陶瓷釉料

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陶瓷釉料陶瓷釉料
  1. 纳米Al2O3与SiO2在陶瓷釉料中的应用

    The Ceramic Glaze Application of Al_2O_3 and SiO_2 Nanoparticles

  2. 十二烷基苯磺酸钠对抗菌陶瓷釉料分散稳定性的影响

    Effect of dodecylbenzenesulfonate on dispersion stability of antibacterial ceramic glaze

  3. 并说明了其在陶瓷釉料生产中所扮演的重要角色。

    It explains important role of vanadium in ceramic glaze .

  4. 遗传算法在陶瓷釉料配方研制中的应用

    Genetic algorithms method practical application for optimizing ceramic glaze

  5. 稀土氧化物对纳米抗菌陶瓷釉料性能的影响

    The effect of mixed rare earth oxide on the performance of nanometre antibacterial glaze

  6. 硅溶胶在陶瓷釉料中的应用

    Application of Silica Sol in Porcelain Glaze

  7. 一种耐热陶瓷釉料的成分分析

    Ingredient Analysis of a Heat-Resisting Porcelain Glaze

  8. 稀土陶瓷釉料的研究

    A study on rare earth ceramics glaze

  9. 利用钾长花岗岩石材废料制备陶瓷釉料

    Ceramic Glaze Preparation with K-Feldspar Granite Waste

  10. 是专业生产、研发和营销建筑陶瓷釉料的综合性企业。

    A professional production , research and development and marketing of construction ceramic glaze comprehensive enterprise .

  11. 澳洲锂辉石在不同陶瓷釉料中的应用

    Australian spodumene in various ceramic glazes

  12. 陶瓷釉料熔块质量控制

    Ceramic glaze frits quality control

  13. 蓄能发光陶瓷釉料的研究

    Study on luminance ceramic glazes

  14. 将混合稀土氧化物添加到含银系纳米抗菌剂的陶瓷釉料中,在氧化气氛中1180℃温度下经烧成可制得纳米抗菌建筑卫生陶瓷。

    Using mixed rare earth oxide as a composition of nanometer antibacterial glaze , antibacterial ceramics are made by sintering at1180 ℃ in air condition .

  15. 低温釉料存在难与坯体结合、容易产生釉面缺陷、发光性能差、应用范围窄等缺点。关于中高温发光陶瓷釉料的研究,目前报道甚少。

    The low temperature luminescent ceramic glaze have many weakness such as combining with body difficultly , creating flaw on the surface of glaze easily , bad luminescent capability and narrow of application , etc.

  16. 经生产实践表明,该系统获得了较高质量的陶瓷釉料产品,提高了生产效率,降低了生产与管理成本,具有较高的应用价值。

    This manufacture practice shows that the efficiency and quality of the ceramic glaze product can be improved , and the cost of manufacture and management can be reduced . The system has a very good value of application .

  17. 陶瓷色釉料生产中水污染的处理

    The Treatment of Water Pollution form Ceramic Colorant - Glaze Industry

  18. 亚硝基红盐吸光光度法测定陶瓷色釉料中的钴

    Spectrophotometric Determination of cobalt in ceramic stains & glazes by Nitroso R salt

  19. 陶瓷坯釉料配方优化算法及其实现

    The optimal algorithm of semifinished product and glaze formulation of the ceramics and its realize

  20. 陶瓷发光釉料的研制

    The Development of the Phosphorescent Pottery Glaze

  21. 陶瓷坯釉料配方最优化计算是陶瓷工艺中的关键技术之一。

    The optimal calculation of semifinished product and glaze formulation of the ceramics is one of key technologies in the ceramic industry .

  22. 本课题通过研究基础釉的配方组成、发光粉的加入量、施釉和烧成等工艺条件,制备了在1130℃烧成,并具有长余辉发光特性的陶瓷发光釉料。

    As a result , the ceramic glaze , which is made up from the coated-powder , would be sintered in1130 ℃ while was1080 ℃ in the past .

  23. 此外,颜料在陶瓷高温釉料中应用实验表明:该颜料可以在1320℃的高温釉中稳定着色,是一种较好的高温棕红色陶瓷颜料。

    In addition , the coloring application of the pigment in high temperature glaze showed that the synthesized pigment is a good high temperature ceramics pigment that could stably color ceramic glaze at 1 320 ℃ .

  24. 由于锆基色料呈色稳定性好、呈色力强、混溶性好、色泽纯正,因而电熔氧化锆在陶瓷色釉料中的用量增加。

    The utility quantity of zirconia by electric smelting in color frit on the pottery is increasing because zirconia matrix frit has a good stability and capability for coloration , excellent mixture harmonization , and a pure color .

  25. 胭脂红酸分光光度法测定陶瓷颜料、釉料和玻璃中的氧化硼

    Carminic Acide Spectrophotometric Method for the Determination of Boron Oxide in Ceramic Colours 、 Glazes and Glasses

  26. 在对广西气刀土原料性能研究的基础上,进行了在卫生陶瓷坯料、釉料中的应用研究。

    The applications of Guangxi-Qidao clay in ceramic paste and glaze of sanitary wares are studied on the basis of the study about the clay 's raw material capability .

  27. 陶瓷工艺变化对釉料系统的影响

    The effect of changes of ceramic processing on glaze compositions

  28. 陶瓷砖装饰用釉料-微晶玻璃釉

    Decoration Glaze for Ceramic Tile Based on Glass Ceramic System

  29. 本文针对近年来迅速发展的建筑陶瓷装饰技术和与此紧密相关的陶瓷色釉料的进展状况进行了综述和展望。

    This paper summarizes the rapid development of architectural ceramics decoration technology and its closely related progress with ceramic pigments and colored glazes as well as its future prospects .