用于木地板的粘土基纳米复合涂料的机械和光学性能

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摘要

Clay-based nanocomposites coatings cured by UV light were prepared by four different types of dispersion equipment: a high-speed mixer, a ball mill, a bead mill and a three-roll mill. For each treatment, formulations were prepared at 1, 3 and 10 wt% of clay. A previous study had established the dispersion efficiency of each treatment and the effect of clay dispersion on UV curing. The present study relates to the effect of clay dispersion on mechanical and optical properties. The mechanical properties studied included abrasion resistance, direct and reverse impact resistance as well as Persoz hardness. Optical properties, such as haze, gloss, color and optical clarity were assessed. An analysis of variance (ANOVA) was conducted to evaluate the effect of clay loading and process type on mechanical and optical properties. A statistical analysis revealed that each property varied with the percentage of clay loading in every treatment. It was found that the quality of the clay dispersion strongly affected both mechanical and optical properties.
机译:通过四种不同类型的分散设备:高速混合机,球磨机,珠磨机和三辊磨机,可以制备通过紫外线固化的粘土基纳米复合材料涂料。对于每种处理,以1、3和10重量%的粘土制备制剂。先前的研究已经确定了每种处理的分散效率以及粘土分散对UV固化的影响。本研究涉及粘土分散对机械和光学性能的影响。研究的机械性能包括耐磨性,直接和反向冲击强度以及Persoz硬度。评估光学性质,例如雾度,光泽,颜色和光学透明度。进行了方差分析(ANOVA),以评估粘土装载量和工艺类型对机械和光学性能的影响。统计分析表明,每种处理方法的每种特性都随粘土含量的百分比而变化。发现粘土分散体的质量强烈影响机械和光学性能。

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