Exceptional strength and wear resistance in an AA7075/TiB2 composite fabricated via friction consolidation

被引:13
作者
Li, Xiao [1 ]
Das, Hrishikesh [1 ]
Pole, Mayur [2 ]
Li, Lei [1 ]
Soulami, Ayoub [1 ]
Grant, Glenn J. [1 ]
Herling, Darrell R. [1 ]
Efe, Mert [1 ]
机构
[1] Pacific Northwest Natl Lab, Energy & Environm Directorate, 902 Battelle Blvd, Richland, WA 99354 USA
[2] Pacific Northwest Natl Lab, Phys & Computat Sci Directorate, 902 Battelle Blvd, Richland, WA 99354 USA
关键词
Lightweight materials; Friction consolidation; Titanium diboride; MMC; ALUMINUM-MATRIX COMPOSITES; MECHANICAL-PROPERTIES; POWDER-METALLURGY; FRACTURE-BEHAVIOR; HYBRID COMPOSITES; TIB2; MICROSTRUCTURE; PARTICLES; TENSILE; CARBIDE;
D O I
10.1016/j.matdes.2024.113006
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The friction consolidation method successfully reinforced aluminum 7075 alloy (AA7075) with high-volume fractions (12 and 24 vol%) of titanium diboride (TiB2) by high pressure and severe plastic deformation at elevated temperatures. The consolidated AMCs have a uniform dispersion of submicron- and micron-sized TiB2 particles in the AA7075 matrix, with significant refinement of the matrix grain size and the particles. The addition of TiB2 significantly increases hardness by up to 50 %, Young's modulus by up to 62 %, and ultimate tensile strength by up to 28 % to 672 MPa, while reducing ductility by 80 %. Wear resistance of 7075/24 vol% TiB2 improves seven-fold compared to baseline, making it comparable to that of carburized steels. Microstructure-based finite element modeling provided a theoretical strength limit of -730 MPa for the composites and indicated that high triaxiality in conjunction with severe equivalent plastic strain in a narrow area between the TiB2 particles led to early fracture initiations, limiting the ductility.
引用
收藏
页数:13
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