Centralized wiring module for prefabricated cabin roof
By designing a centralized wiring module on the roof of the prefabricated cabin, the problem of inconvenient wiring and maintenance on the roof of the prefabricated cabin was solved, and the orderly layout and classified management of wires were realized, which improved the reliability and maintenance efficiency of the electrical system.
Patent Information
- Application Number
- CN202423102728.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-16
AI Technical Summary
The wiring on the roof of the prefabricated cabin is inconvenient to maintain due to limited space, and repairing wire faults is difficult.
The centralized wiring module designed for prefabricated cabin roofs includes mounting slots and wiring troughs on the cabin roof. Wires are placed in the first and second wiring troughs respectively, forming wiring channels through round tubes, and separating the channels for power lines and communication lines.
It improves the regularity and safety of the wiring layout, facilitates wiring management and fault diagnosis, reduces electromagnetic interference, and improves work efficiency and system reliability.
Smart Images

Figure CN223583494U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wiring technical field, specifically, relate to a centralized wiring module for prefabricated cabin top. BACKGROUND
[0002] In order to improve the construction efficiency of transformer substation, speed up the construction progress of transformer substation, improve the engineering quality, the construction of transformer substation usually adopts modularization, standardization, factory production, and the main body of transformer substation will be produced in factory, and simple assembly can be put into use on site. With the increasing demand of prefabricated cabin field, standardization and modularization are the general trend of the development of intelligent transformer substation, and prefabricated cabin wiring is an important link in the construction and maintenance process of modular intelligent transformer substation. The cabin top is inconvenient to maintain if the line fails. UTILITY MODEL CONTENTS
[0003] The utility model provides a centralized wiring module for prefabricated cabin top, solves the problem of inconvenient prefabricated cabin top wiring maintenance in the related art.
[0004] The technical scheme of the utility model is as follows:
[0005] A centralized wiring module for prefabricated cabin top, comprising:
[0006] The cabin top has a first mounting slot and a second mounting slot;
[0007] The first main body is arranged in the first mounting slot, and the first main body has a first wire slot;
[0008] The second main body is arranged in the second mounting slot, and the second main body has a second wire slot, and the electric wire is arranged in the first wire slot and the second wire slot.
[0009] Optionally, the cabin top further has a plurality of third mounting slots, the third mounting slots communicate with the first wire slot to form a first wiring channel, and the third mounting slots and the second wire slot communicate to form a second wiring channel, and further comprising:
[0010] A plurality of round pipes are arranged in the first wiring channel and the second wiring channel respectively, the round pipes have wiring holes, the electric wire is arranged in the wiring holes, and the electric wire is arranged in the first wire slot and the second wire slot through the round pipes.
[0011] Optionally, the first wiring channel is a power line channel, and the second wiring channel is a communication line channel.
[0012] Optionally, the first mounting slot and the second mounting slot are both T-shaped wire slots.
[0013] Optionally, the first mounting slot and the second mounting slot each have a transverse slot and a longitudinal slot, and the longitudinal slot of the first mounting slot is arranged transversely to the transverse slot of the second mounting slot.
[0014] Optionally, further comprising:
[0015] A first cover plate is clamped on the first body, and a plurality of the circular pipes are arranged between the first body and the first cover plate.
[0016] A second cover plate is clamped on the second body, and a plurality of the circular pipes are arranged between the second body and the second cover plate.
[0017] Optionally, further comprising:
[0018] A third cover plate is clamped in the first mounting slot, and the first body is arranged between the third cover plate and the first mounting slot.
[0019] A fourth cover plate is clamped in the second mounting slot, and the second body is arranged between the fourth cover plate and the second mounting slot.
[0020] Optionally, one side of the first cover plate is rotatably arranged on the first body, one side of the second cover plate is rotatably arranged on the second body, and further comprising:
[0021] A clamping plate has a plurality of portions, each of which is rotatably arranged on the first cover plate and the second cover plate.
[0022] A torsional spring has a plurality of portions, one end of each of which is arranged on the first cover plate and / or the second cover plate, and the other end of each of which is arranged on the clamping plate, and the clamping plate is clamped in the first wire slot and / or the second wire slot through the torsional spring.
[0023] Optionally, the clamping plate has a first end, a rotating end and a second end arranged in sequence, the rotating end is rotatably arranged on the first cover plate and the second cover plate, and the first cover plate and the second cover plate are located between the first end and the second end.
[0024] Optionally, the first cover plate has a first avoiding slot, the second cover plate has a second avoiding slot, and the first cover plate and the second cover plate are arranged transversely through the first avoiding slot and the second avoiding slot.
