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dr Katarzyna Konopka
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Affiliation:
Warsaw University of Technology, Faculty of Materials Science and Engineering
address:
Wołoska 141, Warszawa, 02-507,
Poland
phone:
(+48-22)6608529
fax:
(+48-22)6608514
web:
http://www.inmat.pw.edu.pl
Participant:
High Pressure School 2001 (4th)
began:
2001-06-22
ended:
2001-06-25
Presented:
Participant:
E-MRS Fall Meeting 2002
began:
2002-09-15
ended:
2002-09-19
Presented:
Participant:
E-MRS Fall Meeting 2003
began:
2003-09-15
ended:
2003-09-11
Presented:
E-MRS Fall Meeting 2003
Microstructure of Ni-P thin layers obtained by a chemical method
E-MRS Fall Meeting 2003
Novel ceramic matrix composites with metal phase particles in the range from nano to micro - size
Participant:
E-MRS Fall Meeting 2004
began:
2004-09-06
ended:
2004-09-10
Presented:
E-MRS Fall Meeting 2004
Polymer matrix composites with nanoparticles of TiC obtained by a sol-gel method
Participant:
E-MRS Fall Meeting 2005
began:
2005-09-05
ended:
2005-09-09
Presented:
E-MRS Fall Meeting 2005
Improvement of wetting and bonding of SiO
2
ceramics and urea-urethane elastomer
Participant:
Strategie Rozwoju Technologii Zaawansowanych Materiałów w Polsce
began:
2008-03-28
ended:
2008-03-28
Presented:
Strategie Rozwoju Technologii Zaawansowanych Materiałów w Polsce
Kompozyty ceramika-metal
Participant:
E-MRS Fall Meeting 2008
began:
2008-09-15
ended:
2008-09-19
Presented:
E-MRS Fall Meeting 2008
Investigation of compaction of diatoms by die pressing and slip casting method
Participant:
E-MRS Fall Meeting 2009
began:
2010-09-14
ended:
2010-09-18
Presented:
E-MRS Fall Meeting 2009
Characterization of diatoms consolidation
Publications:
Al2O3-Fe functionally graded materials fabricated under magnetic field
Characteristic of Al
2
O
3
– Ni composites obtained by slip casting method.
Characteristic of surface topography of ancient pottery
Characterization of diatoms consolidation
FINITE ELEMENT MODELLING OF THE RESIDUAL STRESSES IN THE CERAMIC-ELASTOMER COMPOSITES
Investigation of compaction of diatoms by die pressing and slip casting method
Kompozyty ceramika-metal
Microstructure of Ni-P thin layers obtained by a chemical method
Novel ceramic matrix composites with metal phase particles in the range from nano to micro - size
Improvement of wetting and bonding of SiO
2
ceramics and urea-urethane elastomer
Polymer matrix composites with nanoparticles of TiC obtained by a sol-gel method
Sintering temperature effect on structure and properties of Al2O3/Ni-P composites with interpenetrating phases
Studies of Ni-P Thin Films by Electroles Deposition Method
The influence of temperature and pressure on possibility of obtaining Al_2O_3/Ni-P nanocomposite through hot pressing process.
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