Translation backflow roller table for cabinet door automatic assembly line

By designing a translational reverse flow roller table on the automatic cabinet door assembly line, and using a converging conveyor belt and sensor control, the problem of transporting cabinet doors after nailing was solved, thus improving production efficiency.

CN224198644UActive Publication Date: 2026-05-05石家庄灿高高频机械有限公司 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
石家庄灿高高频机械有限公司
Filing Date
2025-05-14
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

How can we ensure that cabinet doors, after nailing, can be smoothly transported to the belt conveyor for transport, thereby improving the efficiency of cabinet door production?

Method used

Design a translational reverse flow roller table for an automatic cabinet door assembly line, comprising a merging main conveyor roller, a merging conveyor roller, a merging conveyor belt, a merging conveyor motor, a merging light sensor, and a merging controller. The nailed cabinet doors are transported to the belt conveyor via the liftable merging conveyor belt, achieving unified transportation.

Benefits of technology

This enables the smooth transport of cabinet doors after nailing, improving the efficiency of cabinet door production and facilitating subsequent storage and transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a translation backflow roller table for a cabinet door automatic assembly line, which comprises a converging main conveying roller and a converging conveying roller which are respectively arranged behind a nailing mechanism, the converging main conveying roller and the converging conveying roller are arranged in parallel, and the converging main conveying roller corresponds to a belt conveyor behind the converging main conveying roller. A confluence conveying belt is arranged between the confluence main conveying roller and the confluence conveying roller, a confluence main conveying motor is arranged on the rack below the confluence main conveying roller, and a confluence conveying motor is arranged on the rack below the confluence conveying roller; the confluence conveying belt is arranged on the rack through a confluence conveying support, and a plurality of confluence conveying belt lifting mechanisms are arranged on the rack; a confluence light sensor is arranged at the rear end of the confluence conveying roller, and a confluence controller used for controlling confluence of the cabinet doors is arranged on the machine frame. According to the cabinet door conveying device, nailed cabinet doors are conveyed to the belt conveyor in a unified mode to be conveyed in a unified mode, follow-up storage and transportation are facilitated, and then the production efficiency of the cabinet doors is improved.
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Description

Technical Field

[0001] This utility model relates to the field of cabinet door production technology, and more specifically to a translational reversing roller table for an automatic cabinet door assembly line. Background Technology

[0002] Cabinet doors, as the openings installed on cabinets, are typically made by carefully piecing together multiple panels. During assembly, adhesive is applied to the joint surfaces of the panels, which are then tightly joined together. Given the frequent opening and closing of cabinet doors, ensuring their structural strength is crucial. Therefore, nails are usually used at the joints of the panels to enhance the sturdiness of the joints.

[0003] In the cabinet door production process, in order to maintain the overall efficiency of cabinet door production, a multi-way nailing mechanism is usually configured at the end of the assembly line. However, how to ensure that the cabinet doors are smoothly transported to the belt conveyor after the nailing operation is completed has become a technical problem that needs to be solved. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a translational reverse flow roller table for an automatic cabinet door assembly line, which can transport cabinet doors after nailing to a belt conveyor for unified transportation, thereby improving the efficiency of cabinet door production.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows.

[0006] The translational reversing roller table for an automatic cabinet door assembly line includes a merging main conveyor roller and a merging conveyor roller, respectively positioned behind the nailing mechanism. The merging main conveyor roller and the merging conveyor roller are arranged in parallel, with the merging main conveyor roller corresponding to a rear belt conveyor. A merging conveyor belt is positioned between the merging main conveyor roller and the merging conveyor roller to transport the cabinet doors on the merging conveyor roller onto the merging main conveyor roller. A merging main conveyor motor is mounted on a frame below the merging main conveyor roller, and a merging conveyor motor is mounted on a frame below the merging conveyor roller. The merging conveyor belt is mounted on the frame via a merging conveyor bracket, and several merging conveyor belt lifting mechanisms are mounted on the frame to drive the merging conveyor belt up and down. A merging optical sensor for collecting cabinet door position information is located at the rear end of the merging conveyor roller, and a merging controller for controlling the merging of cabinet doors is mounted on the frame. The outputs of the merging main conveyor motor, the merging conveyor motor, the merging conveyor belt lifting mechanisms, and the merging optical sensor are electrically connected to the merging controller.

