saturation magnetization

英 [ˌsætʃəˈreɪʃn ˌmægnɪtaɪˈzeɪʃən] 美 [ˌsætʃəˈreɪʃn ˌmægnətəˈzeɪʃən]

网络  饱和磁化强度; 饱和磁化; 饱和磁化量; 比饱和磁化强度

计算机化学



双语例句

  1. Study on the Measurement Methods of Curie Temperature and Saturation Magnetization
    居里温度和饱和磁化强度测量方法的研究
  2. The synthesis and characterization of Magnetic Iron Oxide with high saturation magnetization The results also showed that the specific saturation magnetization and the magnetic loss power of the product increased with the increasing of ferrous content.
    高饱和磁化强度Fe3O4纳米粒子的制备及表征产物比饱和磁化强度和磁损耗功率随铁含量的增加而增大。
  3. The results also showed that the specific saturation magnetization and the magnetic loss power of the product increased with the increasing of ferrous content.
    产物比饱和磁化强度和磁损耗功率随铁含量的增加而增大。
  4. Size-dependent saturation magnetization and Curie temperature of nanocrystalline nickel
    纳米金属Ni的饱和磁化强度和居里温度的尺寸依赖效应
  5. The positive correlation between equivalent magnetic iron oxide content and saturation magnetization of coal-fired fly ash is significant.
    燃煤飞灰饱和磁化强度与其中的磁性当量铁相对含量存在明显的正相关性。
  6. Saturation magnetization of coal-fired fly ash decreases with increasing temperature in the temperature range in which complete burning of coal can take place.
    随着温度的上升,燃煤飞灰饱和磁化强度在保证煤粒充分燃烧温度范围内有逐渐降低的趋势。
  7. FS-Flux core is a kind of new powder core material in recent years for replacing Hi-Flux core, which has high saturation magnetization and excellent DC bias comparable to that of Hi-Flux core.
    铁硅(FS-Flux)磁粉芯是近几年才出现的一种新型材料,它有高的饱和磁化强度和优异的直流叠加特性。
  8. Magnetic nanoparticles have been utilized for biomedical purpose due to their unique features such as its superparamagnetism, high saturation magnetization and high effective surface areas, etc.
    由于磁性奈米粒子所具有之独特性质,例如超顺磁性、高饱和磁化量与高有效表面积等,因此已被应用于生物医学诊断造影、疾病治疗及生化分离等生医领域。
  9. High saturation magnetization material;
    高饱和磁化强度薄膜磁性材料;
  10. The distribution and variation processes of eddy current occurring in coating inducted were analyzed by measuring electric resistivity and saturation magnetization of the coating material with variable temperatures.
    通过测量涂层材料的电阻率及饱和磁化强度随温度的变化曲线,分析了感应加热过程中涡流分布及变化过程。
  11. The magnetic properties of Mn-Zn ferrite such as initial permeability, saturation magnetization, Curie temperature, resistivity and power loss are affected greatly by Fe2+ content in the raw materials.
    研究了原材料中Fe2+含量对Mn-Zn铁氧体材料的电阻率ρ、功耗PL、居里温度TC、起始磁导率μi等性能的影响。
  12. The specific saturation magnetization ( Ms) and Curie temperature ( Tc) of the nanometer-sized Fe particles decrease with the decrease of particle dimension, and the causes are explored and analyzed.
    纳米Fe颗粒的比饱和磁化强度Ms和Curie温度Tc随颗粒尺寸减小而降低.探讨分析了Fe-In2O3颗粒膜中纳米Fe颗粒的Ms和Tc随颗粒尺寸变化的原因。
  13. The Fe-N thin films with high saturation magnetization were prepared by DC magnetron sputtering.
    以Fe膜及Fe-N薄膜为具体研究对象,采用直流磁控溅射法制备了具有高饱和磁化强度的Fe-N薄膜。
  14. Structure and Saturation Magnetization of Co/ Pt Multilayers
    Co/Pt多层膜的结构和饱和磁化强度
  15. Studied the effect of ion substitution in a Li-Mg-Ti-Zn ferrite system on magnetic properties, such as saturation magnetization, magnetocrystalline anisotropy, the real part of microwave permeability in the completely demagnetized state, ferromagnetic resonance line width, coercive force and magnetic remanence ratio etc.
