Power cable distribution box with auxiliary cable fixation

By designing a cable branch box containing comb conversion components, the problem of inconvenient use of the cable branch box in the prior art is solved, flexible contact and signal conversion between the cable and the wireless conversion conveyor are realized, and the convenience and stability of the device are improved.

CN119543015BActive Publication Date: 2025-05-30JIANGSU TONGDING BROADBAND
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Patent Information

Application Number
CN202510103894.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-05-30
Estimated Expiration
2045-01-23

AI Technical Summary

Technical Problem

The existing cable branch boxes are not easy to adjust signals according to needs when used, resulting in inconvenient use of the device.

Method used

A power cable branch box with auxiliary cable fixed is designed, which includes comb conversion components. Through insulating seats, detectors, reinforcement pads, support pallets, traction discs and wireless conversion conveyors, the contact and signal conversion between the cable and the wireless conversion conveyor are realized. At the same time, the slider and converter position are adjusted through the driving motor and gear mechanism, which improves convenience.

Benefits of technology

It realizes flexible contact and signal conversion between cables and wireless conversion conveyors, improves the convenience of the device during use, and ensures the stability and safety of the cable through thermal conduction and insulation protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a power cable distribution box for assisting cable fixation, specifically relating to the technical field of cable distribution boxes, including a distribution box body, on which a combing conversion assembly is provided, and the combing conversion assembly includes a reinforcing backing plate arranged inside the distribution box. In the present invention, one end of the cable is easily brought into contact with each wireless conversion conveyor, facilitating corresponding signal conversion when different cables come into contact with the wireless conversion conveyor. When the traction disc rotates, it rubs against the vertical shaft rod through the waist-shaped slot, enabling the vertical shaft rod to slide on the guiding arc slot via the first slider, thereby realizing the function of adjusting the positions of each first slider, vertical shaft rod, and wireless conversion conveyor, facilitating the conversion and transmission of electrical signals, and improving the convenience of the device during use. The insulating seat can play an insulating role to prevent current leakage. At the same time, it can also detect the signal transmission situation through the detector to avoid disconnection during signal conversion.
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Description

Technical Field

[0001] The present invention relates to the technical field of cable distribution boxes, and more specifically, to a power cable distribution box for assisting in cable fixing. Background Art

[0002] Electric wires and cables are wire products used to transmit electrical (magnetic) energy, information, and realize the conversion of electrical and magnetic energy. In a broad sense, electric wires and cables are also simply referred to as cables. In a narrow sense, a cable refers to an insulated cable, which can be defined as a collective body composed of the following parts: one or more insulated wire cores, and their respective possible coating layers, total protective layer, and outer protective layer. A cable can also have additional uninsulated conductors. A cable distribution box is only used for cable branching. The main functions of a cable distribution box are to branch or transfer cables, mainly playing the role of cable branching and cable transfer. With the development of the cableization process of the distribution network, when independent loads with small capacities are concentrated, a cable distribution box can be used for multi-branch connection of cables.

[0003] Among them, the patent with the publication number CN217692623U discloses a safe outdoor cable distribution box for electricity use, including a mounting plate. A support rod is provided on the end wall of the mounting plate. A cable box is provided at the end of one side of the support rod. A wiring cavity is provided inside the cable box. A fixing mechanism is provided on the end wall of the mounting plate. A heat dissipation mechanism is provided on the end wall of the wiring cavity. A connection mechanism is provided on the end wall of the wiring cavity. A pressing mechanism is provided on the end wall of the wiring cavity. A sealing mechanism is provided on the end wall of the cable box. A closing mechanism is provided on the end wall of the cable box;

[0004] When this structure is in use, by realizing the pressing of electric wires and cables, the connection part will not be pulled and dropped, improving the safety of the connection part and preventing accidents. However, when this structure is in use, it is not easy to adjust the signal appropriately according to requirements, resulting in the device being not convenient enough to use. Summary of the Invention

[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides a power cable distribution box for assisting in cable fixing, aiming to solve the problems proposed in the above background art.

