Cabinet detection device for distribution cabinet

Through the cabinet detection device of the distribution cabinet, the material holding component and the material pressing mechanism are switched in horizontal and vertical states, the problem that the hole position detection of the distribution cabinet can only be judged after installation is solved, the detection efficiency and reliability of component installation are improved, and the service life of components is extended.

CN115682864BActive Publication Date: 2025-09-02GUANGDONG POWER GRID CO LTD +1
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Patent Information

Application Number
CN202211184473.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-27
Publication Date
2025-09-02
Estimated Expiration
2042-09-27

AI Technical Summary

Technical Problem

In the prior art, the hole position detection of the distribution cabinet cabinet body must be determined after the components are installed, resulting in low installation efficiency and affecting the life of the components.

Method used

The cabinet detection device of the distribution cabinet is adopted, including a base assembly, a material storage assembly and a material pressing mechanism. The material storage assembly is switched in horizontal and vertical states, and the components are fixed using a sticky medium, and the hole alignment is judged through the material storage mechanism to avoid disassembly and assemble the components before installation.

Benefits of technology

It improves the hole position detection efficiency, ensures the reliability and safety of component installation, avoids component damage, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of power distribution cabinets, and discloses a cabinet detection device for a power distribution cabinet. The cabinet detection device for a power distribution cabinet includes a base assembly, a material holding assembly, and a material pressing mechanism; the material holding assembly is rotatably connected to the base assembly to switch the material holding assembly between a horizontal state and a vertical state, and the upper surface of the material holding assembly has a sticky medium; the material pressing mechanism is installed on the base assembly, and the material pressing mechanism is used to press components into the sticky medium. The cabinet detection device provided by the present invention, by arranging the material holding assembly and the pressing mechanism, can press and fix the components on the sticky medium when the material holding assembly is in a horizontal position; by rotating the material holding assembly to a vertical state, the mounting structure of the component can be aligned with the hole position on the cabinet, thereby judging whether the mounting structure is aligned with the hole position, and judging whether the hole position on the cabinet is processed correctly, without having to install the component on the cabinet for hole position detection, thereby improving the efficiency of the cabinet hole position detection.
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Description

Technical Field

[0001] The present invention relates to the field of power distribution cabinets, and in particular to a cabinet body detection device for a power distribution cabinet. Background Art

[0002] High and low voltage distribution cabinets are distribution equipment used for power distribution, control, metering and cable connection in power supply systems. Power is connected through the high voltage switch cabinet, then stepped down by the transformer and led out to the low voltage distribution cabinet. Finally, it is transmitted through the low voltage distribution cabinet to the distribution boards, control boxes, switch boxes and other equipment that consume electricity.

[0003] The manufacturing of high and low voltage distribution cabinets generally begins with cabinet machining. After this machining, holes are drilled, and components are installed into the corresponding holes within the cabinet. Before component installation, the cabinet hole positions cannot be verified. Whether the cabinet hole machining meets the requirements can only be determined during or after component installation, affecting the correct installation of the components. Furthermore, if machining deviations are discovered during installation, the installed components must be disassembled, impacting installation efficiency. Repeated assembly and disassembly of components also shortens their service life.

[0004] Therefore, there is an urgent need for a cabinet detection device for a distribution cabinet to solve the above technical problems. Summary of the Invention

[0005] The object of the present invention is to provide a cabinet body detection device for a power distribution cabinet, so as to simplify the cabinet body hole position detection process of the power distribution cabinet, improve work efficiency and reduce labor costs.

[0006] To achieve this object, the present invention adopts the following technical solutions:

[0007] The cabinet detection device of the power distribution cabinet includes a base assembly, a material holding assembly and a material pressing mechanism;

[0008] The material holding assembly is rotatable about a first horizontal direction and is rotatably connected to the base assembly to switch the material holding assembly between a horizontal state and a vertical state, and an upper surface of the material holding assembly has a sticky medium;

[0009] A pressing mechanism is installed on the base assembly. The pressing mechanism 3 is used to press components into the viscous medium.

