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- W2752721916 abstract "This work is a review of previous works, presenting and discussing the most important results obtained by an ongoing research program towards the development of innovative, low-cost, self-lubricating composites with a low friction coefficient and high mechanical strength and wear resistance. Special emphasis is given to uniaxial die pressing of solid lubricant particles mixed with matrix powders and to metal injection moulding associated with in situ generation of solid lubricant particles. Initially, a microstructural model/processing route (powder injection moulding followed by plasma-assisted debinding and sintering) produced a homogeneous dispersion of in situ generated solid lubricant particles. Micrometric nodules of graphite with diameter smaller than 20 μm were formed, constituting a nanostructured stacking of graphite foils with nanometric thickness. Micro Raman analysis indicated that the graphite nodules were composed of turbostratic 2D graphite having highly misaligned graphene planes separated by large interlamellae distance. Large interplanar distance between the graphene foils and misalignment of these foils were confirmed by transmission electron microscopy and were, probably, the origin of the outstandingly low dry friction coefficient (0.04). The effect of sintering temperature, precursor content, metallic matrix composition and surface finish is also reported. Furthermore, the influence of a double-pressing/double-sintering (DPDS) technique on the tribological performance of self-lubricating uniaxially die-pressed hBN + graphite-Fe-Si-C-Mo composite is also investigated. Moreover, the tribological behaviour of die-pressed Fe-Si-C matrix composites containing 5, 7.5 and 10 wt% solid lubricants (hBN and graphite) added during the mixing step is analysed in terms of mechanical properties and wear mechanisms. Finally, the synergy between solid lubricant particles dispersed in a metallic matrix and fluid lubricants in a cooperative mixed lubrication regime is presented." @default.
- W2752721916 created "2017-09-15" @default.
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- W2752721916 date "2017-09-01" @default.
- W2752721916 modified "2023-10-10" @default.
- W2752721916 title "Tribological behaviour of sintered iron based self-lubricating composites" @default.
- W2752721916 cites W1496408515 @default.
- W2752721916 cites W1626057707 @default.
- W2752721916 cites W1887707280 @default.
- W2752721916 cites W1965277183 @default.
- W2752721916 cites W1965710170 @default.
- W2752721916 cites W1966058886 @default.
- W2752721916 cites W1970686803 @default.
- W2752721916 cites W1971724382 @default.
- W2752721916 cites W1975194694 @default.
- W2752721916 cites W1975560733 @default.
- W2752721916 cites W1980814911 @default.
- W2752721916 cites W1986669188 @default.
- W2752721916 cites W1988133629 @default.
- W2752721916 cites W1992633735 @default.
- W2752721916 cites W1993214558 @default.
- W2752721916 cites W1996276151 @default.
- W2752721916 cites W1998352487 @default.
- W2752721916 cites W2002766936 @default.
- W2752721916 cites W2003303384 @default.
- W2752721916 cites W2006009063 @default.
- W2752721916 cites W2006182380 @default.
- W2752721916 cites W2009272631 @default.
- W2752721916 cites W2010221689 @default.
- W2752721916 cites W2013534024 @default.
- W2752721916 cites W2015157293 @default.
- W2752721916 cites W2015191299 @default.
- W2752721916 cites W2015856769 @default.
- W2752721916 cites W2019004031 @default.
- W2752721916 cites W2019094897 @default.
- W2752721916 cites W2019984268 @default.
- W2752721916 cites W2023095602 @default.
- W2752721916 cites W2024995709 @default.
- W2752721916 cites W2025576950 @default.
- W2752721916 cites W2033043132 @default.
- W2752721916 cites W2033120842 @default.
- W2752721916 cites W2037806469 @default.
- W2752721916 cites W2038202304 @default.
- W2752721916 cites W2039324575 @default.
- W2752721916 cites W2042682909 @default.
- W2752721916 cites W2043019703 @default.
- W2752721916 cites W2043935516 @default.
- W2752721916 cites W2046522095 @default.
- W2752721916 cites W2046895984 @default.
- W2752721916 cites W2048250099 @default.
- W2752721916 cites W2048354149 @default.
- W2752721916 cites W2049438517 @default.
- W2752721916 cites W2050790286 @default.
- W2752721916 cites W2050827072 @default.
- W2752721916 cites W2052159730 @default.
- W2752721916 cites W2052547189 @default.
- W2752721916 cites W2058827940 @default.
- W2752721916 cites W2059648052 @default.
- W2752721916 cites W2068525336 @default.
- W2752721916 cites W2069356471 @default.
- W2752721916 cites W2076576640 @default.
- W2752721916 cites W2078946254 @default.
- W2752721916 cites W2079856251 @default.
- W2752721916 cites W2080337873 @default.
- W2752721916 cites W2082076578 @default.
- W2752721916 cites W2084012894 @default.
- W2752721916 cites W2087399354 @default.
- W2752721916 cites W2088106047 @default.
- W2752721916 cites W2092442436 @default.
- W2752721916 cites W2093249850 @default.
- W2752721916 cites W2093594591 @default.
- W2752721916 cites W2098899603 @default.
- W2752721916 cites W2100987623 @default.
- W2752721916 cites W2138724264 @default.
- W2752721916 cites W2152957017 @default.
- W2752721916 cites W2551693122 @default.
- W2752721916 cites W2625689411 @default.
- W2752721916 cites W4242172993 @default.
- W2752721916 cites W4244779588 @default.
- W2752721916 cites W641289383 @default.
- W2752721916 doi "https://doi.org/10.1007/s40544-017-0186-2" @default.
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