Handheld vestibule damage inspection device
By designing a handheld corridor damage inspection device, which utilizes an electric fan to disperse the fog, combined with adjustable lighting and a camera, the problem of low efficiency in corridor damage detection is solved, enabling efficient and comprehensive inspection during the production process.
Patent Information
- Application Number
- CN202422673356.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-04
AI Technical Summary
The foggy environment generated during material transportation in the corridor makes damage detection inefficient and incomplete, and existing technologies cannot effectively detect damage during the production process.
A handheld corridor damage inspection device was designed, comprising a telescopic pole, a pan-tilt unit, a light source, a camera, an electric fan, and a dustproof mesh. The electric fan disperses the mist, and combined with adjustable lighting and camera position, effective damage detection is achieved.
Without interrupting production, it improves the efficiency and quality of damage detection, ensures the comprehensiveness of the detection range, simplifies operation, and prevents the effects of slippery hands and dust.
Smart Images

Figure CN223538777U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of corridor damage inspection technology, specifically a handheld corridor damage inspection device. Background Technology
[0002] Regular damage inspections of the corridor after prolonged use are beneficial for identifying damaged areas and reducing the risk of further damage. However, the corridor generates a large amount of mist during the transportation of materials (blast furnace slag), which can affect the inspection of corridor damage.
[0003] In the current technology, a large amount of mist is generated in the corridor during the transportation of materials (blast furnace slag). In the misty environment, the on-site detection of corridor damage generally requires waiting for the conveyor belt to stop production and for the mist to dissipate before the detection can be carried out. However, in actual on-site detection, the conveyor belt cannot be stopped for production and the mist is always present, resulting in extremely low efficiency of corridor damage detection and incomplete detection of the detection areas.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its deficiencies, and provided a handheld corridor damage inspection device. Utility Model Content
[0005] The purpose of this invention is to provide a handheld corridor damage inspection device to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a handheld corridor damage inspection device, comprising a telescopic rod one and a pan-tilt unit, wherein a telescopic rod two is slidably installed inside the telescopic rod one, and a connecting rod is provided inside the telescopic rod two; the pan-tilt unit is located on the top of the connecting rod; a collection platform is installed on the top of the pan-tilt unit; a lighting lamp is provided on one side of the collection platform; a camera is installed on the other side of the collection platform; a camera controller is provided behind the camera; an electric fan is provided behind the lighting lamp; and an adjustment component for position adjustment is installed at the bottom of the electric fan; the adjustment component includes a side plate, a guide plate, a slide, and an adapter seat; a guide plate is provided on the outer surface of the side plate; a slide is slidably installed on the outer side of the guide plate; and an adapter seat is provided on the top of the slide.
[0007] Furthermore, an electric fan is provided on the top of the adapter, and an auxiliary component for blocking dust is installed on one side of the electric fan.
[0008] Furthermore, the auxiliary component includes a dustproof mesh plate, a connecting column, and a slot, and the connecting column is arranged in a ring on the outer surface of the dustproof mesh plate, and the slot is installed on the outside of the connecting column.
[0009] Furthermore, the slot is annularly formed on the side of the electric fan near the dustproof mesh plate, and the dustproof mesh plate forms an engaging structure with the electric fan through the slot and connecting post.
[0010] Furthermore, a chassis is provided at the bottom of the telescopic rod, and an auxiliary plate is installed on the rear side of the bottom of the chassis.
[0011] Furthermore, a gimbal controller is installed inside the chassis, and an electric fan controller is installed below the gimbal controller.
[0012] Furthermore, the auxiliary plate one is provided with a protective component for protecting the electric fan controller and the gimbal controller. The protective component includes a threaded block, a connecting spring, an auxiliary plate two, and an airbag. The outer surface of the threaded block is provided with a connecting spring, and there are two sets of threaded blocks. One set of threaded blocks is threadedly connected to the auxiliary plate one, and the end of the other set of threaded blocks is threaded with the auxiliary plate two. The inner surface of the auxiliary plate two is provided with the auxiliary plate two.
[0013] Furthermore, the bottom of the lighting lamp and the camera are provided with mounting posts, and a sleeve is rotatably mounted on the outside of the mounting posts.
[0014] This utility model provides a handheld corridor damage inspection device, which has the following beneficial effects:
[0015] 1. This utility model can disperse the fog generated during the transportation of goods in a corridor by using an electric fan during damage inspection, thereby avoiding production interruptions caused by damage inspection, ensuring the inspection range and quality, and improving the efficiency of structural damage inspection. In addition, the sliding connection design of the guide plate and the slide seat allows for horizontal movement of the adapter and the electric fan connected to the adapter, which is beneficial for placing the electric fan behind the lighting or camera. After the position adjustment is completed, the guide plate and the slide seat are fixed by bolts. The structure is simple and easy for users to adjust according to the needs of corridor damage inspection.
