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Influence of high-temperature hydrogen charging on microstructure and hot deformability of binary TiAl alloys

机译:高温氢气充电对二元菌合金微观结构和热可变形性的影响

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The high-temperature hydrogen charging was carried out to reveal the effect of hydrogen on the microstructure and hot deformability of TiAl alloys. The Ti-44A1 (at.%) alloy and Ti-48A1 alloy were hydrogenated at temperature range from 1373 K to 1693 K under hydrogen pressure of 0.1 MPa, and effects of hydrogen on the hot deformation behavior were tested on Gleeble-1500D at temperature of 1373-1523 K under strain rate of 0.01 s(-1). Results show that hydrogen content increases with increasing of temperature and the volume fraction of alpha(2) phase, and hydrogen absorption reaches to equilibrium within 30 min at high temperature. There is a linear relationship between InCH and 1/T, the heat of solution of hydrogen is calculated as 86.0 kJ/mol and 76.2 kJ/mol respectively, suggesting that hydrogen absorption in TiAl alloys is an endothermic reaction. Hydrogen promotes the formation of gamma phases because hydrogen promotes the transition of L(alpha(2)/gamma) -> gamma and nucleation of gamma phase. The presence of hydrogen promotes the dynamic recrystallization and dislocation movement during hot deformation, resulting in decrease of flow stress. The peak stresses of Ti-44A1 alloy and Ti-48A1 alloy are decreased by 29% and 38% respectively after hydrogenation, which corresponds to the decrease of deformation temperature by about 50 K. (C) 2017 Elsevier B.V. All rights reserved.
机译:进行高温氢气充电,以揭示氢对Tial合金的微观结构和热变形性的影响。在0.1MPa的氢气压力下在1373k至1693k的温度范围内氢化Ti-44a1(attm)合金和Ti-48a1合金,并在温度下测试氢气对热变形行为的影响在0.01秒的应变率(-1)的1373-1523 k。结果表明,随着α(2)相的温度和体积分数,氢含量随着温度的增加而增加,在高温下氢吸收达到30分钟内的平衡。在英寸和1 / t之间存在线性关系,氢气的热量分别计算为86.0kJ / mol和76.2kJ / mol,表明Tial合金中的氢吸收是吸热反应。氢促进γ相的形成,因为氢促进L(α(2)/γ) - >γ和γ相成核的转变。氢的存在促进了热变形期间的动态再结晶和位错运动,导致流量应力降低。氢化后Ti-44a1合金和Ti-48a1合金的峰值应力分别降低29%和38%,这对应于变形温度降低约50k.(c)2017 Elsevier B.V.保留所有权利。

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