电器与能效管理技术 ›› 2026, Vol. 0 ›› Issue (8): 40-44.doi: 10.16628/j.cnki.2095-8188.2026.08.005

• 研究与分析 • 上一篇    下一篇

绕制系数与漆包线径的定量关系实验研究

肖体锋, 黄振乐, 王东昭, 朱映平, 郑乾俊, 王剑, 刘振翔   

  1. 浙江正泰电器股份有限公司, 浙江 温州 325603
  • 收稿日期:2026-05-22 出版日期:2026-08-30 发布日期:2026-09-16
  • 作者简介:肖体锋(1976—),男,高级工程师,主要从事工控电器产品研发与管理工作。|黄振乐(1989—),男,硕士,工程师,主要从事低压电器设计与研究工作。|王东昭(1992—),男,主要从事工控电器产品研究工作。

Experimental Study on the Quantitative Relationship Between Winding Factor and Enameled Wire Diameter

Xiao Tifeng, Huang Zhenle, Wang Dongzhao, Zhu Yingping, Zheng Qianjun, Wang Jian, Liu Zhenxiang   

  1. Zhejiang Chint Electrics Co., Ltd., Wenzhou 325603, China
  • Received:2026-05-22 Online:2026-08-30 Published:2026-09-16

摘要:

针对电磁线圈设计中绕制系数Kd经验取值偏差大导致绕制厚度与漆包线长度预测不准的工程问题,通过控制工艺参数制备不同线径样本,采用重量法测量并反算Kd,利用回归分析建立了Kd与漆包线公称线径d的定量关系模型,并将该模型应用于直流接触器线圈设计验证。结果表明,构建得到0.265~0.450 mm漆包线的Kd数据集,所建立的经验公式Kd=0.83-0.23d具有高拟合度(R2=0.995)。应用该模型后,绕制厚度与漆包线长度的预测误差由传统方法的±10%以上降至±2%以内,材料成本预估偏差亦从约8%降低至约1%。研究结果表明,该模型显著提升了线圈设计精度与成本控制能力,对实现线圈数字化设计、缩短开发周期具有重要工程价值。

关键词: 绕制系数, 电磁线圈, 定量关系模型, 实验验证, 直流接触器, 结构参数

Abstract:

To address the engineering problem of inaccurate predictions of winding thickness and enameled wire length caused by large empirical deviations in the winding factor Kd during electromagnetic coil design, coil samples with different wire diameters are prepared under controlled process parameters. The weight method is used to measure and inversely calculate Kd values, and a quantitative model between Kd and the nominal diameter d of the enameled wire is established via regression analysis. The model is then applied to the design verification of DC contactor coils. The results show that a Kd dataset for enameled wires with diameters ranging from 0.265 to 0.450 mm is established, and the derived empirical formula Kd=0.83-0.23d exhibits high goodness of fit (R2=0.995). After applying the model, the prediction errors of winding thickness and enameled wire length are reduced from over ±10% (with the traditional method) to within ±2%, and the deviation in material cost estimation is also lowered from approximately 8% to about 1%. It is demonstrated that the proposed model significantly improves coil design accuracy and cost-control capability, which holds important engineering value for realizing digital coil design and shortening the development cycle.

Key words: winding factor, electromagnetic coil, quantitative relationship model, experimental verification, DC contactor, structural parameters

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