Fe and Cr are regarded as two of the most important friction components in Cu-based composites (Cu–BCs). In this study, the microstructural detection and micro- and macro-tribology evaluation of Cu–BCs containing Fe and Cr were performed. The results indicated that both Fe and Cr formed diffusion interfaces with the copper matrix. Because of the generation of a defect interface layer, the Cr/Cu interface exhibited a low bonding strength. Owing to the excellent binding interface between Fe and Cu, the high coefficient of friction (COF) of Fe, and the formation of a mechanical mixing layer promoted by Fe, the Cu–BCs containing Fe presented better friction performance under all braking energy per unit area (BEPUA) values. The main wear mechani...
Abstract The present investigation focuses on the fabrication of Copper-High Entropy Alloy (HEA) sur...
Three copper-based alloys, i.e. two composites reinforced with Al2O3 particles and fabricated throug...
Gra./Cu composites and CNTs/Cu composites were respectively fabricated by powder metallurgy techniqu...
Focus of the study has been placed on the effect of graphite content on tribological behavior of a C...
Copper impregnated carbon/carbon composite (Cu-C/C composite) was fabricated for novel sliding colle...
Cu⁻Fe-based friction materials with flake graphite, granulated carbon black, and high-strength...
Brakes play an extremely important role in any vehicle. In today’s automotive industry, friction bra...
Tribological properties of engineering components are a key issue due to their effect on the operati...
2-s2.0-84905833741 - ScopusIn this study, the tribological behavior of copper coatings was investiga...
The tribological performance of copper-based powder metallurgical material is much influenced by the...
Copper⁻graphite composites reinforced with SiO2 particles were fabricated by powder metallurgy...
Copper–graphite composites with 0–4 wt % graphite were fabricated by field-assisted hot ...
Sintered brake pads are used for heavy duty brake applications e.g. for railway, heavy vehicles and ...
Previous studies have shown that the copper originated from the wear of automotive brake friction ma...
The paper presents experimental research regarding the wear behavior of some composite materials bas...
Abstract The present investigation focuses on the fabrication of Copper-High Entropy Alloy (HEA) sur...
Three copper-based alloys, i.e. two composites reinforced with Al2O3 particles and fabricated throug...
Gra./Cu composites and CNTs/Cu composites were respectively fabricated by powder metallurgy techniqu...
Focus of the study has been placed on the effect of graphite content on tribological behavior of a C...
Copper impregnated carbon/carbon composite (Cu-C/C composite) was fabricated for novel sliding colle...
Cu⁻Fe-based friction materials with flake graphite, granulated carbon black, and high-strength...
Brakes play an extremely important role in any vehicle. In today’s automotive industry, friction bra...
Tribological properties of engineering components are a key issue due to their effect on the operati...
2-s2.0-84905833741 - ScopusIn this study, the tribological behavior of copper coatings was investiga...
The tribological performance of copper-based powder metallurgical material is much influenced by the...
Copper⁻graphite composites reinforced with SiO2 particles were fabricated by powder metallurgy...
Copper–graphite composites with 0–4 wt % graphite were fabricated by field-assisted hot ...
Sintered brake pads are used for heavy duty brake applications e.g. for railway, heavy vehicles and ...
Previous studies have shown that the copper originated from the wear of automotive brake friction ma...
The paper presents experimental research regarding the wear behavior of some composite materials bas...
Abstract The present investigation focuses on the fabrication of Copper-High Entropy Alloy (HEA) sur...
Three copper-based alloys, i.e. two composites reinforced with Al2O3 particles and fabricated throug...
Gra./Cu composites and CNTs/Cu composites were respectively fabricated by powder metallurgy techniqu...