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Experimental study on the magnetic characteristics of Magnetic shape memory alloy materials

机译:磁形记忆合金材料磁特性的实验研究

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With shape memory function of new smart material, the magnetic control properties of magnetic shape memory alloy could be used to fabricate intelligent actuators for vibration control of structures. In order to study its magnetic properties, this text selected Ni_(53)Mn_(25)Ga_(22) as the material for the research and development of actuator drive, And two MSMA test specimens were prepared for the experimental study under the coupled action of the temperature, preload pressure and magnetic field. The results showed that the strain of MSMA induced by magnetic field decreased with the increase of the preload pressure at constant magnetic field. The deformation performance was best when the magnetic induction intensity was about 0.5T. And the constitutive relations were fitted for the actuator production to lay the foundation for later.
机译:具有新智能材料的形状记忆功能,磁性形状记忆合金的磁控性能可用于制造智能执行器,用于振动控制结构。为了研究其磁性,本文选择了Ni_(53)Mn_(25)Ga_(22)作为致动器驱动的研究和开发的材料,并在耦合作用下制备两个MSMA测试样品进行实验研究温度,预加载压力和磁场。结果表明,由于恒定磁场下的预载压力的增加,磁场引起的MSMA诱导的应变降低。当磁感应强度约为0.5t时,变形性能最佳。并且本构关系适用于执行器生产以奠定基础。

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