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Preparation of solar selective absorbing CuO coating for medium temperature application

HUANG Qunwu, WANG Yiping, LI Jinhua

Frontiers of Chemical Science and Engineering 2007, Volume 1, Issue 3,   Pages 256-260 doi: 10.1007/s11705-007-0046-0

Abstract: The effects of reactant concentration, reaction temperature and reaction time on the absorptivity ofcoating is more heat-resistant, acid-resistant, and wear resistant than CuO coating, without losing absorptivity

Keywords: photoelectron spectroscopy     temperature     pretreatment     absorptivity     microscopy    

Characteristics and application of road absorbing solar energy

Zhihua ZHOU, Shan HU, Xiaoyan ZHANG, Jian ZUO

Frontiers in Energy 2013, Volume 7, Issue 4,   Pages 525-534 doi: 10.1007/s11708-013-0278-2

Abstract: The average solar collector efficiency of the system was 14.4%, and the average solar absorptivity of

Keywords: solar energy     road-solar energy system     road surface temperature     solar absorptivity of road surface     solar    

Analysis of radiation heat transfer and temperature distributions of solar thermochemical reactor for syngas production

Bachirou GUENE LOUGOU, Yong SHUAI, Xiang CHEN, Yuan YUAN, Heping TAN, Huang XING

Frontiers in Energy 2017, Volume 11, Issue 4,   Pages 480-492 doi: 10.1007/s11708-017-0506-2

Abstract: Different parameters including absorptivity, emissivity, reflection based radiation scattering, and carrier

Keywords: solar thermochemical reactor     incident radiation flux     temperature distribution     radiation absorptivity    

Influence of Particle Size on Laser Absorption and Scanning Track Formation Mechanisms of Pure Tungsten Powder during Selective Laser Melting Article

Jiayao Zhang, Dongdong Gu, Ying Yang, Hongmei Zhang, Hongyu Chen, Donghuai Dai, Kaijie Lin

Engineering 2019, Volume 5, Issue 4,   Pages 736-745 doi: 10.1016/j.eng.2019.07.003

Abstract: The influence of particle size on the powder-to-laser absorptivity and underlying absorption behaviorSimulation conclusions indicate that the absorptivity of the powder layers considerably exceeds the singleThe maximum absorptivity of the W powder layers reached 0.6030 at the particle size of 5 μm.

Keywords: Selective laser melting (SLM)     Tungsten     Ray-tracing model     Absorptivity     Laser scanning tracks    

Title Author Date Type Operation

Preparation of solar selective absorbing CuO coating for medium temperature application

HUANG Qunwu, WANG Yiping, LI Jinhua

Journal Article

Characteristics and application of road absorbing solar energy

Zhihua ZHOU, Shan HU, Xiaoyan ZHANG, Jian ZUO

Journal Article

Analysis of radiation heat transfer and temperature distributions of solar thermochemical reactor for syngas production

Bachirou GUENE LOUGOU, Yong SHUAI, Xiang CHEN, Yuan YUAN, Heping TAN, Huang XING

Journal Article

Influence of Particle Size on Laser Absorption and Scanning Track Formation Mechanisms of Pure Tungsten Powder during Selective Laser Melting

Jiayao Zhang, Dongdong Gu, Ying Yang, Hongmei Zhang, Hongyu Chen, Donghuai Dai, Kaijie Lin

Journal Article