磁性陶瓷

  • 网络Magnetic ceramic
磁性陶瓷磁性陶瓷
  1. 铁氧体磁性陶瓷材料的研究动态及展望

    Recent Developments of Studies and its Prospects on Ferrite Magnetic Ceramic Materials

  2. 菱铁矿生产磁性日用陶瓷的研究

    Study on Producing Daily-use Magnetic Ceramics by Making Use of Siderite

  3. 磁性生物陶瓷降解机理的研究

    A Study on the Biodegradation Mechanism of a Megnetic Bio-ceramic

  4. 磁性生物陶瓷的研究与磁性机理探讨

    The Study of the Magnetic Mechanism of the Magnetic Bio-ceramic

  5. 磁性生物陶瓷与动物骨结合性的研究

    A Study on the Binding Properties of Magnetic Bio Ceramics with Animal Bones

  6. 能激发骨形成的磁性多孔陶瓷人工骨材料研究

    The Study and Preparation of the Magnetic Ceramic Artificial Bone Material to Stimulate the Formation of New Bone

  7. 磁性生物陶瓷人工椎体靶向治疗椎骨肿瘤的可行性研究与大动物试验

    Feasibility of the targeting therapy as applied in the sheep after vertebra replacement with artificial magnetic bioceramic vertebral body

  8. 采用生理盐水对磁性生物陶瓷进行了体外模拟实验,并进行了相关的动物实验。

    The study used physiological saline as the simulated body fluid in the simulation experiment of the magnetic bio-ceramic in vitro .

  9. 菱铁矿在磁性日用陶瓷坯体中的应用及坯釉适应性研究

    Study on the application of siderite to the preparation of magnetic household ceramic body and the adaptibility between the body and glaze

  10. 溶胶-凝胶法制备Ni-Zn磁性微晶玻璃陶瓷的研究

    The Fabrication of Ni-Zn Ferrite Crystallite Composite with Glass by Sol-Gel Method

  11. 磁性碳化硅功能陶瓷的制备

    Preparation of magnetic properties silicon carbide functional ceramic

  12. 云母氧化铁在防锈涂料、磁性材料、陶瓷、制备珠光颜料等方面有广泛的用途。

    Micaceous iron oxide has extensive uses on the rust - proofing paint , magnetic material , ceramics , and preparation of pearl pigment etc.

  13. 近年来,性能优异的杂化材料在电子光学材料、磁性材料、陶瓷材料、凝胶材料、医用生物材料等方面具有广泛的应用前景。

    In recent years , the performance hybrid materials demonstrate a broad application prospect in the realm , such as electronic optical materials , magnetic material , ceramic material , gel material medical , biological material and so on .

  14. 磁性复相生物陶瓷的研究

    Study on the Magnetic Composite Bio - Ceramic

  15. 结果表明,无论是磁性还是非磁性三维连通网络陶瓷在较宽的温度范围及整个测试频段内都比其同质粉末具有更大的电磁损耗,这种损耗差异来自它的三维连通网络结构特性。

    The results showed that the dielectric and magnetic loss of 3D net ceramic were obviously larger than those of their same content chips in a wide range of temperature and the whole range of measuring frequency .

  16. 利用天然菱铁矿受热分解产生磁性矿物的特点,将其与其它天然矿物如石英、长石、粘土等按照一定的配方组成,制成一种磁性日用陶瓷。

    Natural siderite was mixed with other natural minerals such as quartz , feldspar and clay in certain proportions to produce a kind of daily use magnetic ceramics by making use of siderite 's characteristics of decomposing and producing magnetic mineral when heated .