Novel electric appliance box structure
By setting up a wiring trough and anti-return part at the corner of the panel, combined with the sealing connection and buffer pad clamping structure, the complex structure of the electrical box and the inlet of condensate water are solved, and the sealing and operation of the electrical box are achieved.
Patent Information
- Application Number
- CN202422484714.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-10-15
AI Technical Summary
The electrical box of the existing patio machine panel has a complex structure and many operating procedures. The condensed water is easily entered into the electrical box through the motor wire, and the sponge sticking position is difficult to control, resulting in the condensation problem not being completely eliminated.
A trace trough is set at the corner of the panel, and a snap buckle and a reverse flow preventing member are installed inside. The motor wire is connected to the electrical box through the trace trough and is connected by sealing. The reverse flow preventing member can be movably connected to the motor wire, and clamp the motor wire with the buffer pad and convex structure, and tighten with the corner cover to form a sealing structure.
Effectively prevent condensate water from entering the electrical box, eliminate the reflux of cold flow water, simplify the operation process, and solve the problem of difficult to control the sponge paste position and uneven adsorption of condensate water.
Smart Images

Figure CN223297835U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical appliance boxes, in particular to a novel electrical appliance box structure. Background Art
[0002] The existing ceiling machine panel with lifting function mainly consists of five parts: the electrical box, the main board, the main board fixing frame, the wire-passing rubber ring, and the electrical box cover. During assembly, the electrical box, the main board, the main board fixing frame, and the wire-passing rubber ring must be pre-assembled into the electrical box components, and then fixed to the panel. Then, the wiring is carried out according to the position of the panel wire groove, and finally the electrical box cover is closed. The structure is complex and there are many operating procedures.
[0003] At the same time, the panel is equipped with 4 panel lifting motors and 4 air sweeping motors. The motor wires enter the electrical box components through the existing panel wire troughs. When testing the electrical box, it was found that in the cooling mode, the air sweeping motor and lifting motor wires close to the electrical box components will cause condensed water to flow into the electrical box components along the motor wires. The problem of condensed water entering the electrical box can be solved by sticking a circle of sponge on the motor wires, but the sponge sticking position is difficult to control, and there is inevitable pulling during the sponge sticking process. In addition, the thickness of the motor wire is uneven after the sponge is stuck, and the condensed water problem cannot be completely eliminated. Utility Model Content
[0004] In order to overcome the above-mentioned shortcomings of the prior art, the purpose of the present invention is to provide a new electrical box structure to solve the problems raised by the above-mentioned background technology.
[0005] The technical solution adopted by the utility model to solve its technical problems is: a new electrical box structure, including a panel and an electrical box, the electrical box is arranged at the corner of the panel, the side of the electrical box is sealed and connected to the corner of the panel, and the corner of the panel is provided with a wiring groove for routing the motor wire, the wiring groove is connected to the interior of the electrical box, and a buckle and an anti-backflow part are provided in the wiring groove, and the anti-backflow part is also sleeved on the motor wire.
[0006] As a further improvement of the present invention: at least two wiring grooves are provided on the corners of the panel, and the two wiring grooves are arranged in an eight-shaped shape.
[0007] As a further improvement of the present invention: any one of the wiring troughs is arranged in a wave shape.
[0008] As a further improvement of the present invention: a convex portion and a concave portion are provided in the wiring groove, the convex portion is provided with a first convex portion and a second convex portion, the concave portion is provided with a first concave portion and a second concave portion, the first convex portion protrudes toward the first concave portion, and the second convex portion protrudes toward the second concave portion.
[0009] As a further improvement of the present invention: a straight portion is provided in the middle of the wiring trough, and the straight portion is arranged between the first convex portion and the second concave portion.
[0010] As a further improvement of the present invention: the buckle is configured to provide mounting seats on both the first convex portion and the second convex portion, and buffer pads are installed on the mounting seats, and the buffer pads are staggeredly arranged in the wiring groove.
[0011] As a further improvement of the present invention: the buffer pad is made of soft rubber.
[0012] As a further improvement of the present invention: the backflow prevention member is movably sleeved on the motor line, and the backflow prevention member is clamped in the wiring groove through the cooperation of the buffer pad and the recess.
[0013] As a further improvement of the present invention: the backflow prevention member is made of elastic soft rubber.
[0014] As a further improvement of the present invention: the novel electrical appliance box structure is further provided with a corner cover, and the corner cover covers the corners of the electrical appliance box and the panel.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] 1. The utility model opens a wiring groove at the corner of the panel to connect to the electrical box, and sets an anti-backflow part on the line section of the motor line passing through the wiring groove. The anti-backflow part seals the wiring groove, which can effectively prevent condensation water from entering the electrical box. At the same time, the panel and the electrical box are sealed, which can completely prevent the backflow of cold water.
