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1)  specific magnetism
磁化率;饱和磁化强度
2)  saturation magnetization
饱和磁化[强度],磁饱和
3)  saturation magnetization
饱和磁化强度
1.
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
2.
Single-phase ε-Fe3N magnetic fluid with saturation magnetization 1633Gs was successfully prepared by homemade equipment.
采用自行研制的氮化铁磁性液体热解装置,制备出最高饱和磁化强度Ms=0。
3.
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(FSEM)、X射线衍射(XRD)和振动样品磁强计(VSM)研究了CoWP磁性薄膜的表面形貌、成分、微结构及磁学性能。
4)  specific saturation magnetization
比饱和磁化强度
1.
The results show that the increase of Ni content leads to the increase of amorphous forming ability,specific saturation magnetization changes complexity and reaches maximum at x=15,coercivity decreases all the while.
结果表明:随Ni含量的增加,FeNiZrNbB系合金的非晶形成能力增强,比饱和磁化强度变化相对复杂,当x=15时达到最大值,而矫顽力却一直呈下降趋势。
2.
Effects of the deposits thickness and heat treatment temperature on the coercive force and specific saturation magnetization were investigated.
通过化学镀方法获得纳米晶Co-B合金,分别研究了沉积层厚度和热处理温度对其矫顽力和比饱和磁化强度的影响。
3.
Their specific saturation magnetization σ s and specific surface area S a were measured.
通过测量它的比饱和磁化强度σs 与比表面积Sa,得出经验公式σs(Sa) =σs(∞ ) ( 1-aSa) ,运用非共线磁结构理论很好地解释了上述经验公式 ,并得到纳米晶的非共线表面层的厚度。
5)  saturation magnetization
比饱和磁化强度
1.
The result shows that the effect of cover with silicon on the coercivity (Hc), the saturation magnetization ( ), and the size of the powder particles is obviously, it has the coercivity (Hc), and the saturation magnetization decreased, but the size of the powder particle is decreased, too.
4O19)磁粉的矫顽力、比饱和磁化强度、矩磁比等磁性质及其粒度的影响,结果表明,包硅使钡铁氧体(BaCo0。
2.
The change of structure and magnetic properties of Ni 50 Bi 50 powders during mechanical alloying were studied by using X ray diffraction、DSC and saturation magnetization measurements.
X射线衍射、差示扫描量热分析(DSC)和比饱和磁化强度的测量结果表明:混合粉末的晶粒尺寸随球磨时间的增加而减小。
3.
Objective To investigate the effect of preparation conditions on the effective diameter and saturation magnetization (Ms) of dextran magnetic iron oxide nanoparticles (DMN).
目的探讨葡聚糖氧化铁磁性纳米颗粒(DMN)的制备对其有效粒径和比饱和磁化强度的影响。
6)  saturation magnetic polarization
饱和磁极化强度
1.
Experimelltal results show that the saturation magnetic polarization Jsof (Fe,Co)-N films with 0-15%Co (atomic fraction) increases with the Co content, reachinga maximum value of 2.
实验结果表明,Co的原子分数在0-15%范围内薄膜的饱和磁极化强度Js值随Co含量的增加而增大;Co的原子分数为15%时,薄膜的Js达到最大值(2。
补充资料:磁化率
磁化率
magnetic susceptibility
    表征磁介质属性的物理量。常用符号cm表示,等于磁化强度M与磁场强度H之比,即
   McmH对于顺磁质,cm>0,对于抗磁质,cm<0,其值都很小。对于铁磁质,cm很大,且还与H有关(即MH之间有复杂的非线性关系)。对于各向同性磁介质,cm是标量;对于各向异性磁介质,磁化率是一个二阶张量。
   在国际单位制(SI)中,磁化率cm是一个无量纲的纯数。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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