A type of interlocking street code
By designing the clamping street code of the flipping component and the pushing component, the problem that the existing technology cannot simultaneously adapt to the clamping of cables inside and outside the insulator is solved, realizing efficient cable positioning and suitable for various cable passage scenarios.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI HENGDONG POWER EQUIP CO LTD
- Filing Date
- 2025-08-29
- Publication Date
- 2026-07-31
AI Technical Summary
Existing cable clamping assemblies cannot simultaneously meet the clamping requirements of cables on both the inner and outer sides of insulators, resulting in low efficiency in the bundling operation.
A wire clamping code was designed, comprising a flipping component, a pushing component, and a clamping plate. Through the cooperation of the flipping component and the pushing component, the position of the clamping plate on both sides of the insulator can be switched, which can adapt to the clamping and positioning of cables on the inner and outer sides of the insulator.
It enables rapid clamping and positioning of cables on the inner and outer sides of insulators, improving operational efficiency and adapting to various cable routing scenarios.
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Figure CN224582814U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of street code technology, specifically to a type of wired street code. Background Technology
[0002] When laying cables, cable clamps are installed on walls or utility poles to straighten and fix the cables. When the cable passes the cable clamp, it is tightly pressed against the insulator on the clamp, and then the cable is tied to the insulator by wrapping with wire to position the cable and prevent it from falling off. However, the binding operation is inefficient. To solve the problem of low binding efficiency, for example, Chinese Patent 202320448209.9 discloses a new type of cable clamp, including: a frame, the frame including a vertical plate and a horizontal bar, the right end of the horizontal bar is connected to the vertical plate, and the left end of the horizontal bar has a slot that is open to the left; a connecting rod, the horizontal bar is connected to an upwardly extending connecting rod; an insulator, the insulator is sleeved on the connecting rod, and the outer circumferential surface of the insulator has an annular groove; and a wire clamping assembly, which includes a clamping plate and an insert, the lower end of the clamping plate being connected to the insert.
[0003] For the aforementioned existing technologies, installing customized matching wire clamping components on the street code improves efficiency compared to bundling. However, the above-mentioned wire clamping components can only position cables passing through the outside of the insulator (the side away from the street code bracket). They are not applicable to cables passing through the inside of the insulator (the side closer to the street code bracket) and cannot meet the requirement of clamping cables in both the inside and outside of the insulator. Utility Model Content
[0004] The purpose of this utility model is to overcome the above-mentioned technical deficiencies and propose a wire clamping street code to solve the technical problem that the existing technology cannot meet the need for clamping in both the inner and outer sides of the insulator when cables pass through.
[0005] To achieve the above-mentioned technical objectives, the present invention adopts the following technical solution: This utility model provides a wire-lined street code, including: Street vending machine stand; An insulator, rotatably connected to the street code bracket; and The wire clamping mechanism includes a flipping component, a pushing component, and a wire clamping plate. The flipping component is disposed on one side of the street code bracket. The flipping component has a rotatable flipping end, which is connected to the pushing component for flipping the pushing component to switch positions on both sides of the insulator. The pushing component has a linearly movable end, which is rotatably connected to the wire clamping plate for pushing the wire clamping plate toward the insulator. The rotation axis of the wire clamping plate is perpendicular to the rotation axis of the flipping component for rotating and adjusting the orientation of the wire clamping plate.
[0006] In some embodiments, the flipping assembly includes a rotating shaft, a rotating rod, and a positioning member. The positioning member has a retractable locking end. The rotating shaft is rotatably connected to one side of the street code bracket. Positioning plates are provided on both sides of the rotating shaft. Positioning holes are provided on the positioning plates. The rotating rod is rotatably connected to the outside of the rotating shaft, and the positioning member is installed on the rotating rod. The retractable end of the positioning member has a locked position state inserted into the positioning hole and an unlocked position state disengaged from the positioning hole.
[0007] In some embodiments, the positioning element includes a locking bolt threaded onto the rotating rod, with its bottom end extending downward through the rotating rod.
[0008] In some embodiments, the pushing assembly includes a screw, a sliding bracket, and a nut. The screw is connected to the flipping end of the flipping assembly, the sliding bracket is slidably connected to the outside of the screw, and the nut is threaded onto the screw and abuts against the side of the sliding bracket away from the insulator.
[0009] In some embodiments, the clamping plate includes a connecting plate and an arc-shaped panel, the connecting plate being rotatably connected to the sliding frame, and the arc-shaped panel being connected to the side of the connecting plate near the insulator.
[0010] In some embodiments, the arc panel is provided with an anti-slip pad on the side near the insulator.
