通过Ansys®APDLTM模型模拟NiTi合金动态行为的Matlab®算法

J. Hilário, M. Braz-César, C. Andrade, A. Borges
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引用次数: 1

摘要

近年来,与所谓的智能材料相关的技术进步已被用于解决许多工程领域的问题。在这方面,形状记忆合金(SMA)似乎适用于医疗和工程应用和许多其他方面。这些合金具有在加热后明显塑性变形后恢复原始形状的能力,并且在特定温度下具有随电压变化而变化的能力。这些特性允许开发具有能量耗散的滞回环,它可以用作振动系统中的阻尼元件。在本文中,开发了MATLAB算法来创建与Ansys®APDLTM软件的接口,以模拟SMA的动态行为。该软件能够根据SMA的能量耗散特性获得振动机械系统的周期性行为。结果表明,质量-阻尼器(合金)系统的自由振动呈现出与迟滞回路面积大小相关的能量耗散,直到运动引起的变形不对应于启动材料(直接)相变所需的电压,从而将位移减小到恒定水平。关键词:SMA, ANSYS, APDLTM, Matlab
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Matlab® Algorithm to Simulate the Dynamic Behavior of an NiTi Alloy through Ansys® APDLTM Models
In recent years, technological advances related with the so-called intelligent materials have been exploited for problem solving in many engineering fields. In this regard, shape memory alloys (SMA) seem suitable for medical and engineering applications and many others. These alloys have the ability to return to the original form after an apparently plastic deformation by applying heat and the also ability to perform phase changes with voltage variations under a specific temperature. These properties allow the development of a hysteretic loop with energy dissipation, which can be used as  a damping element in a vibratory system. In this paper, a MATLAB algorithm was developed to create an interface with the Ansys® APDLTM software that simulate the dynamic behavior of a SMA. The software is capable to obtain the cyclical behavior of a vibratory mechanical system based on the energy dissipation properties of the SMA. The results show that the free vibration of a mass-damper (alloy) system presents the energy dissipation related in magnitude with the area of the hysteresis loop until the deformation caused by the motion which does not correspond to a voltage required to initiate the (direct) phase transformation of the material, thus reducing the displacement to a constant level. Keywords: SMA, ANSYS APDLTM, Matlab
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