[0025] The working principle and beneficial effects of the utility model are as follows:
[0026] The utility model discloses a first installation groove and a second installation groove of specific shape and size are reserved in the design and manufacturing process of prefabricated cabin top. The first main body is embedded in the first installation groove, which ensures that it is tightly attached to the cabin top and firmly fixed, and the first wire slot of the first main body is in a suitable wiring position. Similarly, the second main body is installed in the second installation groove, which ensures that the second wire slot can normally accommodate the electric wire. During actual wiring, the electric wires of different purposes are placed in order in the first wire slot and the second wire slot, avoiding the confusion and entanglement of the electric wires.
[0027] By setting a special installation groove and a corresponding wire slot main body on the cabin top, a special wiring channel is provided for the electric wire, making the electric wire layout of the cabin top more regular and orderly, avoiding the random scattering of the electric wire on the surface of the cabin top, and improving the cleanliness and safety of the cabin top space. At the same time, the electric wires are classified and placed in different wire slots, which facilitates the management, maintenance and troubleshooting of different types of electric wires (such as power lines and signal lines), and improves the work efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0028] The above characteristics, technical features, advantages and implementation modes of the utility model will be further described in a clear and understandable manner in combination with the preferred embodiments and the attached drawings.
[0029] Figure 1 It is a sectional view schematic diagram of the utility model;
[0030] Figure 2 It is a third cover plate structure schematic diagram of the utility model;
[0031] Figure 3 It is a first cover plate structure schematic diagram of the utility model;
[0032] Figure 4 It is a clamping plate structure schematic diagram of the utility model;
[0033] Figure 5 It is a first avoiding slot schematic diagram of the utility model.
[0034] In the drawing: 1, cabin top, 11, first installation groove, 12, second installation groove, 2, first main body, 21, first wire slot, 3, second main body, 31, second wire slot, 13, third installation groove, 4, round pipe, 41, wire hole, 5, first cover plate, 6, second cover plate, 7, third cover plate, 8, fourth cover plate, 9, clamping plate, 10, torsion spring, 91, first end, 92, rotating end, 93, second end, 51, first avoiding slot, 61, second avoiding slot. DETAILED DESCRIPTION
[0035] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, specific implementation manners of the present application will be described below with reference to the drawings. Obviously, the drawings in the following description only represent some embodiments of the present application, and for those skilled in the art, without creative labor, further technical solutions can be understood, and in some drawings, only one of the components with the same structure or function is schematically shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".
[0036] In this paper, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0037] In addition, in the description of the present application, the terms "first", "second" and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.
[0038] Reference Figures 1-5 For the first embodiment of the present application, a centralized wiring module for a prefabricated cabin roof 1 is proposed, comprising: a cabin roof 1 having a first mounting slot 11 and a second mounting slot 12; a first main body 2 is arranged in the first mounting slot 11, and the first main body 2 has a first wire slot 21; a second main body 3 is arranged in the second mounting slot 12, and the second main body 3 has a second wire slot 31, and the electric wire is arranged in the first wire slot 21 and the second wire slot 31.
[0039] In this embodiment, first, in the design and manufacture process of the prefabricated cabin top 1, a first installation slot 11 and a second installation slot 12 of a specific shape and size are reserved. The first body 2 is embedded in the first installation slot 11, ensuring that it is tightly attached to the cabin top 1 and firmly fixed, so that the first wire slot 21 of the first body 2 is in a suitable wiring position. Similarly, the second body 3 is installed in the second installation slot 12, ensuring that the second wire slot 31 can normally accommodate the wires. When actually wiring, wires of different purposes are placed in order in the first wire slot 21 and the second wire slot 31, avoiding tangled wires. The first body 2 and the second body 3 are both composed of a bottom plate and two side plates, the two side plates are rotatably arranged on the bottom plate, there is a torsion spring between the bottom plate and the side plates, the width of the bottom plate is less than the width of the first installation slot 11 and the second installation slot 12, and the width of the two side plates away from the bottom plate is greater than the width of the first installation slot 11 and the second installation slot 12. When installing the first body 2 and the second body 3, hold the two side plates with your hand, make the ends of the two side plates away from the bottom plate close to each other, put the first body 2 and the second body 3 into the first installation slot 11 and the second installation slot 12, and then release the side plates. The side plates expand outward, and the first body 2 and the second body 3 are respectively clamped in the first installation slot 11 and the second installation slot 12. This mechanism not only facilitates installation and disassembly, but also prevents the first body 2 and the second body 3 from falling from the cabin top.
