一种防盗门冲孔用模具

By introducing buffer side columns and elastic contact surfaces into the punching mold of security doors, and combining them with sensors to monitor the storage status, the problem of damage to semi-finished security doors during transportation and storage is solved, achieving efficient protection and stable quality.

CN224508199UActive Publication Date: 2026-07-17ZHEJIANG JUDING IND & TRADE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG JUDING IND & TRADE CO LTD
Filing Date
2025-07-09
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

During the punching process of security doors, the semi-finished products are prone to surface scratches and deformation due to the lack of buffer structure during transportation and storage, and the workpieces are damaged due to repeated impacts when the materials are piled up.

Method used

A punching die for security doors was designed, comprising a buffer side column, an oblique electric anti-collision conveyor belt, a buffer spring component, and a sensor. The buffer side column reduces shock, and the elastic contact surface avoids rigid collisions. The sensor monitors the material storage status and controls the dropping height to ensure product quality.

Benefits of technology

It effectively protects the semi-finished security door from damage, avoids deformation and wear caused by improper material dropping height, and improves the reliability of the processing flow and the stability of product quality.

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Abstract

本实用新型提供了一种防盗门冲孔用模具,属于冲孔加工领域。它解决了现有防盗门半成品从模具掉落至输送装置时,往往因缺乏缓冲结构,容易造成表面刮擦、变形等损伤的问题。本防盗门冲孔用模具,包括冲压设备本体,其特征在于,所述冲压设备本体的内端固定连接有模具组件,所述冲压设备本体中安装有多个缓冲侧立柱。其优点在于半成品加工件本体掉落至斜向电性防撞击输料带后,抵件凸起立板与电磁侧柱板磁性连接,当工件快到达储存面高度时,控制终端控制电磁侧柱板与抵件凸起立板磁性连接短暂断磁再复位,灵活降低落料差,防止因落料撞击导致工件变形、磨损,确保存储环节工件完整,提升整个加工流程的可靠性与产品质量稳定性。
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Claims

1. A mold for punching a security door, comprising a punch device body, characterized in that, A mold assembly is fixedly connected to the inner end of the stamping equipment body. Multiple buffer side columns are installed in the stamping equipment body, and the multiple buffer side columns are rectangularly distributed outside the mold assembly. A feeding inclined outer frame is fixedly connected to the lower right side of the stamping equipment body. An inclined electric anti-collision feeding belt is installed outside the feeding inclined outer frame. Multiple equally spaced strip-shaped grooves are opened at the outer end of the inclined electric anti-collision feeding belt. Electromagnetic side column plates are symmetrically fixedly connected to the front and rear inner walls of the strip-shaped grooves. A self-rebound inner rotating shaft is installed between two electromagnetic side column plates. A stop-work protrusion plate is provided at the outer end of the self-rebound inner rotating shaft. The stop-work protrusion plate and the strip-shaped grooves are matched with each other. The stop-work protrusion plate and the electromagnetic side column plate are magnetically connected. Multiple buffer springs are fixedly connected to the end of the stop-work protrusion plate near the stamping equipment body.

2. The door punching die according to claim 1, wherein Multiple buffer springs are equidistantly distributed, and a buffer contact plate is fixedly connected to the end of each buffer spring away from the abutment protrusion plate.

3. The door punching die according to claim 2, wherein The buffer contact plate is fixedly connected to a flexible contact surface at the end away from the buffer spring, and a semi-finished product storage frame is provided at the end of the material conveying inclined outer frame away from the stamping equipment body.

4. The door punching die according to claim 3, wherein The front inner wall of the semi-finished product storage frame is fixedly connected to a vertical bar for monitoring the storage status, and multiple sensors are fixedly connected to the rear end of the vertical bar for monitoring the storage status.

5. The door punching die according to claim 4, wherein Multiple sensors are distributed vertically at equal intervals, and semi-finished processed parts fall onto the surface of the abutment protrusion plate.

6. The door punching die according to claim 5, wherein Multiple semi-finished processed parts fall into the semi-finished product storage box and are collected. The storage status monitoring bar and the multiple semi-finished processed parts in the semi-finished product storage box cooperate with each other.

7. The door punching die according to claim 6, wherein The inclined electric anti-collision conveyor belt is externally connected to a control terminal, which is electrically connected to the storage status monitoring vertical bar through wires and electromagnetic side column plates.