Dr. Muhammad Rizwan Ul Haq
is working as
Assistant Professor
in the
School of Mechanical & Manufacturing Engineering. Dr. Muhammad Rizwan Ul Haq
has a PhD in
Additive Manufacturing
. Dr. Muhammad Rizwan Ul Haq
has published
22
research articles & conference papers having a citation count of
68
, carried out
1
projects and filed
0
intellectual property.
Research Tags
Additive manufacturing
ANSYS Workbench and nTopology
Cellular Structures structures and its properties
Design; fabrication and analysis of wave springs for different applications
Extrusion and injection moulding of polymers
hybrid and auxetic structures
Lattice structure design and analysis
Mechanical Behavior of Materials
Rapid prototyping and high speed 3D printing
Topology Optimization
Journal: Materials Today Communications, Volume 50, Article Number 114387
Impact Factor: 4.500Citations: 0Quartile: 2
A Novel Stress Profile Driven Hybrid Mechanical Metamaterial Designed for Additive Manufacturing with Improved Mechanical Performance, and Energy Absorption Properties2025
Shang Chi Lin
(National Taiwan University of Science and Technology)
JE
Jeng-Ywan Jeng
(National Taiwan University of Science and Technology)
Journal: International Journal of Advanced Manufacturing Technology, Pages 1-15
Impact Factor: 3.563Citations: 0Quartile: 2
WSdesign: a mathematical design method for generating uniform and functionally gradient/hybrid wave springs, fabricated using additive manufacturing processes2022
Shang Chi Lin
(National Taiwan University of Science and Technology)
JE
Jeng-Ywan Jeng
(National Taiwan University of Science and Technology)
Journal: 3D Printing and Additive Manufacturing, Pages 1-21
Impact Factor: 5.355Citations: 3Quartile: 2
Design and performance evaluation of multifunctional midsole using functionally gradient wave springs produced using multijet fusion additive manufacturing process2022
Conference: ICAME 2025: International Conference on Advances in Mechanical Engineering
Citations: N/A
Statistical Analysis of Burr Width and Height in Conventional Speed Micro-Milling of Titanium Alloy (Ti-6Al-4V) by Varying Cutting Parameters Under Different Lubrication Methods: Dry, MQL and Wet