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首页> 外文期刊>Applied Physics >Effect Of Laser Melting On Plasma-sprayed Aluminum Oxide Coatings Reinforced With Carbon Nanotubes
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Effect Of Laser Melting On Plasma-sprayed Aluminum Oxide Coatings Reinforced With Carbon Nanotubes

机译:激光熔化对碳纳米管增强的等离子喷涂氧化铝涂层的影响

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摘要

The effect of laser melting on the microstructure and mechanical properties of plasma-sprayed aluminum oxide composite coating reinforced with 4 wt% multi-walled carbon nanotubes (CNTs) is reported. Laser-melted layer consists of dense, coarse columnar microstructure which is significantly different from plasma-sprayed coating that consists of splats and porosity. CNTs retained their original cylindrical graphitic structure after undergoing laser irradiation. Three dimensional heat flow model has been developed to estimate temperature variation in the laser-melted composite layer. Laser-melted layers show an increase in the microhardness at the expanse of degradation of fracture toughness. Nanoindentation study indicates an increase in the elastic modulus and yield strength of the laser-melted layer which is attributed to dense microstructure with absence of weak-bonding splats and porosity.
机译:报道了激光熔化对等离子喷涂氧化铝复合涂层的微观结构和力学性能的影响,该涂层由4 wt%的多壁碳纳米管(CNT)增强。激光熔融层由致密的,粗大的柱状微观结构组成,这与等离子喷涂的涂层(由小孔和多孔性组成)明显不同。碳纳米管经过激光照射后保留了其原始的圆柱石墨结构。已经开发了三维热流模型来估计激光熔融复合层中的温度变化。激光熔融层在断裂韧性降低的范围内显示出显微硬度的增加。纳米压痕研究表明,激光熔合层的弹性模量和屈服强度有所增加,这归因于致密的微观结构,没有弱结合的裂纹和孔隙。

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