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Spraying power influence on microstructure and bonding strength of ZrSi2 coating for SiC coated carbon/carbon composites

机译:喷涂功率对SiC涂层碳/碳复合材料ZrSI2涂层微观结构和粘合强度的影响

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The objective of this current paper was to characterize the ZrSi2 coating deposited on the SiC coated carbon/carbon (C/C) composites by supersonic atmospheric plasma spraying (SAPS) at different spraying power. The microstructure, phase composition and bonding strength were investigated. In the process of spraying, a few of ZrSi2 powders were quickly oxidized to produce ZrO2, SiO2 and ZrSiO4 ceramic phases. These phases were randomly embedded in the ZrSi2 coating to enhance the mechanical performances of the coating to some extent. In addition, t-ZrO2 and c-ZrO2 phases formed above 1473 K might be converted into m-ZrO2 accompanied with 8% volume expansion, which can heal part of microcracks of the ZrSi2 coating. Therefore, only a few micro cracks and pores at the spraying power of 40 kW were found at the surface of ZrSi2 coating and no penetrative cracks existed in the cross section. Meanwhile, the bonding strength of the interface between the ZrSi2 and the SiC coating reached up to 11 N at 40 kW. In short, the SAPS technology was deemed to be a useful method to deposit the ZrSi2 coating on SiC coated C/C composites with high performance.
机译:本目前纸张的目的是在不同喷涂功率下表征沉积在SiC涂层碳/碳(C / C)复合材料上的ZrSI2涂层。研究了微观结构,相组合物和粘合强度。在喷涂过程中,迅速氧化ZrSI2粉末以生产ZrO2,SiO 2和ZrsiO4陶瓷相。将这些阶段随机嵌入ZrSI2涂层中,以在一定程度上增强涂层的机械性能。另外,在1473k上方形成的T-ZrO2和C-ZrO 2相可以转化为M-ZrO2,伴随8%的体积膨胀,这可以治愈ZrSI2涂层的一部分微裂纹。因此,在ZrSI2涂层的表面上仅发现在40kW的喷雾功率下仅少量微裂缝和孔,并且横截面中不存在穿透裂缝。同时,ZrSI2和SiC涂层之间的界面的粘合强度在40kW达到高达11N。简而言之,SAPS技术被认为是在具有高性能的SiC涂层C / C复合材料上沉积ZrSI2涂层的有用方法。

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