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Structural Transitions in a Co_2NiGa Ferromagnetic Shape Memory Alloy

机译:Co_2NiGa铁磁形状记忆合金的结构转变

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The development of ferromagnetic shape memory for practical applications needs to overpass brittleness issues, in addition to the control of the magnetoelastic domains. The Co-Ni-Ga system can provide adequate structural particularities to increase the ductility. This paper reports on structural observations of the martensitic transformation in a Co_2NiGa alloy, in the as-cast and in plastically deformed state. Characterization has been performed before and after the heat treatment, using in-situ X-ray diffraction, optical and electron microscopy, as well as DSC measurements performed on heating and cooling of the samples. The observations show a β + γ two-phase structure that can be further influenced by quenching. The structural contribution on the deformation capacity of the alloys is analyzed, based on the changes in the pattern of transformation. Severe plastic deformation by cold rolling leads to the disappearance of the thermoelastic phase transformation.
机译:除了控制磁弹性域外,针对实际应用的铁磁形状记忆的开发还需要克服脆性问题。 Co-Ni-Ga系统可以提供足够的结构特性以增加延展性。本文报道了在铸态和塑性变形状态下Co_2NiGa合金中马氏体相变的结构观察结果。使用原位X射线衍射,光学和电子显微镜以及在加热和冷却样品时进行的DSC测量,在热处理前后进行了表征。观察结果表明,β+γ两相结构可能会进一步受到淬火的影响。根据相变模式的变化,分析了结构对合金变形能力的影响。冷轧引起的严重塑性变形导致热弹性相变的消失。

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