[0010] As an optional technical solution for a cabinet detection device of a power distribution cabinet, the material holding component includes a material holding bag, and the viscous medium is contained in the material holding bag.

[0011] As an optional technical solution for a cabinet detection device of a power distribution cabinet, an extrusion ring is provided across the material holding assembly, and the extrusion ring is slidably connected to the material holding assembly to press the components downward.

[0012] As an optional technical solution for the cabinet detection device of a distribution cabinet, an elastic member is provided under the material holding assembly, one end of the elastic member is connected to the material holding assembly, and when the material holding assembly is in a horizontal state, the other end of the elastic member abuts against the base assembly.

[0013] As an optional technical solution for a cabinet detection device of a power distribution cabinet, the pressing mechanism can be slidably arranged on the base assembly along a second horizontal direction, and the second horizontal direction is perpendicular to the first horizontal direction.

[0014] As an optional technical solution for the cabinet detection device of a distribution cabinet, the pressing mechanism includes a support rod and a pressing assembly. The support rod is vertically arranged and the lower end is slidably connected to the base assembly. The pressing assembly is rotatably installed on the top of the support rod. The rotation axis of the pressing assembly is arranged along the first horizontal direction. The pressing assembly is used to press the components into the viscous medium.

[0015] As an optional technical solution for the cabinet detection device of a distribution cabinet, a rotating seat is rotatably installed on the top of the support rod, the rotation axis of the rotating seat is set along the first horizontal direction, and the rotating seat is evenly connected with multiple pressing components along the circumference.

[0016] As an optional technical solution for a cabinet detection device of a power distribution cabinet, the pressing mechanism includes a motor, and the motor is used to drive the rotating seat to rotate.

[0017] As an optional technical solution for a cabinet detection device of a distribution cabinet, the pressing assembly includes a roller and a rotating shaft, the rotating shaft is connected to the rotating seat, the roller is rotatably sleeved on the rotating shaft, and the axis of the rotating shaft is set along the first horizontal direction.

[0018] As an optional technical solution for a cabinet detection device of a distribution cabinet, the distance between the pressing component and the rotation axis of the rotating seat can be adjusted.

[0019] As an optional technical solution for the cabinet body detection device of a distribution cabinet, the pressing mechanism also includes a connecting seat, the rotating seat is rotatably installed on the connecting seat, and the connecting seat is elastically connected to the support rod so that the connecting seat can float in the vertical direction relative to the support rod.

[0020] As an optional technical solution for a cabinet detection device of a power distribution cabinet, a positioning piece is provided on the base assembly, and the positioning piece protrudes from the front side of the base assembly and is used to abut against the side wall of the cabinet.

[0021] As an optional technical solution for a cabinet detection device of a power distribution cabinet, the positioning member is elastically connected to the base assembly so that the positioning member can be extended and retracted along a second horizontal direction, which is perpendicular to the first horizontal direction.

[0022] Beneficial effects of the present invention:

[0023] The cabinet detection device provided by the present invention is provided with a material holding assembly and a pressing mechanism, so that when the material holding assembly is in a horizontal position, the components can be pressed and fixed on the adhesive medium; by rotating the material holding assembly to a vertical state, the mounting structure of the component can be aligned with the hole position on the cabinet, so by judging whether the mounting structure is aligned with the hole position, it is judged whether the hole position on the cabinet is processed correctly, and there is no need to install the component on the cabinet for hole position detection, thereby improving the efficiency of cabinet hole position detection and improving the reliability and safety of component installation; at the same time, since the component is fixed by pressing it into the adhesive medium, it will not cause damage to the component, and repeated disassembly and assembly of the component can be avoided, thereby ensuring the service life of the component. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a front view of the cabinet detection device provided in the first embodiment of the present invention;

[0025] Figure 2 This is a structural diagram of a material pressing mechanism of a cabinet detection device provided in the first embodiment of the present invention;

[0026] Figure 3 This is a partial structural diagram of a positioning member and a base assembly of a cabinet detection device provided in Example 1 of the present invention;

[0027] Figure 4 This is a front view of the cabinet detection device provided in the second embodiment of the present invention.

