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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Effect of severe plastic deformation by torsion on structure and properties of Ni_(54)Mn_(21)Ga_(25) and Ni_(54)Mn _(20)Fe1Ga_(25)
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Effect of severe plastic deformation by torsion on structure and properties of Ni_(54)Mn_(21)Ga_(25) and Ni_(54)Mn _(20)Fe1Ga_(25)

机译:扭转引起的严重塑性变形对Ni_(54)Mn_(21)Ga_(25)和Ni_(54)Mn_(20)Fe1Ga_(25)的结构和性能的影响

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We report on the effect of severe plastic deformation by torsion under the Bridgman anvil pressure (SPDT) on structure and physical properties of the Ni_(54)Mn_(21)Ga_(25) and Ni_(54)Mn _(20)Fe_1Ga_(25) alloys. Two types of samples were studied: ordered (cast) samples and nanocrystalline samples disordered by SPDT. The thermal expansion, thermo EMF, electro- and magnetoresistivity, Hall effect, and magnetization were measured from 4.2 to 800 K and in magnetic fields of up to 15T. We show that the deviation from the stoichiometric Ni _(50)Mn_(25)Ga_(25) composition shifts the temperatures of the martensitic transition T_M and the magnetic (Curie) transition T_C to room temperature. Large changes in the physical properties near T_M and T_C were discovered. The alloys become amorphous and nanocrystalline after the SPDT treatment. This process is accompanied by the disappearance of the martensitic transformations and of the nanocrystalline modulated substructures and, consequently, by the suppression of the magnetic shape-memory effect. The physical properties of the disordered alloys are also strongly changed. Subsequent annealing at T ≥ 700 K leads to a practically full restoration of the structure and all properties characteristic of the initial cast alloys.
机译:我们报道了布里奇曼砧压力(SPDT)下扭转引起的严重塑性变形对Ni_(54)Mn_(21)Ga_(25)和Ni_(54)Mn _(20)Fe_1Ga_()的结构和物理性能的影响25)合金。研究了两种类型的样品:有序(浇铸)样品和受SPDT干扰的纳米晶体样品。测量的热膨胀,热电动势,电和磁阻,霍尔效应和磁化强度在4.2至800 K的范围内以及在最高15T的磁场中进行测量。我们表明,偏离化学计量的Ni _(50)Mn_(25)Ga_(25)成分会使马氏体转变温度T_M和磁(居里)转变温度T_C转变为室温。发现T_M和T_C附近的物理性质发生了很大变化。经SPDT处理后,合金变为非晶态和纳米晶。该过程伴随着马氏体转变和纳米晶调制子结构的消失,因此,伴随着对磁性形状记忆效应的抑制。无序合金的物理性能也发生了很大变化。随后在T≥700 K进行退火,可以使原始铸造合金的组织和所有性能特性几乎完全恢复。

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