Investigation on microstructures and mechanical behavior of in-situ synthesized TiC and TiB reinforced Ti6Al4V based composite

被引:9
|
作者
Zheng, Bowen [1 ]
Dong, Fuyu [1 ]
Yuan, Xiaoguang [1 ]
Zhang, Yue [1 ]
Huang, Hongjun [1 ]
Zuo, Xiaojiao [1 ]
Luo, Liangshun [2 ]
Wang, Liang [2 ]
Su, Yanqing [2 ]
Wang, Xuan [3 ]
Liaw, Peter K. [4 ]
机构
[1] Shenyang Univ Technol, Sch Mat Sci & Engn, Shenyang 110870, Liaoning, Peoples R China
[2] Harbin Inst Technol, Sch Mat Sci & Engn, Harbin 150001, Heilongjiang, Peoples R China
[3] Chongqing Univ, Sch Mat Sci & Engn, Chongqing 400044, Peoples R China
[4] Univ Tennessee, Dept Mat Sci & Engn, Knoxville, TN 37996 USA
来源
MATERIALS RESEARCH EXPRESS | 2019年 / 6卷 / 11期
基金
中国国家自然科学基金; 中国博士后科学基金; 美国国家科学基金会;
关键词
titanium matrix composite; microstructure; compressive strength; wear properties; MATRIX COMPOSITES; TENSILE PROPERTIES; WEAR; ALLOY; BORON; CARBON;
D O I
10.1088/2053-1591/ab499d
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To enhance the friction and wear behavior of the Ti6Al4V alloy, titanium matrix composites (TMCs) were prepared by the single TiC, single TiB, and (TiC + TiB) hybrid reinforced with the volume fraction of 2, 6, and 10%, respectively. To investigate the effect of reinforcements on compressive and wear properties, the x-ray Diffraction (XRD), Scanning Electron Microscope (SEM), Electron Probe Micro-analyzer (EPMA), compression test, and pin-on-disk friction tests were applied. The results indicated that compressive strength increased with the addition of the reinforcement, and wear properties were improved due to the uniform distribution of reinforcements, which enhanced the resistance against tangential forces associated with the sliding wear. The wear mechanism appeared to be mainly based on the severe adhesive and oxidative wear, gradually transitioned to slight adhesion, abrasive, and oxidative wear.
引用
收藏
页数:11
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