Controller wire arrangement device of distribution box
By designing a controller wire management device with a linear array mount slot and pin bar structure in the distribution box, the problem of chaotic installation of the controller cable is solved, the orderly arrangement of cables is realized and the disassembly and assembly is simplified, and the convenience and applicability of use are improved.
Patent Information
- Application Number
- CN202422321090.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-23
AI Technical Summary
The installation of the controller cables in the distribution box is chaotic, which leads to difficulty in tangling and disassembling the cables, affecting maintenance efficiency.
A controller wire management device for distribution box is designed, including a linear array of placement grooves and pin rod structures. Through the coordination of pin rods and springs, the orderly arrangement and disassembly of cables are realized, which facilitates the combing and adjustment of cables.
The orderly arrangement and simple disassembly of cables are realized, the convenience and applicability of the controller wire management device are improved, and the installation and maintenance process of cables is simplified.
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Figure CN223156502U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of controller cables, and particularly relates to a controller wire arranging device for a distribution box. Background Technique
[0002] A distribution box is an electrical equipment, which has the characteristics of small volume, simple installation, special technical performance, fixed position, unique configuration function, not restricted by the site, relatively common application, stable and reliable operation, high space utilization rate, less land occupation and environmental protection effect. The massive parameters in the distribution box data generally constitute the low-voltage electrical wiring. It is required to assemble switchgear, measuring instruments, protective electrical appliances and auxiliary equipment in a closed or semi-closed metal cabinet or screen, forming a low-voltage distribution box. When operating normally, the circuit can be switched on or off manually or automatically.
[0003] Since there are many controllers installed in the distribution box and there are many wires connected to the controllers, the wires are placed in a disorderly manner. It is necessary to sort out and install the controller wires in an orderly manner to avoid the wires being wound around each other due to the chaotic placement, thus affecting the disassembly, installation and maintenance of the wires. Content of the Utility Model
[0004] The purpose of the utility model is to provide a controller wire arranging device for a distribution box to solve the problem of chaotic installation of the controller wires in the distribution box in the prior art.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A controller wire arranging device for a distribution box, including a device body. An array of placement grooves is provided in the upper part of the device body. The placement grooves are used for placing wires. On both inner walls of the openings of the placement grooves, pin grooves are formed. A pin rod is slidably connected in the pin grooves. A spring is arranged between the pin rod and the inner wall of the pin groove. The movable end of the pin rod is in a right triangle structure, and the inclined surface of the pin rod faces away from the cavity of the placement groove. An active component for driving the pin rod to slide into the cavity of the pin groove is arranged in the device body.
[0006] Preferably, the active component includes two pull ropes. A wire groove is formed in the device body and is connected to the two pin grooves in a penetrating manner. The wire groove surrounds the outside of the placement groove. The pull ropes are slidably connected in the cavity of the wire groove. One ends of the two pull ropes are respectively fixedly connected to the opposite ends of the two pin rods. The spring is slidably sleeved on the outside of the pull ropes. A through hole is formed in the bottom wall of the inside of the wire groove. A pull rod is slidably connected in the through hole. The other ends of the two pull ropes are both fixedly connected to the top end of the pull rod.
[0007] Preferably, two winding wheels are rotatably connected in the wire groove. The outer sides of the two winding wheels are respectively in contact with the turning parts of the two pull ropes, and the two winding wheels are respectively located on the opposite sides of the two pin grooves.
[0008] Preferably, the device body includes single-wire boards distributed in a linear array, each placement groove is respectively arranged on each single-wire board, tenon rods are fixedly connected to both sides of the single-wire board respectively, and tenon grooves are formed, the tenon rods and the tenon grooves are inserted and connected, and the tenon grooves and tenon rods on the single-wire board, as well as between the two pin rods, are arranged in a mutually staggered manner.
[0009] Preferably, a sliding groove is formed on the inner wall of one side of the tenon groove, a through-type rotating hole is formed on the inner wall of the sliding groove, a sliding rod is slidably connected in the sliding groove, the vertical cross-section of the sliding rod is a rectangular structure, a threaded rod is fixedly connected to the side of the sliding rod away from the tenon groove, a rotating tube is threadedly sleeved on the outer side of the threaded rod, the rotating tube is rotatably connected in the rotating hole, a socket is formed at the corresponding position of the tenon rod relative to the sliding groove, and the socket is inserted and connected with the sliding rod.
[0010] Preferably, grooves distributed in a circumferential array are formed on the inner wall of the placement groove, and rollers are rotatably connected to the inner walls of the grooves.
[0011] Preferably, the horizontal cross-section of the tenon rod is a convex-shaped structure, the horizontal cross-section of the tenon groove is a convex-shaped cavity, and two through-type fixing ports are formed on one side of the single-wire board.
[0012] Compared with the prior art, the beneficial effects of the present utility model are:
[0013] 1. In this application, by providing the device body and arranging a plurality of cable control grooves on the device body, the positions of multiple cables are reasonably controlled and sorted by using each cable control groove, so that the multiple cables are arranged in an orderly manner. When the cables need to be sorted, only the device body needs to be dragged to move. By providing pin rods, the disassembly and assembly of the cables and the cable management device are made simple and convenient. Therefore, the usability of the cable management device for the controller can be effectively improved.
