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Strategy for improving the wear-resistance properties of detonation sprayed Fe-based amorphous coatings by cryogenic cycling treatment.

Authors :
Zhai, Haimin
Li, Xuqiang
Li, Wensheng
Cheng, Bo
He, Dongqing
Zhang, Xinjian
Cui, Shuai
Source :
Surface & Coatings Technology. Mar2021, Vol. 410, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

Fe-based amorphous coating is deposited on invar steel substrates using detonation spray and then through the cryogenic cycling (CCT) treatment from 0 to 60 cycles with the interval 10 cycles. Effects of CCT on microstructure, thermal properties, mechanical and tribological properties were investigated. It was found that, all the coated samples with CCT are still well bonded with the invar steel substrate, except for the surface of C60 appears local cracks. Moreover, it also found that although CCT did not significantly change the phase structure of the amorphous coating, CCT promoted the rejuvenation behavior in the amorphous coating, which also led to the heterogeneity of the internal structure. Attributed to this heterogeneity, it promotes the generation of a large amount of free volume in the amorphous coating, which results in a significant change in the toughness and resistance to crack propagation of the amorphous coating. And after 50 CCT cycles, the amorphous coating has undergone an obvious ductile-brittle transition, which has the highest fracture toughness K IC and plastic work W p value. The COF and wear rate of coatings increased initially, then followed by a decrease, but then again increased with the increase of CCT cycles. The 50-cycles coatings exhibited the lowest COF (0.60) and wear rate (0.56 × 10−5 mm3N−1 m−1). The wear mechanism of all the samples is mainly delamination wear with oxidative wear, but the degree of delamination wear is obviously different, showing a trend corresponding to the tribological behavior of the amorphous coating. Therefore, the CCT method could be an effectively strategy to ameliorate the toughness and then enhance the wear performance of the Fe-based amorphous coating. • Fe-based amorphous coatings were deposited by detonation spraying. • The coated samples were treated by cryogenic thermal cycling from 0– 60 cycles. • The cryogenic thermal cycling treated samples undergo a brittle-tough transition. • C50 coatings exhibit the best friction and wear properties. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02578972
Volume :
410
Database :
Academic Search Index
Journal :
Surface & Coatings Technology
Publication Type :
Academic Journal
Accession number :
149312499
Full Text :
https://doi.org/10.1016/j.surfcoat.2021.126962