This paper presents a new concept for a hybrid trapped field magnet made of second generation higherature super-conducting ring-shape magnet and HTS stack tapes. This hybrid trapped field magnet has the potential to provide a better magnetic field. This paper focuses on the magnetization properties of this new magnet. First, ultraviolet laser cutting technology was used to prepare the striated HTS tapes. Then both tradition method and 'wind-and-flip' method were used to fabricate the ring-shape magnet. After that, basic features of the hybrid trapped field magnet, such as the maximum trapped field and decay rate were quantified by pulsed field magnetization (PFM) experiments. Due to the limitation of PFM method, a more cost-effective magnet...
Continuous very high magnetic fields (over 30 T) can be generated using suitable combinations of sup...
High temperature superconductor (HTS) is becoming more and more attractive for the application in hi...
In this paper, a new concept of a hybrid trapped field magnet lens (HTFML) is proposed. The HTMFL ex...
This paper studies the magnetization mechanism of a hybrid high temperature superconducting (HTS) tr...
This paper presents a new trapped-field magnet made of second-generation high-temperature supercondu...
The world demand for energy is estimated to increase by up to 70% from 2016 to 2040. To meet this de...
We report here a record 4.6 T trapped field generated by high temperature superconducting (HTS) pers...
High temperature superconducting (HTS) bulks and stacks of coated conductors can be magnetized to be...
High temperature superconducting (HTS) tape can be cut and stacked to generate large magnetic fields...
Investigating and predicting the magnetization of bulk superconducting materials and developing prac...
Stacks of high temperature superconducting tape, magnetized using pulsed fields, provide a new type ...
One of the most promising applications for high temperature superconducting (HTS) material is magnet...
High-temperature superconducting (HTS) trapped field magnets can generate and maintain stable, high ...
Many electrical engineering applications such as motors and generators use permanent magnets which a...
© 2002-2011 IEEE. Stacked-coated conductor tapes have demonstrated superior properties over bulk sup...
Continuous very high magnetic fields (over 30 T) can be generated using suitable combinations of sup...
High temperature superconductor (HTS) is becoming more and more attractive for the application in hi...
In this paper, a new concept of a hybrid trapped field magnet lens (HTFML) is proposed. The HTMFL ex...
This paper studies the magnetization mechanism of a hybrid high temperature superconducting (HTS) tr...
This paper presents a new trapped-field magnet made of second-generation high-temperature supercondu...
The world demand for energy is estimated to increase by up to 70% from 2016 to 2040. To meet this de...
We report here a record 4.6 T trapped field generated by high temperature superconducting (HTS) pers...
High temperature superconducting (HTS) bulks and stacks of coated conductors can be magnetized to be...
High temperature superconducting (HTS) tape can be cut and stacked to generate large magnetic fields...
Investigating and predicting the magnetization of bulk superconducting materials and developing prac...
Stacks of high temperature superconducting tape, magnetized using pulsed fields, provide a new type ...
One of the most promising applications for high temperature superconducting (HTS) material is magnet...
High-temperature superconducting (HTS) trapped field magnets can generate and maintain stable, high ...
Many electrical engineering applications such as motors and generators use permanent magnets which a...
© 2002-2011 IEEE. Stacked-coated conductor tapes have demonstrated superior properties over bulk sup...
Continuous very high magnetic fields (over 30 T) can be generated using suitable combinations of sup...
High temperature superconductor (HTS) is becoming more and more attractive for the application in hi...
In this paper, a new concept of a hybrid trapped field magnet lens (HTFML) is proposed. The HTMFL ex...