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Design of a conduction-cooled 4 T superconducting racetrack for a multi-field coupling measurement system

Design of a conduction-cooled 4 T superconducting racetrack for a multi-field coupling measurement system
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摘要 A conduction-cooled superconducting magnet producing a transverse field of 4 T has been designed for a new generation multi-field coupling measurement system, which will be used to study the mechanical behavior of superconducting samples at cryogenic temperatures and intense magnetic fields. A compact cryostat with a two-stage GM cryocooler is designed and manufactured for the superconducting magnet. The magnet is composed of a pair of flat racetrack coils wound by NbTi/Cu superconducting composite wires, a copper and stainless steel combinational former and two Bi2Sr2CaCu20~ superconducting current leads. The two coils are connected in series and can be powered with a single power supply. In order to support the high stress and attain uniform thermal distribution in the superconducting magnet, a detailed finite element (FE) analysis has been performed. The results indicate that in the operating status the designed magnet system can sufficiently bear the electromagnetic forces and has a uniform temperature distribution. A conduction-cooled superconducting magnet producing a transverse field of 4 T has been designed for a new generation multi-field coupling measurement system, which will be used to study the mechanical behavior of superconducting samples at cryogenic temperatures and intense magnetic fields. A compact cryostat with a two-stage GM cryocooler is designed and manufactured for the superconducting magnet. The magnet is composed of a pair of flat racetrack coils wound by NbTi/Cu superconducting composite wires, a copper and stainless steel combinational former and two Bi2Sr2CaCu20~ superconducting current leads. The two coils are connected in series and can be powered with a single power supply. In order to support the high stress and attain uniform thermal distribution in the superconducting magnet, a detailed finite element (FE) analysis has been performed. The results indicate that in the operating status the designed magnet system can sufficiently bear the electromagnetic forces and has a uniform temperature distribution.
出处 《Chinese Physics C》 SCIE CAS CSCD 2015年第12期109-112,共4页 中国物理C(英文版)
基金 Supported by National Natural Science Foundation of China(11327802,11302225) China Postdoctoral Science Foundation(2014M560820) National Scholarship Foundation of China(201404910172)
关键词 CONDUCTION-COOLED superconducting magnet multi-field coupling measurement system mechanical and thermal analysis conduction-cooled, superconducting magnet, multi-field coupling measurement system, mechanical and thermal analysis
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参考文献12

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