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Finite Element Analysis of Combined Processes of Two Severe Plastic Deformation Techniques to improve the homogeneity of the strain distribution

Publish Year: 1399
Type: Conference paper
Language: English
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MMICONF02_006

Index date: 27 June 2020

Finite Element Analysis of Combined Processes of Two Severe Plastic Deformation Techniques to improve the homogeneity of the strain distribution abstract

In most processes of severe plastic deformation, including in the aboveprocesses, the strain distribution is inhomogeneous, which causesmechanical instability in the parts. In the SSE process, the strain rate atthe center of the material is higher than the friction surfaces, whereasthis strain distribution is reversed in the CEE process. In the researchconducted by combining the SSE+CEE processes (first the SSE processand then the CEE process) and vice versa, the strain distribution issignificantly homogeneous in the sample and it can be suggested as away to obtain a homogeneous material with mechanical stability. In thisstudy, DEFORM and ABAQUS finite element software were used toobtain the strain distribution in the consumed material. The results showthat the strain distribution homogeneity factor in SSE and CEE processsamples was 1.5 and 3.8, respectively, which is 6.5 and 9.8 inCEE+SSE and SSE+CEE process that shows a significant improvementin homogeneity.

Finite Element Analysis of Combined Processes of Two Severe Plastic Deformation Techniques to improve the homogeneity of the strain distribution Keywords:

Finite Element Analysis of Combined Processes of Two Severe Plastic Deformation Techniques to improve the homogeneity of the strain distribution authors

Saeid Nichabadi

Faculty of Mechanical Engineering, University of Guilan, Guilan, Iran

Amir Rafiee

Faculty of Mechanical Engineering, Urmia University, Urmia, Iran

Hamoun Khatami

Faculty of Mechanical Engineering, Urmia University, Urmia, Iran