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Uniaxial Transformation Behavior in Tension and Compression in an Fe-Based Shape Memory Alloy : Transformation Lines and Thermomechanical Hystereses

机译:铁基形状记忆合金在拉伸和压缩中的单轴转变行为:转变线和热机械滞后现象

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摘要

The uniaxial thermomechanical behavior for a polycristalline Fe-9%Cr-5%Ni-14%Mn-6%Si (all wt.%) shape memory alloy is investigated for both tensile and compressive stress states. The martensite start stresses measured upon tension and compression loading of austenite depend linearly on temperature, thus forming straight lines in the stress-temperature regime. The lines belonging to tension and compression are not symmetric with respect to zero stress. The austenite start and finish temperatures measured upon heating under external stress, on samples which had previously been strained by inducing martensite, very linearly with the stress level applied, thus forming the so-called austenite start and finish lines. The temperature difference (retransformation range) between the austenite start and finish lines increases with increasing amount of previously induced strain/martensite, but the slopes of these lines remain the same. At the minimum amount of previously induced strain/martensite the start and finish lines coincide and are called initial austenite lines. The austenite start and finish lines obtained after previous tensile straining extend to the compression side without change of slope, while the austenite lines obtained after previous compression straining extend to the tensile side without change of slope. The determined transformation lines provide a good means to explain the thermomechanical response of the alloy, i.e., the stress-strain-temperature hysteresis loops.
机译:研究了多晶体Fe-9%Cr-5%Ni-14%Mn-6%Si(所有重量%)形状记忆合金的单轴热机械行为,分别针对其拉伸和压缩应力状态。在奥氏体的拉伸和压缩载荷下测得的马氏体起始应力与温度成线性关系,因此在应力-温度范围内形成直线。属于张力和压缩的线相对于零应力不对称。奥氏体起始和结束温度是在外部应力下加热时测得的,该样品先前已通过诱导马氏体应变而与施加的应力水平成线性关系,从而形成了所谓的奥氏体起始和结束线。奥氏体起点线和终点线之间的温度差(重变范围)随先前诱发的应变/马氏体的增加而增加,但这些线的斜率保持不变。在最小量的先前诱发的应变/马氏体,起始线和终点线重合,被称为初始奥氏体线。在先前的拉伸应变之后获得的奥氏体起点和终点线延伸至压缩侧而斜率不变,而在先前的压缩应变之后获得的奥氏体线延伸至拉伸侧而斜率不变。确定的相变线提供了很好的手段来解释合金的热机械响应,即应力-应变-温度磁滞回线。

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