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Quasi-One-Dimensional Analysis of the Effects of Pipe Friction, Cooling and Nozzle Geometry on Gas/Particle Flows in HVOF Thermal Spray Gun

机译:HVOF热喷枪中管道摩擦,冷却和喷嘴几何形状对气体/颗粒流的影响的准一维分析

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摘要

The High Velocity Oxy-Fuel (HVOF) thermal spraying can make highly tough and dense coatings on a solid surface. It is experimentally recognized that the quality of the coating largely depends on the particle velocity and temperature, which depend on the gas flow in the HVOF gun. The gas flow in the gun is affected by two factors; pipe friction and cooling along the inner wall of the long gun. This paper investigates the gas/particle flow in the HVOF gun by using quasi-one-dimensional analysis including the effects of pipe friction, cooling and nozzle geometry. The standard values of the parameters, to include the effects of pipe friction and cooling are selected based on the experimental result. The nozzle length is varied in the range of 110-330 mm. The calculated results show that (1) the pipe friction decreases the particle velocity and increases the particle temperature, (2) the cooling increases the particle velocity and decreases the particle temperature, (3) the maximum particle velocity is obtained when the length of the diverging part of the nozzle is approximately equal to the length of the following non-diverging straight part, (4) the longer nozzle results in larger particle velocity at the nozzle exit. These numerical results help understand the gasdynamics occurring in the HVOF gun, and assist in the design of the gun.
机译:高速氧燃料(HVOF)热喷涂可以在固体表面上形成高韧性和致密的涂层。实验上已经认识到,涂层的质量在很大程度上取决于粒子速度和温度,而粒子速度和温度取决于HVOF喷枪中的气流。喷枪中的气流受两个因素影响:沿长枪内壁的管道摩擦和冷却。本文通过准一维分析研究了HVOF喷枪中的气体/颗粒流动,包括管道摩擦,冷却和喷嘴几何形状的影响。根据实验结果选择包括管道摩擦和冷却影响在内的参数标准值。喷嘴长度在110-330毫米范围内变化。计算结果表明:(1)管道摩擦力降低了粒子速度,提高了粒子温度;(2)冷却增加了粒子速度,降低了粒子温度;(3)当管道长度达到最大时,获得了最大粒子速度。喷嘴的发散部分大约等于随后的非发散笔直部分的长度,(4)喷嘴越长,导致喷嘴出口处的粒子速度越大。这些数值结果有助于了解HVOF喷枪中的气体动力学,并有助于喷枪的设计。

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