Negative thermal expansion

美 [ˈneɡətɪv ˈθɜːrml ɪkˈspænʃn]英 [ˈneɡətɪv ˈθɜːml ɪkˈspænʃn]
  • 网络负热膨胀
Negative thermal expansionNegative thermal expansion
  1. Research Progress of Negative Thermal Expansion Material ZrW_2O_8 and Its Composites

    负热膨胀材料ZrW2O8及其复合材料研究进展

  2. A new type of negative thermal expansion oxides

    新型负热膨胀氧化物材料的研究

  3. Negative Thermal Expansion Compounds and Their Current Research

    热致收缩化合物及研究进展

  4. Research of optical fiber Bragg grating temperature compensation based on negative thermal expansion

    基于负膨胀材料的光纤Bragg光栅温度补偿研究

  5. Research on mechanism and preparation of negative thermal expansion compound material ZrW_2O_8

    负热膨胀化合物材料ZrW2O8的机理与制备技术

  6. Synthesis of negative thermal expansion material ZrW_2O_8 powders using solid state reaction

    固相法合成负热膨胀性粉体ZrW2O8

  7. High pure negative thermal expansion material zrw_2o_8 powders synthesized by combustion method

    燃烧法合成高纯度负热膨胀材料ZrW2O8粉体

  8. Developments of negative thermal expansion materials in complex oxides

    复合氧化物负热膨胀材料研究进展

  9. Study on Properties of Epoxy Resin Modified by ZrW_2O_8 with Negative Thermal Expansion

    负热膨胀ZrW2O8改性环氧树脂性能研究

  10. Recent Research on Negative Thermal Expansion Material ZrW_2O_8

    负热膨胀材料ZrW2O8研究现状

  11. Synthesize of Negative Thermal Expansion ZrW_2O_8 Powders and Film by Chemical Method

    化学法制备负热膨胀性ZrW2O8粉体及薄膜

  12. Synthesis of new negative thermal expansion material ZrW_2O_8

    新型负膨胀系数材料ZrW2O8的合成与特性

  13. Low or Negative Thermal Expansion in Rare Earth Tungstate

    低、负热膨胀系数稀土钨酸盐

  14. Phase transition of ZrW_2O_8 thin film and its coefficient of negative thermal expansion

    ZrW2O8薄膜的物相转变与负热膨胀系数

  15. Synthesize Negative Thermal Expansion Material ZrW_2O_8 Using Co-precipitation Method

    共沉淀法合成负热膨胀材料ZrW2O8

  16. Synthesis and Primary Particle Size Control Study on Negative Thermal Expansion ZrW_2O_8 Powders Using Co-precipitation Method

    共沉淀法制备负热膨胀性ZrW2O8粉体及其粒径控制初探

  17. The paper summarized the negative thermal expansion coefficient compounds and their contraction mechanism reported in recent 20 years .

    综述了近20年有关负膨胀系数化合物及其收缩机理的报道;

  18. Characterization of negative thermal expansion property of ZrW_2O_8

    ZrW2O8的负热膨胀特性表征

  19. Effect of Preparation Method on Particle Size and Negative Thermal Expansion Property of Negative Thermal Expansion ZrW_2O_8 Powders

    制备方法对负热膨胀性ZrW2O8粉体的颗粒大小以及负热膨胀性能影响的研究

  20. Studies on the Thermophysical Properties of Doped Manganese Nitride Negative Thermal Expansion Materials at Cryogenic Temperature

    掺杂改性锰铜基氮化物负热膨胀材料低温热物性研究

  21. Progress of Negative Thermal Expansion ZrW_2O_8 Ceramics

    ZrW2O8负膨胀陶瓷材料进展

  22. Zirconium tungstate , ZrW_2O_8 is an excellent isotropic negative thermal expansion material .

    ZrW2O8是一种优良的各向同性负热膨胀材料。

  23. A negative thermal expansion material of yttrium tungstate was synthesized by rapid solidification with a CO2 laser .

    用二氧化碳激光快速凝固技术合成了负热膨胀材料钨酸钇。

  24. Studies on Isotropic Negative Thermal Expansion of Zr_ ( 1-x ) Hf_xW_2O_8 Oxides

    氧化物材料Zr(1-x)HfxW2O8各向同性负热膨胀性能的研究

  25. Negative thermal expansion of the Ho_2AlFe_ ( 14 ) Mn_2 compound

    Ho2AlFe(14)Mn2化合物的负热膨胀性质

  26. Negative thermal expansion in y_2al_3fe_ ( 11 ) mn_3 compound

    Y2Al3Fe(11)Mn3化合物的负热膨胀

  27. Negative thermal expansion material ZrW_2O_8 powders were synthesized using solid state reaction with zirconium dioxide and tungsten trioxide as raw materials .

    以分析纯ZrO2和WO3为原料,用固相法制备了负热膨胀材料ZrW2O8粉体。

  28. Hydrothermal Synthesis of Negative Thermal Expansion Material ZrW_ ( 1.7 ) Mo_ ( 0.3 ) O_8 Powder

    负热膨胀ZrW(1.7)Mo(0.3)O8粉体的水热合成研究

  29. The negative thermal expansion coefficient was calculated using the lattice constants obtained by Powder X software using the data collected at different temperatures by in Situ X-ray measurement .

    利用变温X射线衍射仪精确收集粉体在不同温度下的XRD数据,以PowderX软件分别计算在不同温度下的晶胞参数,进而计算其负热膨胀系数。

  30. A fiber Bragg grating is bonded on special material with a negative thermal expansion coefficient . The simple and compact temperature compensation fiber Bragg grating package is demonstrated .

    提出了一种简单、小型的光纤光栅温度补偿器件,将光纤光栅粘贴在具有负热膨胀系数的材料上,实现了光纤光栅的温度补偿。