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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of spraying parameters on the crystallinity and microstructure of solution precursor plasma sprayed coatings
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Effect of spraying parameters on the crystallinity and microstructure of solution precursor plasma sprayed coatings

机译:喷涂参数对溶液前体喷涂涂料结晶和微观结构的影响

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Solution precursor plasma spraying (SPPS) is a relatively new thermal spaying technique to produce advanced thermal barrier coatings (TBCs). The zirconium nitrate (Zr(NO3)(4)center dot 5H(2)O) and the ytterbium nitrate solution were used as precursor solution to prepare Yb2O3 stabilized ZrO2 (YbSZ) coatings by SPPS. The spraying distance and plasma power were varied to study the effect on the coating crystallinity and microstructure. The SEM images showed that YbSZ coatings had nanoparticles, agglomerations and pores. With the increase of the spraying distance and plasma power, a skeletal structure can be observed, and the particles were connected through the skeletal structure. The porosity of coatings was analyzed by image processing system. The average porosity of the YbSZ coatings increased from 34.6% to 39.9% with the spraying distance from 60 mm to 100 mm. And it decreased from 40.2% to 27.6% with the spraying power from 30 kW to 42 kW. The crystallinity was calculated according to the XRD patterns and the full width at half maximum (FWHM) of Raman peak. The results showed that the crystallinity was decreased from 75.2% to 23.8% while the FWHM varied from 32.1 to 37.9 cm(-1) when the spraying distance increased from 60 mm to 100 mm. And the crystallinity was increased from 12.7% to 35.6% while the FWHM varied from 40 to 32.9 cm(-1) when the plasma power increased from 30 kW to 42 kW. It appeared m-ZrO2 when the spraying distance was 60 mm. (C) 2018 Elsevier B.V. All rights reserved.
机译:溶液前体等离子体喷涂(SPP)是一种相对较新的热喷涂技术,用于生产先进的热阻挡涂层(TBC)。硝酸锆(Zr(NO 3)(4)中心点5H(2)O)和硝酸盐溶液用作前体溶液,通过SPP制备YB2O3稳定化ZrO2(YBSZ)涂层。改变喷涂距离和等离子体功率,以研究对涂层结晶度和微观结构的影响。 SEM图像显示YBSZ涂层具有纳米颗粒,附聚物和孔隙。随着喷涂距离和等离子体功率的增加,可以观察到骨架结构,并且通过骨架结构连接颗粒。通过图像处理系统分析涂层的孔隙率。 YBSZ涂层的平均孔隙率从34.6%增加到39.9%,喷洒距离为60 mm至100mm。它从30 kW到42 kW的喷涂功率从40.2%降至27.6%。根据XRD图案计算结晶度和拉曼峰的半最大(FWHM)的全宽度计算。结果表明,当喷射距离从60mm至100mm增加时,结晶度从75.2%降至23.8%,而FWHM在32.1至37.9cm(-1)中变化。结晶度从12.7%增加到35.6%,而当等离子体功率从30kW增加到42 kW时,FWHM从40〜32.9cm(-1)变化。当喷雾距离为60毫米时,它出现了M-ZrO2。 (c)2018年elestvier b.v.保留所有权利。

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