[0028] In the picture:

[0029] 1. Base assembly; 11. Guide groove; 111. Return spring;

[0030] 2. Material holding assembly; 21. Viscous medium; 22. Material holding bag; 23. Rotating plate; 24. Handle;

[0031] 3. Pressing mechanism; 31. Support rod; 311. Slide plate; 32. Pressing assembly; 321. Roller; 322. Rotating shaft; 33. Rotating seat; 331. Rotating wheel; 332. Rotating disk; 333. Solenoid; 334. Screw; 34. Connecting seat; 341. Fixed cylinder; 342. Sliding sleeve; 35. Motor; 36. Sliding rod; 37. Coil spring;

[0032] 4. Extrusion ring; 41. Guide rail;

[0033] 5. Elastic parts;

[0034] 6. Positioning part; 61. Top plate; 62. Push rod; 621. Slip ring; 63. Slide rail; 631. Adjustment spring; 632. Nut. DETAILED DESCRIPTION

[0035] The present invention will be further described in detail below with reference to the accompanying drawings and examples. It will be understood that the specific embodiments described herein are intended only to illustrate the present invention and are not intended to limit the present invention. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions relevant to the present invention, not all structures.

[0036] In the description of the present invention, unless otherwise expressly specified or limited, the terms "connected," "connected," and "fixed" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention in specific circumstances.

[0037] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0038] In the description of this embodiment, the terms "upper," "lower," "right," and other orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely for ease of description and simplified operation. They do not indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meanings.

[0039] Example 1:

[0040] In order to check the hole positions in the cabinet before installing the components in the distribution cabinet to ensure that the components can be installed smoothly, this embodiment provides a cabinet detection device for the distribution cabinet. Figure 1-Figure 3This embodiment is described in detail.

[0041] like Figure 1 As shown, the cabinet detection device of the distribution cabinet includes a base assembly 1, a material holding assembly 2 and a material pressing mechanism 3. The material holding assembly 2 can be rotatably connected to the base assembly 1 around a first horizontal direction to switch the material holding assembly 2 between a horizontal state and a vertical state. The upper surface of the material holding assembly 2 has a sticky medium 21; the material pressing mechanism 3 is installed on the base assembly 1, and the material pressing mechanism 3 is used to press components into the sticky medium 21.

[0042] The cabinet detection device provided in this embodiment is provided with a material holding component 2 and a material pressing mechanism 3, so that when the material holding component 2 is in a horizontal position, the components can be pressed and fixed on the adhesive medium 21; by rotating the material holding component 2 to a vertical state, the mounting structure of the component can be aligned with the hole position on the cabinet, so that by judging whether the mounting structure is aligned with the hole position, it is judged whether the hole position on the cabinet is processed correctly, and there is no need to install the component on the cabinet for hole position detection, thereby improving the efficiency of cabinet hole position detection and improving the reliability and safety of component installation; at the same time, since the component is fixed by pressing it into the adhesive medium 21, it will not cause damage to the component, and avoids repeated disassembly and assembly of the component, thereby ensuring the service life of the component.

[0043] like Figure 1 As shown, the material holding assembly 2 is mounted on the base assembly 1 and connected to the base assembly 1 via a rotating mechanism. The rotating mechanism includes a first rotating block, a second rotating block, and a rotating shaft. The axis of the rotating shaft is arranged along a first horizontal direction. The first rotating block is mounted on the front end of the upper surface of the base assembly 1. The second rotating block is connected to the first rotating block via the rotating shaft and is mounted on the lower surface of the material holding assembly 2. The configuration of the rotating mechanism ensures that the material holding assembly 2 can switch between horizontal and vertical positions, completing the two operating steps of pressing and testing.

[0044] like Figure 1 As shown, the base assembly 1 includes a bottom plate, a grip and a roller. The roller is installed under the bottom plate to facilitate the movement of the cabinet detection device. A grip is provided on the rear side of the bottom plate, and a handle is installed on the grip to facilitate the user to move the cabinet detection device.

