Self-locking structure of electric sliding door

By introducing sliding and shock-absorbing mechanisms into electric sliding doors, using gravity sensors to control the opening and closing of electromagnets, and combining the adsorption functions of magnets and anti-collision cotton, the problem of unstable self-locking in electric sliding doors is solved, thus improving the stability and safety of the doors.

CN223523605UActive Publication Date: 2025-11-07JINGJIANG JIANGONG MASCH MFG CO LTD
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Patent Information

Application Number
CN202423130694.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-07
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

The existing self-locking structure of electric sliding doors is not easy to lock, which can easily cause the door to derail and affect its safety performance.

Method used

The door employs a sliding mechanism and a shock-absorbing mechanism, using a gravity sensor to control the opening and closing of the electromagnet. Combined with the adsorption and shock-absorbing functions of magnets and anti-collision cotton, it ensures the stability and safety of the door.

Benefits of technology

This improves the locking stability of electric sliding doors, reduces the impact of collisions on the door body, and enhances the overall practicality and safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223523605U_ABST
Patent Text Reader

Abstract

The utility model discloses an electric sliding door self-locking structure which comprises a door frame, the door frame is of a hollow square structure, and sliding blocks are symmetrically arranged on the inner wall of the door frame. A first cabinet door and a second cabinet door are slidably installed in the door frame side by side, sliding structures are arranged on the surfaces of the first cabinet door and the second cabinet door, and the sliding structures comprise sliding grooves formed in the surfaces of the first cabinet door and the second cabinet door, the sliding grooves are formed in the outer sides of sliding blocks, pushing blocks are fixedly connected to the surfaces of the two sides of the first cabinet door, and the pushing blocks are fixedly connected to the surfaces of the two sides of the second cabinet door. And gravity sensors are symmetrically mounted on the inner surface of the door frame. According to the self-locking structure of the electric sliding door, the sliding mechanism is arranged, the locking stability is improved, when the first cabinet door and the second cabinet door are closed, a push block on the surfaces is driven to move to the surface of a gravity sensor to extrude the gravity sensor, the gravity sensor starts an electromagnet, the tail end of the electromagnet is inserted into a groove of a sliding groove, and locking is achieved. And closing can be performed through an electromagnet device.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a translation door self -locking structure technical field, concretely is a kind of electric translation door self -locking structure. BACKGROUND

[0002] Translation door mostly electric translation door, with the characteristics of multi-function, suitable for installation on various factory building structures.The door leaf can be manually, electrically converted, and translation door mostly electric translation door, with the characteristics of multi-function, its door body is more strict to wind load, suitable for installation on various factory building structures.The door leaf can be manually, electrically converted.Control door door leaf is generally single track.It is divided into two kinds of lower bearing and upper bearing, electric translation door is a kind of translation door, can be identified as the control unit of door opening signal by driving system to open door, automatically closes door after person leaves, and realizes control to the process of opening and closing, and self-locking structure is the tool for locking door when electric door is closed, but the existing self-locking structure is not convenient for locking when using, easily makes door body be light in weight, causes translation door derailment, greatly reduces the safety performance of translation door use. SUMMARY

[0003] The utility model discloses a kind of electric translation door self -locking structures, to solve the problem of not being convenient for locking in the above background technology, easily make door body be light in weight, cause translation door derailment, greatly reduce the safety performance of translation door use.

[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of electric translation door self -locking structure, including door frame, the door frame is set as hollow square structure, and the inner wall of door frame is symmetrically provided with sliding block;

[0005] The inside of the door frame is installed with cabinet door one and cabinet door two in parallel sliding, the surface of the cabinet door one and the cabinet door two is provided with sliding structure, and the sliding mechanism includes: and the surface of the cabinet door one and the cabinet door two is provided with sliding slot, and the sliding slot is provided on the outside of sliding block, the two side surfaces of the cabinet door one are fixedly connected with push block, the inside surface of the door frame is symmetrically installed with gravity sensor, and the surface of the door frame is installed with electromagnet.

[0006] Preferably, the surface of the door frame is provided with damping mechanism, and the damping mechanism includes: the two side surfaces of the cabinet door one and the cabinet door two are installed with magnet one, and the two side surfaces of the cabinet door one and the cabinet door two are installed with and anti-collision cotton one, the inside surface of the door frame is symmetrically provided with magnet two and anti-collision cotton two.

[0007] By the damping mechanism, the pushing force on the cabinet door one and the cabinet door two can be reduced by the above technical scheme.

[0008] Preferably, the push block and the gravity sensor are correspondingly arranged, and the gravity sensor is correspondingly arranged with the magnet.

[0009] By the above technical scheme, the push block is moved to press the gravity sensor at the end of the push block, and the gravity sensor can control the electromagnetic iron to be opened.

