Intelligent breaker distribution box
By designing an intelligent circuit breaker distribution box, the combination of the box body and the telescopic structure solves the problems of insufficient space and heat dissipation in the distribution box, realizes heat dissipation and waterproof and dustproof properties of the circuit breaker, and improves the safety of the distribution box.
Patent Information
- Application Number
- CN202423301082.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing distribution boxes lack sufficient space when installing multiple circuit breakers, necessitating the use of multiple distribution boxes. Furthermore, the heat generated by the circuit breakers during operation cannot be effectively dissipated, leading to aging and potential safety hazards.
An intelligent circuit breaker distribution box was designed, comprising components such as a box body, telescopic structure, ventilation structure, and sliding groove. These components enable wire limiting, ventilation and heat dissipation, and waterproofing and dustproofing, ensuring the normal operation of the circuit breaker.
By effectively utilizing the internal space of the enclosure, the circuit breaker is able to dissipate heat and be waterproofed and dustproofed, avoiding aging and safety hazards caused by high temperatures, and improving the safety of the distribution box.
Smart Images

Figure CN223912141U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of distribution box, concretely is a kind of intelligent circuit breaker distribution box. BACKGROUND
[0002] Distribution box is the last stage equipment of distribution system, according to electrical wiring requirement, switch device, measuring instrument, protection electric appliance and auxiliary equipment are assembled in closed or semi-closed metal cabinet or screen panel, and constitute low-voltage distribution device.
[0003] However, when the existing distribution box installs multiple circuit breakers, it is easy to cause multiple distribution boxes to protect due to small internal space, and the circuit breaker inside the distribution box will also emit heat when working, which can easily cause the circuit breaker to age and cause safety hazards if it cannot be cooled.
[0004] Therefore, in order to solve the above problems, an intelligent circuit breaker distribution box is proposed. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing an intelligent circuit breaker distribution box to solve the problem that the existing distribution box in the prior art mentioned in the above background art is easy to cause multiple distribution boxes to protect due to small internal space when installing multiple circuit breakers, and the circuit breaker inside the distribution box will also emit heat when working, which can easily cause the circuit breaker to age and cause safety hazards if it cannot be cooled.
[0006] To achieve the above purpose, the utility model provides the following technical scheme: an intelligent circuit breaker distribution box, comprising: a distribution box and a telescopic structure, the box body inside the distribution box is hollow into a ventilation structure, the rear end of the ventilation structure is hollow into a first ventilation groove, the upper and lower ends of the box body in the distribution box are hollow into a first sliding groove, the second sliding block in the telescopic structure is movably connected inside the first sliding groove, the inside of the second sliding block is bolted with an outer shell, and the inside of the outer shell is bolted with a second wire slot.
[0007] Preferably, the first wire slot is bolted to the two sides of the box body inside the distribution box, the ventilation structure is bolted to the inside of the box body, and the first sliding groove is hollow into the upper and lower ends of the box body.
[0008] Preferably, the upper end of the box body is bolted with a jack, the rear end of the box body is bolted with a third sliding groove, the rear end of the box body is hollow into a first ventilation groove, and the first ventilation groove is communicated with the ventilation structure.
[0009] Preferably, the second air passage is hollow in the lower end of the box body and communicates with the air passage structure, the first sliding block is movably connected inside the third sliding groove, and the connecting plate is welded to the rear end of the first sliding block.
[0010] Preferably, the hinge is connected to one side of the shell in the telescopic structure by bolts.
[0011] Preferably, the air hole is hollow in one side of the shell, and the second wire slot is connected to the inside of the shell by bolts.
[0012] Preferably, the door plate is connected to one side of the shell by a hinge shaft, the clamping block is connected to the upper end of the shell by bolts, and the third sliding block is welded to the rear end of the shell.
[0013] Compared with the prior art, the utility model has the beneficial effects that:
[0014] 1. The utility model discloses a box body, a first wire slot, an air passage structure, a first sliding groove, a jack, a third sliding groove, a first air passage, a second air passage, a first sliding block, a connecting plate and a baffle are arranged, the first wire slot in the box body can limit the electric wire, the air passage structure can ventilate the inside of the box body, the first sliding groove can movably connect the second sliding block and the third sliding block, the first sliding groove is hollow in the upper and lower ends and can limit the second sliding block so that the second sliding block does not separate from the first sliding groove, the jack can insert the clamping block, the third sliding groove can movably connect the first sliding block, the first air passage can ventilate the air in the inside of the box body, the second air passage can ventilate the gas in the inside of the box body, the first sliding block can make the connecting plate block the rear end of the box body, and the baffle can block the upper end of the box body, so that rainwater cannot penetrate into the box body from the upper end.
