一种一体式的磁架连接结构

By forming a flanged shaft on the conductive plate and directly limiting it with the magnetic frame, the connecting shaft and limiting components are eliminated, which solves the problem of increased cost and processes in traditional connection methods, and achieves simplified parts, improved efficiency and enhanced vibration resistance.

CN224519729UActive Publication Date: 2026-07-17XIANGSHAN KEBO METERS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XIANGSHAN KEBO METERS CO LTD
Filing Date
2025-08-06
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional methods of connecting magnetic frames and conductive plates require additional connecting shafts and limiting components, which increases material costs and assembly processes, and reduces production efficiency and vibration resistance.

Method used

It adopts an integrated flange shaft connection structure. By forming a flange shaft on the conductive plate, it directly limits the magnetic frame, eliminating the need for connecting shafts and limiting components, and using the flange shaft for riveting connection.

Benefits of technology

Streamlining the number of parts reduces material costs, decreases assembly steps, improves production efficiency, enhances vibration resistance, and improves the accuracy and reliability of electrical contact devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请公开了一种一体式的磁架连接结构,涉及电气技术领域。其包括:磁架;导电板,所述导电板上通过翻边工艺形成有翻边轴,所述翻边轴穿过所述磁架后,通过对其端部进行铆压实现对所述磁架的限位。本申请的有益效果在于:通过在导电板上翻边成型翻边轴,直接利用该翻边轴连接磁架,取消了现有技术中需要的连接轴以及相关配合限位件,精简了零件数量,降低了物料成本;通过翻边轴直接铆压连接磁架,仅需将磁架组装到翻边轴上,再通过铆压完成装配,无需像现有技术中,需要先将连接轴和导电板配合,再将磁架组装上,最后组装相关配合限位件去固定导电板以及磁架,减少了装配工序,提升了装配效率。
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Claims

1. An integrated magnetic frame connection structure, comprising: magnetic rack; A conductive plate, characterized in that a flange shaft is formed on the conductive plate by a flange process, and the flange shaft passes through the magnetic frame, and the magnetic frame is limited by riveting its end.

2. An integrated magnet yoke connection structure as claimed in claim 1, wherein, The flange shaft is a hollow shaft, and there is a first rounded corner and a second rounded corner between the flange shaft and the conductive plate. The first rounded corner is located at the connection between the inner wall of the flange shaft and the lower side of the conductive plate, and the second rounded corner is located at the connection between the outer wall of the flange shaft and the upper side of the conductive plate.

3. An integrated magnet yoke connection structure as claimed in claim 1, wherein, The conductive plate has a mounting part at one end, which is a convex circular end with a diameter greater than the width of the conductive plate at the connection. The flange shaft is located in the mounting part and is coaxial with the mounting part.

4. An integrated magnet yoke connection structure as claimed in claim 3, wherein, The magnetic frame has a connecting part at one end. The connecting part is an outwardly convex annular end with a diameter equal to that of the mounting part. The connecting part is coaxially connected to the flange shaft.

5. An integrated magnet yoke connection structure as claimed in claim 4, wherein, The magnetic frame is also provided with a spring pad. After the flange shaft passes through the magnetic frame and the spring pad in sequence, its end extends out of the spring pad. The axial positioning of the magnetic frame and the spring pad is achieved by riveting its end.

6. An integrated magnet yoke connection structure as claimed in claim 5, wherein, The elastic pad is ring-shaped, and its outer diameter is equal to the diameter of the connecting part.

7. An integrated magnet yoke connection structure as defined in claim 4, wherein The end of the magnetic frame away from the connecting part is bent upward to form a vertical plate, and a contact point is fixedly installed on the vertical plate.

8. An integrated magnet yoke connection structure as claimed in claim 7, wherein, The right side of the vertical plate is bent forward to form a magnetic steel frame, and a magnetic steel sleeve is fixedly installed on the magnetic steel frame, with the opening side of the magnetic steel sleeve facing the contact point.