Draw-bar box processing and conveying device

By introducing visual inspection and sorting mechanisms into the transmission device, the problem of defective and damaged suitcases being easily damaged when sliding down under gravity has been solved, achieving efficient and stable transmission and sorting, and reducing secondary damage and maintenance costs.

CN224101271UActive Publication Date: 2026-04-10RUIAN HUAZHOU LUGGAGE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In existing luggage processing and conveying devices, defective or damaged luggage is easily impacted when it slides down under gravity, resulting in secondary damage, increasing the difficulty and cost of repair, and may even lead to irreparable scrapping.

Method used

A conveying device including a guide table, detection components, and a sorting table was designed. It uses a vision inspection mechanism to identify defects in real time, achieves continuous conveying through guide rollers and a drive mechanism, and performs instant sorting through a combination design of carriage and operating table to avoid secondary damage to defective suitcases.

Benefits of technology

It effectively prevents defective suitcases from being impacted during the sliding process, reduces secondary damage, lowers the difficulty and cost of repair and processing, reduces economic losses and resource waste, and improves transmission efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of draw-bar box processing, in particular to a draw-bar box processing and conveying device, which adopts the technical scheme that the draw-bar box processing and conveying device comprises a material guide table, a detection assembly is fixedly mounted on the material guide table, a sorting table is arranged on the inner side of the detection assembly, and the material guide table comprises a feeding table, a discharging table and a feeding table; the upper end face of the feeding table, the upper end face of the discharging table and the upper end face of the feeding table are located on the same plane, the conveying direction of the feeding table and the conveying direction of the discharging table form a 90-degree angle, and the conveying direction of the feeding table is matched with the conveying direction of the feeding table. The sorting table comprises a sliding frame, an operation table is rotationally installed on the inner side of the sliding frame, and the upper end face of the operation table is slotted and rotationally provided with a material guide wheel. The draw-bar box has the advantages of effectively preventing the defective and incomplete draw-bar box from being impacted in the sliding process and avoiding secondary damage, and solves the problems that in the prior art, the defective and incomplete draw-bar box is easy to damage due to sliding under the action of gravity, and the follow-up maintenance and processing difficulty and cost are increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to trolley case processing technical field, specifically is a trolley case processing transmission device. BACKGROUND

[0002] When large-scale production of trolley cases is carried out in a factory, special processing and transportation equipment is used to move the trolley cases to the predetermined processing area so as to carry out subsequent manufacturing processes.

[0003] After a large amount of retrieval, a trolley case processing transmission device is disclosed in CN220258802U, which comprises a mounting table and a first conveyor belt. A first mounting plate is fixedly installed on the top surface of the mounting table. Electric telescopic rods are uniformly fixedly connected to one side of the first mounting plate. Push plates are fixedly connected to one end of the electric telescopic rods. The mounting table is arranged on one side of the first conveyor belt. A slide plate is fixedly connected to one side of the first conveyor belt. A second conveyor belt is fixedly connected to one end of the slide plate. A second baffle is fixedly connected to one side of the second conveyor belt. A support is fixedly connected to the other side of the first conveyor belt. A camera assembly is fixedly connected to the lower end of the support.

[0004] In the prior art, when the device is in use, the camera assembly is fixedly connected to the lower end of the support, and the push plate is fixedly connected to one end of the electric telescopic rod. When the camera assembly detects a trolley case with defects, the first conveyor belt stops conveying, the electric telescopic rod drives the push plate to move forward, and the trolley case with defects is pushed from the first conveyor belt to the slide plate. The trolley case with defects is gravity-affected and slides from the slide plate to the second conveyor belt, and is conveyed by the second conveyor belt to a designated area for recycling, so as to avoid mixing the trolley case with defects into the trolley cases to be processed.

[0005] However, when in use, the trolley case with defects is gravity-affected and slides, which is easy to be impacted during the sliding process, and thus secondary damage occurs. This not only aggravates the defect degree of the trolley case, but also increases the difficulty and cost of the trolley case with defects in subsequent repair processing. Secondary damage may make the original simple repair work become complex, which requires more time and materials to restore its original function or appearance, and sometimes may even lead to incomplete repair, which can only be scrapped, undoubtedly increasing economic loss and resource waste. Therefore, a trolley case processing transmission device is proposed to solve the above problems. UTILITY MODEL CONTENTS

[0006] The utility model discloses a purpose at providing a kind of draw-bar box processing transmission device, with the advantage of effectively preventing flaw defective draw-bar box from being impacted in sliding process, avoid secondary damage, solve the problem that flaw defective draw-bar box is easily damaged under the action of gravity in prior art, increase subsequent maintenance processing difficulty and cost, even lead to scrap problem that cannot be repaired.

