Thermal-Mechanical Numerical Modeling of the Friction Element Welding Process

Author:

Varma Ankit1,Absar Saheem1,Zhao Xin1,Choi Hongseok1,Abke Tim2,Skovron Jamie D.1,Ruszkiewicz Brandt J.3,Mears Laine3

Affiliation:

1. Clemson University, Clemson, SC

2. Honda R&D Americas, Raymond, OH

3. Clemson University, Greenville, SC

Abstract

To improve the fuel economy, the automobile industry is vigorously shifting towards using a mix of lightweight materials which offers high strength-to-weight ratio. Dissimilar material joining is of critical importance in this area. Friction element welding (FEW) has been proposed for dissimilar materials, with the capability of joining high strength materials of varying thickness in minimal time with low input energy. A coupled thermal-mechanical finite element model is developed in this work to better understand the physical mechanisms involved in the process and predict the evolution of parameters such as temperature, stress, material flow, and weld quality. The Coupled Eulerian-Lagrangian (CEL) approach is adopted to capture the severe plastic deformation of both the tool and the workpiece. The material deformation and temperature evolution are analyzed at different steps, and good agreement are shown between the simulation results and the experimental data.

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. Numerical study of chipping during friction element welding;Manufacturing Letters;2022-10

2. Relationship between cross tension strength and carbon content of lower sheet in friction element welded steel joint;QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETY;2022

3. Effect of ferrite grain shape in friction element welds on cross tension strength;QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETY;2022

4. Recent development of the novel riveting processes;The International Journal of Advanced Manufacturing Technology;2021-07-26

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