[0014] 2. In this application, by providing a device body composed of a plurality of single-wire boards, the length of the device body can be adjusted according to the number of cables. Therefore, the applicability of the cable management device for the controller can be effectively improved, and by providing tenon rods and tenon grooves, the disassembly and assembly of the single-wire boards are made simple and convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a three-dimensional schematic diagram of the overall cable management device for the controller of a distribution box according to the present utility model;
[0016] Figure 2 It is a three-dimensional schematic diagram of the single-wire board of the cable management device for the controller of a distribution box according to the present utility model;
[0017] Figure 3 It is a front view sectional structure schematic diagram of the single-wire board of the cable management device for the controller of a distribution box according to the present utility model;
[0018] Figure 4 This is a side - view sectional three - dimensional schematic diagram of a single - wire board of a wire - arranging device for a controller of a distribution box according to the present utility model;
[0019] Figure 5 This is a bottom - view three - dimensional schematic diagram of a single - wire board of a wire - arranging device for a controller of a distribution box according to the present utility model;
[0020] Figure 6 This is a combined three - dimensional schematic diagram of a pin rod and a pull rope of a wire - arranging device for a controller of a distribution box according to the present utility model.
[0021] Reference numerals in the figure: 1, device body; 101, single - wire board; 102, tenon rod; 103, tenon groove; 2, placement groove; 3, pin groove; 4, pin rod; 5, pull rope; 6, wire groove; 7, pull rod; 8, sliding rod; 9, threaded rod; 10, rotating tube; 11, roller; 12, socket; 13, winding wheel; 14, fixing port. Specific embodiments
[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0023] Embodiment: As Figure 1 - Figure 6 shown, the present utility model provides a technical solution for a wire - arranging device for a controller of a distribution box, including a device body 1. Linear - array - distributed placement grooves 2 are provided in the upper part of the device body 1. The placement grooves 2 are used for placing cables. Pin grooves 3 are formed on the inner walls of both sides of the notch of the placement groove 2. A pin rod 4 is slidably connected in the pin groove 3. A spring is provided between the pin rod 4 and the inner wall of the pin groove 3. The movable end of the pin rod 4 is of a right - triangle structure, and the inclined surface of the pin rod 4 faces away from the cavity of the placement groove 2. An active component for driving the pin rod 4 to slide into the cavity of the pin groove 3 is provided in the device body 1;
[0024] Arrange each cable on the controller in the cavities of the respective placement grooves 2 on the device body 1 in an orderly manner to sort out each cable. When further sorting of the cables is required, only need to pull the device body 1 to slide on each cable;
[0025] When installing the cable, just squeeze the cable from the notch of the placement groove 2 into the cavity of the placement groove 2. Among them, the cable will squeeze the inclined surface of the pin rod 4, so that the two pin rods 4 move relative to each other and compress the spring. After the cable is completely placed in the placement groove 2, the pin rod 4 is reset by the elastic force of the spring. Therefore, the vertical surface of the pin rod 4 is used to prevent the cable from slipping out of the cavity of the placement groove 2.
[0026] As Figure 3 and Figure 6 shown, the movable assembly includes two pull ropes 5. A wire groove 6 communicating with the two pin slots 3 is formed in the device body 1. The wire groove 6 surrounds the outside of the placement groove 2. The pull ropes 5 are slidably connected in the cavity of the wire groove 6. One ends of the two pull ropes 5 are respectively fixedly connected to the opposite ends of the two pin rods 4. The spring is slidably sleeved on the outside of the pull rope 5. A through hole is formed in the bottom wall inside the wire groove 6. A pull rod 7 is slidably connected in the through hole. The other ends of the two pull ropes 5 are both fixedly connected to the top end of the pull rod 7;
[0027] By pulling the pull rod 7, the pull rod 7 uses the two pull ropes 5 to respectively pull the two pin rods 4 to slide into the cavities of their respective pin slots 3. Therefore, it is convenient to take out the cable in the cavity of the placement groove 2.
[0028] As Figure 3 shown, two winding wheels 13 are rotatably connected in the wire groove 6. The outer sides of the two winding wheels 13 are respectively in contact with the turning points of the two pull ropes 5, and the two winding wheels 13 are respectively located on the opposite sides of the two pin slots 3;
[0029] The winding wheel 13 can reduce the friction between the pull rope 5 and the inner wall of the wire groove 6 and change the moving direction of the pull rope 5.
[0030] As Figure 5 shown, the device body 1 includes single-wire boards 101 distributed in a linear array. Each placement groove 2 is respectively arranged on each single-wire board 101. A tenon rod 102 and a tenon groove 103 are respectively fixedly connected to both sides of the single-wire board 101. The tenon rod 102 and the tenon groove 103 are inserted and connected. Between the tenon groove 103 and the tenon rod 102 on the single-wire board 101, and between the two pin rods 4 are all arranged in a mutually staggered manner;
[0031] By inserting the tenon rod 102 on one of the single-wire boards 101 into the tenon groove 103 on the other single-wire board 101, the two single-wire boards 101 are assembled into a whole.