[0006] The present invention provides the following technical solutions: A power cable distribution box for assisting in cable fixing, including a branch box body, and a combing conversion component is provided on the branch box body;

[0007] The combing conversion component includes a reinforcing backing plate provided inside the branch box. One end of the reinforcing backing plate is installed with an insulating seat through bolts. A detector for current detection is provided on the surface of the insulating seat;

[0008] The reinforcing pad is provided with a support plate at one end away from the insulating seat, and a plurality of mutually connected arc guiding grooves are provided on the support plate. A limit rod is installed on the outer side of the support plate by bolts, and a limit groove for guiding the cable is provided on one side of the surface of the limit rod, and a filter is installed on the inner cavity top of the limit rod by bolts, and a plurality of first sliders are slidably connected in the arc guiding groove, and each of the first sliders is rotatably connected with a vertical shaft rod, and wireless conversion conveyors are provided on the tops of the plurality of vertical shaft rods, and two traction discs are rotatably connected on the support plate, and a plurality of waist hole grooves are provided on the outer side of each of the traction discs, and the vertical shaft rod is located in the waist hole groove and slidably connected with the waist hole groove, and a first gear is provided on one side of the support plate, and a second gear is provided on one side of the first gear, and the first gear and the second gear are meshed;

[0009] It can be seen that in the above technical solution, the cable passes through the first reinforced constraint cylinder, the second reinforced constraint cylinder and the limit groove through the filter through the insulating seat, which makes it easy for one end of the cable to contact each wireless conversion conveyor, and facilitates the corresponding signal conversion when different cables contact the wireless conversion conveyor. At the same time, when the device is in use, the first gear is driven to rotate by the driving motor, and the second gear is driven to rotate when the first gear rotates. When the first gear and the second gear rotate, they will respectively drive each traction disk to rotate. When the traction disk rotates, it rubs against the vertical shaft rod through the waist hole groove, and then the vertical shaft rod can slide on the guide arc groove through the first slider, thereby realizing the function of adjusting the position of each first slider, the vertical shaft rod and the wireless conversion conveyor, facilitating the conversion and transmission of electrical signals, and improving the convenience of the device when in use;

[0010] Optionally, in a possible implementation manner, one end of the two traction discs extends to the first gear and the second gear respectively, and one end of the reinforcing pad is provided with a driving motor for driving the first gear to rotate, a second slider is provided between the supporting plate and the insulating seat, the second slider is mounted on the reinforcing pad by bolts, two limit frames are slidably connected to the second slider, and each of the limit frames is transmission-connected with an insulating belt, a bidirectional screw rod is rotatably connected to the second slider, and the limit frame is threadedly connected to the bidirectional screw rod, a first reinforced constraint cylinder is provided inside the detector, a second reinforced constraint cylinder is provided at one end of the first reinforced constraint cylinder, and the outer sides of the first reinforced constraint cylinder and the second reinforced constraint cylinder are both sleeved with a reinforced heat conduction copper heat dissipation frame, and the reinforced heat conduction copper heat dissipation frame penetrates the second reinforced constraint cylinder and the first reinforced constraint cylinder and extends into the second reinforced constraint cylinder and the first reinforced constraint cylinder, the first reinforced constraint cylinder and the second reinforced constraint cylinder are connected, and the first reinforced constraint cylinder and the second reinforced constraint cylinder are both clamped with the insulating seat;

[0011] It can be seen that in the above technical solution, the heat-conducting copper heat dissipation frame body that strengthens heat conduction runs through the first and second strengthened constraint cylinders and can extend into the interiors of the first and second strengthened constraint cylinders, and then enables the heat-conducting copper heat dissipation frame body that strengthens heat conduction to extend to the wire, making it easy to conduct heat dissipation for the cable. The insulating seat can play an insulating role to avoid current leakage, and at the same time, it can also detect the signal transmission situation through the detector. When the device is in use, by rotating the bidirectional lead screw, the rotation of the bidirectional lead screw enables the two limit frames to displace towards each other on the second slider under the traction force during the rotation of the bidirectional lead screw, realizing the function of clamping the cable and ensuring the stability during cabling.

