Mining intelligent sling storage cabinet

By designing intelligent sling storage cabinets, using technologies such as suspension boards, telescopic mechanisms and weighing sensors, the problems of heavy physical energy consumption and inconvenient management during sling storage are solved, and efficient and intelligent storage and classification are achieved.

CN222903992UActive Publication Date: 2025-05-27HEFEI LOCOMOTIVE DEPOT SHANGHAI RAILWAY BUREAU +1
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Patent Information

Application Number
CN202421864359.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-27
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The existing slings require a lot of physical strength during storage, and are difficult to effectively classify and manage, which affects the efficiency and lifespan.

Method used

A mining intelligent sling storage cabinet is designed, using components such as suspension boards, telescopic mechanisms, drive mechanisms and weighing sensors to assist staff in storing and sorting slings.

Benefits of technology

Through the automated storage process, labor intensity is significantly reduced, the storage efficiency of slings is improved, and the intelligent classification and management of slings is realized through weighing sensors.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222903992U_ABST
Patent Text Reader

Abstract

The utility model discloses a mining intelligent sling storage cabinet which comprises a cabinet body, a hanging plate is hinged to the inner wall of the bottom of the cabinet body through a first installation base, a plurality of hanging hooks are arranged on the hanging plate in a rectangular array mode, a driving mechanism is installed between the cabinet body and the hanging plate, and a telescopic mechanism is rotationally connected to the side wall of the hanging plate. According to the utility model, the drive mechanism pushes the suspension plate to push the part provided with the telescopic mechanism out of the cabinet body, the suspension arm and the suspension hook also come to the outside of the cabinet body, the sling is hung on the suspension hook, then the telescopic mechanism drives the suspension arm and the suspension hook to rise, and meanwhile, the drive mechanism drives the suspension plate to reset. When the sling arrives above the suspension hook, the suspension hook is pulled towards the outside of the cabinet body to penetrate through the sling, and then the telescopic mechanism can reset, so that a worker is assisted to store the sling, and the labor intensity can be greatly reduced while the sling is convenient to store.
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Description

Technical Field

[0001] The utility model belongs to the technical field of sling storage, and particularly relates to a mine intelligent sling storage cabinet. Background Art

[0002] Sling is one of the commonly used lifting equipment accessories in manufacturing enterprises in various fields. After the sling is used up, it needs to be stored in a dry place to prevent the sling from being eroded by wind and rain, which affects its service life.

[0003] The slings for holes are generally made of metal, and metal slings are generally very heavy. A large amount of physical strength of the staff is required during the storage process. It is not only difficult to store, but also increases the labor intensity of the staff. Summary of the Utility Model

[0004] The utility model aims at the problems in the prior art and proposes the following technical solutions:

[0005] A mine intelligent sling storage cabinet includes a cabinet body. A suspension plate is hinged to the inner wall of the bottom of the cabinet body through a mounting seat one. A plurality of suspension hooks are arranged in a rectangular array on the suspension plate. A driving mechanism is installed between the cabinet body and the suspension plate. One side wall of the suspension plate is rotatably connected with a telescopic mechanism. One end of the telescopic mechanism far away from the suspension plate is fixedly connected with a suspension arm. A plurality of suspension hooks are arranged in a linear array on the suspension arm. Each suspension hook is fixedly connected with a weighing sensor. An alarm is fixedly connected to the outer wall of the cabinet body and is electrically connected with the weighing sensor.

[0006] As a preference of the above technical solution, the suspension plate is provided with a plurality of movable holes in a rectangular array. The suspension hooks are movably sleeved in the movable holes, and an anti-detachment plate is threadedly connected to one end of the suspension hook close to the inner wall of the cabinet body.

[0007] As a preference of the above technical solution, the telescopic mechanism includes a telescopic arm one rotatably connected to the suspension plate. A telescopic arm two is slidably connected to one side of the telescopic arm one close to the suspension plate. One end of the telescopic arm two far away from the telescopic arm one is fixedly connected with the suspension arm.

[0008] As a preference of the above technical solution, a fixed seat is fixedly connected to one side of the telescopic arm one. A driving part one and a guide rod are fixedly connected to one side of the fixed seat. The driving part one is fixedly connected with the telescopic arm two. One end of the guide rod far away from the fixed seat penetrates through the telescopic arm two and is fixedly connected with the telescopic arm one.

[0009] As a preference of the above technical solution, the driving mechanism includes a driving part two fixed on the inner wall of the cabinet body. The driving part two is hinged to a mounting seat two. The mounting seat two is slidably connected with the suspension plate.

