CV
QR


Farshid Ahmadi

Farshid Ahmadi

Assistant Professor

College: Faculty of Mechanical Engineering

Department: Mechanical Engineering - Manufacturing and Production

Degree: Ph.D

CV
QR
Farshid Ahmadi

Assistant Professor Farshid Ahmadi

College: Faculty of Mechanical Engineering - Department: Mechanical Engineering - Manufacturing and Production Degree: Ph.D |

Dr. Farshid Ahmadi is a Faculty Member in the Department of Mechanical Engineering, University of Kashan. He is also an Engineering and Research Consultant. Dr. Ahmadi's research is multi-disciplinary and revolves around Metal forming, Ultrasonic assisted manufacturing, FEM,  Bio-Mechanics and Nano structured materials. 

He received his PhD in Mechanical Engineering from Isfahan University  of Technology (with the highest honor), as the first Ph.D. graduate of the department .

He has received numerous academic award, including 3th person among 7850 people in Mechanical Engineering Master Degree entering Exam award and Fellowship of National Elite Foundation. 

نمایش بیشتر

Investigation of mechanical properties and residual stress in the combined simple shear extrusion-forward extrusion (CSSE-FE) process of 1050 aluminum alloy

Authorsعلی ایزی,محمد هنرپیشه,فرشید احمدی
JournalProceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications
IF2.5
Paper TypeFull Paper
Published At2025-01-02
Journal GradeScientific - research
Journal TypeElectronic
Journal CountryIran, Islamic Republic Of
Journal IndexJCR ,SCOPUS

Abstract

The combined simple shear extrusion-forward extrusion technique was recently known as a new severe plastic deformation technique for processing bulk materials. The unique design of the die channel in this process has led to the production of samples with a regular cross-section. This study investigated the effect of the combined simple shear extrusion-forward extrusion process on the mechanical properties, micro-hardness, and residual stress of 1050 aluminum alloy samples. The residual stress was studied numerically and experimentally using the contour method. The finite element software was used to analyze process parameters numerically. After the combined simple shear extrusion-forward extrusion process, yield stress, tensile strength, and average micro-hardness values were increased by 316.28%, 147.09%, and 88.82%, respectively. Among the mechanical properties, the combined simple shear extrusion-forward extrusion technique significantly affects yield stress. In this study, after measuring the residual stress numerically and experimentally using the contour method, there was a good correlation between their results. Also, the numerical results showed that with the increase of the friction coefficient from 0 to 0.04, the compressive residual stress value is reduced by about 71.92%.