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Experimental study on pigmented coatings using two particle types with complementary optical features

机译:用互补光学特征的两种粒子类型对色素涂层的实验研究

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摘要

One effective measure for building energy reduction is to pigment coatings on building exteriors. Conventionally, most coatings are designed using single particle types. Due to the limited particle optical features, these coatings usually perform well in one performance (e.g., thermal aspect) but poorly in another (e.g., aesthetic aspect). Thus, in practice they may not be able to meet the user-required performance in both aspects. Using particles with complementary optical features, such requirements may be fulfilled. To this end, this study experimentally investigates double-layered coatings using two particle types (i.e., CuO and TiO2) with complementary features. The performance of 24 coating samples is evaluated with selected total particle masses and mass ratios. Results show that in comparison with the conventionally designed coatings, the two proposed ones (i.e., TiO2 - CuO and CuO - TiO2 coatings) provide more performance alternatives under varied mass ratios; and they also present significant performance differences. For instance, when the TiO2 mass ratio increases, the total solar reflectance of the CuO-TiO2 coating increases slowly at first but quickly afterwards; while that of the TiO2 -CuO coating increases quickly in the beginning but experiences a slow increase afterwards. It also illustrates that as the same required performance is met, the final choice of the two coatings is mainly determined by the initial costs of the utilized particles. Considering the optimal design in practice, the proposed coating is modelled. Validation results are shown at last.
机译:建筑能量减少的一种有效措施是建筑物外部的颜料涂料。通常,大多数涂层使用单粒子类型设计。由于粒子光学特征有限,这些涂层通常在一个性能(例如,热方面)中表现良好,但在另一个性能中不良(例如,审美方面)。因此,在实践中,他们可能无法满足两个方面的用户所需的性能。使用具有互补光学特征的粒子,可以实现这种要求。为此,本研究通过两种颗粒类型(即CuO和TiO 2)通过互补特征来研究双层涂层。通过选定的总粒子质量和质量比评价24种涂层样品的性能。结果表明,与常规设计的涂层相比,两个提出的涂层(即TiO 2 - CuO和CuO - TiO2涂层)在不同的质量比下提供了更多的性能替代品;他们也提出了显着的性能差异。例如,当TiO 2质量比增加时,CuO-TiO2涂层的总太阳反射率首先速度缓慢,但之后快速增加;虽然TiO2 -Cuo涂层的开始在开始时迅速增加,但之后经历缓慢增加。它还示出了相同所需的性能,两种涂层的最终选择主要由使用颗粒的初始成本确定。考虑到实践中的最佳设计,所提出的涂层是建模的。验证结果最后显示。

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