Influence of quasi-continuous ECAP with various channel intersection angles on the structure formation, mechanical and functional properties of Ti-Ni shape memory alloys

R. Karelin, I. Khmelevskaya, V. Komarov, V. Andreev, M. Perkas, V. Yusupov, S. Prokoshkin
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Abstract

Influence of quasi-continuous ECAP with channel intersection angles of 110 and 120° on the structure formation and properties of Ti-50.1 at% Ni shape memory alloy was studied and compared. The structure was studied using X-ray diffraction analyses and transmission electron microscopy. The mechanical properties were determined by the uniaxial tensile and hardness tests. The maximum completely recoverable strain and temperatures of reverse martensitic transformation were estimated by a thermomechanical method using a bending mode for strain inducing. After ECAP with channel intersection angle of 120° for 3 passes at 400 °C a mixed ultrafine-grained structure with high density of free dislocations and incompletely equiaxed structural elements size of about 130-150 nm is formed. In comparison, after ECAP with channel intersection angle of 110° an ultrafine-grained structure with deformation bands elongated in the direction perpendicular to the sample axis, consisting of the less uniform equiaxed and ellipsoid structural elements with the size of about 50-150 nm is obtained. After both studied ECAP regimes samples have relatively high values of hardness (220 HV) and strength characteristics (σy = 850/1000 MPa, σB = 1040/1020 MPa, 120/110°). Maximum completely recoverable strain of 7.1 % is obtained after ECAP with channel intersection angle of 110°, and post-deformation annealing at 400 °C, 1 h.
不同通道交会角准连续ECAP对Ti-Ni形状记忆合金结构形成、力学和功能性能的影响
研究并比较了通道交角为110°和120°的准连续ECAP对Ti-50.1 at% Ni形状记忆合金结构形成和性能的影响。用x射线衍射分析和透射电镜对其结构进行了研究。通过单轴拉伸和硬度试验确定了材料的力学性能。采用弯曲应变诱导的热力学方法,估计了反马氏体相变的最大完全可恢复应变和温度。在400℃条件下,通道交角为120°的ECAP经过3道后,形成了具有高密度自由位错和尺寸约为130 ~ 150 nm的不完全等轴结构元的混合超细晶结构。相比而言,通道交角为110°的ECAP后,得到的变形带在垂直于试样轴线方向上伸长的超细晶结构,由尺寸约为50 ~ 150 nm的不均匀等轴和椭球结构单元组成。经过两种ECAP处理后,样品具有较高的硬度值(220 HV)和强度特征(σy = 850/1000 MPa, σB = 1040/1020 MPa, 120/110°)。通道交角为110°的ECAP,变形后在400℃,1 h下退火,可获得最大的完全恢复应变,为7.1%。
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