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Thermal emittance of sputter deposited infrared reflectors in spectrally selective tandem solar absorbers

机译:光谱选择性串联太阳能吸收器中的溅射沉积红外反射器的热发射率

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摘要

The thermal emittance of infrared reflectors, deposited by DC-magnetron sputtering on glass substrates of spectrally selective solar absorbers was studied. The deposition process was optimized in order to decrease the thermal emittance of the absorber. The sputter deposition process was optimized with regard to applied power and argon pressure for nickel-vanadium, copper-nickel and copper. The results show that the thermal emittance of the infrared reflector in a tandem solar absorber can be reduced from 0.12 to 0.06 by replacing nickel-chromium by copper-nickel. The copper-nickel alloy has a higher deposition rate and is less sensitive to the sputtering conditions, which is also favorable in large-scale industrial production.
机译:研究了通过直流磁控溅射沉积在光谱选择性太阳能吸收器的玻璃基板上的红外反射器的热发射率。优化沉积工艺以降低吸收体的热发射率。溅射沉积工艺针对镍钒,铜镍​​镍和铜的施加功率和氩气压力进行了优化。结果表明,用铜镍代替镍铬可将串联式太阳能吸收器中红外反射器的热发射率从0.12降低至0.06。铜-镍合金具有较高的沉积速率并且对溅射条件较不敏感,这在大规模工业生产中也是有利的。

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