[0045] The material holding assembly 2 includes a rotating plate 23, a material holding sac 22, and a viscous medium 21. The rotating plate 23 is connected to the second rotating block. The material holding sac 22 is mounted on the rotating plate 23, and the viscous medium 21 is contained in the material holding sac 22. By separately disposing the rotating plate 23 and the material holding sac 22, different sizes of material holding sacs 22 can be selected and mounted on the rotating plate 23 according to different needs during use, which also facilitates the filling and replacement of the viscous medium 21.

[0046] Preferably, the container 22 is made of a deformable material, such as rubber or canvas. This material prevents the adhesive medium 21 from being squeezed out when the component is pressed into the adhesive medium during use, thus providing the container 22 with good shape adaptability. Preferably, the adhesive medium 21 can be plasticine, which is readily available, inexpensive, and leaves no adhesive residue on the component surface after use, thereby preventing the component from functioning properly.

[0047] Furthermore, an elastic member 5 is provided under the rotating plate 23, and the elastic member 5 may be a spring or the like. One end of the elastic member 5 is connected to the lower surface of the rotating plate 23, and when the material holding assembly 2 is placed horizontally, the other end of the elastic member 5 abuts against the upper surface of the base assembly 1. The elastic member 5 can support the material holding assembly 2 during the material pressing process and act as a buffer. When the material holding assembly 2 is placed vertically, the elastic member 5 returns to its initial state. The elastic member 5 is provided on the side of the rotating plate 23 away from the rotating mechanism. Preferably, a handle 24 is installed on the lower surface of the rotating plate 23 to facilitate holding the material holding assembly 2 during the inspection process.

[0048] like Figure 2 As shown, the pressing mechanism 3 includes a support rod 31 and a pressing assembly 32. The support rod 31 is vertically arranged and connected to the base assembly 1 at its lower end. The pressing assembly 32 is rotatably mounted on the top of the support rod 31. The rotation axis of the pressing assembly 32 is arranged along the first horizontal direction. The pressing assembly 32 is used to press the components into the viscous medium 21. The rotatable pressing assembly can press the components into the material holding assembly without changing the relative placement of the components.

[0049] The pressing mechanism 3 can be slidably arranged on the base assembly 1 along a second horizontal direction, and the second horizontal direction is perpendicular to the first horizontal direction. By slidingly connecting the pressing mechanism 3 to the base assembly 1, the pressing mechanism 3 can slide in a direction close to or away from the material holding assembly 2, so that when it is necessary to press the components, the pressing mechanism 3 can be slid to the vicinity of the material holding assembly 2, and the pressing assembly 32 can be located directly above the components to achieve pressing on the components; when it is necessary to rotate the material holding assembly 2, the pressing mechanism 3 can be slid away from the material holding assembly 2 to avoid the pressing mechanism 3 interfering with the rotation of the material holding assembly 2. Furthermore, the sliding setting can adjust the position between the pressing mechanism 3 and the material holding assembly 2, so that components at different positions in the first horizontal direction can be pressed, thereby improving applicability and flexibility of use.

[0050] In this embodiment, the support rod 31 is slidably connected to the base assembly 1. Specifically, a slide 311 is connected below the support rod 31. The base assembly 1 has a guide groove 11 extending along the second horizontal direction on the bottom plate, and the slide 311 slides within the guide groove 11. The cooperation between the slide 311 and the guide groove 11 allows the press mechanism 3 to slide along the second horizontal direction, ensuring the sliding reliability of the support rod 31. Furthermore, the provision of the slide 311 avoids the problem of a small contact area caused by a direct connection between the support rod 31 and the base assembly 1.

[0051] Preferably, the pressing mechanism 3 has an initial position away from the material receiving assembly 2. A return spring 111 is connected between the slide plate 311 and one end of the groove wall of the guide groove 11. The return spring 111 serves to maintain or return the pressing mechanism 3 to its initial position. In other words, the return spring 111 can be provided to reset the pressing mechanism 3 and prevent it from interfering with the rotation of the material receiving assembly 2.

