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首页> 外文期刊>Journal of intelligent material systems and structures >Model based design of antagonistic shape memory alloy spring devices
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Model based design of antagonistic shape memory alloy spring devices

机译:对抗性形状记忆合金弹簧装置的基于模型的设计

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摘要

Shape memory alloy actuated devices employing a network of antagonistic components can reach an equilibrium of the internal forces by multiple sets of individual force magnitudes. In networks of star topologies particularly, the actuators are placed radially with one end connected at a common node. The ability to produce multiple sets of force equilibria suggests then that similar motions of the common node correspond to different thermomechanical paths. Two factors linked to this behavior are examined in this work, namely the initial design of the antagonistic system and the operational profile used during actuation. A shape memory alloy model is initially constructed based on an elementary hysteresis operator to produce a direct representation of the shape memory alloy behavior in the force-deformation plane. This description enables the identification of the operating point for the actuator by the geometric relationship of these models. In the second part, the placement of the antagonists is guided by the model based on specifications on the range of the workspace and the internal forces. The antagonistic operation is finally compared, in terms of time, work produced, and energy consumption, for a bang-bang (minimum time controller for the actuator) and a bang-off-bang (minimum internal forces for the system) actuation scheme.
机译:采用对抗性部件网络的形状记忆合金致动装置可以通过多组单独的力大小达到内力的平衡。特别是在星形拓扑结构的网络中,执行器径向放置,一端连接在一个公共节点上。产生多组力平衡的能力表明,公共节点的相似运动对应于不同的热机械路径。在这项工作中检查了与这种行为有关的两个因素,即拮抗系统的初始设计和致动过程中使用的运行状况。最初基于基本磁滞算子构造形状记忆合金模型,以在力变形平面中直接显示形状记忆合金的行为。该描述使得能够通过这些模型的几何关系来识别致动器的工作点。在第二部分中,拮抗剂的放置由模型基于工作空间范围和内力的规范进行指导。最后,在时间,所产生的功和能量消耗方面比较了爆炸式(执行器的最小时间控制器)和爆炸式(系统的最小内力)致动方案的对抗性操作。

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