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SAMER ABDULQADIR
SAMER ABDULQADIR
Asst. Prof. at the University of Anbar
Verified email at uoanbar.edu.iq
Title
Cited by
Cited by
Year
Design of thin wall structures for energy absorption applications: Enhancement of crashworthiness due to axial and oblique impact forces
F Tarlochan, F Samer, AMS Hamouda, S Ramesh, K Khalid
Thin-Walled Structures 71, 7-17, 2013
3152013
Design of thin wall structures for energy absorption applications: design for crash injuries mitigation using magnesium alloy
F Tarlochan, F Samer
Int. J. Res. Eng. Technol 2 (7), 24-36, 2013
242013
Design a new energy absorber longitudinal member and compare with S-shaped design to enhance the energy absorption capability
SF Abdulqadir
Alexandria engineering journal 57 (4), 3405-3418, 2018
182018
Simulation of thin-walled double hexagonal aluminium 5754 alloy foam-filled section subjected to direct and oblique loading
S Abdulqadir, B Alaseel, MNM Ansari
Materials Today: Proceedings 42, 2822-2828, 2021
102021
Improvement of energy absorption of thin walled hexagonal tube made of magnesium alloy by using trigger mechanisms
F Samer, F Tarlochan, H Samaka, KS Khalid
International Journal of Research in Engineering and Technology 2 (10), 173-180, 2013
92013
Enhancement of energy absorption for crashworthiness application: Octagonal-shape longitudinal members
F Samer, A Abdullah, JO Sameer
IJAENT 2 (2), 1-9, 2015
82015
Crashworthiness enhancement of thin-walled hexagonal tubes under flexural loads by using different stiffener geometries
SF Abdulqadir, AA Abed, A Bassam
Materials Today: Proceedings 42, 2887-2895, 2021
72021
Enhancement of energy absortion of thin walled hexagonal tube by using trigger mechanisms
F Samer, F Tarlochan, P Khalili, H Samaka
International Journal of Research in Engineering and Technology 2 (8), 109-116, 2013
72013
Composite hat structure design for vehicle safety: potential application to B-pillar and door intrusion beam
SF Abdulqadir, F Tarlochan
Materials 15 (3), 1084, 2022
62022
An experimental validation of numerical model for top-hat tubular structure subjected to axial crush
SF Abdulqadir, F Tarlochan
Applied Sciences 11 (11), 4792, 2021
32021
Effect of the web, face sides and arc’s dimensions on the open top-hat structure performance subjected to a flexural static loading
SF Abdulqadir, A Bassam, MNM Ansari, RS Shareef
Materials Today: Proceedings 42, 2866-2872, 2021
22021
Design of frontal longitudinal for enhancement in crashworthiness performance
SF Abdulqadir, A Bassam, MNM Ansari, A Topa
IOP Conference Series: Materials Science and Engineering 1128 (1), 012026, 2021
12021
The effects of Trigger Mechanism on the Energy Absorption of Thin-Walled Rectangular Steel Tubes
JO Sameer, OS Zaroog, F Samer
The 3rd National Graduate Conference (NatGrad2015), UTNL, Putrajaya, 143-147, 2015
12015
A numerical comparison between aluminium alloy and mild steel in order to enhance the energy absorption capacity of the thin walled tubes
JO Sameer, OS Zaroog, F Samer, A Abdullah
Int. J. Adv. Eng. Nanotechnol 2 (1), 1-12, 2014
12014
Design of longitudinal members to vehicle: enhances the energy absorption of thin walled structure under dynamic load
F Samer, JO Sameer, A Abdullah
Int J Eng Adv Technol 4 (2), 21-33, 2014
12014
Comparison of the Mechanical Properties and Approach to Numerical Modeling of Fiber-reinforced Composite, High-Strength Steel and Aluminum
SF Abdulqadir, BH Alaseel, JO Sameer
Journal of Engineering and Technological Sciences 56 (1), 110-124, 2024
2024
Numerical Simulation for Enhanced Energy Absorption of Thin-Walled Rectangular Tube with Trigger Mechanism
JO Sameer, OS Zaroog, F Samer
Design of Octagonal Energy Absorbing Members Subjected to Dynamic Load: Enhancement of Crashworthiness
A Abdullah, KSM Sahari, F Samer, JO Sameer
Effect of Vehicle Bumper Shape Design on the Severity of Pedestrian Leg Injury at Collision
HM Samaka, F Tarlochan, F Samer
DYNAMIC SIMULATION OF ALUMINUM RECTANGULAR TUBES UNDER DIRECT AND OBLIQUE IMPACT LOAD: APPLICATION TO VEHICLE CRASHWORTHINESS DESIGN
JO Sameer, OS Zaroog, F Samer, A Abdullah
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