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高氧TC4鈦合金β相區(qū)變形行為研究
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Hot Deformation Behavior of TC4 Titanium Alloy with Highoxygen in β Phase Region
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    摘要:

    采用Gleeble-3800熱模擬壓縮試驗機研究了高氧TC4鈦合金在溫度為990~1 030 ℃、應變速率為0.01~1.0 s-1、變形量為60%時的變形行為及微觀組織特征,并構建了該合金的本構方程。結果表明,高氧TC4鈦合金在β單相區(qū)變形時隨著應變速率的增加和變形溫度的降低,其流動應力顯著增加,該合金在β相區(qū)的變形激活能為141 kJ/mol。在990~1 030 ℃加熱溫度下,原始β晶粒尺寸在250~255 μm范圍內,晶粒尺寸對溫度不敏感。隨著應變速率的增大,原始β晶粒沿著垂直于壓縮軸方向被拉長,在被拉長的原始β晶界上可觀察到β再結晶晶粒。

    Abstract:

    Isothermal compression of TC4 titanium alloy with high oxygen was carried out on a Gleeble-3800 simulator over the temperature range of 990~1 030 ℃ and strain rate of 0.01~1.0 s-1, with the maximum height reduction of 60%. The hot deformation behavior was characterized based on an analysis of the stress strain behavior and microstructures. Based on the experimental data, a hyperbolic sine constitutive equation was also developed. It was found that the flow stress of the alloy increases with increasing strain rate and decreasing deformation temperature. The activation energy for deformation was 141 kJ/mol in β region. The grain size in the range of 250~255 μm and it is not sensitive to the heating temperature in the range of 990~1 030 ℃. The prior β grains become elongated in the plane perpendicular to the forging direction and dynamic recrystallization grains are observed along the grain boundaries with increasing strain rate.

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.高氧TC4鈦合金β相區(qū)變形行為研究[J].鈦工業(yè)進展,2018,35(5):8-14.

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  • 在線發(fā)布日期: 2018-12-18
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