TY - JOUR
T1 - Microstructure characteristics and enhanced tensile properties of in-situ AlN/ AZ91 composites prepared by liquid nitriding method
AU - Zhang, Bin
AU - Yang, Changlin
AU - Zhao, Dongchen
AU - Sun, Yunxia
AU - Wang, Xiaobo
AU - Liu, Feng
N1 - Publisher Copyright:
© 2018 Elsevier B.V.
PY - 2018/5/16
Y1 - 2018/5/16
N2 - Nano-, submicron- and micron-sized AlN particles were in situ synthesized in AZ91 matrix alloy by liquid nitriding method. According to thermodynamics calculation and experimental results, the nitriding reactions of AlN particle formation were stably completed in the matrix AZ91 alloy melt. And in situ formed AlN particles with the granular and rod-like shapes were uniformly distributed in the matrix. Thus, the grain sizes of α-Mg were significantly refined, the amount and sizes of β-Mg17Al12 phases were decreased, and a lot of dislocations trapping and the precipitation of γ-Mg17Al12 phase were induced in the AZ91 matrix alloy. As results, higher ultimate tensile strength (240 ± 10 MPa) and higher fracture elongation (20 ± 3%) were simultaneously improved for AlN/AZ91 permanent mold casting composites.
AB - Nano-, submicron- and micron-sized AlN particles were in situ synthesized in AZ91 matrix alloy by liquid nitriding method. According to thermodynamics calculation and experimental results, the nitriding reactions of AlN particle formation were stably completed in the matrix AZ91 alloy melt. And in situ formed AlN particles with the granular and rod-like shapes were uniformly distributed in the matrix. Thus, the grain sizes of α-Mg were significantly refined, the amount and sizes of β-Mg17Al12 phases were decreased, and a lot of dislocations trapping and the precipitation of γ-Mg17Al12 phase were induced in the AZ91 matrix alloy. As results, higher ultimate tensile strength (240 ± 10 MPa) and higher fracture elongation (20 ± 3%) were simultaneously improved for AlN/AZ91 permanent mold casting composites.
KW - Mechanical Properties
KW - Metal-matrix composites (MMCs)
KW - Microstructures
KW - Particle-reinforcement
UR - http://www.scopus.com/inward/record.url?scp=85045398704&partnerID=8YFLogxK
U2 - 10.1016/j.msea.2018.03.126
DO - 10.1016/j.msea.2018.03.126
M3 - 文章
AN - SCOPUS:85045398704
SN - 0921-5093
VL - 725
SP - 207
EP - 214
JO - Materials Science and Engineering: A
JF - Materials Science and Engineering: A
ER -