首页> 外文会议>International Conference on Surface Engineering; 20041029-31; Shenzhen(CN) >Configuration optimization of high velocity arc spraying gun
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Configuration optimization of high velocity arc spraying gun

机译:高速电弧喷枪的配置优化

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In order to improve the in-flight characteristics of the atomizing droplets during high velocity wire arc spraying (HVAS) , some changes have been operated on the original design of the HVAS gun configuration. A comparative study was carried out to investigate the microstructure and properties of the coatings produced by the original design spraying gun and the modified one, using 3Cr13 wires of 3 mm in diameter. The characteristics of their jets were examined during spraying. The results indicate that, the included angle between the two wires and the distance from the nozzle to the meeting point of the two wires may have a strong influence on the characteristics of the in-flight droplets and then the coatings. The jet divergence is found to be lower than that of the original one (about 12° against 25°). By modified gun, the adhesion strength, the microhardness and porosity of the coating deposited by modified gun are increased by 39% and 9% respectively. And the porosity of the coatings is decreased by 57%.
机译:为了改善高速电弧喷涂(HVAS)期间雾化液滴的飞行特性,对HVAS喷枪配置的原始设计进行了一些更改。进行了一项比较研究,以研究使用原始设计的喷枪和改进的喷枪使用直径为3 mm的3Cr13焊丝生产的涂层的微观结构和性能。在喷涂过程中检查了喷嘴的特性。结果表明,两条金属丝之间的夹角以及从喷嘴到两条金属丝的汇合点的距离可能会对飞行中液滴的特性产生很大的影响,进而影响涂层的特性。发现射流的发散角小于原始射流的发散角(大约12°对25°)。通过改进的喷枪,通过改进的喷枪沉积的涂层的粘附强度,显微硬度和孔隙率分别增加了39%和9%。涂层的孔隙率降低了57%。

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