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It was observed that the formation of transferred material layers on 319Al was the governing mechanism for the low COF.
The formation of transferred layer and graphitization of the films during sliding resulted in the decrease of friction coefficients at early stages of sliding.
The self-lubricating effects of metal matrix self-lubricating composites are based on migrating solid lubricant from matrix to worn surface, which results in the formation of transferred film mainly containing solid lubricant.
Since water hindered the formation of transferred films, and might penetrate and corrode the filler matrix interface, the anti-wear ability of the phenolic composite coating reinforced with MoS2 or graphite deteriorated under water lubrication.
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It was attributed to occurrence of graphitisation and formation of transfer layer on alumina ball.
We found two key factors for the rapid formation of transfer film.
On the one hand, it induces the formation of transfer film to decrease the friction coefficient of annealed PDC.
The wear mechanism was discussed in terms of the rearrangement of wear track and formation of transfer film.
The results are discussed in terms of the influence of the roughness, the roughness orientation and the formation of transfer layers on the wear behaviour.
However, the formation of transfer layer was suppressed as the sliding speed increased above a critical sliding speed, and no transfer layer was able to form.
No evidence was seen of coating graphitization, the formation of transfer films from the coatings, or the presence of chemical protective films originating from the gasolines.
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CEO of Professional Science Editing for Scientists @ prosciediting.com