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Superconduction switch for superconduction coil

A technology of superconducting coils and superconducting switches, which is applied in the direction of devices that can be switched between superconducting and normal conducting states, can solve problems such as the existence of rotating contact links, reduce the reliability and service life of motors, and achieve reliability and reliability. Improved service life, slow magnetic field, and the effect of improving operating efficiency

Inactive Publication Date: 2014-03-05
SOUTHWEST JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For wind turbines, it is also necessary to have a power supply to continuously supply power to the excitation system of the wind turbine through the brushless excitation system. There is a rotating contact link, which reduces the reliability and service life of the motor.

Method used

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  • Superconduction switch for superconduction coil
  • Superconduction switch for superconduction coil
  • Superconduction switch for superconduction coil

Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0026] Figure 1-3 It is shown that a specific embodiment of the present invention is that the technical solution adopted by the present invention to realize the purpose of the invention is a superconducting switch for a superconducting coil, which is characterized in that: the resistance wire connected to the heating power supply 5 4 is wound on the thermally conductive cylinder 2; the superconducting segment 1 passes through the cylinder 2 and the two ends of the superconducting segment 1 passing through the cylinder 2 are respectively connected with the two leading ends of the superconducting coil 6; the two ends of the superconducting coil 6 The lead-out end is also connected with the power supply 7 through the power supply line 7a.

[0027] The cylinder 2 of this example is made of high thermal conductivity materials such as copper and artificial sapphire.

[0028] The cylinder 2 in this example is formed by bonding the lower half cylinder 2a and the upper half cylinder ...

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Abstract

The invention discloses a superconduction switch for a superconduction coil. The superconduction switch is characterized in that a resistance wire (4) which is connected with a heating power supply (5) is wound on a heat-conduction cylinder (2); a superconduction section (1) penetrates through the cylinder (2), and two ends, stretching out of the cylinder (2), of the superconduction section (1) are respectively connected with two leading-out ends of the superconduction coil (6); two leading-out ends of the superconduction coil (6) are also connected with a power supply (7) respectively through a power supply wire (7a). The superconduction switch is used for powering the superconduction coil, and after the superconduction coil is powered for one time, a magnetometer can obtain a high and stable noiseless magnetic field for a relatively long time; after the superconduction coil is powered by the superconduction switch for one time, the stable excitation current of an excitation system can be maintained for a long time, so that a car-mounted power supply which needs to continuously power the excitation system in the linear superconduction driving can be canceled, the weight of a suspension vehicle body can be reduced, and the system running efficiency can be improved.

Description

technical field [0001] The invention relates to a superconducting switch for a superconducting coil. Background technique [0002] The superconducting switches currently used in superconducting coils are all low-temperature superconducting switches. Its structure and principle are that the heater is integrated with a short section of superconducting material, and then connected in series with the superconducting coil; when the heater is turned on, the temperature of the section of superconducting material connected to the heater rises to its critical temperature Above, the current can no longer flow easily to realize the "opening" of the switch; when the heater is turned off, the current can flow through the non-resistance (superconducting state) superconducting material segment to realize the "closing" of the switch. Since the heater of the superconducting switch and the superconducting material section are connected in series to the branch circuit of the superconducting c...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01L39/16H10N60/30
Inventor 晏飞翔荆海莲陈鑫许媛媛李婧张卫华
Owner SOUTHWEST JIAOTONG UNIV
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