[0011] In some embodiments, a limiting plate is provided at the bottom of the sliding frame, which is used to limit the rotation of the connecting plate to a horizontal position.
[0012] In some embodiments, the street code bracket includes a mounting plate and crossbeams, with a plurality of crossbeams fixedly connected to the mounting plate at equal intervals from top to bottom, and an insulator rotatably connected between two adjacent crossbeams.
[0013] In some embodiments, the clamping mechanism is arranged on either side of the crossbeam.
[0014] In some embodiments, the number of insulators is multiple, the flipping end of the flipping assembly corresponds one-to-one with the insulator, the pushing assembly is installed one-to-one with the flipping end of the flipping assembly, and the clamping plate is rotatably connected one-to-one with the movable end of the pushing assembly.
[0015] Compared with the prior art, the wire clamping street code provided by this utility model, through the wire clamping mechanism composed of a flipping component, a pushing component and a clamping plate, can flip and move the clamping plate to both sides of the insulator. The two sides are the side of the insulator closer to the street code bracket and the side farther away from the street code bracket. The clamping plate can face the insulator and move towards the insulator through the pushing component, quickly clamping and positioning the cable located between the two. It can also switch and adapt to the clamping and positioning scenarios of two cables passing through the insulator, namely the inner side and the outer side. Attached Figure Description
[0016] Figure 1 This is a three-dimensional view of the clamping plate of the clamping street code provided in this embodiment of the utility model located on one side of the insulator; Figure 2 This is a three-dimensional view of the clamping plate of the clamping street code provided in this embodiment of the utility model rotating outward; Figure 3 This is a three-dimensional view of the clamping plate of the clamping street code provided in this embodiment of the utility model located on the other side of the insulator; Figure 4 This is a front view of the clamping plate of the clamping street code provided in this embodiment of the utility model located on one side of the insulator; Figure 5 This is a front view of the clamping plate of the clamping block provided in this embodiment of the utility model located on the other side of the insulator.
[0017] Explanation of reference numerals in the attached figures: 1. Street vending machine bracket; 11. Mounting plate; 12. Crossbeam; 2. Insulators; 3. Wire clamping mechanism; 31. Flipping assembly; 311. Rotating shaft; 312. Rotating rod; 313. Positioning component; 3131. Locking bolt; 314. Positioning plate; 315. Positioning hole; 32. Pushing assembly; 321. Screw; 322. Sliding frame; 323. Nut; 324. Limiting plate; 33. Wire clamping plate; 331. Connecting plate; 332. Arc panel. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0019] To address the technical problem of not being able to clamp and position cables in both scenarios where they pass through the inner and outer sides of the insulator 2, this utility model provides a cable clamping code that can clamp and position cables whether they pass through the inner or outer side of the insulator 2, thereby improving efficiency and expanding the range of applicable scenarios.
[0020] Please see Figure 1-5 This utility model provides a wire clamping code, which includes a code bracket 1, an insulator 2, and a wire clamping mechanism 3.
[0021] In this embodiment, please refer to Figure 1 The insulator 2 is rotatably connected to the street code bracket 1. The street code bracket 1 includes a mounting plate 11 and crossbeams 12. Several crossbeams 12 are fixedly connected to the mounting plate 11 at equal intervals from top to bottom. One insulator 2 is rotatably connected between two adjacent crossbeams 12. There are three crossbeams 12 in total, and one insulator 2 is rotatably connected between two adjacent crossbeams 12. In addition, the mounting plate 11 has several wire holes for bolts to pass through, so as to install the street code bracket 1 to a wall or utility pole.
[0022] For further details, please refer to Figure 1-3 To allow for cable clamping from both sides of the insulator 2, the clamping mechanism 3 includes a flipping component 31, a pushing component 32, and a clamping plate 33. The flipping component 31 is located on one side of the cable clamp bracket 1. Figure 1 As shown. The flipping component 31 has a rotatable flipping end, which is connected to the pushing component 32, and is used to flip the pushing component 32 to switch its position on both sides of the insulator 2, as shown. Figure 1 and Figure 3 As shown, during the flipping action, the insulator 2 can be moved from its right side to its left side. One side corresponds to the inner area closer to the street code bracket 1, and the other side corresponds to the outer area farther from the street code bracket 1. The pushing component 32 has a linearly movable end, which is rotatably connected to the clamping plate 33. This movable end is used to push the clamping plate 33 towards the insulator 2, thereby approaching the insulator 2 and clamping and positioning the cable passing outside the insulator 2. Furthermore, the rotation axis of the clamping plate 33 is perpendicular to the rotation axis of the flipping component 31, allowing for rotational adjustment of the orientation of the clamping plate 33. See details [link to relevant documentation]. Figure 2 It can rotate upwards from the area between the street bracket 1 and the insulator 2 to outside the area, thereby having a space that can be flipped to the other side of the insulator 2. After being flipped 180°, it is also in a position facing the insulator 2, so that on this side, the clamp plate 33 can still be pushed towards the insulator 2 by the pushing assembly 32.
[0023] Understandably, the clamping mechanism 3, composed of the flipping component 31, the pushing component 32, and the clamping plate 33, can flip and move the clamping plate 33 to both sides of the insulator 2. The two sides are the side of the insulator 2 closer to the street code bracket 1 and the side farther away from the street code bracket 1. The clamping plate 33 can face the insulator 2 and move towards the insulator 2 through the pushing component 32, quickly clamping and positioning the cable located between the two. It can also switch and adapt to the clamping and positioning of the cable passing through the inner and outer sides of the insulator 2.
[0024] In one embodiment, please refer to Figure 2 and Figure 3 To achieve a flip-up and lockable positioning on both sides of the insulator, the flip-up assembly 31 includes a rotating shaft 311, a rotating rod 312, and a positioning member 313. The positioning member 313 has a retractable locking end. The rotating shaft 311 is rotatably connected to one side of the street code bracket 1. Positioning plates 314 are provided on both sides of the rotating shaft 311, and positioning holes 315 are opened on the positioning plates 314. The rotating rod 312 is rotatably connected to the outside of the rotating shaft 311, and the positioning member 313 is mounted on... Mounted on the rotating rod 312, the telescopic end of the positioning member 313 has a locked position state that is inserted into the positioning hole 315 and an unlocked position state that is disengaged from the positioning hole 315. In use, the positioning member 313 is first retracted and disengaged from the positioning hole 315. Then, the rotating rod 312 and the rotating shaft 311 are rotated 180° to move to the top of the positioning plate 314 on the other side. Then, the telescopic end of the positioning member 313 is extended downward so that it is inserted into the positioning hole 315 to form a limit lock.
[0025] Furthermore, the positioning component 313 includes a locking bolt 3131, which is threaded onto the rotating rod 312. Its bottom end extends downward through the rotating rod 312. The locking and unlocking can be switched by manually turning the locking bolt 3131. Specifically, turning the locking bolt 3131 upward to disengage it from the positioning hole 315 is an unlocking operation, and turning the locking bolt 3131 downward to insert it into the positioning hole 315 is a locking operation.
[0026] It is understandable that the positioning component 313 can also be a spring pin or other structural component with a plug-in positioning effect. Any existing structural component of the same type can be used, and no single limitation is made here.
[0027] In one embodiment, please refer to Figure 3To facilitate the movement of the clamping plate 33, the pushing assembly 32 includes a screw 321, a sliding frame 322, and a nut 323. The screw 321 is connected to the flipping end of the flipping assembly 31, that is, the screw 321 is fixedly connected to the rotating rod 312. The sliding frame 322 is slidably connected to the outside of the screw 321. The nut 323 is threaded onto the screw 321 and abuts against the side of the sliding frame 322 away from the insulator 2. By rotating the nut 323, the sliding frame 322 can be pushed to slide along the axial direction of the screw 321. Its structure is simple and easy to operate.
[0028] Furthermore, in order to match the curved surface of the cable for clamping, the clamping plate 33 includes a connecting plate 331 and an arc plate 332. The connecting plate 331 is rotatably connected to the bottom end of the sliding frame 322 and can rotate 180° above the horizontal plane. The arc plate 332 is connected to the side of the connecting plate 331 near the insulator 2, and the arc surface matches the outer circle of the cable, which can stably clamp the cable.
[0029] Furthermore, in order to provide protection during clamping, the arc panel 332 is provided with an anti-slip pad on the side near the insulator 2, which prevents slipping and improves stability.
[0030] Furthermore, in order to restrict the wire clamp 33 to a horizontal position during forward and backward flipping, please refer to... Figure 2 and Figure 3 The bottom of the sliding frame 322 is provided with a limiting plate 324. The limiting plate 324 is used to limit the rotation of the connecting plate 331 to a horizontal position. The limiting plate 324 is parallel to the horizontal plane. Based on the limiting plate 324, it extends to both sides to provide bottom support for the connecting plate 331 in the horizontal position, thus forming a limit.
[0031] In one embodiment, the wire clamping mechanism 3 is arranged on either side of the crossbeam 12. It can be arranged on one side without affecting the path of the cable passing through both sides of the insulator 2, whether it is the front or the rear side.
[0032] Furthermore, since the street code insulators 2 have multiple specifications, in order not to limit the street code specifications, the number of insulators 2 is multiple. The flipping end of the flipping component 31 corresponds one-to-one with the insulator 2, the pushing component 32 is installed one-to-one with the flipping end of the flipping component 31, and the clamping plate 33 is rotatably connected one-to-one with the movable end of the pushing component 32. Thus, for street codes of one or more insulators 2, the clamping and positioning of each insulator 2 position can be performed, and each clamping plate 33 can be switched individually, thereby forming a layout where some cables pass through from the inside and some cables pass through from the outside, such as... Figure 3 As shown.
[0033] To better understand this utility model, the following is combined with... Figures 1 to 5 The technical solution of this utility model is described in detail as follows: The clamping plate 33 is located on one side of the insulator 2 and is opposite to the insulator 2. The position between it and the insulator 2 is for the cable to pass through. If the cable needs to pass through from the opposite side, which is another installation scenario, the clamping plate 33 is first rotated upward to the rear side to get out of this area. Then, the locking bolt 3131 is screwed up to get out of the positioning hole 315. Then, the pushing component 32 and the clamping plate 33 are rotated together by 180°, so that one side of the arc panel 332 of the clamping plate 33 is also facing the insulator 2 on the other side. At this time, the cable is passed through the insulator 2 and the arc panel 332. Then, the nut 323 is rotated to push the sliding bracket 322 to move, which drives the clamping plate 33 to move towards the insulator 2, thereby clamping and positioning the cable.
[0034] The specific embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model. Any other corresponding changes and modifications made based on the technical concept of this utility model should be included within the scope of protection of the claims of this utility model.
Claims
1. A type of barcode, characterized in that, include: Street vending machine stand; An insulator, which is rotatably connected to the street code bracket; as well as The wire clamping mechanism includes a flipping component, a pushing component, and a wire clamping plate. The flipping component is disposed on one side of the street code bracket. The flipping component has a rotatable flipping end, which is connected to the pushing component for flipping the pushing component to switch positions on both sides of the insulator. The pushing component has a linearly movable end, which is rotatably connected to the wire clamping plate for pushing the wire clamping plate toward the insulator. The rotation axis of the wire clamping plate is perpendicular to the rotation axis of the flipping component for rotating and adjusting the orientation of the wire clamping plate.
2. The wire-clamped street code according to claim 1, characterized in that, The flipping assembly includes a rotating shaft, a rotating rod, and a positioning component. The positioning component has a retractable locking end. The rotating shaft is rotatably connected to one side of the street code bracket. Positioning plates are provided on both sides of the rotating shaft, and positioning holes are opened on the positioning plates. The rotating rod is rotatably connected to the outside of the rotating shaft, and the positioning component is installed on the rotating rod. The retractable end of the positioning component has a locked position state when inserted into the positioning hole and an unlocked position state when disengaged from the positioning hole.
3. The wire-clamped street code according to claim 2, characterized in that, The positioning element includes a locking bolt, which is threaded onto the rotating rod, with its bottom end penetrating downward through the rotating rod.
4. The clamped-line street code according to claim 1, characterized in that, The pushing assembly includes a screw, a sliding frame, and a nut. The screw is connected to the flipping end of the flipping assembly. The sliding frame is slidably connected to the outside of the screw. The nut is threaded onto the screw and abuts against the side of the sliding frame away from the insulator.
5. The clamped-line street code according to claim 4, characterized in that, The clamping plate includes a connecting plate and an arc-shaped panel. The connecting plate is rotatably connected to the sliding frame, and the arc-shaped panel is connected to the side of the connecting plate near the insulator.
6. The wire-clamped street code according to claim 5, characterized in that, The arc panel has an anti-slip pad on the side closest to the insulator.
7. The wire-jointed street code according to claim 5, characterized in that, The bottom of the sliding frame is provided with a limiting plate, which is used to limit the rotation of the connecting plate to a horizontal position.
8. The wire-clamped street code according to claim 1, characterized in that, The street code bracket includes a mounting plate and crossbeams. Several crossbeams are fixedly connected to the mounting plate at equal intervals from top to bottom, and an insulator is rotatably connected between two adjacent crossbeams.
9. The wire-clamped street code according to claim 8, characterized in that, The clamping mechanism is arranged on either side of the crossbeam.
10. The clamped-line street code according to claim 1, characterized in that, The number of insulators is multiple, the flipping end of the flipping component corresponds to each insulator, the pushing component is installed on the flipping end of the flipping component, and the clamping plate is rotatably connected to the movable end of the pushing component.