[0007] To achieve the above object, the utility model provides the following technical scheme: a kind of draw-bar box processing transmission device, including material guiding table, the detection component is fixedly installed on the material guiding table, the sorting table is equipped in the inside of the detection component, the material guiding table includes feed table, discharge table and feeding table, the upper end surface of the feed table, discharge table and feeding table is in the same plane, the feed direction of the feed table and the discharge direction of discharge table are ninety degrees, the feed direction of the feed table and the feeding direction of feeding table are matched;The sorting table includes slide frame, the operating table is rotatably installed in the inside of the slide frame, the operating table upper end surface is slotted and rotatably installed with material guiding wheel.

[0008] Preferably, the inside of the feed table, discharge table and feeding table is all transmission installation material guiding roller, material guiding roller is driven by driving mechanism, and the opposite side of the feed table, discharge table and feeding table is welded and installed.

[0009] In the design, continuous and stable conveying is realized by material guiding roller and driving mechanism, and the upper end surface of the feed table and discharge table is in the same plane, which ensures the stability and continuity of draw-bar box in the transmission process. In addition, the feed direction of the feed table and the discharge direction of discharge table are ninety degrees, while the feed direction of the feed table and the feeding direction of feeding table are matched. This design makes the sorting process more efficient and orderly.

[0010] Preferably, the detection component includes material blocking frame, the bottom of the material blocking frame is fixedly connected with the upper end surface outside of the feed table, discharge table and feeding table, the inside of the material blocking frame is fixedly installed with positioning frame, and the top of the positioning frame is fixedly installed with mounting frame.

[0011] In the design, the design of material blocking frame not only plays a supporting role, but also ensures the stability of draw-bar box in the transmission process. The addition of positioning frame and mounting frame provides a stable mounting platform for visual detection mechanism and display, making the detection process more reliable. The detection component captures the image of draw-bar box in real time through visual detection mechanism, and analyzes whether there is defect or defect. When detecting defective product, the detection component will immediately send sorting instruction to the sorting table, and at the same time control the feed table to pause conveying, so as to avoid collision or interference between subsequent draw-bar box and defective product. When sorting is completed, the detection component sends start signal to the feed table again, and restores its conveying function.

[0012] Preferably, the visual detection mechanism is embedded and installed in the hole in the middle of the upper end surface of the mounting frame, and the display is fixedly installed at the rear end of the upper end surface of the mounting frame.

[0013] The visual detection mechanism in the design can accurately and quickly identify the defects and flaws of the trolley case by using advanced image processing algorithms, and the touch screen on the display provides an intuitive operation interface, so that the operator can monitor the detection results in real time and make adjustments or interventions as needed.

[0014] Preferably, the display is provided with a touch screen, and the display is electrically connected with the visual detection mechanism and the sorting table.

[0015] The detection information in the design can be transmitted to each related component in real time and accurately, ensuring the coordinated work and efficient operation of the whole system.

[0016] Preferably, the sliding frame is embeddedly installed on the inner side of the positioning frame, and the inner side of the sliding frame is provided with a roller shaft, and the operation table is rotatably connected with the sliding frame through the roller shaft.

[0017] The design of the sliding frame and the operation table makes the sorting process more flexible and reliable. The operation table is rotatably connected with the sliding frame through the roller shaft, ensuring the stability and accuracy of the operation table in the sorting process. The addition of the stepping motor and the coupling realizes the accurate control and positioning of the operation table.

[0018] Preferably, the operation table is provided with a stepping motor which is drivingly installed at the bottom of the operation table through a coupling, the stepping motor is fixedly connected with the material guiding table through mounting bolts, a motor is built-in installed in the operation table, and the motor is drivingly installed with a material guiding wheel.

[0019] The built-in motor in the operation table ensures the smooth movement of the operation table in the sorting process. At the same time, the accurate control of the stepping motor enables the operation table to accurately push the trolley case to the feeding table or the discharging table, realizing efficient and accurate sorting.

