Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory welding

Determination of weld strength through the fractural behaviour at different loads plays dominant role for selection of weld process in real-time applications. Assistance of vibratory treatment to the conventional welding process can bring major changes in the microstructure of weldment at greater e...

Full description

Saved in:
Bibliographic Details
Main Authors: K Ch Sekhar, Dr Rashmi Dwivedi, Dr. V.V. Rama Reddy
Format: Article
Language:English
Published: Institute of Technology and Education Galileo da Amazônia 2024-11-01
Series:ITEGAM-JETIA
Online Access:https://itegam-jetia.org/journal/index.php/jetia/article/view/1374
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850061172127039488
author K Ch Sekhar
Dr Rashmi Dwivedi
Dr. V.V. Rama Reddy
author_facet K Ch Sekhar
Dr Rashmi Dwivedi
Dr. V.V. Rama Reddy
author_sort K Ch Sekhar
collection DOAJ
description Determination of weld strength through the fractural behaviour at different loads plays dominant role for selection of weld process in real-time applications. Assistance of vibratory treatment to the conventional welding process can bring major changes in the microstructure of weldment at greater extent. The intervention of increment and decrement in the mechanical properties at different vibratory welding parameters dependent on the grain refinement. The study focuses on analyzing microstructural transformations' influence in the weldments on different mechanical properties at various amplitudes and voltages of 2, 4, 6V. The tests such as tensile, Rockwell hardness and Charpy impact are conducted and fracture modes are identified. SEM analysis is performed to characterize the microstructure of different fractures between the developed butt joint on SS304 and susceptibility to crack is investigated. The fracture is exhibited as more ductile for samples developed with the assistance of vibratory treatment to the gas metal arc welding process. The decrease of columnar dendrites at weld zone and paradigmatic shift to equiaxed shapes under vibratory treatment prompted to achieve maximum enhancement in the mechanical properties and reduction of delta ferrite is responsible for decrement for further ranges.
format Article
id doaj-art-8468c348be71421aaff6cc23ec9b7dc4
institution DOAJ
issn 2447-0228
language English
publishDate 2024-11-01
publisher Institute of Technology and Education Galileo da Amazônia
record_format Article
series ITEGAM-JETIA
spelling doaj-art-8468c348be71421aaff6cc23ec9b7dc42025-08-20T02:50:19ZengInstitute of Technology and Education Galileo da AmazôniaITEGAM-JETIA2447-02282024-11-01105010.5935/jetia.v10i50.1374Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory weldingK Ch Sekhar0Dr Rashmi Dwivedi1Dr. V.V. Rama Reddy2Lendi Institute of Engineering and TechnologyDepartment of Mechanical Engineering, Lendi Institute of Engineering and Technology, Vizianagaram, Andhra Pradesh, IndiaDepartment of Mechanical Engineering, Lendi Institute of Engineering and Technology, Vizianagaram, Andhra Pradesh, India Determination of weld strength through the fractural behaviour at different loads plays dominant role for selection of weld process in real-time applications. Assistance of vibratory treatment to the conventional welding process can bring major changes in the microstructure of weldment at greater extent. The intervention of increment and decrement in the mechanical properties at different vibratory welding parameters dependent on the grain refinement. The study focuses on analyzing microstructural transformations' influence in the weldments on different mechanical properties at various amplitudes and voltages of 2, 4, 6V. The tests such as tensile, Rockwell hardness and Charpy impact are conducted and fracture modes are identified. SEM analysis is performed to characterize the microstructure of different fractures between the developed butt joint on SS304 and susceptibility to crack is investigated. The fracture is exhibited as more ductile for samples developed with the assistance of vibratory treatment to the gas metal arc welding process. The decrease of columnar dendrites at weld zone and paradigmatic shift to equiaxed shapes under vibratory treatment prompted to achieve maximum enhancement in the mechanical properties and reduction of delta ferrite is responsible for decrement for further ranges. https://itegam-jetia.org/journal/index.php/jetia/article/view/1374
spellingShingle K Ch Sekhar
Dr Rashmi Dwivedi
Dr. V.V. Rama Reddy
Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory welding
ITEGAM-JETIA
title Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory welding
title_full Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory welding
title_fullStr Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory welding
title_full_unstemmed Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory welding
title_short Microstructural investigations on the Fractural behavior of SS304 butt joints developed through vibratory welding
title_sort microstructural investigations on the fractural behavior of ss304 butt joints developed through vibratory welding
url https://itegam-jetia.org/journal/index.php/jetia/article/view/1374
work_keys_str_mv AT kchsekhar microstructuralinvestigationsonthefracturalbehaviorofss304buttjointsdevelopedthroughvibratorywelding
AT drrashmidwivedi microstructuralinvestigationsonthefracturalbehaviorofss304buttjointsdevelopedthroughvibratorywelding
AT drvvramareddy microstructuralinvestigationsonthefracturalbehaviorofss304buttjointsdevelopedthroughvibratorywelding