[0010] The beneficial effects of the utility model are as follows:

[0011] 1. The utility model pushes the hanging plate through the driving mechanism to push out the part equipped with the telescopic mechanism from the inside of the cabinet body. At this time, the suspension arm and the suspension hook will also come to the outside of the cabinet body. Hang the sling on the suspension hook. Then, the telescopic mechanism drives the suspension arm and the suspension hook to rise, and at the same time, the driving mechanism drives the hanging plate to reset. When the sling comes above the suspension hook, pull the suspension hook outward from the cabinet body to make it pass through the sling, and then the telescopic mechanism can be reset. Thus, it assists the staff in storing the sling, which is convenient for storage and can greatly reduce the labor intensity.

[0012] 2. The suspension hook of the utility model can remind the staff to store slings of different weights in the corresponding cabinet bodies through the weighing sensor, so that when using them next time, the corresponding slings of the corresponding specifications can be quickly found, making it more intelligent and convenient. Description of the Drawings

[0013] Figure 1 Fig. shows the structural schematic diagram of the intelligent mine sling storage cabinet in the embodiment;

[0014] Figure 2 Fig. shows the structural schematic diagram of the hanging plate in the embodiment.

[0015] Description of the Reference Numerals:

[0016] 1. Cabinet body; 2. Roller shutter door; 3. First mounting seat; 4. Hanging plate; 5. Suspension hook; 6. Anti - detachment plate; 7. First telescopic arm; 8. Second telescopic arm; 9. Suspension arm; 10. Suspension hook; 11. Fixed seat; 12. First driving part; 13. Guide rod; 14. Second driving part; 15. Second mounting seat. Detailed Embodiments

[0017] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions of the present utility model will be clearly and completely described below in conjunction with the embodiments.

[0018] Embodiment 1

[0019] As Figure 1 and Figure 2As shown in the figure, the intelligent storage cabinet for mine slings includes multiple cabinets 1. Each cabinet 1 is used to store slings of a single weight. A rolling shutter door 2 is installed on the top of each cabinet 1 for sealing and protecting the cabinet 1. A suspension plate 4 is hinged to the inner wall of the bottom of the cabinet 1 through a mounting base 1. Multiple suspension hooks 5 are arranged in a rectangular array on the suspension plate 4. A driving mechanism is installed between the cabinet 1 and the suspension plate 4. One end of a telescopic mechanism is rotatably connected to the side wall of the suspension plate 4. The other end of the telescopic mechanism away from the suspension plate 4 is fixedly connected to a suspension arm 9. Multiple suspension hooks 10 are arranged in a linear array on the suspension arm 9. Each suspension hook 10 is fixedly connected to a weighing sensor. The model of the weighing sensor is: SWS310. An alarm is fixedly connected to the outer wall of the cabinet 1 and is electrically connected to the weighing sensor.

[0020] As Figure 1 and Figure 2 shown, multiple movable holes are arranged in a rectangular array on the suspension plate 4. The suspension hooks 5 are movably sleeved in the movable holes. One end of the suspension hook 5 close to the inner wall of the cabinet 1 is threadedly connected with an anti - detachment plate 6. The diameter of the anti - detachment plate 6 is larger than the diameter of the movable hole, so that the suspension hook 5 cannot be separated from the suspension plate 4. If you want to remove the suspension hook 5 from the suspension plate 4, you need to separate the suspension hook 5 from the anti - detachment plate 6 first, and then the suspension hook 5 can be pulled out from the movable hole.

[0021] Specifically, the driving mechanism pushes the suspension plate 4 to push out the part with the telescopic mechanism from the inside of the cabinet 1. At this time, the suspension arm 9 and the suspension hooks 10 will also come to the outside of the cabinet 1. Hang the sling on the suspension hooks 10. Then the telescopic mechanism drives the suspension arm 9 and the suspension hooks 10 to rise. At the same time, the driving mechanism drives the suspension plate 4 to reset. When the sling comes above the suspension hook 5, pull the suspension hook 5 outward from the cabinet 1 so that it passes through the sling, and then the telescopic mechanism can reset. This assists the staff in storing the slings. While facilitating storage, it can greatly reduce the labor intensity. The suspension hooks 10 can remind the staff to store slings of different weights in the corresponding cabinets 1 respectively through the weighing sensors, so that the corresponding slings of the appropriate specifications can be quickly found during the next use, making it more intelligent and convenient.

[0022] Embodiment 2

[0023] As Figure 1-2 shown, the intelligent storage cabinet for mine slings, compared with Embodiment 1, this embodiment further includes a telescopic mechanism and a driving mechanism. The telescopic mechanism includes a telescopic arm 1 7 rotatably connected to the suspension plate 4, so that the telescopic arm 1 7 can rotate around the connection point of the suspension plate 4 as the axis. A telescopic arm 2 8 is slidably connected to the side of the telescopic arm 1 7 close to the suspension plate 4. The other end of the telescopic arm 2 8 away from the telescopic arm 1 7 is fixedly connected to the suspension arm 9.