[0020] Compared with the prior art, the utility model has the advantages of the following:

[0021] The detection assembly fixedly installed on the material guiding table detects the appearance of the trolley case in real time by using the visual detection mechanism, and can quickly identify the trolley case with defects and flaws. Once the defective product is detected, the detection assembly immediately sends a sorting instruction to the sorting table, realizes instant sorting, and avoids the secondary damage caused by the transmission of the trolley case with defects and flaws. The sorting table is designed by combining the sliding frame and the operation table, and can flexibly push the trolley case to the feeding table or the discharging table. The material guiding wheel on the operation table is driven by the motor, which can ensure the smooth movement in the sorting process and reduce the risk of impact and secondary damage.

[0022] The guide material table comprises an infeed table, an outfeed table and a feeding table, and upper end faces of the three are in the same plane, ensuring stability and continuity of the draw-bar box in the transmission process. The conveying direction of the infeed table and the outfeed table is at 90 degrees, and the conveying direction of the infeed table and the feeding table is matched, which makes the sorting process more efficient and orderly, and reduces the collision opportunity of the draw-bar box in the transmission process.

[0023] Through accurate sorting, the defective draw-bar box is avoided from entering the subsequent processing flow, thereby reducing the repair and processing difficulty and cost caused by secondary damage. Meanwhile, the scrapping due to irreparable is avoided, and economic loss and resource waste are reduced. In summary, the utility model optimizes the transmission path, reduces the subsequent repair and processing difficulty and cost, and effectively solves the problem that the defective draw-bar box is easily damaged under the action of gravity in the prior art, and improves the efficiency and quality of the draw-bar box processing transmission. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a front view structural schematic diagram of the utility model;

[0025] Figure 2 It is a guide material table structural schematic diagram of the utility model;

[0026] Figure 3 It is a detection assembly structural schematic diagram of the utility model;

[0027] Figure 4 It is a sorting table structural schematic diagram of the utility model.

[0028] In the drawing: 1, guide material table; 11, infeed table; 12, outfeed table; 13, feeding table; 2, detection assembly; 21, material blocking frame; 22, positioning frame; 23, mounting frame; 231, visual detection mechanism; 232, display; 3, sorting table; 31, sliding frame; 32, operation table; 321, guide wheel; 33, stepping motor; 34, coupling. DETAILED DESCRIPTION

[0029] The technical solutions 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. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0030] Embodiment one: as Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the utility model provides an embodiment: a draw -bar box processing transmission device, including guide material platform 1, fixed mounting has detection component 2 on guide material platform 1, and the inside of detection component 2 is equipped with sorting platform 3, and guide material platform 1 includes feed table 11, discharge table 12 and feeding table 13, and the upper end surface of feed table 11, discharge table 12 and feeding table 13 is in the same plane, and the conveying direction of feed table 11 and discharge table 12 is ninety degrees, and the conveying direction of feed table 11 and feeding table 13 matches, and sorting platform 3 includes slide 31, and the inside of slide 31 is rotatably installed with operation table 32, and the upper end surface of operation table 32 is slotted and rotatably installed with guide wheel 321.

[0031] Specifically, through the detection component 2 fixedly installed on the guide material platform 1, the visual detection mechanism 231 is used for real-time appearance detection of the draw-bar box, which can quickly identify the draw-bar box with defects. Once the defective product is detected, the detection component 2 immediately sends a sorting instruction to the sorting platform 3, realizes instant sorting, and avoids the secondary damage caused by the continuous transmission of the draw-bar box with defects. The combination design of the slide 31 and the operation table 32 of the sorting platform 3 can flexibly push the draw-bar box to the feeding table 13 or the discharge table 12. The guide wheel 321 on the operation table 32 is driven by a motor, which can ensure smooth movement during the sorting process and reduce the risk of impact and secondary damage.

[0032] The guide material platform 1 includes the feed table 11, the discharge table 12 and the feeding table 13, and the upper end surfaces of the three are in the same plane, which ensures the stability and continuity of the draw-bar box during transmission. The conveying direction of the feed table 11 and the discharge table 12 is ninety degrees, while the conveying direction of the feed table 11 and the feeding table 13 matches. This design makes the sorting process more efficient and orderly, reducing the chances of collision of the draw-bar box during transmission.

