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Plastic deformation mechanisms of NiTiFe shape memory alloy subjected to equal channel angular extrusion

机译:Nitife形状记忆合金的塑性变形机制对等沟道角挤压的影响

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Based on equal channel angular extrusion (ECAE), NiTiFe shape memory alloy (SMA) was subjected to severe plastic deformation in order to obtain the refined microstructures. Finite element method (FEM), electron backscattered diffraction (EBSD) analysis and transmission electron microscopy (TEM) were used to investigate plastic deformation mechanisms of NiTiFe SMA subjected to ECAE. According to finite element simulation, equivalent stress and equivalent strain fields were obtained during ECAE of NiTiFe SMA, where larger shear stress at channel corner contributes to the refinement of the microstructures. Based on EBSD experiment and TEM observation, the grain refinement and even nanocrystlline grains were found in the NiTiFe SMA subjected to ECAE, and the mechanisms of grain refinement was revealed. It can be concluded that dislocation slip plays a significant role in plastic deformation of NiTiFe SMA subjected to ECAE. The sizes of the refined grains are related to the density of dislocations, so the refined grains possess various sizes due to the inhomogeneity of plastic deformation. The nanocrystalline grains are induced in the region with extremely high dislocation density.
机译:基于等沟道角挤出(ECAE),对NitiGe形状记忆合金(SMA)进行严重的塑性变形,以获得精制的微结构。有限元方法(FEM),电子背散射衍射(EBSD)分析和透射电子显微镜(TEM)研究了NitiGe SMA对ECAE的塑性变形机制。根据有限元模拟,在NitiGe SMA的ECAE期间获得了等效应力和等效应变场,其中通道角处的较大剪切应力有助于细胞的细化。基于EBSD实验和TEM观察,在经过ECAE的NitiGe SMA中发现了晶粒细化甚至纳米晶体晶粒,并揭示了晶粒细化的机制。可以得出结论,位错滑移在患有ECAE的NitiGe SMA的塑性变形中起着重要作用。精制晶粒的尺寸与脱位密度有关,因此由于塑性变形的不均匀性,精制晶粒具有各种尺寸。纳米晶粒在具有极高位错密度的区域中诱导。

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