首页> 外文会议>International Conference on Mechanical, Automotive and Materials Engineering >Electrical-Magnetic-Mechanical Modeling of a Novel Vibration Shaker Based on a Rotary Permanent Magnet
【24h】

Electrical-Magnetic-Mechanical Modeling of a Novel Vibration Shaker Based on a Rotary Permanent Magnet

机译:基于旋转永磁体的新型振动筛的电磁-机械建模

获取原文

摘要

For conventional electromagnetic vibration shakers, a large and steady electromagnetic field is needed to generate the electromagnetic drive force, which leads to the overheating of coils and a large energy consuming. In this paper, a novel electromagnetic shaking mechanism that can be linearized is proposed based on a rotary permanent magnet driven by the electromagnetic field, in which a conjugate equal-diameter cam of a special profile is adopted simultaneously. By applying the novel mechanism, the steady electromagnetic field is no longer necessary and thus the energy consumption can be reduced. Considering of the coupling effects of electricity, magnetism and mechanical dynamics, a hybrid analytical-FEM method, therefore, is introduced to meet the demand for accurate modeling of this complex electrical-magnetic-mechanical system. The method also takes into account of the effect from electromagnetic field inhomogeneity. Finally, a comprehensive nonlinear model is built, and its performance is then verified by giving varied sinusoidal inputs in terms of different amplitudes and frequencies. It indicates that the electric-magnetic-mechanical coupling drive mechanism can be linearized in specific conditions, and the driving behaviors could be predicted and valued, which will be a theoretical guidance for the shaker's optimal design and the experimental investigation in the coming research.
机译:对于常规的电磁振动筛,需要大而稳定的电磁场来产生电磁驱动力,这导致线圈过热并消耗大量能量。基于电磁场驱动的旋转永磁体,提出了一种可以线性化的新型电磁振动机构,其中同时采用了特殊轮廓的共轭等径凸轮。通过应用新颖的机制,不再需要稳定的电磁场,因此可以减少能量消耗。考虑到电,磁和机械动力学的耦合效应,因此,引入了一种混合分析-FEM方法,以满足对该复杂的电磁-机械系统进行精确建模的需求。该方法还考虑了电磁场不均匀性的影响。最后,建立了一个综合的非线性模型,然后通过提供不同幅度和频率的正弦输入来验证其性能。这表明电磁-机械耦合驱动机构可以在特定条件下线性化,并且可以预测和评估驱动行为,这将为振动筛的优化设计和即将进行的实验研究提供理论指导。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号