Materials Sciences and Applications

Volume 4, Issue 4 (April 2013)

ISSN Print: 2153-117X   ISSN Online: 2153-1188

Google-based Impact Factor: 0.97  Citations  

Determination of Residual Stresses Numerically Obtained in ASTM AH36 Steel Welded by TIG Process

HTML  XML Download Download as PDF (Size: 1146KB)  PP. 268-274  
DOI: 10.4236/msa.2013.44033    5,323 Downloads   7,926 Views  Citations

ABSTRACT

Residual stresses have been numerically determined in welded joints. In this study, the numerical model is based on the coupling of different physical phenomena considering the thermal, mechanical and metallurgical nature of a welding process. The ABAQUS software program was used to perform the numerical simulations, based on the finite element method (FEM). The aspects related to the mathematical modeling of complex welding procedures were pondered with the FEM: variations in the physical and mechanical properties of the materials as a function of the temperature; the transience and the speed of the welding process, the material phase transformations; the different mechanisms of heat exchange with the environment (convection and radiation); all them associated with a high level of nonlinearity. The heat source used in this analytical model for heat supply was the double ellipsoid model proposed by Goldak, in which a 60 mm × 50 mm and 3 mm rectangular ASTM AH36 steel plate was used for the TIG process simulations. Throughout this work, the optimization of the welding procedures currently practiced in petrochemical and ship building industries can be applied to reduce the levels of residual stresses.

Share and Cite:

P. Guimarães, P. Pedrosa, Y. Yadava, J. Barbosa, A. Filho and R. Ferreira, "Determination of Residual Stresses Numerically Obtained in ASTM AH36 Steel Welded by TIG Process," Materials Sciences and Applications, Vol. 4 No. 4, 2013, pp. 268-274. doi: 10.4236/msa.2013.44033.

Cited by

[1] Finite Element Modelling, Predictive Modelling and Optimization of Metal Inert Gas, Tungsten Inert Gas and Friction Stir Welding Processes: A Comprehensive Review
Archives of Computational …, 2022
[2] Effect of Orbital Welding Parameters on the Weld Geometry
Materials Science Forum, 2022
[3] Dissimilar welding between conventional and high strength low alloy naval steels with the use of robotic metal cored arc welding
2021
[4] Effects of Heat Input on Microstructures, Hardness, and Residual Stress of GMA Weld Dissimilar butt joints between Stainless Steel SUS 316 and Marine Steel AH 36
2020
[5] Experimental and numerical investigations of pipe orbital welding process
2020
[6] Computer Aided Design, Analysis and Manufacturing of Hot Rolled Bulb Flat Steel Profiles
2020
[7] Development and Simulation of Isotropic Hardening for AISI 1035 Weld Stress Prediction during Design and Welding Assembly of Lower Brackets of Rail Cars
2019
[8] Finite element simulation and optimization of orbital welding process parameters
2018
[9] Influence of various welding sequence schemes on the load bearing capacity of square hollow section T-joint
2018
[10] Measurement of Residual Stresses in Welded Joints by DCP Method
2018
[11] A numerical kinematic model of welding process for low carbon steels
2017
[12] A One Way Coupled Thermo-Mechanical Model to Determine Residual Stresses and Deformations in butt welding of Two ASTM A36 Steel Plates
2017
[13] Numerical Evaluation of Temperature Field and Residual Stresses in an API 5L X80 Steel Welded Joint Using the Finite Element Method
Metals, 2016
[14] An Investigation of the Microstructure of an Intermetallic Layer and Toughness in Welding Aluminum/Steel by TIG Process
Advances in Materials Science and Engineering, 2015
[15] An investigation of the microstructure of an intermetallic layer in welding aluminum alloys to steel by MIG process
Materials, 2015
[16] Influence of Rolling Direction in Calculation of Residual Stress by Using DCP Method in Naval Welded Sheets
2015
[17] Measurements of the Thermophysical Properties of the API 5L X80
2014
[18] MANUFACTURE OF A COORDINATE TABLE TO ANALYZE THE FORCED CONVECTION
2013
[19] Asimetrik kesitli profilin sıcak haddeleme üretim süreçlerinin simülasyon destekli tasarımı ve soğuma şartlarının ürün özelliklerine etkisi

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.