Kutatás

BEVONT FELÜLETű MAGNETIT NANORÉSZECSKEK BIOLÓGIAI ÉS ORVOSI ALKALMAZÁSOKHOZ

1. Magnetit nanorészecskék (átlag méret kisebb, mint 10 nm) biokompatibilis hidrofób bevonattal
   (pl. egyrétegű olajsavas bevonat)
2. Magnetit nanorészecskék (átlag méret kisebb, mint 10 nm) biokompatibilis hidrofil bevonattal
   (pl. kétrétegű olajsavas bevonat)

 

Hasznos linkek:


Tudomanyos dolgozatok:

  1. I. Borbáth, Z. Kacsό, L. Dávid, I. Potencz, Doina Bica, Oana Marinică, L. Vėkás, Applications Of Magnetic Nanofluids  In Rotating Seals, Convergence of micro- and nanoengineering, Bucharest; Romanian Academy Publ.House (2006), pp.200-210 http://roseal.eu/kep/MNFseals_lucrareROMJIST.pdf
  2. A. Hajdú, E. Illés, E. Tombácz, I. Borbáth: Surface charging, polyanionic coating and colloid stability of magnetite nanoparticles, Colloids&Surfaces A. 347 (2009) 104–108., pp. 104-108 http://dx.doi.org/10.1016/j.colsurfa.2008.12.039
  3. Susan-Resiga D., Marinica O., Vekas L., Boros T.:Flow behaviour of extremely bidisperse magnetizable fluids; Proceedings of CFM 2009 New Trends in Complex Fluids Modeling , Bran, Romania, pp. 60-62;; ISSN: 2066-5790; UPT; 2009
  4. Borbáth T., Bica D. †, Potencz I., Vékás L., Borbáth I., Boros T., „Magnetic nanofluids and magnetic composite fluids in rotating seal systems”, Proc. 25th IAHR Symposium on Hydraulic Machinery and Systems, Timisoara, Romania 2010. IOP Conf. Series: Earth and Environmental Science 12 (2010) 012105 doi:10.1088/1755-1315/12/1/012105
  5. Zaharescu T., Jipa S., Mantsch A., Borbath I., Borbath T., Qualification of ethylene-propylene elastomers for nuclear applications, Journal of Advanced Research in Physics 1 (2010) 1 http://stoner.phys.uaic.ro/jarp/index.php/jarp/article/view/27
  6. Borbáth T., Bica D., Potencz I., Borbáth I., Boros T., Vékás L., Leakage-free Rotating Seal Systems with Magnetic Nanofluids and Magnetic Composite Fluids Designed for Various Applicationsm,  International Journal of Fluid Machinery and Systems 4 (2011) No. 1, p.67-75 https://www.jstage.jst.go.jp/pub/html/AY03S050_en.html
  7. Borbáth T., Panaitescu V., Potencz I., Borbáth I., Vékás L., Analiza câmpurilor magnetice în etanşări rotitoare cu nanofluide magnetice, A XI-a Conferinţă Naţională multidisciplinară – cu participare international “Profesorul Dorin PAVEL – fondatorul hidroenergeticii româneşti”, Sebeş, 19 (2011) p. 337-344
  8. Susan-Resiga D., Socoliuc V., Boros T., Borbáth T., Marinica O., Han A., Vékás L., The influence of particle clustering on the rheological properties of highly concentrated magnetic nanofluids, Journal of Colloid and Interface Science 373 (2012), p. 110–115 http://dx.doi.org/10.1016/j.jcis.2011.10.060
  9. T. Borbáth, L. Vékás,  I. Borbáth, S. Günther, O. Marinica, S. Odenbach., Three-dimensional microstructural investigation of high magnetization nano-micro composite fluids using X-ray microcomputed tomography, (to be published)
  10. Pîslaru–Dănescu L., Morega A.M., Morega M., Stoica V., Marinică O.M.,Nouraş F., Păduraru N., Borbáth I., Borbáth T., Prototyping a Ferrofluid Cooled Transformer, 2012, IEEE Transaction on IAS, 2011-EMC-581.R2 10.1109/TIA.2013.2252872
  11. Borbáth T., Panaitescu V. N., Borbáth I., Marinică O., Vékás L., Experiments on viscous heating in  leakage-free rotating seal systems with magnetic nanofluid,  U.P.B. Sci. Bull., Series D, Vol. 75, Iss. 3, 2013 http://www.scientificbulletin.upb.ro/rev_docs_arhiva/rez830_110166.pd

Szabadalom:

Bica D., Vekas L., Balanean F., Borbath I., Boros T.F., Galffy D., Procedeu de obtinere a fluidelor magnetice compozite pentru etansari magnetofluidice rotitoare, pentru presiuni ridicate, OSIM Nr. 122725/2009

Szabadalmi kerelem:

Pîslaru-Danescu L., Macamete E., Telipan G., Pintea J.,Noura? F., Păduraru N., Vékás L., Stoian F. D., Borbáth I., Borbáth T., Morega A., Morega M., Transformator cu agent de răcire nanofluid magnetic, 2010, Brevet RO Nr. OSIM A 00776-31080

Video:

fluid magneticMágnesesfolyadék bemutatása (video)