Dapeng Gu , Guanqun Wang , Siyuan Gao , Bingchao Yang , Suwen Chen , Hongtao Luo
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引用次数: 0
Abstract
In this paper, the B4C@SiO2 core-shell structure was prepared by the ‘sol-gel’ method. It is combined with few layers black phosphrous (FLBP) of different sizes obtained by ball milling to prepare B4C@SiO2/BP composite. The effects of black phosphorus (BP) sizes, sintering temperatures, times, pressures and transient liquid phase types on the dry tribological properties of B4C@SiO2/BP composites were studied in a ball-on-disc contact form. The results indicated that as the size of BP decreased, the friction coefficient of the B4C@SiO2/BP composite gradually increased while the wear rate decreased and tended to the tribological properties of the B4C@SiO2 composite. In addition, when the added amount of BP exceeded the threshold, it would lead to deterioration of tribological properties.
期刊介绍:
Wear journal is dedicated to the advancement of basic and applied knowledge concerning the nature of wear of materials. Broadly, topics of interest range from development of fundamental understanding of the mechanisms of wear to innovative solutions to practical engineering problems. Authors of experimental studies are expected to comment on the repeatability of the data, and whenever possible, conduct multiple measurements under similar testing conditions. Further, Wear embraces the highest standards of professional ethics, and the detection of matching content, either in written or graphical form, from other publications by the current authors or by others, may result in rejection.