首页> 外文期刊>Journal of Thermal Spray Technology >High-Temperature Exposure Studies of HVOF-Sprayed Cr3C2-25(NiCr)/(WC-Co) Coating
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High-Temperature Exposure Studies of HVOF-Sprayed Cr3C2-25(NiCr)/(WC-Co) Coating

机译:HVOF喷涂Cr3C2-25(NiCr)/(WC-Co)涂层的高温暴露研究

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In this research, development of Cr3C2-25(NiCr) + 25%(WC-Co) composite coating was done and investigated. Cr3C2-25(NiCr) + 25%(WC-Co) composite powder [designated as HP2 powder] was prepared by mechanical mixing of [75Cr(3)C(2)-25(NiCr)] and [88WC-12Co] powders in the ratio of 75:25 by weight. The blended powders were used as feedstock to deposit composite coating on ASTM SA213-T22 substrate using High Velocity Oxy-Fuel (HVOF) spray process. High-temperature oxidation/corrosion behavior of the bare and coated boiler steels was investigated at 700 A degrees C for 50 cycles in air, as well as, in Na2SO4-82%Fe-2(SO4)(3) molten salt environment in the laboratory. Erosion-corrosion behavior was investigated in the actual boiler environment at 700 +/- 10 A degrees C under cyclic conditions for 1500 h. The weight-change technique was used to establish the kinetics of oxidation/corrosion/erosion-corrosion. X-ray diffraction, field emission-scanning electron microscopy/energy-dispersive spectroscopy (FE-SEM/EDS), and EDS elemental mapping techniques were used to analyze the exposed samples. The uncoated boiler steel suffered from a catastrophic degradation in the form of intense spalling of the scale in all the environments. The oxidation/corrosion/erosion-corrosion resistance of the HVOF-sprayed HP2 coating was found to be better in comparison with standalone Cr3C2-25(NiCr) coating. A simultaneous formation of protective phases might have contributed the best properties to the coating.
机译:本研究完成了Cr3C2-25(NiCr)+ 25%(WC-Co)复合涂层的研制。通过机械混合[75Cr(3)C(2)-25(NiCr)]和[88WC-12Co]粉末,制备Cr3C2-25(NiCr)+ 25%(WC-Co)复合粉末[指定为HP2粉末]重量比为75:25。掺合的粉末用作原料,采用高速氧燃料(HVOF)喷涂工艺在ASTM SA213-T22基材上沉积复合涂层。在空气中,以及在Na2SO4-82%Fe-2(SO4)(3)熔融盐环境中,在700 A的温度下进行了50次循环,研究了裸露和涂层锅炉钢的高温氧化/腐蚀行为。实验室。在700 +/- 10 A摄氏度的实际锅炉环境中,在循环条件下1500小时,研究了腐蚀腐蚀行为。使用重量改变技术来建立氧化/腐蚀/侵蚀-腐蚀的动力学。 X射线衍射,场发射扫描电子显微镜/能量色散光谱(FE-SEM / EDS)和EDS元素标测技术用于分析暴露的样品。未经涂层的锅炉钢在所有环境中都遭受严重的氧化皮剥落的灾难性退化。发现HVOF喷涂的HP2涂层的抗氧化/腐蚀/侵蚀腐蚀性能优于独立的Cr3C2-25(NiCr)涂层。同时形成保护相可能为涂层带来了最佳性能。

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