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Application of CuCoMnO_x coat by sol gel technique on aluminum and copper substrates for solar absorber application

机译:溶胶凝胶技术CuCoMnO_x涂层在铝和铜基体上用于太阳能吸收剂的应用

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摘要

Solar thermal heaters are used widely in domestic and industrial applications. The main part of solar thermal heaters is the absorber surface which must have a maximum absorptivity (α) and minimum emissivity (ε) of solar radiation. This is achieved by application of selective coating on the absorber surface. In the present work, solar selective CuCoMnO_x spinel films are deposited by sol gel technique using a dip-coating technique on copper and aluminum sheets. The precursor's ratio Co:Cu:Mn applied is 1:3:3. Different precursor molar ratios were combined with a fixed amount of solvents for the coating process. Process parameters such as withdrawal rate, heat treatment, and substrate materials on the coat characteristics and optical properties were studied. The coated metallic samples were heat treated at 450℃ for 30 min in the case of aluminum and at 200℃ at different times in the case of copper. Optical properties of the coatings, namely absorptivity (α) and emissivity (ε) were measured and the deposition process parameters were optimized in order to produce the maximum selectivity (α/ε) values. The deposition parameters were found to influence both the thickness and surface roughness of the coatings. As the coating thickness decreases, the absorptivity increases while the emis- sivity decreases irrespective of the substrate material. It was also observed from the results that when applying the coat on aluminum substrates, a maximum selectivity value of (α/ε) = 31 was realized while for the copper substrates a maximum value of (α/ε) = 81.8 was obtained. The deposited coatings were analyzed using SEM, XRD, and AFM.
机译:太阳能加热器广泛用于家庭和工业应用中。太阳能热加热器的主要部分是吸收体表面,该吸收体表面必须具有太阳辐射的最大吸收率(α)和最小发射率(ε)。这是通过在吸收体表面施加选择性涂层来实现的。在目前的工作中,使用浸涂技术通过溶胶凝胶技术在铜和铝板上沉积太阳选择性CuCoMnO_x尖晶石膜。施加的前体比率Co:Cu:Mn为1:3:3。将不同的前体摩尔比与固定量的溶剂混合以进行涂覆过程。研究了诸如抽提率,热处理和基材材料等工艺参数对涂层特性和光学性能的影响。对于铝,涂覆的金属样品在450℃下热处理30分钟;对于铜,在200℃下不同时间热处理。测量了涂层的光学性能,即吸收率(α)和发射率(ε),并优化了沉积工艺参数,以产生最大的选择性(α/ε)值。发现沉积参数影响涂层的厚度和表面粗糙度。随着涂层厚度的降低,吸收率增加,而发射率降低,而与基材的材料无关。从该结果还观察到,当在铝基板上施加涂层时,实现了(α/ε)= 31的最大选择性值,而对于铜基板,获得了(α/ε)= 81.8的最大值。使用SEM,XRD和AFM分析沉积的涂层。

著录项

  • 来源
    《JCT》 |2014年第6期|979-991|共13页
  • 作者单位

    Design and Production Engineering Department, Faculty of Engineering, Ain Shams University, Abasia, Cairo, Egypt,The German University in Cairo, New Cairo City - Al Tagamoa Al Khames, Cairo, Egypt;

    Central Metallurgical Research Center, ElTebbin, Helwan, Cairo, Egypt;

    The German University in Cairo, New Cairo City - Al Tagamoa Al Khames, Cairo, Egypt;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sol-gel; CuCoMnO_x selective coating; Optical properties; Surface characteristics;

    机译:溶胶凝胶CuCoMnO_x选择性涂层;光学性质;表面特性;

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