scholarly journals Formation of gradient microstructure and mechanical properties of hot-pressed W-20 wt% Cu composites after sliding friction severe deformation

2018 ◽  
Vol 144 ◽  
pp. 325-335 ◽  
Author(s):  
L.L. Dong ◽  
M. Ahangarkani ◽  
W. Zhang ◽  
B. Zhang ◽  
W.G. Chen ◽  
...  
2019 ◽  
Vol 50 (12) ◽  
pp. 5888-5895 ◽  
Author(s):  
Wei Zhang ◽  
Yan Du ◽  
Wangtu Huo ◽  
Jiangjiang Hu ◽  
Jinwen Lu ◽  
...  

Metals ◽  
2021 ◽  
Vol 11 (9) ◽  
pp. 1433
Author(s):  
Dariusz Garbiec ◽  
Volf Leshchynsky ◽  
Andrea García-Junceda ◽  
Radosław Swadźba ◽  
Piotr Siwak ◽  
...  

In this paper, the microstructure and mechanical properties of AA7075 with a coarse-fine-grained laminated microstructure produced by spark plasma sintering (SPS) and the cyclic extrusion severe deformation (KOBO) technique were investigated. It was found that an inhomogeneous grain microstructure was formed from coarse and fine grains by the SPS process and then was transformed into a coarse-fine-grained laminated microstructure by means of KOBO extrusion at room temperature. The grain refinement during KOBO extrusion resulted in a fine grained laminated microstructure created due to the formation of low-angle grain boundaries (LAGBs), followed by dynamic recrystallization, leading to high-angle grain boundaries (HAGBs). The EBSD analysis results reveal the formation of a deformed and partially recrystallized ultrafine grain microstructure owing to the generation and development of shear bands during KOBO extrusion. The ultimate tensile strength (UTS) of the AA7075 alloy rose after SPS-KOBO severe deformation up to 422 MPa, with high strains of about 33%. The obtained results clearly show that the SPS-KOBO extrusion technique allows a bimodal laminated fine gradient grain microstructure to be obtained due to deformation and dynamic recrystallization, which result in both high strength and good ductility. The new heterogeneous AA7075 alloys obtained by the SPS-KOBO combined techniques demonstrate that microstructural heterogeneities can assist in overcoming the strength–ductility trade-off.


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