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Effect of substrate preheating treatment on the microstructure and ultrasonic cavitation erosion behavior of plasma-sprayed YSZ coatings

机译:基质预热处理对等离子体喷涂ysz涂层微观结构和超声波空化侵蚀行为的影响

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摘要

Inconel 718 was used as the substrate and preheated at different temperatures to deposit yttrium stabilized zirconia (denoted as YSZ) coatings by atmospheric plasma spraying. The microstructure of the as-deposited YSZ coatings and those after cavitation-erosion tests were characterized by field emission scanning electron microscopy, Raman spectroscopy, and their hardness and toughness as well as cavitation-erosion resistance were evaluated in relation to the effect of substrate preheating temperature. Results indicate that the as-deposited YSZ coatings exhibit typical layered structure and consist of columnar crystals. With the increase of the substrate preheating temperature, the compactness and cohesion strength of coatings are obviously enhanced, which result in the increases in the hardness, elastic modulus and toughness as well as cavitation-erosion resistance of the ceramic coatings therewith. Particularly, the YSZ coating deposited at a substrate preheating temperature of 800 degrees C exhibits the highest hardness and toughness as well as the strongest lamellar interfacial bonding and cavitation-erosion resistance (its cavitation-erosion life is as much as 8 times than that of deposited at room temperature).
机译:Inconel 718用作基质并在不同温度下预热以通过大气等离子体喷涂沉积钇稳定的氧化锆(表示为YSZ)涂层。通过现场发射扫描电子显微镜,拉曼光谱法以及它们的硬度和韧性以及底物预热的效果评估了贮存腐蚀试验后的沉积YSZ涂层的微观结构。温度。结果表明,沉积的YSZ涂层表现出典型的层状结构并由柱状晶体组成。随着基板预热温度的增加,涂层的紧凑性和内聚强度明显增强,这导致硬度,弹性模量和韧性的增加以及陶瓷涂料的空穴抗蚀性。特别地,在800℃的基板预热温度下沉积的YSZ涂层表现出最高的硬度和韧性以及最强的层状界面粘合和空化 - 侵蚀抗性(其空化侵蚀寿命高达沉积的8倍在室温下)。

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