[0017] 2. The utility model adopts an anti-backflow piece instead of sticking sponge. The anti-backflow piece can move freely on the motor line and can be moved to the appropriate position as needed during wiring. After ensuring the appropriate length of the line, the anti-backflow piece is clipped into the wiring groove, which solves the problems of difficult to control the sponge sticking position, uneven line circumference after sticking, and absorption of condensed water.
[0018] 3. A convex portion and a concave portion are provided in the wiring groove, and a mounting seat and a buffer are provided on the convex portion. When in use, the backflow prevention member is inserted into the wiring groove, and the buffer on the first convex portion cooperates with the first concave portion to clamp the motor wire, and the buffer on the second convex portion cooperates with the second concave portion to clamp the motor wire.
[0019] 4. After the corner covers are installed and fastened on the corners of the electrical box and panel, the corner covers can appropriately squeeze the rubber soft cover in the wiring trough. The anti-backflow parts, corner covers, and wiring trough are effectively fitted in the structure, which can completely prevent the backflow of condensation water. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1It is a structural diagram of the present utility model.
[0021] Figure 2 For the utility model Figure 1 Schematic diagram of partial view A in the middle.
[0022] Figure 3 This is a structural diagram of the corner cover assembly of the utility model.
[0023] Figure 4 This is a schematic diagram of the structure of the backflow prevention component of the utility model.
[0024] Numbers in the figure: 1. Panel, 2. Electrical box, 3. Motor wire, 4. Wire routing groove, 41. First convex part, 42. First concave part, 43. Second convex part, 44. Second concave part, 5. Buckle, 51. Mounting seat, 52. Buffer pad, 6. Backflow prevention part, 7. Corner cover. DETAILED DESCRIPTION
[0025] To make the purpose, technical solutions, and advantages of the present invention more clear, the following will provide a clear and complete description of the technical solutions of the present invention in conjunction with specific embodiments of the present invention and the corresponding drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are also within the scope of protection of the present invention.
[0026] The present invention will now be further described with reference to the accompanying drawings and embodiments:
[0027] Example 1:
[0028] This embodiment adopts a new type of electrical box structure, including a panel 1 and an electrical box 2. The electrical box 2 is arranged at the corner of the panel 1. The side of the electrical box 2 is sealed and connected to the corner of the panel 1. The corner of the panel 1 is provided with a wiring groove 4 for routing the motor line 3. The wiring groove 4 is connected to the interior of the electrical box 2. A buckle 5 and a backflow prevention member 6 are provided in the wiring groove 4. The backflow prevention member 6 is also sleeved on the motor line 3. In this embodiment, the wiring groove 4 is provided at the corner of the panel 1 to connect to the electrical box 2, and the backflow prevention member 6 is provided on the line section of the motor line 3 passing through the wiring groove 4. The backflow prevention member 6 seals the wiring groove 4, which can effectively prevent condensed water from entering the electrical box 2. At the same time, the panel 1 and the electrical box 2 are sealed and can completely prevent the backflow of cold water.
[0029] In one implementation of the present embodiment, at least two wiring grooves 4 are provided on the corners of the panel 1, and the two wiring grooves 4 are arranged in an eight-shaped shape. Furthermore, any one of the wiring grooves 4 is arranged in a wavy shape. The wiring implementation method of the motor line 3 is that the lifting motor and the wind-sweeping motor line 3 near the corner of the electrical box 2 directly enter the interior of the electrical box 2 through the wiring groove 4 of the panel 1 and are plugged into the main board. Since the parallel and side-by-side wiring grooves 4 easily cause the lifting motor and wind-sweeping motor lines 3 to be entangled, by diverging the wiring grooves 4 outward from the corners of the panel 1, the lifting motor and wind-sweeping motor lines 3 can be effectively clamped by the wavy wiring grooves 4.
[0030] In one implementation of this embodiment, the wiring trough 4 is provided with a convex portion and a concave portion. The convex portion is provided with a first convex portion 41 and a second convex portion 43, and the concave portion is provided with a first concave portion 42 and a second concave portion 44. The first convex portion 41 protrudes toward the first concave portion 42, and the second convex portion 43 protrudes toward the second concave portion 44. Furthermore, the buckle 5 is configured such that mounting seats 51 are provided on both the first convex portion 41 and the second convex portion 43. Buffer pads 52 are mounted on the mounting seats 51. The buffer pads 52 are staggeredly arranged in the wiring trough 4.
[0031] In this embodiment, a convex portion and a concave portion are provided in the wiring groove 4, and a mounting seat 51 and a buffer are provided on the convex portion. When in use, the backflow prevention member 6 is inserted into the wiring groove 4, and the motor line 3 is clamped by the buffer on the first convex portion 41 in conjunction with the first concave portion 42, and the motor line 3 is clamped by the buffer on the second convex portion 43 in conjunction with the second concave portion 44.
