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Deformation mechanism of NiTi shape memory alloy subjected to severe plastic deformation at low temperature

机译:NiTi形状记忆合金在低温下严重塑性变形的变形机理

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Based on local canning compression, nickel-titanium shape memory alloy (NiTi SMA) with B2 austenite structure at room temperature was subjected to severe plastic deformation (SPD) at -150 ℃ which is much lower than martensite finish temperature (M_f). Transmission electron microscope (TEM) and high resolution transmission electron microscope (HRTEM) were used for investigating microstructural evolution of the NiTi samples subjected to the different deformation degrees. In the process of large plastic deformation, the NiTi sample mainly undergoes martensitic reorientation, dislocation slip, formation of martensite-like plates, occurrence of submicrocrystalline grains, nanocrystallization and amorphization. It can be concluded that SPD is able to lead to nanocrystallization and amorphization of NiTi SMA at low temperature. The formation of the dislocation cells in the deformed NiTi sample plays an important role in nanocrystallization of NiTi SMA. A high density of vacancy and dislocation defects induced in the nanocrystalline grains lay the foundation for amorphization of NiTi SMA. In the case of the smaller plastic strain, the deformed B19' martensite can return to the B2 austenite at room temperature by means of thermal driving force. In the case of larger plastic strain, the survival of the B19' martensite phase at room temperature is attributed to the mechanical stabilization of the martensite phase and the increase of reverse transformation temperature.
机译:基于局部罐头压缩,在室温下具有B2奥氏体结构的镍钛形状记忆合金(NiTi SMA)在-150℃处经受严重的塑性变形(SPD),该变形远低于马氏体完成温度(M_f)。用透射电子显微镜(TEM)和高分辨率透射电子显微镜(HRTEM)研究了不同变形程度的NiTi样品的组织演变。在大的塑性变形过程中,NiTi样品主要经历马氏体重新定向,位错滑移,马氏体样板的形成,亚微晶粒的出现,纳米晶化和非晶化。可以得出结论,SPD能够在低温下导致NiTi SMA的纳米结晶和非晶化。变形的NiTi样品中位错单元的形成在NiTi SMA的纳米结晶中起重要作用。纳米晶粒中产生的高密度空位和位错缺陷为NiTi SMA非晶化奠定了基础。在较小的塑性应变的情况下,变形的B19'马氏体可以通过热驱动力在室温下返回到B2奥氏体。在较大的塑性应变的情况下,室温下B19'马氏体相的存留归因于马氏体相的机械稳定性和反向转变温度的升高。

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