[0012] Technical effects and advantages of the present invention:

[0013] 1. In the present invention, the cable passes through the first strengthened constraint cylinder, the second strengthened constraint cylinder and the limiting groove of the filter through the insulating seat, making it easy for one end of the cable to contact each wireless conversion transmitter, and facilitating the corresponding signal conversion when different cables contact the wireless conversion transmitter;

[0014] 2. In the present invention, when the traction disc rotates, it rubs against the vertical shaft rod through the waist-shaped hole groove, and then enables the vertical shaft rod to slide on the guiding arc groove through the first slider, thereby realizing the function of adjusting the positions of each slider, the vertical shaft rod and the wireless conversion transmitter, facilitating the conversion and transmission of electrical signals, and improving the convenience of the device during use;

[0015] 3. In the present invention, when the heat-conducting copper heat dissipation frame body that strengthens heat conduction runs through the first and second strengthened constraint cylinders and can extend into the interiors of the first and second strengthened constraint cylinders, and then enables the heat-conducting copper heat dissipation frame body that strengthens heat conduction to extend to the wire, making it easy to conduct heat dissipation for the cable. The insulating seat can play an insulating role to avoid current leakage, and at the same time, it can also detect the signal transmission situation through the detector;

[0016] 4. In the present invention, by rotating the bidirectional lead screw, the rotation of the bidirectional lead screw enables the two limit frames to displace towards each other on the second slider under the traction force during the rotation of the bidirectional lead screw, realizing the function of clamping the cable and ensuring the stability during cabling;

[0017] In summary, through the corresponding cooperation of each structure, it is easy for one end of the cable to contact each wireless conversion conveyor, facilitating the corresponding signal conversion when different cables contact the wireless conversion conveyor. When the traction disc rotates, it rubs against the vertical shaft rod through the waist-shaped slot, and then the vertical shaft rod can slide on the guiding arc slot through the first slider, thereby realizing the function of adjusting the positions of each first slider, vertical shaft rod, and wireless conversion conveyor, facilitating the conversion and transmission of electrical signals, improving the convenience of the device during use, and strengthening the heat conduction copper heat dissipation frame body can penetrate the first and second strengthened restraint cylinders and extend into the interiors of the first and second strengthened restraint cylinders, and then the strengthened heat conduction copper heat dissipation frame body can extend to the wire, facilitating heat conduction and dissipation of the cable, while the insulating seat can play an insulating role to avoid current leakage. At the same time, the signal transmission situation can be detected by the detector to avoid disconnection during signal conversion. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the present disclosure, the accompanying drawings required for use in some embodiments will be briefly introduced below. Obviously, the accompanying drawings in the following description are only the drawings of some embodiments of the present disclosure, and those of ordinary skill in the art can also obtain other drawings based on these drawings. In addition, the accompanying drawings in the following description can be regarded as schematic diagrams and do not limit the actual dimensions of the products, the actual processes of the methods, the actual timings of the signals, etc. involved in the embodiments of the present disclosure.

[0019] Figure 1 Front view of the overall structure of the present invention.

[0020] Figure 2 Stereogram of the carding and conversion assembly of the present invention.

[0021] Figure 3 Side view of the carding and conversion assembly of the present invention.

[0022] Figure 4 Stereogram of the support tray, first gear, second gear, limiting rod, and driving motor of the present invention.

[0023] Figure 5 Stereogram of the strengthening backing plate, insulating seat, detector, limiting frame, and bidirectional lead screw of the present invention.

[0024] Figure 6 Stereogram of the support tray, traction disc, limiting rod, filter, vertical shaft rod, and wireless conversion conveyor of the present invention.

[0025] Figure 7 For the present invention Figure 6 exploded view.

