Cable bridge communicating structure
By adopting a layered partition structure and guide plate in the cable tray communication structure, the problems of messy cable layout and winding and knotting are solved, the orderly arrangement of cables and the stability of the bridge are achieved, and maintenance convenience is improved.
Patent Information
- Application Number
- CN202421478229.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-26
AI Technical Summary
The existing cable tray communication structure appears messy and disorderly when laying various types of cables, resulting in cable tangling and knotting, damage to the bridge tray, and inconvenient for maintenance.
A cable tray communication structure is designed, and a layered partition structure is formed using multiple partition plates and guide plates. A stable support plane is formed through the support body, the support plate and the base. The extrusion soft rollers and the partition plate are used to reduce friction, and a perspective window and a flip cover are arranged for easy installation and maintenance.
It realizes neat and orderly classification and arrangement of cables, avoids winding and knotting and damage to the bridge frame, optimizes the interconnection structure layout inside the bridge frame, and improves the convenience of maintenance and maintenance.
Smart Images

Figure CN222884228U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cable bridges and relates to a cable bridge connection structure. Background Art
[0002] Today, we have fully entered the era of electricity and the Internet. Whether in life or work, we need to use cables to transmit signals and electricity. Cables have become one of the important media for wired transmission of signals and electricity. Cable bridges are needed to keep the cables in a stable and supported state. Cable bridges become the supporting structure for laying cables. Cable bridges are divided into trough-type, tray-type, ladder-type, grid-type and other structures, and are composed of brackets, brackets and installation accessories. They can be erected independently or laid on various buildings (structures) and pipe gallery brackets. The structure must match the performance of the cable to meet the basic technical requirements of simple structure, beautiful appearance, flexible configuration and convenient maintenance.
[0003] The internal connecting structure of the bridge is not user-friendly in design for the arrangement of cables, and lacks reasonable classification measures. Due to the different types of cables, the various types of cables are arranged in a messy and disorderly manner inside the bridge. The cables are piled up inside the bridge, causing the cables to be entangled and knotted. The bridge is squeezed by the knotted parts of the cables for a long time, causing damage to the bridge. It is not convenient to use and is not easy to maintain and repair later. Utility Model Content
[0004] The technical problem to be solved by the utility model is to overcome the defects of the prior art and solve the problem that the existing cable bridge connecting structure makes the arrangement of various types of cables inside the bridge appear messy and disorderly, making it inconvenient to inspect and repair the cables.
[0005] The utility model solves the technical problem by adopting the following technical solution: a cable tray connection structure, comprising a support plate, wherein both left and right ends of the support plate are provided with support bodies, a plurality of partition plates arranged up and down are provided at the front end of the support plate and located between two adjacent support bodies, a guide plate is provided at the front end of the partition plate, an inclined slope is provided on the upper surface of the guide plate, guide rods are provided at the upper end of the partition plate and located above the adjacent inclined slopes on both sides, and the rear end of the guide rods is fixed in front of the support plate;
[0006] An extrusion soft roller is rotatably connected above two adjacent guide rods on the same horizontal plane, a separator is rotatably connected in front of the extrusion soft roller, an arched elastic pad located above the adjacent guide plate is fixed at the lower end of the separator, and a panel is fixed at the front end between multiple separators.
[0007] In a preferred technical solution of the utility model, support rods penetrating through the four corners of the support sheet are fixed at the four corners between the support bodies, and the support rods are arranged around the plurality of partition plates.
[0008] In a preferred technical solution of the utility model, the arched elastic pad is located between two adjacent guide rods on the same horizontal plane.
[0009] In a preferred technical solution of the utility model, a perspective window is arranged on the surface of the panel, and the upper and lower ends of the perspective window are respectively slidably connected to the upper and lower ends of the panel.
[0010] In a preferred technical solution of the utility model, the upper end of the panel is rotatably connected to a flip cover located in front of the supporting piece, and the maximum flip angle of the flip cover is ninety degrees.
[0011] In a preferred technical solution of the utility model, a base is fixed at the lower end of the bracket, and the base is slidably connected under the panel.
[0012] Compared with the prior art, the utility model achieves the following beneficial effects:
[0013] The support rod connects the two support bodies into one, and the base forms a horizontal support plane for the support sheet and the support body. The support body lifts the left and right ends of the support sheet on the base, and the support body plays a role of stable support for the support sheet. The support sheet and the base form a 90-degree vertical placement angle. The partition plate forms a layered partition connection structure layout arranged from top to bottom at the front end of the support sheet. The flap is opened to separate the panel from the support sheet. The guide plate facilitates the embedding and installation of the cable on the surface of the partition plate, and facilitates the neat and orderly classification and arrangement of various types of cables on different partition plates. The layered structure can prevent the laid cables from being entangled and knotted, and avoid damage to the bridge caused by cable knotting, thereby optimizing the connection structure layout inside the bridge.
[0014] A perspective window is provided to facilitate the installation status of the cable placed between the partition plate and the partition sheet. The visual perspective window facilitates the alignment of the partition plate with the corresponding partition sheet one by one. The panel is pushed so that the partition sheet is pushed onto the corresponding partition plate. The guide rod guides the rolling extrusion soft roller. The extrusion soft roller reduces the friction of the partition sheet during movement. At the same time, the extrusion soft roller will flatten the cables laid on the surface of each partition plate. The arched elastic pad is used in conjunction with the guide sheet to fix the cable on the corresponding partition plate surface. The flap is closed to facilitate the fixation of the panel and the support sheet. The perspective window is opened for later maintenance and repair, which is highly user-friendly. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0016] Figure 2 This is a separation effect diagram of the support sheet and the panel of the utility model;
[0017] Figure 3 This is a disassembly effect diagram of the overall structure of the utility model;
[0018] Figure 4 This is an assembly effect diagram of the partition plate and the partition sheet of the utility model.
[0019] In the figure: 1, support plate; 2, support body; 3, support rod; 4, base; 5, guide rod; 6, partition plate; 7, guide plate; 8, inclined slope; 9, squeezing soft roller; 10, partition plate; 11, arched elastic pad; 12, panel; 13, perspective window; 14, flip cover. DETAILED DESCRIPTION
[0020] See also Figure 1-4 The utility model provides a technical solution: a cable bridge connection structure, including a support sheet 1; a support body 2 is arranged at both ends of the support sheet 1, a plurality of partition plates 6 arranged up and down are arranged at the front end of the support sheet 1 and located between two adjacent support bodies 2, a guide sheet 7 is arranged at the front end of the partition plate 6, an inclined slope 8 is opened on the upper surface of the guide sheet 7, a guide rod 5 is arranged on the upper end of the partition plate 6 and located above the adjacent inclined slope 8 on both sides, the rear end of the guide rod 5 is fixed in front of the support sheet 1, and above the two adjacent guide rods 5 on the same horizontal plane A squeezing soft roller 9 is connected in a rolling manner, and a separator 10 is connected in rotation in front of the squeezing soft roller 9. An arched elastic pad 11 located above the adjacent guide sheet 7 is fixed at the lower end of the separator 10. A panel 12 is fixed at the front end between the plurality of separators 10. A flip cover 14 located in front of the support sheet 1 is connected in rotation at the upper end of the panel 12. The maximum flip angle of the flip cover 14 is ninety degrees. The flip cover 14 is flipped ninety degrees in the direction away from the support sheet 1, and the flip cover 14 is separated from the support sheet 1. The flip cover 14 changes from being perpendicular to the panel 12 to being parallel to the panel 12, so that the flip cover 14 is separated from the support sheet 1, and at the same time, the left and right ends of the flip cover 14 are separated from the corresponding support body 2, revealing multiple partition plates 6 and multiple partition plates 10, and the panel 12 is pulled away from the support sheet 1, and the partition plates 10 gradually move away from the corresponding partition plates 6, and the squeezing soft roller 9 moves along the surfaces of the two guide rods 5 on the same horizontal plane as the partition plates 10 move, and the squeezing soft roller 9 gradually moves away from the support sheet 1, and the partition plates 10 drive the corresponding arched elastic pads 11 to move, and the arched elastic pads 11 slide over the corresponding guide sheet 7 surface, and the arched elastic pads 1 During the movement, the corresponding guide sheet 7 squeezes and elastically deforms the arched elastic pad 11, which gradually shrinks and moves forward from the back of the corresponding guide sheet 7 to the front of the corresponding guide sheet 7. The arched elastic pad 11 returns to its original state, and the squeezing soft roller 9 gradually separates from the upper part between the two corresponding guide rods 5 on the same horizontal plane, and the partition sheet 10 gradually separates from the corresponding partition plate 6. Therefore, the flip cover 14 is opened to separate the panel 12 from the support sheet 1, so that different types of cables can be laid on the surface of each different partition plate 6 respectively.
[0021] The four corners between the brackets 2 are fixed with support rods 3 that pass through the four corners of the support sheet 1. The support rods 3 are arranged around multiple partition plates 6. The support rods 3 connect the two brackets 2 into one. A base 4 is fixed at the lower end between the brackets 2. The base 4 is slidably connected to the bottom of the panel 12. The base 4 forms a horizontal support plane for the support sheet 1 and the bracket 2. The bracket 2 lifts the left and right ends of the support sheet 1 on the base 4. The bracket 2 plays a role in stably supporting the support sheet 1. The support sheet 1 and the base 4 form a vertical placement angle of 90 degrees. The partition plate 6 forms a top-down support at the front end of the support sheet 1. The interconnected structure layout of the layered partitions arranged at the bottom inserts the cables from the guide sheet 7 to the corresponding partition plate 6 along the surface of the inclined slope 8. The inclined slope 8 increases the contact area between the cable and the guide sheet 7, so that the cable is laid flat between the partition plate 6 and the adjacent guide rod 5. The guide sheet 7 facilitates the embedding and installation of the cable on the surface of the partition plate 6. The cable is embedded between the partition plate 6 and the adjacent guide rod 5. The guide rod 5 limits the surface of the cable and reinforces the laying on the surface of the adjacent partition plate 6, so that cables of various types can be neatly and orderly classified and arranged on different partition plates 6.
[0022] The arched elastic pad 11 is located between two adjacent guide rods 5 on the same horizontal plane. The panel 12 is held by hand. A perspective window 13 is provided on the surface of the panel 12. The visual perspective window 13 aligns the squeezing soft roller 9 with the guide sheet 7 on the same horizontal plane, so that the partition 10 corresponds to the partition plate 6 on the same horizontal plane one by one. At the same time, the arched elastic pad 11 corresponds to the corresponding guide sheet 7 one by one. The perspective window 13 is provided to facilitate the installation status of the cable placed between the partition plate 6 and the partition plate 10. The panel 12 is pushed in the direction close to the support sheet 1. The support sheet 1 squeezes the soft roller 9, the partition plate 10, the arched elastic pad 11, and the flip cover 14 close to the support sheet 1. The support sheet 1 moves in the direction of the squeezing soft roller 9, and the squeezing soft roller 9 gradually approaches the upper part between the two corresponding guide rods 5 on the same horizontal plane. The squeezing soft roller 9 rolls along the corresponding guide rod 5 in the direction close to the support sheet 1. The squeezing soft roller 9 rolls along the surface of the two guide rods 5 on the same horizontal plane as the separator 10 moves. The squeezing soft roller 9 gradually approaches the support sheet 1. The guide rod 5 guides the rolling squeezing soft roller 9. The squeezing soft roller 9 reduces the friction of the separator 10 during the movement. At the same time, the squeezing soft roller 9 rolls and crushes the cables laid on the surface of each separator 6. The squeezing soft roller 9 makes the cables laid on the surface of the separator 6 flat.
[0023] The partition sheet 10 is gradually pushed by the panel 12 to the top of the corresponding partition plate 6 below it, and the partition sheet 10 pushes the corresponding arched elastic pad 11 along the corresponding inclined slope 8 onto the corresponding guide sheet 7. The arched elastic pad 11 is squeezed by the corresponding guide sheet 7 during the movement and elastically deforms. The arched elastic pad 11 gradually shrinks, and the partition plate 6 gradually pushes the corresponding arched elastic pad 11 from the front of the corresponding guide sheet 7 to the back of the guide sheet 7. The arched elastic pad 11 gradually rebounds to its original state. The lower end of the arched elastic pad 11 contacts the cable on the upper surface of the corresponding partition plate 6, and the arched elastic pad 11 presses the cable surface tightly. The arched elastic pad 11 has a reinforcement effect on the cable. The arched elastic pad 11 is used in conjunction with the guide sheet 7 to fix the cable on the surface of the corresponding partition plate 6.
[0024] The flip cover 14 is flipped 90 degrees toward the direction close to the support sheet 1, and the flip cover 14 is perpendicular to the panel 12, so that the rear end of the flip cover 14 is tightly buckled on the upper end of the support sheet 1, and the flip cover 14 is closed to fix the panel 12 and the support sheet 1, so that the panel 12 is stably installed between the two brackets 2 and above the base 4;
[0025] The surface of each partition plate 6 forms a partition-type layered structure which is arranged up and down. The same type of cables are laid on the same partition plate 6. This layered structure can prevent the laid cables from getting entangled and knotted, and avoid damage to the bridge frame due to cable knotting. It optimizes the interconnecting structure layout inside the bridge frame. The upper and lower ends of the perspective window 13 are slidingly connected to the upper and lower ends of the panel 12 respectively. The perspective window 13 can be opened to facilitate maintenance and repair at a later stage, which has the advantage of being highly user-friendly.
[0026] Working principle: the flip cover 14 is separated from the support sheet 1, and the flip cover 14 changes from being perpendicular to the panel 12 to being parallel to the panel 12, so that the flip cover 14 is separated from the support sheet 1, and at the same time, the left and right ends of the flip cover 14 are separated from the corresponding support body 2, respectively, revealing multiple partition plates 6 and multiple partition plates 10, and the panel 12 is pulled in the direction away from the support sheet 1, and the partition plates 10 gradually move away from the corresponding partition plates 6, and the squeezing soft roller 9 rolls along the surfaces of the two guide rods 5 on the same horizontal plane as the partition plates 10 move, and the squeezing soft roller 9 gradually moves away from the support sheet 1, and the partition plates 10 drive the corresponding arched elastic pads 11 to move, and the arched elastic pads 11 slide over the surfaces of the corresponding guide plates 7, and the arched elastic pads 11 are squeezed by the corresponding guide plates 7 during the movement to produce elastic The arched elastic pad 11 gradually contracts and moves forward from the back of the corresponding guide piece 7 to the front of the corresponding guide piece 7. The arched elastic pad 11 returns to its original state, and the squeezing soft roller 9 gradually detaches from the upper part between the two corresponding guide rods 5 on the same horizontal plane. The separator 10 gradually detaches from the corresponding separator 6. The cable is inserted from the guide piece 7 to the corresponding separator 6 along the surface of the inclined slope 8, so that the cable is laid flat between the separator 6 and the adjacent guide rod 5. The panel 12 is held by hand, and the perspective window 13 is visually aligned with the squeezing soft roller 9 on the guide piece 7 on the same horizontal plane, so that the separator 10 corresponds to the separator 6 on the same horizontal plane one by one. At the same time, the arched elastic pad 11 corresponds to the corresponding guide piece 7 one by one, and moves toward the support sheet 1. The panel 12 is pushed in the direction of the support sheet 1, and the support sheet 1 moves the squeezing soft roller 9, the separator 10, the arched elastic pad 11, and the flip cover 14 toward the direction close to the support sheet 1. The squeezing soft roller 9 gradually approaches the upper part between the two corresponding guide rods 5 on the same horizontal plane, and the squeezing soft roller 9 rolls along the corresponding guide rod 5 toward the direction close to the support sheet 1. The squeezing soft roller 9 rolls along the surface of the two guide rods 5 on the same horizontal plane as the separator 10 moves, and the squeezing soft roller 9 gradually approaches the support sheet 1. The squeezing soft roller 9 rolls and crushes the surface of each separator 6, and the squeezing soft roller 9 makes the cables laid on the surface of the separator 6 become flat. The separator 10 is gradually pushed into the corresponding separator 6 below it by the panel 12, and the separator 10 moves the corresponding arched elastic pad 11 along the opposite The inclined slope 8 is pushed onto the corresponding guide piece 7, and the arched elastic pad 11 is squeezed by the corresponding guide piece 7 during the movement and elastically deforms. The arched elastic pad 11 gradually shrinks, and the partition plate 6 gradually pushes the corresponding arched elastic pad 11 from the front of the corresponding guide piece 7 to the back of the guide piece 7. The arched elastic pad 11 gradually rebounds to its original state. The lower end of the arched elastic pad 11 contacts the cable on the upper surface of the corresponding partition plate 6, and the arched elastic pad 11 presses the cable surface tightly. The arched elastic pad 11 reinforces the cable. The arched elastic pad 11 is used in conjunction with the guide piece 7 to fix the cable on the surface of the corresponding partition plate 6, and fix the panel 12 to the support piece 1, so that the panel 12 is firmly installed between the two brackets 2 and above the base 4.
Claims
1. A cable tray connection structure, comprising a support sheet (1), characterized in that: The support sheet (1) is provided with a support body (2) at both the left and right ends; a plurality of partition plates (6) arranged in an up-and-down arrangement are provided at the front end of the support sheet (1) and between two adjacent support bodies (2); a guide plate (7) is provided at the front end of the partition plate (6); an inclined slope (8) is provided on the upper surface of the guide plate (7); guide rods (5) are provided on the left and right sides of the upper end of the partition plate (6) and above the adjacent inclined slopes (8); the rear end of the guide rods (5) is fixed in front of the support sheet (1); An extrusion soft roller (9) is rotatably connected above two adjacent guide rods (5) on the same horizontal plane, a separator (10) is rotatably connected in front of the extrusion soft roller (9), an arched elastic pad (11) located above the adjacent guide plate (7) is fixed at the lower end of the separator (10), and a panel (12) is fixed at the front end between the plurality of separators (10).
2. A cable tray connection structure according to claim 1, characterized in that: Support rods (3) passing through the four corners of the support sheet (1) are fixed at the four corners of the support body (2), and the support rods (3) are arranged around the plurality of partition plates (6).
3. A cable tray connection structure according to claim 1, characterized in that: The arched elastic pad (11) is located between two adjacent guide rods (5) on the same horizontal plane.
4. A cable tray connection structure according to claim 1, characterized in that: A perspective window (13) is arranged on the surface of the panel (12), and the upper and lower ends of the perspective window (13) are respectively slidably connected to the upper and lower ends of the panel (12).
5. A cable tray connection structure as claimed in claim 1, characterized in that: The upper end of the panel (12) is rotatably connected to a flip cover (14) located in front of the support sheet (1), and the maximum flip angle of the flip cover (14) is ninety degrees.
6. A cable tray connection structure according to claim 1, characterized in that: A base (4) is fixed at the lower end of the support body (2), and the base (4) is slidably connected below the panel (12).