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Electric Conductivity Measurements in Water Dispersion Paints for Mechanistic Studies of Reflection Properties Formation during Surface Painting and Paint Film Drying

机译:水分散漆中电导率的测量,用于研究表面漆和漆膜干燥过程中反射特性形成的机理

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Electric conductivity measurements of water dispersion paints were carried out in order to understand the mechanism of film formation and drying and the formation of painted surface reflection properties. The classical model of electric conductivity in viscous media based on a comparison of the Coulomb and Stokes formulas was used to determine the effective mechanism of the paint properties. This model was verified by measurements in the paint bulk. The classical concept of the electric conductivity of viscous liquids was found to be applicable to the conductivity analysis of the studied water dispersion paint specimens. The electric conductivity of the studied paints was found to be determined by the existing admixtures being soluble in water and/or dispersion organic particles. The formulated method for dynamic conductivity measurements of paint film thickness assumed a constant temperature and viscosity. Strong electrostatic phenomena were delected at the initial stage of paint aerosol deposition, while a compact film has not been formed yet. The film conductivity measuring experiments found that the film drying process consists of two stages. At the first stage, conductivity is sharply decreasing and the paint film rellectivity is sharply increasing. At the second stage, evaporation is delayed. It is limited by the diffusion transfer of volatile components from the film bulk and from the paint dispersion particles. Here, a slow growth of the rellectivity and a decelerating decrease in the conductivity is observed. A qualitative mathematical dynamic model was developed for the paint film reflectivity due to the orientation of pigment particles, and the calculations showed that the first stage of drying is the most important for the orientation.
机译:为了了解成膜和干燥的机理以及漆面反射特性的形成,对水分散漆进行了电导率测量。基于库仑和斯托克斯公式的比较,在粘性介质中的经典电导率模型用于确定涂料性能的有效机理。该模型已通过涂料体积测量得到验证。发现粘性液体电导率的经典概念可用于所研究的水分散体涂料样品的电导率分析。发现所研究的涂料的电导率由可溶于水和/或分散有机颗粒的现有混合物确定。用于漆膜厚度的动态电导率测量的公式化方法假定温度和粘度恒定。在涂料气溶胶沉积的初始阶段就产生了强烈的静电现象,而尚未形成致密的薄膜。薄膜电导率测量实验发现,薄膜干燥过程分为两个阶段。在第一阶段,电导率急剧下降,漆膜相对电阻率急剧上升。在第二阶段,蒸发被延迟。它受到挥发性成分从薄膜团块和涂料分散体颗粒中扩散扩散的限制。在此,观察到相对论性的缓慢增长和电导率的下降减小。由于颜料颗粒的取向,针对漆膜反射率建立了定性的数学动力学模型,计算结果表明,干燥的第一阶段对于取向最重要。

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    Kutateladze Institute of Thermal Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090, Russia;

    Kutateladze Institute of Thermal Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090, Russia;

    Kutateladze Institute of Thermal Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090, Russia;

    Kutateladze Institute of Thermal Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090, Russia;

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  • 入库时间 2022-08-17 13:55:04

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