High performance Al/TiB2 composites fabricated by nanoparticle reinforcement and cutting-edge super vacuum assisted die casting process

被引:51
作者
Dong, Xixi [1 ]
Youssef, Hamza [1 ]
Zhang, Yijie [1 ]
Wang, Shihao [1 ]
Ji, Shouxun [1 ]
机构
[1] Brunel Univ London, BCAST, Inst Mat & Mfg, Uxbridge UB8 3PH, Middx, England
基金
“创新英国”项目;
关键词
Metal-matrix composites; Particle-reinforcement; Microstructures; Mechanical properties; ELECTROMAGNETIC TRANSPORT PROCESS; LIQUID ALUMINUM-ALLOY; MECHANICAL-PROPERTIES; AL-MG; MICROSTRUCTURE; STRENGTH; BEHAVIOR; MAGNESIUM; PARTICLES; DEFECT;
D O I
10.1016/j.compositesb.2019.107453
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The structural lightweight in automotive and other industries motivates the usage of high strength die-cast aluminium alloys. However, the improvements of die-cast aluminium alloys are struggling limited by conventional micro alloying, and the improved yield strengths are still in the low level of 180-190 MPa. Here, high performance die-cast AlSiMgCu/TiB2 composite was fabricated through the reinforcement of TiB2 nanoparticles and the latest developed cutting-edge super vacuum assisted high pressure die casting (HPDC) process. The composite with 3.0 wt% TiB2 nanoparticles could deliver the milestone high hardness of 1.56 GPa, yield strength of 356 MPa, tensile strength of 457 MPa and an industrially applicable ductility of 5.5%. The composite was strengthened by TiB2 nanoparticles and nanoscale Q' and theta' precipitates that all had highly coherent interfaces with the alpha-Al matrix, indicative of strong interfacial bonding. The implantation of TiB2 nanoparticles also induced special grain refinement strengthening of the composite. The fabricated composite demonstrates similar to 90% increase in strength over the currently available alloys, and it is promising for industrial application.
引用
收藏
页数:11
相关论文
共 44 条
[1]   CRYSTAL MORPHOLOGY OF THE COMPOUND TIB2 [J].
ABDELHAMID, AA ;
HAMARTHIBAULT, S ;
HAMAR, R .
JOURNAL OF CRYSTAL GROWTH, 1985, 71 (03) :744-750
[2]   Processing and properties of magnesium containing a dense uniform dispersion of nanoparticles [J].
Chen, Lian-Yi ;
Xu, Jia-Quan ;
Choi, Hongseok ;
Pozuelo, Marta ;
Ma, Xiaolong ;
Bhowmick, Sanjit ;
Yang, Jenn-Ming ;
Mathaudhu, Suveen ;
Li, Xiao-Chun .
NATURE, 2015, 528 (7583) :539-+
[3]   Microstructures and properties of A356-10%SiC particle composite castings at different solidification pressures [J].
Dong, Pu-yun ;
Zhao, Hai-dong ;
Chen, Fei-fan ;
Li, Jun-wen .
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2013, 23 (08) :2222-2228
[4]   Formation of strength platform in cast Al-Si-Mg-Cu alloys [J].
Dong, Xixi ;
Amirkhanlou, Sajjad ;
Ji, Shouxun .
SCIENTIFIC REPORTS, 2019, 9 (1)
[5]   Effect of super vacuum assisted high pressure die casting on the repeatability of mechanical properties of Al-Si-Mg-Mn die-cast alloys [J].
Dong, Xixi ;
Zhu, Xiangzhen ;
Ji, Shouxun .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2019, 266 :105-113
[6]   Si poisoning and promotion on the microstructure and mechanical properties of Al-Si-Mg cast alloys [J].
Dong, Xixi ;
Ji, Shouxun .
JOURNAL OF MATERIALS SCIENCE, 2018, 53 (10) :7778-7792
[7]   High performance gravity cast Al9Si0.45Mg0.4Cu alloy inoculated with AlB2 and TiB2 [J].
Dong, Xixi ;
Zhang, Yijie ;
Amirkhanlou, Sajjad ;
Ji, Shouxun .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2018, 252 :604-611
[8]   Enhancement of mechanical properties in high silicon gravity cast AlSi9Mg alloy refined by Al3Ti3B master alloy [J].
Dong, Xixi ;
Zhang, Yijie ;
Ji, Shouxun .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2017, 700 :291-300
[9]   A liquid aluminum alloy electromagnetic transport process for high pressure die casting [J].
Dong, Xixi ;
Huang, Xiusong ;
Liu, Lehua ;
He, Liangju ;
Li, Peijie .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2016, 234 :217-227
[10]   Effect of electromagnetic transport process on the improvement of hydrogen porosity defect in A380 aluminum alloy [J].
Dong, Xixi ;
He, Liangju ;
Huang, Xiusong ;
Li, Peijie .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2015, 40 (30) :9287-9297