Tungsten Inert Gas Welding of 6061-T6 Aluminum Alloy Frame: Finite Element Simulation and Experiment

Author:

Hu Yang1,Pei Weichi1,Ji Hongchao12,Yu Rongdi3,Liu Shengqiang1

Affiliation:

1. College of Mechanical Engineering, North China University of Science and Technology, Tangshan 063210, China

2. School of Materials Science and Engineering, Zhejiang University, Hangzhou 310030, China

3. TangShan ChenYang Sports Equipment Co., Ltd., Tangshan 063014, China

Abstract

In order to address the irregularity of the welding path in aluminum alloy frame joints, this study conducted a numerical simulation of free-path welding. It focuses on the application of the TIG (tungsten inert gas) welding process in aluminum alloy welding, specifically at the intersecting line nodes of welded bicycle frames. The welding simulation was performed on a 6061-T6 aluminum alloy frame. Using a custom heat source subroutine written in Fortran language and integrated into the ABAQUS environment, a detailed numerical simulation study was conducted. The distribution of key fields during the welding process, such as temperature, equivalent stress, and post-weld deformation, were carefully analyzed. Building upon this analysis, the thin-walled TIG welding process was optimized using the response surface method, resulting in the identification of the best welding parameters: a welding current of 240 A, a welding voltage of 20 V, and a welding speed of 11 mm/s. These optimal parameters were successfully implemented in actual welding production, yielding excellent welding results in terms of forming quality. Through experimentation, it was confirmed that the welded parts were completely formed under the optimized process parameters and met the required product standards. Consequently, this research provides valuable theoretical and technical guidance for aluminum alloy bicycle frame welding.

Funder

Science Research Project of Hebei Education Department

S&P Program of Hebe

Key R&D Program of North China University of Science and Technology

Graduate Innovation Program of North China University of Science and Technology

Publisher

MDPI AG

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