    本文研究了离子代换对Li-Mg-Ti-Zn系铁氧体磁性(例如饱和磁化强度,磁晶各向异性、退磁态微波磁导率、铁磁共振线宽、矫顽力和剩磁比等)的影响。
  16. This paper studies the law of ferrofluid seal for water, and seeks out the qualitative relationship between sealing gap, temperature, rotational speed, saturation magnetization, and the pressure capacity.
    本文研究了磁流体密封水的有关规律,找出了密封间隙、温度、旋转轴的转速和磁流体的饱和磁化强度与承压能力的关系。
  17. With the increasing of the T content of samples, the crystallization temperature and crystallization activation energy increase, the saturation magnetization and Curie temperature decrease, but the alternating permeability have no large change.
    结果表明,随着样品中T元素含量的增加,样品的晶化温度和晶化激活能升高,饱和磁化强度和居里温度下降,交流磁导率变化不大。
  18. The saturation magnetization of the liquid was measured by vibrating sample magnetometer.
    用振动样品磁强计测定样品的饱和磁化强度。
  19. The Curie temperature and saturation magnetization of manganese-zinc ferrite were measured by using the electric bridge method, induced method and vibrating sample magnetometer ( VCM).
    分别用电桥法、感应法和振动样品磁强计对锰锌铁氧体的居里温度和饱和磁化强度进行了测试。
  20. The dependence of specific saturation magnetization on thickness of Fe layer has also been discussed.
    研究了比饱和磁化强度随Fe层厚度的变化规律并探讨了它的机理。
  21. The saturation magnetization was increased with the increase of reaction time.
    随着反应时间的延长,磁流体的磁化强度逐渐增加。
  22. The influence of iron nano-particles on morphologies and specific saturation magnetization was also considered.
    研究了纳米铁粒子的加入对微胶囊的表面形态比饱和磁化强度的影响,对比了两种壳磁性相变微胶囊的表面形貌和强度。
  23. The saturation magnetization of the as-deposited iron nitride films decreases with the increase of the nitrogen flow rates.
    随着氮气流量的增加,薄膜的饱和磁化强度减小。
  24. The 2 h-milled powder has higher saturation magnetization, lower coercivity, and higher permeability in high-frequency range.
    2小时球磨后的粉体具有较高的饱和磁化强度和较低的磁导率,在高频下也有较高的磁导率。
  25. As a kind of microwave absorption materials, metallic magnetic materials and their alloys have attracted much attention due to high saturation magnetization, high permeability and high Curie temperature.
    作为众多吸波材料的一种,磁性金属材料及其合金因为具有高的饱和磁化强度、高的磁导率和高的居里温度而被广泛的研究。
  26. Ferrite is widely used as non-metallic magnetic materials in the area of high-frequency and light current. The poor magnetic energy stored per unit volume and low magnetic saturation magnetization limit the use in the domain of the low-frequency electric and high-power fields.
    铁氧体是一种在高频弱电领域用途广泛的非金属磁性材料,但因单位体积中储存的磁能和饱和磁化强度较低,限制了它在高磁能密度的低频强电和大功率领域的应用。
  27. The saturation magnetization out-of-plane increases, while coercivity at first increases and then decreases with increase of annealing temperature.
    增加热处理时间,面外饱和磁化强度增加,矫顽力先增加后减小。
  28. The saturation magnetization increased with decreasing cooling rate.
    饱和磁感应强度随冷速的降低而增大。
  29. Meanwhile, the coercivity decreases and the saturation magnetization increases with the decrease of the film thickness.
    随着薄膜厚度减小,样品的矫顽力降低,饱和磁化强度增大。
  30. M-H curve shows that saturation magnetization, residual magnetization and coercivity increase with the increasing heating rate.
    磁滞回线显示产物的饱和磁化强度、剩余磁化强度和矫顽力随升温速率的增加而增加。