首页> 外文会议>SEM IX International Congress on Experimental Mechanics June 5-8, 2000 Orlando, Florida >Controls of stregth and vibration of smart bridge using shape memory alloy
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Controls of stregth and vibration of smart bridge using shape memory alloy

机译:使用形状记忆合金控制智能桥梁的强度和振动

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摘要

Shape memory alloy(SMA) is regarded as one promising intelligent/smart material element natively with thermo-sensor, shape recovery actuator and other material functions associated with thermoelastic phase transformation. Based on these unique material functions with SMAs, the authors have proposed a "smart bridge" design for active control for strength and vibration by changing the material properties of SMA embedded in the bridge structure by using the model specimen of TiNi/acrylic composite. By using direct electric heating for SMA, next two effects are investigated, i.e., (1) Self-strengthening effect by shape recovery of pre-strained TiNi wires as well as (2) Vibration control by changing the stiffness between lower temperature martensite (soft phase) and higher temperature austenite (hard phase). The deflection and vibration responses are measured by electrical strain gages attached on the bridge floor on which the model train goes through. Suppression effect for deflection as well as vibration control is experimentally confirmed.
机译:形状记忆合金(SMA)本身就是具有热传感器,形状恢复执行器和与热弹性相变相关的其他材料功能的一种有前途的智能/智能材料元素。基于这些具有SMA的独特材料功能,作者提出了一种“智能桥”设计,该方法可通过使用TiNi /丙烯酸复合材料模型样品改变嵌入在桥结构中的SMA的材料特性来主动控制强度和振动。通过对SMA使用直接电加热,研究了以下两个效果,即(1)通过预应变的TiNi线的形状恢复产生的自增强效果以及(2)通过更改较低温度马氏体之间的刚度来控制振动(软相)和高温奥氏体(硬相)。挠度和振动响应是通过安装在模型火车通过的桥底板上的电应变计测量的。实验证实了挠曲的抑制效果以及振动控制。

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