Friction taper stitch welding of a duplex stainless steel

Author:

Ram Rapaka1,Lessa Cleber Rodrigo de Lima2,Lemos Guilherme Vieira Braga3,Figueiredo Arlan Pacheco2,Vicharapu Buchibabu1,Clarke Thomas4,De Amitava5

Affiliation:

1. Indian Institute of Technology Palakkad

2. Federal Institute of Rio Grande do Sul

3. Federal University of Santa Maria

4. Federal University of Rio Grande do Sul

5. Indian Institute of Technology Bombay

Abstract

Abstract Friction taper stitch welding (FTSW) is a novel technique that uses multiple inserts to conceal surface crack in a given substrate. The inserts are rotated and forced to fill the crack as plasticized material, and forge with the substrate in solid-state. The process is well suited for alloys such as duplex stainless steel, which suffers degradation of properties during fusion welding. A detailed experimental and theoretical investigation is presented here on FTSW of a duplex stainless steel (DSS). The experimental results show the presence of a ferrite-rich phase along the joint interface. The computed results from the numerical process model reveal a direct influence of thermal cycle on the ferritization along the joint interface. The welded joint area shows near homogeneous structure and properties similar to those of the substrate.

Publisher

Research Square Platform LLC

Reference29 articles.

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3. Mourada, A-H.I., Khourshid, A., Sharef, T., (2017). Gas tungsten arc and laser beam welding processes effects on duplex stainless steel 2205 properties, Mater. Sci. Eng. - A, 549 (2012) 105–113.

4. Effect of Laser Beam Welding Parameters on Microstructure and Properties of Duplex Stainless Steel;El-Batahgy A;Mater. Sci. Apps,2011

5. Influence of heat input in electron beam process on microstructure and properties of duplex stainless steel welded interface;Zhang Z;Appl. Surf. Sci.,2018

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