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Martensite transformation bands studied in TiNi shape memory alloy by infrared and acoustic emission techniques

机译:TiNi形状记忆合金中红外和声发射技术研究马氏体相变带

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摘要

TiNi shape memory alloy (SMA) specimens have been subjected to tension carried out at various strain rates. The goal was to investigate a nucleation and development of the stress-induced martensitic transformation by infrared (IR) and acoustic emission (AE) techniques. Therefore, both the infrared radiation and acoustic emission data were recorded using a fast infrared camera and acoustic emission set-up, respectively. It has been shown that the initial, macroscopically homogeneous transformation initiates in the elastic stage of the deformation even before the stress-strain curve knee and formation of the localized transformation bands. It has also been found that the homogeneous transformation occurs at similar stress level for all strain rates applied, while the localized martensitic transformation depends on the strain rate. Nucleation and development of the localized transformation bands, detected by the infrared camera, were confirmed by acoustic emission technique. The differences between the IR and AE activities were recorded during the TiNi SMA loading and unloading process, manifesting different dynamics of the stress-induced martensitic forward and reverse transformation.
机译:TiNi形状记忆合金(SMA)样品已经经受了各种应变速率下的拉伸。目的是研究通过红外(IR)和声发射(AE)技术对应力诱发的马氏体相变的形核和发展。因此,分别使用快速红外摄像机和声发射装置记录了红外辐射和声发射数据。已经表明,宏观上均匀的初始转变在变形的弹性阶段就开始,甚至在应力-应变曲线拐点和局部转变带形成之前。还已经发现,对于所有施加的应变速率,均质相变在相似的应力水平下发生,而局部马氏体相变取决于应变率。通过声发射技术证实了红外相机检测到的局部转变带的形核和发展。在TiNi SMA加载和卸载过程中记录了IR和AE活性之间的差异,表明应力诱发的马氏体正向和反向转变的动力学不同。

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