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    • 83. 发明申请
    • OPTICALLY ACTIVE MULTILAYER SYSTEM FOR SOLAR ABSORPTION
    • 用于太阳能吸收的光学活性多层系统
    • US20120224256A1
    • 2012-09-06
    • US13509179
    • 2010-11-05
    • Reinhard Dasbach
    • Reinhard Dasbach
    • G02B1/11
    • F24S70/25B23K26/009B23K26/18B23K26/242B23K26/32B23K26/323B23K26/324B23K2103/05B23K2103/08B23K2103/10B23K2103/12B23K2103/14B23K2103/172B23K2103/26B23K2103/52F24S70/30F28F2275/067Y02E10/40
    • The present invention pertains to a composite material for use as a selective solar absorber with a carrier layer (1), wherein at least the following layers are present on a side (B) of the carrier layer: A reflection layer (3), an absorber layer (5) and a dielectric and/or oxidic antireflection layer (7), wherein a layer (4) consisting of a nitride, a carbide or a carbonitride of a metal or of a mixture of two or more metals from subgroup IV, V or VI is located between absorber layer (5) and reflection layer (3), and an optically active layer (6) consisting of a metal compound with stoichiometric composition is located between absorber layer (5) and the dielectric antireflection layer (7).In addition, the present invention pertains to a composite material for use as a selective solar absorber with a carrier layer (1) consisting of aluminum or an aluminum alloy, wherein an optically active layer (8), which reduces the reflection of the uncoated carrier material by at least 5% at a specific wavelength in λ the wavelength range between 200 nm and 10 μm and preferably between 200 nm and 2,500 nm during irradiation at a specific incidence angle and reduces the reflection of the uncoated carrier material by no more than 20% and preferably by no more than 5% in the wavelength range between 2.5 μm, is located on a side (A) of the carrier layer.
    • 本发明涉及一种用作具有载体层(1)的选择性太阳能吸收体的复合材料,其中至少以下层存在于载体层的一侧(B)上:反射层(3), 吸收层(5)和电介质和/或氧化抗反射层(7),其中由金属的氮化物,碳化物或碳氮化物或来自亚组IV的两种或更多种金属的混合物组成的层(4) V或VI位于吸收层(5)和反射层(3)之间,并且由具有化学计量组成的金属化合物组成的光学活性层(6)位于吸收层(5)和电介质抗反射层(7)之间, 。 此外,本发明涉及一种用作具有由铝或铝合金构成的载体层(1)的选择性太阳能吸收器的复合材料,其中光学活性层(8)减少未涂覆载体的反射 材料在特定波长λ至少为5%,波长范围为200nm至10μm之间,优选为200nm至2,500nm之间,以特定入射角照射时,将未涂覆载体材料的反射减少不超过20 在2.5μm的波长范围内,优选不超过5%,位于载体层的一侧(A)上。