Recent work focuses on enabling technologies for a 40 T all-superconducting solenoid magnet with a 20-mm warm bore. The dataset likely contains results from conceptual design, strain optimization, and experimental testing of a double-pancake extreme-NI trial coil wound with REBCO bare tape. It was contributed by Liangjun Shao, Dongkeun Park, Jintao Hu, and Patricia Sadde to the Plasma Science and Fusion Center Dataverse.
Use Cases
- Analyze strain-management concepts for nested-coil magnet systems based on the described charging sequence optimization.
- Evaluate the thermal self-protecting ability of REBCO magnets during quench events based on the trial coil test results.
- Study the impact of conductor slitting-edge features on turn-to-turn electrical contact in extreme-NI magnet designs.
- Compare the mechanical integrity of compact magnet designs using overbanding reinforcement concepts described in the work.
Strengths
- Describes a specific 40 T all-superconducting solenoid magnet with a 20-mm warm bore.
- Includes experimental results from testing a double-pancake trial coil in a liquid-nitrogen cryogenic environment.
- Provides a strain-management concept for extreme-NI insert magnets inside high-field nested-coil systems.
Limitations
- Column-level documentation is absent; field semantics must be inferred after download.
- Row count is unknown, which may limit suitability assessment.
- Last updated 2026-06-18 22:54:32; freshness should be verified.
Provenance
- Source
- Plasma Science and Fusion Center Dataverse
- Collection Method
- Likely contains experimental data and conceptual design results from research on enabling technologies for high-field magnets.
- Freshness
- Last updated 2026-06-18 22:54:32.