[0033] Through accurate sorting, the draw-bar box with defects is prevented from entering the subsequent processing process, thereby reducing the difficulty and cost of repair and processing due to secondary damage. At the same time, it also avoids the situation of being scrapped due to being unable to repair, reducing economic loss and resource waste. In summary, the utility model solves the problem of damage of the draw-bar box with defects under the action of gravity in the prior art through precise detection, flexible sorting mechanism, optimized transmission path and reduction of subsequent repair and processing difficulty and cost, and improves the efficiency and quality of draw-bar box processing transmission.

[0034] Embodiment two: in order to guarantee the stability of the draw-bar box during conveying, as shown in Figure 1 and Figure 2 In this embodiment, guide rollers are drivingly installed on the inside of the feed table 11, the discharge table 12 and the feeding table 13, and the guide rollers are driven by a driving mechanism. The feed table 11, the discharge table 12 and the feeding table 13 are welded on the opposite side.

[0035] The continuous and smooth conveying is realized by the guide roller and the driving mechanism in the design, and the upper end faces of the feeding table 11 and the discharging table 12 are in the same plane, which ensures the stability and continuity of the draw-bar box during the transmission process. In addition, the conveying direction of the feeding table 11 and the discharging table 12 is ninety degrees, and the conveying direction of the feeding table 11 and the feeding table 13 is matched, which makes the sorting process more efficient and orderly.

[0036] Further, the detection assembly 2 includes a material blocking frame 21, the bottom of the material blocking frame 21 is fixedly connected with the outer side of the upper end face of the feeding table 11, the discharging table 12 and the feeding table 13, the inner side of the material blocking frame 21 is fixedly installed with a positioning frame 22, and the top of the positioning frame 22 is fixedly installed with a mounting frame 23.

[0037] In the design, the material blocking frame 21 not only plays a supporting role, but also ensures the stability of the draw-bar box during the transmission process. The addition of the positioning frame 22 and the mounting frame 23 provides a stable installation platform for the visual detection mechanism 231 and the display 232, making the detection process more reliable. The detection assembly 2 captures the image of the draw-bar box in real time through the visual detection mechanism 231, and analyzes whether there is a defect or defect. When the defective product is detected, the detection assembly 2 will immediately send a sorting instruction to the sorting table 3, and at the same time control the feeding table 11 to pause conveying, so as to avoid collision or interference between the subsequent draw-bar box and the defective product. When the sorting is completed, the detection assembly 2 sends a start signal to the feeding table 11 again to restore its conveying function.

[0038] Further, the mounting frame 23 is provided with a visual detection mechanism 231 embedded in the middle of the upper end face, and a display 232 is fixedly installed at the rear end of the upper end face of the mounting frame 23.

[0039] In the design, the visual detection mechanism 231 utilizes advanced image processing algorithms to accurately and quickly identify the defects and defects of the draw-bar box. The touch screen on the display 232 provides an intuitive operation interface, so that the operator can monitor the detection results in real time and make adjustments or interventions as needed.

[0040] Further, the display 232 is provided with a touch screen, and the display 232 is electrically connected with the visual detection mechanism 231 and the sorting table 3.

[0041] In the design, the detection information can be transmitted to each related component in real time and accurately, ensuring the coordinated work and efficient operation of the whole system.

[0042] Further, the sliding frame 31 is embedded and installed in the inner side of the positioning frame 22, the inner side of the sliding frame 31 is provided with a roller shaft, and the operation table 32 is rotatably connected with the sliding frame 31 through the roller shaft.

[0043] The design of the slide 31 and the operation table 32 makes the sorting process more flexible and reliable. The operation table 32 is rotationally connected with the slide 31 through a roller shaft, which ensures the stability and accuracy of the operation table 32 in the sorting process. The addition of the stepping motor 33 and the coupling 34 realizes the accurate control and positioning of the operation table 32.

[0044] Further, the operation table 32 is drivenly installed with the stepping motor 33 at the bottom through the coupling 34, the stepping motor 33 is fixedly connected with the material guiding table 1 through mounting bolts, and the operation table 32 is internally installed with a motor, which is drivingly installed with the material guiding wheel 321.

[0045] The built-in motor of the operation table 32 in the design ensures the smooth movement of the operation table 32 in the sorting process. At the same time, the accurate control of the stepping motor 33 enables the operation table 32 to accurately push the pull rod box to the feeding table 13 or the discharging table 12, realizing efficient and accurate sorting.

