期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
无取向电工钢片旋转磁致伸缩的动态测量与分析(英文) 被引量:5
1
作者 王园弟 张艳丽 +2 位作者 张殿海 任自艳 谢德馨 《电工技术学报》 EI CSCD 北大核心 2018年第12期2735-2741,共7页
无取向电工钢片旋转磁致伸缩的准确测量对减小电机铁心的振动研究具有重要意义。本文利用二维磁特性装置和玫花型电阻应变计开发了一台用于研究电工钢片旋转磁致伸缩特性的实验测试系统。讨论了应变计在样片尺寸及其粘贴位置的变化对测... 无取向电工钢片旋转磁致伸缩的准确测量对减小电机铁心的振动研究具有重要意义。本文利用二维磁特性装置和玫花型电阻应变计开发了一台用于研究电工钢片旋转磁致伸缩特性的实验测试系统。讨论了应变计在样片尺寸及其粘贴位置的变化对测量结果的影响,分析了一个磁化周期内旋转磁致伸缩的动态特性,仿真计算了一台同步发电机铁心的磁致伸缩变形。研究表明,电工钢片旋转磁致伸缩特性大于交变磁化引起的磁致伸缩,而旋转磁化轨迹决定了旋转磁致伸缩的特性。 展开更多
关键词 旋转磁致伸缩 电工钢 动态测量 应变计
在线阅读 下载PDF
旋转磁化下电工钢片的磁致伸缩特性 被引量:3
2
作者 龚园 张艳丽 +4 位作者 李强 杨树平 张殿海 任自艳 谢德馨 《中国电机工程学报》 EI CSCD 北大核心 2017年第16期4826-4833,共8页
电工钢片的磁致伸缩效应会使大容量电机定子铁心发生形变加剧电机振动噪声。近年来,随着实验测试技术的不断发展,国外已开展电工钢片磁致伸缩的测量与特性研究工作,国内还处于起步阶段。为深入研究旋转磁化下电工钢片的磁致伸缩效应,开... 电工钢片的磁致伸缩效应会使大容量电机定子铁心发生形变加剧电机振动噪声。近年来,随着实验测试技术的不断发展,国外已开展电工钢片磁致伸缩的测量与特性研究工作,国内还处于起步阶段。为深入研究旋转磁化下电工钢片的磁致伸缩效应,开发了基于三轴应变测量的单片电工钢片旋转磁致伸缩测量系统,研究了椭圆磁化轨迹在不同轴比、倾斜角及磁通密度下电工钢片磁致伸缩主应变矢量周期变化情况,建立了可供分析电机铁心磁致伸缩效应的数据库文件,并以三维插值曲面的形式描述了旋转磁化与磁致伸缩的关系。研究了一种计算电机定子铁心磁致伸缩效应的数值分析方法,以环形铁心模型为例实验验证了计算方法的有效性。研究表明,电工钢片的旋转磁致伸缩形变大于交变磁致伸缩,且随着磁化轨迹圆形程度的增加而增大。上述实验数据及旋转磁致伸缩特性分析为减小电机铁心的振动噪声研究提供了参考。 展开更多
关键词 致伸缩 主应变 电工钢片 旋转磁致伸缩 三轴应变片
在线阅读 下载PDF
Output Voltage Model and Mechanical-Magnetic Design of Magnetostrictive Vibration Energy Harvester with a Rotating Up-Frequency Structure1
3
作者 Huang Wenmei Xue Tianxiang +2 位作者 Feng Xiaobo Weng Ling Li Mingming 《电工技术学报》 EI CSCD 北大核心 2024年第24期7639-7650,共12页
A vibration energy harvester can harvest vibration energy in the environment and convert it into electrical energy to power the sensors in the Internet of Things.Human walking contains high-quality vibration energy,wh... A vibration energy harvester can harvest vibration energy in the environment and convert it into electrical energy to power the sensors in the Internet of Things.Human walking contains high-quality vibration energy,which serves as the energy source for vibration energy harvesters due to its abundant availability,high energy conversion efficiency,and environmental friendliness.It is difficult to harvest human walking vibration due to its low frequency.Converting the low-frequency vibration of human walking into high-frequency vibration has attracted attention.In previous studies,vibration energy harvesters typically increase frequency by raising excitation frequency or inducing free vibration.When walking frequency changes,the up-frequency method of raising the excitation frequency changes the voltage frequency,resulting in the best load resistance change and reducing the output power.The up-frequency method of inducing free vibration does not increase the external excitation frequency,which has relatively low output power.This paper designs a magnetostrictive vibration energy harvester with a rotating up-frequency structure.It consists of a rotating up-frequency structure,a magnetostrictive structure,coils,and bias magnets.The main body of the rotating up-frequency structure comprises a torsion bar and a flywheel with a dumbbell-shaped hole.The magnetostrictive structure includes four magnetostrictive metal sheets spliced by Galfenol and steel sheets.The torsion bar and flywheel interact to convert low-frequency linear vibration into rotating high-frequency excitation vibration of the flywheel.The flywheel plucks the magnetostrictive metal sheet with a high excitation frequency to generate free vibration.The vibration energy harvester increases the excitation frequency while inducing free vibration,which can effectively improve the output power.To characterize the excitation vibration and free vibration,based on the theory of Euler-Bernoulli beam theory,the vibration equation of the magnetostrictive metal sheet after being excited is given.According to the classical machine-magnetic coupling model and the Jiles-Atherton physical model,the relationship between stress and magnetization strength is derived.Combined with Faraday's law of electromagnetic induction,the distributed dynamic output voltage model is established.This model can predict the output voltage at different excitation frequencies.Based on this model,the mechanical-magnetic structural parameter optimization design is carried out.The parameters of the magnetostrictive metal sheet,the bias magnet,and the rotating up-frequency structure are determined.A comprehensive experimental system is established to test the device.The peak-to-peak voltage and output voltage signal by the proposed model are compared.The average relative deviation of the peak-to-peak voltage and the output voltage signal is 4.9%and 8.2%,respectively.The experimental results show that the output power is proportional to the excitation frequency.The optimum load resistance is always 800Ωas the excitation frequency changes,simplifying the impedance-matching process.The maximum peak-to-peak voltage of the device is 58.60 V,the maximum root mean square(RMS)voltage is 9.53 V,and the maximum RMS power is 56.20 mW.The magnetostrictive vibration energy harvester with a rotating up-frequency structure solves the problem of impedance matching,which improves the output power.The proposed distributed dynamic output voltage model can effectively predict the output characteristics.This study can provide structural and theoretical guidance for up-frequency structure vibration energy harvesters for human walking vibration. 展开更多
关键词 Vibration energy harvester MAGNETOSTRICTIVE rotating up-frequency dynamic model free vibration
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部