[0032] In one implementation of this embodiment, the buffer pad 52 is made of soft rubber.
[0033] An elastic soft rubber buffer pad 52 is used in the wiring groove 4 to squeeze the motor wire 3, so that the motor wire 3 can be fixed in the wiring groove 4, and the soft rubber buffer pad 52 squeezes the gap in the wiring groove 4 of the motor wire 3, so that the gap connecting the wiring groove 4 to the outside is filled and sealed, which can effectively prevent condensation water from flowing back into the electrical box 2.
[0034] In one embodiment of this invention, the wiring trough 4 has a straight portion in the middle, which is arranged between the first protrusion 41 and the second recess 44. In this embodiment, the straight portion can be used to correct the posture of the motor cable 3, thereby preventing the motor cable 3 from excessively bending in the wavy wiring trough 4 and causing quality problems.
[0035] In one embodiment of this embodiment, the backflow prevention member 6 is movably mounted on the motor cable 3. The backflow prevention member 6 is clamped in the wiring trough 4 by the cushion 52 and the recess. Furthermore, the backflow prevention member 6 is made of elastic soft rubber. In this embodiment, the backflow prevention member 6 is used instead of the adhesive sponge. The backflow prevention member 6 can move freely on the motor cable 3 and can be moved to the appropriate position as needed during wiring. After ensuring the appropriate length of the cable, the backflow prevention member 6 is snapped into the wiring trough 4. This solves the problems of difficult to control the sponge adhesive position, uneven cable circumference after adhesive adhesion, and absorption of condensed water.
[0036] In one embodiment of this invention, the novel electrical box 2 structure is further provided with corner covers 7, which cover the corners of the electrical box 2 and the panel 1. In this embodiment, after the corner covers 7 are installed and fastened to the corners of the electrical box 2 and the panel 1, they can appropriately squeeze the rubber cover inside the wiring trough 4, effectively forming a structural fit between the backflow prevention member 6, the corner cover 7, and the wiring trough 4, thereby completely preventing the backflow of condensed water.
[0037] Example 2:
[0038] This embodiment adopts a new type of electrical box structure, including a panel 1 and an electrical box 2. The electrical box 2 is arranged at the corner of the panel 1. The side of the electrical box 2 is sealed and connected to the corner of the panel 1. The corner of the panel 1 is provided with a wiring groove 4 for routing the motor line 3. The wiring groove 4 is connected to the interior of the electrical box 2. A buckle 5 and a backflow prevention member 6 are provided in the wiring groove 4. The backflow prevention member 6 is also sleeved on the motor line 3. In this embodiment, the wiring groove 4 is provided at the corner of the panel 1 to connect to the electrical box 2, and the backflow prevention member 6 is provided on the line section of the motor line 3 passing through the wiring groove 4. The backflow prevention member 6 seals the wiring groove 4, which can effectively prevent condensed water from entering the electrical box 2. At the same time, the panel 1 and the electrical box 2 are sealed and can completely prevent the backflow of cold water.
[0039] In one implementation of the present embodiment, at least two wiring grooves 4 are provided on the corners of the panel 1, and the two wiring grooves 4 are arranged in an eight-shaped shape. Furthermore, any one of the wiring grooves 4 is arranged in a wavy shape. The wiring implementation method of the motor line 3 is that the lifting motor and the wind-sweeping motor line 3 near the corner of the electrical box 2 directly enter the interior of the electrical box 2 through the wiring groove 4 of the panel 1 and are plugged into the main board. Since the parallel and side-by-side wiring grooves 4 easily cause the lifting motor and wind-sweeping motor lines 3 to be entangled, by diverging the wiring grooves 4 outward from the corners of the panel 1, the lifting motor and wind-sweeping motor lines 3 can be effectively clamped by the wavy wiring grooves 4.
[0040] In one implementation of this embodiment, the wiring trough 4 is provided with a convex portion and a concave portion. The convex portion is provided with a first convex portion 41 and a second convex portion 43, and the concave portion is provided with a first concave portion 42 and a second concave portion 44. The first convex portion 41 protrudes toward the first concave portion 42, and the second convex portion 43 protrudes toward the second concave portion 44. Furthermore, the buckle 5 is configured such that mounting seats 51 are provided on both the first convex portion 41 and the second convex portion 43. Buffer pads 52 are mounted on the mounting seats 51. The buffer pads 52 are staggeredly arranged in the wiring trough 4.
[0041] In this embodiment, a convex portion and a concave portion are provided in the wiring groove 4, and a mounting seat 51 and a buffer are provided on the convex portion. When in use, the backflow prevention member 6 is inserted into the wiring groove 4, and the motor line 3 is clamped by the buffer on the first convex portion 41 in conjunction with the first concave portion 42, and the motor line 3 is clamped by the buffer on the second convex portion 43 in conjunction with the second concave portion 44.