[0007] To further optimize the technical solution, the merging conveyor belt lifting mechanism includes a merging lifting cylinder support plate set on the frame below the merging conveyor belt, a merging conveying lifting cylinder set below the merging lifting cylinder support plate, a merging conveyor lifting bracket set perpendicular to the merging conveyor support at the end of the telescopic rod above the merging conveyor lifting cylinder, and a merging conveyor belt lifting bracket set on the merging conveyor belt lifting bracket. The throttling conveying lifting cylinder is electrically connected to the merging controller.

[0008] To further optimize the technical solution, a confluence limiting plate is provided at the rear end of the confluence conveying roller, which is parallel to the confluence conveying roller and is used to limit the cabinet door.

[0009] To further optimize the technical solution, a merging limiting plate is set on the outer side of the merging main conveyor roller and at the rear end of the merging conveyor belt running direction. This plate is perpendicular to the merging conveyor belt and is used to limit the cabinet door being transported by the merging conveyor belt.

[0010] Due to the adoption of the above technical solutions, the technological progress achieved by this utility model is as follows.

[0011] The present invention provides a translational and reverse flow roller table for an automatic cabinet door assembly line. The table uses a liftable merging conveyor belt to translate and transport the nailed cabinet doors, and then transports the nailed cabinet doors to a belt conveyor for unified transport, which facilitates subsequent storage and transportation, thereby improving the efficiency of cabinet door production. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of this utility model;

[0013] Figure 2 This is a schematic diagram of the merging conveyor belt lifting mechanism of this utility model.

[0014] Among them: 5. Frame, 9. Main merging conveyor roller, 601. Merging conveyor roller, 602. Merging conveyor motor, 603. Merging conveyor belt, 604. Merging conveyor support, 605. Merging conveyor lifting support, 606. Merging limit plate, 607. Merging light sensor, 608. Merging lifting cylinder support plate, 609. Merging conveyor lifting cylinder. Detailed Implementation

[0015] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0016] Translational and reverse flow roller table for automatic cabinet door assembly lines, combined with Figures 1 to 2As shown, the system includes a merging main conveyor roller 9 and a merging conveyor roller 601, which are respectively located behind the nailing mechanism. The merging main conveyor roller 9 and the merging conveyor roller 601 are arranged in parallel, with the merging main conveyor roller 9 corresponding to the belt conveyor behind it. A merging conveyor belt 603 is provided between the merging main conveyor roller 9 and the merging conveyor roller 601 to transport the cabinet doors on the merging conveyor roller to the merging main conveyor roller 9. A merging main conveyor motor is provided on the frame 5 below the merging main conveyor roller 9, and a merging conveyor motor 602 is provided on the frame below the merging conveyor roller 601. A merging controller is provided on the frame 5 to control the merging of the cabinet doors. The merging main conveyor motor and the merging conveyor motor are electrically connected to the merging controller.

[0017] The merging conveyor belt 603 is mounted on the frame 5 via the merging conveyor bracket 604. The frame 5 is equipped with several merging conveyor belt lifting mechanisms to drive the merging conveyor belt to lift. The merging conveyor belt lifting mechanisms are electrically connected to the merging controller.

[0018] The merging conveyor belt lifting mechanism includes a merging lifting cylinder support plate 608 mounted on the frame 5 below the merging conveyor belt 603, a merging conveying lifting cylinder 609 mounted below the merging lifting cylinder support plate 608, and a merging conveying lifting bracket 605 perpendicular to the merging conveying bracket 604 mounted on the end of the telescopic rod above the merging conveying lifting cylinder 609. The merging conveying bracket 604 is mounted on the merging conveying lifting bracket 605, and the throttling conveying lifting cylinder is electrically connected to the merging controller.

[0019] After the nailing mechanism completes the nailing, the cabinet doors are conveyed to the corresponding main confluence conveyor roller and the confluence conveyor roller. The cabinet doors on the main confluence conveyor roller are directly conveyed to the belt conveyor behind. When the cabinet doors on the main confluence conveyor roller are being conveyed to the main confluence conveyor roller, the confluence conveyor lifting cylinder drives the confluence conveyor belt lifting bracket to rise, causing the cabinet doors on the confluence conveyor roller to detach from the confluence conveyor roller and then be conveyed to the main confluence conveyor roller via the confluence conveyor belt. When they are conveyed to the main confluence conveyor roller, the confluence conveyor belt descends and is conveyed to the belt conveyor behind via the main confluence conveyor roller.

