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The saturation magnetization Ms, magnetic anisotropy field HA and magnetocrystalline anisotropy constant K1 of the above-mentioned particle assemblies wese estimated by using the law of approach to saturation of polycrystalline ferrite, while the Curie temperature Tc was determined by the thermodynamic relation.

用适用于多晶体的趋近饱和定律估计了上述颗粒的饱和磁化强度Ms、磁各向异性场HA和磁晶各向异性常数K1;并用热力学关系定出了居里温度Tc。

The results are displayed as two orthogonal components of magnetisation on a 5-digit liquid crystal panel.

结果以两个正交磁化强度分量在一块6位的液晶面板上显示。

These results suggest that when the demagnetizing energy of soft layer is unavoidablethe application of high Ms soft layer can help to decrease the switching field,maintainthe thermal stability,improve the uniformity,reduce the thickness of interlayer andtotal recording layer,and will not worsen the signal to noise ratio.

研究结果说明当软磁层的退磁能无法避免时,使用较大饱和磁化强度的软磁层有利于降低矫顽力,保持热稳定性,提高介质的均匀性,减小中间层和记录层的厚度,并且对信噪比没有不良影响。

An over-optimistic assessment in accuracy is often resulted from the magnetization measurement by the current standard methods for the feebly magnetic materials due to ignoring the significant influence of demagnetizing field on the ballistic method.

现有的一些弱磁材料标准测磁方法,忽视了退磁场对冲击法磁化强度测量的重要影响,因而给出了过于乐观的精度估计。

The structure and configuration did not devastated while the hematite hollow particles were deoxidizing to iron hollow particles at 500℃ in hydrogen.

壳层厚度太厚、过快和过慢的升温速率都不利于得到空心结构;500℃氢气气氛还原不改变空心粒子的形貌;空心粒子的粒径取决于聚合物模板粒子的大小,壳层厚度取决于包裹层厚度;空心铁粒子的饱和磁化强度高达到95.26 emu/g,具有较好的抗氧化能力,其磁能积可增大到1.46×103 J/m3,有利于以磁损耗为主要吸波机制的铁磁性空心粒子在吸波材料领域的应用。

The CoFe2O4/TiO2 magnetic nano-photocatalysts has fairly good magnetic property. The X-ray diffraction, transmission electron microscopy and ultraviolet-visible technique were used to analyze the phase structure, size and spectrum response scope of the samples. The XRD indicated the anatase TiO2 was formed when TCF modified by plasma. The size of CoFe2O4 particles was about 20 nm. The diameter of CoFe2O4/TiO2 particles is in the range of 30~40 nm. So the shell of TiO2 enwraps closely around the core and the thickness is in the range of 10~20 nm.

运用VSM技术对样品磁性能进行研究,结果表明:等离子体修饰后的复合材料仍具有较高的饱和磁化强度,可在外加磁场作用下实现催化剂在水中的分离与回收;样品的XRD、TEM和UV-Vis分析测试结果表明:等离子体修饰后的复合材料有锐钛矿型TiO2存在;TEM谱图显示磁核CoFe2O4的平均粒径约为20 nm,TCF复合粒子的粒径约为30~40 nm,TiO2包覆层的厚度为10~20 nm。

The magnetomechanical modeling of spherical magnet incased in spherical vessel is established. The influence to magnetic force by magnetic conductivity, remnant magnetism and radius of magnet, radius of container and off-centering of magnet is analyzed. The conclusion has universal character.

以球形永磁体和球形容器为对象,推导出永磁体磁浮力模型,分析磁导率、永磁体的剩余磁化强度和永磁体半径、容器半径以及永磁体相对于容器中心位置的位移对磁场力的影响,结论具有一定普遍性。

The influences of deposition time on the covercivity and saturation magnetization of electroless CoWP thin films were studied, and the surface topography, elemental composition, micro-structure and magnetic properties of CoWP thin films were tested respectively by FSEM , XRD and VSM.

研究了施镀时间对化学镀CoWP薄膜矫顽力和饱和磁化强度的影响,并利用场发射扫描电子显微镜、X射线衍射和振动样品磁强计研究了CoWP磁性薄膜的表面形貌、成分、微结构及磁学性能。

We have prepared a series of low saturation magnetization Ti-substituted Li ferrites used in S-band phase shifters.

采用常规的氧化物法制备了用于S波段移相器的低饱和磁化强度锂铁氧体材料。

The iron hydroxide particles prepared above were coated with cobalt by surface adsorption-precipitation reaction. The low pH and Co〓 concentration of suspended system can prevent the nanoparticle from heterocoagulation. The saturation magnetization of MP particles with uniform cobalt hydroxide layer is 10% higher than that of the α-Fe. And a close SiO〓 layer can improve the coercivity by about 92%.

铁黄粒子表面吸附-反应沉积钴过程中较低的pH值和浓度有利于形成均匀的钴氢氧化物包覆层,可避免形成异相凝聚现象,使比饱和磁化强度提高10%;表面包覆二氧化硅形成致密的薄膜,使矫顽力提高92%。

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