Sigmoid-based Force Modeling and Shape Recovery Characteristics of SMA Spring Actuator

B. B. Sul, K. Dhanalakshmi
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Abstract

The widely used component in most Engineering applications is a spring actuator; proper choice, design and its configuration in a mechanism is very important. The active spring actuator i.e., shape memory alloy (SMA) spring offers better functionality and improved technology. The use of SMA spring allows larger work space, force and controllable stiffness than SMA wires. This paper presents a simple thermo-mechanical model of an SMA helical spring actuator with natural cooling. The thermal behavior is depicted by the classical first order differential equation of heat transfer while the mechanical aspect is represented by a sigmoid function. The model is capable of extracting the attributes of the SMA spring actuator without involving any complexity. An experimental facility is realized; experiments are performed to identify the relevant parameters, determine the fundamental characteristics and validate the model.
基于s形的SMA弹簧执行器受力建模及形状恢复特性研究
在大多数工程应用中广泛使用的元件是弹簧执行器;机构的合理选择、设计和配置是非常重要的。主动弹簧执行器,即形状记忆合金(SMA)弹簧提供了更好的功能和改进的技术。与SMA钢丝相比,SMA弹簧的使用允许更大的工作空间、受力和可控刚度。本文建立了SMA螺旋弹簧作动器自然冷却的简单热-力学模型。热行为用经典的一阶传热微分方程描述,力学方面用s型函数表示。该模型能够在不涉及任何复杂性的情况下提取SMA弹簧执行器的属性。实现了实验装置;通过实验确定了相关参数,确定了基本特性并验证了模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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