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Dry sliding wear behavior of MoSi2-Mo5Si3-Mo5SiB2 composite at different temperatures and loads.

Authors :
Hu, Huarong
Guo, Yuanjun
Yan, Jianhui
Qiu, Jingwen
Wang, Yi
Source :
Wear. Jun2019, Vol. 428/429, p237-245. 9p.
Publication Year :
2019

Abstract

MoSi 2 -Mo 5 Si 3 -Mo 5 SiB 2 composite is a kind of potential wear resistance material in high temperature environments. However, it is not yet understood how the dry sliding wear properties of the composite. In this work, a series of ball (Si 3 N 4)-on-disk (composite) sliding wear tests were conducted to evaluate the tribological properties of the composite at different temperatures and loads. The results show that the temperature and load have a slight influence on the wear rate of the composite, while the coefficient of friction (COF) is strongly dependent on the temperatures and loads. The COF and wear rate are (0.34–0.62) and (6.4–7.5) × 10−6 mm3N−1m−1 at 25–1000 °C, respectively. The wear mechanism is dominated by the brittle fracture wear below 400 °C, then transforms to the oxidative wear (600–1000 °C), and the plastic deformation (1000 °C). In additional, the increasing loads (2.5–10 N) lead to a severer plastic deformation tribolayer on the worn surface, which causes low COFs (0.30–0.56) as well as low wear rates (7.38–7.54 × 10−6 mm3N−1m−1) at 1000 °C, and the corresponding wear mechanisms exhibit the adhesive and oxidation wear. The composite shows a promising application as tribological components at elevated temperature in oxidizing environment owing to the development of a protective oxide layer or a plastic deformation tribolayer on the top of the wear surface. • MoSi 2 -Mo 5 Si 3 -Mo 5 SiB 2 composite with excellent tribological properties was prepared. • With increasing temperature, the wear mechanisms change from brittle fracture to oxidative wear and plastic deformation. • At 1000 °C, the wear mechanisms are adhesive and oxidation wear at 2.5–10 N, and accompanied plastic deformation over 5 N. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00431648
Volume :
428/429
Database :
Academic Search Index
Journal :
Wear
Publication Type :
Academic Journal
Accession number :
136416924
Full Text :
https://doi.org/10.1016/j.wear.2019.03.018