The Influence of Different Additives on MgB2 Superconductor Obtained by Ex Situ Spark Plasma Sintering: Pinning Force Aspects
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Springer International Publishing
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http://link.springer.com/content/pdf/10.1007/978-3-319-43779-8_4
Reference67 articles.
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2. D.C. Larbalestier et al., Strongly linked current flow in polycrystalline forms of the new superconductor MgB2. Nature 410, 186 (2001)
3. P. Badica, G. Aldica, M. Burdusel, S. Popa, R.F. Negrea, M. Enculescu, I. Pasuk, L. Miu, Significant enhancement of the critical current density for cubic BN addition into ex situ spark plasma sintered MgB2. Supercond. Sci. Technol. 27, 095013 (2014)
4. G. Aldica, M. Burdusel, S. Popa, Y. Hayasaka, P. Badica, Graphene addition to MgB2 superconductor obtained by ex-situ spark plasma sintering technique. Mater. Res. Bull. 77, 205 (2016)
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1. MgB2 with Addition of Cubic BN and Ge2C6H10O7 Obtained by Spark Plasma Sintering Technique;Journal of Superconductivity and Novel Magnetism;2022-07-29
2. Pinning Force Scaling Analysis of Polycrystalline MgB2;Journal of Superconductivity and Novel Magnetism;2020-07-21
3. Reproducibility of small Ge2C6H10O7-added MgB2 bulks fabricated by ex situ Spark Plasma Sintering used in compound bulk magnets with a trapped magnetic field above 5 T;Scientific Reports;2020-06-29
4. High magnetic shielding properties of an MgB2 cup obtained by machining a spark-plasma-sintered bulk cylinder;Superconductor Science and Technology;2020-03-10
5. Control of the Critical Current Density Through Microstructural Design by Ho2O3 and Te Co-addition into MgB2 Processed by Ex Situ Spark Plasma Sintering;Superconductivity;2019-08-22
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