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首页> 外文期刊>Journal of Electrostatics >Comparison of electrostatic fine powder coating and coarse powder coating by numerical simulations
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Comparison of electrostatic fine powder coating and coarse powder coating by numerical simulations

机译:静电细粉涂料和粗粉涂料的数值模拟比较

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Powder coating has several key advantages over liquid coating, and fine powder coating makes the surface finish quality comparable with liquid coating. This work reports on the numerical simulation of a fine powder-coating process in comparison with coarse powder coating, using a commercial computational fluid dynamic code, Fluent v6.1. The purpose of the study is to understand the gas and particle flow fields inside the coating booth for various operating conditions and the effect of reducing particle size on the coating process. The air and powder particle flows in a coating booth were modeled as a three-dimensional turbulent continuous gas flow with solid particles as a discrete phase. The continuous gas flow was calculated by solving the Navier-Stokes equations, including the standard k-epsilon turbulence model with non-equilibrium wall function. The discrete phase was modeled based on the Lagrangian approach. In addition to drag force and gravity, the electrostatic force including the effect of space charge due to free ions was considered in the equation of motion and implemented using user-defined scalars and user-defined functions. The governing equations were solved using a second-order upwind scheme. This study demonstrates that the use of finer particles of size 15 pm or lower can give a very smooth and uniform surface finish, which may serve the requirement of automotive top-clear coating. This also provides useful information about optimum operating conditions such as the airflow rate, the applied external voltage and the powder-spray rate. The numerical model can also be used to optimize the gun-booth design for a better coating efficiency. (c) 2005 Elsevier B.V. All rights reserved.
机译:粉末涂料比液体涂料具有几个关键优势,精细粉末涂料使表面光洁度与液体涂料相当。这项工作使用商业计算流体动力学代码Fluent v6.1,报告了与粗粉涂层相比,细粉涂层工艺的数值模拟。该研究的目的是了解在各种操作条件下涂装室内部的气体和颗粒流场,以及减小粒径对涂装工艺的影响。涂装室中的空气和粉末颗粒流建模为三维湍流连续气流,其中固体颗粒为离散相。通过求解Navier-Stokes方程(包括具有非平衡壁函数的标准k-ε湍流模型)来计算连续气流。离散相是基于拉格朗日方法建模的。除了阻力和重力外,运动方程还考虑了包括自由离子引起的空间电荷效应在内的静电力,并使用用户定义的标量和用户定义的函数来实现。控制方程是使用二阶迎风方案求解的。这项研究表明,使用尺寸为15 pm或更小的更细的颗粒可以提供非常光滑和均匀的表面光洁度,这可以满足汽车顶部透明涂料的要求。这也提供了有关最佳操作条件的有用信息,例如气流速率,施加的外部电压和粉末喷涂速率。数值模型还可用于优化喷枪展位设计,以提高喷涂效率。 (c)2005 Elsevier B.V.保留所有权利。

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