首页> 外文会议>Conference on Smart Structures and Materials 2002: Active Materials: Behavior and Mechanics, Mar 18-21, 2002, San Diego, USA >Design of ferromagnetic shape memory alloy composites based on TiNi for robust and fast actuators
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Design of ferromagnetic shape memory alloy composites based on TiNi for robust and fast actuators

机译:基于TiNi的铁磁形状记忆合金复合材料的鲁棒快速致动器设计。

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Recently, ferromagnetic shape memory alloys (FSMAs) attracted strong attentions due to their fast actuation with relatively large strain. However, the mechanical properties of popular ferromagnetic shape memory alloys are found to be lower than TiNi alloys. A TiNi has high mechanical performances, large transformation strain and stress capability. On the other hand, the speed of TiNi alloys actuated by changing temperature is usually slow. Thus use of a ferromagnetic material is attractive in utilizing it for induction of magnetic force at high speed. If we combine both merits of TiNi and ferromagnetic material, we can design a new ferromagnetic SMA composite. The actuation modes examined here are plate bending and bar torsion, where the stress and strain across thickness direction change linearly with position. The outer layers that are subject to the larger strain are the superelastic TiNi, which sandwich the inner layer of a ferromagnetic material. The force activated in the ferromagnetic layer from the applied magnetic field causes the phase change in the superelastic TiNi layer, i.e. from austenite to martensite, thus the softening of stiffness of TiNi leads to large displacement.
机译:近年来,铁磁形状记忆合金(FSMAs)由于其具有相对较大应变的快速致动而备受关注。但是,发现流行的铁磁形状记忆合金的机械性能低于TiNi合金。 TiNi具有较高的机械性能,较大的变形应变和应力承受能力。另一方面,温度变化引起的TiNi合金的速度通常很慢。因此,使用铁磁材料在将其用于高速感应磁力方面具有吸引力。如果我们结合使用TiNi和铁磁材料的优点,就可以设计出一种新型的铁磁SMA复合材料。此处检查的驱动方式为板弯曲和杆扭转,其中沿厚度方向的应力和应变随位置线性变化。承受较大应变的外层是超弹性TiNi,其将铁磁材料的内层夹在中间。在铁磁层中由施加的磁场激活的力引起超弹性TiNi层的相变,即从奥氏体到马氏体,因此TiNi刚度的软化导致大位移。

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