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Seyed Mohammad Hossein Seyedkashi

Seyed Mohammad Hossein Seyedkashi

Professor

عضو هیئت علمی تمام وقت

Faculty: Engineering

Department: Mechanical Engineering

Degree: Ph.D

CV Personal Website
Seyed Mohammad Hossein Seyedkashi

Professor Seyed Mohammad Hossein Seyedkashi

عضو هیئت علمی تمام وقت
Faculty: Engineering - Department: Mechanical Engineering Degree: Ph.D |

Seyed Mohammad Hossein Seyedkashi received the Bachelor of Science degree in Manufacturing Engineering from Tabriz University, Tabriz, Iran, in 2003, the Master of Science degree from Tarbiat Modares University, Tehran, Iran, in 2005, and the Ph.D. degree in Manufacturing Engineering from Tarbiat Modares University in 2012He is currently a Professor in the Mechanical Engineering Department, Faculty of Engineering, at the University of Birjand, Birjand, Iran. His research interests include metal forming (hydroforming, laser forming, roll forming), additive manufacturing, friction welding, and optimization.

 

 

My affiliation

Mechanical Engineering Department, Faculty of Engineering, University of Birjand, Birjand, Iran.

 

نمایش بیشتر

Investigation on improvement of limit drawing ratio in two-stage hydrodynamic deep drawing of cylindrical cups

AuthorsSeyed Mohammad Hossein Seyedkashi
JournalJournal of the Brazilian Society of Mechanical Sciences and Engineering
Page number1-18
Serial number44
Volume number10
IF1.235
Paper TypeFull Paper
Published At2022
Journal GradeISI
Journal TypeTypographic
Journal CountryAlbania
Journal IndexJCR،Scopus

Abstract

One of the most important issues in deep drawing as an industrial process is achieving parts with good quality and a higher drawing ratio in less time. In this study, using a two-stage hydrodynamic deep drawing process, the maximum drawing ratio of copper cylindrical cups was investigated numerically and experimentally. The process was investigated based on the relationship between the drawing ratio and maximum pressure. By examining the critical thicknesses of the pre-formed and final cups and determining the desired maximum pressures, a high maximum drawing ratio of 3.62 was achieved. Then, using the ability of two-stage hydrodynamic die design, the process was performed by creating a reverse bulging in the pre-formed cup. By determining the desired values of the effective parameters, namely the height of the reverse bulging and the desired maximum pressure based on the critical thickness, the final cup with a high drawing ratio of 3.94 was produced. According to the results, although the normal process in two stages led to a high drawing ratio, the positive effect of using the reverse bulging led to increasing the maximum drawing ratio. Finally, the effect of the tip and inner radii of the primary punch in the reverse bulging method on the improvement of the cup thickness was studied and the desired values were determined.

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