Storage scanning early warning device convenient for visual fault monitoring

By introducing moving and rotating components into the warehouse scanning and early warning device, the problem of traditional devices being unable to scan comprehensively has been solved, enabling all-round monitoring of goods in the warehouse and ensuring real-time monitoring of inventory and security.

CN223567679UActive Publication Date: 2025-11-18JIANGSU AVIATION VOCATIONAL & TECH COLLEGE
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Patent Information

Application Number
CN202422723187.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-11-18
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Traditional warehouse scanning and early warning devices, which are easy to use for visual fault monitoring, cannot perform a comprehensive scan of the warehouse interior. This makes it difficult to understand the inventory status in real time, which may lead to overstocking or shortages, failure to detect damaged or spoiled goods in a timely manner, and failure to monitor safety hazards within the warehouse.

Method used

The design incorporates a monitoring camera, a moving component, a driving component, and a rotating component. By using a motor to drive gear meshing and a telescopic rod to move the camera, it can achieve horizontal and vertical movement and rotation, ensuring comprehensive monitoring of the warehouse.

Benefits of technology

It enables comprehensive scanning of goods within the warehouse, avoiding blind spots and allowing for timely detection of changes in inventory status and potential safety hazards, thereby improving the real-time nature and security of warehouse management.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223567679U_ABST
Patent Text Reader

Abstract

The utility model discloses a warehouse scanning early warning device convenient for visual fault monitoring, which relates to the technical field of warehouse scanning early warning and comprises a first support frame and a monitoring camera which are arranged in a warehouse body. The monitoring camera is arranged below the first supporting frame; a moving assembly for moving the monitoring camera is arranged on the first supporting frame, and a driving assembly for driving the first supporting frame to move is arranged at the top of the first supporting frame. The effect of driving the monitoring camera to move transversely is achieved through the moving assembly, so that the monitoring camera can scan and monitor materials transversely arranged in the warehouse body, the effect of driving the monitoring camera to move vertically is achieved through the driving assembly, and the monitoring camera can scan and monitor the materials in each row. And the problem of incomplete scanning is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of warehouse scanning early warning, specifically to a warehouse scanning early warning device convenient for visual fault monitoring. BACKGROUND

[0002] The warehouse scanning early warning device is a device for monitoring and managing the state and safety of goods in a warehouse, which can scan the goods, equipment and environmental conditions in the warehouse environment to timely discover potential problems and issue warnings. The warehouse scanning early warning device convenient for visual fault monitoring usually refers to a visual monitoring system or an image recognition system, which monitors and analyzes the goods, equipment and operations in the warehouse environment in real time through high-resolution cameras and image processing technology.

[0003] In the conventional warehouse scanning early warning device convenient for visual fault monitoring, the warehouse interior cannot be scanned comprehensively, which may result in the inability to understand the inventory status in real time, possible overstock or shortage, the inability to timely discover damaged or deteriorated goods, and the inability to monitor potential safety hazards in the warehouse. UTILITY MODEL CONTENT

[0004] The utility model aims to provide a warehouse scanning early warning device convenient for visual fault monitoring to solve the problem of the inability to comprehensively scan the warehouse interior in the background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] A warehouse scanning early warning device convenient for visual fault monitoring comprises a first support frame arranged inside a warehouse body.

[0007] A monitoring camera is arranged below the first support frame.

[0008] The device further comprises a moving assembly for moving the monitoring camera, which comprises first limiting grooves arranged on both sides of the first support frame, and sliding blocks slidingly connected in the first limiting grooves. The sliding blocks are fixedly connected with concave plates on the sides away from each other. The first support frame is provided with a first rack on one side. The concave plates are provided with a first motor at the bottom. The first motor is provided with a first rotating gear at the output end, and the first rotating gear is meshed with the first rack. The concave plates are further provided with an electric telescopic rod at the bottom. The electric telescopic rod is provided with a support plate at the output end. The support plate is rotatably connected with a rotating column at the bottom. The rotating column is connected with the monitoring camera. The first support frame is provided with a driving assembly for driving the first support frame to move. The support plate is provided with a rotating assembly for rotating the monitoring camera.

[0009] On the basis of the above technical solutions, the utility model further provides the following optional technical solutions.