[0052] The pressing assembly 32 is connected to the support rod 31 via a rotating base 33. The rotating base 33 is rotatably mounted on the top of the support rod 31, with its rotation axis arranged along a first horizontal direction. Multiple pressing assemblies 32 are evenly connected to the rotating base 33 along its circumference. By providing the rotating base 33, multiple pressing assemblies 32 can be connected to the support rod 31, improving the pressing efficiency. Furthermore, when pressing the same electrical component, the rotating base 33 can be rotated so that multiple pressing assemblies 32 act sequentially on the component being pressed, ensuring that the component is reliably pressed into the viscous medium and improving the pressing effect.

[0053] Furthermore, the pressing mechanism 3 further includes a connecting seat 34, on which the rotating seat 33 is rotatably mounted, and the connecting seat 34 is elastically connected to the support rod 31 so that the connecting seat 34 can float vertically relative to the support rod 31. This arrangement can effectively reduce the possibility of the pressing assembly 32 getting stuck or the component being damaged when the pressing mechanism 3 is used to press the component.

[0054] Specifically, the connecting seat 34 includes a fixed cylinder 341 and a sliding sleeve 342 connected to the lower side of the fixed cylinder 341. The axis of the fixed cylinder 341 extends along the first horizontal direction, and the axis of the sliding sleeve 342 extends along the vertical direction. The pressing mechanism 3 also includes a sliding rod 36 and a coil spring 37. The upper and lower ends of the sliding rod are respectively inserted into the sliding sleeve 342 and the support rod 31. The sliding rod 36 is fixedly connected to one of the sliding sleeve 342 and the support rod 31, and is slidably connected to the other of the sliding sleeve 342 and the support rod 31. The coil spring 37 is sleeved on the sliding rod 36, and the two ends of the coil spring 37 are respectively in contact with the sliding sleeve 342 and the support rod 31. The above arrangement enables the connecting seat 34 to float up and down relative to the support rod 31 through the sliding fit between the sliding rod 36 and the sliding sleeve or the support rod 31 and the arrangement of the coil spring 37.

[0055] The connecting base 34 is provided with a motor slot, in which a motor 35 is fixedly mounted. The output shaft of the motor 35 is arranged along a first horizontal direction. The rotating base 33 is connected to the output shaft of the motor 35 and is driven by the motor 35. Using the motor to drive the rotating base 33 to rotate ensures a relatively stable rotation speed, which makes the pressing more uniform. In other embodiments, the motor 35 may not be used, and the rotating base 33 can also be rotated manually. The operator can manually control the rotation speed of the rotating base 33 according to actual needs.

[0056] The rotating base 33 includes a rotating wheel 331 and a rotating disk 332. The rotating wheel 331 is connected to the output shaft of the motor 35. The rotating disk 332 is mounted outside the rotating wheel 331. Multiple pressing assemblies 32 are evenly distributed along the outer side of the rotating disk 332. The rotating disk 332 and the rotating wheel 331 are detachably connected. The operator can select different models of rotating disk 332 to match the rotating wheel 331 according to actual usage to achieve better material pressing effect.

[0057] Preferably, the distance between the pressing assembly 32 and the rotation axis of the rotating base 33 is adjustable to facilitate the pressing process during operation of the device. Specifically, multiple screw tubes 333 are evenly fixed to the outside of the turntable 332. Each pressing assembly 32 is connected to a screw rod 334, which is installed in each screw tube 333. The coordination of the screw tubes 333 and the screw rods 334 allows the distance between the pressing assembly 32 and the rotating base 33 to be adjusted.

[0058] In this embodiment, each pressing assembly 32 includes a roller 321 and a rotating shaft 322. The pressing assembly 32 is connected to the rotating base 33 via the rotating shaft 322. The axis of the rotating shaft 322 is arranged along the first horizontal direction, and the roller 321 is rotatably mounted on the rotating shaft 322. The provision of the roller 321 can reduce the resistance of the components to the pressing assembly 32 during the pressing process, ensuring more uniform pressing. Preferably, the roller 321 can be wrapped with a soft material such as rubber, sponge, etc. to prevent damage to the components.

