Volume 47 Issue 11
Jan.  2019
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Xiu Dapeng, Xu Jianhua, Zhou Jixue, Zhang Suqing, Zhao Guochen. Research on development and its performance of far-infrared radiation black porcelain plate[J]. Infrared and Laser Engineering, 2018, 47(11): 1104002-1104002(5). doi: 10.3788/IRLA201847.1104002
Citation: Xiu Dapeng, Xu Jianhua, Zhou Jixue, Zhang Suqing, Zhao Guochen. Research on development and its performance of far-infrared radiation black porcelain plate[J]. Infrared and Laser Engineering, 2018, 47(11): 1104002-1104002(5). doi: 10.3788/IRLA201847.1104002

Research on development and its performance of far-infrared radiation black porcelain plate

doi: 10.3788/IRLA201847.1104002
  • Received Date: 2018-06-13
  • Rev Recd Date: 2018-07-17
  • Publish Date: 2018-11-25
  • The black porcelain far-infrared radiation plate, which is made of vanadium slag, has a wide range of sintering temperature, extrusive coloring role and excellent ceramic performance. The content of transition metal oxide in the fouth cycle is more than 80%. The radiation rate was up to 0.95, and after 2 000 hours of 650℃ accelerated aging test, the radiation rate does not change, and the surface layer does not fall off. By SEM analysis on fracture morphology and microstructure, the blank plate was composed of ilmenite, board-ilmenite and anemousite, and the particles were mechanically mixed, and black porcelain plate was composed of grain, vitreous body and pore, and most metal oxide in raw material were enriched in the grain, and the formation of cordierite and spodumene, zircon and other minerals were surrounded by vitreous body, which has excellent chemical stability. Non-toxic, harmless, non-radioactive, was a kind of far-infrared radiant of low cost, long life, high efficiency.
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    [2] Pan Yongkang. Development of modern drying technology in China[J]. General Purpose Machinery, 2005(8):42-43. (in Chinese)
    [3] Liu Jie, Meng Junping, Liang Jinsheng, et al. Effect of far infrared radiation ceramics containing rare earth additives on surface tension of water[J]. Journal of Rare Earths, 2014, 32(9):25-30. (in Chinese)
    [4] Liang Jinsheng, Wang Lijuan, Xu Gangke. Far infrared radiation property of rare earth mineral composite materials[J]. Journal of Rare Earths, 2006, 24(1):58-65.(in Chinese)
    [5] Tanaka F, Verboven P, Scheerlinck N, et al. Nicolai. Investigation of far infrared radiation heating as an alternative technique for surface decontamination of strawberry[J]. Journal of Food Engineering, 2006, 79(2):153-159.
    [6] Rao Ri, Sun Guocai. Research and application of high performance infrared radiation ceramic materials[J]. Journal of Geosciences, 2004, 22(3):321(in Chinese)
    [7] Xia Dehong, Li Baoshan. The energy-saving technology of high emissivity coatings is applied under the condition of electric radiation heating[J]. Industrial Heating, 2002, 19(3):18-21. (in Chinese)
    [8] Liu Weiliang, Luo Suming. The study of infrared ceramic powder and far infrared daily-use ceramics at ambient temperature[J]. Journal of Ceramics, 2002, 23(1):14-17. (in Chinese)
    [9] Jiang Xin, Dai Honglian. New technology of ceramic sintering[J]. Ceramic Research, 2001, 16(4):25-28. (in Chinese)
    [10] Li Shiguang. Application of high temperature far infrared radiation coatings in industrial furnaces[J]. Applied Energy Technology, 2017(8):46-47. (in Chinese)
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Research on development and its performance of far-infrared radiation black porcelain plate

doi: 10.3788/IRLA201847.1104002
  • 1. Advanced Materials Institute,Qilu University of Technology(Shandong Academy of Sciences),Jinan 250014,China

Abstract: The black porcelain far-infrared radiation plate, which is made of vanadium slag, has a wide range of sintering temperature, extrusive coloring role and excellent ceramic performance. The content of transition metal oxide in the fouth cycle is more than 80%. The radiation rate was up to 0.95, and after 2 000 hours of 650℃ accelerated aging test, the radiation rate does not change, and the surface layer does not fall off. By SEM analysis on fracture morphology and microstructure, the blank plate was composed of ilmenite, board-ilmenite and anemousite, and the particles were mechanically mixed, and black porcelain plate was composed of grain, vitreous body and pore, and most metal oxide in raw material were enriched in the grain, and the formation of cordierite and spodumene, zircon and other minerals were surrounded by vitreous body, which has excellent chemical stability. Non-toxic, harmless, non-radioactive, was a kind of far-infrared radiant of low cost, long life, high efficiency.

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