The Potential of High Velocity Air Fuel Spraying (HVAF) to Manufacture Bond Coats in Thermal Barrier Coating Systems

G. Mauer, Karl-Heinz Rauwald, R. Vaßen
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Abstract

Driven by the search for an optimum combination of particle velocity and process temperature to achieve dense hard metal coatings at high deposition efficiencies and powder feed rates, the high velocity air-fuel spraying process (HVAF) was developed. In terms of achievable particle velocities and temperatures, this process can be classified between high velocity oxy-fuel spraying (HVOF) and cold gas spraying (CGS). The particular advantages of HVAF regarding moderate process temperatures, high particle velocities as well as high productivity and efficiency suggest that the application of HVAF should be also investigated for the manufacture of MCrAlY (M = Co and/or Ni) bond coats (BCs) in thermal barrier coating (TBC) systems. In this work, corresponding HVAF spray parameters were developed based on detailed process analyses. Different diagnostics were carried out to characterize the working gas jet and the particles in flight. The coatings were investigated with respect to their microstructure, surface roughness and oxygen content. The spray process was assessed for its effectiveness. Process diagnostics as well as calculations of the gas flow in the jet and the particle acceleration and heating were applied to explain the governing mechanisms on the coating characteristics. The results show that HVAF is a promising alternative manufacturing process.
高速空气燃料喷涂(HVAF)在热障涂层系统中制造粘结层的潜力
在寻找颗粒速度和工艺温度的最佳组合的驱动下,在高沉积效率和粉末进料速率下获得致密的硬质金属涂层,开发了高速空气-燃料喷涂工艺(HVAF)。根据可达到的粒子速度和温度,该过程可分为高速氧燃料喷涂(HVOF)和冷气体喷涂(CGS)。HVAF在适中的工艺温度、高的颗粒速度以及高的生产率和效率方面的特殊优势表明,HVAF也应该应用于热障涂层(TBC)系统中MCrAlY (M = Co和/或Ni)结合涂层(bc)的制造。在详细的工艺分析基础上,制定了相应的HVAF喷雾参数。采用不同的诊断方法对工作气体射流和飞行中的颗粒进行了表征。研究了涂层的显微组织、表面粗糙度和氧含量。对喷雾过程的有效性进行了评估。应用过程诊断、射流气流、粒子加速和加热的计算来解释涂层特性的控制机理。结果表明,HVAF是一种很有前途的替代制造工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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