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Film formation and mechanical properties of an opaque titanium dioxide and transparent polyvinyl alcohol composite films

机译:不透明二氧化钛和透明聚乙烯醇复合膜的膜形成和力学性能

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摘要

Mechanical, optical, and film formation properties of titanium dioxide/polyvinyl alcohol (TiO2/PVA) composites were studied. Two identical experimental sets of % TiO2 content were prepared that one set is in the range of 1, 3, 5, 7, 10, 13, and 20 wt% for the film formation and the second set is 5 and 50 wt% for the mechanical measurements. Photon transmission technique (PT) at room temperature was used for the film formation process after annealing for 10 min at the temperatures changing from 100 to 270 degrees C. The increase and decrease in the transmission light intensity (I-tr) from the composite films were attributed to void closure and interdiffusion models, respectively. The results were consistent with the data obtained from the film formation processes and mechanical measurements that the addition of TiO2 in PVA had remarkable improvement on mechanical properties, for example, increment in the Young's modulus and the rigidity as TiO2 content increased from 5 to 50 wt%, and it had also good film forming especially above 10 wt% TiO2 for the void closure processes leading to lower the activation energy. It was observed that for the lower content of TiO2 such as 5 wt%, the tensile strength and Young's modulus increased remarkably for heating temperature increased up to 150 degrees C. However, with the increase of TiO2 content, the maximum values of the mechanical strength and modulus were shifted to 180 degrees C for 50 wt% TiO2 from 150 degrees C for 5 wt% TiO2 because of the thermal stability of TiO2.
机译:研究了二氧化钛/聚乙烯醇(TiO2 / PVA)复合材料的机械,光学和膜形成性能。制备两个相同的实验组%TiO 2含量,其中一个组在1,3,5,7,10,13和20wt%的膜形成的范围内,第二组为5和50wt%机械测量。在室温下,在退火10分钟后使用在室温下的光子传输技术(Pt)在从100至270℃变化的温度下退火10分钟。来自复合薄膜的透射光强度(I-Tr)的增加和降低归因于空隙闭合和交互模型。结果与从薄膜形成过程中获得的数据一致,并且机械测量,PVA中的TiO 2对机械性能显着改善,例如,杨氏模量的增量,因为TiO2含量增加到50重量%对于空隙闭合过程,尤其是在10wt%TiO 2上形成的良好薄膜,其尤其是在10wt%tiO 2上,导致降低激活能量。观察到,对于TiO 2的较低含量,如5wt%,抗拉强度和杨氏模量显着增加,用于加热温度增加至150℃。然而,随着TiO 2含量的增加,机械强度的最大值由于TiO 2的热稳定性,25℃,模量从15wt%TiO 2移位至180wt%TiO 2。

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