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Ni47Mn32Ga21多晶合金的磁熵变和磁感生应变

蔡培阳 冯尚申 陈卫平 薛双喜 李志刚 周英 王海波 王古平

物理学报2011,Vol.60Issue(10):623-628,6.
物理学报2011,Vol.60Issue(10):623-628,6.

Ni47Mn32Ga21多晶合金的磁熵变和磁感生应变

Magnetic entropy change and magnetic-field-induced strain in polycrystalline Ni47Mn32Ga21 alloy

蔡培阳 1冯尚申 1陈卫平 1薛双喜 1李志刚 1周英 1王海波 1王古平1

作者信息

  • 1. 台州学院物理与电子工程学院,台州318000
  • 折叠

摘要

Abstract

The Ni47Mn32Ga21 polycrystalline alloy is prepared by the directional solidification technique.The components and the microstructure of the alloy are investigated using SEM,metallography and EDS methods.The magnetic entropy change in the process of the structural and magnetic phase transition,and magnetic-field-induced strains with pressure are also studied through analyzing the magnetization as a function of temperature,and the isotherm magnetization and magnetic field-induced strain curves.The results show that there is little difference between the component and the designed component.The alloy is comprised mainly of martensitic phase at room temperature.In the heating process,the magnetic entropy change reaches a maximum value and has a larger peak half width near Curie temperature(365 K).The maximum value of the magnetic entropy change is-1.45 J/kg·K in a magnetic field of 747 kA/m and its peak half width is 21 K.The Ni47Mn32Ga21 alloy exhibits excellent free recoverability of the magnetic-field-induced strains at room temperature(298 K).The magnetic-field-induced strain reaches a saturated value of-670×10-6 without extra stress in a field of 480 kA/m.When the compressive stressis parallel to the direction of the magnetic field,the magnetic-field-induced strain increases evidently with the increase of the pressure,which reaches-1300×10-6 under a pressure of 27.3 MPa.Meanwhile the strain does not reach the saturated value.

关键词

Ni-Mn-Ga/铁磁形状记忆合金/磁熵变/磁感生应变

Key words

Ni-Mn-Ga/ferromagnetic shape memory alloy/magnetic entropy change/magnetic-field-induced strain

分类

数理科学

引用本文复制引用

蔡培阳,冯尚申,陈卫平,薛双喜,李志刚,周英,王海波,王古平..Ni47Mn32Ga21多晶合金的磁熵变和磁感生应变[J].物理学报,2011,60(10):623-628,6.

基金项目

国家自然科学基金 ()

浙江省科技厅重点项目 ()

浙江省自然科学基金(批准号:Y4100618)资助的课题 ()

物理学报

OA北大核心CSCDCSTPCD

1000-3290

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