【24h】

Electromagnetic force analysis of a driving coil

机译:驱动线圈的电磁力分析

获取原文
获取原文并翻译 | 示例

摘要

Electromagnetic force (EMF) analysis and configuration design of a driving coil is quite important for a coil launcher. Lots of efforts have been focused on armature and control system to improve efficiency or interior ballistic characteristic. By contrast, EMF performance of a driving coil is rarely researched. The paper is intended to provide guidance for the construction and test of a driving coil. The article analyzes the EMF properties of a coil from three respects. First, EMF performances of the whole coil and its detailed construction are analyzed through three different moveable single stage coil launchers, including a whole coil and two 2-layer coaxial ring coils. Simulation results show that the whole coil with strand model is satisfied to analyze the electromagnetic performance instead of the detailed litz winding coil. In the 2-layer coaxial ring coil, EMF performances of rings are quite different from each other. Generally speaking, radial EMF concentrates to the right flank section of the whole coil, while axial EMF concentrates to the underside section of the whole coil. Radial EMF is much bigger than axial EMF. It is best to pay more attention to radial EMF which is quite useful for coil encapsulation. Then, litz coil and ribbon coil are compared by the current filament method. In terms of launch efficiency, EMF and fever, litz wire is more suitable to manufacture a driving coil than ribbon wire, although the whole progress of manufacture is a bit complicated. At last, five different models are compared to select a test model for practical situation. A static model whose armature and coil center coincide (SM2) is verified to be a simple but reasonable test model. A detailed numerical validation is presented in this paper.
机译:对于线圈发射器,驱动线圈的电磁力(EMF)分析和配置设计非常重要。为了提高效率或内部弹道特性,许多工作都集中在电枢和控制系统上。相比之下,很少研究驱动线圈的EMF性能。本文旨在为驱动线圈的构造和测试提供指导。本文从三个方面分析了线圈的电动势特性。首先,通过三个不同的可移动单级线圈发射器,分析了整个线圈的EMF性能及其详细结构,其中包括一个整体线圈和两个2层同轴环形线圈。仿真结果表明,与详细的利兹绕组线圈相比,具有绞线模型的整个线圈能够满足分析电磁性能的要求。在2层同轴环形线圈中,环的EMF性能互不相同。一般而言,径向EMF集中在整个线圈的右侧面,而轴向EMF集中在整个线圈的下侧面。径向电动势比轴向电动势大得多。最好更加注意径向电动势,它对于线圈封装非常有用。然后,通过电流灯丝法比较绞合线圈和带状线圈。在发射效率,EMF和发烧方面,利兹线比带状线更适合于制造驱动线圈,尽管整个制造过程有些复杂。最后,比较了五个不同的模型以选择适合实际情况的测试模型。验证了其电枢和线圈中心重合的静态模型(SM2)是简单但合理的测试模型。本文提供了详细的数值验证。

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