• 为基体,采用氧化、巴德雷石粉粒状聚苯乙烯为原料,制备了多孔陶瓷材料

    Porous ceramic materials on the base of strontium zirconate were developed with zirconium dioxide, baddeleyite powder, and granular polystyrol.

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  • 氧化一种重要催化载体

    Zirconia is an important catalyst and support.

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  • 这会转化成氧化锆释放出

    This would convert zirconium into zirconium oxide and release hydrogen.

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  • 氧化涂层显微结构进行了探查。

    The microstructure of the as sprayed zirconia coatings wee analyzed.

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  • 可以反应产生氧化锆氢气

    The zirconium can react with water to produce zirconium oxide and hydrogen.

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  • 难以置信的闪闪发光晶体可能立方氧化锆

    The crystals are incredibly sparkly and may be cubic zirconia.

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  • 详细地研究了水合氧化吸附剂吸附行为

    In this paper, behavior of boron adsorption on hydrous zirconium oxide adsorbent is studied in detail.

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  • 实验结果表明纳米氧化烧结性能金属钼好

    Results show:Nanometer zirconia is easier for sintering than molybdenum.

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  • 利用低温超强碱法制备纳米四方多晶氧化粉体

    The nanometer tetragonal polycrystal zirconia powder was prepared by the super alkaline method at low temperature.

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  • 氧化锆增韧莫来石(ztm)优良高温结构陶瓷材料

    Zirconia Toughened Mullite (ZTM) ceramics is one of finest Performance high temperature structure ceramics.

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  • 其中一个计划副产品氧化锆生产固态燃料电池

    One project is trying to use zirconia, a tin byproduct, to create solid oxide fuel cells.

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  • 氧化掺杂酸化氧化可以增强硫酸化氧化锆酸性

    Doping sulfated zirconia with silica increases the acidity of the sulfated zirconia.

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  • 公司根据用户要求生产氧化氧化镁、稳定氧化锆

    The company can produce yttria elastomag and stable zirconia to meet the requirements of diversified users.

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  • 其中心思想认为空穴影响氧化结构稳定性重要因素。

    One can assume that oxygen vacancies are the most important effect on the properties of zirconia.

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  • 上市销售牙科氧化锆陶瓷材料仅有四种价格比较昂贵

    But up to now there were only four dental zirconia ceramic materials in market with relatively high prices.

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  • 制备性能优良、零维氧化晶体成为目前的科研热点

    Therefore, the preparation of one-dimension and zero-dimension zirconia crystal becomes a hot area of research.

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  • 本文综述氧化锆化学上的应用前景进行了展望。

    In this paper, the application of zirconia in chemistry was reviewed, and its prospect was also described.

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  • 分析了稳定氧化锆(YSZ)晶体结构离子导电性

    The crystal structures and ionic conductivity of yttria stabilized zirconia (YSZ) are analyzed.

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  • 摘要氧化掺杂酸化氧化可以增强硫酸化氧化锆酸性

    Doping sulfated zirconia with silica increases the acidity of the sulfated zirconia.

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  • 高分子表面改性-有机溶剂置换干燥工艺制备纳米氧化微粉。

    Nanoparticle zirconium is fabricated by surface modification of polymer and drying process of organic solvent substituting water.

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  • 研究高分子分散剂低温处理制备团聚氧化锆粉末中的作用

    The effects of macromolecular dispersant and subzero treatment on the preparation of ultrafine non agglomerative zirconia powders have been studied.

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  • 目的探讨氧化锆梯度复合羟基磷灰石固定材料应力遮挡变化

    Objective: To approach the change of stress shielding rate of internal fixation materials made of nano zirconia gradient compounded with hydroxyapatite.

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  • 此外我们量测氧化物性以试图找出其可能的电阻转态机制

    Besides, we measure variant physical and electrical properties to find out the mechanism of the bistable phenomenon.

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  • 同时,基于氧化特殊性质,较为全面地介绍了目前氧化锆应用领域。

    At the same time, the application of zirconia was introduced in detail according to the special properties of zirconia.

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  • 通过分离单向阀密封材料改为氧化陶瓷,密封段流道直径增加0

    The sealing sections of non-return valve ball seat were separated, material was changed into zirconium oxide ceramic, 0.

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  • 以紫外拉曼光谱技术研究不同焙烧气氛中氧化样品的表面结构及其转变过程

    UV Raman spectroscopy has been employed to investigate the surface phase transformation of zirconia calcined at different temperatures in different atmospheres.

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  • 论述了比较法检定氧化探头标准氧化锆探头选择实现高精度测量的方法。

    How to select standard zirconia oxygen probes to achieve high precision measurement when testing zirconia probe with comparative method is described.

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  • 使用络合沉淀法,控制温度浓度改变沉淀,制备长短、粗细可控的棒状氧化锆

    The length and thickness can be controlled by altering the reaction temperatures and the reactant concentrations and the precipitant reagents.

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  • 由于生物陶瓷材料弹性量较小,很难采用添加氧化锆引起相变增韧解决上述缺点

    These disadvantages cannot be overcome by addition of tetragonal zirconia resulting in phase transition toughening, because of the low elastic module of the ceramic artificial bone materials.

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  • 由于生物陶瓷材料弹性量较小,很难采用添加氧化锆引起相变增韧解决上述缺点

    These disadvantages cannot be overcome by addition of tetragonal zirconia resulting in phase transition toughening, because of the low elastic module of the ceramic artificial bone materials.

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