M. ÖZER Et Al. , "Investigation of Microstructure and Mechanical Properties of Welded Joints of Aluminum Alloys Welded with Titanium Based Powder Material by High Velocity Oxygen Fuel Spray Method (HVOF) Combined with Friction Stir Welding Method," Academic Perspective Procedia , vol.1, pp.558-564, 2018
ÖZER, M. Et Al. 2018. Investigation of Microstructure and Mechanical Properties of Welded Joints of Aluminum Alloys Welded with Titanium Based Powder Material by High Velocity Oxygen Fuel Spray Method (HVOF) Combined with Friction Stir Welding Method. Academic Perspective Procedia , vol.1 , 558-564.
ÖZER, M., KAYA, H., AVCU, E., DEMİR, A., UÇAR, M., & SAMUR, R., (2018). Investigation of Microstructure and Mechanical Properties of Welded Joints of Aluminum Alloys Welded with Titanium Based Powder Material by High Velocity Oxygen Fuel Spray Method (HVOF) Combined with Friction Stir Welding Method. Academic Perspective Procedia , vol.1, 558-564.
ÖZER, MESUT Et Al. "Investigation of Microstructure and Mechanical Properties of Welded Joints of Aluminum Alloys Welded with Titanium Based Powder Material by High Velocity Oxygen Fuel Spray Method (HVOF) Combined with Friction Stir Welding Method," Academic Perspective Procedia , vol.1, 558-564, 2018
ÖZER, MESUT Et Al. "Investigation of Microstructure and Mechanical Properties of Welded Joints of Aluminum Alloys Welded with Titanium Based Powder Material by High Velocity Oxygen Fuel Spray Method (HVOF) Combined with Friction Stir Welding Method." Academic Perspective Procedia , vol.1, pp.558-564, 2018
ÖZER, M. Et Al. (2018) . "Investigation of Microstructure and Mechanical Properties of Welded Joints of Aluminum Alloys Welded with Titanium Based Powder Material by High Velocity Oxygen Fuel Spray Method (HVOF) Combined with Friction Stir Welding Method." Academic Perspective Procedia , vol.1, pp.558-564.
@article{article, author={MESUT ÖZER Et Al. }, title={Investigation of Microstructure and Mechanical Properties of Welded Joints of Aluminum Alloys Welded with Titanium Based Powder Material by High Velocity Oxygen Fuel Spray Method (HVOF) Combined with Friction Stir Welding Method}, journal={Academic Perspective Procedia}, year=2018, pages={558-564} }