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    The Development of Nanocrystalline Materials Prepared by Electrodeposition
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    Abstract:
    The characteristics and the synthesis principle of nanocrystalline materials prepared by electrodeposition are summaried in this paper. The research status of nanocrystalline materials and the common methods preparing nanocrystalline materials are reviewed, such as direct current electrodeposition, pulse electrodeposition, composite electrodeposition and jet electrodeposition. Finally, some prospects on development and applications of nanocrystalline materials in material science are proposed in this paper.
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    Nanocrystalline material
    使过饱和的稳固的答案 Fe1 ? x C x (0 ? x ? 0.9 ) 宽作文,范围被机械 alloying 准备了过程。Nanocrystalline 阶段为 0 被形成 ? x ? 0.67 并且为 0.75 的一个大谷物阶段 ? x ? 0.9。石墨体积的大部分为高碳内容推迟 nanocrystalline 阶段的形成。在大谷物阶段,磁化跟随简单磁性的冲淡,并且 coercivity H c 主要由于在谷物边界的碳的溶解。在 nanocrystalline 阶段,碳的 alloying 效果被平均磁性的时刻的不同减小揭示。有增加碳内容的增加的格子常数被观察为一; $0.5,建议高碳集中可以提高碳的散开进 Fe 格子。它与 nanocrystalline 阶段的谷物尺寸 D 在 H c 变化显示出断绝。为在批评价值下面的小谷物 D, H c 与 D 增加。为大谷物 D, H c 与增加 D 减少。在 nanocrystalline 阶段形成扩大的 a-Fe 的碳的溶解度限制被讨论。关键词机械 alloying - 转变金属合金和混合物 - 磁化 - nanostructured 材料
    Nanocrystalline material
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    Preface Introduction Early Works and the Way Bone Mineral was Conceived Synthesis of Nanocrystalline Apatites Characterization of Apatites A Model for Nanocrystalline Apatites Physico-Chemical Properties of Nanocrystalline Apatites Processing of Nanocrystalline Apatite-Based Biomaterials Biological Properties of Nanocrystalline Apatites Conclusion Index.
    Nanocrystalline material
    Characterization
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    The characteristics and the synthesis principle of nanocrystalline materials prepared by electrodeposition are summaried in this paper. The research status of nanocrystalline materials and the common methods preparing nanocrystalline materials are reviewed, such as direct current electrodeposition, pulse electrodeposition, composite electrodeposition and jet electrodeposition. Finally, some prospects on development and applications of nanocrystalline materials in material science are proposed in this paper.
    Nanocrystalline material