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Ni50Mn27Ga23快淬薄带的马氏体相变和磁感生应变
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TG139.6

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国家863计划新材料领域课题(2001AA327022);致谢:在本课题的研究过程中,得到了中科院物理所吴光恒老师的帮助,在此表示感谢.


Martensitic Transformation and Magnetic-Field-Induced Strains in Ni50Mn27Ga23 Melt-Spun Ribbons
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    摘要:

    采用快淬技术制各了非化学计量成分的Ni50Mn27Ga23多晶薄带,对快淬薄带的马氏体相变和磁感生应变进行了研究。结果表明,快淬薄带侄冷却和加热过程中仍然发牛热弹性马氏体相变及逆相变,具有典型的热弹性形状记忆效应,并且比铸态合金具有更大的应变,但是马氏体相变温度下降。快淬工艺在合金内部引入特定的内应力,使薄带形成织构,是合金获得更大相变应变和磁感卞应变的原因。热处理后,内应力大大降低,导致磁感牛应变降低。

    Abstract:

    The non-stoichiometric Ni50Mn27Ga23 polycrystalline ribbons were prepared by melt-spinning technique. The martensitic transformation and the magnetic-field-induced strain of melt-spun ribbons were investigated. The experimental results show that the ribbons still undergo thermal-elastic martensitic transformation and reverse transformation in cooling and heating process. The melt-spun ribbons exhibit typical thermo-elastic shape memory effect and larger strain than as-cast specimens, but martensitic transformation temperature decreases. The reason which makes melt-spun ribbons have larger martensitic-transformation-strain and magnetic-fieldinduced strain is that the particular internal stress induced by melt-spinning makes a texture form in the melt-spun ribbons. That the internal stress is released strongly by heat treatment results in a decrease of the magnetic-field-induced strain.

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郭世海 张羊换 李健靓 祁焱 全白云 王新林. Ni50Mn27Ga23快淬薄带的马氏体相变和磁感生应变[J].稀有金属材料与工程,2005,34(8):1217~1220.[Guo ShiHai;Zhang YangHuan;Li JianJing;Qi Yan;Quan BaiYun;Wang XinLin. Martensitic Transformation and Magnetic-Field-Induced Strains in Ni50Mn27Ga23 Melt-Spun Ribbons[J]. Rare Metal Materials and Engineering,2005,34(8):1217~1220.]
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  • 收稿日期:2003-12-15
  • 最后修改日期:2004-12-28
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