Prof. Dr. at the Department of Physics / College of Science /University of Baghdad
2015 Ph.D. / Department of Physics / College of Science /University of Baghdad ( Preparation and characterization of PMMA/PVC-Bisbenzamide dye and TEOS hybrids by SOL-GEL method)
2005 M.S.c / Department of Physics / College of Science /University of Baghdad ( Measurement of youngs modulus ,impact toughness and thermal conductivity of epoxy and unsaturated polyester composites reinforced with hybrid layers of Kevlar-carbon fibers)
1999 B.Sc / Department of Physics / College of Science /University of Baghdad
Materials Science , Polymers , Nanocompsites , Hybrids , Coating , Adhesives , and blends
2001 - until now . Department of Physics / College of Science /University of Baghdad . 2020 .9.15 Prof. at the Department of Physics / College of Science /University of Baghdad
2015.3.25 Assist.Prof. at the Department of Physics / College of Science /University of Baghdad
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Postgraduate studies: 2018-2023 Special Topic ( Mechanical Properties of Materials ) (M.Sc) undergrduate studies : 2022-2023 Research Methodology , 3rd Stage 2015-2023 modern physics lab. 2010-2015 soild state physics , 4th stage 2005-2010 computer lab. ,2nd stage 2001-2005 mechnaical lab. , first stage
Acrylic polymer/cement nanocomposites in dark and light colors have been developed for coating floors and swimming pools. This work aims to emphasize the effect of cement filling on the mechanical parameters, thermal stability, and wettability of acrylic polymer. The preparation was carried out using the casting method from acrylic polymer coating solution, which was added to cement nanoparticles (65 nm) with weight concentrations of (0, 1, 2, 4, and 8 wt%) to achieve high-quality specifications and good adhesion. Maximum impact strength and Hardness shore A were observed at cement ratios of 2 wt% and 4 wt%, respectively. Changing the filling ratio has a significant effect on the strain of the nanocomposites. The contact angle was i
... Show MoreIn this study, polymeric coating was developed by incorporating nano graphene in the polymer blend with applications to oil storage tanks. The oil storage tanks samples were brought from the oil Pipeline Company / Doura refinery in Baghdad. The coating polymer was formed with a blend (epoxy resin and repcoat ZR). The proportion of mixing the mixture was 3:1:1 epoxy resin 21.06 gm: repcoat ZR 10.53 gm: hardener 10.53 gm. The blend/graphene was prepared using in stui-polymerization method with different weight percentage 1, 3, 5, and 7 wt % added to blend. The resulting solution was put in a glass tube on a magnetic stirrer for one hour at a temperature of 40 °C. The result of contact angle and water absorption the best ratio of 3wt
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