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首页> 外文期刊>Journal of Thermal Spray Technology >The deformation and cooling of ceramic particles sprayed with a thermal radio-frequency plasma under atmospheric conditions
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The deformation and cooling of ceramic particles sprayed with a thermal radio-frequency plasma under atmospheric conditions

机译:大气条件下用热射频等离子体喷涂的陶瓷颗粒的变形和冷却

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摘要

Common thermal-spray techniques use the strong acceleration of powder particles to produce dense ceramic coatings with high bond strength. The residence time of the powder particles within the plasma jet is correspondingly low, and only relatively small particles can be molten. In this work, on the contrary, an inductively coupled radio-frequency (RF) inductively coupled plasma (ICP) torch was used to spray large oxide-ceramic powder particles under atmospheric conditions. The slow plasma flow of a RF plasma leads to large residence times of the powder particles, so that the powder size of the feedstock can be 100 μm and more. It was observed that these particles will not be strongly accelerated in the plasma and that their velocity at the moment of impact is in the range of 10 to 20 m/s. Ceramic coatings were ICP sprayed with a low porosity and a high bond strength, similar to direct current (DC) or high-velocity-oxygen-fuel (HVOF) sprayed coatings. The morphology of ICP-sprayed particles on smooth steel surfaces, as a function of the surface temperature, is described and compared with DC plasma-sprayed splats. Furthermore, the degree of deformation was measured and determined by different models, and the pronounced contact zones formed between the pancake and the substrate were investigated. The ICP-sprayed ceramic coatings show some special properties, such as the absence of metastable crystalline phases, which are common in other spray technologies.
机译:常见的热喷涂技术利用粉末颗粒的强加速作用来生产具有高粘结强度的致密陶瓷涂层。粉末颗粒在等离子体射流中的停留时间相应地很短,并且只能熔化相对较小的颗粒。相反,在这项工作中,使用感应耦合射频(RF)感应耦合等离子体(ICP)焊炬在大气条件下喷涂大的氧化物陶瓷粉末颗粒。 RF等离子体的缓慢的等离子体流动导致粉末颗粒的较大停留时间,因此原料的粉末尺寸可以为100μm以上。观察到这些粒子在等离子体中不会被强烈加速,并且在撞击时它们的速度在10至20 m / s的范围内。 ICP喷涂的陶瓷涂层具有低孔隙率和高粘结强度,类似于直流(DC)或高速氧燃料(HVOF)喷涂涂层。描述了光滑钢表面上ICP喷涂颗粒的形貌随表面温度的变化,并与DC等离子喷涂的片进行了比较。此外,通过不同的模型测量和确定变形程度,并研究了薄煎饼和底物之间形成的明显接触区域。 ICP喷涂的陶瓷涂层表现出一些特殊的性能,例如不存在亚稳态结晶相,这在其他喷涂技术中很常见。

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