[0059] like Figure 3 As shown, the base assembly 1 is also provided with a positioning member 6. The positioning member 6 protrudes from the front side of the base assembly 1. When the cabinet detection device is used, the outer end of the positioning member 6 abuts against the cabinet to prevent the cabinet detection device from colliding with the cabinet. The positioning member 6 includes a top plate 61 and a top rod 62. The top plate 61 is vertically arranged at the front end of the positioning member 6. The top plate 61 is used to abut against the cabinet to increase the contact area with the cabinet. The top rod 62 is connected between the top plate 61 and the base assembly 1.

[0060] Furthermore, the positioning member 6 is elastically connected to the base assembly 1. The positioning member 6 with an elastic connection can achieve a better shock absorption effect and prevent the device from being damaged due to collision with the cabinet. Specifically, a slip ring 64 is provided at one end of the top rod 62 close to the base assembly 1. A slide rail 63 is installed at the front end of the base assembly 1 along the second horizontal direction, and the slip ring 64 is sleeved on the slide rail 63. An adjustment spring 631 is also provided between the end of the slide rail 63 away from the top plate 61 and the slip ring 64. Through the above arrangement, the positioning member 6 can be extended and retracted along the second horizontal direction.

[0061] Preferably, the slide rail 63 is also provided with a nut 632 that can be adjusted along the extension direction of the slide rail 63. The adjustment spring 631 is placed between the nut 632 and the slip ring 64. By adjusting the nut 632, the tightness of the adjustment spring 631 can be changed to control the size of the elastic force when the positioning member 6 abuts, so that the elastic force is smaller than the friction force of the device itself, and the cabinet detection device is parked stably.

[0062] The working process of the cabinet detection device of the present distribution cabinet is as follows: the operator first holds the handle and pushes the device to the vicinity of the high and low voltage distribution cabinet; places the components to be installed in the distribution cabinet on the surface of the viscous medium 21 in the material holding bag 22; then, by sliding the slide plate 311 and the guide groove 11, the pressing component 32 can be moved to the top of the material holding component 2; the switch of the motor 35 is turned on to drive the rotating seat 33 to rotate so that the pressing component 32 presses the components placed on the material holding bag 22 to position the components in the viscous medium 21; after the pressing process is completed, the pressing mechanism 3 is reset to a position away from the material holding component 2; then hold the handle 24 under the rotating plate 23 and rotate the material holding component 2 to rotate the material holding component 2 to a vertical state, and place the components in the material holding component 2 in the cabinet; observe whether the holes opened on the cabinet correspond to the components, so that the holes opened on the cabinet can be detected to facilitate the installation of components.

[0063] Example 2:

[0064] This embodiment provides a cabinet detection device for a power distribution cabinet. Compared with the first embodiment, the cabinet detection device for a power distribution cabinet provided in this embodiment has the same basic structure, and only differs in the material holding component 2. This embodiment will no longer repeat the structure that is the same as that of the first embodiment.

[0065] like Figure 4 As shown, a squeeze ring 4 is positioned above the container assembly 2 and is slidably connected to the container assembly 2 to press the components downward. During use of the testing device, after the pressing mechanism 3 presses the components into the viscous medium 21, the squeeze ring 4 slides to squeeze the components, thereby re-fixing and flattening the components.

[0066] Specifically, the extrusion ring 4 is a U-shaped structure with the opening facing the other side. A guide rail 41 is fixedly installed on the side of the rotating plate 23 of the material holding assembly 2 . The two side portions of the U-shaped structure are respectively slidably connected to the two guide rails 41 .

[0067] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention and are not intended to limit the embodiments of the present invention. A person skilled in the art would be able to make various obvious changes, readjustments, and substitutions without departing from the scope of protection of the present invention. It is not necessary and impossible to enumerate all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.