[0032] As Figure 4 and Figure 5As shown in the figure, a chute is formed on the inner wall of one side of the mortise groove 103. A through rotary hole is formed on the inner wall of the chute. A sliding rod 8 is slidably connected in the chute. The vertical cross-section of the sliding rod 8 is a rectangular structure. A threaded rod 9 is fixedly connected to the side of the sliding rod 8 away from the mortise groove 103. A rotary tube 10 is sleeved on the outer side of the threaded rod 9 in a threaded manner. The rotary tube 10 is rotatably connected in the rotary hole. A socket 12 is formed at the corresponding position of the tenon rod 102 relative to the chute. The socket 12 is inserted and connected with the sliding rod 8.
[0033] By rotating the rotary tube 10, the rotary tube 10 drives the sliding rod 8 to slide in the chute by means of the threaded rod 9, so that the movable end of the sliding rod 8 is inserted into the socket 12 on the corresponding tenon rod 102, thereby preventing the tenon rod 102 from falling out of the mortise groove 103, and thus firmly connecting two adjacent single-line boards 101 to each other.
[0034] As Figure 2 shown in the figure, grooves are formed on the inner wall of the placement groove 2 in a circumferentially arrayed manner. A roller 11 is rotatably connected to the inner wall of the groove.
[0035] The friction between the outer wall of the cable and the inner wall of the placement groove 2 is reduced by using the roller 11, so that it is convenient for the device body 1 to sort the cable.
[0036] As Figure 5 shown in the figure, the horizontal cross-section of the tenon rod 102 is a convex structure, the horizontal cross-section of the mortise groove 103 is a convex cavity, and two through fixing ports 14 are formed on one side of the single-line board 101.
[0037] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.
Claims
1. A wire management device for a distribution box controller, characterized in that: It includes a device body (1). There are placement grooves (2) distributed in a linear array on the upper part of the device body (1). On both inner walls of the notch of the placement groove (2), pin grooves (3) are formed. A pin rod (4) is slidably connected in the pin groove (3). A spring is arranged between the pin rod (4) and the inner wall of the pin groove (3). The movable end of the pin rod (4) is of a right triangle structure, and the inclined surface of the pin rod (4) faces away from the cavity of the placement groove (2). An activity component is arranged in the device body (1) to drive the pin rod (4) to slide into the cavity of the pin groove (3).
2. The wire management device for the controller of a distribution box according to claim 1, characterized in that: The activity component includes two pull ropes (5). A wire groove (6) communicating with the two pin grooves (3) is formed in the device body (1). The pull ropes (5) are slidably connected in the cavity of the wire groove (6). One ends of the two pull ropes (5) are respectively fixedly connected to the opposite ends of the two pin rods (4). The spring is slidably sleeved on the outer side of the pull rope (5). A through hole is formed on the bottom wall inside the wire groove (6). A pull rod (7) is slidably connected in the through hole. The other ends of the two pull ropes (5) are both fixedly connected to the top end of the pull rod (7).
3. The wire management device for the controller of a distribution box according to claim 2, characterized in that: Two winding wheels (13) are rotatably connected in the wire groove (6). The outer sides of the two winding wheels (13) are respectively in contact with the turning parts of the two pull ropes (5), and the two winding wheels (13) are respectively located on one side opposite to the two pin grooves (3).
4. The wire management device for the controller of a distribution box according to claim 2, characterized in that: The device body (1) includes single-wire boards (101) distributed in a linear array. Each placement groove (2) is respectively arranged on each single-wire board (101). A tenon rod (102) and a tenon groove (103) are respectively fixedly connected to both sides of the single-wire board (101). The tenon rod (102) and the tenon groove (103) are inserted and connected. The tenon groove (103) and the tenon rod (102) on the single-wire board (101), and between the two pin rods (4) are all arranged in a mutually staggered manner.
5. The wire management device for the controller of a distribution box according to claim 4, characterized in that: A chute is formed on one inner wall of the tenon groove (103). A through hole is formed on the inner wall of the chute. A sliding rod (8) is slidably connected in the chute. A threaded rod (9) is fixedly connected to the side of the sliding rod (8) away from the tenon groove (103). A rotating pipe (10) is threadedly sleeved on the outer side of the threaded rod (9). The rotating pipe (10) is rotatably connected in the through hole. A socket (12) is formed at the corresponding position of the tenon rod (102) opposite to the chute. The socket (12) is inserted and connected with the sliding rod (8).
6. The wire management device for the controller of a distribution box according to claim 1, characterized in that: Grooves are formed on the inner wall of the placement groove (2) and are distributed in a circumferential array. A roller (11) is rotatably connected to the inner wall of the groove.
7. The wire management device for the controller of a distribution box according to claim 4, characterized in that: The horizontal cross-section of the tenon rod (102) is of a convex structure, the horizontal cross-section of the tenon groove (103) is a convex cavity, and two through holes (14) are formed on one side of the single-wire board (101).