[0042] In one implementation of this embodiment, the buffer pad 52 is made of soft rubber.
[0043] In summary, the use of the soft rubber buffer pad 52 can seal the entrance and exit of the wiring trough 4. Specifically, the elastic soft rubber buffer pad 52 is used to squeeze the motor wire 3 in the wiring trough 4, so that the motor wire 3 can be fixed in the wiring trough 4, and the soft rubber buffer pad 52 squeezes the gap in the wiring trough 4 of the motor wire 3, so that the gap connecting the wiring trough 4 to the outside is filled and sealed, which can effectively prevent condensation water from flowing back into the electrical box 2.
[0044] Furthermore, the wiring trough 4 has a straight portion in the middle, which is arranged between the first convex portion 41 and the second concave portion 44. In this embodiment, the straight portion can be used as a structure to correct the posture of the motor wire 3, thereby preventing the motor wire 3 from being excessively bent in the wavy wiring trough 4 and causing quality problems.
[0045] In one implementation of this embodiment, the backflow prevention member 6 is movably sleeved on the motor line 3, and the backflow prevention member 6 is clamped in the wiring groove 4 by the straight portion of the wiring groove 4. Furthermore, the backflow prevention member 6 is made of elastic soft rubber. In this embodiment, the backflow prevention member 6 is used instead of the adhesive sponge. The backflow prevention member 6 can move freely on the motor line 3 and be moved to the appropriate position as needed during wiring. After ensuring that the line length is appropriate, the backflow prevention member 6 is clamped in the straight portion of the wiring groove 4. The straight portion of the wiring groove 4 can clamp and squeeze the backflow prevention member 6, so that the gap between the backflow prevention member 6 and the motor line 3 is sealed. In conjunction with the use of the buffer pad 52, the wiring groove 4 can be triple-sealed, solving the problems of poor control of the sponge pasting position, uneven line circumference after pasting, and absorption of condensed water.
[0046] In one embodiment of this invention, the novel electrical box 2 structure is further provided with corner covers 7, which cover the corners of the electrical box 2 and the panel 1. In this embodiment, after the corner covers 7 are installed and fastened to the corners of the electrical box 2 and the panel 1, they can appropriately squeeze the rubber cover inside the wiring trough 4, effectively forming a structural fit between the backflow prevention member 6, the corner cover 7, and the wiring trough 4, thereby completely preventing the backflow of condensed water.
[0047] In summary, after reading the document of this utility model, ordinary technicians in this field can make various other corresponding transformation schemes based on the technical scheme and technical concept of this utility model without creative mental work, which all fall within the scope of protection of this utility model.
Claims
1. A new type of electrical box structure, including a panel and an electrical box, characterized in that: The electrical box is arranged at the corner of the panel, and the side of the electrical box is sealed with the corner of the panel. The corner of the panel is provided with a wiring groove for routing the motor wires. The wiring groove is connected to the interior of the electrical box. A buckle and an anti-backflow component are provided in the wiring groove, and the anti-backflow component is also sleeved on the motor wire.
2. A novel electrical box structure according to claim 1, characterized in that: At least two wiring grooves are provided on the corners of the panel, and the two wiring grooves are arranged in an eight-shaped shape.
3. A novel electrical box structure according to claim 2, characterized in that: Any one of the wiring troughs is arranged in a wave shape.
4. A novel electrical box structure according to claim 3, characterized in that: A convex portion and a concave portion are provided in the wiring groove, the convex portion is provided with a first convex portion and a second convex portion, the concave portion is provided with a first concave portion and a second concave portion, the first convex portion protrudes toward the first concave portion, and the second convex portion protrudes toward the second concave portion.
5. A novel electrical box structure according to claim 4, characterized in that: A straight portion is provided in the middle of the wiring trough, and the straight portion is arranged between the first convex portion and the second concave portion.
6. A novel electrical box structure according to claim 4, characterized in that: The buckle is configured such that mounting seats are provided on both the first convex portion and the second convex portion, and buffer pads are installed on the mounting seats, and the buffer pads are staggeredly arranged in the wiring groove.
7. A novel electrical box structure according to claim 6, characterized in that: The buffer pad is made of soft rubber.
8. A novel electrical box structure according to claim 7, characterized in that: The backflow prevention member is movably sleeved on the motor line, and the backflow prevention member is clamped in the wiring groove through the cooperation of the buffer pad and the recess.
9. A novel electrical box structure according to claim 8, characterized in that: The backflow prevention piece is made of elastic soft rubber.
10. A novel electrical appliance box structure according to claim 9, characterized in that: The novel electrical appliance box structure is further provided with a corner cover, which covers the corners of the electrical appliance box and the panel.