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   electric porcelain 在 电力工业 分类中 的翻译结果: 查询用时:0.7秒
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  电瓷
    Study of Grade Distribution of Pollution Zones of Electric Porcelain in Maanshan District
    马鞍山地区电瓷污区等级分布研究
短句来源
    Study on Relationship between Microstructure and Strength of High-stength Aluminious Electric Porcelain
    铝质高强度电瓷显微结构与强度关系的研究
短句来源
    Progress and Development Trend of High Tension Insulate Electric Porcelain
    高压电瓷材料的研究现状与发展趋势
短句来源
    DEVELOPMENT TREND OF HIGH TENSION ELECTRIC PORCELAIN
    高压电瓷材料的发展趋势
短句来源
    The relations between mechanical characterization and microstructure factors of the electric porcelain were suggested. The response factors of effect on the microstructure and strength of the electric porcelain was intended, which order is Al_2O_3 content>firing temperature>(K_2O+Na_2O)content>SiO_2 content.
    建立了电瓷材料力学性能与显微结构因素的关系,揭示了电 瓷材料强度和显微结构影响最敏感的因素及其先后顺序是:Al2O3含量>烧成温度T>(K2O +Na2O)含量>SiO2含量。
短句来源
  电瓷材料
    Progress and Development Trend of High Tension Insulate Electric Porcelain
    高压电瓷材料的研究现状与发展趋势
短句来源
    DEVELOPMENT TREND OF HIGH TENSION ELECTRIC PORCELAIN
    高压电瓷材料的发展趋势
短句来源
    The relations between mechanical characterization and microstructure factors of the electric porcelain were suggested. The response factors of effect on the microstructure and strength of the electric porcelain was intended, which order is Al_2O_3 content>firing temperature>(K_2O+Na_2O)content>SiO_2 content.
    建立了电瓷材料力学性能与显微结构因素的关系,揭示了电 瓷材料强度和显微结构影响最敏感的因素及其先后顺序是:Al2O3含量>烧成温度T>(K2O +Na2O)含量>SiO2含量。
短句来源
    STUDY ON THE MICROSTRUCTURE OF ALUMINA ELECTRIC PORCELAIN WITH HIGH STRENGTH
    高强度铝质电瓷材料显微结构的研究
短句来源
    The microstructure, the physical phase composition, and the mechanical characterization between structure of alumnae electric porcelain with high strength has been studied systematically by means of XRD, SEM, etc.
    借助于XRD、SEM等手段,系统地研究了铝质高强度电瓷材料的显微结构、物相组成 及性能与结构之间的差异特征。
短句来源
更多       
  电瓷
    Study of Grade Distribution of Pollution Zones of Electric Porcelain in Maanshan District
    马鞍山地区电瓷污区等级分布研究
短句来源
    Study on Relationship between Microstructure and Strength of High-stength Aluminious Electric Porcelain
    铝质高强度电瓷显微结构与强度关系的研究
短句来源
    Progress and Development Trend of High Tension Insulate Electric Porcelain
    高压电瓷材料的研究现状与发展趋势
短句来源
    DEVELOPMENT TREND OF HIGH TENSION ELECTRIC PORCELAIN
    高压电瓷材料的发展趋势
短句来源
    The relations between mechanical characterization and microstructure factors of the electric porcelain were suggested. The response factors of effect on the microstructure and strength of the electric porcelain was intended, which order is Al_2O_3 content>firing temperature>(K_2O+Na_2O)content>SiO_2 content.
    建立了电瓷材料力学性能与显微结构因素的关系,揭示了电 瓷材料强度和显微结构影响最敏感的因素及其先后顺序是:Al2O3含量>烧成温度T>(K2O +Na2O)含量>SiO2含量。
短句来源
  电瓷材料
    Progress and Development Trend of High Tension Insulate Electric Porcelain
    高压电瓷材料的研究现状与发展趋势
短句来源
    DEVELOPMENT TREND OF HIGH TENSION ELECTRIC PORCELAIN
    高压电瓷材料的发展趋势
短句来源
    The relations between mechanical characterization and microstructure factors of the electric porcelain were suggested. The response factors of effect on the microstructure and strength of the electric porcelain was intended, which order is Al_2O_3 content>firing temperature>(K_2O+Na_2O)content>SiO_2 content.
    建立了电瓷材料力学性能与显微结构因素的关系,揭示了电 瓷材料强度和显微结构影响最敏感的因素及其先后顺序是:Al2O3含量>烧成温度T>(K2O +Na2O)含量>SiO2含量。
短句来源
    STUDY ON THE MICROSTRUCTURE OF ALUMINA ELECTRIC PORCELAIN WITH HIGH STRENGTH
    高强度铝质电瓷材料显微结构的研究
短句来源
    The microstructure, the physical phase composition, and the mechanical characterization between structure of alumnae electric porcelain with high strength has been studied systematically by means of XRD, SEM, etc.
    借助于XRD、SEM等手段,系统地研究了铝质高强度电瓷材料的显微结构、物相组成 及性能与结构之间的差异特征。
短句来源
更多       

 

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  electric porcelain
Increasing the Al2O3 dispersity and using the isostatic pressing technique provide a route to improving the performance characteristics of electric porcelain.
      
The Role of Component Dispersity and Molding Pressure in the Manufacturing Technology of Electric Porcelain
      
Controlling technological properties of electric porcelain bodies
      
Effect of green density on the sintering of electric porcelain
      
Comparative assessment of methods of determining the strength of electric porcelain
      
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