首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Optical simulation, characterization and thermal stability of Cr2O3/Cr/Cr(2)O(3)multilayer solar selective absorber coatings
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Optical simulation, characterization and thermal stability of Cr2O3/Cr/Cr(2)O(3)multilayer solar selective absorber coatings

机译:CR2O3 / Cr / Cr(2)O(3)多层太阳能选择性吸收剂涂料的光学仿真,表征和热稳定性

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Cr2O3/Cr/Cr2O3 multilayered selective solar absorber coating was deposited onto stainless steel substrates using electron beam vacuum evaporation at room temperature. The optical constants of the individual layers were obtained from reflectance measurements fitted by CODE software using the suitable dielectric function model, and showed that both Cr2O3 layers were dielectric in nature, while the Cr layer was semi-transparent due to its low thickness. Then, the experimental reflectance spectrum of the SS/Cr2O3/Cr/Cr2O3 solar absorber was successfully simulated using CODE software. It was found that this coating exhibited a good spectral selectivity of 0.82/0.21 at 300 degrees C. The effect of annealing on the structural, morphological, mechanical and optical properties of the SS/Cr2O3/Cr/Cr(2)O(3)solar absorber was investigated. SEM revealed an increase in Cr2O3 crystal size after annealing at 400 degrees C for 24 h in air, this leads to a surface smoothing illustrated by a decrease in roughness. The structural investigations of the annealed multilayered coatings showed a decrease in intensity of the stainless steel XRD peak linked to the increase in crystallinity of Cr2O3. Nanoindentation measurements showed that after annealing the samples were more resistant to mechanical solicitations as compared to as-deposited samples. Optical analysis showed that the sample annealed at 400 degrees C for 24 h exhibited higher absorptivity alpha = 0.89 and lower emissivity epsilon at 300 degrees C = 0.15than the as-deposited sample due to material structuring with temperature, which is promising for mid-to high temperature concentrated solar power applications in air. Coating optimization in CODE also indicated that alpha could be further improved to 0.916 without increasing emissivity. (C) 2018 Elsevier B.V. All rights reserved.
机译:使用电子束真空蒸发在室温下沉积CR2O3 / Cr / Cr2O3多层选择性太阳能吸收涂层。各个层的光学常数由代码软件的反射测量获得,使用合适的介电函数模型,并显示了CR2O3层本质上是电介质,而Cr层由于其低厚度而半透明。然后,使用代码软件成功模拟SS / CR2O3 / CR / CR / CR2O3太阳能吸收器的实验反射谱。发现该涂层在300摄氏度下表现出0.82 / 0.21的良好光谱选择性。退火对SS / Cr2O3 / Cr / Cr(2)O(3)的结构,形态,机械和光学性质的影响考察了太阳能吸收器。 SEM显示在空气中以400℃的400℃退火后CR2O3晶体尺寸的增加,这导致表面平滑通过粗糙度降低。退火多层涂层的结构研究表明,与CR2O3的结晶度的增加有关的不锈钢XRD峰的强度降低。纳米肾脏测量表明,与沉积的样品相比,退火后,样品更耐受机械偶然的含量。光学分析表明,在400℃下退火24小时的样品呈现出较高吸收性α= 0.89,并且在300摄氏度下较低的发射率ε= 0.15,由于具有温度的材料结构,这是对中间的材料有前途的沉积样品。高温浓缩太阳能电力应用在空气中。代码中的涂层优化也表明,在不增加发射率的情况下,α可以进一步提高到0.916。 (c)2018年elestvier b.v.保留所有权利。

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