[0046] When the pull rod box is detected by the detection component 2, the visual detection mechanism 231 starts to detect the appearance of the pull rod box. In this step, the visual detection mechanism 231 captures the image of the pull rod box by using the camera, and analyzes whether the pull rod box has defects or defects by using the image processing algorithm. The visual detection mechanism 231 transmits the detection result to the touch screen on the display 232 in real time for the operator to monitor. At the same time, according to the detection result, the visual detection mechanism 231 sends a sorting instruction to the sorting table 3. If the pull rod box is a good product, the sorting table 3 is instructed to convey it to the feeding table 13; if it is a defective product, the sorting table 3 is instructed to convey it to the discharging table 12. Specifically, when the sorting table 3 receives the sorting instruction, the stepping motor 33 is started, and the operation table 32 is rotated to the specified position through the coupling 34. The material guiding wheel 321 on the operation table 32 is driven by the built-in motor to adapt to pull rod boxes of different sizes and ensure the smooth movement of the pull rod box during the sorting process. According to the sorting instruction, the operation table 32 pushes the pull rod box to the feeding table 13 or the discharging table 12. The feeding table 13 continues to convey the good pull rod box to the subsequent processing area; and the discharging table 12 conveys the defective pull rod box to the specified collection area. In the whole process, the feeding table 11, the discharging table 12 and the feeding table 13 are continuously and stably conveyed through the internal material guiding rollers and driving mechanisms. When a pull rod box is sorted, the next pull rod box immediately enters the detection range of the detection component 2, ensuring the continuity and efficiency of the whole system.

[0047] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.

Claims

1. A draw-bar box processing conveying device, comprising a material guide table (1), a detection assembly (2) is fixedly installed on the material guide table (1), and a sorting table (3) is arranged on the inner side of the detection assembly (2), characterized in that: the material guide table (1) comprises an inlet table (11), a discharge table (12) and a feeding table (13), the upper end surfaces of the inlet table (11), the discharge table (12) and the feeding table (13) are in the same plane, the conveying direction of the inlet table (11) and the conveying direction of the discharge table (12) are at right angles, and the conveying direction of the inlet table (11) and the conveying direction of the feeding table (13) are matched; the sorting table (3) comprises a sliding frame (31), an operation table (32) is rotatably installed on the inner side of the sliding frame (31), and the upper end surface of the operation table (32) is notched and rotatably installed with a material guide wheel (321).

2. The trolley case processing conveyor of claim 1, wherein, Material guide rollers are drivingly installed on the inner sides of the inlet table (11), the discharge table (12) and the feeding table (13), the material guide rollers are driven by a driving mechanism, and the inlet table (11), the discharge table (12) and the feeding table (13) are welded on the opposite sides.

3. The trolley case processing conveyor of claim 1, wherein, The detection assembly (2) comprises a material blocking frame (21), the bottom of the material blocking frame (21) is fixedly connected with the upper end surfaces of the inlet table (11), the discharge table (12) and the feeding table (13) on the outer side, a positioning frame (22) is fixedly installed on the inner side of the material blocking frame (21), and an installation frame (23) is fixedly installed on the top of the positioning frame (22).

4. The trolley case processing conveyor of claim 3, wherein, A visual detection mechanism (231) is embedded and installed in the middle of the upper end surface of the installation frame (23) through a hole, and a display (232) is fixedly installed on the rear end of the upper end surface of the installation frame (23).

5. The trolley case processing conveyor of claim 4, wherein, A touch screen is arranged on the display (232), and the display (232) is electrically connected with the visual detection mechanism (231) and the sorting table (3).

6. The trolley case processing conveyor of claim 1, wherein, The sliding frame (31) is embedded and installed on the inner side of the positioning frame (22), a roller shaft is arranged on the inner side of the sliding frame (31), and the operation table (32) is rotatably connected with the sliding frame (31) through the roller shaft.

7. The luggage processing conveyor of claim 1, wherein, A stepping motor (33) is drivingly installed on the bottom of the operation table (32) through a coupling (34), the stepping motor (33) is fixedly connected with the material guide table (1) through mounting bolts, a motor is built-in installed in the operation table (32), and the motor is drivingly installed with the material guide wheel (321).

Citation Information

Patent Citations

  • Draw-bar box processing and conveying device

    CN220258802U