微晶材料

  • 网络Microstructure Materials
微晶材料微晶材料
  1. La(l-x)SrxFeO3纳米微晶材料的气敏特性

    Gas-Sensing Characteristics of NanocrystallineLa_ ( 1-x ) Sr_xFeO_3 ── Based Materials

  2. 掺杂ZnS半导体纳米微晶材料的研究进展

    Doped-zns semiconductor nanocrystals materials

  3. Fe-B基微晶材料晶粒大小与高温硬度的关系

    Hot hardness and crystallite size of Fe-B microcrystalline material

  4. 通过采用XRD、差热分析、SEM等手段对Li2O-ZnO-SiO2系高膨胀微晶材料的析晶和重熔进行了结构分析。

    A structural analysis of the high expansive and mini-crystal materials of Li2O-ZnO-SiO2 system on emerging crystal and remelting crystal has been carried out with the XRD , thermal differ analyzing and SEM etc.

  5. Co基非晶和Fe基纳米微晶材料中观察到巨磁阻抗效应G(MI),在传感器技和磁记录技术中具有巨大的应用潜能熏受国内外专家的广泛关注。

    Giant Magnetic-Impedance ( GMI ) has been observed in Co-based amorphous and Fe-based nanocrystalline . Close attention has been paid to it by scholars in lots of countries , since their great promising prospects in the application of sensor technology and magnetic recording technology .

  6. 新型纳米微晶材料的结构、性能和制备

    The Structure , Properties and Synthesis Process of Advanced Nanocrystalline Material

  7. 微晶材料结构的分形研究

    Study on Fractional Dimensions of the Micro crystalline structure

  8. 纳米微晶材料的结构和性质

    Structures and properties of nanocrystalline materials

  9. 本文创新使用了新型的高频变压器材料&超微晶材料,并得到良好效果。

    New uses of a new type of high frequency switch power supply materials , nanocrystalline , obtained the good effect .

  10. 我国研制真空快淬非晶微晶材料取得重大突破&真空快淬炉在京研制成功

    Successful development of the vacuum rapid quenching furnace in beijing & a great breakthrough in developing amorphous , micro-crystalline materials by rapid quenching in vacuum in China

  11. 纳米微晶材料是纳米量级晶粒所构成的多晶物质,其晶界区域中存在与长程有序晶态和短程有序非晶态结构不相同的气体状的结构。

    Nanocrystalline materials is a new kind of polycrystalline materials with nanometer-siged grains and gas-like structure of the interfaces between the grains neither like crystalline state with long range order nor like amorphous state with short range order .

  12. 激活能测试结果表明,制备出接近本征的微晶Si材料。

    The outcome of activation energy indicated that nearly intrinsic microcrystalline material might be fabricated .

  13. 采用高压RF-PECVD法制备高电导、高晶化率的p型微晶硅材料

    High Conductive p-type Microcrystalline Silicon with High Crystallinity Prepared by High-pressure RF-PECVD

  14. 把这种高速生长的微晶硅材料用作太阳电池的本征吸收层,在没有优化工艺参数和没有采用ZnO增反电极时,电池的转换效率达到4.8%。

    Using this intrinsic microcrystalline silicon film as absorber layer in single-junction solar cell , a conversion efficiency of 4.8 % was obtained .

  15. 本文报道了采用高压射频等离子体增强化学气相沉积(RF-PECVD)方法制备高电导、高晶化率的p型微晶硅材料的结果。

    The results about highly-crystallized , highly-conductive p-type microcrystalline silicon (μ c-Si : H ) prepared by high-pressure RF-PECVD are reported in this paper .

  16. 激发频率对VHF-PECVD制备微晶硅材料性能的影响

    Effect of excitation frequency on microcrystalline silicon materials prepared by VHF-PECVD

  17. VHF-PECVD制备微晶硅材料及电池

    Microcrystalline Silicon Material and Solar Cells Fabricated by VHF-PECVD

  18. VHF-PECVD制备微晶硅材料的均匀性及其结构特性的分析

    Analysis of Uniformity and Structural Properties of Microcrystalline Silicon Films Deposited by VHF PECVD

  19. 而且shower电极可大大提高硅烷的利用率,因而在相同气体流量下,生长微晶硅材料需要更高的功率密度。

    In addition , the shower electrode could greatly enhance the SiH_4 utilization ratio , so the power density should be increased in order to prepare microcrystalline films with the same gas flow rate .

  20. 制备了以钛渣和铁尾矿为主要原料,以钛渣兼作晶核剂的微晶玻璃材料,研究了TiO2含量变化对玻璃晶化的影响。

    The glass ceramics were prepared by using titanium slags and ferrous tailings as the raw materials , in which TiO 2 functioned as the nucleation agents . The effect of TiO 2 content on the crystallization was studied .

  21. 采用这种沉积方法,本征微晶硅材料的生长速度提高到0.32nm/s,晶化率达58.2%。

    By this method the deposition rate was improved to 0.32nm/s for intrinsic microcrystalline silicon films and the crystalline fraction volume was 58.2 % .

  22. 简述了铁基超微晶合金材料的特性.应用铁基超微晶环形铁芯材料实现了150kHz高频恒流变换,并在HIM575W/SE高亮度气体放电灯电源中应用获得成功。

    Characteristics of Fe based microcrystalline material is described . Applying Fe based microcrystalline circular core material , a 150 kHz high frequency and constant current converter is developed . And this material is successfully used in power supply for HIM575W / SE high intensity discharge lamp .

  23. 陶瓷-陶瓷粘接用微晶玻璃材料的研究

    Study on Microcrystalline Glass Materials Using for Joining Ceramic with Ceramic

  24. 光纤接头用微晶玻璃材料的相转变

    Phase Transition of Li_2O-Al_2O_3-SiO_2 Glass-Ceramics Used for Optical Fiber Ferrule

  25. 梯度生物微晶玻璃材料的析晶性能及其物性分析

    Characteristics and Crystallization Behavior of Bioglass Ceramics with Gradient Structure

  26. 矿渣微晶玻璃材料设计神经网络模型

    Applications of Artificial Neural Network in Slag Glass-Ceramic Expert System

  27. 研究了人工神经网络在矿渣微晶玻璃材料设计中的应用。

    Application of GTM in material designing for high grade bituminous pavement ;

  28. 微晶硅材料及其在太阳能电池中的应用

    Microcrystalline Silicon And Its Application In Solar Cells

  29. 硬盘基板用微晶玻璃材料研究

    A Study on Glass Ceramics for HDD Substrate

  30. 太阳电池用本征微晶硅材料的制备及其结构研究

    Fabrication of intrinsic microcrystalline silicon thin films used for solar cells and its structure