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首页> 外文期刊>Journal of Materials Science and Chemical Engineering >Rheological Behaviour, Synthesis and Performance of Smart Thermal Barrier Coating Systems Based on Hollow Alumina
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Rheological Behaviour, Synthesis and Performance of Smart Thermal Barrier Coating Systems Based on Hollow Alumina

机译:基于空心氧化铝的智能热障涂层体系的流变行为,合成与性能

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摘要

The stability of three water-based slurries containing different loads of Al microparticles was measured by laser scattering. The slurries displayed a Newtonian behaviour and the evolution of viscosity over nine days was found to be constant. Ground surfaces of nickel were also wetted similarly irrespective of the Al content in the slurries (30, 40 or 50 wt%) thereby demonstrating that the 1/10 PVA/H2O water based slurries are adequate for spraying. After deposition and annealing of the as-sprayed coatings, a thermal barrier coating system was formed with a top coat of hollow alumina spheres, an intermediate thermally grown oxide and a bottom aluminized bond coat. The coating system is shown to display very low thermal conductivity and remarkable oxidation resistance at high temperatures.
机译:通过激光散射测量了三种不同载量的Al微粒的水基浆料的稳定性。该浆液表现出牛顿行为,并且在九天内粘度的变化是恒定的。不管浆料中的Al含量如何(30、40或50wt%),镍的接地表面也被类似地润湿,由此证明1/10 PVA / H 2 O水基浆料足以用于喷涂。在喷涂后的涂层沉积并退火后,形成了具有中空氧化铝球面涂层,中间热生长氧化物和底部铝化粘结涂层的隔热涂层系统。该涂料体系在高温下显示出极低的导热率和出色的抗氧化性。

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