[0016] 2. Through the design of the protective components, the auxiliary plate one and auxiliary plate two are shaped and structured to fit the user's fingers, which is beneficial for the user to hold the corridor damage inspection device. At the same time, the auxiliary plate one and auxiliary plate two are connected by a threaded block and a connecting spring, which allows the user to adaptively limit the position according to the thickness of the user's hand. The airbag design avoids the discomfort caused by the squeezing sensation when the user's hand is limited. The above structure helps to protect the electric fan controller and pan-tilt controller in the auxiliary plate one, and also prevents the corridor damage inspection device from slipping and falling off when the user holds the device. Attached Figure Description
[0017] Figure 1This is a schematic diagram of the overall structure of a handheld corridor damage inspection device according to the present invention.
[0018] Figure 2 This is a schematic diagram of the auxiliary component structure of a handheld corridor damage inspection device according to the present invention;
[0019] Figure 3 This is a schematic diagram of the unfolded structure of auxiliary plate one and auxiliary plate two of a handheld corridor damage inspection device according to this utility model.
[0020] In the diagram: 1. Telescopic rod one; 2. Telescopic rod two; 3. Connecting rod; 4. Pan-tilt head; 5. Assembly platform; 6. Lighting light; 7. Camera; 8. Sleeve; 9. Mounting column; 10. Chassis; 11. Auxiliary plate one; 12. Electric fan; 13. Auxiliary components; 1301. Dustproof mesh plate; 1302. Connecting column; 1303. Slot; 14. Adjustment component; 1401. Side plate; 1402. Guide plate; 1403. Slide; 1404. Adapter; 15. Electric fan controller; 16. Protective component; 1601. Threaded block; 1602. Connecting spring; 1603. Auxiliary plate two; 1604. Airbag; 17. Pan-tilt head controller; 18. Camera controller. Detailed Implementation
[0021] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0022] like Figure 1 and Figure 3As shown, a handheld corridor damage inspection device includes a telescopic rod 1, a telescopic rod 2, a connecting rod 3, a pan-tilt unit 4, a collection platform 5, a lighting lamp 6, a camera 7, a sleeve 8, a mounting column 9, a chassis 10, an auxiliary plate 11, an electric fan 12, auxiliary components 13, a dustproof mesh 1301, a connecting column 1302, a slot 1303, an adjustment component 14, a side plate 1401, a guide plate 1402, a slide 1403, an adapter 1404, an electric fan controller 15, a protective component 16, a threaded block 1601, a connecting spring 1602, an auxiliary plate 2 1603, an airbag 1604, a pan-tilt unit controller 17, and a camera controller 18. The telescopic rod 2 is slidably installed inside the telescopic rod 1, and the telescopic rod 2 has internal components... The device includes a connecting rod 3 and a base 10 at the bottom of the telescopic rod 1. An auxiliary plate 11 is mounted on the rear bottom of the base 10. A protective assembly 16 for protecting the fan controller 15 and the gimbal controller 17 is mounted on the outside of the auxiliary plate 11. The protective assembly 16 includes a threaded block 1601, a connecting spring 1602, an auxiliary plate 1603, and an airbag 1604. The connecting spring 1602 is mounted on the outer surface of the threaded block 1601. Two sets of threaded blocks 1601 are provided; one set is threadedly connected to the auxiliary plate 11, and the other set is threaded with the auxiliary plate 1603 at its end. The inner surface of the auxiliary plate 1603 is also provided with the auxiliary plate 1603. The auxiliary plate 11 and the auxiliary plate 1604... The shape and structure of 1603 conforms to the user's finger grip, facilitating handheld use of the corridor damage inspection device. Auxiliary plate 11 and auxiliary plate 2 1603 are connected by a threaded block 1601 and a connecting spring 1602, allowing for adaptive limiting based on the user's hand thickness. The airbag 1604 design avoids excessive pressure on the user's hand during limiting. This structure protects the fan controller 15 and pan-tilt controller 17 within auxiliary plate 11 and prevents the device from slipping and detaching when held. The pan-tilt controller 17 is housed inside the chassis 10, and a fan is installed below the pan-tilt controller 17. Controller 15 and gimbal controller 17 are electrically connected to gimbal 4 and can control the operation of gimbal 4. Fan controller 15 is electrically connected to fan 12 and can control the operation of fan 12. Gimbal 4 is located on top of connecting rod 3. A platform 5 is installed on top of gimbal 4, and a light 6 is installed on one side of platform 5. Mounting posts 9 are installed at the bottom of light 6 and camera 7, and a sleeve 8 is rotatably mounted on the outside of mounting post 9. There is a damping effect between mounting post 9 and sleeve 8, which allows the user to control the rotation of light 6 or camera 7 around the sleeve 8 according to the required viewing angle. Camera 7 is installed on the other side of platform 5.Furthermore, a camera controller 18 is located on the rear of camera 7. Through the sliding design of telescopic rod 1 and telescopic rod 2, the height of connecting rod 3, pan-tilt head 4, and assembly platform 5 can be adjusted. After height adjustment, the height between telescopic rod 1 and telescopic rod 2 is fixed by rotating the bolt clockwise. This operation allows for the adjustment of the height of lighting lamp 6 and camera 7 accordingly. This facilitates supplementary lighting by lighting lamp 6 as needed in the corridor, and allows for convenient video surveillance and inspection of the corridor using camera 7. Camera 7 is electrically connected to camera controller 18, allowing for control of camera 7 via camera controller 18.
