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首页> 外文期刊>Journal of Materials Science >THE FORMATION OF HOLLOW SPHERICAL CERAMIC OXIDE PARTICLES IN A DC PLASMA
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THE FORMATION OF HOLLOW SPHERICAL CERAMIC OXIDE PARTICLES IN A DC PLASMA

机译:直流等离子体中空心球形陶瓷氧化物的形成

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摘要

Investigations have been carried out to determine the conditions that lead to the production of spherical hollow ceramic oxide particles during melting in a d.c. plasma jet. Reports in the literature indicated that such ceramic particles were formed by plasma spraying spray dried agglomerates, but precise details of the conditions necessary for their formation were not stated. In this study it is shown that for hollow particles to be formed several conditions had to be met. Spherical spray dried agglomerates had to be used as starting materials, the material being sprayed had to melt over a narrow temperature range and the size of the particles had to exceed a certain diameter. Experiments, using yttria, showed that the relative size of the pore was dependent on particle diameter, and it has been proposed that the major controlling factor that influences this dependence is the escape of gas trapped in the spray dried agglomerate during melting rather than surface tension or undercooling which were shown to produce only minor effects. In addition, the results also showed that the nature of porosity within the hollow particles as well as the surface morphology was dependent on the material being sprayed. [References: 21]
机译:已经进行了研究以确定在直流熔化过程中导致产生球形空心陶瓷氧化物颗粒的条件。等离子射流。文献报道指出,这种陶瓷颗粒是通过等离子喷涂喷雾干燥的附聚物形成的,但是没有详细说明形成它们的条件。在这项研究中表明,要形成空心颗粒,必须满足几个条件。球形喷雾干燥的附聚物必须用作起始材料,被喷雾的材料必须在狭窄的温度范围内熔化,并且颗粒的尺寸必须超过一定的直径。使用氧化钇进行的实验表明,孔的相对大小取决于粒径,并且提出了影响这种依赖性的主要控制因素是熔融过程中滞留在喷雾干燥的团块中的气体逸出而不是表面张力或过冷,仅会产生很小的影响。另外,结果还表明,中空颗粒内的孔隙性质以及表面形态取决于所喷涂的材料。 [参考:21]

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