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NiTi-NbTi原位复合材料的Lüders带型变形和载荷转移行为
引用本文:姜江,郝世杰,姜大强,郭方敏,任洋,崔立山. NiTi-NbTi原位复合材料的Lüders带型变形和载荷转移行为[J]. 金属学报, 2021, 57(7): 921-927. DOI: 10.11900/0412.1961.2020.00311
作者姓名:姜江  郝世杰  姜大强  郭方敏  任洋  崔立山
作者单位:江西省科学院江西省铜钨新材料重点实验室 南昌330096;中国石油大学(北京)新能源与材料学院 北京102249;X-ray Science Division,Argonne National Laboratory,Argonne,Illinois 60439,USA
摘    要:采用电弧熔炼、锻造和拔丝方法原位合成了一种高Nb含量的NiTi-NbTi记忆合金复合材料.TEM显微分析显示,在材料内部纳米尺度的NbTi和NiTi纤维沿丝材轴向交替分布,NbTi纤维体积分数高达约70%.通过同步辐射高能X射线原位拉伸实验研究了复合材料的变形机制.结果显示,虽然NiTi体积分数仅约30%,但复合材料的...

关 键 词:NiTi-NbTi复合材料  形状记忆合金  Lüders带型变形

Luders-Like Deformation and Stress Transfer Behavior in an In Situ NiTi-NbTi Composite
JIANG Jiang,HAO Shijie,JIANG Daqiang,GUO Fangmin,REN Yang,CUI Lishan. Luders-Like Deformation and Stress Transfer Behavior in an In Situ NiTi-NbTi Composite[J]. Acta Metallurgica Sinica, 2021, 57(7): 921-927. DOI: 10.11900/0412.1961.2020.00311
Authors:JIANG Jiang  HAO Shijie  JIANG Daqiang  GUO Fangmin  REN Yang  CUI Lishan
Affiliation:1.Jiangxi Acad Sci, Jiangxi Key Lab Adv Copper & Tungsten Mat, Nanchang 330096, Jiangxi, Peoples R China;2.China Univ Petr, Coll New Energy & Mat, Beijing 102249, Peoples R China;3.Argonne Natl Lab, Xray Sci Div, Argonne, IL 60439 USA;
Abstract:A previous study proposed a novel Nb nanowire-reinforced NiTi shape memory alloy composite possessing high yield strength (> 1.6 GPa), low apparent Young's modulus (< 30 GPa), and large quasilinear elastic strain (> 6%). This composite occupies a unique spot on the chart of the mechanical properties of conventional bulk metals, ceramics, and polymer materials. It can be used in dental braces, cardiac pacemakers, implantable devices, and flexible medical instruments. Furthermore, this study suggested that when the NiTi shape memory alloy was adopted as a matrix, the stress-induced martensitic transformation of NiTi would help the embedded nanowire reinforcement to exhibit inherent high strength. Ultralarge elastic strain (4%-7%) of Nb nanowires has been observed in these NiTi-Nb composites. Tailoring superior structural-functional properties by combining a shape memory alloy with other nanoreinforcements have recently gained research attention in materials science research focus. However, in most previous works, the volume fractions of the embedded Nb nanowires were not > 25%. It is reasonable to assume that an increase in the volume fraction of Nb nanowire would further improve the strength of the composite, and make the mechanical performance of the bulk composite much closer to that of a single nano reinforcement. As a result, a study on the high volume fraction of an Nb nanowire-reinforced NiTi shape memory alloy composite is crucial. Herein, an in situ NiTi-NbTi shape memory alloy composite with a high Nb volume fraction was prepared through arc melting, forging, and wire drawing. The microscopic analysis showed that NbTi and NiTi nanofibers were alternatively distributed in the composite along the wire axial direction. In situ synchrotron X-ray diffraction measurements were carried out to study the deformation mechanism of the composite. Results revealed that although the volume fraction of NiTi was only about 30%, the deformation of the composite was mainly controlled by the martensitic transformation of NiTi. The prepared composite showed a homogenous deformation and homogenous martensitic phase transformation before the yielding. It then exhibited LUders-like deformation that originated from the Luders-like stress-induced martensitic phase transformation in the region of yielding. Stress transfer was observed in the Luders band front from the transforming B2-NiTi phase to the NbTi phase and simutaneously to the previously existing B19'-NiTi martensite phase generated during the homogenous martensitic phase transformation process.
Keywords:shape memory alloy  NiTi-NbTi composite  Luders-like deformation
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