[0040] By providing a special installation slot and a corresponding wire slot body on the cabin top 1, a special wiring channel is provided for the wires, making the wire layout of the cabin top 1 more regular and orderly, avoiding the wires from randomly falling on the surface of the cabin top 1, and improving the cleanliness and safety of the space of the cabin top 1. At the same time, the wires are classified and placed in different wire slots, which facilitates the subsequent management, maintenance and troubleshooting of different types of wires (such as power lines and signal lines), and improves the work efficiency.
[0041] Further, the cabin top 1 also has a plurality of third installation slots 13, the third installation slots 13 communicate with the first wire slot 21 to form a first wiring channel, the third installation slots 13 and the second wire slot 31 communicate to form a second wiring channel, and the circular tube 4 has a plurality of circular tubes 4 arranged in the first wiring channel and the second wiring channel, respectively. The circular tube 4 has a wire hole 41, and the wire is arranged in the wire hole 41. The wire is arranged in the first wire slot 21 and the second wire slot 31 through the circular tube 4.
[0042] In this embodiment, when the cabin top 1 is manufactured, the third installation slot 13 is processed to communicate with the first installation slot 11 and the second installation slot 12, and the complete first wiring channel and the second wiring channel are formed. A plurality of round tubes 4 are respectively inserted into the first wiring channel and the second wiring channel, and the diameter of the wiring hole 41 of the round tube 4 is designed according to the specification of the wire, which is slightly larger than the outer diameter of the wire so that the wire can smoothly pass through. When wiring, the wire is inserted into the wiring hole 41 of the round tube 4 one by one, and then the round tube 4 with the wire is placed in the corresponding first wiring channel and second wiring channel, so that the wire is orderly arranged along the round tube 4 between the first line slot 21 and the second line slot 31.
[0043] The round tube 4 can prevent the wire from being mechanically damaged, such as scratching and extrusion, during wiring, and also has a shielding effect, reduces the influence of external electromagnetic interference on the signal transmission of the wire, and improves the stability of power transmission and the reliability of signal transmission, especially suitable for communication lines with high signal quality requirements.
[0044] Further, the first wiring channel is a power line channel, and the second wiring channel is a communication line channel.
[0045] In this embodiment, when designing and planning the wiring module, it is clearly specified that the first wiring channel is specially used for laying power lines, and all wires related to power supply are concentrated in the round tube 4 and the line slot in the channel. At the same time, the communication lines (such as data lines, control lines, etc.) are uniformly arranged in the second wiring channel, and the corresponding line slot and round tube 4 are used for wiring.
[0046] The power lines and communication lines are arranged in different wiring channels, which effectively avoids the influence of electromagnetic interference generated by the power lines on the signal transmission of the communication lines, ensures the accuracy and stability of the communication signal, and reduces the communication failure caused by electromagnetic interference. At the same time, it is also convenient for maintenance and management of different types of lines, and improves the reliability and maintainability of the entire prefabricated cabin electrical system. In this embodiment, the cabin top power line channel and the communication line channel can be effectively separated, the strong current can be prevented from interfering with the communication line, and the line position is relatively clear. When replacing the corresponding node element line, the fault line can be easily replaced. When laying the cable, it is more orderly, and numbering or marking means can be used to mark the cable on the line arrangement plate, which not only makes the cable more orderly laid in the line slot, but also directly locks the faulty line during later maintenance, saving maintenance time.
[0047] Further, the first installation slot 11 and the second installation slot 12 are both T-shaped line slots.
[0048] In the embodiment, during the manufacturing or processing of the cabin roof 1, the first mounting groove 11 and the second mounting groove 12 are processed into a T-shaped structure by using a specific processing technology. The horizontal groove part of the T-shaped wire groove can provide a larger opening area, facilitating the installation of the main body and the laying of the wires, while the vertical groove part can position and limit the main body and the wires, so that they are gathered to the power supply device. The structure design of the T-shaped wire groove can better constrain the direction of the wires, improving the stability and safety of the wire layout.
[0049] Further, the first mounting groove 11 and the second mounting groove 12 each have a horizontal groove and a vertical groove, and the vertical groove of the first mounting groove 11 is arranged in cross with the horizontal groove of the second mounting groove 12.
[0050] In the embodiment, during the structure design and processing of the cabin roof 1, the vertical groove of the first mounting groove 11 is arranged in cross with the horizontal groove of the second mounting groove 12 at a specific position. When installing the first main body 2 and the second main body 3, the position relationship of the cross is adjusted to ensure that the two can be smoothly installed without interfering with each other, and the connectivity between the first wire groove 21 and the second wire groove 31 and the smooth transition of the wires at the cross are ensured.
