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Design and comparison of high strain shape memory alloy actuators

机译:高应变形记忆合金执行器的设计与比较

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A simulator is developed to model and design high strain shape memory alloy (SMA) tension actuators. The simulator may be used predict characteristics of a given actuator, or to design its geometry under specifications such as force, speed, stroke and size. The accuracy of the model is verified experimentally in reference to an existing NiTi shape memory alloy prototype actuator. Having developed some confidence in the model, the performance of the proposed actuation mechanism is compared to other existing technologies. In particular, the force-displacement and speed characteristics of a micro-solenoid electro-magnetic actuator and a muscle-size pneumatic actuator are compared to those of the SMA actuators with same dimensions.
机译:开发了一种模拟器,用于模拟和设计高应变形状记忆合金(SMA)张力执行器。 可以使用模拟器预测给定致动器的特性,或者在诸如力,速度,行程和尺寸的规格下设计其几何形状。 基于现有的NITI形状记忆合金原型致动器,通过实验验证模型的准确性。 在该模型开发了一些信心,所提出的致动机制的性能与其他现有技术进行了比较。 特别地,将微螺线管电磁致动器和肌肉尺寸的气动致动器的力位移和速度特性与具有相同尺寸相同的SMA致动器的动力 - 位移和肌肉致动器。

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