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Meshfree Process Modeling and Experimental Validation of Friction Riveting of Aluminum 5052 to Aluminum 6061

  • Lei Li,
  • Mayur Pole,
  • Hrishikesh Das,
  • Sridhar Niverty,
  • Md Reza-E-Rabby,
  • Jorge F. Dos Santos,
  • Ayoub Soulami

摘要

Friction riveting (Fric-riveting) is an innovative, fast, and energy-efficient process for spot-joining metal–metal structures. Although fric-riveting has been studied experimentally in recent years, its process modeling is rarely found in the literature primarily because of the associated large material deformation, extreme thermomechanical conditions, and complex contact conditions. In this work, a meshfree smoothed particle hydrodynamics (SPH) framework that can handle the abovementioned numerical challenges is used to simulate the fric-riveting of AA5052 to AA6061. Predicted material morphology, multi-point temperatures, and plunge force are thoroughly validated by experimental observations. The material severe plastic deformation zone in the vicinity of the riveting zone is further predicted by the SPH model, which indicates the material mixing and potential grain refinement zone. Based on the validated model, process parameters can be optimized which yield better performance over the baseline case.