首页> 外文期刊>International journal of modeling, simulation and scientific computing >Beam design for voice coil motors used for energy harvesting purpose with low frequency vibrations: A finite element analysis
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Beam design for voice coil motors used for energy harvesting purpose with low frequency vibrations: A finite element analysis

机译:用于能量收集目的,低频振动的音圈电机的横梁设计:有限元分析

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In this study, a numerical approach is established to design a beam coupled to a Voice Coil Motor (VCM) with the aim to maximize the displacement in the inductive transducer. A finite element model is developed to simulate a VCM with different beams applying a harmonic analysis. The VCM is extracted from a recycled hard disk drive (HDD) and a parametric modal analysis is performed to identify the material parameters of the HDD and the beam. These parameters are obtained comparing the real vibration modes and natural frequencies (VCM-beam) with those determined from the finite element model. A numerical-experimental case study is carried out to demonstrate that if a beam is designed for a specific low frequency vibration between 0 and 10 Hz, the displacements are maximized in the VCM. For this purpose, real acceleration measurements taken from three individuals are used to provide the vibration signals in the numerical model. A beam is designed for one of the individuals using the natural frequency values determined from the measured signals. Results show that the displacements are maximized in the model which coincides with the natural frequency of the chosen individual. The main purpose of this research is to establish a design tool for energy harvesting purposes with VCM based on low frequency vibration sources as for example gait motions.
机译:在这项研究中,建立了一种数值方法来设计耦合到音圈电机(VCM)的光束,目的是使感应换能器中的位移最大化。开发了一个有限元模型,以应用谐波分析来模拟具有不同光束的VCM。从回收的硬盘驱动器(HDD)中提取VCM,并执行参数模态分析以识别HDD和梁的材料参数。这些参数是通过将实际振动模式和固有频率(VCM梁)与从有限元模型确定的振动模式和固有频率进行比较而获得的。进行了一个数值实验案例研究,以证明如果为0至10 Hz之间的特定低频振动设计光束,则VCM中的位移将最大化。为此,使用从三个人获得的真实加速度测量值来提供数值模型中的振动信号。使用从测量的信号确定的固有频率值为一个人设计一个波束。结果表明,模型中的位移最大,与所选个体的固有频率一致。这项研究的主要目的是建立基于低频振动源(例如步态运动)的VCM能量收集目的的设计工具。

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