Web of Science Researcher ID: LUY-2622-2024
ORCID ID: https://orcid.org/0000-0002-6698-6154
LinkedIn: https://www.linkedin.com/in/muhammad-shakeel-68b9bb201/
Dr. Muhammad Shakeel is an Assistant Professor in the Department of Mechanical Engineering at UET Mardan. He is holding a PhD in Mechanical Engineering with a specialization in Additive Manufacturing and Printed Electronics, bringing over 8 years of extensive teaching, research, and academic experience. His expertise is in developing advanced manufacturing processes, material science, and innovative printed electronics applications. He possesses a proven track record of leading research projects, publishing in high-impact journals, and participating in funded research projects. He is a passionate educator committed to mentoring students, fostering an engaging learning environment, and driving OBE-based curriculum development. He is skilled at collaboration with interdisciplinary teams, with a focus on translating engineering research into practical solutions. As a researcher he is always looking for a challenging environment to further furnish professional capabilities in a well-defined manner.
Assistant Professor
Department of Mechanical Engineering, UET Mardan
April 2026- Present
Postdoctoral
Fellow Nanjing University of Aeronautics and Astronautics, Nanjing China
March 2024-March 2026
Head of Department & Assistant Professor
Department of Mechanical Engineering Technology,
University of Technology Pakistan
May 2023-March 2024
PhD, Mechanical Engineering (2017-2021)
Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, Pakistan
MS, Mechanical Engineering (2015-2017)
Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, Pakistan
BS, Mechanical Engineering (2010-2014)
International Islamic University Islamabad, Pakistan
Head of Department & Assistant Professor
Department of Mechanical Engineering, CECOS University Pakistan
November 2021-May 2023
1. Shakeel, M., Khan, W. A., & Rahman, K. (2017). Fabrication of cost effective and high sensitivity resistive strain gauge using DIW technique. Sensors and Actuators A: Physical, 258, 123-130. https://doi.org/10.1016/j.sna.2017.03.003. (IF= 4.9 & Q1)
2. Shakeel, M., Rehman, K., Ahmad, S., Choi, K. H., & Khan, A. (2020). A Weldless Approach for Thermocouple Fabrication Through Direct Ink Writing Technique. IEEE Sensors Journal, 21(2), 1279-1286. https://doi.org/10.1109/JSEN.2020.3018747. (IF= 4.5 & Q1)
3. Shakeel, M., Rehman, K., Ahmad, S., Amin, M., Iqbal, N., & Khan, A. (2021). A low-cost printed organic thermoelectric generator for low-temperature energy harvesting. Renewable Energy, 167, 853-860. https://doi.org/10.1016/j.renene.2020.11.158. (IF= 9.1 & Q1)
4. Nadeem, I., Memoon, S., Khalid, R., Tahseen, A. Q., Shakeel, M., Salman, A., & Mohsin, A. (2021). Fabrication of Temperature-and Humidity-Independent Silver Nanoparticle's Carbon Composite-Based Strain Sensor Through Additive Manufacturing Process. 3D Printing and Additive Manufacturing. https://doi.org/10.1089/3dp.2021.0032. (IF= 2.1 & Q2)
5. Ahmad, S., Rahman, K., Shakeel, M., Qasuria, T. A. K., Cheema, T. A., & Khan, A. (2021). A lowcost printed humidity sensor on cellulose substrate by EHD printing. Journal of Materials Research, 36, 1-12. https://doi.org/10.1557/s43578-021-00324-0. (IF= 2.9 & Q1)
6. Iqbal, Shahid & Tariq, Adnan & Khan, Wajid & Shahzad, Waseem & Azeem, Muhammad & Javid, Waqas & Ali, Haider & Shakeel, Muhammad. (2022). Comparative Analysis of Static and Fatigue Strength of Carbon Fiber and Al 6061-T6 Double Strap Joint. MATERIALS TRANSACTIONS, 63, 1120-1126. https://doi.org/10.2320/matertrans.MT-M2022026. (IF=1.9)
7. Ahmad S, Rahman K, Cheema TA, Shakeel M, Khan A, Bermak A. Fabrication of Low-Cost Resistance Temperature Detectors and Micro-Heaters by Electrohydrodynamic Printing. Micromachines. 2022; 13(9):1419. https://doi.org/10.3390/mi13091419. (IF=3.1 & Q2)
8. Kamal, W., Rahman, K., Ahmad, S., Shakeel, M., & Ali, T. (2022). Electrohydrodynamic printed nanoparticle-based resistive temperature sensor. Flexible and Printed Electronics, 7(4), 045008. https://doi.org/10.1088/2058-8585/aca48a. (IF=3.2 & Q2)
9. Khan, I., Farooq, U., Tariq, M., Abas, M., Ahmad, S., Shakeel, M., ... & Hira, F. (2023). Investigation of Effects of Processing Parameters on the Impact Strength and microstructure of thick TriMaterial based Layered Composite Fabricated via Extrusion based Additive Manufacturing. Journal of Engineering Research. https://doi.org/10.1016/j.jer.2023.08.007. (IF=2.2 & Q3)
10. Khan, I., Tariq, M., Abas, M., Shakeel, M., Hira, F., Al Rashid, A., & Koç, M. (2023). Parametric investigation and optimisation of mechanical properties of thick tri-material based composite of PLA-PETG-ABS 3D-printed using fused filament fabrication. Composites Part C: Open Access, 12, 100392. https://doi.org/10.1016/j.jcomc.2023.100392. (IF=6.6 & Q1)
11. Meng, L., Ding, L., Pu, Y., Wang, X., Mushtaq, R. T., Alkahtani, M., & Shakeel, M. (2025). Optimizing 2D irregular packing via image processing and computational intelligence. Scientific Reports, 15(1), 12320. https://doi.org/10.1038/s41598-025-97202-0. (IF=4.3 & Q1)
12. Shakeel, Muhammad; Louhichi, Borhen; Rehman, Khalid; Xiaoping, Wang; Alrasheedi, Nashmi; Mushtaq, Ray Tahir; Hussain, Ghulam. (2026). Optimization of Direct Ink Writing Parameters for Carbon-Based Functional Sensors: A Study on Printability and Electrical Performance. Rapid Prototyping Journal. https://doi.org/10.1108/RPJ-09-2025-0444 (IF=3.8 & Q1)