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The coefficient of friction and wear rate of the single TiN coating increased as the temperature increased, while the TiN composite coating exhibited the lowest coefficient of friction and wear rate at 600°C.
The NiW interlayer could provide an effective support for the TiN coating, thus the adhesion strength and hardness of the TiN composite coating increased significantly.
Results indicate that as-fabricated Li4Ti5O12 samples containing N-doped carbon and TiN composite conductive structure exhibit markedly improved electrochemical properties as compared with pristine Li4Ti5O12.
In the temperature range 500 700°C, the TiN composite coating with NiW interlayer revealed high wear resistance as compared with the single TiN coating.
Adhesion strength and high temperature wear behaviour of ion plating TiN composite coating with electric brush plating NiW interlayer deposited on a hot work die steel were investigated using a plate-on-ring test rig.
Cubic boron nitride (cBN titanium nitride (TiN) composite coating combines the thermal stability and super abrasiveness of cubic boron nitride (cBN) and the good lubricity of TiN, offering the opportunity for designing cutting tools with application specific new geometries (flat, chip breaker, and round shape) and cost effectiveness.
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The aim of this work was to study the influence of additives content on the oxidation behaviour, in pure oxygen between 900 and 1400 °C, of two fully dense Si3N4 35 vol.% TiN composites.
Optimum process parameters to achieve the desired EDM efficiency, less tool wear rate, maximum metal removal rate (MRR), circularity while machining Si3N4-TiN composite material can be obtained by utilizing the results derived through this experiment.
In this study, NiCrBSi-TiN composite coatings were obtained by plasma spraying NiCrBSi and Ti powders followed by subsequent induction remelting.
Key findings suggest that induction remelting changed the microstructure of NiCrBSi-TiN composite coatings, by eliminating defects such as pores and micro-cracks and improved inter-lamellar bonding.
Therefore, in the present study, tribology tests were conducted on a number of αı/βı-SiAlON-TiN composites with different αı/βı-SiAlON phase ratio and TiN content, fabricated with unique compositional design.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com