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Transverse flux high-speed superconducting motor system

A superconducting motor and transverse magnetic flux technology, applied in the usage of superconducting elements, electrical components, electromechanical devices, etc., can solve the problems that limit the application and development of superconducting motors, and achieve the effect of improving current carrying capacity and power density

Active Publication Date: 2015-09-09
HARBIN INST OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Moreover, the low-speed operation characteristics of superconducting motors also severely limit the application and development of superconducting motors.

Method used

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  • Transverse flux high-speed superconducting motor system
  • Transverse flux high-speed superconducting motor system
  • Transverse flux high-speed superconducting motor system

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Embodiment Construction

[0025] The present invention will be further described below in conjunction with accompanying drawing.

[0026] Such as figure 1 , figure 2 , Figure 5 and Figure 6 As shown, a transverse flux high-speed superconducting motor system, the motor is composed of m identical motor modules, where m is greater than or equal to 3; the motor modules include a stator and a rotor.

[0027] The stator includes a stator shaped magnetic conductor, a stator outer magnetic conductor ring 1 and a superconducting coil 2 .

[0028] There are two groups of stator special-shaped magnetizers, which are respectively the first stator special-shaped magnetizer 3 and the second stator special-shaped magnetizer 4; Square tile-shaped magnetic guide plate, the rectangular tile-shaped magnetic guide plate is connected with the outer ring 5 and forms an equidistant tooth structure (the magnetic guide plates adopted between the motor modules of the present invention are all the same); the first stator ...

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Abstract

A transverse flux high-speed superconducting motor system is provided to solve the problem concerning practical application of a miniature high-speed and high-power-density superconducting motor. The transverse flux high-speed superconducting motor system comprises a stator external magnetic ring, a superconducting coil assembly, a stator special-shaped magnetic block, a rotor magnet steel group, a rotor, and a rotating shaft. According to the superconducting motor, the resistance-free characteristic of a superconducting winding is utilized, and intermittent direct current is fed in. The outer diameter of the superconducting motor is reduced based on the mechanical property of an annular superconducting winding, and the direct current carrying capacity of the superconducting winding and the speed of the superconducting motor are improved based on the quench and recovery characteristic of the superconducting winding. The scope of application of the superconducting motor in the field of high-speed motors is expanded.

Description

technical field [0001] The invention relates to a superconducting motor, in particular to a transverse magnetic flux high-speed superconducting motor system. Background technique [0002] With the rapid development of superconducting technology, superconducting wires have developed many types of superconducting motors at home and abroad due to their non-resistance and non-destructive properties, which are used in the fields of ship electric propulsion and wind power generation. This type of superconducting motor includes low-temperature superconducting motor systems using nickel-titanium alloys, and high-temperature superconducting motors using Bi2223 or YBCO strips. This kind of superconducting motor applies the superconductivity of the superconductor to the rotor of the motor, so that the superconducting coil can generate a high magnetic field density in a low temperature environment (such as 4.2K or 77K), which is 2~ 3 times the magnetic field density can effectively red...

Claims

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Application Information

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IPC IPC(8): H02K55/00
CPCY02E40/60
Inventor 李立毅曹继伟张成明潘东华刘家曦
Owner HARBIN INST OF TECH
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