A wire storage device for photovoltaic engineering cable

CN224604428UActive Publication Date: 2026-08-07周润新
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
周润新
Filing Date
2024-10-31
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0002]电缆是一种电能或信号传输装置,通常是由几根或几组导线组成,通常是由几根或几组导线绞合而成的类似绳索的电缆,每组导线之间相互绝缘,并常围绕着一根中心扭成,整个外面包有高度绝缘的覆盖层,电缆具有内通电,外绝缘的特征,在户外作业时,常需要携带多种规格的电缆,在对电缆进行存放时,各规格的电缆之间会相互缠绕,及时盘成线圈,存储在同一空间内事,仍旧会缠绕在一起,在取线时需要再将其进行分离,十分不便,在存储时无法对不同规格之间的电缆进行分隔,导致操作时,取线、收线的时间增加,从而影响作业的工作效率

Benefits of technology

[0012]本新型能够在作业时对不同规格、不同数量的电缆分别进行存储,在将电缆收卷至线架上后,同时对若干个线架之间的间距进行调节,使其能够对其上不同规格、不同数量的电缆卷进行限位,在存储与运输的过程中对线架进行有效限位,且能够单独取出需要使用的电缆线捆,在取线时更为便捷。

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Abstract

The utility model belongs to cable storage technical field especially for a kind of line storage device for photovoltaic engineering cable, including base and the support rod of its top two ends symmetry arrangement, one of the support rod side fixedly connected with connecting plate, another support rod side is provided with extruded plate, the extruded plate side fixedly connected with adjusting rod, the base top swing joint has several interval racks, be provided with several winding drums between the interval rack, the winding drum both ends are swing joint with baffle;Different specifications, different quantities of cable can be stored respectively when working, after winding cable to wire holder, the spacing between several wire holders is adjusted simultaneously, so that it can limit the cable roll of different specifications, different quantities on it, effectively limit wire holder during storage and transportation, and the cable wire bundle needed to use can be taken out alone, more convenient when taking wire.
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Description

Technical Field

[0001] This utility model belongs to the field of cable storage technology, specifically relating to a cable storage device for photovoltaic engineering. Background Technology

[0002] A cable is an electrical or signal transmission device, typically composed of several or more conductors twisted together like a rope. Each conductor group is insulated from the others and is often twisted around a central core. The entire cable is covered with a highly insulating outer layer. Cables are characterized by being internally conductive and externally insulated. When working outdoors, it is often necessary to carry cables of various specifications. When storing cables, cables of different specifications tend to become tangled together. Even when coiled and stored in the same space, they will still become tangled. Separating them when retrieving the cables is very inconvenient. The inability to separate cables of different specifications during storage increases the time required for retrieving and retrieving cables, thus affecting work efficiency. Utility Model Content

[0003] This utility model provides a cable storage device for photovoltaic engineering, which can store cables of different specifications and quantities separately during operation. After the cables are wound onto the cable rack, the spacing between several cable racks can be adjusted to limit the movement of different specifications and quantities of cable rolls on them. This device effectively limits the movement of the cable racks during storage and transportation.

[0004] This utility model provides the following technical solution: a cable storage device for photovoltaic engineering, including a base and support rods symmetrically arranged at both ends of its top. One of the support rods is fixedly connected to a connecting plate on one side, and the other support rod is provided with a pressing plate on one side. An adjusting rod is fixedly connected to one side of the pressing plate. Several spacer frames are movably connected to the top of the base. Several winding drums are arranged between the spacer frames. Baffles are movably connected to both ends of each winding drum. Connecting components are provided between the two ends of the winding drum and the baffles on the adjacent sides. The baffles are detachably connected to the spacer frame and the support rod on the adjacent side.

[0005] The connecting assembly includes connecting cavities formed at both ends of the winding drum, with a connecting ring fixedly connected to the inner wall of one side of the connecting cavity, and a high-elasticity rope connected to the connecting ring.

[0006] The winding drum has a through groove at one end, which is connected to the connecting cavity on the adjacent side. One end of the high-elastic rope passes through the through groove and is fixedly connected to the center of the baffle on the adjacent side.

[0007] The through groove is located at the center of one side of the winding drum, and the diameter of the through groove matches that of the high-elasticity rope.

[0008] The baffle has connecting grooves at both ends on one side, and two connecting protrusions are symmetrically arranged on both sides of the spacer. The connecting grooves are engaged with the connecting protrusions on the adjacent side.

