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- W2740963492 abstract "High chromium white irons have excellent abrasion resistance due to the presence of hard eutectic M7C3 (M = Fe, Cr) carbides in a ferrous matrix. However, the appearance of large and coarse M7C3 carbides is detrimental to the performance of high chromium white irons. To modify the microstructure, in situ decomposition of Ti3AlC2 to TiCx which is expected to inhibit the growth of M7C3 in a high chromium white iron has been adopted in the present study. The in situ formed TiCx effectively refined the M7C3 carbide structure. The influences of Ti3AlC2 content, sintering temperature and heating rate on the microstructural evolution of high chromium white iron were investigated. Influencing factors on the size and dispersion of the TiCx grains in the ferrous matrix have been analyzed. A modified microstructure with a fine eutectic M7C3 structure and a homogenous distribution of small round TiCx can be achieved by optimization of temperature and dwell time. X-ray diffraction, differential scanning calorimetry and scanning electron microscopy were used to investigate phase composition, phase transition and microstructure of materials." @default.
- W2740963492 created "2017-08-08" @default.
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- W2740963492 date "2017-12-01" @default.
- W2740963492 modified "2023-10-15" @default.
- W2740963492 title "Effect of in situ formed TiCx grains on the microstructural modification of high chromium white iron" @default.
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- W2740963492 doi "https://doi.org/10.1016/j.jallcom.2017.07.274" @default.
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