Next Article in Journal
Assessing the Impact of Ethanol/Biodiesel/Diesel Blends and Nanoparticle Fuel Additives on Performance and Emissions in a DI Diesel Engine with EGR Integration: An Experimental Study
Next Article in Special Issue
Effects of Deep Cryogenic Treatment and Controlled Rolling on Microstructures and Mechanical Properties of an Ultra-High Strength Steel
Previous Article in Journal
Optimization of Fire Brigade Deployment by Means of Mathematical Programming
Previous Article in Special Issue
Lean-and-Green Strength Performance Optimization of a Tube-to-Tubesheet Joint for a Shell-and-Tube Heat Exchanger Using Taguchi Methods and Random Forests
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Advancing Manganese Content Prediction in Submerged Arc Welded Metal: Development of a Multi-Zone Model via the Calphad Technique

1
School of Mechanical and Electrical Engineering, Suqian University, Suqian 223800, China
2
School of Metallurgy, Northeastern University, Shenyang 110819, China
3
Department of Science and Technology, Suqian University, Suqian 223800, China
*
Author to whom correspondence should be addressed.
Processes 2023, 11(4), 1265; https://doi.org/10.3390/pr11041265
Submission received: 29 March 2023 / Revised: 13 April 2023 / Accepted: 14 April 2023 / Published: 19 April 2023
(This article belongs to the Special Issue Process Metallurgy: From Theory to Application)

Abstract

Manganese is a vital element in determining the mechanical properties of submerged arc welded metal. To ensure a reliable weld, the equilibrium model has been used for decades to predict and control the manganese content, particularly when MnO-bearing fluxes are applied. However, the equilibrium model only considers chemical interactions within the weld pool zone, leading to significant inaccuracies. To address this limitation, we propose a multi-zone model that accounts for all of the essential reaction zones in the submerged arc process via the Calphad technique. The model’s accuracy is verified by predicting the manganese content, the flux oxygen potential, and the neutral point location for the typical MnO-bearing fluxes covering acidic, neutral, and basic fluxes. The results indicate that the multi-zone model offers superior accuracy compared to the equilibrium model, which neglects significant oxygen improvement and alloy evaporation in the droplet zone. Further analysis of thermodynamic data reveals that the multi-zone model provides a more representative depiction of the variation trends in oxygen and manganese contents during the submerged arc welding process compared to the equilibrium model. Furthermore, this model can be utilized in the optimization of the submerged arc welding process, leading to improved quality and efficiency in heavy engineering industries. This study may provide an improved method for predicting the manganese content in welded C-Mn steel and deepen the understanding of manganese transfer mechanisms during the submerged arc welding process.
Keywords: submerged arc welding; welding process; chemical reactions; equilibrium principles; gas–slag–metal equilibrium; compositional control submerged arc welding; welding process; chemical reactions; equilibrium principles; gas–slag–metal equilibrium; compositional control

Share and Cite

MDPI and ACS Style

Zhang, J.; Liu, P.; Zhang, D. Advancing Manganese Content Prediction in Submerged Arc Welded Metal: Development of a Multi-Zone Model via the Calphad Technique. Processes 2023, 11, 1265. https://doi.org/10.3390/pr11041265

AMA Style

Zhang J, Liu P, Zhang D. Advancing Manganese Content Prediction in Submerged Arc Welded Metal: Development of a Multi-Zone Model via the Calphad Technique. Processes. 2023; 11(4):1265. https://doi.org/10.3390/pr11041265

Chicago/Turabian Style

Zhang, Jin, Ping Liu, and Dan Zhang. 2023. "Advancing Manganese Content Prediction in Submerged Arc Welded Metal: Development of a Multi-Zone Model via the Calphad Technique" Processes 11, no. 4: 1265. https://doi.org/10.3390/pr11041265

APA Style

Zhang, J., Liu, P., & Zhang, D. (2023). Advancing Manganese Content Prediction in Submerged Arc Welded Metal: Development of a Multi-Zone Model via the Calphad Technique. Processes, 11(4), 1265. https://doi.org/10.3390/pr11041265

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop