Cable arrangement device in cabin body of prefabricated cabin

CN224233281UActive Publication Date: 2026-05-12JILIN DE YUN ELECTRICAL CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JILIN DE YUN ELECTRICAL CO LTD
Filing Date
2025-09-10
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

现有技术中,轧带为保证线缆放置稳定而减少了与线缆间的间隙,使得拆除轧带操作困难,剪刀等设备难以伸入狭小缝隙,影响维护效率。

Method used

A cable management device for the interior of a prefabricated cabin was designed, comprising a galvanized cable tray body, a hollow support box, a rectangular sliding plate, and a push handle. The rectangular sliding plate and the flat baffle are slid by pushing the handle. During installation, the strip passes through the through groove and is tied to the surface of the hollow support box, which facilitates the cutting of the strip with scissors and simplifies the dismantling process.

Benefits of technology

提高了线缆拆卸和维护的效率,减少了工作人员寻找合适角度或使用特殊工具的时间,节省了拆除轧带的时间,提升了维护效率。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224233281U_ABST
    Figure CN224233281U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of prefabricated cabins, in particular to a cable arrangement device in a prefabricated cabin body, which is characterized in that a rectangular sliding plate is slidably connected in a hollow supporting box, three plane baffles are fixedly connected to the lower end part of the rectangular sliding plate, and three groups of springs are fixedly connected to the inner surface of the hollow supporting box; two pushing handles are fixedly connected to the outer surface of the rectangular sliding plate, during maintenance operation, a worker fits the surfaces of the pushing handles and pushes the pushing handles in the direction of the sliding grooves, the rectangular sliding plate and the plane baffle are pushed to slide integrally through the pushing handles, and the rectangular sliding plate is extruded to contract in the sliding process of the plane baffle; when the rolling belt is installed, the rolling belt penetrates through the through groove and is bound on the surface of the hollow supporting box and the lower end of the plane baffle to be tightened, when the plane baffle is pushed to slide, the shielding of the lower end of the rolling belt is emptied, at the moment, a worker can cut off the rolling belt through shearing tools such as scissors, and the time needed for dismantling the rolling belt is saved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of prefabricated cabin technology, and in particular to a cable management device for the interior of a prefabricated cabin. Background Technology

[0002] During the operation of prefabricated modules, the effective organization of cables within the module is crucial. As an integrated facility, the prefabricated module contains numerous cables of different types and purposes, responsible for connecting various electrical equipment and ensuring the normal operation of all systems within the module. Proper cable organization not only optimizes the spatial layout within the prefabricated module but, more importantly, ensures the stability and safety of cable operation, reduces the likelihood of malfunctions, and improves the overall performance of the prefabricated module. Current practical applications typically require the following technologies:

[0003] 1. Cable fixing technology: It can firmly fix the cables and prevent them from shifting due to vibration, collision and other factors during the operation of the prefabricated cabin, which would affect the stability of the electrical connection and even cause safety accidents.

[0004] 2. Convenient maintenance technology: Considering the possible faults or upgrades required for the cables, the cable management device should facilitate the disassembly, replacement and repair of the cables, minimizing maintenance time and costs.

[0005] 3. Space optimization technology: Within the limited space of the prefabricated cabin, the routing and layout of cables are rationally planned to improve space utilization and facilitate cable management and maintenance.

[0006] Currently, galvanized cable trays combined with strapping are commonly used to organize cables inside prefabricated cabins. Cables are placed inside the galvanized cable trays and secured with strapping to ensure stability. During installation, to prevent cable movement, the gap between the strapping and the cable is minimized, ensuring the strapping tightly binds the cable.

[0007] However, the above method has a prominent problem: in order to ensure the stability of the cable placement, the strip reduces the gap between the strip and the cable. When performing cable disassembly and maintenance, it is difficult for disassembly equipment such as scissors to reach into the narrow gap between the strip and the cable. This makes the removal of the strip extremely difficult. Workers often need to spend a lot of time and energy to find the right angle or use special tools to remove the strip, which seriously affects the maintenance efficiency. Utility Model Content

[0008] To address the shortcomings of existing technologies, this utility model provides a cable management device for the interior of a prefabricated cabin. This device solves the problem that the strip tape reduces the gap between the strip tape and the cable to ensure stable cable placement. During cable disassembly and maintenance, it is difficult for removal equipment such as scissors to reach into the narrow gap between the strip tape and the cable, making the removal of the strip tape extremely difficult. Workers often need to spend a lot of time and energy to find the right angle or use special tools to remove the strip tape, which seriously affects maintenance efficiency.

[0009] To achieve the above objectives, this utility model provides the following technical solution:

[0010] A cable management device for the interior of a prefabricated cabin includes a galvanized cable tray body. A hollow support box is fixedly connected to the lower end of the galvanized cable tray body. A rectangular slide plate is slidably connected inside the hollow support box. Three flat baffles are fixedly connected to the lower end of the rectangular slide plate. Three sets of springs are fixedly connected to the inner surface of the hollow support box. The three flat baffles are respectively fixedly connected to the outer surfaces of the three sets of springs. Two push handles are fixedly connected to the outer surface of the rectangular slide plate. Both push handles are slidably connected inside the hollow support box.

[0011] Preferably, the galvanized cable tray body has a set of through grooves inside, and a strip is sleeved inside the set of through grooves. The strip is sleeved on the outer surface of the hollow support box and the flat baffle.

[0012] Preferably, the galvanized cable tray body has a cable body inside, and a cable support base is provided on the outer surface of the cable body. Two elastic blocks are fixedly connected to the lower end of the cable support base.

[0013] Preferably, both elastic blocks are engaged with the inner surface of a set of through slots, and the outer surface of the galvanized cable tray body is slidably connected with a cable tray top cover.

[0014] Preferably, the outer surface of the galvanized cable tray body is provided with a cable tray support arm, and the upper end of the cable tray support arm is provided with a prefabricated compartment body.

[0015] Preferably, the galvanized cable tray body is installed inside the prefabricated cabin body, and a set of hoisting columns are fixedly connected to the outer surface of the prefabricated cabin body.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. During maintenance, the operator presses against the surface of the push handle and pushes it along the slide groove. The push handle causes the rectangular slide plate and the flat baffle to slide as a whole. During the sliding of the flat baffle, the rectangular slide plate is compressed and contracted. When the strip is installed, it passes through the through groove and is tied to the surface of the hollow support box and the lower end of the flat baffle for tightening. When the flat baffle is pushed and slids, the obstruction at the lower end of the strip will be cleared. At this time, the operator can use scissors or other cutting tools to cut off the strip, saving the time required to remove the strip and improving the efficiency of the overall maintenance work.

[0018] 2. Place the cable body on the inner surface of the cable support base, and stack it more clearly and neatly by binding the cable support base surface. The clear and neat cable body is more conducive to later troubleshooting and maintenance work. With the binding and limiting effect of the inner wall of the cable support base and the cable body, it is ensured that the cable body will not shift significantly due to shaking, thus ensuring the stability of the cable body. Attached Figure Description

[0019] The above description is only an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the preferred embodiments of this utility model are described in detail below with reference to the accompanying drawings.

[0020] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0021] Figure 2 This is a structural diagram of the main connection of the galvanized cable tray of this utility model;

[0022] Figure 3 This is an exploded view of the cable support base connection of this utility model;

[0023] Figure 4 This is an exploded view of the rectangular sliding plate connection of this utility model.

[0024] Legend: 11. Galvanized cable tray body; 12. Hollow support box; 13. Rectangular sliding plate; 14. Flat baffle; 15. Spring; 16. Push handle; 17. Through groove; 18. Rolled strip; 19. Cable body; 21. Cable support base; 22. Elastic block; 23. Cable tray top cover; 24. Cable tray support arm; 25. Prefabricated compartment body; 26. Lifting column. Detailed Implementation

[0025] This application provides a cable management device for the interior of a prefabricated cabin. It effectively solves the problem of reduced gaps between the cable strip and the cable for cable placement stability. During cable removal and maintenance, it is difficult for removal tools such as scissors to reach into the narrow gaps, making removal extremely difficult. Workers often need to spend considerable time and effort finding the right angle or using special tools, severely impacting maintenance efficiency. In this new device, workers press against the push handle and push it along the groove. The push handle causes the rectangular slide plate and the flat baffle to slide together. During the sliding of the flat baffle, the rectangular slide plate contracts. The cable strip, which is installed by passing through the groove and being secured to the surface of the hollow support box and the lower end of the flat baffle, is tightened. As the flat baffle slides, it clears the obstruction at the lower end of the cable strip, allowing workers to use scissors or other cutting tools to cut it off. This saves time required for cable removal and improves the overall efficiency of maintenance.

[0026] Example

[0027] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the technical solution in this application embodiment effectively solves the problem that the strip reduces the gap between the strip and the cable to ensure cable placement stability. During cable disassembly and maintenance, it is difficult for removal equipment such as scissors to reach into the narrow gap between the strip and the cable, making strip removal extremely difficult. Workers often need to spend a lot of time and effort finding the right angle or using special tools to remove the strip, seriously affecting maintenance efficiency. The overall concept is as follows: A cable management device inside a prefabricated cabin includes a galvanized cable tray body 11, a hollow support box 12 fixedly connected to the lower end of the galvanized cable tray body 11, a rectangular sliding plate 13 slidably connected inside the hollow support box 12, and three flat baffles 14 fixedly connected to the lower end of the rectangular sliding plate 13. Three sets of springs 15 are fixedly connected to the inner surface of box 12. Three flat baffles 14 are fixedly connected to the outer surfaces of the three sets of springs 15 respectively. Two push handles 16 are fixedly connected to the outer surface of rectangular slide plate 13. Both push handles 16 are slidably connected inside the hollow support box 12. A set of through grooves 17 is opened inside the galvanized cable tray body 11. A strip 18 is sleeved inside the through groove 17. The strip 18 is sleeved on the outer surfaces of the hollow support box 12 and the flat baffles 14. When it is necessary to disassemble, replace or maintain the cable body 19, the strip 18 needs to be cut off. During maintenance, the worker presses against the surface of the push handle 16 and pushes it along the direction of the groove. The push handle 16 pushes the rectangular slide plate 13 and the flat baffles 14 to slide as a whole (refer to the attached instruction manual). Figure 4(to slide to the right), and during the sliding of the flat baffle 14, the rectangular slide plate 13 is squeezed and contracted. When the strip 18 is installed, it passes through the through groove 17 and is tied to the surface of the hollow support box 12 and the lower end of the flat baffle 14 for tightening. When the flat baffle 14 is pushed and slid, the obstruction at the lower end of the strip 18 will be cleared. At this time, the workers can use scissors or other cutting tools to cut the strip 18. After the cutting is completed, the push handle 16 is released, and the rectangular slide plate 13 slides back to its original position under the elastic force of the spring 15.

[0028] The galvanized cable tray body 11 contains a cable body 19 inside. A cable support base 21 is provided on the outer surface of the cable body 19. Two elastic blocks 22 are fixedly connected to the lower end of the cable support base 21. Both elastic blocks 22 are engaged in the inner surface of a set of through grooves 17. When installing the cable, the cable support base 21 is pressed onto the upper end of the through groove 17. When the through groove 17 contacts the surface of the elastic blocks 22, the inclined surface of the blocks is squeezed and deformed. The elastic force of the two elastic blocks 22 is used to reset and engage in the inner surface of the through groove 17, thereby fixing the cable support base 21. The cable body 19 is placed on the inner surface of the cable support base 21, and the cable strips 18 are tied to the surface of the cable support base 21 to make the stacking clearer and neater. The clear and neat cable body 19 is more conducive to later troubleshooting and maintenance. Under the combined action of the binding and limiting of the inner wall of the cable support base 21 and the cable body 19, the cable body 19 is ensured not to shift significantly due to shaking, thus ensuring the stability of the cable body 19.

[0029] A cable tray top cover 23 is slidably connected to the outer surface of the galvanized cable tray body 11. A cable tray support arm 24 is provided on the outer surface of the galvanized cable tray body 11. A prefabricated compartment body 25 is provided at the upper end of the cable tray support arm 24. The galvanized cable tray body 11 is located inside the prefabricated compartment body 25. A set of lifting columns 26 is fixedly connected to the outer surface of the prefabricated compartment body 25. The cable body 19 is placed inside the galvanized cable tray body 11. The galvanized cable tray body 11 and its sliding cable tray top cover 23 provide shielding and protection for the cable body 19. 9. Power is supplied to the electrical components inside the prefabricated cabin body 25. The galvanized cable tray body 11 is prefabricated and assembled in the factory before construction and installation. When needed, it can be transported directly to the application site with the help of handling and hoisting equipment, saving construction time. The cable tray support arm 24 is fixedly installed on the inner surface of the prefabricated cabin body 25 to provide support for the galvanized cable tray body 11 and the hollow support box 12 at its bottom. The hollow support box 12 is fixedly installed at the lower end of the galvanized cable tray body 11 by screwing bolts.

[0030] To address the problems existing in the prior art, this utility model provides a cable management device for the interior of a prefabricated cabin. During maintenance operations, the operator presses against the surface of the push handle 16 and pushes it along the slide groove. The push handle 16 pushes the rectangular slide plate 13 and the flat baffle 14 to slide as a whole. During the sliding of the flat baffle 14, the rectangular slide plate 13 is compressed and contracted. When the strip 18 is installed, it passes through the through groove 17 and is tied to the surface of the hollow support box 12 and the lower end of the flat baffle 14 for tightening. When the flat baffle 14 is pushed and slids, the obstruction at the lower end of the strip 18 is cleared. At this time, the operator can use scissors or other cutting tools to cut off the strip 18, saving the time required to remove the strip 18 and improving the efficiency of the overall maintenance work.

[0031] Galvanized cable tray body 11: As the main load-bearing structure of the cable body 19, it provides space for the cable and works with the cable tray top cover 23 to provide shielding and protection for the cable body 19.

[0032] Hollow support box 12: The interior provides sliding space for components such as rectangular slide plate 13. It works together with rectangular slide plate 13, flat baffle 14, and spring 15 to connect with galvanized cable tray body 11 and assist in supporting the entire cable management device.

[0033] Rectangular slide plate 13: The rectangular slide plate 13 and the flat baffle 14 slide together. It can retract under the sliding pressure of the flat baffle 14. With the help of the spring 15, it can be reset after the strip 18 is removed, so as to realize the cyclic use of the strip 18 removal operation.

[0034] Flat baffle 14: When the strip 18 is installed, its lower end participates in the binding and tightening of the strip 18. During maintenance, it slides to clear the obstruction at the lower end of the strip 18, making it convenient to cut off the strip 18.

[0035] Spring 15: Provides a restoring force for the rectangular slide plate 13 and the flat baffle 14, so that they can return to their initial position after the strip 18 is removed, so that they can be used again next time, ensuring that the device can repeat the strip 18 removal operation;

[0036] Push handle 16: Fixed to the outer surface of rectangular slide plate 13, making it easy for staff to hold. The staff pushes along the slide groove to drive the rectangular slide plate 13 and the flat baffle 14 to slide as a whole.

[0037] Through slot 17: used for connecting the strip 18, and at the same time provides a snap-fit ​​position for the elastic snap block 22 at the lower end of the cable support base 21, so as to fix the cable support base 21.

[0038] The strip 18 passes through the through groove 17 and is tightened by binding it to the surface of the hollow support box 12 and the lower end of the flat baffle 14. At the same time, it is bound to the surface of the cable support base 21 to fix the cable body 19, so that it remains stable in the cable tray, making it easy to stack the cables clearly and neatly, which is beneficial for later maintenance.

[0039] Cable body 19: Placed inside the galvanized cable tray body 11, and fixed by the cable support base 21 and the strip 18, it provides power supply to the electrical components inside the prefabricated cabin body 25 and is the core object served by the entire cable management device.

[0040] Cable support base 21: It is fixed by the elastic block 22 at the lower end engaging with the inner surface of the through groove 17, providing support for the cable body 19. Together with the strip 18, it ensures that the cable body 19 will not shift significantly due to shaking, ensuring cable stability. At the same time, it makes the cable placement more orderly, making it easier to organize and maintain.

[0041] Elastic locking block 22: Specifically made of elastic alloy or engineering plastic, elastic alloy is relatively more expensive and can be selected according to the cost of use. It achieves locking and limiting through its own elastic structure.

[0042] Cable tray top cover 23: Together with the galvanized cable tray body 11, it provides shielding protection for the cable body 19, preventing external factors from damaging the cable and ensuring the normal operation of the cable;

[0043] Cable tray support arm 24: The upper end is connected to the prefabricated cabin body 25 to provide support for the galvanized cable tray body 11 and the hollow support box 12 at its bottom, ensuring the stable installation of the entire cable management device in the prefabricated cabin body 25.

[0044] Prefabricated cabin body 25: Provides installation space for the cable management device through the cable tray support arm 24. The cable body 19 inside the cabin supplies power to its internal electrical components and is the application site of the entire cable management device.

[0045] Lifting column 26: Facilitates the transport of the prefabricated cabin body 25 and its internally pre-installed cable management device to the application site using handling and lifting equipment, saving construction time and enabling rapid deployment.

[0046] Working principle:

[0047] The first step is to place the cable body 19 inside the galvanized cable tray body 11. The galvanized cable tray body 11 and its sliding cable tray top cover 23 provide shielding and protection for the cable body 19. The cable body 19 supplies power to the electrical components inside the prefabricated compartment body 25. The galvanized cable tray body 11 is prefabricated and assembled in the factory before construction and installation. When needed, it can be transported directly to the application site with the help of handling and hoisting equipment, saving construction time. The cable tray support arm 24 is fixedly installed on the inner surface of the prefabricated compartment body 25 to provide support for the galvanized cable tray body 11 and its bottom hollow support box 12. The hollow support box 12 is fixedly installed at the lower end of the galvanized cable tray body 11 by screwing bolts.

[0048] The second step involves pressing the cable support base 21 onto the upper end of the through groove 17 during cable installation. When the through groove 17 contacts the surface of the elastic locking block 22, the inclined surface of the through groove 17 is compressed, causing deformation. The elastic locking blocks 22 then reset and lock onto the inner surface of the through groove 17, thus fixing the cable support base 21. The cable body 19 is then placed on the inner surface of the cable support base 21, and the cable tie 18 is bound to the surface of the cable support base 21 for a clearer and neater stacking. The main body 19 facilitates later troubleshooting and maintenance. Through the combined action of the inner wall of the cable support base 21 and the binding and limiting function of the cable body 19, it ensures that the cable body 19 will not shift significantly due to shaking, guaranteeing its stability. When disassembling, replacing, or maintaining the cable body 19 is required, the strip 18 needs to be cut and removed. During maintenance, the operator presses against the surface of the push handle 16 and pushes it along the slide groove. The push handle 16 then slides the rectangular slide plate 13 and the flat baffle 14 as a whole (refer to the attached instruction manual). Figure 4 (to slide to the right), and during the sliding of the flat baffle 14, the rectangular slide plate 13 is squeezed and contracted. When the strip 18 is installed, it passes through the through groove 17 and is tied to the surface of the hollow support box 12 and the lower end of the flat baffle 14 for tightening. When the flat baffle 14 is pushed and slid, the obstruction at the lower end of the strip 18 will be cleared. At this time, the workers can use scissors or other cutting tools to cut the strip 18. After the cutting is completed, the push handle 16 is released, and the rectangular slide plate 13 slides back to its original position under the elastic force of the spring 15.

[0049] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.

Claims

1. A cable management device for the interior of a prefabricated cabin, comprising a galvanized cable tray body (11), wherein a hollow support box (12) is fixedly connected to the lower end of the galvanized cable tray body (11), characterized in that, The hollow support box (12) has a rectangular slide plate (13) slidably connected inside. The lower end of the rectangular slide plate (13) is fixedly connected to three flat baffles (14). The inner surface of the hollow support box (12) is fixedly connected to three sets of springs (15). The three flat baffles (14) are respectively fixedly connected to the outer surface of the three sets of springs (15). Two push handles (16) are fixedly connected to the outer surface of the rectangular slide plate (13), and both push handles (16) are slidably connected inside the hollow support box (12).

2. The cable management device inside a prefabricated cabin as described in claim 1, characterized in that, The galvanized cable tray body (11) has a set of through slots (17) inside. Among them, a set of through grooves (17) are fitted with a strip (18), which is fitted on the outer surface of the hollow support box (12) and the flat baffle (14).

3. The cable management device inside a prefabricated cabin as described in claim 2, characterized in that, The galvanized cable tray body (11) is provided with a cable body (19) inside, and a cable support base (21) is provided on the outer surface of the cable body (19). Two elastic blocks (22) are fixedly connected to the lower end of the cable support base (21).

4. The cable management device inside a prefabricated cabin as described in claim 3, characterized in that, Both of the elastic blocks (22) are engaged with the inner surface of a set of through slots (17); The outer surface of the galvanized cable tray body (11) is slidably connected to the cable tray top cover (23).

5. The cable management device inside a prefabricated cabin as described in claim 4, characterized in that, The outer surface of the galvanized cable tray body (11) is provided with cable tray support arms (24). The upper end of the bridge support arm (24) is provided with a prefabricated cabin body (25).

6. The cable management device inside a prefabricated cabin as described in claim 5, characterized in that, The galvanized cable tray body (11) is installed inside the prefabricated cabin body (25); A set of hoisting columns (26) are fixedly connected to the outer surface of the prefabricated cabin body (25).