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原位 TEM 研究 NiMnIn 合金中多样化马氏体相变行为。

In situ TEM study on diversified martensitic transition behaviour in NiMnIn alloys.

机构信息

State Key Laboratory of Magnetism, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, P. R. China.

出版信息

Nanoscale. 2019 Mar 14;11(11):4999-5004. doi: 10.1039/c8nr10209k.

DOI:10.1039/c8nr10209k
PMID:30839014
Abstract

Ni-Mn-In magnetic shape-memory alloys are attractive materials due to their important functional properties relating to the martensitic transition. Understanding the complex martensitic magnetism and the transition process is of crucial importance not only from a fundamental but also from a technological point of view. Here, we demonstrate the dynamic magnetic domains and microstructures during the martensitic transition in the bulk and melt-spun ribbons of Ni50Mn35In15via in situ Lorentz transmission electron microscopy. The significant evolutionary differences in correlation with the temperature dependence of magnetization are identified between the bulk and ribbons. For a bulk alloy with L21 crystal structure at room temperature, the complete martensite with 7 M modulation in the paramagnetic state and the successive stripe magnetic domains in ferromagnetic martensite develop with a further decrease in the temperature. The stripe domains evolve into biskyrmion-like spin configurations when a perpendicular magnetic field is applied. In contrast, the partial austenitic phase always coexists with the martensitic phase in the ribbons even far below the martensitic transition temperatures and the martensitic phase presents a dominant twinning stack morphology with 5 M modulation and various magnetic domains. During the subsequent reheating-cooling cycles, the thermal hysteresis behavior and the transition reversibility in the bulk and ribbons are represented via the microstructural evolution.

摘要

镍-锰-铟磁性形状记忆合金因其与马氏体相变相关的重要功能特性而备受关注。从基础和技术角度来看,理解复杂的马氏体磁性和相变过程至关重要。在这里,我们通过原位洛伦兹透射电子显微镜研究了块状和熔纺 ribbons 中 Ni50Mn35In15 的马氏体相变过程中的动态磁畴和微观结构。在块状和 ribbons 之间,我们确定了与磁化温度依赖性相关的显著演化差异。对于室温下具有 L21 晶体结构的块状合金,在顺磁状态下具有 7 M 调制的完全马氏体以及铁磁马氏体中的连续条纹磁畴随着温度的进一步降低而发展。当施加垂直磁场时,条纹畴演变成双曲型自旋构型。相比之下,即使在远低于马氏体相变温度下, ribbons 中总是共存部分奥氏体相和马氏体相,并且马氏体相具有占主导地位的孪晶堆积形态和 5 M 调制以及各种磁畴。在随后的加热-冷却循环中,通过微观结构演化来表示块状和 ribbons 中的热滞后行为和相变可逆性。

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引用本文的文献

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Nanomaterials (Basel). 2023 Apr 16;13(8):1385. doi: 10.3390/nano13081385.