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Magnetic bearing

  • Development and Testing of an Axial Halbach Magnetic Bearing

    Development and Testing of an Axial Halbach Magnetic Bearing

  • Dynamic Suspension Modeling of an Eddy-Current Device: an Application to Maglev

    Dynamic Suspension Modeling of an Eddy-Current Device: an Application to Maglev

  • Universidade Federal Do Rio De Janeiro 2017

    Universidade Federal Do Rio De Janeiro 2017

  • Non-Dimensional Design Approach for Electrodynamic Bearings

    Non-Dimensional Design Approach for Electrodynamic Bearings

  • Superconducting Magnetic Bearings Simulation Using an H-Formulation Finite Element Model

    Superconducting Magnetic Bearings Simulation Using an H-Formulation Finite Element Model

  • Magnetic Guidance for Linear Drives

    Magnetic Guidance for Linear Drives

  • Test and Theory of Electrodynamic Bearings Coupled to Active Magnetic Dampers

    Test and Theory of Electrodynamic Bearings Coupled to Active Magnetic Dampers

  • Design of a Lorentz, Slotless Self-Bearing Motor for Space Applications

    Design of a Lorentz, Slotless Self-Bearing Motor for Space Applications

  • Analysis and Design of a Maglev Permanent Magnet Synchronous Linear Motor to Reduce Additional Torque in Dq Current Control

    Analysis and Design of a Maglev Permanent Magnet Synchronous Linear Motor to Reduce Additional Torque in Dq Current Control

  • Superconducting Magnetic Bearings

    Superconducting Magnetic Bearings

  • Effects of Operational Losses in Active Magnetic Bearing Designs

    Effects of Operational Losses in Active Magnetic Bearing Designs

  • Hyperloop Integration to Reach the NOAH Concept

    Hyperloop Integration to Reach the NOAH Concept

  • 3.2 Principle of Magnetic Suspension

    3.2 Principle of Magnetic Suspension

  • Analysis and Modeling of the Eds Maglev System Based on the Halbach Permanent Magnet Array

    Analysis and Modeling of the Eds Maglev System Based on the Halbach Permanent Magnet Array

  • Linear Drives for Industry Applications LDIA2005

    Linear Drives for Industry Applications LDIA2005

  • Controller Design for Magnetic Levitation System

    Controller Design for Magnetic Levitation System

  • Research Areas in Space

    Research Areas in Space

  • The Effect of Magnetic Bearing on the Vibration and Friction of a Wind Turbine

    The Effect of Magnetic Bearing on the Vibration and Friction of a Wind Turbine

Top View
  • Research and Development Concerning Superconducting Maglev and Research on Applying Superconducting Maglev Technology to the Conventional Railway System
  • Appendix B Acronyms and Abbreviations
  • Force Analysis of Linear Induction Motor for Magnetic Levitation System
  • An Overview on Aerospatiale Magnetic Bearing Products for Spacecraft Attitude Control and for Industry
  • Electromagnetic and Magnetic Suspension
  • Flywheel Energy Storage System with Homopolar Electrodynamic Magnetic Bearing*
  • Magnetic Bearing with Uniaxial Control Using Magnetic, Electrodynamic and Electromagnetic Levitation
  • Impact-Rubbing Dynamic Behavior of Magnetic-Liquid Double Suspension Bearing Under Different Protective Bearing Forms
  • Proceedings of the Third Cryocooler Conference
  • Eddy Currents in a Passive Magnetic Axial Thrust Bearing for a Flywheel
  • Practical Issues in the Use of Ndfeb Permanent Magnets in Maglev
  • Controller Design for Magnetic Levitation System
  • A Stable Sub-Orbital Permanent Structure Based on Readily Attainable Technological Advancements
  • Development of a Compact, Light Weight Magnetic Bearing
  • Heat Rejection Concepts for Radioisotope Power Systems (RPS) on the Lunar Surface
  • Fueling a Clean Energy Future BASIC Science Futures Report
  • World Congress on Superconductivity Volume I
  • DISCUSSION D. L. Taylor1 the Authors Have Made a Significant Contribution to the Literature Concerning Magnetic Bearings. the Re


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