Claims

1. The cabinet detection device of the power distribution cabinet is characterized in that: include: Base assembly (1); A material holding assembly (2), the material holding assembly (2) being rotatably connected to the base assembly (1) so as to be rotatable about a first horizontal direction so as to switch the material holding assembly (2) between a horizontal state and a vertical state, and the upper surface of the material holding assembly (2) having a viscous medium (21); A pressing mechanism (3), the pressing mechanism (3) being mounted on the base assembly (1), and the pressing mechanism (3) being used to press components into the viscous medium (21); When the material holding assembly (2) is in the horizontal position, the component is pressed and fixed on the adhesive medium (21), and then the material holding assembly (2) is rotated to the vertical state, so that the mounting structure of the component is aligned with the hole position on the cabinet, and it is determined whether the mounting structure and the hole position are aligned, thereby determining whether the hole position on the cabinet is processed correctly.

2. The cabinet detection device for a power distribution cabinet according to claim 1, characterized in that: The material holding component (2) comprises a material holding bag (22), and the viscous medium (21) is contained in the material holding bag (22).

3. The cabinet detection device for a power distribution cabinet according to claim 1, characterized in that: An extrusion ring (4) is provided on the material holding assembly (2), and the extrusion ring (4) is slidably connected to the material holding assembly (2) to press the component downward.

4. The cabinet detection device for a power distribution cabinet according to claim 1, characterized in that: An elastic member (5) is provided below the material holding assembly (2), one end of the elastic member (5) is connected to the material holding assembly (2), and when the material holding assembly (2) is in the horizontal state, the other end of the elastic member (5) abuts against the base assembly (1).

5. The cabinet detection device for a power distribution cabinet according to any one of claims 1 to 4, characterized in that: The pressing mechanism (3) can be slidably arranged on the base assembly (1) along a second horizontal direction, and the second horizontal direction is perpendicular to the first horizontal direction.

6. The cabinet detection device for a power distribution cabinet according to claim 5, characterized in that: The pressing mechanism (3) comprises a support rod (31) and a pressing assembly (32), wherein the support rod (31) is vertically arranged and the lower end is connected to the base assembly (1), and the pressing assembly (32) is rotatably mounted on the top of the support rod (31), and the rotation axis of the pressing assembly (32) is arranged along the first horizontal direction. The pressing assembly (32) is used to press the component into the viscous medium (21).

7. The cabinet detection device for a power distribution cabinet according to claim 6, characterized in that: A rotating seat (33) is rotatably mounted on the top of the support rod (31), the rotating axis of the rotating seat (33) is arranged along the first horizontal direction, and the rotating seat (33) is evenly connected to a plurality of the pressing assemblies (32) along the circumferential direction.

8. The cabinet detection device for a power distribution cabinet according to claim 7, characterized in that: The pressing mechanism (3) comprises a motor (35), and the motor (35) is used to drive the rotating seat (33) to rotate.

9. The cabinet detection device for a power distribution cabinet according to claim 7, characterized in that: The pressing assembly (32) comprises a roller (321) and a rotating shaft (322), wherein the rotating shaft (322) is connected to the rotating seat (33), and the roller (321) is rotatably sleeved on the rotating shaft (322), wherein the axis of the rotating shaft (322) is arranged along the first horizontal direction.

10. The cabinet detection device for a power distribution cabinet according to claim 7, characterized in that: The distance between the pressing component (32) and the rotation axis of the rotating seat (33) can be adjusted.

11. The cabinet detection device for a power distribution cabinet according to claim 7, characterized in that: The pressing mechanism (3) further includes a connecting seat (34), the rotating seat (33) is rotatably mounted on the connecting seat (34), and the connecting seat (34) is elastically connected to the support rod (31) so that the connecting seat (34) can float in a vertical direction relative to the support rod (31).

12. The cabinet detection device for a power distribution cabinet according to any one of claims 1 to 4, characterized in that: A positioning member (6) is provided on the base assembly (1), and the positioning member (6) protrudes from the front side of the base assembly (1) and is used to abut against the side wall of the cabinet.

13. The cabinet detection device for a power distribution cabinet according to claim 12, characterized in that: The positioning member (6) is elastically connected to the base assembly (1) so that the positioning member (6) can be extended and retracted relative to the base assembly (1) along a second horizontal direction, wherein the second horizontal direction is perpendicular to the first horizontal direction.

Citation Information

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