[0023] like Figure 2 As shown, an electric fan 12 is installed behind the lighting lamp 6, and an adjustment assembly 14 for position adjustment is installed at the bottom of the electric fan 12. The adjustment assembly 14 includes a side plate 1401, a guide plate 1402, a slide 1403, and an adapter 1404. The guide plate 1402 is provided on the outer surface of the side plate 1401, and the slide 1403 is slidably installed on the outside of the guide plate 1402. The adapter 1404 is provided on the top of the slide 1403. The design of the electric fan 12 allows for the dispersal of fog generated during the passageway transportation process during damage inspection. To avoid production interruptions caused by damage detection, ensure the scope and quality of detection, and improve the efficiency of structural damage detection, the guide plate 1402 and the slide 1403 are designed to slide horizontally, allowing the adapter 1404 and the electric fan 12 connected to the adapter 1404 to be moved horizontally. This makes it easier to place the electric fan 12 behind the lighting lamp 6 or the camera 7. After the position adjustment is completed, the guide plate 1402 and the slide 1403 are fixed together with bolts. The structure is simple and easy for users to adjust according to the needs of corridor damage detection.
[0024] like Figure 2 As shown, an electric fan 12 is provided on the top of the adapter 1404, and an auxiliary component 13 for blocking dust is installed on one side of the electric fan 12. The auxiliary component 13 includes a dustproof mesh plate 1301, a connecting post 1302, and a slot 1303. The connecting post 1302 is arranged in a ring on the outer surface of the dustproof mesh plate 1301, and the slot 1303 is installed on the outside of the connecting post 1302. The slot 1303 is circumferentially opened on the side of the electric fan 12 near the dustproof mesh plate 1301. The dustproof mesh 1301 forms an engaging structure with the electric fan 12 through the slot 1303 and the connecting post 1302. When the electric fan 12 is operating, the dustproof mesh 1301 can block external foreign objects and dust, preventing the surface of the fan blades from being covered with too many foreign objects and increasing the workload. The dustproof mesh 1301 can be detachably installed with the electric fan 12 by means of the connecting post 1302 and the slot 1303, which is convenient for users to disassemble and clean the dustproof mesh 1301.
