TY - JOUR
T1 - High Temperature Tribological Properties of Nano La2O3-Doped MoSi2 Composite Coatings Sintered in Vacuum
AU - Zeng, Qunfeng
AU - Dong, Guangneng
AU - Huang, Shuanggang
N1 - Publisher Copyright:
© 2017, Journal of Vacuum Science and Technology Publishing House. All right reserved.
PY - 2017/5/1
Y1 - 2017/5/1
N2 - The MoSi2 composite coatings were synthesized and doped with La2O3 nano-particles by high temperature sintering in vacuum on substrate of high speed steel. The influence of the content of La2O3 nano-particles on the high temperature tribological behavior of the coatings was investigated with X-ray diffraction (XRD) and conventional mechanical probes. The results show that depending on its content, doping of La2O3 significantly affected the high temperature tribological properties of the coatings. For example, as the La2O3 contentincreased, the compactness, hardness and wear-resistance of the coatings changed in an increase-decrease mode, and the friction coefficient varied in a decrease-increase way; 1% and/or 5%(wt) of La2O3 significantly increased the wear-rate. Doped at 3% of La2O3, the MoSi2 coating, with a friction coefficient of 0.1, displayed an excellent tribological performance at 200℃ and 800℃, respectively. A combination of abrasive, adhesive and dominate oxidative wear was responsible for the wear mechanisms.
AB - The MoSi2 composite coatings were synthesized and doped with La2O3 nano-particles by high temperature sintering in vacuum on substrate of high speed steel. The influence of the content of La2O3 nano-particles on the high temperature tribological behavior of the coatings was investigated with X-ray diffraction (XRD) and conventional mechanical probes. The results show that depending on its content, doping of La2O3 significantly affected the high temperature tribological properties of the coatings. For example, as the La2O3 contentincreased, the compactness, hardness and wear-resistance of the coatings changed in an increase-decrease mode, and the friction coefficient varied in a decrease-increase way; 1% and/or 5%(wt) of La2O3 significantly increased the wear-rate. Doped at 3% of La2O3, the MoSi2 coating, with a friction coefficient of 0.1, displayed an excellent tribological performance at 200℃ and 800℃, respectively. A combination of abrasive, adhesive and dominate oxidative wear was responsible for the wear mechanisms.
KW - High temperature tribology
KW - Nano composite coating
KW - Vacuum sintering
KW - Wear mechanism
UR - https://www.scopus.com/pages/publications/85029570862
U2 - 10.13922/j.cnki.cjovst.2017.05.11
DO - 10.13922/j.cnki.cjovst.2017.05.11
M3 - 文章
AN - SCOPUS:85029570862
SN - 1672-7126
VL - 37
SP - 499
EP - 504
JO - Zhenkong Kexue yu Jishu Xuebao/Journal of Vacuum Science and Technology
JF - Zhenkong Kexue yu Jishu Xuebao/Journal of Vacuum Science and Technology
IS - 5
ER -