[0026] Figure 8This is a three-dimensional view of the first gear, second gear, traction disc, vertical shaft rod and wireless conversion conveyor of the present invention.

[0027] Figure 9 This is a three-dimensional view of the reinforcing backing plate, insulating seat, first reinforcing restraint cylinder, second reinforcing restraint cylinder and limit frame of the present invention.

[0028] The reference numerals in the drawings are: 1, branch box body; 2, reinforcing backing plate; 3, insulating seat; 4, detector; 5, first reinforcing restraint cylinder; 6, second reinforcing restraint cylinder; 7, reinforcing heat conduction copper heat dissipation frame body; 8, support tray; 9, diversion arc groove; 10, limiting rod; 11, limiting groove; 12, filter; 13, first slider; 14, vertical shaft rod; 15, wireless conversion conveyor; 16, traction disc; 17, waist-shaped hole groove; 18, first gear; 19, second gear; 20, drive motor; 21, second slider; 22, limit frame; 23, insulating tape; 24, bidirectional lead screw. Specific embodiments

[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0030] As shown in the attached Figure 1 - Figure 9 The power cable branch box for fixing auxiliary cables shown, through the combing conversion assembly provided on the branch box body 1, one end of the cable is easily in contact with each wireless conversion conveyor 15, which is convenient for corresponding signal conversion when different cables are in contact with the wireless conversion conveyor 15. When the traction disc 16 rotates, it rubs against the vertical shaft rod 14 through the waist-shaped hole groove 17, and then the vertical shaft rod 14 can slide on the diversion arc groove 9 through the first slider 13, so as to realize the function of adjusting the positions of each first slider 13, vertical shaft rod 14 and wireless conversion conveyor 15, which is convenient for the conversion and transmission of electrical signals, improves the convenience of the device during use, and the reinforcing heat conduction copper heat dissipation frame body 7 penetrates through the first reinforcing restraint cylinder 5 and the second reinforcing restraint cylinder 6 and can extend into the interiors of the first reinforcing restraint cylinder 5 and the second reinforcing restraint cylinder 6, and then the reinforcing heat conduction copper heat dissipation frame body 7 can extend to the wire, which is easy to conduct heat dissipation for the cable, while the insulating seat 3 can play an insulating role to avoid current leakage, and at the same time, the signal transmission situation can be detected by the detector 4 to avoid disconnection during signal conversion, and the specific structural settings of the components are as follows;

[0031] The carding conversion component includes a reinforcing backing plate 2 arranged in the branch box body 1. One end of the reinforcing backing plate 2 is installed with an insulating seat 3 through bolts, and a detector 4 for current detection is arranged on the surface of the insulating seat 3;

[0032] Inside the detector 4, a first strengthened restraint cylinder body 5 is arranged. One end of the first strengthened restraint cylinder body 5 is provided with a second strengthened restraint cylinder body 6. Strengthened heat conduction copper heat dissipation frame bodies 7 are sleeved on the outer sides of both the first strengthened restraint cylinder body 5 and the second strengthened restraint cylinder body 6, and the strengthened heat conduction copper heat dissipation frame bodies 7 penetrate through the second strengthened restraint cylinder body 6 and the first strengthened restraint cylinder body 5 and extend into the second strengthened restraint cylinder body 6 and the first strengthened restraint cylinder body 5. The first strengthened restraint cylinder body 5 and the second strengthened restraint cylinder body 6 are communicated with each other, and both the first strengthened restraint cylinder body 5 and the second strengthened restraint cylinder body 6 are clamped with the insulating seat 3;

[0033] One end of the reinforcing backing plate 2 away from the insulating seat 3 is provided with a support tray 8. A number of mutually communicated guiding arc grooves 9 are formed on the support tray 8. A limiting rod 10 is installed on the outer side of the support tray 8 through bolts. A limiting groove 11 for guiding the cable is formed on one side of the surface of the limiting rod 10. A filter 12 is installed on the top of the inner cavity of the limiting rod 10 through bolts. A number of first sliders 13 are slidably connected in the guiding arc grooves 9, and a vertical shaft rod 14 is rotatably connected to each first slider 13. Wireless conversion conveyors 15 are arranged at the tops of a plurality of vertical shaft rods 14. Two traction discs 16 are rotatably connected to the support tray 8, and a number of waist-shaped hole grooves 17 are formed on the outer sides of each traction disc 16. The vertical shaft rod 14 is located in the waist-shaped hole groove 17 and is slidably connected with the waist-shaped hole groove 17. A first gear 18 is arranged on one side of the support tray 8, and a second gear 19 is arranged on one side of the first gear 18. The first gear 18 and the second gear 19 are meshed with each other;

[0034] One ends of the two traction discs 16 respectively extend to the first gear 18 and the second gear 19, and a driving motor 20 for driving the first gear 18 to rotate is arranged at one end of the reinforcing backing plate 2. A second slider 21 is arranged between the support tray 8 and the insulating seat 3. The second slider 21 is installed on the reinforcing backing plate 2 through bolts. Two limiting frames 22 are slidably connected to the second slider 21, and an insulating belt 23 is drivingly connected to each limiting frame 22. A bidirectional lead screw 24 is rotatably connected to the second slider 21, and the limiting frame 22 is threadedly connected with the bidirectional lead screw 24.

[0035] During use according to the above structure, the staff installs the device at a designated position, passes the cable through the first strengthened restraint cylinder body 5, the second strengthened restraint cylinder body 6 and the limiting groove 11 through the insulating seat 3 and through the filter 12, so that one end of the cable is easy to contact with each wireless conversion conveyor 15, facilitating the corresponding signal conversion when different cables contact the wireless conversion conveyor 15;

[0036] When the device is in use, the first gear 18 is driven to rotate by the driving motor 20. When the first gear 18 rotates, it drives the second gear 19 to rotate. When the first gear 18 and the second gear 19 rotate, they respectively drive each traction disc 16 to rotate. When the traction disc 16 rotates, it rubs against the vertical shaft rod 14 through the waist-shaped slot 17, and then the vertical shaft rod 14 can slide on the guiding arc groove 9 through the first slider 13, so as to realize the function of adjusting the positions of each first slider 13, vertical shaft rod 14 and wireless conversion conveyor 15, facilitate the conversion and transmission of electrical signals, and improve the convenience of the device during use;

[0037] When the cable is installed on the device, the enhanced heat conduction copper heat dissipation frame 7 passes through the first enhanced restraint cylinder 5 and the second enhanced restraint cylinder 6 and can extend into the interiors of the first enhanced restraint cylinder 5 and the second enhanced restraint cylinder 6. Then the enhanced heat conduction copper heat dissipation frame 7 can extend to the wire, which is conducive to heat conduction and dissipation of the cable. The insulating seat 3 can play an insulating role to avoid current leakage, and at the same time, it can also detect the signal transmission situation through the detector 4;

[0038] When the device is in use, by rotating the bidirectional lead screw 24, the rotation of the bidirectional lead screw 24 enables the two limit frames 22 to displace towards each other on the second slider 21 under the traction force during the rotation of the bidirectional lead screw 24, realizing the function of clamping the cable and ensuring the stability during wiring.

[0039] Different from the prior art, this application discloses a power cable branch box for auxiliary cable fixing. One end of the cable is easily in contact with each wireless conversion conveyor 15, which facilitates the corresponding signal conversion when different cables are in contact with the wireless conversion conveyor 15. When the traction disc 16 rotates, it rubs against the vertical shaft rod 14 through the waist-shaped slot 17, and then the vertical shaft rod 14 can slide on the guiding arc groove 9 through the first slider 13, so as to realize the function of adjusting the positions of each first slider 13, vertical shaft rod 14 and wireless conversion conveyor 15, facilitate the conversion and transmission of electrical signals, and improve the convenience of the device during use. The enhanced heat conduction copper heat dissipation frame 7 passes through the first enhanced restraint cylinder 5 and the second enhanced restraint cylinder 6 and can extend into the interiors of the first enhanced restraint cylinder 5 and the second enhanced restraint cylinder 6. Then the enhanced heat conduction copper heat dissipation frame 7 can extend to the wire, which is conducive to heat conduction and dissipation of the cable. The insulating seat 3 can play an insulating role to avoid current leakage, and at the same time, it can also detect the signal transmission situation through the detector 4 to avoid the occurrence of disconnection during signal conversion.

