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Structural Change in Ni-Fe-Ga Magnetic Shape Memory Alloys after Severe Plastic Deformation

机译:严重塑性变形后Ni-Fe-Ga磁形记忆合金的结构变化

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摘要

Severe plastic deformation (SPD) is widely considered to be the most efficient process in obtaining ultrafine-grained bulk materials. The aim of this study is to examine the effects of the SPD process on Ni-Fe-Ga ferromagnetic shape memory alloys (FSMA). High-speed high-pressure torsion (HSHPT) was applied in the as-cast state. The exerted key parameters of deformation are described. Microstructural changes, including morphology that were the result of processing, were investigated by optical and scanning electron microscopy. Energy-dispersive X-ray spectroscopy was used to study the two-phase microstructure of the alloys. The influence of deformation on microstructural features, such as martensitic plates, intragranular γ phase precipitates, and grain boundaries’ dependence of the extent of deformation is disclosed by transmission electron microscopy. Moreover, the work brings to light the influence of deformation on the characteristics of martensitic transformation (MT). Vickers hardness measurements were carried out on disks obtained by SPD so as to correlate the hardness with the microstructure. The method represents a feasible alternative to obtain ultrafine-grained bulk Ni-Fe-Ga alloys.
机译:严重的塑性变形(SPD)被广泛认为是获得超细粒堆积材料中最有效的方法。本研究的目的是检查SPD过程对Ni-Fe-Ga铁磁性形状记忆合金(FSMA)的影响。高速高压扭转(HSHPT)在铸造状态下施加。描述了变形的施加关键参数。通过光学和扫描电子显微镜研究了微观结构的变化,包括作为加工结果的形态。能量分散X射线光谱法用于研究合金的两相微观结构。透射电子显微镜公开了通过透射电子显微镜公开了变形对微观结构特征的影响,例如马氏体板,腔内γ相析出物的依赖性。此外,该作品带来了变形对马氏体转化特性的影响(MT)。在通过SPD获得的盘上进行维氏硬度测量,以便将硬度与微观结构相关联。该方法代表了获得超细粒子散装Ni-Fe-Ga合金的可行替代方案。

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