Joining Strength of Self-Piercing Riveted Vibration-Damping Steel and Dissimilar Materials

Author:

Cho Keong Hwan12,Joo Jin Hyeok12,Kim Min Gyu13,Kam Dong Hyuck1ORCID,Kim Jedo4

Affiliation:

1. Advanced Welding & Joining R&BD Group, Korea Institute of Industrial Technology, Incheon 21999, Republic of Korea

2. Department of Mechanical Design Engineering, Hanyang University, Seoul 04763, Republic of Korea

3. Department of Mechanical Convergence Engineering, Hanyang University, Seoul 04763, Republic of Korea

4. Department of Mechanical and Systems Design Engineering, Hongik University, Seoul 04066, Republic of Korea

Abstract

A vibration-damping steel panel is used for lightweight vehicles to block any noise subjected to the passenger cabin replacing heavy fiber-based insulators. Conventional weld joining methods often encounter problems due to the presence of viscoelastic compounds reducing the joint quality and making the joining process unproductive. In this work, we present experimental results that show the self-piercing riveting (SPR) process can be used to produce high-quality joints between vibration-damping steel and (i) commonly used steel alloy (SPFC590DP), (ii) carbon-fiber-reinforced-plastic (CFRP) panels. Various die shapes are used to investigate the resulting interlock width and bottom thickness of the joints and tensile shear load tests were performed to evaluate the joining strength. The results show that high-quality joints between vibration-damping steel and the steel alloy are possible for all the dye types and panel configurations, used in this study, producing up to 6.2 kN of tensile shear load. High-quality joints were also possible with CFRP producing up to 4.0 kN, however, acceptable joints were formed only when the CFRP panels were on top during the riveting process due to severe cracking.

Funder

Evaluation Institute of Industrial Technology

Ministry of Trade, Industry and Energy

Publisher

MDPI AG

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Mechanics of Materials

Reference31 articles.

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4. Mascarin, A., Hannibal, T., Raghunathan, A., Ivanic, Z., and Francfort, J. (2015). Vehicle Lightweighting: 40% and 45% Weight Savings Analysis: Technical Cost Modeling for Vehicle Lightweighting, Idaho National Laboratory. EXT-14-33863.

5. Self-pierce riveting for sheet materials: State of the art;He;J. Mater. Process. Technol.,2008

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