electromagnetic levitation

  • 网络电磁悬浮;电磁悬浮技术;电磁悬浮技能
electromagnetic levitationelectromagnetic levitation
  1. The Hyperloop , developed by Tesla through electromagnetic levitation technology , is based on a pneumatic tube concept .

    特斯拉基于气压输送管的概念,采用电磁悬浮技术发展了Hyperloop项目。

  2. Calculation of Electromagnetic Force Suffered by Conductor Element in Electromagnetic Levitation

    电磁悬浮技术中导体元受电磁力的计算

  3. Design and practice of high frequency electromagnetic levitation melting

    高频电磁悬浮熔炼的设计与实践

  4. A simple calculation method for design coil of electromagnetic levitation is put forward .

    为电磁悬浮设计线圈提供一种简明的计算方法。

  5. Calculation and Analysis of Minimum Temperature in Electromagnetic Levitation Melting

    电磁悬浮熔炼试样的最低温度计算分析

  6. Theory analysis of steady magnetic field on rotational stability of electromagnetic levitation melting

    直流磁场控制电磁悬浮熔炼旋转稳定性的理论分析

  7. Dynamic Characteristics of Electromagnetic Levitation Systems Dynamic Stability of Electromagnetic Levitation with Feedback Control

    常导电磁悬浮动态特性研究具有反馈控制的电磁悬浮体的动力稳定性

  8. Dynamic Stability of Electromagnetic Levitation with Feedback Control

    具有反馈控制的电磁悬浮体的动力稳定性

  9. On the construction of electromagnetic levitation melting system and levitating force

    电磁悬浮熔炼系统的结构及其悬浮力的研究

  10. In the vehicle suspension system , electromagnetic levitation is the most mature and practical suspension system .

    在车辆悬浮系统中,电磁悬浮是目前发展最为成熟与实用的悬浮系统。

  11. Development of the electromagnetic levitation melt centrifugal casting apparatus

    电磁悬浮熔炼离心铸造设备的研制

  12. Fast track Fuzzy Control of Electromagnetic Levitation Micro-actuator

    电磁悬浮微驱动器的快速跟踪模糊控制

  13. Finite element analysis of an electromagnetic levitation micro-actuator

    电磁悬浮式微驱动器的有限元分析研究

  14. Maglev train is such system that includes non-contact electromagnetic levitation system , guiding system and linear synchronous drive system .

    磁悬浮列车是一种采用无接触的电磁悬浮、导向和驱动系统的磁悬浮高速列车系统。

  15. Research on the fine adjustment scheme about railway girder of electromagnetic levitation train ( MAGLEV ) in Shanghai

    上海磁悬浮列车轨道梁精调技术

  16. Coupled Growth of ( TbDy ) Fe_2 Alloys under Electromagnetic Levitation Melting

    电磁悬浮熔炼(TbDy)Fe2合金的耦合生长

  17. Emissivity of ( TbDy ) Fe_2 Alloy by Vacuum Electromagnetic Levitation Measurement

    真空电磁悬浮测定(TbDy)Fe2合金高温热辐射系数

  18. Measurement and Mechanics Analysis of an Electromagnetic Levitation Micro-Actuator Experiment and Modeling about the Dynamic Electromagnetic Force of a Magnetic Suspension Isolator

    同步跟随式电磁悬浮驱动器的力学分析与测试磁悬浮隔振器动态电磁力实验与建模

  19. Maglev train , suspend above track , is a new mean of transport , which is based on non-contact electromagnetic levitation principle .

    磁浮列车是一种采用无接触电磁悬浮原理使车辆悬浮于轨道上方的新型交通工具。

  20. Electromagnetic levitation melting is a new technology developed along with the requirements for obtaining special high-purity materials and microgravity study , and increasing attention has been drawing to it for its sci-tech importance .

    电磁悬浮熔炼技术是伴随着对特种纯净材料的需求以及航天等高新技术中对微重力研究等而产生和发展起来的,因其重要的科学技术地位而受到关注。

  21. When sample has high melting point , low electrical resistivity , low density , high emissivity and the gas has high cooling ability , the sample is easy to obtain undercooling under electromagnetic levitation in terrestrial gravity without additional cooling .

    不存在外部强制冷却的情况下,高熔点、低电阻率、低密度、高辐射率的试样,保护性气体冷却能力较强,试样易于在重力环境下实现悬浮过冷;

  22. But there are some disadvantages existed in the electromagnetic levitation melting technology , such as low efficiency , bad stability , difficult to control temperature etc. Up to the present , the design of the key technology of the instrument-inductor is still studied .

    但是该技术存在着效率低、稳定性差、温度难以控制等缺点。本课题对电磁悬浮熔炼技术的核心部件一感应器进行了研究与设计。本文介绍了悬浮熔炼装置中感应器的研究进展。

  23. Using the electromagnetic levitation combined with drop calorimeter method , the specific heat of liquid Ni-5 % Si alloy is determined as 39.54 + 1.87 J / mol / K within the undercooling range . The maximum undercooling achieved in the experiments is 218 K.

    采用悬浮量热计实验方法,对Ni-5%Si深过冷液态合金的比热进行了定量测定,实验中获得最大过冷度是218K,发现比热在实验达到的过冷度范围内为定值39.54±1.87J/mol/K。

  24. However , emergency braking is just one of the obstacles for the program . The Science and Technology Daily report suggests designers still haven 't been able to find concrete solutions for other problems , including how to keep electromagnetic levitation stable at high speeds and how to conduct passenger tests .

    但是,紧急制动只是这个项目的障碍之一。《科技日报》的这则报道称,设计师们仍然无法找到解决其他问题的具体方案,包括如何在高速的情况下保持电磁悬浮稳定,以及如何进行乘客测试。

  25. Electromagnetic levitation micro motor with stator embedded ( ELMSE ), which is constituted by a double-sided stator and a hollow annular rotor , is the core component of electromagnetic levitation micro gyroscope with stator embedded , and it is a new kind of electromagnetic levitation micro motor .

    定子嵌入式电磁悬浮微马达是种电磁悬浮转子式微陀螺的核心部件,是种新型结构的电磁悬浮转子式微马达,由个盒式转子和个双面定子构成。

  26. It is of great theoretic importance to improve design and to realize stable control for the electromagnetic coupling magnetic levitation system .

    本文的分析对磁悬浮控制系统的进一步设计、稳定控制有理论指导意义。