[0010] In an alternative, the driving assembly comprises two second support frames, both of which are arranged at the top of the warehouse body, second limiting grooves are formed on both sides of the interior of the second support frames, limiting blocks are fixedly connected to both sides of the top of the first support frame, and the limiting blocks are slidably connected to the second limiting grooves, fixed plates are fixedly connected to both sides of the bottom of the first support frame, second racks are arranged at the bottom of both of the second support frames, a second motor is arranged on the side of the fixed plate close to the first support frame, a second rotating gear is arranged at the output end of the second motor, and the second rotating gear and the second rack are meshed with each other.

[0011] In an alternative, the rotating assembly comprises a third motor, the third motor is arranged at the top of the support plate, synchronous wheels are arranged at the output end of the third motor and the outer surface of the rotating column, and a synchronous belt is arranged between the two synchronous wheels.

[0012] In an alternative, the maximum output distance of the electric telescopic rod is greater than the height of the interior of the warehouse body.

[0013] In an alternative, mounting plates are arranged on both sides of both of the second support frames.

[0014] In an alternative, the limiting blocks and the second limiting grooves are of matching shapes and specifications.

[0015] In an alternative, the two second motors output at the same frequency.

[0016] In an alternative, the monitoring camera is provided with a plurality of searchlights.

[0017] Compared with the prior art, the utility model has the following beneficial effects:

[0018] 1、The first motor is started to drive the first rotating gear and the first rack to mesh, thereby driving the concave plate to move, so that the monitoring camera is driven to move horizontally, the effect of driving the monitoring camera to move horizontally is achieved, the materials arranged horizontally in the warehouse body can be scanned and monitored, and the problem of incomplete scanning is avoided.

[0019] 2、The driving assembly arranged on the first support frame achieves the effect of driving the monitoring camera to move vertically, the materials in each row can be scanned and monitored, and the problem of incomplete scanning is avoided.

[0020] 3、The rotating assembly arranged on the support plate achieves the effect of driving the monitoring camera to rotate, the monitoring camera can comprehensively monitor a range, and the problem of monitoring blind area is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is the structural schematic diagram of the utility model.

[0022] Figure 2 It is the structural cutaway view of the utility model.

[0023] Figure 3 It is the first support frame structure cutaway view of the utility model.

[0024] Figure 4 It is the second support frame structure schematic diagram of the utility model.

[0025] Among them: 100, warehouse body; 200, first support frame; 300, monitoring camera; 401, first limit slot; 402, concave plate; 403, first rack; 404, first motor; 405, first rotating gear; 406, electric telescopic rod; 407, support plate; 501, second support frame; 502, limit block; 503, second rack; 504, second motor; 505, second rotating gear; 601, third motor; 602, synchronous belt. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the following is combined with the drawings and example, and the utility model is further detailed.

[0027] In one embodiment, as Figures 1-4As shown in the warehouse scanning early warning device for visual fault monitoring, a warehouse body 100 is internally provided with a first support frame 200, a monitoring camera 300 and a moving assembly. The monitoring camera 300 is arranged below the first support frame 200. The moving assembly comprises first limiting grooves 401 arranged on both sides of the first support frame 200. Slides are slidably connected to the first limiting grooves 401. Concave plates 402 are fixedly connected to the slides away from each other. A first rack 403 is arranged on one side of the first support frame 200. A first motor 404 is arranged at the bottom of the concave plate 402. A first rotating gear 405 is arranged at the output end of the first motor 404. The first rotating gear 405 is meshed with the first rack 403. An electric telescopic rod 406 is arranged at the bottom of the concave plate 402. A support plate 407 is arranged at the output end of the electric telescopic rod 406. A rotating column is rotatably connected to the bottom of the support plate 407. The rotating column is connected to the monitoring camera 300. A driving assembly is arranged at the top of the first support frame 200 to drive the first support frame 200 to move. A rotating assembly is arranged on the support plate 407 to rotate the monitoring camera. The first motor 404 is started to drive the first rotating gear 405. Then, the concave plate 402 is driven to move horizontally under the action of the first rack 403.