[0010] Preferably, the surface of the sliding groove is provided with a groove, and the groove of the sliding groove is correspondingly arranged with the electromagnetic iron.

[0011] By the above technical scheme, the end of the electromagnetic iron is popped out to be inserted into the groove of the sliding groove to be positioned.

[0012] Preferably, the sliding groove is slidingly connected between the sliding blocks, and the door frame is slidingly connected between the cabinet door one and the cabinet door two.

[0013] By the above technical scheme, the sliding groove is moved to slide on the surface of the sliding block.

[0014] Preferably, the anti-collision cotton one and the magnet one are continuously arranged on the inner wall surface of the door frame.

[0015] By the above technical scheme, when the anti-collision cotton one is impacted, the anti-collision cotton one and the anti-collision cotton two can be used for shock absorption.

[0016] Preferably, the anti-collision cotton one and the anti-collision cotton two are correspondingly arranged, the magnet one and the magnet two are correspondingly arranged, and the magnet one and the magnet two are magnetically connected.

[0017] By the above technical scheme, the magnet one and the magnet two generate magnetic force to facilitate the cabinet door.

[0018] Compared with the prior art, the electrically operated sliding door self-locking structure has the advantages that:

[0019] 1. The sliding mechanism is arranged to improve the stability of the locking, when the cabinet door one and the cabinet door two are closed, the push block on the surface is moved to the surface of the gravity sensor to press the gravity sensor, the gravity sensor opens the electromagnetic iron, the end of the electromagnetic iron is inserted into the groove of the sliding groove, and the electromagnetic iron device can be used for closing;

[0020] 2. The shock absorption mechanism is arranged to reduce the collision between the cabinet door one, the cabinet door two and the door frame, when the cabinet door one and the cabinet door two are closed, the anti-collision cotton one and the anti-collision cotton two are inflated to reduce the impact, and the magnet one and the magnet two are adsorbed to increase the stability between the cabinet door one and the cabinet door two, and the practicability of the device is improved. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1The utility model discloses a three-dimensional structure schematic diagram of installation of the first anti-collision cotton;

[0022] Figure 2 The utility model discloses a three-dimensional structure schematic diagram of installation of the second anti-collision cotton;

[0023] Figure 3 The utility model discloses a three-dimensional structure schematic diagram of installation of the gravity sensor;

[0024] Figure 4 The utility model discloses a three-dimensional structure schematic diagram of installation of the first anti-collision cotton;

[0025] Figure 5 The utility model discloses a three-dimensional structure schematic diagram of installation of the sliding block.

[0026] In the drawing: 10, door frame;101, sliding block;

[0027] 20, cabinet door one;30, cabinet door two;

[0028] 40, push block;401, electromagnet;402, sliding groove;403, gravity sensor;

[0029] 50, first anti-collision cotton;501, first magnet;502, second magnet;503, second anti-collision cotton. Specific implementation

[0030] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model, and apparently, the described embodiments only are a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor all belong to the range of protection of the utility model.

[0031] Please refer to Figures 1-5 The utility model provides a technical scheme: a kind of electric sliding door self-locking structure, including door frame 10, sliding block 101, cabinet door one 20, cabinet door two 30, push block 40, electromagnet 401, sliding groove 402, gravity sensor 403, first anti-collision cotton 50, first magnet 501, second magnet 502, second anti-collision cotton 503;

[0032] The electric sliding door self-locking structure can automatically lock the door, and the specific implementation is as follows:

[0033] The door frame 10 is provided as a hollow square structure, and the inner wall of the door frame 10 is symmetrically provided with a sliding block 101; The inside of the door frame 10 is provided with a cabinet door one 20 and a cabinet door two 30 which are arranged side by side and are slidably installed, the surfaces of the cabinet door one 20 and the cabinet door two 30 are provided with a sliding structure, and the sliding structure comprises: The surfaces of the cabinet door one 20 and the cabinet door two 30 are provided with a sliding groove 402, and the sliding groove 402 is arranged on the outside of the sliding block 101, the two side surfaces of the cabinet door one 20 are fixedly connected with a push block 40, the inside surface of the door frame 10 is symmetrically provided with a gravity sensor 403, the surface of the door frame 10 is provided with an electromagnet 401, the surface of the sliding groove 402 is provided with a groove, and the groove of the sliding groove 402 is arranged in position corresponding to the electromagnet 401, the sliding groove 402 is arranged between the sliding blocks 101 in sliding connection, and the door frame 10 is in sliding connection with the cabinet door one 20 and the cabinet door two 30 respectively.

