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首页> 外文期刊>Surface & Coatings Technology >Microstructure modifications and phase transformation in plasma-sprayed WC-Co coatings following post-spray spark plasma sintering
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Microstructure modifications and phase transformation in plasma-sprayed WC-Co coatings following post-spray spark plasma sintering

机译:喷涂后火花等离子体烧结后等离子喷涂的WC-Co涂层的微观结构改性和相变

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摘要

Thermal sprayed tungsten carbide (WC)-cobalt (Co) coatings have been extensively employed as abrasion/wear protective layers. However, carbon loss (decarburization) of WC-Co powders during thermal spraying reduces the efficiency of the coatings against abrasive wear. Post-spray treatment with spark plasma sintering (SPS) technique was conducted on plasma-sprayed WC-Co coatings in the present study with the aim to compensate the lost carbon in the coatings. X-ray diffraction (XRD), scanning electron microscope (SEM), and transmission electron microscope (TEM) were utilized to characterize the microstructure and phase changes in the coatings brought about through the SPS treatment. Results showed that the rapid SPS technique is successful in supplying superfluous carbon for the restoration of WC in the coating through phase transformation from W2C or reaction with W Predominant presence of WC was revealed in the coatings treated with SPS at 800 degrees C and up to 6 min. Furthermore, changes in microstructure, e.g., grain size growth, redistribution of various indigenous phases, were revealed within the coatings after the SPS treatment. It was found that the SPS-induced WC reconstruction can apparently be achieved within the coating surface with limited thickness (< 10 mu m). Transmission electron microscopy (TEM) results also showed the evidence of supplementary reaction between Co and WC/W2C to form Co3W3C during the SPS processing. Microhardness values obtained on the surface of SPS-treated coating showed similar to 40% enhancement over as-sprayed surface. (c) 2004 Elsevier B.V. All rights reserved.
机译:热喷涂碳化钨(WC)-钴(Co)涂层已被广泛用作磨损/磨损保护层。但是,热喷涂过程中WC-Co粉末的碳损失(脱碳)会降低涂层抵抗磨料磨损的效率。在本研究中,对等离子喷涂的WC-Co涂层进行了火花等离子烧结(SPS)技术的后喷涂处理,目的是补偿涂层中的碳损失。利用X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)来表征通过SPS处理产生的涂层的微观结构和相变。结果表明,快速SPS技术成功地提供了多余的碳,用于通过W2C的相变或与W反应来恢复涂层中的WC。在800℃和最高6℃SPS处理的涂层中发现了WC的主要存在。分钟此外,在SPS处理后的涂层内揭示出微观结构的变化,例如晶粒尺寸的增长,各种原始相的重新分布。已经发现,可以在厚度有限(<10μm)的涂层表面内实现SPS诱导的WC重建。透射电子显微镜(TEM)结果还显示了在SPS加工过程中Co与WC / W2C之间形成C3W3C的补充反应的证据。经SPS处理的涂层表面获得的显微硬度值比喷涂表面提高了40%。 (c)2004 Elsevier B.V.保留所有权利。

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