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Dr Ali Arab

Close the windowauthor :郭保桥 Release time :2017-12-19


Ali Arab
arabali83@yahoo.com
School of Mechatronical Engineering BIT, Beijing 100084
Phone:15601254524

Personal Details
Full Name: Ali Arab
Nationality: Iranian
Date of Birth : Aug 8th, 1983
Languages: English – Fluent | Persian – Native
Email Address: arabali83@yahoo.com
Telephone Number: +8615601254524
Residential Address: institute of shockwave physics and chemistry laboratory school of mechatronical engineering,
Beijing Institute of Technology, Beijing, P.R. China
Professional Summary
A well educated and highly knowledgeable Research Professional with over 7 years of extensive experience gained on an international basis with well renowned institutions. I am a postdoctoral fellow at the Department of mechatronical Engineering, Beijing Institute of Technology, where I work on the dynamic behaviour of the titanium alloy.
I have experience in both mechanical engineering and material engineering. Although my major focus since my Master is on impact engineering and behaviour of the material under the dynamic load. I have deeply understanding about the material science and material characterization. I have good experience in the wide range of solid mechanics tests, especially in high strain rate.

Education
PhD Mechanical engineering (Impact) - Universiti Sains Malaysia (USM), Malaysia (2016)
Thesis Title: Experimental and neural network prediction of dynamic behavior of ZTA with SrCO3 and MgO
MSc Armament Engineering - MUT, Tehran, Iran (2010)
Thesis Title: Simulation and analysis of ceramic/metal armors, Alumina/SiC by MgO nano particle.
BSc Mechanical engineering - MAZANDARAN University (IAU), BABOOL, Iran (2006)
Research Interests
 Dynamic Material behaviour
 Ceramic
 Titanium
 Digital Image Correlation
 Mechanical design
 Crack propagation
 Numerical methods
 Machine learning

Competency & Skills

Strong lab skills.

  • Strong ability to think critically and reason clearly and come out with genuine ideas as a result of dealing with research
  • during my studies.
  • Ability to set project goals, objectives, and finally achieving effective results as evidenced by research achievement.
  • Writing research proposal

Computer skills

  • Mechanic Software: CATIA, Solidworks , ANSYS, Hypermesh, Ls-Dyna, ABAQUS
  • Program software: MATLAB
  • Utilities: Proficiency in MS Office and so many other Desktop Application

Experimental Skills

  • UTM Tension / Compression Test Machine (MTS), Ballistic test, Digital image correlation (2D &3D), Dynamic Signal
  • Amplifier, Strain Gage, High speed photography, SHPB Compression system (for high strain rate dynamic test),
  • SHTB, Drop weight test, Hardness test, SEM, XRD, Particle size analysis, etc
Research Experience and Publications
Experimental and neural network prediction of dynamic behavior of ZTA with SrCO3and MgOPh.D Thesis
“Simulation and analysis of ceramic/metal armors, Alumina/SiC by MgO nano particle "M.S. Thesis.
Journal papers
  1. Z. D. I. Sktani, N. A. Rejabb, A. F. Z. Rosli,A. Arab *, Z . A . Ahmad ,”Effectsof La2O3 addition on the microstructure development and physical properties of harder ZTA-CeO2 composites with sustainable high fracture toughness” Accepted Journal of rare Earths (Impact factor: 2.846).
  2. A.Arab*, Y. Guo, Q.Zhou, P. Chen ,”Joining AlCoCrFeNi high entropy alloys and Al-6061 by explosive welding method”, Vacuum (Impact factor: 2.51).
  3. Liu, Q., Chen, P. W., Guo, Y. S., Su, J. J., Han, L.,Arab, A., & Yuan, J. F. “Mechanicalbehavior and failure mechanism of polyurea nanocomposites under quasi-static and dynamic compressive loading”. Journal of Defence Technology (Impact factor: 1.26).
  4. Y.Guo, P.Chen,A.Arab*,Q.Zhou (2019).”High strain rate deformation of explosion-welded Ti6Al4V/pure titanium alloy” Journal of Defence Technology (Impact factor: 1.26).
  5. Y.Mahmood, K. Dai, P. Chen, Q. Zhou, A.A.Bhatti,A. ArabExperimentaland numerical study on microstructure and mechanical properties of Ti-6Al-4V/ Al-1060 explosive welding” materials (Impact factor:2.97).
  6. A.Arab*,Y.Guo, Q.Zhou, and P.Chen (2019). “A New S-Shape Specimen for Studying the Dynamic Shear Behavior of Metals”, Metals (Impact factor:2.25).
  7. A.Arab*, P.Chen, and Y.Guo (2019) .”Effectsofmicrostructureon the dynamic properties of TA15 titanium alloy” Mechanics of Materials journal (Impact factor:2.95).
  8. A.Arab*, Z.D. I. Sktani, Q. Zhou, Z. A.Ahmad, and P. Chen(2019), “Effectof MgO Addition on the Mechanical and Dynamic Properties of Zirconia Toughened Alumina (ZTA) Ceramics” materials (Impact factor:2.97).
  9. A.Arab*,Y. Guo, Q. Zhou and P. Chen “ Fabrication of nano- structure AlCoCrFeNi high entropy alloy through shock consolidation and mechanical alloying” Entropy (Impact factor:2.419).
  10. Azarafza, R.,Arab, A., Mehdipoor, A., & Davar, A. (2012). Impact behavior of ceramic-metal armour composed of Al2O3-nano SiC composite. Int J of Advanced Design and Manufacturing Technology, 5(5), 83-87.(ISC, Google Scholarindex)
  1. Arab, A., Ahmad, Z. A., & Ahmad, R. (2015). Effects of yttria stabilized zirconia (3Y-TZP) percentages on the ZTAdynamic mechanical properties.International Journal of Refractory Metals and Hard Materials,50, 157-162.(Impactfactor:1.989)
  2. Arab,Roslan Ahmad, Zainal Arifin Ahmad “Effect of SrCO3 additive on the dynamic compressive strength of ZTA”International Journal of Minerals, Metallurgy, and Materials ,23(4), 481-489. (Impact factor: 0.79)
  3. Bateni, N. H., Hamidon, M. N., Matori, K. A., &Arab, A.PE hysteresis loop evaluation and dielectric studies of ceramicobtained from white rice husk ash for electronic applications.Journal of Materials Science: Materials in Electronics, 1-6.(Impact factor:1.569)
  4. Arab, Roslan Ahmad, Zainal Arifin Ahmad(2014). Review on impact study on ceramic material. Caspian Journal ofApplied Sciences Research,4(3), 44-55.(ISI index)
  5. Vakili, A. H., Davoodi, S.,Arab, A., & bin Selamat, M. R. (2015). Use of Artificial Neural Network in PredictingPermeability of Dispersive Clay Treated With Lime and Pozzolan.International Journal of Scientific Research inEnvironmental Sciences,3(1), 23. (Google Scholarindex)
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