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Adhesion of charged powders to a metal surface in the powder coating process

机译:带电粉末在粉末喷涂过程中对金属表面的粘附

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Substrate-particle adhesion of electrostatically charged, nonconducting particles deposited on electrically grounded substrates is discussed. Glass microspheres of diameters ranging from 25.5-74.1 /spl mu/m, charged by corona and tribe-charging, were deposited in a monolayer on conducting stannic-oxide coated surfaces of glass plates (NESA). The total force of adhesion due to electrostatic, van der Waals, and gravitational forces was measured by observing the removal of particles by applying a known electric field between the particle coated surface and a clean surface of a second NESA glass, placed parallel to it at a distance of 0.013 m. The adhesive force was measured as a function of particle size and charge. The net average charge on the particles was measured using a Faraday cup. The experimental values agree well with the calculated force of adhesion for a single layer deposition. The charge decay of the particles was studied using a noncontact electrostatic voltmeter. The charge relaxation time of the deposited powder was found to increase with time. A physical model of the adhesion of charged powder paints deposited on a grounded metal substrate is presented. The role of the forces acting on a spherical polymer particle deposited on the surface of a uniform coating of powder paint is investigated as a function of particle diameter and charge. The particles are assumed to be unipolarly charged and deposited uniformly on the substrate. The relative magnitudes of the electrostatic attractive and repulsive forces are analyzed as functions of powder film thickness and particle size.
机译:讨论了沉积在电接地基板上的带静电的非导电粒子对基板的附着力。通过电晕和部落充电将直径范围为25.5-74.1 / spl mu / m的玻璃微球以单层形式沉积在玻璃板的导电氧化锡涂层表面(NESA)上。由静电,范德华力和重力引起的总粘合力是通过观察颗粒的去除情况来测量的,方法是在颗粒涂覆的表面和第二个NESA玻璃的清洁表面(与之平行放置)之间施加已知的电场,以观察颗粒的去除情况。距离为0.013 m。测量粘合力随粒度和电荷的变化。使用法拉第杯测量颗粒上的净平均净电荷。实验值与计算出的单层沉积粘附力非常吻合。使用非接触式静电电压计研究了颗粒的电荷衰减。发现沉积粉末的电荷弛豫时间随时间增加。给出了沉积在接地金属基材上的带电粉末涂料附着力的物理模型。研究了作用在沉积在粉末涂料均匀涂层表面上的球形聚合物颗粒上的力与颗粒直径和电荷的关系。假定颗粒是单极性带电的,并且均匀地沉积在基材上。静电引力和斥力的相对大小作为粉末膜厚度和粒径的函数进行分析。

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