[0028] In one embodiment, as shown in Figure 2 、 Figure 3 and Figure 4 , the driving assembly comprises two second support frames 501. The second support frames 501 are arranged at the top of the warehouse body 100. Second limiting grooves are arranged on both sides of the second support frames 501. Limiting blocks 502 are fixedly connected to both sides of the top of the first support frame 200. The limiting blocks 502 are slidably connected to the second limiting grooves. Fixed plates are fixedly connected to both sides of the bottom of the first support frame 200. Second racks 503 are arranged at the bottom of the second support frames 501. Second motors 504 are arranged on one side of the fixed plates close to the first support frame 200. Second rotating gears 505 are arranged at the output ends of the second motors 504. The second rotating gears 505 are meshed with the second racks 503. The second motors 504 are started to drive the second rotating gears 505 to rotate. Then, the first support frame 200 is driven to move vertically under the action of the second racks 503.

[0029] In one embodiment, as shown in Figure 3As shown, the rotating assembly comprises a third motor 601, the third motor 601 is arranged on the top of the support plate 407, the output end of the third motor 601 is provided with a synchronous wheel on the outer surface of the rotating column, and a synchronous belt 602 is arranged between the two synchronous wheels. By starting the third motor 601, one synchronous wheel is driven to rotate, and then under the action of the synchronous belt 602, the other synchronous wheel and the rotating column are driven to rotate, so as to drive the monitoring camera 300 to rotate.

[0030] In one embodiment, as shown in Figure 1 The maximum output distance of the electric telescopic rod 406 is greater than the height inside the warehouse body 100, so that the monitoring camera 300 can scan the goods at the bottom of the warehouse body 100.

[0031] In one embodiment, as shown in Figure 2 Two mounting plates are arranged on the two sides of the second support frame 501, which facilitates the installation of the second support frame 501.

[0032] In one embodiment, as shown in Figure 4 The limiting block 502 is matched with the shape specification of the second limiting groove, so that the limiting block 502 can slide in the second limiting groove.

[0033] In one embodiment, as shown in Figure 2 The two second motors 504 have the same frequency output, which prevents the movement of the first support frame 200 from interfering.

[0034] In one embodiment, as shown in Figure 3 The monitoring camera 300 is provided with a plurality of searchlights, which can increase the brightness and enable the monitoring camera 300 to clearly monitor visually.

[0035] The above embodiment discloses a warehouse scanning early warning device convenient for visual fault monitoring, wherein when the first row of goods is monitored and scanned, the first motor 404 can be started to drive the first rotating gear 405 to rotate, then under the fixed state of the first rack 403, the concave plate 402 and the sliding block are driven to slide in the first limiting groove 401, thereby driving the electric telescopic rod 406 and the monitoring camera 300 to move horizontally, so that the monitoring camera 300 can monitor and scan the goods in one row; when the height is different, the electric telescopic rod 406 can be started to change the height of the monitoring camera 300, so as to adapt to goods of different heights; when it is necessary to scan the goods arranged behind, the second motor 504 can be started to drive the second rotating gear 505 to rotate, then under the fixed state of the second rack 503, the limiting block 502 is driven to move in the second limiting groove, thereby driving the first supporting frame 200 to move vertically, so that the monitoring camera 300 can be driven to move between each row, thereby performing comprehensive monitoring and scanning; the third motor 601 can also be started to drive a synchronous wheel to rotate, then under the action of the synchronous belt 602, the other synchronous wheel and the rotating column are driven to rotate, thereby driving the monitoring camera 300 to rotate, so as to avoid the occurrence of a monitoring blind area.

[0036] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A warehouse scanning early warning device that facilitates visual failure monitoring, comprising: The first support frame (200) is arranged inside the warehouse body (100); The monitoring camera (300) is arranged below the first support frame (200); The monitoring camera (300) is arranged below the first support frame (200); The monitoring camera (300) is arranged below the first support frame (200); The monitoring camera (300) is arranged below the first support frame (200); 2. The warehouse scanning pre-alarm device for visual failure monitoring according to claim 1, wherein, The monitoring camera (300) is arranged below the first support frame (200); 3. The warehouse scanning pre-alarm device for visual failure monitoring according to claim 1, wherein, The monitoring camera (300) is arranged below the first support frame (200); 4. 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