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首页> 外文期刊>Iranian polymer journal >Surface topography and cooling effects in poly(vinyl chloride) (PVC)/titanium dioxide (TiO_2) composites exposed to UV-irradiation
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Surface topography and cooling effects in poly(vinyl chloride) (PVC)/titanium dioxide (TiO_2) composites exposed to UV-irradiation

机译:暴露于紫外线辐射的聚氯乙烯(PVC)/二氧化钛(TiO_2)复合材料的表面形貌和冷却效果

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摘要

Rutile titanium dioxide (TiO2), at different amounts (0, 1, 3, 5, 8 and 10phr), was used to prepare PVC/TiO2 composites as cool materials. Exposure to the ultraviolet (UV)-irradiation at 65 degrees C (black-panel thermometers) with a xenon arc as the light source (0.51W/(m(2)nm), 340nm) for 200, 400 and 600h resulted in the formation of polyene structure in PVC and causing discoloration. Besides, atomic force microscopy and roughness measurements were used to examine the changes in surface topography and roughness before and after UV-irradiation. Ethylenic index was used to characterize the aging degree of composites. The contact angle value of composites became smaller and their polarity increased after exposing to UV-irradiation, but the presence of TiO2 effectively prevented this process. In addition, exposure to UV-irradiation had little effect on the reflectance of PVC/TiO2 composites over the whole solar wavelength range (200-2500nm), especially in near infrared (NIR) region (700-2500nm). This allowed the TiO2-loaded samples to display an excellent cooling property whether indoors or outdoors. The addition of higher quantities of TiO2 led to higher efficiency of the cooling effect. In general, this study provides strong support for the property of long-term outdoor use of PVC/TiO2 composites with high solar reflectance and excellent cooling performance.
机译:使用不同量(0、1、3、5、8和10phr)的金红石型二氧化钛(TiO2)制备PVC / TiO2复合材料作为冷却材料。以氙弧灯为光源(0.51W /(m(2)nm),340nm)于65摄氏度(黑屏温度计)暴露于紫外线(UV)照射200、400和600h,导致在PVC中形成多烯结构并引起变色。此外,原子力显微镜和粗糙度测量用于检查紫外线照射前后表面形貌和粗糙度的变化。乙烯指数用来表征复合材料的老化程度。暴露于紫外线下后,复合材料的接触角值变小,极性增加,但是TiO2的存在有效地阻止了该过程。此外,在整个太阳波长范围(200-2500nm),特别是在近红外(NIR)区域(700-2500nm),暴露于紫外线下对PVC / TiO2复合材料的反射率影响很小。这使得负载TiO2的样品无论在室内还是室外均表现出出色的冷却性能。更高数量的TiO2的添加导致更高的冷却效果效率。总的来说,这项研究为长期室外使用具有高太阳反射率和出色冷却性能的PVC / TiO2复合材料的性能提供了有力的支持。

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