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Effect of Aging Process on Microstructure and Room Temperature Ductility of TB6 Titanium Alloy

Cui Ye, Fei Zhao, Fang Zhou, Ni Li, Jun Shuai Li

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Abstract

Microstructure and room temperature ductility of the TB6 titanium alloy was investigated by varying the aging temperature and the aging time.The results show that, the alloy’s contraction of area increases while the tensile strength firstly increases and then decreases by raising their aging temperature. In general, the ductility of the samples increases and the strength decreases with the increasing aging time. The optimum mechanical properties are obtained by aging at 650 °C for 2 h.

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Microstructure and room temperature ductility of the TB6 titanium alloy was investigated by varying the aging temperature and the aging time.The results show that, the alloy’s contraction of area increases while the tensile strength firstly increases and then decreases by raising their aging temperature. In general, the ductility of the samples increases and the strength decreases with the increasing aging time. The optimum mechanical properties are obtained by aging at 650 °C for 2 h.

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Available abstract

Microstructure and room temperature ductility of the TB6 titanium alloy was investigated by varying the aging temperature and the aging time.The results show that, the alloy’s contraction of area increases while the tensile strength firstly increases and then decreases by raising their aging temperature. In general, the ductility of the samples increases and the strength decreases with the increasing aging time. The optimum mechanical properties are obtained by aging at 650 °C for 2 h.

Key concepts: Materials science, Microstructure, Alloy, Ductility (Earth science), Ultimate tensile strength, Titanium alloy, Metallurgy, Titanium

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Effect of Aging Process on Microstructure and Room Temperature Ductility of TB6 Titanium Alloy — Research Paper | ScholarLens