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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >In-situ synthesis and thermal shock resistance of cordierite/silicon carbide composites used for solar absorber coating
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In-situ synthesis and thermal shock resistance of cordierite/silicon carbide composites used for solar absorber coating

机译:用于太阳能吸收体涂层的堇青石/碳化硅复合材料的原位合成和耐热冲击性能

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摘要

Cordierite/silicon carbide (SiC) composite ceramics with 10, 20 and 30 wt% cordierite were in-situ prepared via pressureless firing technique using silicon carbide, alumina, Kaolin and talc as starting materials. The results show that the synthesized composites all exhibited the good physical and mechanical properties. Among those, A2 composite with 20 wt% in-situ cordierite fired at 1280 °С exhibited the better bending strength and thermal shock resistance. The improvement of thermal shock resistance could be attributed to the proper cordierite wrapped around SiC, the homogeneous distribution of pores, the well-grown grains, as well as the formation of some glass phase. During the thermal shock test, a small amount of glass phases generated from the oxidation of SiC could react with Al_2O_3 and MgO, and then more cordierite was formed due to the incorporation of nucleating agent TiO_2. With in-situ cordierite content rising, both absorptance and emittance of composite reduced, but A2 composite had the better absorbing ability for the solar energy. It is believed that these in-situ cordierite/SiC composites should be a promising candidate to apply in the field of solar absorber coating owing to the better thermal shock resistance and absorptance of solar energy.
机译:通过无压烧结技术,以碳化硅,氧化铝,高岭土和滑石粉为起始原料,就地制备了堇青石/碳化硅(SiC)复合陶瓷,其中堇青石的含量为10、20和30%。结果表明,合成的复合材料均具有良好的物理和机械性能。其中,以1280°C烧成的20%原位堇青石A2复合材料表现出更好的弯曲强度和耐热冲击性。耐热冲击性的提高可归因于适当的堇青石包裹在SiC周围,孔隙分布均匀,晶粒长大,以及一些玻璃相的形成。在热冲击试验中,SiC氧化产生的少量玻璃相可能与Al_2O_3和MgO反应,然后由于成核剂TiO_2的引入形成了更多的堇青石。随着原位堇青石含量的增加,复合材料的吸收率和发射率均降低,但A2复合材料对太阳能的吸收能力更好。人们相信,由于更好的抗热冲击性和太阳能吸收性,这些原位堇青石/ SiC复合材料应该是在太阳能吸收剂涂层领域中应用的有前途的候选者。

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