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- W3209765732 abstract "The effect of TiB2 and TiN contents on the phase formations and their mechanical properties in the binary systems of Ti–TiB2 and Ti–TiN, and in the ternary system of Ti–TiB2–TiN was investigated. In the binary systems, TiB2 and TiN addition improved the hardness of Ti but reduced its bending strength. In the ternary system of Ti–TiB2–TiN, the addition of TiB2–TiN mixture to Ti further improved the hardness to around Hv = 10.0 GPa compared to 7.0 GPa in the binary systems, but it did not improve the bending strength. The increase of hardness in the binary system of Ti–TiB2 was mainly attributed to the formation of TiB (or non-stoichiometric solid solution of TiB1−x) and to remaining TiB2 in samples with high TiB2 contents. The reduction of bending strength, however, was attributed to the disappearance of metallic Ti, to the formation of TiB1−x, and to porous structure in samples with high TiB2 contents. The increase of hardness in the binary system of Ti–TiN was attributed mainly to the formation of non-stoichiometric solid solution of TiN1−x. The reduction of bending strength was attributed to the large crystal growth of flake like structure of TiN1−x. The further improvement of hardness in the ternary system of 80Ti–20(TiB2–TiN) was attributed to the formation of fine crystals of TiB (or TiB1−x) within the flake like structure of N-diffused α(Ti) crystal phase. The reduction of bending strength is mainly attributed to the large growth of flake like structure of N-diffused α(Ti) crystal phase." @default.
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- W3209765732 date "2021-11-01" @default.
- W3209765732 modified "2023-09-26" @default.
- W3209765732 title "Investigation of phase formations and mechanical properties in the binary systems of Ti–TiB<sub>2</sub>, Ti–TiN and ternary system of Ti–TiB<sub>2</sub>–TiN" @default.
- W3209765732 doi "https://doi.org/10.2109/jcersj2.21067" @default.
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