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Published August 4, 2021 | Version v1
Conference paper Open

Effect of Substrate Orientation on Melt Pool during Multi-Layer Deposition in V-Groove with Gas Metal Arc

  • 1. University West
  • 2. Chalmers University of Technology

Description

Thermo-fluid dynamic and experimental approaches are used to investigate the influence of 20° uphill, downhill and sideway substrate orientation during metal deposition over a previously deposited bead in a V-groove. The computational fluid dynamic model with free surface deformation and metal transfer gives insight into the melt pool flow and causes of defect formation observed on the solidified beads. The experimental metallographs, high-speed images and computational results show good agreement. It is found that the deposition of a second layer on a smooth first layer cooled down to room temperature leads to large changes in melt pool flow pattern at 20° substrate inclination compared to flat condition. It results in undercut and humps with the uphill orientation and undercut with the side inclination. Therefore, lower angle range is necessary for multilayer gas metal arc deposition for these two last configurations.

Notes

Best Paper Award winner at the International Conference on Heat Transfer and Fluid Flow 2021 - https://htffconference.com/past-events/#Awards

Files

Effect of Substrate Orientation on Melt Pool during Multi-Layer Deposition in V-Groove with Gas Metal Arc.pdf

Additional details

Funding

INTEGRADDE – Intelligent data-driven pipeline for the manufacturing of certified metal parts through Direct Energy Deposition processes 820776
European Commission