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Numerical and Experimental Investigation on the Spray Coating Process Using a Pneumatic Atomizer: Influences of Operating Conditions and Target Geometries

机译:气动雾化器喷涂过程的数值和实验研究:操作条件和目标几何形状的影响

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This paper presents a numerical simulation of the spray painting process using a pneumatic atomizer with the help of a computational fluid dynamics code. The droplet characteristics that are necessary for the droplet trajectory calculation were experimentally investigated using different shaping air flow rates. It was found that the droplet size distribution depends on both the atomizing and the shaping air flow rate. An injection model for creating the initial droplet conditions is necessary for the spray painting simulation. An approach for creating these initial conditions has been proposed, which takes different operating conditions into account and is suitable for practical applications of spray coating simulation using spray guns. Further, tests on complicated targets and complex alignments of the atomizer have been carried out to verify this numerical approach. The results confirm the applicability and reliability of the chosen method for the painting process.
机译:本文通过计算流体动力学代码,介绍了使用气动雾化器进行喷涂过程的数值模拟。使用不同的成形空气流速,通过实验研究了液滴轨迹计算所需的液滴特性。已经发现,液滴尺寸分布取决于雾化和成形空气流速。用于创建初始液滴条件的喷射模型对于喷涂模拟是必需的。已经提出了一种用于创建这些初始条件的方法,该方法考虑了不同的操作条件,并且适用于使用喷枪进行喷涂模拟的实际应用。此外,已经对雾化器的复杂目标和复杂对准进行了测试,以验证这种数值方法。结果证实了所选方法在涂漆过程中的适用性和可靠性。

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