Prediction of Surface Profile in Friction Stir Welding Using Coupled Eulerian and Lagrangian Method

Author:

Das Debtanay1,Bag Swarup1,Pal Sukhomay1,Amin M. Ruhul2

Affiliation:

1. Indian Institute of Technology Guwahati

2. Montana State University

Abstract

Abstract Friction stir welding (FSW) is widely accepted by industry because of multiple advantages such as low-temperature process, green technology, and capable of producing good quality weld joints. Extensive research has been conducted to understand the physical process and material flow during FSW. The published works mainly discussed the effects of various process parameters on temperature distribution and microstructure formation. There are few works on the prediction of defect formation from a physics-based model. However, these models ignore chip formation or surface morphology and material loss during the FSW process. In the present work, a fully coupled 3D thermo-mechanical model is developed to predict the chip formation and surface morphology during welding. The effects of various process parameters on surface morphology are also studied using the current model. Coupled Eulerian-Lagrangian (CEL) technique is used to model the FSW process using a commercial software ABAQUS. The model is validated by comparing the results in published literature. The current model is capable of predicting the material flow out of the workpiece and thus enables the visualization of the chip formation. The developed model can extensively be used to predict the surface quality of the friction stir welded joints.

Publisher

American Society of Mechanical Engineers

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Investigation of Material Flow to Predict Defect Formation in Friction Stir Welding;Proceeding of Proceedings of the 27th National and 5th International ISHMT-ASTFE Heat and Mass Transfer Conference December 14-17, 2023, IIT Patna, Patna-801106, Bihar, India;2024

2. Finite Element Simulation of Tunnel Defect in Friction Stir Welding of Pure Copper: Effect of Tool Geometry;Lecture Notes in Mechanical Engineering;2023-10-17

3. Research progress on numerical simulation of temperature field in friction stir welding of dissimilar alloys;2022 2nd International Conference on Algorithms, High Performance Computing and Artificial Intelligence (AHPCAI);2022-10-21

4. Investigating surface defect by tool-material interaction in friction stir welding using coupled Eulerian-Lagrangian approach;Manufacturing Letters;2021-10

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