[0051] The cross-arranged first wire groove 21 and second wire groove 31 structure can more reasonably utilize the space resources in the limited cabin roof 1 space, increasing the flexibility of the wire layout. The direction of the wires can be more flexibly planned according to the electricity and communication needs of different areas, improving the wire layout efficiency and space utilization.
[0052] Further, the first cover plate 5 is clamped on the first main body 2, and a plurality of round tubes 4 are arranged between the first main body 2 and the first cover plate 5; the second cover plate 6 is clamped on the second main body 3, and a plurality of round tubes 4 are arranged between the second main body 3 and the second cover plate 6.
[0053] In the embodiment, after the round tubes 4 are placed in the corresponding first wire groove 21 and second wire groove 31, the first cover plate 5 is clamped on the first main body 2, and the round tubes 4 are enclosed between the first main body 2 and the first cover plate 5. Similarly, the second cover plate 6 is operated to be clamped in the second wire groove 31, protecting the round tubes 4 in the second wire groove 31.
[0054] The arrangement of the first cover plate 5 and the second cover plate 6 provides additional protection for the round tubes 4 in the first wire groove 21 and the second wire groove 31, preventing dust, moisture, foreign matter, etc. from entering the first wire groove 21 and the second wire groove 31, causing damage to the wires and the round tubes 4 or affecting their normal work. At the same time, the clamping installation method facilitates the installation and removal of the first cover plate 5 and the second cover plate 6, and when it is necessary to check, repair or replace the wires in the first wire groove 21 and other wire grooves, the cover plates can be quickly opened, improving the convenience of maintenance work.
[0055] Further, the third cover plate 7 is clamped in the first mounting groove 11, and the first main body 2 is arranged between the third cover plate 7 and the first mounting groove 11; the fourth cover plate 8 is clamped in the second mounting groove 12, and the first main body 2 is arranged between the fourth cover plate 8 and the second mounting groove 12.
[0056] In this embodiment, the third cover plate 7 and the fourth cover plate 8 are also designed with the clamping structure matching the first wire slot 21. After the round pipe 4, the first cover plate 5 and the second cover plate 6 are installed, the third cover plate 7 is clamped in the first mounting groove 11, and the fourth cover plate 8 is clamped in the second mounting groove 12.
[0057] The third cover plate 7 and the fourth cover plate 8 shield the first main body 2, the second main body 3, the first cover plate 5 and the second cover plate 6 to ensure the aesthetics of the prefabricated cabin.
[0058] Further, one side of the first cover plate 5 is rotatably arranged on the first main body 2, one side of the second cover plate 6 is rotatably arranged on the second main body 3, the clamping plate 9 has a plurality of clamping plates 9, which are rotatably arranged on the first cover plate 5 and the second cover plate 6 respectively; the torsion spring 10 has a plurality of torsion springs 10, one end of which is arranged on the first cover plate 5 and / or the second cover plate 6, and the other end is arranged on the clamping plate 9, and the clamping plate 9 is clamped in the first wire slot 21 and / or the second wire slot 31 through the torsion spring 10. The clamping plate 9 has a first end 91, a rotating end 92 and a second end 93 arranged in sequence, the rotating end 92 is rotatably arranged on the first cover plate 5 and the second cover plate 6, and the first cover plate 5 and the second cover plate 6 are located between the first end 91 and the second end 93.
[0059] In this embodiment, the rotating shaft is installed on one side edge of the first cover plate 5 and the second cover plate 6, so that it can rotate around the shaft on the first main body 2 and the second main body 3. The clamping plate 9 is rotatably installed on the corresponding position of the first cover plate 5 and the second cover plate 6 through the rotating shaft, one end of the torsion spring 10 is fixed on the cover plate, and the other end is connected to the clamping plate 9. When the first cover plate 5 and the second cover plate 6 are closed, the clamping plate 9 is clamped in the first wire slot 21 and the second wire slot 31 under the action of the torsion spring 10, realizing the automatic clamping of the first cover plate 5 and the second cover plate 6. When it is needed to open the first cover plate 5 or the second cover plate 6, the first end 91 of the clamping plate 9 is rotated, so that the second end 93 of the clamping plate 9 is separated from the first wire slot 21 and the second wire slot 31, and the first cover plate 5 or the second cover plate 6 is rotated, so that the opening action can be realized.
[0060] The rotating arrangement of the first cover plate 5 and the second cover plate 6 and the cooperation of the clamping plate 9 and the torsion spring 10 make the opening and closing of the first cover plate 5 and the second cover plate 6 more convenient. Without the need of using additional tools, the efficiency of maintenance work is greatly improved.