[0020] A merging light sensor 607 is provided at the rear end of the merging conveyor roller 601 to collect cabinet door position information. The merging light sensor is electrically connected to the merging controller.

[0021] A merging limit plate 606 is provided at the rear end of the merging conveyor roller 601. The merging limit plate is located outside the merging light sensor and is arranged parallel to the merging conveyor roller to limit the cabinet door.

[0022] A merging limit plate 606 is provided on the outer side of the merging main conveyor roller 9. The merging limit plate is located at the rear end of the merging conveyor belt 603 in the running direction and is perpendicular to the merging conveyor belt. It is used to limit the cabinet door transported by the merging conveyor belt.

[0023] When this utility model device transports nailed cabinet doors, the nailed cabinet doors are transported onto the merging main conveyor roller and then onto the rear belt conveyor. After the other nailed cabinet door is transported onto the merging conveyor roller, the merging conveyor belt rises and moves the cabinet door horizontally onto the merging main conveyor roller. Then the merging conveyor belt descends, and the merging main conveyor roller transports the cabinet door to the rear belt conveyor. When the merging main conveyor roller and the merging conveyor roller are transporting the cabinet door, the merging conveyor belt is lowered below the conveyor roller. Only when the merging conveyor roller is transporting the cabinet door to the merging main conveyor roller does the merging conveyor belt rise to move the cabinet door horizontally.

Claims

1. A translational reversing roller table for an automatic cabinet door assembly line, characterized in that: The system includes a merging main conveyor roller (9) and a merging conveyor roller (601) respectively located behind the nailing mechanism. The merging main conveyor roller (9) and the merging conveyor roller (601) are arranged in parallel. The merging main conveyor roller (9) corresponds to the belt conveyor behind it. A merging conveyor belt (603) is provided between the merging main conveyor roller (9) and the merging conveyor roller (601) to transport the cabinet doors on the merging conveyor roller (601) to the merging main conveyor roller (9). A merging main conveyor motor is provided on the frame (5) below the merging main conveyor roller (9), and a merging conveyor motor is provided on the frame below the merging conveyor roller (601). A merging conveyor motor (602); the merging conveyor belt (603) is mounted on the frame (5) via a merging conveyor bracket (604), and the frame (5) is provided with several merging conveyor belt lifting mechanisms for driving the merging conveyor belt to rise and fall; the rear end of the merging conveyor roller (601) is provided with a merging light sensor (607) for collecting cabinet door position information, and the frame (5) is provided with a merging controller for controlling the merging of cabinet doors, and the output ends of the merging main conveyor motor, the merging conveyor motor, the merging conveyor belt lifting mechanism and the merging light sensor are respectively electrically connected to the merging controller.

2. The translational reverse flow roller table for an automatic cabinet door assembly line according to claim 1, characterized in that: The merging conveyor belt lifting mechanism includes a merging lifting cylinder support plate (608) set on the frame (5) below the merging conveyor belt (603), a merging conveying lifting cylinder (609) set below the merging lifting cylinder support plate (608), a merging conveying lifting bracket (605) perpendicular to the merging conveying bracket (604) set at the end of the telescopic rod above the merging conveying lifting cylinder (609), the merging conveying bracket (604) set on the merging conveying lifting bracket (605), and the throttling conveying lifting cylinder is electrically connected to the merging controller.

3. The translational reverse flow roller table for an automatic cabinet door assembly line according to claim 1, characterized in that: The rear end of the merging conveyor roller (601) is provided with a merging limiting plate (606) which is arranged parallel to the merging conveyor roller and is used to limit the cabinet door.

4. The translational reverse flow roller table for an automatic cabinet door assembly line according to claim 1, characterized in that: A merging limit plate (606) is provided on the outer side of the merging main conveyor roller (9) and at the rear end of the merging conveyor belt (603) in the running direction. The plate is perpendicular to the merging conveyor belt and is used to limit the cabinet door being transported by the merging conveyor belt.