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A microstructure and mechanical property investigation on thermally sprayed nanostructured ceramic coatings before and after a sintering treatment

机译:烧结处理前后热喷涂纳米结构陶瓷涂层的组织和力学性能研究

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摘要

Coatings have been deposited by air plasma spraying of alumina powders in the form of conventional particles (C), nanostructured agglomerates (N) and sintered-nanostructured agglomerates (S). Sintering alleviated the stresses introduced in the nanopowder by the manufacturing process (high energy ball milling). The coating porosity is a direct consequence of the powder melting degree, which is related to the feedstock porosity. The mechanical performance of the coatings is also closely associated with the powder melting degree. The N coatings present the highest surface roughness due to the lowest melting degree. The slightly higher hardness values of the N and S coatings, as compared to the C coatings, are attributed to the higher percentages of alpha-Al2O3 and the presence of nanostructure. The S coatings exhibit superior adhesion strength, relative fracture toughness and wear resistance, due to sintering consequences (intraparticle cohesion, strain relief, tough splat boundaries), random dispersion of coherent nanozones and stress dissipation at nanograin boundaries.
机译:涂层是通过空气等离子喷涂常规颗粒(C),纳米结构团块(N)和烧结纳米结构团块(S)形式的氧化铝粉末来沉积的。烧结减轻了制造过程(高能球磨)在纳米粉末中引入的应力。涂层孔隙度是粉末熔融度的直接结果,其与原料孔隙度有关。涂层的机械性能也与粉末熔融度密切相关。 N涂层由于最低的熔融度而具有最高的表面粗糙度。与C涂层相比,N和S涂层的硬度值稍高,这归因于较高的α-Al2O3百分比和纳米结构的存在。由于烧结的结果(颗粒内部的内聚力,应力释放,坚韧的扁晶边界),相干纳米区域的随机分散以及纳米颗粒边界处的应力消散,S涂层表现出优异的粘合强度,相对断裂韧性和耐磨性。

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