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首页> 外文期刊>Materials Focus >Overview of Failure Modes of Pseudo Compositionally Graded Thermal Barrier Coatings and Remedies for Augmenting the Service Life of the Coated Components
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Overview of Failure Modes of Pseudo Compositionally Graded Thermal Barrier Coatings and Remedies for Augmenting the Service Life of the Coated Components

机译:伪组成分级热阻挡涂层的故障模式概述及加强涂层部件使用寿命的补救措施

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摘要

Because of the chemical and thermal stabilities at high-temperature and oxidation resistance, the thermal barrier coatings (TBCs) possess significant importance in the protection of alloys at elevated temperature. It was researched that the layers of thermally grown oxides (TGO) restrictsthe applications because of the spallation, compositionally graded thermal barrier coatings by formation of near uniform non-clustered distribution of TGO enhances the thermal cyclic performance by delayed spallation. In this review, the simulation of failures of thermal barrier coated componentsduring diverse applications by solid particles erosion testing at elevated temperature and high temperature corrosion attack in presence of sulfate and vanadate salts has been reviewed and disserted in detail. Also, this article gives contemplation on significance of composition gradient overthe performance of thermal barrier coating while exposed to elevated temperatures of around 1200 °C.
机译:由于高温和抗氧化性的化学和热稳定性,热阻挡涂层(TBC)在升高温度下保护合金具有重要意义。研究结果是,由于介绍,热生长氧化物层(TGO)限制应用程序受到衬里的组成渐变的热阻挡涂层,通过延迟介绍,通过形成近均匀的无聚类分布而通过形成热循环性能而增强了热循环性能。在本文中,通过固体颗粒在升高的温度和高温腐蚀攻击下,在硫酸盐和钒酸盐存在下,通过固体颗粒腐蚀测试模拟了热屏障涂层部件的仿真,并详细介绍了硫酸盐和钒酸盐盐。此外,本文对组合物梯度对热阻挡涂层的性能进行了思考,同时暴露于约1200℃的升高温度。

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