Tribological performance of B4C modified C/C-SiC brake materials under dry air and wet conditions
-
Add time:09/24/2019 Source:sciencedirect.com
In this work, boron carbide (B4C) was selected as additive to improve the tribological performance of C/C-SiC brake materials. It contained four phases (C, B4C, Si and SiC) in B4C modified C/C-SiC (C/C-B4C-SiC) brake materials. Its wear rates were much less than that of C/C-SiC, especially at high braking speeds. The introduction of B4C particles could reduce the braking temperature. During the braking process, B4C in the material can be oxidized to B2O3. The flow of B2O3 could cover the interface of carbon fiber and PyC to prevent them from oxidation and thereby reduce the oxidative wear of the brake materials. Under wet conditions, the braking property of C/C-B4C-SiC brake materials did not degrade, whereas the braking process was found to be stable.
We also recommend Trading Suppliers and Manufacturers of (-)-Bakkenolide C (cas 18456-00-3). Pls Click Website Link as below: cas 18456-00-3 suppliers
Prev:Feature ArticleHepatitis C in 2019: Are We There Yet?
Next:CommunicationSelective O-difluoromethylation of 1,3-diones using S-(difluoromethyl) sulfonium salt) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Feature ArticleHepatitis C in 2019: Are We There Yet?09/10/2019
- Gel reactive melt infiltration: A new method for large-sized complex-shaped C/C components ceramic modification09/09/2019
- Meta-AnalysisMeta-analysis of the impact of the SPINK1 c.194 + 2T > C variant in chronic pancreatitis09/08/2019
- Research ArticleAblation characteristics of mosaic structure ZrC-SiC coatings on low-density, porous C/C composites09/07/2019
- CommunicationNew C-scorpionate nickel(II) catalyst for Heck C–C coupling under unconventional conditions09/06/2019
- Effect of FeSi2 content on tribological properties of C/C–SiC–FeSi2 composites09/05/2019
- ReviewEmerging Strategies for C–H Silylation09/04/2019
- CommunicationHow long a C–C bond can be? An example of extraordinary long C–C single bond in 1,2-diarylamino-o-carborane09/03/2019


