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Experimental Studies on Dynamic Vibration Absorber using Shape Memory Alloy (NiTi) Springs

机译:使用形状记忆合金(NITI)弹簧动态振动吸收器的实验研究

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Shape memory alloy (SMA) springs have been used as actuators in many applications although their use in the vibration control area is very recent. Since shape memory alloys differ from conventional alloy materials in many ways, the traditional design approach for springs is not completely suitable for designing SMA springs. Some vibration control concepts utilizing unique characteristics of SMA’s will be presented in this paper. A dynamic vibration absorber (DVA) using shape memory alloy (SMA) actuator is developed for attenuation of vibration in a cantilever beam. The design procedure of the DVA is presented. The system consists of a cantilever beam which is considered to generate the real‐time vibration using shaker. A SMA spring is used with a mass attached to its end. The stiffness of the SMA spring is dynamically varied in such a way to attenuate the vibration. Both simulation and experimentation are carried out using PID controller. The experiments were carried out by interfacing the experimental setup with a computer using LabVIEW software, Data acquisition and control are implemented using a PCI data acquisition card. Standard PID controllers have been used to control the vibration of the beam. Experimental results are used to demonstrate the effectiveness of the controllers designed and the usefulness of the proposed test platform by exciting the structure at resonance. In experimental setup, an accelerometer is used to measure the vibration which is fed to computer and correspondingly the SMA spring is actuated to change its stiffness to control the vibration. The results obtained illustrate that the developed DVA using SMA actuator is very effective in reducing structural response and have great potential to be an active vibration control medium.
机译:虽然它们在振动控制区域中的使用非常近,形状记忆合金(SMA)弹簧已被用作许多应用中的执行器。由于形状记忆合金在许多方面与传统的合金材料不同,因此弹簧的传统设计方法并不完全适合设计SMA弹簧。本文将介绍利用SMA独特特征的一些振动控制概念。使用形状记忆合金(SMA)致动器的动态减振器(DVA)用于衰减悬臂梁中的振动。提出了DVA的设计过程。该系统由悬臂梁组成,被认为使用振动器产生实时振动。 SMA弹簧用于其端部的质量。 SMA弹簧的刚度以这样的方式动态变化以减弱振动。使用PID控制器进行仿真和实验。通过使用LabVIEW软件与计算机接口实验设置进行实验,使用PCI数据采集卡实现数据采集和控制。标准PID控制器已用于控制光束的振动。实验结果用于展示控制器设计的有效性和所提出的测试平台的有用性通过激动共振的结构。在实验设置中,加速度计用于测量馈送到计算机的振动,并且相应地致动SMA弹簧以改变其刚度以控制振动。所得到的结果说明了使用SMA致动器的开发的DVA在降低结构响应方面非常有效,并且具有很大的电位是有源振动控制介质。

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