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Vibration characteristics of SMA composite beams with different boundary conditions

机译:不同边界条件下SMA复合材料梁的振动特性

摘要

Recently, the development of shape memory alloy (SMA) actuators, in the forms of wire, thin film and stent have been found increasingly in the fields of materials science and smart structures and engineering. The increase in attraction for using these materials is due to their many unique materials, mechanical, thermal and thermal-mechanical properties, which in turn, evolve their subsequent shape memory, pseudo-elasticity and super-elasticity properties. In this paper, a common type of SMA actuator, Nitinol wires, were embedded into advanced composite structures to modulate the structural dynamic responses, in terms of natural frequency and damping ratio by using its shape memory and pseudo-elastic properties. A simple theoretical model is introduced to estimate the natural frequency of the structures before and after actuating the embedded SMA wires. The damping ratios of different SMA composite beams were measured through experimental approaches. The natural frequencies changed slightly at a temperature above the austenite finish temperature of composite beams with embedded non-prestrained SMA wires. However, the increase of the natural frequencies of the beams with embedded prestrained SMA wires were found in both the theoretical prediction and experimental measurements. The damping ratios of SMA composite beams increased with increasing the temperature of the embedded wires with and without being pre-strained. Compressive and local failures of the beams with high wire content are a possible explanation.
机译:近来,在材料科学,智能结构和工程领域中,越来越多地发现以线,薄膜和支架形式的形状记忆合金(SMA)致动器的开发。使用这些材料的吸引力增加归因于其许多独特的材料,机械,热和热机械特性,进而发展了其随后的形状记忆,拟弹性和超弹性特性。在本文中,一种常见类型的SMA执行器镍钛诺线材被嵌入到先进的复合结构中,以利用其形状记忆和拟弹性特性来调节固有频率和阻尼比方面的结构动力响应。引入了一个简单的理论模型来估计在激活嵌入式SMA线之前和之后结构的固有频率。通过实验方法测量了不同SMA复合梁的阻尼比。在高于埋入非预应力SMA线的复合梁的奥氏体终点温度以上的温度下,固有频率会略有变化。然而,在理论预测和实验测量中都发现了嵌有预应力SMA导线的梁的固有频率的增加。在预应力和不预应力的情况下,SMA组合梁的阻尼比随埋线温度的升高而增加。具有高线含量的梁的压缩和局部破坏是一种可能的解释。

著录项

  • 作者

    Lau KT;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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