- DEPARTMENT_STAFF.QUALIFICATION
Ph.D
- DEPARTMENT_STAFF.DESIGNATION
Guest Faculty
- DEPARTMENT_STAFF.THRUST_AREA
Advanced Composite materials, FGM, Curved structure, Mechanics of materials
- DEPARTMENT_STAFF.ADDRESS
University Polytechnic, Aligarh Muslim University Aligarh
- DEPARTMENT_STAFF.MOBILE
9258815303
- DEPARTMENT_STAFF.EMAIL
msbeg52@myamu.ac.in
- DEPARTMENT_STAFF.TIME_TABLE
Mirza Shariq Beg currently serves as a Guest Faculty in the Mechanical Engineering section of the University Polytechnic at Aligarh Muslim University. In 2023, Dr. Beg successfully earned his Ph.D. from the Department of Mechanical Engineering, specializing in Machine Design, at Aligarh Muslim University. Throughout his doctoral journey, he benefited from the financial support provided by the DST-SERB project as a Junior Research Fellow (JRF) and also received scholarships under TEQIP-III.
Dr. Beg's research focuses on micromechanics, material and geometrical defects, smart materials, and both straight and curved structures. His scholarly contributions extend to prestigious international journals such as Composite Structures, Mechanics of Materials, and Steel and Composite Structures. Additionally, he has actively engaged in article reviews for various journals. Furthermore, Dr. Beg has presented his research findings at reputable conferences and contributed papers to esteemed book series and chapters, including AIP Conference Proceedings, IOP Conference Proceedings, and Lecture Notes in Mechanical Engineering.
- Journals
Yasin, M.Y., Khalid, H.M. and Beg, M.S., 2020. Exact solution considering layerwise mechanics for laminated composite and sandwich curved beams of deep curvatures. Composite Structures, 244, p.112258. DOI: 10.1016/j.compstruct.2020.112258
Beg, M.S., Khalid, H.M., Yaqoob, M. Y. and Hadji, L. 2020. Exact third-order static and free vibration analyses of functionally graded porous curved beams. Steel and Composite structure, 39(1), 1-20. DOI: https://doi.org/10.12989/scs.2021.39.1.001
Beg, M.S. and Yasin, M. Y, 2021. Bending, free and forced vibration of functionally graded deep curved beams in thermal environment using an efficient layerwise theory, Mechanics of Materials, 159, p.103919. DOI: https://doi.org/10.1016/j.mechmat.2021.103919
Taha, M.T., Khan, A.H., Beg, M.S. and Saood, A. 2024. Nonlinear vibration of cross-ply laminated open shells under external excitation. Journal of Mechanical Science and Technology 38 (1) 21~31. http://doi.org/10.1007/s12206-023-1203-1
- Book Chapters/ Conferences (International)
- Khan, M.A., Yasin, M.Y., Beg, M.S. and Khan, A.H., 2020. Free and Forced Vibration Analysis of Functionally Graded Beams Using Finite Element Model Based on Refined Third-Order Theory. Lecture Notes in Mechanical Engineering, Springer, Singapore, 603-612. DOI: 10.1007/978-981-32-9931-3_58 (Scopus indexed)
- Yasin, M.Y., Beg, M.S. and Prakash, B., 2020. Static shape control of smart functionally graded beams using an efficient finite element model. In AIP Conference Proceedings, 2273, p. 050059. DOI: 10.1063/5.0024436. (Scopus indexed)
- Beg, M.S., Yasin, M.Y. and Khalid, H.M., 2018, August. Analysis of Laminated and FGM Beams using Various Theories. In IOP Conference Series: Materials Science and Engineering, IOP Publishing, 404(1) p. 012030. DOI: 10.1088/1757-899X/404/1/012030. (Scopus indexed)
- Beg, M.S., Khan, A.H. and Yasin, M.Y., 2018, June. Effect of
boundary conditions on the non-linear forced vibration response of isotropic
plates. In IOP Conference Series: Materials Science and Engineering ,
IOP Publishing. 377 (1) p.
012089. DOI:
10.1088/1757-899X/377/1/012089. (Scopus indexed)