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Application of MIG and TIG Welding in Automobile Industry
O. S. Ogbonna
,
S. A. Akinlabi
, N. Madushele
,
P. M. Mashinini
, A. A. Abioye
Mechanical Engineering Science
Biomedical Engineering and Healthcare Technology Research Centre
Mechanical and Industrial Engineering Technology
University of Johannesburg
Covenant University
Research output
:
Contribution to journal
›
Conference article
›
peer-review
21
Citations (Scopus)
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Keyphrases
Automobile
100%
Automobile Industry
100%
TIG Welding
100%
MIG Welding
100%
High Cost
50%
Emission Reduction
50%
Electron Beam Welding
50%
Base Metals
25%
Government Agencies
25%
Material Cost
25%
Global Warming
25%
Size-and-shape
25%
Magnesium Alloy
25%
Beam Shaping
25%
Steel Structures
25%
Weight Reduction
25%
Deep Penetration
25%
Fuel Economy
25%
Vehicle Engineering
25%
Ordinary Steel
25%
Aluminum Alloy
25%
Welding Method
25%
Welding Process
25%
Friction Stir Welding
25%
Titanium Alloy
25%
Welded Joint
25%
Heat Affected Zone
25%
High Tensile Strength
25%
Arc Welding
25%
Alloy Materials
25%
Laser Welding
25%
Traditional Materials
25%
Material Remains
25%
Vacuum Environment
25%
Ultrasonic Welding
25%
Reflective Materials
25%
Vehicle Manufacturers
25%
Seam Appearance
25%
Traditional Vehicle
25%
High-temperature Performance
25%
Electron Beam Size
25%
High Energy Efficiency
25%
Gap Bridging
25%
Reducing Weight
25%
Challenges Faced
25%
Superior Properties
25%
High Strength to Weight Ratio
25%
Material Science
Alloy
100%
Ultimate Tensile Strength
25%
Friction Stir Welding
25%
Arc Welding
25%
Laser Beam Welding
25%
Magnesium Alloy
25%
Titanium Alloy
25%
Aluminum Alloy
25%