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The Influence of Shaping Air Pressure of Pneumatic Spray Gun

机译:气动喷枪成型气压的影响

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The shaping air pressure is a very important parameter in the application of pneumatic spray gun, and studying its influence on spray flow field and film thickness distribution has practical values. In this paper, Euler-Lagrangian method is adopted to describe the two-phase spray flow of pneumatic painting process, and the air flow fields, spray patterns and dynamic film thickness distributions were obtained with the help of the computational fluid dynamics code-ANSYS Fluent. Results show that with the increase of the shaping air pressure, the air phase flow field spreads in the plane perpendicular to the shaping air hole plane, the spray pattern becomes narrower and flatter, and the width of the dynamic film increases with the reduced maximum value of the film thickness. But the film thickness distribution seems to change little with the shaping air pressure decreasing from 0.6bar to 0.9bar.
机译:成型气压是气动喷枪的应用中的一个非常重要的参数,研究其对喷雾流场的影响和膜厚度分布具有实用的值。在本文中,采用Euler-Lagrangian方法来描述气动涂漆过程的两相喷雾流动,并且在计算流体动力学代码 - ansys流畅的帮助下获得了空气流场,喷雾图案和动态膜厚度分布。结果表明,随着成形气压的增加,空隙流场在垂直于成型空气孔平面的平面中延伸,喷射图案变得更窄,更平坦,并且动态膜的宽度随着最大值降低而增加膜厚度。但薄膜厚度分布似乎几乎没有0.6bar到0.9bar的成形空气压力降低。

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