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Rugometric and Microtopographic Inspection of Cr–Cr2O3Cermet Solar Absorbers

机译:Cr–Cr2O3金属陶瓷太阳能吸收剂的粗度和微观形貌检查

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The development of new efficient and cost effective solar energy collectors andconverters either quantum or thermal attracts great attention and effort in a number ofresearch laboratories all over the world. Cr–Cr2O3cermet PVD coatings can be successfully employed in thermal converters. Their energy conversion efficiency depends on their chemical and physical structural characteristics and related optical properties like reflectance, emittance, solar light absorption, or absorptance and transmittance. Parameters such as roughness and topographic characteristics of the produced coatings will greatly influence their relevant optical properties. A careful evaluation of the coatings' roughness and their microtopographic inspection is fundamental. The Cr–Cr2O3cermet coatings sputter deposited on cooper and aluminium shows similar absorption (92%) but the first ones present a better emittance and higher waviness (over30%) with similar roughness. In comparison with commercially available solar panels with a slightly betterabsorption but worse emittance our coatings have a much lower waviness (~150%) and roughly50%higher roughness.
机译:新型高效,低成本的量子或热能太阳能收集器和转换器的开发吸引了全世界许多研究实验室的极大关注和努力。 Cr–Cr2O3金属陶瓷PVD涂层可成功用于热转换器。它们的能量转换效率取决于它们的化学和物理结构特征以及相关的光学特性,例如反射率,发射率,太阳光吸收率或吸收率和透射率。所产生涂层的粗糙度和形貌特征等参数将极大地影响其相关的光学性能。仔细评估涂层的粗糙度及其微观形貌检查至关重要。溅射沉积在铜和铝上的Cr-Cr2O3金属陶瓷涂层具有相似的吸收率(92%),但第一个涂层具有更好的发射率和更高的波纹度(超过30%),且具有相似的粗糙度。与吸收性稍好但发射率较差的市售太阳能电池板相比,我们的涂层的波纹度要低得多(约150%),粗糙度要高约50%。

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