Gazi University Journal of Science Part A: Engineering and Innovation

Gazi University Journal of Science Part A: Engineering and Innovation

Investigation Regarding Al-Al2O3 Composite Material Production and Its Weldability to Aluminum by Diffusion Welding

Yazarlar: Halil ARIK, Ramazan SANDAL

Cilt 4 , Sayı 4 , 2017 , Sayfalar 101 - 111

Konular:-

Anahtar Kelimeler:Powder metallurgy,Composite,Diffusion welding

Özet: In this study, firstly, a composite material aluminum based and containing 10 % Al2O3 by weight is produced by powder metallurgy method. In the production of composite samples being 10 mm in diameter and 15 mm in length, first Al and Al2O3 powders were mixed for 2 hours in a high – energy  attritor and then pressed in a unidirectional axial die  at 800  MPa pressure. The pressed samples were sintered in a tubular furnace in a protective argon gas ambiance at 650°C for 2 hours. As for the second stage, the composite samples have been welded by diffusion welding to an Al block material in 99.5% purity and in the same dimensions at 5 MPa – constant load at different temperatures and durations by diffusion welding. The strength values of welded samples were determined by making shear tests from the welding zones versus composite material.


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BibTex
KOPYALA
@article{2017, title={Investigation Regarding Al-Al2O3 Composite Material Production and Its Weldability to Aluminum by Diffusion Welding}, volume={4}, number={101–111}, publisher={Gazi University Journal of Science Part A: Engineering and Innovation}, author={Halil ARIK,Ramazan SANDAL}, year={2017} }
APA
KOPYALA
Halil ARIK,Ramazan SANDAL. (2017). Investigation Regarding Al-Al2O3 Composite Material Production and Its Weldability to Aluminum by Diffusion Welding (Vol. 4). Vol. 4. Gazi University Journal of Science Part A: Engineering and Innovation.
MLA
KOPYALA
Halil ARIK,Ramazan SANDAL. Investigation Regarding Al-Al2O3 Composite Material Production and Its Weldability to Aluminum by Diffusion Welding. no. 101–111, Gazi University Journal of Science Part A: Engineering and Innovation, 2017.