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Influence of Feedstock Powder for Fabrication of Aluminum Nitride in Reactive Atmospheric Plasma Spray Process

机译:原料粉末在反应性大气等离子体喷涂过程中氮化铝制备的影响

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It was possible to fabricate cubic-AlN (c-AlN) based coating through the reaction between Al powder and the N_2/H_2 plasma in APS system. The fabricated coating was about 100 μm with hardness about 540 Hv, which is much higher than the hardness of Al. The formation of the cubic phase in APS is directly related to the rapid solidification phenomena of plasma spraying process. The sprayed powder particles show rapid cooling rates upon impact with the substrate, which prevent its complete crystal growth. The nitride content increased with the spray distance due to increase the flight time of Al particles in the N_2 plasma. Using smaller particle size improved the nitriding reaction at short spray distance due to increasing the particle temperature. However increasing the particle temperature leads to excessive vaporization of Al particles and completing nitriding reaction during flight, therefore suppressing the coatings thickness. The nitriding reaction of the larger particle size Al powders can be enhanced through NH_4Cl powders addition. That NH_4Cl addition changed the reaction pass way from liquid-gas to vapor-phase intermediate mechanism.
机译:通过APS系统中的Al粉末和N_2 / H_2等离子体之间的反应,可以制造基于立方-A1(C-ALN)的涂层。制造的涂层约为100μm,硬度约为540HV,远高于Al的硬度。 APS中的立方相的形成与等离子体喷涂过程的快速凝固现象直接相关。喷涂的粉末颗粒在与基材冲击时显示出快速的冷却速率,这防止了其完全的晶体生长。由于增加了N_2等离子体中的Al颗粒的飞行时间,氮化物含量随着喷射距离而增加。使用较小的粒度提高了由于增加颗粒温度而在短的喷射距离下改善氮化反应。然而,增加颗粒温度导致Al颗粒的过度蒸发并在飞行期间完成氮化反应,因此抑制涂层厚度。通过NH_4Cl粉末添加,可以提高较大粒径Al粉末的氮化反应。 NH_4CL添加从液 - 气中改变反应通量以气相中间机构。

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