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1)  maglev train nose
磁浮列车头部
2)  magnetic levitation train
磁浮列车
1.
The High Speed Magnetic Levitation Trainand Its Strategic Importance to the FuturePassenger Transportation in China;
高速磁浮列车技术及其在我国客运交通中的战略地位
2.
The main contents of this review are: (1) giant magnetic impedance materials at radio frequencies and ultra- high frequencies; (2) high-temperature superconductors used in new types of magnetic levitation trains; (3) Kerr microscopy and Hall microscopy ;(4) magneto -optical isolators and transducers;(5) magnetic film inductors and film transforms for ultra -high frequency bands.
内容包括:(1)射频和超高频巨磁电阻抗材料;(2)新型磁浮列车用高温超导材料;(3)Kerr显微术和Hall显微术在磁性材料研究中的应用;(4)磁光隔离器和磁光传感器;(5)超高频磁膜电感器和薄膜变压器。
3.
The relation between the anti-rolling sills and negotiation of magnetic levitation trains is analyzed.
分析了抗侧滚梁与磁浮列车曲线通过的关系,为抗侧滚粱的结构设计及改进提出了相应的建议。
3)  maglev train
磁浮列车
1.
Lateral aerodynamic performances of maglev train when two trains meet with wind blowing;
环境风与列车交会耦合作用下磁浮列车横向气动性能
2.
Analysis on magnet dynamic guidance force when low-speed maglev train passing curve;
低速磁浮列车曲线通过时电磁铁动态导向力分析
3.
Study of forced steering mechanism of low-speed maglev train;
低速磁浮列车迫导向机构的研究
4)  Maglev [英]['mæglev]  [美]['mæglɛv]
磁浮列车
1.
Modeling of Suspension System of Maglev with Lagrange Equation;
磁浮列车悬浮系统的Lagrange方程建模
2.
Simulation of Maglev ATO Control System based on MATLAB;
基于MATLAB的磁浮列车自动驾驶控制系统的仿真
3.
Design of Added Generator Windings for Contactless Emergency Power Supply Applied in Maglev;
磁浮列车非接触紧急供电技术中附加发电机绕组设计
5)  maglev vehicle
磁浮列车
1.
Application of FPGA to absolute positioning system of maglev vehicles;
FPGA在磁浮列车绝对定位系统中的应用
2.
Analysis on the characteristics of feeding system on medium and low speed maglev vehicles;
中低速磁浮列车牵引供电系统特点分析
3.
Feeding system of high-speed maglev vehicles;
高速磁浮列车牵引供电系统
6)  magnetic levitation vehicle
磁浮列车
1.
Electromagnetic forces soft measurement technology of high speed magnetic levitation vehicle;
高速磁浮列车电磁力的软测量技术
2.
A normal high speed magnetic levitation vehicle is driven by a long stator linear synchronous motor,the stator is the magnetic rail and the rotor ismade of the supporting electro- magnets attached to the vehicle.
常导高速磁浮列车由长定子直线同步电机驱动,其定子由轨道构成,转子由车载悬浮电磁铁构成,其悬浮和推进电磁场的研究对保证列车悬浮系统和推进系统的性能和可靠性具有重要意义。
3.
The fundamental principle,merits and current research status of magnetic levitation vehicles in the world are presented.
本文介绍了磁浮列车的基本原理、优越性及国内外研究状况,在对两种典型的常导悬浮与导向方案进行分析的基础上,着重比较了它们的一些重要性能指标,以及实心导轨由于电磁铁运动产生涡流所引起的电磁阻力的分析与计算,最后选定方案。
补充资料:磁悬浮高速列车


磁悬浮高速列车


兹羲麟磁悬浮高速列车
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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