CERN Accelerating science

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1.
Weak acid leaching of MgB$_2$ to purify magnesiothermic boron powder / Capra, Marco (Genoa U.) ; Bovone, Gianmarco (CNR, Italy) ; Loria, Federico (CNR, Italy) ; Bernini, Cristina (CNR, Italy) ; Hopkins, Simon C (CERN) ; Ballarino, Amalia (CERN) ; Tropeano, Matteo (ASG Supercond., Genova) ; Tumino, Andrea (ASG Supercond., Genova) ; Grasso, Gianni (ASG Supercond., Genova) ; Ferdeghini, Carlo (CNR, Italy) et al.
We have established a new procedure for recovering boron contained in oxidized MgB$_2$ phase. Incorrect conditions of synthesis or conservation, or excess impurities in precursors, can lead to MgO formation with consequent degradation of superconducting properties, thus representing a possible problem in the industrial production of MgB$_2$ conductors following the ex-situ PIT process. [...]
2021 - Published in : Materials Today Communications 26 (2021) 101731
2.
Characterization of Freeze-Dried Boron Nanopowders and Parameter Optimization in Ex Situ MgB2 Wire Production / Capra, Marco (U. Genoa ; CNR-SPIN, Naples) ; Bovone, Gianmarco (CNR-SPIN, Naples) ; Loria, Federico (CNR-SPIN, Naples) ; Bernini, Cristina (CNR-SPIN, Naples) ; Tropeano, Matteo (ASG Supercond., Genova) ; Tumino, Andrea (ASG Supercond., Genova) ; Grasso, Gianni (ASG Supercond., Genova) ; Hopkins, Simon C (CERN) ; Ballarino, Amalia (CERN) ; Ferdeghini, Carlo (Genoa U.) et al.
This article reports a study to identify optimal synthesis parameters for a pure boron precursor prepared following a patented process developed at CNR-SPIN laboratories, performed in the framework of a collaboration between CNR-SPIN and CERN. Boron is a precursor that plays a crucial role in the MgB2wire manufacturing, as a consequence, the synthesis parameters of the superconducting phase have been investigated. [...]
2021 - 7 p. - Published in : IEEE Trans. Appl. Supercond. 31 (2021) 6200107
3.
Cable Conductor Design for the High-Power MgB2 DC Superconducting Cable Project of BEST PATHS / Bruzek, Christian E (Nexans France) ; Ballarino, Amalia (CERN) ; Escamez, Guillaume (Nexans France) ; Giannelli, Sebastiano (CERN) ; Grilli, Francesco (KIT, Karlsruhe) ; Lesur, Frédéric (Courbevoie, RTE) ; Marian, Adela (Potsdam, IASS) ; Tropeano, Matteo (Columbus Supercond., Genova)
BEST PATHS (acronym for “BEyond State-of-the-art Technologies for rePowering ac corridors and multi-Terminal HVDC Systems”) is a collaborative project of 40 leading European organizations from science and industry, supported by the 7th Research Framework Programme of the European Commission. The project investigates the feasibility of technological innovations that could advance high-capacity transmission links. [...]
2017 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 27 (2017) 4801405
In : Applied Superconductivity Conference, Denver, CO, USA, 4 - 9 Sep 2016, pp.4801405
4.
The BEST PATHS Project on $MgB_2$ Superconducting Cables for Very High Power Transmission / Ballarino, Amalia (CERN) ; Bruzek, Christian E (Nexans France) ; Dittmar, Nico (Dresden, Tech. U.) ; Giannelli, Sebastiano (CERN) ; Goldacker, Wilfried (KIT, Karlsruhe) ; Grasso, Giovanni (Columbus Supercond., Genova) ; Grilli, Francesco (KIT, Karlsruhe) ; Haberstroh, Christoph (Dresden, Tech. U.) ; Hole, Stephane (ESPCI, Paris) ; Lesur, Frederic (RTE, Courbevoie) et al.
BEST PATHS (acronym for “BEyond State-of-the-art Technologies for rePowering Ac corridors and multi-Terminal HVDC Systems”) is a collaborative project within the FP7 framework of the European Commission that includes an $MgB_2$ -based power transmission line among its five constituent demonstrators. Led by Nexans and bringing together transmission operators, industry and research organizations, this demonstrator aims at validating the novel $MgB_2$ technology for very high power transfer (gigawatt range). [...]
2016 - 6 p. - Published in : IEEE Trans. Appl. Supercond. 26 (2016) 5401705
In : 12th European Conference on Applied Superconductivity, Lyon, France, 06 - 10 Sep 2015, pp.5401705

Vea también: autores con nombres similares
2 Tropeano, M
1 Tropeano, M.
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