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High-Porosity Thermal Barrier Coatings from High-Power Plasma Spray Equipment—Processing, Performance and Economics

机译:高功率等离子喷雾设备 - 加工,性能和经济学的高孔隙率热障涂层

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High-porosity thermal barrier coatings are utilized on gas turbine components where maximizing the coating thermal insulation capability is the primary design criteria. Though such coatings have been in industrial use for some time, manufacturing high-porosity coatings quickly and efficiently has proven challenging. With the industry demand to increase productivity and reduce waste generation, there is a drive to look at improved coating manufacturing methods. This article looks at high-porosity coatings manufactured using a high-power plasma system in comparison with a current industrial coating. A commercial spray powder is compared with an experimental Low-Density powder developed to maximize coating porosity without sacrificing coating deposition efficiency. The resultant coatings have been assessed for their microstructure, adhesion strength, furnace cyclic lifetime, thermal conductivity and sintering behavior. Finally, the impact of spray processing on coating economics is discussed. The use of a Low-Density powder with a high-power plasma system allows a high-porosity coating to be manufactured more efficiently and more cost effectively than with conventional powder feedstock. The improvement in thermal properties for the experimental coating demonstrates there is scope to improve industrial coatings by designing with specific thermal resistance rather than thickness and porosity as coating requirements.
机译:高孔隙率热阻挡涂层用于燃气轮机部件,其中最大化涂层绝热能力是主要的设计标准。虽然这种涂层一直在工业用途,但快速有效地制造了高孔隙件涂层,已经证明了具有挑战性。随着行业的要求提高生产力并减少浪费浪费,有一个驱动器来看待改善的涂料制造方法。本文介绍了使用高功率等离子体系统制造的高孔隙度涂层,与当前的工业涂层相比。将商用喷雾粉与显影性的低密度粉末进行比较,以最大化涂层孔隙率而不牺牲涂层沉积效率。已经评估了所得涂层的微观结构,粘合强度,炉循环寿命,导热性和烧结行为。最后,讨论了喷涂处理对涂层经济学的影响。使用具有高功率等离子体系统的低密度粉末允许高孔隙涂层比与常规粉末原料更有效地制造更有效,更成本的成本。实验涂层的热性能的改善表明,通过设计具有特定的热阻而不是厚度和孔隙率作为涂层要求,可以改善工业涂层的范围。

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