[0009] The spacer is fixedly connected to a slider at its bottom end, and the base has several grooves on its top. The spacer is slidably connected to the grooves via the slider.

[0010] One of the support rods has a connecting screw hole, and the adjusting rod is detachably connected to the support rod through the connecting screw hole.

[0011] The beneficial effects of this utility model are:

[0012] This new type of cable can store cables of different specifications and quantities separately during operation. After the cables are wound onto the cable rack, the spacing between several cable racks can be adjusted to limit the different specifications and quantities of cable rolls on them. The cable racks are effectively limited during storage and transportation, and the cable bundles that need to be used can be taken out individually, making it more convenient to retrieve the cables.

[0013] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0015] Figure 2 This is a cross-sectional structural diagram of the present invention;

[0016] Figure 3 This is a three-dimensional structural diagram of the winding drum in this utility model;

[0017] Figure 4 This utility model Figure 2 A magnified view of A in the middle.

[0018] In the diagram: 1. Base; 11. Support rod; 12. Connecting plate; 13. Extrusion plate; 14. Adjusting rod; 141. Connecting screw hole; 2. Spacer; 21. Connecting protrusion; 22. Slider; 221. Slide groove; 3. Winding spool; 31. Baffle; 311. Connecting groove; 32. Connecting cavity; 321. Connecting ring; 33. High elastic rope; 331. Through groove. Detailed Implementation

[0019] Please see Figures 1-4The present invention provides the following technical solution: a base 1 and support rods 11 symmetrically arranged at both ends of its top, one of the support rods 11 is fixedly connected to a connecting plate 12 on one side, and the other support rod 11 is provided with a pressing plate 13 on one side. An adjusting rod 14 is fixedly connected to one side of the pressing plate 13. Several spacer frames 2 are movably connected to the top of the base 1. Several winding drums 3 are arranged between the spacer frames 2. Both ends of the winding drums 3 are movably connected to baffles 31. Connecting components are provided between the two ends of the winding drums 3 and the baffles 31 on the adjacent sides. The baffles 31 are detachably connected to the spacer frame 2 and the support rod 11 on the adjacent side.

[0020] In this embodiment: The new invention uses a base 1 and two support rods 11 to form an external frame structure. One support rod 11 has a connecting plate 12 fixedly connected to one side, and the other support rod 11 has a pressing plate 13 on one side. An adjusting rod 14 is fixedly connected to one side of the pressing plate 13. The pressing plate 13 and the adjusting rod 14 form a limiting assembly. Several spacer frames 2 are movably connected to the top of the base 1, dividing the space. Several winding drums 3 are arranged between the spacer frames 2. Both ends of the winding drums 3 are movably connected to baffles 31. The winding drums 3 and the baffles 31 at both ends form a cable rack for winding and storing cables. Connecting assemblies are provided between the two ends of the winding drums 3 and the adjacent baffles 31. The baffles 31 are detachably connected to the adjacent spacer frame 2 and support rod 11. When the cable is wound onto the winding drum 3, if its length is large, it will press against the baffles 31 at both ends of the winding drum 3, increasing the distance between the two baffles 31. The distance between the baffles 31 is increased, thereby adjusting the distance between them. Several spacers 2 are slidably connected to the top of the base 1. When winding cables of different lengths and volumes in different cable racks, the distance between adjacent spacers 2 is adjusted. The limiting assembly composed of the extrusion plate 13 and the adjusting rod 14 extrudes a group of cable racks located at one end, thereby adjusting the position of the cable racks and spacers 2. This completes the adjustment of multiple groups of cable racks. When storing and moving cables, the cable racks are kept stable and limited, preventing them from rotating arbitrarily on the winding drum 3. The winding drum 3 and the baffles 31 are detachably connected. During use, the position of the limiting assembly is adjusted to increase the gap between the winding drum 3 and the baffles 31, allowing the cable roll and the winding drum 3 to be pulled out from between the two baffles 31 for easy cable retrieval. This allows the new invention to store cables of different specifications and volumes, while simultaneously adjusting several cable racks. During storage and transportation, the cable racks are effectively limited, thereby maintaining the stability of the cables.

