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dr Malgorzata Lewandowska
e-mail: | ***@inmat.pw.edu.pl |
phone: | +48-22-6608441 |
fax: | +48-22-6608514 |
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Warsaw University of Technology, Faculty of Materials Science and Engineering |
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began: | 2002-09-15 |
ended: | 2002-09-19 |
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began: | 2007-02-07 |
ended: | 2007-02-09 |
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began: | 2010-09-14 |
ended: | 2010-09-18 |
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began: | 2012-09-17 |
ended: | 2012-09-18 |
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Publications: |
- Atomic force microscopy characterization of corneocytes
- (Cd, Mn)Te Crystals for X and Gamma Radiation Detectors - an Alternative Material to CdTe and (Cd,Zn)Te.
- Ceramic-polymer composites for medical application
- Development of microstructure and mechanical properties in nickel deformed by hydrostatic extrusion
- EFFECT OF INITIAL MICROSTRUCTURE ON MECHANICAL PROPERTIES OF THE Al-Cu-Mg-Mn ALLOY PROCESSED BY HYDROSTATIC EXTRUSION
- Evaluation of crystal structure and polytypism of SiC in microwave sintered diamond-SiC composite by TEM and HR-TEM
- Experimental evaluation of melting point depression in AlSi/AlN nanomultilayer system
- Grain refinement in CuCrZr by SPD processing
- Hydrostatic extrusion and nanostructure formation in an aluminium alloy
- Industrial perspectives of nanometals
- Investigation of aqueous surface processes and corrosion mechanisms of Al-(Cu)-Fe-Cr quasicrystaline approximant
- Joining ultrafine grained aluminium by friction stir welding - processing, microstructure and mechanical properties
- Microscopic and surface analytical characterization of TiO2 nanotubes produced by anodic oxidation and thermal treatment
- Microstructural and mechanical characterization of zirconia based composite
- Microstructure and mechanical properties of 7475 aluminium alloy processed by SPD methods
- Microstructure and mechanical properties of binary Al-Li alloys processed by ECAP
- Microstructure evaluation in an Al-Li alloy processed by severe plastic deformation
- Microstructure of the ceramic - polymer composites for dental applications
- Morphological and surface analytical characterization of chemically pretreated Ti surfaces intended for biomedical applications
- Morphology and chemical characterization of Ti surfaces modified for biomedical applications
- Nanomaterials in dental applications
- Nanometals for medical applications
- Nanostructure formation in austenitic stainless steel
- Nanotechnologie w gospodarce województwa podlaskiego
- Nowe materiały metaliczne o strukturze nanometrycznej do zastosowań w nowoczesnych gałęziach gospodarki
- On some peculiarities of electrochemical oxidation of Ti and Ti6Al6V alloy
- Otwarcie konferencji
Evaluation of degradation degree of dental hybrid composite used as permanent fillings MECHANISM OF GRAIN REFINEMENT IN ALUMINIUM ALLOYS IN THE PROCESS OF HYDROSTATIC EXTRUSION The influence of hydrostatic extrusion on mechanical properties and tribological characteristics of an austenitic stainless steel The Influence of hydrostatic extrusion on microstructure of 6082 aluminum alloy - Recent Advances in Making Nanometals by Heavy Plastic Deformation
- Recrystallization and Grain Growth in Nano-structured Austenitic Stainless Steel under Electric Current Heating
- Reduced activation ODS ferritic steel – recent development in high speed hot extrusion processing
- Scale up of nanometals production
- SEM investigations of tooth/ filling bonding
- SEM studies of the etched surface of (Cd,Mn)Te
- SHRINKAGE OF DENTAL POLYMERIC COMPOSITES
- Stability of second phase particles during processing by hydrostatic extrusion
- Structural stability of zirconia ceramic in water and acid solutions
- Tailoring mechanical properties by grain refinement and particle redistribution
- Tailoring mechanical properties of nano-structured Eurofer 97 steel for fusion applications
- The influence of grain refinement on the corrosion mechanism of 7475 aluminium alloy
- The influence of nano - filler on microstructure homogeneity and selected properties of dental ceramic - polymer composites
- The influence of nanosilica on wear resistance of ceramic-polymer composites intended for dental fillings
- The influence of twin bands density on microstructure of 316LVM austenitic stainless steel subjected to transverse rolling
- TiO2 nanotubes based composite layers for biomedical applications
- Wear resistance of the nanostructured 316 LVM austenitic stainless steel processed by hydrostatic extrusion
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