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April 14, 2026The Physics of Metals and Metallography0 citations

Physical and Technological Problems of Vacuum Magnetolevitation Transport Based on High-Temperature Superconductors

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VKV. V. KoledovYTYu. A. TerentyevDKD. A. Karpukhin

Key Points

  • The central aim is to explore various technical challenges of high-temperature superconductors in vacuum magnetolevitation transport systems.
  • Reviewed forces affecting load capacity and motion stability of HTSC-based systems.
  • Analyzed aerodynamic and electromagnetic friction's role in maximum speed capabilities.
  • Discussed gravitational acceleration impacts on low-speed transport.
  • Examined thermal stability requirements of cryogenic systems for high-speed operations.
  • Considered acceleration, braking, and energy recovery methods using linear synchronous superconducting motors.
  • Identified key forces that influence the load capacity and motion stability of vacuum transport systems.
  • Discussed the limitations imposed by friction and thermal stability on speed and performance.
  • Outlined the necessity for advanced cryogenic systems in achieving efficient high-speed operations.

Abstract

The scope of the review includes: the vertical and lateral forces determining the load capacity and stability of motion of HTSC MLT; the friction of aerodynamic and electromagnetic nature in vacuum determining the maximal speed of MLT; the gravitational acceleration/breaking principal, useful for low speed local MLT; the problem of the thermal stability of the cryogenic systems needed for high speed vacuum HTSC-based MLT, and acceleration/breaking and recuperation by linear synchronous superconducting motor for high speed vacuum MLT. The preliminary experimental results and future works are discussed.

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Cite This Study

Koledov et al. (2025) studied this question.

synapsesocial.com/papers/69ddd938e195c95cdefd68a4https://doi.org/10.1134/s0031918x25601684
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