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首页> 外文期刊>Journal of Materials Engineering and Performance >Simulation-Based Design of a Rotatory SMA Drive
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Simulation-Based Design of a Rotatory SMA Drive

机译:旋转SMA驱动器的基于仿真的设计

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The design and optimization of a rotatory drive powered by shape memory alloy (SMA) actuators is described in this paper. SMA actuators used in technical applications are parameterized by the use of trial-and-error methods, because there is a lack of computer-aided design tools for this active material. A numerical modeling approach was developed to design and optimize the geometry and the load and heating conditions of SMA actuators in a technical system to achieve a good dynamic and a high reliability. The shape memory effect used in most technical systems is the extrinsic two way effect (2WE). This effect can be simulated with the numerical model which was implemented in MATLAB/SIMULINK. The focus of the model is on the activation behavior of the SMA actuator, which defines its rate of heating and cooling. Different load conditions and various actuator geometries and shapes, e.g. wire or spring actuator, are simulated by the calculation of the energetic balance of the whole system. The numerical model can be used to simulate time variant heating currents in order to obtain an optimal system performance. The model was used to design a rotatory SMA-drive system, which is based on the moving concept of a wave drive gear set. In contrast to the conventional system, which is driven by an electric motor, the SMA drive consists of a strain wave gear and SMA wire actuators that are applied circularly to generate a rotatory movement. Special characteristics of this drive system are a high torque density and a high positioning accuracy.
机译:本文介绍了由形状记忆合金(SMA)致动器驱动的旋转驱动器的设计和优化。技术应用中使用的SMA执行器是通过反复试验的方法进行参数化的,因为缺少用于此活性材料的计算机辅助设计工具。开发了一种数值建模方法来设计和优化技术系统中SMA执行器的几何形状以及负载和加热条件,以实现良好的动态性和高可靠性。大多数技术系统中使用的形状记忆效应是非固有的双向效应(2WE)。可以使用在MATLAB / SIMULINK中实现的数值模型来模拟这种效果。该模型的重点是SMA执行器的激活行为,该行为定义了其加热和冷却速率。不同的负载条件和不同的执行器几何形状和形状,例如通过计算整个系统的能量平衡来模拟线或弹簧致动器。数值模型可用于模拟时变加热电流,以获得最佳的系统性能。该模型用于设计旋转SMA驱动系统,该系统基于波动驱动齿轮组的运动概念。与由电动机驱动的常规系统相比,SMA驱动器由应变波齿轮和SMA线致动器组成,它们被圆形地施加以产生旋转运动。该驱动系统的特殊特性是高扭矩密度和高定位精度。

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