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| 1 | Magnetic Flux Controllers for Induction Heating Applications显示文摘Application of magnetic flux controllers/concentrators to induction heating coils can drastically improve the process efficiency and heat pattern control. Presentation includes: benefits provided by flux controllers, materials available for controllers, application techniques, computer assisted design of induction coils with concentrators, examples of applications. Depending on induction system design, magnetic flux controllers can concentrate heating in a specified area, change heat source distribution and shield a particular part zone or external area preventing unintended eddy current heating. Besides of the coil efficiency improvement and optimal power distribution, magnetic flux controllers reduce the coil current demand from a supplying circuitry thus strongly reducing losses in busswork, cables, transformers and inverter components. Improvement that can be achieved due to magnetic flux controllers is case dependable. 2D and 3D computer simulation allows the designer to predict accurately effect of controllers on the coil parameters and temperature distribution and optimize the whole electromagnetic system. Special attention in presentation is paid to new magnetodielectric materials optimized for induction heating conditions. These materials have high magnetic permeability and saturation flux density, excellent machinability, good chemical and temperature resistance. Concentrators from these materials can work in a wide range of frequencies and specific powers. Examples of magnetic flux controller application include surface hardening of shafts and gears, induction surface hardfacing and brazing. | Valentin Nemkov Robert Goldstein Robert Ruffini | 2004 | 材料热处理学报2004,25,5: | 3 |
| 2 | Effectiveness of using autologous mono-nuclears of the bone marrow in treatment of patients with ischemic heart disease显示文摘 | Sedov VM Nemkov AS Afanas'ev BV | | 0,,04: | 1 |
| 3 | Increasing inductor life by predicting coil copper temperature显示文摘 | Nemkov V Goldstein R | 2007 | Heat Treating Progress2007,,: | 1 |
| 4 | Inductors for heating internal surfaces显示文摘 | Nemkov V Goldstein R Bukanin V | 2008 | Induction Heating2008,5,: | 1 |
| 5 | Advanced design of induction heat teating processes and work coils 显示文摘 | RUFFINI R S RUFFINI R T NEMKOV V S | 1997 | Heat Treatment of Metals1997,26,4: | 1 |
| 6 | Computer simulation for fundamental study and practical solutions to induction heating problems显示文摘 | Valentin Nemkov Robert Goldstein | 2003 | COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering2003,,1: | 1 |
| 7 | Metabolomics in transfusion medicine显示文摘 | Nemkov T Hansen KC Dumont LJ | 2016 | Transfusion2016,56,4: | 1 |
| 8 | Modified solenoid coil that efficiently produces high amplitude AC magnetic fields with enhanced uniformity for biomedical applications 显示文摘 | Bordelon D E Goldstein R C Nemkov V S | 2012 | IEEE Transactions on Magnetics2012,48,1: | 1 |
| 9 | Wasps of the genus Gorytes (Hymenoptera, Sphecidae) from Siberia and Far East of the USSR显示文摘 | NEMKOV P G | 1989 | Zoologicheskii Zhurnal1989,68,4: | 1 |
| 10 | The new species of digger wasps of the genus Harpactus (Hymenoptera, Sphecidae) from the central Palaearctic显示文摘 | NEMKOV P G | 1994 | Zoologicheskii Zhurnal1994,73,11: | 1 |
| 11 | New species of digger wasps of the genus Nysson Latreille (Hymenoptera, Sphecidae) from Tajikistan显示文摘 | NEMKOV P G | 1995 | Far Eastern Entomologist1995,22,: | 1 |
| 12 | To synonymy of Palaearctic digger wasps of the tribe Gorytini (Hymenoptera, Sphecidae) 显示文摘 | NEMKOV P G | 1995 | Far Eastern Entomologist1995,1114,: | 1 |
| 13 | Influence of the resonator geometry on the output power of a laser with several active elements显示文摘 | KUSHNIR V R NEMKOV A N SHKUNOV N V | 1975 | Soy J Quantum Electron1975,5,99: | 1 |
| 14 | Comput- er Simulation of Induction Heating 显示文摘 | RUFFINI R S RUFFINI R T NEMKOV V S | 2000 | Magsoft Update2000,6,1: | 1 |
| 15 | Ejection fraction and sizes of the left ventricle of the heart after intracoronary admin- istration of autologous mononuclear cells of the bone marrow in patients with coronary artery disease with low ejection fraction显示文摘 | Bumos SN Nemkov AS Belyi SA | 2011 | Vestn Khir Im Ⅱ Grek2011,170,4: | 1 |
| 16 | Multiparametric characterization of red blood cell physiology after hypotonic dialysis based drug encapsulation process显示文摘Red blood cells(RBCs)can act as carriers for therapeutic agents and can substantially improve the safety,pharmacokinetics,and pharmacodynamics of many drugs.Maintaining RBCs integrity and lifespan is important for the efficacy of RBCs as drug carrier.We investigated the impact of drug encapsulation by hypotonic dialysis on RBCs physiology and integrity.Several parameters were compared between processed RBCs loaded with l-asparaginase(“eryaspase”),processed RBCs without drug and non-processed RBCs.Processed RBCs were less hydrated and displayed a reduction of intracellular content.We observed a change in the metabolomic but not in the proteomic profile of processed RBCs.Encapsulation process caused moderate morphological changes and was accompanied by an increase of RBCs-derived Extracellular Vesicles release.Despite a decrease in deformability,processed RBCs were not mechanically retained in a spleen-mimicking device and had increased surface-to-volume ratio and osmotic resistance.Processed RBCs half-life was not significantly affected in a mouse model and our previous phase 1 clinical study showed that encapsulation of asparaginase in RBCs prolonged its in vivo half-life compared to free forms.Our study demonstrated that encapsulation by hypotonic dialysis may affect certain characteristics of RBCs but does not significantly affect the in vivo longevity of RBCs or their drug carrier function. | Mélanie Robert Bastien Laperrousaz Diana Piedrahita Emilie-Fleur Gautier Travis Nemkov Florian Dupuy Elie Nader Virginie Salnot Patrick Mayeux Angelo D’Alessandro Catherine Lavazec Philippe Joly Alexander Scheer Philippe Connes Agnès Cibiel | 2022 | Acta Pharmaceutica Sinica B2022,12,4: | 0 |