• 综述了余辉发光玻璃研究进展

    This paper reviews progress in study of long-lasting phosphorescent glass.

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  • 发光陶瓷长余辉发光材料陶瓷行业应用

    Luminescent ceramics is the application that the luminescent materials in ceramics profession.

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  • 余辉发光指当激发光源切断持续发光现象。

    Long persistent phosphors is that the phosphors can maintain their phosphorescence after remove of the excitation source.

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  • 介绍余辉发光材料以及这种材料陶瓷工艺中的应用

    The paper introduces the long after glow phosphorescence material and its applications in ceramics process.

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  • 余辉发光材料由于良好发光特性人们广泛研究应用

    Long afterglow luminescence materials, which have excellent luminescent properties have been widely investigated and application.

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  • 余辉材料中的一些问题余辉机理进行了总结和探讨。

    Some questions of the LLP materials, such as its phosphorescent mechanism, are also discussed.

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  • 深入开展高性能长余辉玻璃研究和应用开发具有重要意义。

    It is very useful to carry out the research of high-quality long-lasting phosphorescent glasses.

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  • 采用高温烧结工艺制备了一系列体系余辉发光

    Series of long decay afterglow powders of strontium aluminum oxide system activated by Eu2 + were prepared by hyperthermal sintering techniques.

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  • 论述余辉发光材料分类应用陶瓷发光最新研究进展

    This paper discusses the classification and application of the Long-Lasting Phosphorescent Materials and the latest research progress in luminescent ceramic glaze.

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  • 余辉发光材料具有特殊储能发光性能,是一类绿色环保型材料。

    Long phosphorescent materials a new kind of energy storing materials because of their excellent luminescent properties.

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  • 稀土激活余辉磷光体,它的余辉亮度主要受原材料配比煅烧温度的影响。

    The brightness of long decay phosphors composed of rare-earth activator depends on the components of the raw material and temperature of fire.

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  • 测量激发、发射光谱余辉衰减曲线。 分析了掺杂稀土离子长余辉发光的作用。

    The excitation, photoluminescence and afterglow spectra as well as the curve of afterglow decay were investigated.

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  • 实验基础上,围绕缺陷形态及其与稀土离子能量传递,提出了可能长余辉机制

    On the basis of the experiment results, around the defects formation and the energy transfer between their and rare earths ions, the possible mechanisms were discussed.

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  • 将高温固相法制得的发光块釉混合制成陶瓷发光研究硅酸盐余辉发光粉锶釉中的发光性能。

    Prepare luminescent ceramic glaze by using this frit and silicate long afterglow powder to study the luminescent performance of phosphor in glaze.

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  • 稀土元素变价化学角度出发讨论稀土离子余辉材料中的作用介绍长余辉材料设计的一些想法

    Basing on the principle of the abnormal-valence chemistry of lanthanide, we summarize the action of rare earth ions in LLP materials and present our idea on the designing of LLP materials.

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  • 为了改善现有无机发光材料耐水性差、有机物相容性差等缺点,本文设计合成了高分子接枝的余辉发光材料。

    Aimed to improve the water-resistance and organics miscibility of inorganic longafterglow phosphor, the polymer-grafted long afterglow phosphors were synthesized in thisthesis.

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  • 动态数据基础上,提出了位图模拟雷达回波信号方法和过程,模拟动态雷达回波的全屏余辉消隐算法

    Base on the dynamic data table, a method of radar echo signal simulated by bitmap was discussed, and full screen long afterglow algorithm was given.

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  • 大量文献调研基础上根据发光基质的不同对目前放射性长余辉红色磷光粉的研究现状进行了系统分类介绍

    On the basis of studying many documents, introduced some non radioactive persistent red phosphors and systematically classified them according to their luminescent host.

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  • 余辉发光材料中长余辉发光玻璃具有非常广阔应用前景,可以应用激光光学放大器光通讯储能显示诸多领域

    Long-lasting phosphorescent glass has very wide application and can be used in the fields of laser, optical amplifier, optical communication, energy storage, display etc.

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  • 本文对新型余辉稀土发光材料不同照度,不同激发时间等多种条件下发光特性进行了检测,对检测结果进行了分析讨论

    Discussion and analysis to the result of measurement of luminescent characteristics of long-afterglow phosphor material under multi-illuminance and multi-stimulation.

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  • 酸盐余辉发光材料具有发光亮度余辉时间性能稳定、无辐射无污染等优异性能,具有广阔应用前景,铝酸锶铕镝是其中之一。

    Aluminate long afterglow luminescent materials have broad application prospects, because of the properties of high brightness, long afterglow time, stable performance, and non-radiation.

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  • 酸盐余辉发光材料具有发光亮度余辉时间性能稳定、无辐射无污染等优异性能,具有广阔应用前景,铝酸锶铕镝是其中之一。

    Aluminate long afterglow luminescent materials have broad application prospects, because of the properties of high brightness, long afterglow time, stable performance, and non-radiation.

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