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Demonstration of Long Term Stability in Air at High Temperature for TiAlN Solar Selective Absorber Coatings

机译:TiAln太阳能选择性吸收器涂层高温下空气中长期稳定性的演示

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High thermal stability and resistance to oxidation at atmospheric conditions need to be critically proven to ensure a long lifetime of the receiver of concentrated solar power plants. In the present work, the titanium aluminum nitride tandem absorbers are showing one of the most promising selective coating solutions for solar receivers operating at high temperature. A series of samples were synthesized by vacuum plasma techniques in an industrial pilot-scale deposition machine. The structure consists in an Inconel 625 substrate with infrared reflective layer, followed by two TiAlN layers (tandem absorber) with refractive index gradation and covered with SiNCH, as an antireflective layer. A programmable electrical tubular furnace was used to apply cumulative aging tests on the samples under static ambient air at temperatures from 500°C to 690°C. One batch of samples was tested cumulatively in air at 500°C, for long-term representative aging, up to a total duration of 732 hours. Other samples were then submitted to cumulative accelerated aging in air at 630°C up to 264 hours, at 660°C up to 366 hours and at 690°C up to 156 hours. Spectral reflectance was systematically measured before and after aging. The results show that the optical properties did not change with aging, demonstrating long-term stability of optical properties at 500°C in air. EDS analysis revealed that the content in oxygen first increases then stabilizes over time (6 at.%), probably indicating the oxidation of the antireflective top layer SiNCH into SiO_2 (as was also shown by previous XPS analysis), which then acts both as a barrier for further oxidation and as antireflective material. For higher temperatures, a maximum decrease of solar absorptance of -0.11 was observed. However, emittance also tended to decrease, limiting the decrease of the resulting heliothermal efficiency. In all cases, SEM imaging did not show any physical changes in surface morphology with aging. Overall, this type of
机译:大气条件下的高热稳定性和对氧化的抗氧化需要严重证明,以确保集中的太阳能发电厂的接收器长寿。在本作工作中,氮化钛串联吸收剂显示出在高温下操作的太阳能接收器最有前途的选择性涂布溶液之一。通过工业试验型沉积机中的真空等离子体技术合成了一系列样品。该结构包括在具有红外反射层的Inconel 625基板中,其次是两个TiAln层(串联吸收剂),其具有折射率灰度和用SINCH覆盖,作为抗反射层。可编程电管炉用于在静态环境空气下在500℃至690℃的温度下对样品上的累积老化试验。在500℃的空气中累积地测试一批样品,用于长期代表性老化,高达732小时的总持续时间。然后将其他样品在630℃下在630℃下在空气中累积加速老化,在660℃下,高达366小时,在690℃下至多至156小时。在老化之前和之后系统地测量光谱反射率。结果表明,光学性质不随老化而改变,在空气中展示了500℃的光学性质的长期稳定性。 EDS分析表明,氧气中的含量首先增加,然后随时间稳定(6at。%),可能表明将抗反射顶层SONCH的氧化成SiO_2(如先前的XPS分析所示),然后作为a用于进一步氧化和抗反射材料的屏障。对于较高的温度,观察到-0.11的太阳能吸收率的最大降低。然而,膨胀也倾向于降低,限制了所得的精热效率的降低。在所有情况下,SEM成像未显示与老化表面形态的任何物理变化。总的来说,这种类型的

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