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High-Temperature Tolerance in Multi-Scale Cermet Solar-Selective Absorbing Coatings Prepared by Laser Cladding

机译:激光熔覆制备的多尺度金属陶瓷太阳选择性吸收涂料的高温耐受性

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摘要

In order to achieve cermet-based solar absorber coatings with long-term thermal stability at high temperatures, a novel single-layer, multi-scale TiC-Ni/Mo cermet coating was first prepared using laser cladding technology in atmosphere. The results show that the optical properties of the cermet coatings using laser cladding were much better than the preplaced coating. In addition, the thermal stability of the optical properties for the laser cladding coating were excellent after annealing at 650 °C for 200 h. The solar absorptance and thermal emittance of multi-scale cermet coating were 85% and 4.7% at 650 °C. The results show that multi-scale cermet materials are more suitable for solar-selective absorbing coating. In addition, laser cladding is a new technology that can be used for the preparation of spectrally-selective coatings.
机译:为了获得在高温下具有长期热稳定性的金属陶瓷基太阳能吸收体涂层,首先在大气中使用激光熔覆技术制备了一种新型的单层,多层TiC-Ni / Mo金属陶瓷涂层。结果表明,使用激光熔覆的金属陶瓷涂层的光学性能比预先放置的涂层好得多。另外,在650℃下退火200小时后,激光熔覆涂层的光学性能的热稳定性优异。在650°C下,多尺度金属陶瓷涂层的日光吸收率和热发射率分别为85%和4.7%。结果表明,多尺度金属陶瓷材料更适合于太阳能选择性吸收涂层。另外,激光熔覆是一种可用于制备光谱选择性涂层的新技术。

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