[0061] Further, the first cover plate 5 has a first avoiding groove 51, and the second cover plate 6 has a second avoiding groove 61, and the first cover plate 5 and the second cover plate 6 are arranged in cross through the first avoiding groove 51 and the second avoiding groove 61.
[0062] In the embodiment, the first avoiding groove 51 and the second avoiding groove 61 are machined respectively in the manufacturing process of the first cover plate 5 and the second cover plate 6. When the cover plate is installed, according to the cross position of the wire slot and the running direction of the electric wire, the positions of the first cover plate 5 and the second cover plate 6 are adjusted, so that the first avoiding groove 51 and the second avoiding groove 61 are cross aligned with each other, so that the first main body 2 and the second main body 3 can be mass produced in a unified size in production, without the need of separately producing the first main body 2 and the second main body 3, thereby reducing the production cost.
[0063] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, but not limit the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the present application, and all of them should be covered in the scope of the claims of the present application.
Claims
1. A centralized wiring module for prefabricated cabin roofs, characterized in that, include: The top of the compartment (1) has a first mounting slot (11) and a second mounting slot (12); The first body (2) is disposed in the first mounting groove (11), and the first body (2) has a first line groove (21). The second body (3) is disposed in the second mounting groove (12). The second body (3) has a second wire groove (31). The wire is disposed in the first wire groove (21) and the second wire groove (31). The top of the cabin (1) also has several third mounting slots (13), which, when connected to the first cable tray (21), form a first cable routing channel, and when connected to the second cable tray (31), form a second cable routing channel. The cabin also includes: A plurality of circular tubes (4) are respectively arranged in the first wiring channel and the second wiring channel. The circular tubes (4) have wiring holes (41), and the wires are passed through the wiring holes (41). The wires are arranged in the first wire groove (21) and the second wire groove (31) through the circular tubes (4).
2. A centralized wiring module for prefabricated cabin roofs according to claim 1, characterized in that, The first wiring channel is a power line channel, and the second wiring channel is a communication line channel.
3. A centralized wiring module for prefabricated cabin roofs according to claim 1, characterized in that, Both the first mounting slot (11) and the second mounting slot (12) are T-shaped wire grooves.
4. A centralized wiring module for prefabricated cabin roofs according to claim 1, characterized in that, Both the first mounting groove (11) and the second mounting groove (12) have horizontal grooves and vertical grooves, and the vertical groove of the first mounting groove (11) and the horizontal groove of the second mounting groove (12) are intersected.
5. A centralized wiring module for prefabricated cabin roofs according to claim 1, characterized in that, Also includes: The first cover plate (5) is snapped onto the first body (2), and several of the round tubes (4) are disposed between the first body (2) and the first cover plate (5); The second cover plate (6) is snapped onto the second body (3), and several of the round tubes (4) are disposed between the second body (3) and the second cover plate (6).
6. A centralized wiring module for prefabricated cabin roofs according to claim 1, characterized in that, Also includes: The third cover plate (7) is snapped into the first mounting groove (11), and the first body (2) is disposed between the third cover plate (7) and the first mounting groove (11); The fourth cover plate (8) is snapped into the second mounting groove (12), and the second body (3) is disposed between the fourth cover plate (8) and the second mounting groove (12).
7. A centralized wiring module for prefabricated cabin roofs according to claim 5, characterized in that, The first cover plate (5) is rotatably mounted on the first body (2) on one side, and the second cover plate (6) is rotatably mounted on the second body (3) on one side, and further includes: A plurality of snap-fit plates (9) are respectively rotatably disposed on the first cover plate (5) and the second cover plate (6); A torsion spring (10) is provided, with one end disposed on the first cover plate (5) and / or the second cover plate (6), and the other end disposed on the snap-fit plate (9). The snap-fit plate (9) is snapped into the first wire groove (21) and / or the second wire groove (31) by the torsion spring (10).
8. A centralized wiring module for prefabricated cabin roofs according to claim 7, characterized in that, The snap-fit plate (9) has a first end (91), a rotating end (92) and a second end (93) arranged in sequence. The rotating end (92) is rotatably disposed on the first cover plate (5) and the second cover plate (6). The first cover plate (5) and the second cover plate (6) are located between the first end (91) and the second end (93).
9. A centralized wiring module for prefabricated cabin roofs according to claim 5, characterized in that, The first cover plate (5) has a first clearance groove (51), and the second cover plate (6) has a second clearance groove (61). The first cover plate (5) and the second cover plate (6) are arranged crosswise through the first clearance groove (51) and the second clearance groove (61).