[0034] The cabinet door one 20 and the cabinet door two 30 are pushed to drive the sliding grooves 402 on the upper and lower sides to slide in the inside of the sliding block 101. The sliding groove 402 drives the cabinet door one 20 and the cabinet door two 30 to move, so that the door frame 10 of the cabinet door one 20 and the cabinet door two 30 moves. When the push block 40 is moved, the gravity sensor 403 is inside, at this time, the gravity sensor 403 can be controlled, the electromagnet 401 is turned on, the end of the electromagnet 401 is popped out, at this time, the end of the electromagnet 401 is popped out to the inside of the groove of the sliding groove 402, the end of the electromagnet 401 is fixed to the cabinet door one 20 and the cabinet door two 30, and the stability of the device is improved.

[0035] The damping mechanism of the electrically operated sliding door can reduce the vibration, and the specific implementation manner is as follows:

[0036] The surface of the door frame 10 is provided with a damping mechanism, and the damping mechanism comprises: The two side surfaces of the cabinet door one 20 and the cabinet door two 30 are provided with a magnet one 501, and the two side surfaces of the cabinet door one 20 and the cabinet door two 30 are provided with a collision prevention cotton one 50, the inside surface of the door frame 10 is symmetrically provided with a magnet two 502 and a collision prevention cotton two 503, the positions of the push block 40 and the gravity sensor 403 correspond, the positions of the gravity sensor 403 and the magnet one 501 correspond, the positions of the collision prevention cotton one 50 and the collision prevention cotton two 503 correspond, the positions of the magnet one 501 and the magnet two 502 correspond, and the magnet one 501 and the magnet two 502 are magnetically connected.

[0037] When the cabinet door 20 is closed, the anti-collision cotton 50 on the surface of the cabinet door 20 is moved at the same time with the magnet 501, so that the end of the anti-collision cotton 50 is moved to the inside of the anti-collision cotton 503, at this time, the shock absorption is carried out between the anti-collision cotton 503 and the anti-collision cotton 50, the impact generated between the cabinet door 20 and the door frame 10 is reduced, at this time, the magnet 502 is attracted to the magnet 501, so that the magnetic force is generated between the two, at this time, the position of the cabinet door 20 is fixed by the magnet 502 to the magnet 501, and the cabinet door 30 is the same.

[0038] Working principle: when the self-locking structure of the electric sliding door is used, the push block 40, the electromagnet 401, the sliding groove 402 and the gravity sensor 403 are arranged, the door can be hung and automatically locked, the anti-collision cotton 50, the magnet 501, the magnet 502, the anti-collision cotton 503 are arranged, the shock absorption is carried out, and the practicability of the whole is increased.

[0039] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and its equivalents.

Claims

1. A self-locking structure of an electrically driven sliding door, comprising a door frame (10), wherein the door frame (10) is provided as a hollow square structure, and the inner wall of the door frame (10) is symmetrically provided with a sliding block (101); characterized in that A cabinet door one (20) and a cabinet door two (30) are installed in parallel and slide in the interior of the door frame (10), the surfaces of the cabinet door one (20) and the cabinet door two (30) are provided with a sliding structure, and the sliding structure comprises a sliding groove (402) provided on the surface of the cabinet door one (20) and the cabinet door two (30) and outside the sliding block (101), the two side surfaces of the cabinet door one (20) are fixedly connected with a push block (40), the inner surface of the door frame (10) is symmetrically provided with a gravity sensor (403), and the surface of the door frame (10) is provided with an electromagnet (401).

2. The self-locking structure of an electrically operated sliding door according to claim 1, characterized in that: The surface of the door frame (10) is provided with a damping mechanism, and the damping mechanism comprises a magnet one (501) and a bump cotton one (50) installed on the two side surfaces of the cabinet door one (20) and the cabinet door two (30), and the inner surface of the door frame (10) is symmetrically provided with a magnet two (502) and a bump cotton two (503).

3. The self-locking structure of an electrically operated sliding door according to claim 2, characterized in that: The positions of the push block (40) and the gravity sensor (403) are correspondingly arranged, and the position of the gravity sensor (403) corresponds to that of the magnet one (501).

4. The self-locking structure of an electrically operated sliding door according to claim 1, characterized in that: The surface of the sliding groove (402) is provided with a groove, and the groove of the sliding groove (402) corresponds to the position of the electromagnet (401).

5. The self-locking structure of an electrically operated sliding door according to claim 1, characterized in that: The sliding groove (402) is in sliding connection between the sliding blocks (101), and the door frame (10) is in sliding connection with the cabinet door one (20) and the cabinet door two (30).

6. The self-locking structure of an electrically operated sliding door according to claim 2, characterized in that: The bump cotton one (50) and the magnet one (501) are continuously arranged on the inner wall surface of the door frame (10).

7. The self-locking structure of an electrically operated sliding door according to claim 2, characterized in that: The positions of the bump cotton one (50) and the bump cotton two (503) correspond, the positions of the magnet one (501) and the magnet two (502) correspond, and the magnet one (501) and the magnet two (502) are in magnetic connection.