首页> 外文期刊>Journal of Thermal Spray Technology >Effect of Spray Particle Velocity on Cavitation Erosion Resistance Characteristics of HVOF and HVAF Processed 86WC-10Co4Cr Hydro Turbine Coatings
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Effect of Spray Particle Velocity on Cavitation Erosion Resistance Characteristics of HVOF and HVAF Processed 86WC-10Co4Cr Hydro Turbine Coatings

机译:喷涂速度对HVOF和HVAF加工的86WC-10Co4Cr水轮机涂层抗气蚀性能的影响

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摘要

The hydro plants utilizing silt-laden water for power generation suffer from severe metal wastage due to particle-induced erosion and cavitation. High-velocity oxy-fuel process (HVOF)-based coatings is widely applied to improve the erosion life. The process parameters such as particle velocity, size, powder feed rate, temperature, affect their mechanical properties. The high-velocity air fuel (HVAF) technology, with higher particle velocities and lower spray temperatures, gives dense and substantially nonoxidized coating. In the present study, the cavitation resistance of 86WC-10Co4Cr-type HVOF coating processed at 680 m/s spray particle velocity was compared with HVAF coatings made at 895, 960, and 1010 m/s. The properties such as porosity, hardness, indentation toughness, and cavitation resistance were investigated. The surface damage morphology has been analyzed in SEM. The cohesion between different layers has been examined qualitatively through scratch depth measurements across the cross section. The HVAF coatings have shown a lower porosity, higher hardness, and superior cavitation resistance. Delamination, extensive cracking of the matrix interface, and detachment of the WC grains were observed in HVOF coating. The rate of metal loss is low in HVAF coatings implying that process parameters play a vital role in achieving improved cavitation resistance.
机译:使用含沙水进行发电的水力发电厂由于颗粒引起的腐蚀和空化而遭受严重的金属浪费。高速含氧燃料工艺(HVOF)基涂料被广泛应用于改善腐蚀寿命。诸如颗粒速度,尺寸,粉末进料速率,温度之类的工艺参数会影响其机械性能。高速空气燃料(HVAF)技术具有较高的颗粒速度和较低的喷雾温度,可形成致密且基本未氧化的涂层。在本研究中,将以680 m / s喷雾颗粒速度处理的86WC-10Co4Cr型HVOF涂层与以895、960和1010 m / s制成的HVAF涂层的抗气蚀性进行了比较。研究了诸如孔隙率,硬度,压痕韧性和抗气蚀性的性质。在SEM中分析了表面损伤形态。已经通过横截面的划痕深度测量定性地检查了不同层之间的内聚力。 HVAF涂层显示出较低的孔隙率,较高的硬度和出色的抗气蚀性。在HVOF涂层中观察到分层,基体界面的大量开裂以及WC晶粒的脱落。 HVAF涂层中的金属损失率很低,这表明工艺参数在提高耐气蚀性方面起着至关重要的作用。

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