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Magnetocaloric effect and multifunctional properties of Ni-Mn-based Heusler alloys

机译:Ni-Mn基Heusler合金的磁热效应和多功能性质

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摘要

The studies of magnetocaloric properties, phase transitions, and phenomena related to magnetic heterogeneity in the vicinity of the martensitic transition (MT) in Ni-Mn-In and Ni-Mn-Ga off-stoichiometric Heusler alloys are summarized. The crystal structure, magnetocaloric effect (MCE), and magnetotransport properties were studied for the following alloys: Ni_(50)Mn_(50-x)In_x, Ni_(50-x)Co_xM-n_(35)In_(15), Ni_(50)Mn_(35-x)Co_xIn_(15), Ni_(50)Mn_(35)In_(14)Z (Z=Al, Ge), Ni_(50)Mn_(35)In_(15)Si_x, Ni_(50-x)Co_xMn_(25+y)Ga_(25-y) and Ni_(50-x)Co_xMn_(32-y)FeyGa_(18). It was found that the magnetic entropy change, AS, associated with the inverse MCE in the vicinity of the temperature of the magneto-structural transition, TM, persists in a range of (125-5)J/(kg K) for a magnetic field change △H=5 T. The corresponding temperature varies with composition from 143 to 400 K. The MT in Ni_(50)Mn_(50-x)In_x (x= 13.5) results in a transition between two paramagnetic states. Associated with the paramagnetic austenite-paramagnetic martensite transition AS=24J/(kgK) was detected for △H=5T at 7=350 K. The variation in composition of Ni_2MnGa can drastically change the magnetic state of the martensitic phase below and in the vicinity of TM. The presence of the martensitic phase with magnetic moment much smaller than that in the austenitic phase above TM leads to the large inverse MCE in the Ni_(42)Co_8Mn_(32-y)FeyGa_(18) system. The adiabatic change of temperature (△T_(ad)) in the vicinity of TC and TM of Ni_(50)Mn_(35)In_(15) and Ni_(50)Mn_(35)In_(14)Z (Z=A1, Ge) was found to be △T_(ad)=-2K and 2K for △H=1.8T, respectively. It was observed that |△T_(ad)| ≈ 1 Kfor △H=1 T for both types of transitions. The results on resistivity, magnetoresistance, Hall resistivity in some In-based alloys are discussed.
机译:总结了Ni-Mn-In和Ni-Mn-Ga非化学计量Heusler合金中磁热性质,相变以及与马氏体转变(MT)附近的磁异质性有关的现象的研究。研究了以下合金的晶体结构,磁热效应(MCE)和磁传输性能:Ni_(50)Mn_(50-x)In_x,Ni_(50-x)Co_xM-n_(35)In_(15),Ni_ (50)Mn_(35-x)Co_xIn_(15),Ni_(50)Mn_(35)In_(14)Z(Z = Al,Ge),Ni_(50)Mn_(35)In_(15)Si_x,Ni_ (50-x)Co_xMn_(25 + y)Ga_(25-y)和Ni_(50-x)Co_xMn_(32-y)FeyGa_(18)。已发现,与磁性结构转变温度TM附近的逆MCE相关的磁熵变AS持续存在于(125-5)J /(kg K)的范围内磁场变化△H = 5T。相应的温度在143至400 K之间变化。Ni_(50)Mn_(50-x)In_x(x = 13.5)中的MT导致两个顺磁态之间的转换。在7 = 350 K时,检测到△H = 5T时,与顺磁性奥氏体-顺磁性马氏体转变相关联,AS = 24J /(kgK)。Ni_2MnGa的组成变化可剧烈改变马氏体相上下及其附近的磁态。的TM。磁矩远小于TM的奥氏体相的马氏体相的存在会导致Ni_(42)Co_8Mn_(32-y)FeyGa_(18)体系中的大逆MCE。 Ni_(50)Mn_(35)In_(15)和Ni_(50)Mn_(35)In_(14)Z的TC和TM附近的绝热温度变化(△T_(ad))(Z = A1 ,Ge)被发现对于△H = 1.8T分别为△T_(ad)=-2K和2K。观察到|△T_(ad)|两种过渡类型的△H = 1 T≈1K。讨论了一些In基合金的电阻率,磁阻和霍尔电阻率的结果。

著录项

  • 来源
    《Journal of magnetism and magnetic materials》 |2012年第21期|p.3530-3534|共5页
  • 作者单位

    Department of Physics, Southern Illinois University, Carbondale, IL 62901, USA;

    Department of Physics, Southern Illinois University, Carbondale, IL 62901, USA;

    Department of Physics, Southern Illinois University, Carbondale, IL 62901, USA;

    Faculty of Physics, Moscow State University, Vorob'evy Cory, 119991 Moscow, Russia;

    Faculty of Physics, Moscow State University, Vorob'evy Cory, 119991 Moscow, Russia;

    Department of Physics & Astronomy, Louisiana State University, Baton Rouge, LA 70803, USA;

    Faculty of Physics, Moscow State University, Vorob'evy Cory, 119991 Moscow, Russia IKERBASQUE, The Basque Foundation for Science, 4801J Bilbao, Spain Departamento de Fisica de Materiales, Facultad de Quimica, Universidad del Pais Vasco, Paseo M. de Lardizabal 3, 20018 Donostia - San Sebastian, Spain;

    IKERBASQUE, The Basque Foundation for Science, 4801J Bilbao, Spain Departamento de Fisica de Materiales, Facultad de Quimica, Universidad del Pais Vasco, Paseo M. de Lardizabal 3, 20018 Donostia - San Sebastian, Spain;

    Department of Physics, Southern Illinois University, Carbondale, IL 62901, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    heusler alloy; MCE; hall effect; magnetoresistance; multifunctional material;

    机译:霍斯勒合金MCE;霍尔效应磁阻多功能材料;

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