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Nanoindentation and ball on disk tribometer were used in order to determine nanohardness, Young modulus and friction behaviours respectively.
This work presents an experimental investigation of the wear and friction behaviours of reinforced thermoplastics in use in electrical contact breakers components.
This work advances the understanding of friction behaviours in metal forming processes and further helps the optimisation of the surface quality of the metal-deformed products.
Effect of temperature on internal friction behaviours is attributed to combined effects of carbon fibres, PyC SiC matrices and interfaces between fibres and PyC, adjoining PyC and SiC layers.
The matrix microstructures and internal friction behaviours of C/(PyC SiC n composites (n = 1, 2 and 4) under different testing conditions of frequency, strain amplitude and temperature were studied.
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The majority of the conventional tribology tests used to measure wear life and frictional performance for conventional sheet metal forming are incapable of monitoring friction behaviour and wear life in-situ.
We also predict ultralow friction behaviour in turbostratic graphitic systems.
Friction behaviour is a critical factor in brake system design and performance.
An experimental device is designed to simulate the friction behaviour at the tool chip interface.
Friction behaviour was interpreted in terms of Stribeck curves (friction coefficient as the function of Hersey parameter (ην/p)).
The ID/IG ratio correlates well with the friction behaviour of the films.
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