[0024] As Figure 2As shown in the figure, a fixed seat 11 is fixedly connected to one side of the telescopic arm 7. A first driving member 12 and a guide rod 13 are fixedly connected to one side of the fixed seat 11. The first driving member 12 is preferably an oil cylinder, and its output end is fixedly connected to the telescopic arm 8. The end of the guide rod 13 away from the fixed seat 11 penetrates through the telescopic arm 8 and is fixedly connected to the telescopic arm 7. The stability between the telescopic arm 7 and the telescopic arm 8 is increased through the guide rod 13, and at the same time, the working burden of the first driving member 12 is reduced.

[0025] As Figure 2 shown in the figure, the driving mechanism includes a second driving member 14 fixed to the inner wall of the cabinet body 1. The second driving member 14 is preferably an oil cylinder, and its output end is hinged to a second mounting seat 15. The second mounting seat 15 is slidably connected to the suspension plate 4.

[0026] Specifically, the second driving member 14 pushes the suspension plate 4 to rotate outward from the cabinet body 1 with the connection point of the first mounting seat 3 as the axis. At this time, the telescopic arm 7, the telescopic arm 8, and all the structures connected thereto will always be perpendicular to the ground due to their own gravity. The first driving member 12 pushes the telescopic arm 8 to drive the suspension arm 9 and the suspension hook 10 close to the sling placed on the ground. At this time, the staff only needs to be close to hang the sling on the suspension hook 10, and then start the first driving member 12 again. The sling hung on the suspension hook 10 is lifted by the telescopic arm 8. At the same time, the second driving member 14 retracts to drive the suspension plate 4 to reset. When the sling reaches above the suspension hook 5 without a sling hanging, the first driving member 12 stops, and then the suspension hook 5 is pulled to pass through the sling. Finally, the suspension arm 9 is driven by the first driving member 12 to reset. At this time, the sling will be hung on the suspension hook 5. The cabinet body 1 can be closed by the rolling shutter door 2 to complete the storage. At the same time, the suspension hook 10 can remind the staff whether the sling is stored in the correct cabinet body 1 through the weighing sensor and the alarm. If the weight of the sling is qualified, the alarm will not sound. After that, when the lifting weight of the suspension hook 10 does not meet the storage weight standard of the cabinet body 1, the alarm will sound.

[0027] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it.

Claims

1. A mining intelligent sling storage cabinet, comprising a cabinet body (1), the bottom inner wall of the cabinet body (1) is hinged with a suspension plate (4) through a mounting seat (3), the suspension plate (4) is provided with a plurality of suspension hooks (5) in a rectangular array, a driving mechanism is installed between the cabinet body (1) and the suspension plate (4), and the characteristics are as follows: The side wall of the suspension plate (4) is rotatably connected to a telescopic mechanism, one end of the telescopic mechanism away from the suspension plate (4) is fixedly connected to a suspension arm (9), the suspension arm (9) is provided with a plurality of suspension hooks (10) in a linear array, each of the suspension hooks (10) is fixedly connected to a weighing sensor, and the outer wall of the cabinet (1) is fixedly connected to an alarm device electrically connected to the weighing sensor.

2. The intelligent sling storage cabinet for mining according to claim 1 is characterized in that: The hanging plate (4) is provided with a plurality of movable holes in a rectangular array, the hanging hook (5) is movably sleeved in the movable holes, and an anti-slip plate (6) is threadedly connected to one end of the hanging hook (5) close to the inner wall of the cabinet (1).

3. The intelligent sling storage cabinet for mining according to claim 1 is characterized in that: The telescopic mechanism comprises a telescopic arm 1 (7) rotatably connected to a suspension plate (4); a side of the telescopic arm 1 (7) close to the suspension plate (4) is slidably connected to a telescopic arm 2 (8); an end of the telescopic arm 2 (8) away from the telescopic arm 1 (7) is fixedly connected to a suspension arm (9).

4. The intelligent sling storage cabinet for mining according to claim 3 is characterized in that: One side of the telescopic arm 1 (7) is fixedly connected to a fixing seat (11), one side of the fixing seat (11) is fixedly connected to a driving member 1 (12) and a guide rod (13), the driving member 1 (12) is fixedly connected to the telescopic arm 2 (8), and one end of the guide rod (13) away from the fixing seat (11) passes through the telescopic arm 2 (8) and is fixedly connected to the telescopic arm 1 (7).

5. The intelligent sling storage cabinet for mining according to claim 1 is characterized in that: The driving mechanism comprises a second driving member (14) fixed on the inner wall of the cabinet (1), the second driving member (14) being hingedly connected to a second mounting seat (15), and the second mounting seat (15) being slidably connected to the suspension plate (4).