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rice hull ash
相关语句
  稻壳灰
    THE PROPERTIES OF SiC-COATING FORMED THROUGH REACTION OF RICE HULL ASH WITH GRAPHITE
    石墨与稻壳灰制取的碳化硅涂层特性
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  rice hull ash
Hydrothermal synthesis of cements from rice hull ash
      
This paper focuses on the application of silica rich, rice hull ash (RHA) from the rice industry as filler in polypropylene (PP).
      
Effect of coupling agents on the crystallinity and viscoelastic properties of composites of rice hull ash-filled polypropylene
      
Calcium silicate cements obtained from rice hull ash: A comparative study
      
Silanol groups that are present on the surface of rice hull ash or silica ash fillers can positively influence the reinforcing character of the filler.
      
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This paper described the formation of SiC-coating from the reaction of rice hull ash with graphite at temperature (16b0±50)℃. It was investigated that the thinkness of SiC-coating and its density increased with holding time. The interface bonding strength and thermal shock resistance of high porosity graphite were lower than that of low porosity one, and in respect of resistance against oxidation burn-off, the low porosity graphite was superior to the high porosity one.X-ray diffraction study showed SiC-coating...

This paper described the formation of SiC-coating from the reaction of rice hull ash with graphite at temperature (16b0±50)℃. It was investigated that the thinkness of SiC-coating and its density increased with holding time. The interface bonding strength and thermal shock resistance of high porosity graphite were lower than that of low porosity one, and in respect of resistance against oxidation burn-off, the low porosity graphite was superior to the high porosity one.X-ray diffraction study showed SiC-coating consists of β-SiC and SEM determination discovered SiC-coating with network crystal.

研究了稻壳灰与不同孔隙度石墨在(1650±50)℃反应生成碳化硅涂层的特性.涂层的厚度和密度随加温时间的延长而增大,高孔隙的电极石墨,其涂层的界面结合强度和抗热震性优于低孔隙的高纯石墨;涂层的抗氧化烧蚀则后者优于前者.X射线衍射分析表明,涂层为β晶型碳化硅,用X650扫描电镜观察,碳化硅涂层呈网状结构.

 
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