[0025] In summary, this handheld corridor damage inspection device firstly... Figures 1-3 The structure shown in the diagram provides a damping effect between the mounting post 9 and the sleeve 8 during use. This allows the user to control the rotation of the lighting lamp 6 or camera 7 around the sleeve 8 to adjust the viewing angle according to the user's needs. The auxiliary plates 11 and 1603 are shaped to fit the user's fingers, facilitating handheld use of the corridor damage inspection device. Furthermore, the auxiliary plates 11 and 1603 are connected to a connecting spring 1602 via a threaded block 1601, allowing for adaptive limiting based on the user's hand thickness. The airbag 1604 design also prevents injury to the user. The user's hand is confined by a squeezing sensation, which can cause significant discomfort. The aforementioned structure helps protect the fan controller 15 and pan / tilt controller 17 in the auxiliary plate 11. It also prevents the device from slipping and dislodging when the user holds it. After holding the device, the sliding design of telescopic rod 1 and telescopic rod 2 allows for height adjustment of the connecting rod 3, pan / tilt 4, and assembly platform 5. After height adjustment, the height between telescopic rod 1 and telescopic rod 2 is fixed by turning the bolt clockwise. This operation allows for the height adjustment of the lighting lamp 6 and camera 7, facilitating adjustments based on the passageway. The corridor requires supplemental lighting via lamp 6 to facilitate video surveillance of the corridor's condition using camera 7. Camera 7 is electrically connected to camera controller 18, allowing for control of its operation. Furthermore, during corridor damage inspection, the design of electric fan 12 disperses fog generated during transport, preventing production interruptions due to damage detection, ensuring inspection range and quality, and improving structural damage detection efficiency. Additionally, the sliding connection design of guide plate 1402 and slide block 1403 allows for horizontal positioning of adapter 1404 and the electric fan 12 connected to it. The movable position allows the electric fan 12 to be used behind the lighting lamp 6 or the camera 7. After the position adjustment is completed, the guide plate 1402 and the slide 1403 are fixed together by bolts, which makes it easy for the user to adjust according to the needs of the corridor inspection. Finally, when the electric fan 12 is operating, the dustproof mesh plate 1301 can block external foreign objects and dust, so as to avoid a lot of foreign objects adhering to the surface of the fan blades of the electric fan 12 and increasing the workload. The dustproof mesh plate 1301 can be detachably installed with the electric fan 12 by means of the design of the connecting column 1302 and the slot 1303, which makes it easy for the user to disassemble and clean the dustproof mesh plate 1301.
[0026] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A handheld corridor damage inspection device, comprising a telescopic rod (1) and a pan-tilt unit (4), characterized in that, Telescopic rod 2 (2) is slidably installed inside telescopic rod 1 (1), and a connecting rod (3) is provided inside telescopic rod 2 (2). The gimbal (4) is located on the top of the connecting rod (3). A gathering platform (5) is installed on the top of the gimbal (4), and a lighting lamp (6) is provided on one side of the gathering platform (5). A camera (7) is installed on the other side of the gathering platform (5), and a camera controller (18) is provided on the rear side of the camera (7). An electric motor is provided on the rear side of the lighting lamp (6). The fan (12) has an adjustment assembly (14) for position adjustment installed at the bottom of the electric fan (12). The adjustment assembly (14) includes a side plate (1401), a guide plate (1402), a slide (1403), and an adapter (1404). The guide plate (1402) is provided on the outer surface of the side plate (1401). The slide (1403) is slidably installed on the outside of the guide plate (1402). The adapter (1404) is provided on the top of the slide (1403).
2. The handheld corridor damage inspection device according to claim 1, characterized in that, The top of the adapter (1404) is provided with an electric fan (12), and an auxiliary component (13) for blocking dust is installed on one side of the electric fan (12).
3. The handheld corridor damage inspection device according to claim 2, characterized in that, The auxiliary component (13) includes a dustproof mesh plate (1301), a connecting post (1302) and a slot (1303), and the outer surface of the dustproof mesh plate (1301) is provided with a connecting post (1302) in a ring, and the outside of the connecting post (1302) is provided with a slot (1303).
4. A handheld corridor damage inspection device according to claim 3, characterized in that, The slot (1303) is circumferentially opened on the side of the electric fan (12) near the dustproof mesh plate (1301), and the dustproof mesh plate (1301) forms a locking structure with the electric fan (12) through the slot (1303) and the connecting post (1302).
5. A handheld corridor damage inspection device according to claim 1, characterized in that, The bottom of the telescopic rod (1) is provided with a chassis (10), and an auxiliary plate (11) is installed on the rear side of the bottom of the chassis (10).
6. A handheld corridor damage inspection device according to claim 5, characterized in that, The chassis (10) is equipped with a gimbal controller (17), and a fan controller (15) is installed below the gimbal controller (17).
7. A handheld corridor damage inspection device according to claim 6, characterized in that, The auxiliary plate one (11) is provided with a protective component (16) for protecting the electric fan controller (15) and the gimbal controller (17). The protective component (16) includes a threaded block (1601), a connecting spring (1602), an auxiliary plate two (1603) and an airbag (1604). The outer surface of the threaded block (1601) is provided with a connecting spring (1602). There are two sets of threaded blocks (1601). One set of threaded blocks (1601) is threadedly connected to the auxiliary plate one (11). The end of the other set of threaded blocks (1601) is threaded with the auxiliary plate two (1603). The inner surface of the auxiliary plate two (1603) is provided with the auxiliary plate two (1603).
8. A handheld corridor damage inspection device according to claim 1, characterized in that, The lighting lamp (6) and the camera (7) are provided with mounting posts (9) at their bottoms, and a sleeve (8) is rotatably mounted on the outside of the mounting posts (9).