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1)  axial magnet
轴向磁体
2)  axial magnetic volume force
轴向磁彻体力
1.
Based on an actual magnetic model,the performance calculation and analysis for the fer-rofluid journal bearing are made with the axial magnetic volume force taken into account.
计算和分析了考虑轴向磁彻体力时的铁磁性流体润滑滑动轴承的静动特性,探讨了铁磁性流体自密封润滑滑动轴承的可行性。
3)  axial magnetic bearing
轴向磁轴承
1.
Control study of analog compound orthogonal neural network in axial magnetic bearing;
模拟复合正交神经网络在轴向磁轴承中的控制研究
2.
The calculation method of the shape dimensions of the magnetic circuit and the winding parameters for axial magnetic bearing is given .
介绍了电磁主动控制型磁浮轴承的原理和结构,对其中的轴向磁轴承的结构和电磁参数设计方法进行了分析,给出了计算实例。
4)  axial magnetic field
轴向磁场
1.
Effects of an axial magnetic field on silicon crystal Czochralski growth;
轴向磁场对硅单晶Czochralski生长过程的影响
2.
The theoretical models of Faraday nonreciprocal phase error which is generated by axial magnetic field in Single-Depo-I-FOG and Twin-Depo-I-FOG are founded respectively through using Jones Matrix.
运用琼斯矩阵,分别建立了轴向磁场作用下,单消偏陀螺系统和双消偏陀螺系统产生Faraday非互易相位差的理论模型。
3.
Based on monochromatic light,theory derivation and analysis of the single-mode fiber loop that is resulted from axial magnetic field is introduced.
去偏光纤陀螺的非理想单模光纤,在垂直于光纤环面的轴向磁场作用下,由于Faraday效应,在其中传播的正反两束光会产生一个与磁场有关的非互易相位差。
5)  axial magnetization
轴向磁化
1.
Aiming at small magnetic force and the complexity of magnetic force numeral calculation for previous research of radial magnetic force model on APAM(axial placement and axial magnetization) bi-annular-shaped PMB(permanent magnetic bearings),the new construction of APAM multi-annular-shaped PMB was designed,which can make good use of magnetic energy and have greater radial magnetic force.
针对轴向放置的轴向磁化双环永磁轴承径向磁力偏小以及磁力数值计算复杂等问题,设计了能充分利用磁能、具有更大径向磁力的轴向放置的轴向磁化多环永磁轴承。
2.
To overcome the shortcoming that the magnetic force of an axial magnetization PMB(permanent magnetic bearings) is usually small,a new construction of APAM(axial placement and axial magnetization) multi-annular-shaped PMB which can make good use of magnetic energy and has greater axial magnetic force was designed.
为了解决轴向磁化永磁轴承磁力偏小的问题,该文设计了能充分利用磁能、具有更大轴向磁力的轴向放置轴向磁化的多个永磁环轴承新结构。
6)  axial magnetic force
轴向磁力
1.
To overcome the shortcoming that the magnetic force of an axial magnetization PMB(permanent magnetic bearings) is usually small,a new construction of APAM(axial placement and axial magnetization) multi-annular-shaped PMB which can make good use of magnetic energy and has greater axial magnetic force was designed.
为了解决轴向磁化永磁轴承磁力偏小的问题,该文设计了能充分利用磁能、具有更大轴向磁力的轴向放置轴向磁化的多个永磁环轴承新结构。
2.
The calculation of the axial magnetic force of radial magnetization bi-barrel-shaped PMB is very complex,and there is no practical analytical model for such calculation.
为了解决径向磁化的双筒永磁轴承轴向磁力数值计算复杂及缺乏计算轴向磁力的工程化解析模型等问题,该文在分析磁筒气隙磁导的基础上,结合磁通连续性原理和稀土永磁材料特性,通过电磁场理论中的虚位移法得到了该型轴承工程化轴向磁力解析数学模型。
补充资料:单轴各向异性
      单轴各向异性是磁晶各向异性的最简单形式,即自发磁化的稳定方向(或易磁化方向)平行于一特殊晶轴。如六方晶系钴的自发磁化方向平行于 C轴(见晶体结构),这就表现出强的单轴各向异性。磁性材料的单轴各向异性值一般都低于其磁晶各向异性值,为103erg/cm3量级。磁性材料经磁场热处理或强的冷加工而产生的感生各向异性,都属于单轴各向异性。
  

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