Name | PARSEC - Peritectic Alloy Rapid Solidification with Electromagnetic Convection, EML Batch 1, 2, 3 |
Operational Nomenclature | PARSEC - EML |
URL | https://hreda.esac.esa.int/hreda/#/pages/investigation;investigationAcronym=PARSEC_EML_ISS |
DOI | https://doi.org/10.57780/esa-epkikgu |
Platform | ISS |
HRE-E3P Category | Physical Sciences |
Mission | Inc42, Inc44, Inc46, Inc48, Inc49, Inc50, Inc51, Inc52, Inc53, Inc54, Inc55, Inc56, Inc57, Inc58, Inc59, Inc60, Inc61, Inc62, Inc63, Inc64, Inc65, Inc66, Inc67, Inc68, Inc69, Inc70, Inc71 |
Team Coordinator Name | Douglas M. Matson, Olga Shuleshova, Thomas Volkmann |
Version | 1.0 |
Team Members | PARSEC_EML_ISS |
Publication | W Soellner, A Seidel, C Stenzel, W Dreier, B Glaubitz, 2010, EML - Containerless processing facility for materials science on board the ISS, Journal of the Japanese Society of Microgravity Application, 27, 4, 183-189 DM Matson, X Xiao, JE Rodríguez, Jonghyun Lee, Robert W. Hyers, Olga Shuleshova, I Kaban, Stefan Schneider, S Karrasch, S Burggraf, Rainer K. Wunderlich, Hans-Jörg Fecht, 2017, Use of thermophysical properties to select and control convection during rapid solidification of steel alloys using electromagnetic levitation on the space station, The Journal of The Minerals, Metals & Materials Society - JOM, 69, 8, 1311-1318, DOI: 10.1007/s11837-017-2396-5 S Lomaev, Mikhail Krivilev, Jan Fransaer, L Lee, T Volkmann, DM Matson, 2019, Simulation of fluid flow in levitated Fe-Co droplets electromagnetically processed onboard the ISS, Magnetohydrodynamics, 55, 1, 251-260, DOI: http://doi.org/10.22364/mhd DM Matson, 2018, Retained free energy as a driving force for phase transformation during rapid solidification of stainless steel alloys in microgravity, npj Nature - Microgravity, 4, 22, 1-6, DOI: 10.1038/s41526-018-0056x DM Matson, X Xiao, 2018, Identifying metastable interface potency limits during steel alloy transformations, Materials Letters, 212, 256-258 Hans-Jörg Fecht, Rainer K. Wunderlich, 2017, Fundamentals of liquid processing in low Earth orbit: From thermophysical properties to microstructure formation in metallic alloys, The Journal of The Minerals, Metals & Materials Society - JOM, , 1261-1268, DOI: 10.1007/s11837-017-2417-4 DM Matson, Robert W. Hyers, T Volkmann, 2010, Peritectic alloy rapid solidification with electromagnetic convection, International Journal of Microgravity Science and Application, 27, 4, 238 A Seidel, W Soellner, C Stenzel, 2011, EML - An electromagnetic levitator for the International Space Station, Journal of Physics: Conference Series, 327, 1, 012057, , DOI: 10.1088/1742-6596/327/1/012057 DM Matson, Robert W. Hyers, T Volkmann, Hans-Jörg Fecht, 2011, Phase selection in the mushy zone: LODESTARS and ELFSTONE Programs, Journal of Physics Conference Series, 327, 1, 012009, , DOI: 10.1088/1742-6596/327/1/012009 Robert W. Hyers, DM Matson, Kenneth F. Kelton, Dirk Holland-Moritz, T Volkmann, 2011, Fluid-flow effects on phase selection and nucleation in undercooled liquid metals, Journal of Physics: Conference Series, 327, 1, 012013, DOI: 10.1088/1742-6596/327/1/012013 2012, Solidification of containerless undercooled melts, Wiley-VCH Verlag GmbH & Co. KGaA, , Dieter M. Herlach, DOI:10.1002/9783527647903 DM Matson, 2012, Controlled convection during microgravity solidification, , AIAA-2012-0592 Jonghyun Lee, X Xiao, DM Matson, Robert W. Hyers, 2013, Characterization of fluid flow inside electromagnetically-levitated molten iron-cobalt droplets for ISS experiment, TMS 2013 Annual Meeting, 8 March, San Antonio TX, , 469-476 Jonghyun Lee, DM Matson, 2014, Prediction of Mass Evaporation of Fe50Co50 during Measurement of Thermophysical Properties using Electrostatic Levitation, International Journal of Thermophysics, 35, 9-10, 1697-1704, , DOI: 10.1007/s10765-014-1662-9 JE Rodríguez, DM Matson, 2015, Thermodynamic Modeling of the Solidification Path of Levitated Fe-Co Alloys, CALPHAD, 49, 6, 87-100, DOI: 10.1016/j.calphad.2015.03.001 Jonghyun Lee, JE Rodríguez, Robert W. Hyers, DM Matson, 2015, Measurement of Density of Fe-Co Alloys using Electrostatic Levitation, Metallurgical and Materials Transactions B, 46B, 6, 2470-2475, , DOI: 10.1007/s11663-015-0434-7 DM Matson, X Xiao, J Rodríguez, Rainer K. Wunderlich, 2016, Preliminary experiments using electromagnetic levitation on the International Space Station, International Journal of Microgravity Science and Application, 33, 2, 330206, DOI: 10.15011/jasma.33.330206 S Lomaev, Mikhail Krivilev, M Fransaer, 2016, Exact analytical solution based on the vector potential technique for a conjugated hydrodynamic and joule heating problem in an electromagnetically levitated drop, Magnetohydrodynamics, 52, , , DOI: 10.22364/mhd.52.1-2.12 JE Rodríguez, DM Matson, 2017, Lateral heat flux and remelting during growth into the mushy-zone, Acta Materialia, 129, 408-414 JE Rodríguez, C Kreischer, T Volkmann, DM Matson, 2017, Solidification velocity of undercooled Fe-Co alloys, Acta Materialia, 122, 431-437, DOI: 10.1016/j.actamat.2016.09.047 |
Temporal Coverage | 2014-11-11T00:00:00Z/2024-09-30T00:00:00Z |
Mission Description | The HRE Data Archive (HREDA) collects information and data of investigations funded or co-funded by ESA’s Directorate for Human and Robotic Exploration (HRE) and performed on microgravity and ground-based facilities since 1972. |
Creator Contact | https://hreda.esac.esa.int/hreda/#/pages/help/contact |
Date Published | 2024-04-24T23:18:22Z |
Last Update | 2025-01-25 |
Publisher And Registrant | European Space Agency |
Credit Guidelines | European Space Agency, 2024, 'PARSEC - EML', 1.0, European Space Agency, https://doi.org/10.57780/esa-epkikgu |