Inner Diameter High-Velocity Air Fuel (ID-HVAF) Spraying of Copper, Compared to Cold Spray

Golnoush Asadiankouhidehkordi, A. Liberati, F. B. Ettouil, C. Moreau
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Abstract

As a supersonic solid-state deposition process, Cold Spray (CS) has a unique role among other thermal spray techniques as it uses compressed and heated gas to accelerate particles to a critical velocity. CS can be an expensive process, especially when helium is used as a processing gas. In recent thermal spray developments, High-Velocity Air Fuel (HVAF) has taken a specific place in terms of providing dense and strong coatings similar to CS, but also coatings with less oxidation than High- Velocity Oxy-Fuel (HVOF). In contrast to these techniques, HVAF uses a mixture of fuel and air, instead of pure oxygen as in HVOF, to accelerate particles. Therefore, HVAF appears as a relatively cheaper and environmentally friendly alternative for the deposition of a wide variety of materials. The aim of this research is to produce fully dense copper coatings with limited oxidation using an inner diameter (ID) HVAF system and to compare the microstructure with CS copper coatings. Coating microstructures, surface roughness, and microhardness are studied using different characterization methods such as Scanning Electron Microscopy (SEM). Through this paper, the influence of both spray processes, CS and ID-HVAF, on the deposition of copper coatings is discussed. Cross-sectional studies of different coatings show a fairly dense microstructure for CS and ID-HVAF coatings. Moreover, it is discussed how the copper coating properties can change upon modifying the spray parameters.
铜内径高速空气燃料(ID-HVAF)喷涂与冷喷涂的比较
作为一种超音速固态沉积工艺,冷喷涂(CS)在其他热喷涂技术中具有独特的作用,因为它使用压缩和加热的气体将颗粒加速到临界速度。CS可能是一个昂贵的过程,特别是当氦被用作加工气体时。在最近的热喷涂发展中,高速空气燃料(HVAF)在提供类似于CS的致密和坚固涂层方面占据了特定的地位,但也比高速氧燃料(HVOF)具有更少的氧化。与这些技术相比,HVAF使用燃料和空气的混合物来加速粒子,而不是像HVOF那样使用纯氧。因此,对于各种材料的沉积,HVAF似乎是一种相对便宜和环保的替代方案。本研究的目的是使用内径(ID) HVAF系统生产具有有限氧化的全致密铜涂层,并将其与CS铜涂层的微观结构进行比较。采用扫描电镜(SEM)等不同的表征方法研究了涂层的微观结构、表面粗糙度和显微硬度。本文讨论了CS和ID-HVAF两种喷涂工艺对铜镀层沉积的影响。不同涂层的截面研究表明,CS和ID-HVAF涂层的微观结构相当致密。此外,还讨论了改变喷涂参数对铜涂层性能的影响。
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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