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Wednesday, 07 February 2018 16:05

Master Thesis

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On 25/1/2018, the graduate student (master) Sara Abdel-Salam Hattab had discussed her thesis:(Polymer coating connector to reduce the risk of corrosion)The discussion committee consisted of the listed gentlemen

  1. Asst.Prof.Emad Saadi Abdulkareem  University of technology\Department of Materials Engineering  Head of committee
  2. Asst.Prof. Bissam Ibrahim Khalil  University of technology\Department of Materials Engineering. Member
  3. Dr. Hussein Mohammed Yosef Ministry of Industry and Metals \ Member
  4. Prof. Rana Afif Anani University of technology\Department of Materials Engineering Supervisor
  5. Asst.Prof. Waf’a Mahdi Saleh University of technology\Department of Materials Engineering Supervisor

The thesis addressed the possibility of using both the inhibitors with the coating to obtain a thin and homogeneous coating layer of the non-pyrolymol polymer and with the amalgamation of organic and inorganic amines on carbon steel (St 44-2-DIN 17100) by electrochemical polymerization of the pyrolymol monomer and the possibility of improving corrosion resistance in the water medium Saline (3.5% sodium chloride) at different temperatures (293, 303, 313, 323 and 333)Kelvin. was studied,the structure and morphology of polymerized pyrolyle strata was studied using electron microscopy (SEM), AFM, FTIR spectroscopy and adhesion examination.
Scanning electron microscopy images showed the structure and morphology of the polypearol layer deposited on carbon steel. In general, the distribution of pyrolytes and saplings covers the surface on a regular basis. The variation of surface morphology is due to the composition of the cauliflower. While the images of the atomic force microscope showed the best growth of polypirol fibers, the morphology and roughness of the surface were also estimated from the atomic force microscope examination. Polysaccharides in organic anions cause little change in surface morphology. The polysaccharide polycrystalline polysaccharide is indicated

he results obtained from this study were shown by different corrosion-labeling techniques for carbon steels indicating the proposed insoluble polyol polyol for use as a conductive polymer and for optimal protection against erosion in seawater (3.5% NaCl solution). Prompt in industrial application, environmentally friendly and chemically stable
The thesis was evaluated scientifically by Prof. Dr.Awda Jabbar Breehi / University of Babylon / Faculty of Engineering and linguistics by AMD. Samir Ali Amin / University of Technology / Department of Mechanical Engineering.
The discussion was held at the Graduate Hall / Building C and the discussion committee was granted a Master's degree for the student.

 

Last modified on Thursday, 31 January 2019 06:17

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