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Development of transformation bands in TiNi SMA for various stress and strain rates studied by a fast and sensitive infrared camera

机译:通过快速灵敏的红外热像仪研究了TiNi SMA在各种应力​​和应变率下的转变带

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TiNi shape memory alloy (SMA) was subjected to tension at various strain rates for stress- and strain-controlled tests. The nucleation, development and saturation of the stress-induced martensitic transformation were investigated, based on the specimen temperature changes, measured by a fast and sensitive infrared camera. It was found that the initial, macroscopically homogeneous phase transformation occurs at the same stress level for all strain rates applied, regardless of the loading manner, while the stress of the localized transformation increases with the strain rate. At higher strain rate, a more dynamic course of the transformation process was observed, revealed in the creation of numerous fine transformation bands. An inflection point was noticed on the stress-strain curve, dividing the transformation range into two stages: the first heterogeneous, where transformation bands nucleate and evolve throughout the sample; the second, where the bands overlap, related to significant temperature increase and an upswing region of the curve. In the final part of the SMA loading a decrease of the average sample temperature revealed the saturation stage of the transformation. It was also observed that nucleation of the localized martensitic forward transformation takes place in the weakest area of the sample in both approaches, whereas the reverse transformation always initiates in its central part.
机译:TiNi形状记忆合金(SMA)在各种应变速率下承受拉力,以进行应力和应变控制测试。根据样品温度的变化,用快速灵敏的红外热像仪测量,研究了应力诱发的马氏体相变的形核,发展和饱和。已发现,对于所有施加的应变速率,无论载荷方式如何,初始的宏观均匀相变都在相同的应力水平下发生,而局部变形的应力随应变速率而增加。在较高的应变速率下,观察到了更动态的转变过程,这在创建许多精细的转变带中得到了揭示。在应力-应变曲线上发现了一个拐点,将转变范围分为两个阶段:第一阶段是非均匀阶段,在该阶段,转变带在整个样品中成核并演化。第二个是条带重叠,与温度的显着升高和曲线的上升区域有关。在SMA负载的最后部分,平均样品温度的下降表明了转变的饱和阶段。还观察到,在两种方法中,局部马氏体正向转变的成核都发生在样品的最薄弱区域,而反向转变总是在其中心部分开始。

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