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sioc

  • 网络碳氧化硅;上海有机化学研究所;上海有机所;战略情报作业中心
siocsioc
  1. Preparation of SiOC composite material using high-energy heavy ion irradiation

    高能重离子辐照制备SiOC复合材料的研究

  2. Progress of SIOC Chemical Databases on Internet

    SIOC化学数据库的网络化进展

  3. On increasing temperature , a dense coating of SiO2 formed at the surface of SiOC samples .

    随着温度的升高,氧化反应加剧,并在样品表明形成一层致密的SiO2。

  4. Fabrication of SiOC Ceramic Foam with Silicon Resin and Polyvinyl Butyral

    以PVB为造孔剂采用硅树脂制备泡沫陶瓷

  5. The presence of oxygen in environment will induce the oxidation of SiOC ceramics , and affect the redistribution reactions .

    环境中氧元素的存在将会导致SiOC陶瓷中氧化反应的发生,并且影响键重排反应。

  6. SiOC porous ceramics are widely used in many fields due to a number of favorable properties , and its manufacture methods are developing all the time .

    SiOC多孔陶瓷由于具有一系列优异的性能,使得其应用范围越来越广泛,其制备方法也在不断地发展。

  7. Sand and Foam ON FOAM STABILITY The foam SiOC ceramics was prepared by impregnation a polyurethane sponge with polysiloxane .

    采用陶瓷先驱体聚硅氧烷为原料,利用先驱体转化法与有机泡沫浸渍法相结合制备SiOC泡沫陶瓷。

  8. For example , the article author is marked up with sioc : has_creator because both Page and Article content types have default RDF mappings .

    例如,文章作者是通过sioc:hascreator标记的,因为Page和Article内容类型都是默认RDF映射的。

  9. Meanwhile , the straight and curve nanowires could be formed in the porous structure of the SiOC ceramics and SiOC / BN ceramics from wood powders and solid polysiloxanes .

    同时,以木粉和固体聚硅氧烷为原料制备的SiOC陶瓷或多孔SiOC/BN陶瓷的孔结构中都生成了直线状和弯曲状纳米线。

  10. Therefore , two kinds of 2-D ordered mesoporous SiC and SiOC monolithic ceramics with high specific surface areas ( 600m2 / g ) had successfully prepared by template casting by casting and pressing technology .

    所以,通过模板复制模板的方法和压片工艺,成功的制备了具有高比表面积(600m2/g)的二维介孔Sic基块体陶瓷材料。

  11. The effects of the technological parameters on the morphologies , microstructures and properties of the SiOC ceramics and their composites were observed . Furthermore , the growth mechanism of the nanowires in the pores was investigated .

    本论文研究了不同的工艺条件对所得多孔SiOC陶瓷及其复合材料的微观形貌、结构及性能的影响,并分析了多孔结构中纳米线的生长机理。