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Effect microwave sintering in enhancing the infrared transmittance properties of combustion synthesized nanostructured Y2O3 ceramics comprising La~(3+) ion in the matrix

机译:效果微波烧结在提高燃烧的红外透射性能方面,在基质中包含La〜(3+)离子的燃烧合成纳米结构Y2O3陶瓷

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Synthesis of nano particles of La~(3+) ion subsituted Y2O3 ceramics (~16nm) by a single step auto-igniting combustion technique, followed by microwave sintering to optimum density, and their remarkable infrared transmission characteristics are presented in this paper. The XRD pattern of the as prepared sample clearly indicates that the La~(3+) ions are effectively replacing Y~(3+)ions in the yttria cubic structure and it matches very well with the JCPDS file no-89-5591. As the percentage of La~(3+) increases a slight increase in lattice parameter was observed. The size of the crystallites were calculated using Scherrer formula and they found to be in the size range of 10-20 nra and the average size of the crystallites was 16 nm . The phase purity and nano nature of the crystallites were confirmed using HRTEM. The UV-Visible and FTIR spectroscopy were effectively used to characterise the powder and to obtain the transmittance properties of the sintered samples. The pellets with green density 52% of the theoretical density were sintered using a microwave furnace. The pellets achieved 99% of the theoretical density at 1520°C for a soaking duration of 20 minutes. The pellets were translucent and the SEM analysis revealed that they were well sintered with reduced average grain size of ~430nm. The pellet showed an enhanced transmittance of 77% in the UV-Visible region and 72% in the mid infrared region. The transmittance properties shown by the pellets are superior to those in the case of pure Y2O3 and is due to the superior powder quality and the fast uniform densification via microwave sintering. Microwave assisted sintering of the combustion synthesized powder is therefore a promising fabrication technique, especially for infrared transparent ceramics, which considerably reduces the sintering temperature, soaking duration, the grain size and enhances the transmittance properties.
机译:通过单台上一步的自动点火燃烧技术合成La〜(3+)离子局部的Y2O3陶瓷(〜16nm)的纳米颗粒,然后进行微波烧结以最佳密度,并在本文中提出了其显着的红外传输特性。作为制备样品的XRD图案清楚地表明La〜(3+)离子在ytTria立方结构中有效地替换Y〜(3+)离子,并且与JCPDS文件No-89-5591非常匹配。由于La〜(3+)的百分比增加了观察到晶格参数的轻微增加。使用Scherrer公式计算微晶的尺寸,并且它们发现在10-20 Nra的尺寸范围内,并且微晶的平均尺寸为16nm。使用HRTEM确认微晶的相纯度和纳米性质。 UV可见和FTIR光谱有效地用于表征粉末并获得烧结样品的透射性能。使用微波炉烧结具有绿色密度52%的颗粒。颗粒在1520℃下达到了99%的理论密度,以浸泡持续时间为20分钟。颗粒是半透明的,SEM分析显示,它们烧结,平均晶粒尺寸〜430nm的平均粒度。颗粒在UV可见区域中显示出77%的增强透射率,并且在中红外区域中的72%。粒料所示的透射性​​能优于纯Y2O3的情况下,并且由于微波烧结的优异粉末质量和快速均匀致密化。因此,燃烧合成粉末的微波辅助烧结是一种有希望的制造技术,特别是对于红外透明陶瓷,可显着降低烧结温度,浸泡持续时间,粒度,增强透射性能。

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