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Effects of Feedstock Decomposition and Evaporation on the Composition of Suspension Plasma-Sprayed Coatings

机译:原料分解和蒸发对等离子喷涂涂层成分的影响

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Emerging new applications and growing demands of plasma-sprayed coatings have initiated the development of new plasma spray processes. One of them is suspension plasma spraying (SPS). The use of liquid feedstock such as suspensions yields higher flexibility compared to the conventional atmospheric plasma spray processes as even submicron-to nano-sized particles can be processed. This allows achieving particular microstructural features, e.g., porous segmented or columnar-structured thermal barrier coatings. To exploit the potentials of such novel plasma spray processes, the plasma-feedstock interaction must be understood better. In this study, decomposition and evaporation of feedstock material during SPS were investigated, since particular difficulties can occur with respect to stoichiometry and phase composition of the deposits. Plasma conditions were analyzed by optical emission spectroscopy (OES). Experimental results are given, namely for gadolinium zirconate and for lanthanum strontium cobalt ferrite deposition. Moreover, the applied OES approach is validated by comparison with the simpler actinometry method.
机译:新兴的应用和等离子喷涂涂料的需求不断增长,已开始开发新的等离子喷涂工艺。其中之一是悬浮等离子喷涂(SPS)。与常规的大气等离子喷涂工艺相比,使用液体原料(例如悬浮液)可产生更高的灵活性,因为甚至可以处理亚微米至纳米尺寸的颗粒。这允许获得特定的微结构特征,例如多孔的分段或柱状结构的热障涂层。为了开发这种新颖的等离子喷涂工艺的潜力,必须更好地理解等离子与原料的相互作用。在这项研究中,对SPS期间原料的分解和蒸发进行了研究,因为在沉积物的化学计量和相组成方面可能会遇到特别的困难。通过光发射光谱法(OES)分析血浆状况。给出了实验结果,即锆酸tron和镧锶锶铁氧体的沉积。此外,通过与较简单的光化法比较,验证了所应用的OES方法。

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