首页> 外文期刊>Journal of Thermal Spray Technology >A Comparative Study on Ni-Based Coatings Prepared by HVAF, HVOF, and APS Methods for Corrosion Protection Applications
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A Comparative Study on Ni-Based Coatings Prepared by HVAF, HVOF, and APS Methods for Corrosion Protection Applications

机译:HVAF,HVOF和APS方法对腐蚀保护应用的Ni基涂层的比较研究

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摘要

Selection of the thermal spray process is the most important step toward a proper coating solution for a given application as important coating characteristics such as adhesion and microstructure are highly dependent on it. In the present work, a process-microstructure-properties-performance correlation study was performed in order to figure out the main characteristics and corrosion performance of the coatings produced by different thermal spray techniques such as high-velocity air fuel (HVAF), high-velocity oxy fuel (HVOF), and atmospheric plasma spraying (APS). Previously optimized HVOF and APS process parameters were used to deposit Ni, NiCr, and NiAl coatings and compare with HVAF-sprayed coatings with randomly selected process parameters. As the HVAF process presented the best coating characteristics and corrosion behavior, few process parameters such as feed rate and standoff distance (SoD) were investigated to systematically optimize the HVAF coatings in terms of low porosity and high corrosion resistance. The Ni and NiAl coatings with lower porosity and better corrosion behavior were obtained at an average SoD of 300 mm and feed rate of 150 g/min. The NiCr coating sprayed at a SoD of 250 mm and feed rate of 75 g/min showed the highest corrosion resistance among all investigated samples.
机译:热喷涂工艺的选择是为特定应用选择合适涂层溶液的最重要步骤,因为重要的涂层特性(如附着力和微观结构)高度依赖于热喷涂工艺。在本研究中,进行了工艺微观结构-性能相关性研究,以了解不同热喷涂技术(如高速空气燃料(HVAF)、高速氧气燃料(HVOF)和大气等离子喷涂(APS)产生的涂层的主要特征和腐蚀性能。使用预先优化的HVOF和APS工艺参数沉积Ni、NiCr和NiAl涂层,并与随机选择工艺参数的HVAF喷涂涂层进行比较。由于HVAF工艺呈现出最佳的涂层特性和腐蚀行为,因此,为了系统地优化HVAF涂层的低孔隙率和高耐腐蚀性,研究了一些工艺参数,如进料速率和隔离距离(SoD)。在平均超氧化物歧化酶为300 mm、进给速度为150 g/min时,获得了孔隙率较低、腐蚀性能较好的Ni和NiAl涂层。在所有研究样品中,以超氧化物歧化酶为250 mm、进给速度为75 g/min时喷涂的NiCr涂层的耐腐蚀性最高。

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