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البريد الالكتروني

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جامعة المستقبل

د. محمد نعيم البحراني


جامعة المستقبل

دكتوراه
مدرس
هندسة ميكانيك
هندسة ميكانيك

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Dr. Mohammed Al-Bahrani Curriculum Vitae Personal information First name: Mohammed Surname: Al-Bahrani Emails: [email protected] [email protected] Nationality: Iraqi Date of birth: 14/02/1982 Iraq home: Iraq, Baghdad Status: Single Iraq mobile: 07721448364 Family home: Babylon city, Iraq Personal interests: New technology (discover new simulation software, new apps), reading about the latest technologies especially in energy and smart materials). Interested in mechanical manufacturing. Education Activity Dates Position Department/Lab Institute PhD degree 2019 PhD research student: smart and self- sensing composite for oil and gas application School of Engineering, Faculty of Science and Engineering Supervisors: Dr. Alistair Cree, Dr.Jasper Graham Dr.Zoltan Gambos Plymouth University Plymouth, PL4 8AA, United kingdom Masters certificate Jan 2011 – Dec 2012 Pressure Vessel modelling using Ansys program Mechanical engineering Sam Higginbottom University of Agriculture, Technology And Sciences, India BSc. Sciences Bachelor Degree Jun 2004 Full time student Mechanical engineering Babylon University, Iraq Training and skill attending Activity Dates Position Department/Lab Location Summer Training 2018 attending International Conference on Nanoscience, Nanotechnologies and Opportunities France/Paris Diploma 2017 participates Fracture Mechanics for Laminated Composite Structures Aalborg university/ Denmark Summer Training 2017 attending 4th Iraqi Oil and Gas Conference(4IOGC) Iraq /Basra Summer Training 2017 attending Composites engineering (part of advanced engineering) Birmingham/ UK Summer Training 2016 attending 15th European Mechanics of Materials Conference Brussels, Belgium Employment , Activity Dates Position Department/Lab Company Work 15.05.2018 -01.07.2018 Research assistant School of engineering Plymouth university UK Work 01.09.2016- 31.12.2019 Teaching support School of engineering Plymouth university UK Work 01.04.2008 present Engineering at Midland refinery company Oil Refinery sector Iraqi ministry of oil Work 01.06.2005-01.12.2007 Engineer overseer Projects of cities growth Babylon council/ Iraq Work 01.10.2004- 01.05.2005 Lecture Materials department Babylon Institute/ Iraq Technical skills Advanced Engineering Skills: • Nanotechnology, • Using of Carbon nanotubes material, • Smart materials, self-sensing materials and self-heating nanomaterials • Nanocomposite Languages: • Arabic (Mother tongue), • English Computer skills and competences: • Control of IT tool under various environments, simulation software such as Ansys, Solid works, LabVIEW, 3d max and blender General qualifications, Dr. Mohammed Al-Bahrani obtained his PhD degree in self-sensing nanocomposite materials from Plymouth University, Plymouth in 2019. Presently, he serves as a senior engineering in Iraqi ministry of oil, in particular in refinery company, Iraq. He is professional interests focus on research in the field of self-sensing nanocomposites, smart multifunctional materials, self-heating materials and nanotechnology. Conference Publications No Title Year Type of publication 1- Integrated strain and fracture sensing in carbon nanotubes reinforced composites for energy infrastructures 2018 Poster/Bristol University 2- Carbon Nanotube Coated Fiber Reinforced Epoxy Composites for Oil and Gas Pipeline 2018 Oral/Boston, USA 3- Theoretical and experimental studying the adding of Ni-MWCNTs on the mechanical properties of epoxy-nanocomposite for the oil field applications 2017 Poster/Plymouth University 4- Studying the Effect of Carbon Nanotubes on the Mechanical Properties of Epoxy-Nanocomposite for the Oil Field Applications 2017 Oral presented /Dubai 5- Carbon nanotubes reinforced nanocomposites for strain and fracture sensing in engineering structures 2018 13th International Conference on Surfaces, Coatings and Nanostructured Materials, Gdansk, POLAND Journal publications 1. Mohammed Al-Bahrani and Alistair Cree, A simple criterion to evaluate the degree of damage in composite materials after sudden impact loads by exploiting the MWCNTs piezoresistive property. Carbon 150 (2019) p.505-517. 2. Mohammed Al-Bahrani, Zoltan J Gombos and Alistair Cree, Investigation of the constancy of the MWCNTs on the fibres surface for manufactured self-sensing composites. Composites Part B: Engineering, 173 (2019), 106998. 3. Mohammed Al-Bahrani, Muhsin Aljuboury and Alistair Cree, Damage sensing and mechanical properties of laminate composite based MWCNTs under anticlastic test. Materials Research Express, 2018. 6(3) 035704. 4. Mohammed Al-Bahrani, Zoltan J Gombos and Alistair Cree, The Mechanical Properties of Functionalised MWCNT Infused Epoxy Resin: A Theoretical and Experimental Study. International Journal of Mechanical & Mechatronics Engineering IJMME-IJENS, 2018. 18(1): p.76-86. 5. Mohammed Al-Bahrani; Alistair Cree and Sung-Hwan Jang, On the electromechanical and temperature dependent behaviour of an epoxy resin-based nanocomposite incorporating multi-walled carbon nanotubes. Submitted to the construction and building materials journal and currently it is under review. 6. Mohammed Al-Bahrani, Jasper Graham‐Jones, Zoltan Gombos, Aqeel Al‐Ani, Alistair Cree, High‐efficient multifunctional self‐heating nanocomposite ‐based MWCNTs for energy applications. International Journal of energy research, 2019. 7. Mohammed Al-Bahrani, Aissa Bouaissi, Alistair Cree, Mechanical and electrical behaviors of self-sensing nanocomposite-based MWCNTs material when subjected to twist shear load. Mechanics of Advanced Materials and Structures, 2019. 8. Mohammed Al-Bahrani and Alistair Cree, Micro-scale damage sensing in self-sensing nanocomposite material based CNTs. Composites Part B: Engineering, (2021). 9. Mohammed Al-Bahrani and Alistair Cree, In Situ Detection of oil leakage by new self-sensing nanocomposite sensor containing MWCNTs. Applied Nanoscience (2021). 10. H Al-Abboodi, H Fan, IA Mahmood, M Al-Bahrani, Experimental Investigation and Numerical Simulation for Corrosion Rate of Amorphous/Nano-Crystalline Coating Influenced by Temperatures. Nanomaterials 11 (12), 3298.

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العنوان: لجنة الاعتماد الهندسي - نوع اللجنة: دائمية

2022

العنوان: لجنة تصنيف التايمز البريطاني - نوع اللجنة: دائمية

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شكر وتقدير للمشاركة بمعرض الابتكارات

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