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- W2020446064 abstract "By their high specific strength and good cold workability, β titanium alloys have been used for various applications, e.g. parts of airplanes and eyeglass frames. Generally, β titanium alloys contain vanadium and molybdenum as alloying elements. However, the official quotations of vanadium and molybdenum are unstable. Therefore, use of those alloying elements is limited. Chromium and iron are attractive element as β stabilizer due to more stable official quotations than vanadium and molybdenum. Ti-13Cr-1Fe-3Al alloy was developed and some properties of that alloy were reported by present authors. It is very important to investigate the influence of cooling rate on mechanical properties of that alloy because of higher diffusion coefficient of chromium and iron. In this study, effect of cooling rate on tensile properties of Ti-13Cr-1Fe-3Al alloy was investigated by measurement of Vickers hardness, X-ray diffraction, optical and scanning electron microscope observations and tensile tests. The results obtained are as follows. Tensile strength and reduction in area of Ti-13Cr-1Fe-3Al alloy cooled at 0.02 K/s (show furnace cooling) showed about 860 MPa and about 45%, respectively. Reduction in area at 0.02 K/s is slightly lower than that at other cooling rate. It is considered that α precipitation on cooling at 0.02 K/s causes that decrease. Therefore, cooling rate above 0.02 K/s is recommended in Ti-13Cr-1Fe-3Al alloys, though tensile properties at 0.02 K/s is not bad." @default.
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- W2020446064 date "2008-01-01" @default.
- W2020446064 modified "2023-09-25" @default.
- W2020446064 title "Effect of Cooling Rate on Mechanical Properties of Ti-13Cr-1Fe-3Al Alloy" @default.
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- W2020446064 doi "https://doi.org/10.2320/jinstmet.72.983" @default.
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