首页> 外文会议>International Conference on Ultrafine Grained and Nano-structured Materials >Investigating on the reverse transformation of martensite to austenite and Pseudoelastic behavior in Ultrafine-Grained Fe-10Ni-7Mn (wt ) Steel processed by heavy cold rolling
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Investigating on the reverse transformation of martensite to austenite and Pseudoelastic behavior in Ultrafine-Grained Fe-10Ni-7Mn (wt ) Steel processed by heavy cold rolling

机译:用重冷轧加工超细粒化Fe-10Ni-7Mn(WT%)钢中马氏体对奥氏体和假源性行为的逆转变化

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Fe-10Ni-7Mn (wt. %) steel is a member of ultrahigh strength steels which shows good ductility in the solution annealed condition and excellent age hardenability. In the current research, this alloy was subjected to heavy cold rolling in which the reverse transformation of martensitic to austenite was brought about. From the XRD, DSC and dilatometric analyses, it is resulted that after 60 % cold rolling the austenite phase may be formed by displacive mechanism. Stability of austenite at room temperature is referred to the ultrafine/nano grain size of austenite after deformation which prevents the austenite to martensite transformation. The presence of ultrafine/nano austenite formed by displacive mechanism leads to the observation of new mechanical properties during cyclic tensile test. This behavior is known as pseudoelastic phenomenon. In this behavior, during loading-unloading tensile cycle, the shape of the specimen return to its original configuration with a hysteresis loop in its path to the zero strain point.
机译:Fe-10Ni-7Mn(重量%)钢是超高强度钢的成员,其溶液退火条件和优异的年龄淬透性显示出良好的延展性。在目前的研究中,这种合金受到了重冷轧,其中延伸了马氏体对奥氏体的逆转变换。从XRD,DSC和膨胀测定分析中,导致在60%冷轧后,可以通过位移机制形成奥氏体相。在室温下奥氏体稳定性被称为奥氏体后奥氏体的超细/纳米粒径,以防止奥氏体转化。通过移位机构形成的超细/纳米奥氏体的存在导致在环状拉伸试验期间观察新的机械性能。这种行为被称为伪弹性现象。在这种行为中,在加载卸载拉伸周期期间,样本的形状返回其原始配置,其在其路径中的滞后环路到零应变点。

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