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THE OPTIMIZATION FORMULA DESIGN OF Cu_xZn_(1-x)O INFRARED RADIATION MATERIAL AND COATING SLURRY

机译:CU_XZN_(1-X)O红外辐射材料和涂层浆料的优化公式设计

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摘要

Infrared radiation material (IRM) is main content for coating slurry applied on the inner surface of industrial furnaces, which improve heat transfer and efficiency of furnaces can rise by 5%~30%. In this paper, the Cu_xZn_(1-x)O infrared radiation material that can greatly improve the materials' emissivity and the coating slurry were prepared. X-ray diffraction analysis, differential thermal analysis and scanning electron microscope-energy dispersive spectrum analysis indicate that the IRM was prepared successfully. The emissivity of three wavebands was measured. In order to obtain higher emissivity, optimization models were proposed and with calculation by Matlab software, the optimal molar content of CuO can be obtained as 3.6% in IRM and the optimal formula for coating slurry which includes IRM, dispersant, thickener and adhesive was obtained. The emissivity of the coating under the optimal formula was measured to be 0.965 and 0.958 in two main waveband which is in agreement with optimized calculation.
机译:红外辐射材料(IRM)是涂覆在工业炉内表面上涂覆浆料的主要含量,这提高了炉子的热传递和效率可以上升5%〜30%。在本文中,制备了可以大大改善材料的发射率和涂层浆料的CU_XZN_(1-x)O红外辐射材料。 X射线衍射分析,差分热分析和扫描电子显微镜 - 能量分散频谱分析表明IRM成功制备。测量了三波带的发射率。为了获得更高的发射率,提出了优化模型并通过Matlab软件计算,CuO的最佳摩尔含量可以在IRM中获得3.6%,并获得包括IRM,分散剂,增稠剂和粘合剂的涂覆浆料的最佳配方。在两个主波带中测量最佳配方下的涂层的发射率为0.965和0.958,这与优化的计算一致。

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