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Effect of Oxidation Behavior on the Mechanical and Thermal Properties of Plasma Sprayed Tungsten Coatings

机译:氧化行为对等离子喷涂钨涂层力学性能和热性能的影响

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摘要

Tungsten (W) coatings have been prepared via air (APS) and vacuum plasma spraying (VPS) technologies, respectively. The microstructures and chemical compositions of the coatings were comparatively studied; meanwhile, the mechanical and thermal properties were evaluated. The results obtained showed that oxide content in the VPS-W coating was apparently lower than that of the APS-W coating because of the different surrounding atmosphere, which influenced the mechanical and thermal properties of the coatings directly. Similar microstructures were observed for the VPS-W and the APS-W coating, but the VPS-W coating was much denser. The bonding strength of the VPS-W coating was much higher than that of the APS-W coating. Thermal conductivity of the VPS-W coating was 59.3 W/m·K at room temperature while the APS-W coating was 32.2 W/m·K. Thermal loading experiments of electron beam showed that the VPS-W coating could withstand the heat load of 10.75 MW/m{sup}2, while the APS-W coating formed serious cracks on its surface at the load of 7.5 MW/m{sup}2.
机译:钨(W)涂层分别通过空气(APS)和真空等离子喷涂(VPS)技术制备。对涂层的微观结构和化学组成进行了比较研究。同时,评估了机械性能和热性能。所得结果表明,由于周围环境的不同,VPS-W涂层中的氧化物含量明显低于APS-W涂层中的氧化物含量,这直接影响了涂层的机械性能和热性能。对于VPS-W和APS-W涂层观察到相似的微观结构,但VPS-W涂层致密得多。 VPS-W涂层的粘结强度远高于APS-W涂层的粘结强度。在室温下,VPS-W涂层的热导率为59.3 W / m·K,而APS-W涂层的导热率为32.2 W / m·K。电子束热负荷实验表明,VPS-W涂层可承受10.75 MW / m {sup} 2的热负荷,而APS-W涂层在7.5 MW / m {sup } 2。

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