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[HTML][HTML] Recent progress in MgB2 superconducting joint technology
Magnesium diboride (MgB 2) magnets have the potential to be the next-generation liquid-
helium-free magnet for magnetic resonance imaging (MRI) application due to their relatively …
helium-free magnet for magnetic resonance imaging (MRI) application due to their relatively …
Improving the superconducting properties of 100 m class MgB2 wire with 18+ 1 filaments produced via an internal Mg diffusion process
Z Wang, F Yang, Q Wang, D Wang… - Superconductor …, 2024 - iopscience.iop.org
Internal Mg diffusion (IMD) technology reveals the expansive prospects of MgB 2
superconducting wires. To facilitate the practical application of IMD, a series of 100 m class …
superconducting wires. To facilitate the practical application of IMD, a series of 100 m class …
Phonon thermal transport properties of XB2 (X = Mg and Al) compounds: considering quantum confinement and electron–phonon interaction
Abstract XB2 (X= Mg and Al) compounds have drawn great attention for their superior
electronic characteristics and potential applications in semiconductors and superconductors …
electronic characteristics and potential applications in semiconductors and superconductors …
High critical current properties of multi-filamentary MgB2 superconducting wires fabricated using an internal Mg diffusion method
W Chen, X Nong, Z Wang, J Li, L Yang… - Superconductor …, 2024 - iopscience.iop.org
Although both the mass density and grain connectivity of MgB 2 superconducting layers can
be greatly improved via an internal Mg diffusion (IMD) process, the poor structural uniformity …
be greatly improved via an internal Mg diffusion (IMD) process, the poor structural uniformity …
[HTML][HTML] Selection of Fe as a barrier for manufacturing low-cost MgB2 multifilament wires–Advanced microscopy study between Fe and B reaction
The high cost of using the niobium (Nb) barrier for manufacturing magnesium diboride (MgB
2) mono-and multi-filamentary wires for large-scale applications has become one of the …
2) mono-and multi-filamentary wires for large-scale applications has become one of the …
Superconducting joints using multifilament MgB2 wires for MRI application
We present superconducting joints using 36 filaments magnesium diboride (MgB 2) wires in
continuation joint orientation and their characterisation results for the first time. One of the …
continuation joint orientation and their characterisation results for the first time. One of the …
Interface effects on the current transport properties of multi-layered (Ba, K) Fe 2 As 2 superconducting wires
C Yao, W Guo, Y Zhu, X Liu, M Han, F Liu… - Journal of Materials …, 2023 - pubs.rsc.org
Iron-based superconductors (IBSs) are very promising candidates for high-field applications
owing to their ultrahigh upper critical field and very small electromagnetic anisotropy. For …
owing to their ultrahigh upper critical field and very small electromagnetic anisotropy. For …
Superconducting joining concept for internal magnesium diffusion-processed magnesium diboride wires
A superconducting joint of unreacted monofilament internal magnesium diffusion-processed
magnesium diboride (MgB2) wires was fabricated by exploiting the phenomenon of …
magnesium diboride (MgB2) wires was fabricated by exploiting the phenomenon of …
MgB2 Superconducting Joint Architecture with the Functionality to Screen External Magnetic Fields for MRI Magnet Applications
A superconducting joint architecture to join unreacted carbon-doped multifilament
magnesium diboride (MgB2) wires with the functionality to screen external magnetic fields …
magnesium diboride (MgB2) wires with the functionality to screen external magnetic fields …
Interfacial reactions and critical current density of Cu-sheathed Cu-doped MgB2 wire with Ti diffusion barrier
Abstract Development of reaction zones at the core Mg (Cu)–boron (B) and barrier (Ti)–
sheath (Cu) interfaces of an internal magnesium diffusion (IMD) manufactured MgB 2 …
sheath (Cu) interfaces of an internal magnesium diffusion (IMD) manufactured MgB 2 …