[0015] 2. The utility model discloses a shell, a hinge, a second sliding block, an air hole, a second wire slot, a door plate, a clamping block and a third sliding block are arranged, the hinge can make the shell can oscillate in sector, the second sliding block can make the hinge can movably connect in the first sliding groove, the air hole can ventilate the gas in the inside of the shell, and the third sliding block can make the shell can movably connect in the first sliding groove. DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the structure perspective schematic diagram of the utility model;
[0017] Figure 2 It is the structure perspective schematic diagram of the utility model;
[0018] Figure 3 It is the structure perspective bottom view schematic diagram of the utility model;
[0019] Figure 4The utility model discloses a structure three -dimensional rear -view schematic diagram of the utility model.
[0020] Figure 5 The utility model discloses a structure three -dimensional schematic diagram of the utility model distribution box.
[0021] In the drawing: 1, distribution box;101, box body;102, first wire slot;103, ventilation structure;104, first sliding slot;105, jack;106, third sliding slot;107, first ventilation slot;108, second ventilation slot;109, first sliding block;110, connecting plate;111, baffle;2, telescopic structure;201, shell;202, hinge;203, second sliding block;204, ventilation hole;205, second wire slot;206, door plate;207, clamping block;208, third sliding block. DETAILED DESCRIPTION
[0022] The technical scheme in the embodiments of the utility model will be apparently and completely described in connection with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the range of protection of the utility model.
[0023] Please refer to Figures 1-5 The utility model provides an embodiment:
[0024] A kind of intelligent circuit breaker distribution box, comprising: distribution box 1 and telescopic structure 2, the hollow ventilation structure 103 in the box body 101 inside distribution box 1, the hollow first ventilation slot 107 in the rear end of ventilation structure 103, the hollow first sliding slot 104 in the upper and lower ends of box body 101 in distribution box 1, second sliding block 203 in telescopic structure 2 is movably connected in the inside of first sliding slot 104, second sliding block 203 inner side is bolted with shell 201, second wire slot 205 is bolted in the inside of shell 201.
[0025] Further, the inside of box body 101 in distribution box 1 is bolted with first wire slot 102, box body 101 inside is bolted with ventilation structure 103, the hollow first sliding slot 104 in the upper and lower ends of box body 101, the first wire slot 102 in the inside of box body 101 is used to limit wire, ventilation structure 103 is used to ventilate in the inside of box body 101, first sliding slot 104 is used to movably connect second sliding block 203 and third sliding block 208, the hollow upper and lower ends of first sliding slot 104 are used to limit second sliding block 203 so that second sliding block 203 does not separate from first sliding slot 104.
[0026] Further, the upper end of the box 101 is bolted with the jack 105, the rear end of the box 101 is bolted with the third sliding slot 106, the rear end of the box 101 is hollowed into the first ventilation groove 107, the first ventilation groove 107 is communicated with the ventilation structure 103, the jack 105 is used for inserting the block 207, the third sliding slot 106 is used for movably connecting the first sliding block 109, and the first ventilation groove 107 is used for ventilating the inside of the box 101.
[0027] Further, the lower end of the box 101 is hollowed into the second ventilation groove 108, the second ventilation groove 108 is communicated with the ventilation structure 103, the first sliding block 109 is movably connected in the third sliding slot 106, the rear end of the first sliding block 109 is welded with the connecting plate 110, the upper end of the connecting plate 110 is welded with the baffle 111, the second ventilation groove 108 is used for ventilating the inside of the box 101, the first sliding block 109 is used for enabling the connecting plate 110 to block the rear end of the box 101, and the baffle 111 is used for blocking the upper end of the box 101, so that rainwater cannot penetrate into the box from the upper end.
[0028] Further, one side of the shell 201 in the telescopic structure 2 is bolted with the hinge 202, one side of the hinge 202 is bolted with the second sliding block 203, the hinge 202 is used for enabling the shell 201 to fan-shaped swing, and the second sliding block 203 is used for movably connecting the hinge 202 in the first sliding slot 104.
[0029] Further, one side of the shell 201 is hollowed into the ventilation hole 204, and the inside of the shell 201 is bolted with the second wire slot 205. The ventilation hole 204 is used for ventilating the inside of the shell 201.
[0030] Further, one side of the shell 201 is hinged with the door plate 206, the upper end of the shell 201 is bolted with the block 207, the rear end of the shell 201 is welded with the third sliding block 208, and the third sliding block 208 is used for movably connecting the shell 201 in the first sliding slot 104.
