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首页> 外文期刊>The journal of physics and chemistry of solids >Thermal strain and magnetization of the ferromagnetic shape memory alloy Ni_(52)Mn_(25)Ga_(23) in a magnetic field
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Thermal strain and magnetization of the ferromagnetic shape memory alloy Ni_(52)Mn_(25)Ga_(23) in a magnetic field

机译:铁磁形状记忆合金Ni_(52)Mn_(25)Ga_(23)在磁场中的热应变和磁化强度

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The objective of this paper is the investigation of the correlations between crystal structure and the magnetization of Ni-Mn-Ga Heusler alloy. Thermal strain, permeability, and magnetization measurements of the ferromagnetic shape memory alloy Ni_(52)Mn_(25)Ga_(23) were performed across the martensite transition temperature T M and reverse martensite transition temperature T_R at atmospheric pressure. When cooling from the austenite phase, thermal strain steeply decreases because of martensite transition. Permeability suddenly increases at the Curie temperature T_C=358 K, indicating ferromagnetism, and suddenly decreases to around T_M=328 K. This indicates that the lattice transformation and magnetic phase transition correspond to each other. The percentage of contraction by martensite transition at T_M and in a magnetic field is twice that in zero fields. Considering with other Ni-Mn-Ga alloys, it is supposed that the magnetic field influences the orientation of the easy c-axis along the magnetic field, and then the variant rearrangement occurs, and consequently, the variation in the strain between zero fields and non-zero field is observed. The measurement results indicate that the regions above and below T_M or T_R are the ferromagnetic-austenite (Ferro-A) and ferromagnetic-martensite (Ferro-M) phases, respectively. Magnetic phase diagrams were constructed from the results of the temperature dependence of thermal strain. T_M and T_R increase gradually with magnetic field. T_M shift in magnetic fields (B) around zero magnetic field was estimated as dT_M/dB=0.46 K/T, indicating that magnetization influences martensite transition and the dT _M/dB value is the same as that of Ni_(52)Mn_(12.5)Fe_(12.5)Ga_(23), thereby suggesting the Ferro-M to Ferro-A transition.
机译:本文的目的是研究Ni-Mn-Ga Heusler合金的晶体结构与磁化强度之间的相关性。在大气压下,在马氏体转变温度TM和反向马氏体转变温度T_R上进行了铁磁形状记忆合金Ni_(52)Mn_(25)Ga_(23)的热应变,磁导率和磁化强度的测量。当从奥氏体相冷却时,由于马氏体转变,热应变急剧降低。磁导率在居里温度T_C = 358 K时突然增加,表明是铁磁性,而在T_M = 328 K附近突然下降。这表明晶格转变和磁相变相互对应。在T_M和磁场中,马氏体转变引起的收缩百分比是零磁场中的两倍。考虑使用其他Ni-Mn-Ga合金,假定磁场会影响易c轴沿磁场的方向,然后发生变异重排,因此,零磁场和零磁场之间的应变会发生变化。观察到非零字段。测量结果表明,T_M或T_R上方和下方的区域分别是铁磁奥氏体(Ferro-A)和铁磁马氏体(Ferro-M)相。根据热应变的温度依赖性结果构建磁相图。 T_M和T_R随磁场逐渐增加。磁场(B)在零磁场附近的T_M位移估计为dT_M / dB = 0.46 K / T,这表明磁化强度影响马氏体转变,并且dT_M / dB值与Ni_(52)Mn_(12.5)相同Fe_(12.5)Ga_(23),从而暗示了Ferro-M向Ferro-A的转变。

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