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Application of sacrificial coatings and effect of composition on Al-Al3Ni ultrafine eutectic formation

机译:牺牲涂层的应用及组成对Al-Al3Ni超细共晶形成的影响

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摘要

This paper introduces an unconventional method designed for forming hypereutectic alloys via coating deposition onto the substrate surface and subsequent heat treatment of such systems. The coating was produced from 99.7 wt% nickel powder by means of high velocity oxyfuel (HVOF) spraying onto the surface of 99.999 wt% aluminium sheet. The specimens were manufactured immediately after the spraying. Specimens were heat-treated using a differential thermal analysis (DTA) apparatus up to a temperature of 900°C and then cooled down to the room temperature in an argon atmosphere with constant heating and cooling rates, under which the NiAl3 intermetallic phase formed within the initial substrate. Two different alloy microstructures consisting of a coarse eutectic and an ultrafine well-dispersed eutectic were produced. The formation processes and resultant microstructures were studied by means of differential thermal analysis, metallography, scanning electron microscopy, energy dispersive microanalysis, and image analysis techniques.
机译:本文介绍了一种非常规方法,该方法旨在通过在基体表面上进行涂层沉积并随后对该系统进行热处理来形成过共晶合金。该涂层是由99.7 wt%的镍粉通过高速含氧燃料(HVOF)喷涂到99.999 wt%的铝片表面上制成的。喷涂后立即制造样品。使用差热分析(​​DTA)设备对样品进行热处理,直至温度达到900°C,然后在氩气气氛中以恒定的加热和冷却速率将其冷却至室温,然后在样品中形成NiAl3金属间相。初始基材。产生了两种不同的合金显微组织,分别由粗共晶和超细分散良好的共晶组成。通过差热分析,金相学,扫描电子显微镜,能量色散显微分析和图像分析技术研究了形成过程和所得的微观结构。

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