[0031] Working principle: when using, first install the connecting plate 110 on the wall, insert the third sliding groove 106 at the rear end of the box 101 into the first sliding block 109 outside the connection, and make the baffle 111 against the rear end of the box 111, install the circuit breaker on both sides of the box 101, and clamp the wire in the first wire slot 102 so that the wire will not be scattered, slide the second sliding block 203 to make the shell 201 move to both ends, when you need to rotate the shell 201, swing the hinge 202 to make the hinge 202 drive the shell 201 to swing, install the circuit breaker in the shell 201 and clamp the wire in the second wire slot 205, when you need to cover, slide the second sliding block 203 to make the third sliding block 208 at the rear end of the shell 201 slide into the first sliding groove 104 to limit the rear end of the shell 201, insert the clamping block 207 into the jack 105 to make the shell 201 be limited, and finally close the door plate 206.
[0032] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Any person skilled in the art can implement the present application according to the drawings and the above description. However, any equivalent changes, modifications and evolutions made by those skilled in the art within the scope of the technical scheme of the present application, using the disclosed technical content, are equivalent embodiments of the present application. Meanwhile, any equivalent changes, modifications and evolutions made according to the essential technology of the present application are still within the protection scope of the technical scheme of the present application.
Claims
1. An intelligent circuit breaker panel, comprising: The utility model provides an electricity distribution box (1) and telescopic structure (2), its characterized in be: the hollow ventilation structure (103) in the inside of the box (101) in electricity distribution box (1), the hollow first ventilation groove (107) of back end of ventilation structure (103), the hollow first sliding groove (104) of the upper and lower both ends of box (101) in electricity distribution box (1), the first sliding groove (104) inside movable joint telescopic structure (2) in second sliding block (203), second sliding block (203) inboard bolt connection shell (201), the inside bolt connection second wire slot (205) of shell (201).
2. The intelligent circuit breaker distribution box of claim 1, wherein: The utility model discloses an electricity distribution box (1) and telescopic structure (2), its characterized in be: the hollow ventilation structure (103) in the inside of the box (101) in electricity distribution box (1), the hollow first ventilation groove (107) of back end of ventilation structure (103), the hollow first sliding groove (104) of the upper and lower both ends of box (101) in electricity distribution box (1), the first sliding groove (104) inside movable joint telescopic structure (2) in second sliding block (203), second sliding block (203) inboard bolt connection shell (201), the inside bolt connection second wire slot (205) of shell (201).
3. The intelligent circuit breaker distribution box of claim 2, wherein: The utility model discloses an electricity distribution box (1) and telescopic structure (2), its characterized in be: the hollow ventilation structure (103) in the inside of the box (101) in electricity distribution box (1), the hollow first ventilation groove (107) of back end of ventilation structure (103), the hollow first sliding groove (104) of the upper and lower both ends of box (101) in electricity distribution box (1), the first sliding groove (104) inside movable joint telescopic structure (2) in second sliding block (203), second sliding block (203) inboard bolt connection shell (201), the inside bolt connection second wire slot (205) of shell (201).
4. The intelligent circuit breaker power pack of claim 3, wherein: The utility model discloses an electricity distribution box (1) and telescopic structure (2), its characterized in be: the hollow ventilation structure (103) in the inside of the box (101) in electricity distribution box (1), the hollow first ventilation groove (107) of back end of ventilation structure (103), the hollow first sliding groove (104) of the upper and lower both ends of box (101) in electricity distribution box (1), the first sliding groove (104) inside movable joint telescopic structure (2) in second sliding block (203), second sliding block (203) inboard bolt connection shell (201), the inside bolt connection second wire slot (205) of shell (201).
5. The intelligent circuit breaker power pack of claim 1, wherein: The utility model discloses an electricity distribution box (1) and telescopic structure (2), its characterized in be: the hollow ventilation structure (103) in the inside of the box (101) in electricity distribution box (1), the hollow first ventilation groove (107) of back end of ventilation structure (103), the hollow first sliding groove (104) of the upper and lower both ends of box (101) in electricity distribution box (1), the first sliding groove (104) inside movable joint telescopic structure (2) in second sliding block (203), second sliding block (203) inboard bolt connection shell (201), the inside bolt connection second wire slot (205) of shell (201).
6. The intelligent circuit breaker power pack of claim 5, wherein: The utility model discloses an electricity distribution box (1) and telescopic structure (2), its characterized in be: the hollow ventilation structure (103) in the inside of the box (101) in electricity distribution box (1), the hollow first ventilation groove (107) of back end of ventilation structure (103), the hollow first sliding groove (104) of the upper and lower both ends of box (101) in electricity distribution box (1), the first sliding groove (104) inside movable joint telescopic structure (2) in second sliding block (203), second sliding block (203) inboard bolt connection shell (201), the inside bolt connection second wire slot (205) of shell (201).
7. The intelligent circuit breaker distribution box of claim 6, wherein: