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首页> 外文期刊>Journal of Materials Science >Recombination of silica and zirconia into zircon by means of laser treatment of plasma-sprayed coatings
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Recombination of silica and zirconia into zircon by means of laser treatment of plasma-sprayed coatings

机译:通过等离子喷涂涂层的激光处理将二氧化硅和氧化锆复合成锆石

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Self-supported zircon (ZrSiO4) coatings have been deposited by means of atmospheric pressure plasma spraying, a high growth rate deposition method. However, it is well known that ZrSiO4 dissociates into ZrO2 and SiO2 in the high-temperature plasma torch during plasma spraying, the rapid quenching preventing reverse combination of both components into ZrSiO4. Usually, high-temperature annealing (1,600-1,900 K) is applied to recombine SiO2 and ZrO2 into ZrSiO4. In this contribution, we investigate an attractive technological alternative to recombine SiO2 and ZrO2 into ZrSiO4 by laser treatment with a scanning continuous wave CO2 laser. By carefully adjusting the CO2 laser treatment parameters (laser power density and scanning velocity), we show that the SiO2 and ZrO2 phases indeed recombine into ZrSiO4, however, with a very low recombination rate. Thus, we have investigated the addition of SiO2-rich glassy particles to the plasma spray powders to facilitate the recombination of ZrO2, and SiO2 into ZrSiO4 during the laser treatment. Furthermore, the beneficial role of the glassy particles addition to substantially lower the annealing temperature during classical heat treatments has been studied. Available evidence indicates that the glassy particles melt during heat treatment, and thus favor the mobility and availability of silica at the ZrO2 grains, which results in a lowering of the reaction temperature and an enhancement of the reaction kinetics.
机译:自支撑锆石(ZrSiO4)涂层已通过大气压等离子体喷涂(一种高生长速率的沉积方法)进行沉积。然而,众所周知,在等离子喷涂期间,ZrSiO4在高温等离子炬中解离为ZrO2和SiO2,快速淬火防止了两种组分反向结合成ZrSiO4。通常,采用高温退火(1600-1,900 K)将SiO2和ZrO2重组为ZrSiO4。在这项贡献中,我们研究了一种有吸引力的技术替代方案,即通过使用扫描连续波CO2激光进行激光处理,将SiO2和ZrO2重组为ZrSiO4。通过仔细调整CO2激光处理参数(激光功率密度和扫描速度),我们显示SiO2和ZrO2相确实复合为ZrSiO4,但是复合率非常低。因此,我们研究了向等离子喷涂粉末中添加富含SiO2的玻璃状颗粒,以在激光处理过程中促进ZrO2和SiO2重组为ZrSiO4的过程。此外,已经研究了玻璃质颗粒的添加在经典热处理期间显着降低退火温度的有益作用。现有证据表明,玻璃状颗粒在热处理过程中会熔化,因此有利于二氧化硅在ZrO2晶粒上的移动性和可用性,从而降低了反应温度并提高了反应动力学。

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