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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Shape memory effect and magnetostriction in polycrystalline Ni-Mn-Ga thin film microactuators
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Shape memory effect and magnetostriction in polycrystalline Ni-Mn-Ga thin film microactuators

机译:多晶Ni-Mn-Ga薄膜微致动器的形状记忆效应和磁致伸缩

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摘要

Ni-Mn-Ga cantilever and tensile microactuators are investigated with respect to their thermoelastic and magnetomechanical characteristics. The base materials are either single-layer Ni-Mn-Ga thin films or Ni-Mn-Ga/Mo thin film composites with different compositions and thicknesses up to 10 μm, which have been fabricated by magnetron sputtering. Differential scanning calorimetry measurements of the thin films show the characteristic features of ferromagnetic Heusler alloys exhibiting a martensitic transformation and a ferromagnetic transition well above room temperature. A pronounced temperature-induced shape memory effect is observed in deflection measurements of the microactuators. The maximum recoverable strain is about 0.8%. Magnetostriction measurements of cantilever actuators consisting of Ni-Mn-Ga/Mo thin film composites show a large increase of magnetostrain for decreasing Ni-Mn-Ga film thickness in the submicrometer range.
机译:研究了Ni-Mn-Ga悬臂和拉伸微执行器的热弹性和磁机械特性。基材可以是单层的Ni-Mn-Ga薄膜,也可以是具有不同组成且厚度高达10μm的Ni-Mn-Ga / Mo薄膜复合材料,这些材料是通过磁控溅射法制造的。薄膜的差示扫描量热法测量结果表明,铁磁性Heusler合金的特征是在高于室温的温度下表现出马氏体转变和铁磁转变。在微致动器的挠度测量中观察到明显的温度诱导的形状记忆效应。最大可恢复应变约为0.8%。由Ni-Mn-Ga / Mo薄膜复合材料组成的悬臂执行器的磁致伸缩测量结果表明,在亚微米范围内,Ni-Mn-Ga膜厚度减小时,磁致应变大大增加。

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