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Deposition of WC-Co Coatings by a Novel High Pressure HVOF

机译:新型高压HVOF沉积WC-Co涂层

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摘要

WC-Co coatings are primarily deposited using the high velocity oxy-fuel (HVOF) spray process. However, the decomposition and decarburization of carbides during spraying affects the wear performance and fracture toughness of the coatings. In this paper, a novel high pressure HVOF was developed to achieve lower particle temperature and higher particle velocity. It enables combustion chamber pressures up to 3.0 MPa. The influence of combustion chamber pressure and oxygen/fuel ratio on WC-Co particle velocity and temperature levels were analyzed by numerical simulation. The experimental results show that the combustion chamber pressure and the oxygen/fuel ratio have a significant influence on particle velocity and melting degree, as well as on the microstructure and microhardness of the coating. High velocity WC-Co particles in different states, i.e., molten, semi-molten, and non-molten can be readily obtained by changing the spraying conditions. A comparison to the conventional JP-5000 was also performed.
机译:WC-Co涂层主要使用高速氧燃料(HVOF)喷涂工艺沉积。但是,喷涂过程中碳化物的分解和脱碳会影响涂层的磨损性能和断裂韧性。在本文中,开发了一种新颖的高压HVOF以实现更低的粒子温度和更高的粒子速度。它可使燃烧室压力达到3.0 MPa。通过数值模拟分析了燃烧室压力和氧/燃料比对WC-Co颗粒速度和温度水平的影响。实验结果表明,燃烧室压力和氧/燃料比对颗粒速度和熔融度以及涂层的显微组织和显微硬度有显着影响。通过改变喷涂条件可以容易地获得处于不同状态,即熔融,半熔融和非熔融的高速WC-Co颗粒。还进行了与常规JP-5000的比较。

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