[0040] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A power cable branch box for auxiliary cable fixing, comprising a branch box body (1), characterized in that: The branch box (1) is provided with a combing conversion component; The combing conversion assembly comprises a reinforcing pad (2) arranged in a branch box (1), one end of the reinforcing pad (2) being mounted with an insulating seat (3) via bolts, and a detector (4) for current detection being arranged on the surface of the insulating seat (3); A first reinforcing constraint cylinder (5) is arranged inside the detector (4), and a second reinforcing constraint cylinder (6) is arranged at one end of the first reinforcing constraint cylinder (5); A support plate (8) is provided at one end of the reinforcing pad (2) away from the insulating seat (3); a plurality of arc guiding grooves (9) which are interconnected are provided on the support plate (8); a limit rod (10) is installed on the outer side of the support plate (8) by means of bolts; a limit groove (11) for guiding the cable is provided on one side of the surface of the limit rod (10); and a filter (12) is installed on the top of the inner cavity of the limit rod (10) by means of bolts; A plurality of first slide blocks (13) are slidably connected in the arc guiding groove (9), and each of the first slide blocks (13) is rotatably connected to a vertical shaft rod (14), and a wireless conversion conveyor (15) is disposed at the top end of each of the plurality of vertical shaft rods (14); The support plate (8) is rotatably connected to two traction plates (16), and each traction plate (16) is provided with a plurality of waist hole grooves (17) on the outer side, and the vertical shaft rod (14) is located in the waist hole groove (17) and is slidably connected to the waist hole groove (17); A first gear (18) is provided on one side of the support plate (8), a second gear (19) is provided on one side of the first gear (18), and the first gear (18) and the second gear (19) are meshed; One end of the two traction plates (16) extends to the first gear (18) and the second gear (19) respectively, and one end of the reinforcing pad (2) is provided with a driving motor (20) for driving the first gear (18) to rotate; A second sliding block (21) is provided between the supporting plate (8) and the insulating seat (3), and the second sliding block (21) is mounted on the reinforcing pad (2) by means of bolts; The second sliding block (21) is slidably connected to two limit frames (22), and each limit frame (22) is drivingly connected to an insulating belt (23).

2. The power cable branch box for auxiliary cable fixing according to claim 1 is characterized in that: A bidirectional screw rod (24) is rotatably connected to the second sliding block (21), and the limit frame (22) is threadably connected to the bidirectional screw rod (24).

3. The power cable branch box for auxiliary cable fixing according to claim 1 is characterized in that: The outer sides of the first reinforced restraint cylinder (5) and the second reinforced restraint cylinder (6) are both sleeved with a reinforced heat conduction copper heat dissipation frame (7), and the reinforced heat conduction copper heat dissipation frame (7) penetrates the second reinforced restraint cylinder (6) and the first reinforced restraint cylinder (5) and extends into the second reinforced restraint cylinder (6) and the first reinforced restraint cylinder (5).

4. The power cable branch box for auxiliary cable fixing according to claim 3 is characterized in that: The first reinforced restraining cylinder (5) and the second reinforced restraining cylinder (6) are connected, and the first reinforced restraining cylinder (5) and the second reinforced restraining cylinder (6) are both snap-connected to the insulating seat (3).

Citation Information

Patent Citations

  • Cable winding equipment for power maintenance

    CN115893100A

  • Safe outdoor cable branch box for electric power

    CN217692623U