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Hydrogenation of TiNi shape memory alloy produced by mechanical alloying

机译:机械合金化制备的TiNi形状记忆合金的加氢

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摘要

TiNi intermetallic compounds, produced by a combination of mechanical alloying and direct current sin?tering, were hydrogenated at several hydrogen pressures at 473 K for 4 h to investigate their hydrogen desorption and martensitic transformation behaviors. The microstructures and the hydrogen desorp-tion properties were dependent on levels of hydrogen concentrations. The crystal lattice of TiNi (B_2) phase expanded and TiNi hydride formed with an increase in hydrogen pressure. Two stage martensitic and reverse transformations were observed at low hydrogen concentration. An enthalpy of martensitic transformation was lower than that of reverse transformation. TiNi (martensite) phase was confirmed at intermediate hydrogen concentration, suggesting that hydrogen-induced martensitic transformation occurred during hydrogenation. No martensitic and reverse transformations occurred at high hydrogen concentration because of the hydride formation.
机译:通过机械合金化和直流电流滤波的组合生产的TiNi金属间化合物在473 K的几个氢气压力下氢化4 h,以研究其氢解吸和马氏体转变行为。微观结构和氢解吸性能取决于氢浓度水平。随着氢气压力的升高,TiNi(B_2)相的晶格膨胀,形成氢化钛镍氢。在低氢浓度下观察到两阶段马氏体和反向相变。马氏体转变的焓低于反向转变的焓。在中等氢浓度下证实了TiNi(马氏体)相,表明在氢化过程中发生了氢诱导的马氏体转变。由于氢化物的形成,在高氢浓度下没有发生马氏体和逆相变。

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