一种高频电磁阀阀片结构

By adopting a design that combines the valve plate body and the mounting block in the structure of the high-frequency solenoid valve, a stable and symmetrical arrangement of multiple valve plates and rapid opening and closing are achieved, solving the problems of loose structure and slow response speed in the existing technology, and improving the miniaturization and control accuracy of the equipment.

CN224516041UActive Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Filing Date
2025-07-17
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing high-frequency solenoid valve plate structure is loose and bulky due to separate installation, making it difficult to meet the requirements of equipment miniaturization and integration. In addition, the flow resistance increases and the response speed decreases in high-frequency switching scenarios, affecting the control accuracy.

Method used

The design combines the valve plate body with the valve plate mounting block. Through the cooperation of the positioning slot and the positioning head, multiple valve plate bodies are symmetrically arranged in a single mounting block to form a stable double-row layout. The through-passage of the switching channel and the fit of the sealing gasket enable rapid opening and closing and high channel density.

Benefits of technology

It reduces the overall volume, improves space utilization and fluid channel density, optimizes the fluid path, and enhances response frequency and control accuracy, making it suitable for high-precision industrial automation scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种高频电磁阀阀片结构,涉及电磁阀领域,包括阀片主体和阀片安装块,所述阀片主体位于阀片安装块的内侧,所述阀片主体的两侧均开设有定位卡槽,所述阀片主体的外侧一体成型有定位头。本实用新型实现单个阀片安装块内对称排列多个阀片主体,形成稳固的双行对称布局,不仅减小了整体体积,还提升了电磁阀的通道密度,解决了现有技术中阀片安装空间冗余的问题,提高空间利用率,同时个阀片主体的分行排列优化了流体路径,开关通道贯穿阀片主体并直接与密封垫贴合,实现快速启闭,单个阀片安装块集成多个独立阀片,允许并行控制多个流体通道,响应频率提升,适用于高精度工业自动化场景。
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Claims

1. A high-frequency electromagnetic valve spool structure comprising a valve spool body (1) and a valve spool mounting block (5), the valve spool body (1) being located on the inner side of the valve spool mounting block (5), characterized in that: The valve plate body (1) has positioning slots (2) on both sides. The valve plate body (1) has a positioning head (3) integrally formed on the outer side. The valve plate body (1) has a sealing gasket (4) attached to the lower end. The valve plate mounting block (5) has a mounting groove (6) on the top surface. The valve plate mounting block (5) has two slot frames (7) and multiple positioning blocks (8) integrally formed on the top surface of the mounting groove (6). The positioning blocks (8) are located in the middle of the two slot frames (7). The valve plate mounting block (5) has multiple switching channels (9) inside.

2. The high-frequency electromagnetic valve plate structure according to claim 1, characterized in that: The top surface of the valve plate mounting block (5) is provided with a sealing groove (10) located outside the mounting groove (6), and the bottom surface of the valve plate mounting block (5) is provided with a mounting positioning groove (11).

3. The high-frequency electromagnetic valve plate structure according to claim 1, characterized in that: The valve body (1) is placed between the slot frame (7) and the positioning block (8), the positioning slot (2) rests on the outside of the slot frame (7), the positioning head (3) is inserted into the inside of the positioning block (8), and multiple valve bodies (1) are arranged symmetrically in two rows on the inside of the mounting slot (6).

4. The high frequency electromagnetic valve structure according to claim 1, characterized in that: The switch channel (9) is located between the positioning block (8) and the card slot frame (7), and multiple switch channels (9) are arranged in two rows corresponding to the valve plate body (1).

5. The high frequency electromagnetic valve structure according to claim 1, wherein: The switch channel (9) passes through the valve plate mounting block (5), and the sealing gasket (4) is attached to the upper end of the switch channel (9).

6. The high frequency electromagnetic valve structure according to claim 1, wherein: The valve plate mounting block (5) has screw holes (12) at each of its four corners.