
dr inż. Marcin Wekwejt
Zatrudnienie
- Naukowiec na stażu podoktorskim w CHU-ULaval
- Opiekun naukowy w Koło Naukowe 'Materiały w Medycynie'
- Adiunkt w Instytut Technologii Maszyn i Materiałów
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Phase composition (XRD patterns) of the tested magnesium potassium phosphate bone cements with varying Mg/P, P/L ratios and MgO particle sizes
Dane BadawczeThe cement specimens, after hardening, were crushed and ground in a mortar and then analyzed by a Phillips X’Pert Pro X-ray diffractometer (Almelo, The Netherlands) using Cu-Kα radiation. Data were collected from 2θ = 20–50° with a step size of 0.02°, a 40 kV voltage and a 40 mA current. The phase identification has been undertaken using HighScore Plus...
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Representative open-circuit potential vs. time and potentiodynamic polarization data recorded for uncoated Ti13Zr13Nb and 136_600_sin_300 specimens and XRD results for uncoated and all coated specimens
Dane BadawczeThis dataset includes open-circuit potential and potentiodynamic polarization data for uncoated and MAO/UMAO-treated Ti13Zr13Nb specimens. It also contains XRD phase analysis results. The study explores the impact of ultrasound-assisted MAO on coating properties, including morphology, composition, thickness, hardness, corrosion resistance, and cytocompatibility...
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Results of SEM examination of acrylic bone cements incorporating various components
Dane BadawczeThe database contains the images of the microstructure of modified bone cements observed with the scanning electron microscope (SEM). The following modifications were evaluated: the addition of biodegradable components (including chitosan, cellulose, tricalcium phosphate, polydioxanone or magnesium), the addition of bioactive components (bioglasses)...
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Results of OM examination of acrylic bone cements incorporating various components
Dane BadawczeThe database contains the images of the microstructure of modified bone cements observed on the cross-section with the optical microscope (OM). The following modifications were evaluated: the addition of biodegradable components (including chitosan, cellulose, tricalcium phosphate, polydioxanone or magnesium), the addition of bioactive components (bioglasses)...
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Results of wettability evaluation of acrylic bone cements incorporating various components
Dane BadawczeThe database contains the images of the contact angle measurements of modified bone cements using the optical tensiometer. The following modifications were evaluated: the addition of biodegradable components (including chitosan, cellulose, tricalcium phosphate, polydioxanone or magnesium), the addition of bioactive components (bioglasses) or the addition...
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Results of microhardness measurements of acrylic bone cements incorporating various components
Dane BadawczeThe database contains the images of microhardness measurements of modified bone cements using the Vickers Hardness Tester. The following modifications were evaluated: the addition of biodegradable components (including chitosan, cellulose, tricalcium phosphate, polydioxanone or magnesium), the addition of bioactive components (bioglasses) or the addition...
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Results of AFM examination of acrylic bone cements incorporating various components
Dane BadawczeThe database contains the images of the surface topography of modified bone cements observed with the atomic force microscopy (AFM). The following modifications were evaluated: the addition of biodegradable components (including chitosan, cellulose, tricalcium phosphate, polydioxanone or magnesium), the addition of bioactive components (bioglasses)...
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