[0021] The connecting assembly includes connecting cavities 32 at both ends of the winding drum 3. A connecting ring 321 is fixedly connected to the inner wall of one side of the connecting cavity 32, and a high-elasticity rope 33 is connected to the connecting ring 321. By setting the connecting cavity 32 and the high-elasticity rope 33, the winding drum 3 and the two baffles 31 are connected. After the winding drum 3 is pulled to take the wire, the elasticity of the high-elasticity rope 33 drives the winding drum 3 to automatically reset, thereby driving the cable to reset.

[0022] One end of the winding drum 3 has a through groove 331, which is connected to the adjacent connecting cavity 32. One end of the high-elastic rope 33 passes through the through groove 331 and is fixedly connected to the center of the adjacent baffle 31. By setting the through groove 331, the position of the high-elastic rope 33 is limited, and its movement path is maintained when it deforms and resets, thereby driving the winding drum 3 to reset accurately. After the winding drum 3 resets between the two baffles 31, the winding drum 3 can be hidden.

[0023] The through groove 331 is opened at the center of one side of the winding drum 3, and the diameter of the through groove 331 matches that of the high elastic rope 33. The through groove 331 is opened at the center of one side of the winding drum 3 to keep the winding drum 3 connected to the center of one side of the winding drum 3. After being reset by the high elastic rope 33, the winding drum 3 will not deviate and will be more stable.

[0024] Both ends of one side of the baffle 31 are provided with connecting grooves 311, and two connecting protrusions 21 are symmetrically arranged on both sides of the spacer 2. The connecting grooves 311 and the connecting protrusions 21 on the adjacent side are engaged and connected. By setting the connecting grooves 311 and the connecting protrusions 21, the connection effect between the baffle 31 and the spacer 2 on the adjacent side is increased, and the wire frame composed of the winding drum 3 and the baffle 31 can be completely removed from this device, which is more convenient.

[0025] The bottom of the spacer 2 is fixedly connected to a slider 22, and the top of the base 1 is provided with several grooves 221. The spacer 2 is slidably connected to the grooves 221 by the slider 22. By setting the slider 22 and the grooves 221, the spacer 2 and the base 1 are connected, so that the spacer 2 can slide on the top of the base 1. When adjusting the distance between the wire frames, the position of the spacer 2 is easy to adjust.

[0026] One of the support rods 11 has a connecting screw hole 141, and the adjusting rod 14 is detachably connected to the support rod 11 through the connecting screw hole 141. By setting the connecting screw hole 141, the adjusting rod 14 can be threadedly connected to it. When the adjusting rod 14 is rotated, it drives the pressing plate 13 to press the baffle 31 located at one end, thereby adjusting and limiting all the wire frames.

[0027] The working principle and usage process of this utility model are as follows: During use, cables are wound onto several winding drums 3. When the cable specifications and quantity are large, the baffles 31 at both ends of the winding drums 3 are squeezed to increase the distance between them. When winding cables of different lengths and volumes into different cable frames, the spacing between adjacent spacers 2 is adjusted. The limiting assembly composed of the squeezing plate 13 and the adjusting rod 14 squeezes a group of cable frames located at one end, thereby adjusting the position of the cable frames and spacers 2, completing the adjustment of multiple groups of cable frames. This allows for the storage and movement of electrical cables. When the cable is being pulled, it is kept in a stable position and will not rotate freely on the winding drum 3. The winding drum 3 and the baffle 31 are detachably connected. During use, the position of the limiting component is adjusted to increase the gap between the winding drum 3 and the baffle 31, which allows the cable roll and the winding drum 3 to be pulled out between the two baffles 31 for easy cable removal. The winding drum 3 and the two baffles 31 are connected by a connecting cavity 32 and a high-elasticity rope 33. After the winding drum 3 is pulled to remove the cable, the elasticity of the high-elasticity rope 33 drives the winding drum 3 to automatically reset, thereby driving the cable to reset.

Claims

1. A cable storage device for photovoltaic engineering, comprising a base (1) and support rods (11) symmetrically arranged at both ends of its top, characterized in that: One of the support rods (11) is fixedly connected to a connecting plate (12) on one side, and the other support rod (11) is provided with a pressing plate (13) on one side. An adjusting rod (14) is fixedly connected to one side of the pressing plate (13). Several spacer frames (2) are movably connected to the top of the base (1). Several winding drums (3) are arranged between the spacer frames (2). Both ends of the winding drums (3) are movably connected to baffles (31). A connecting component is provided between the two ends of the winding drums (3) and the baffles (31) on the adjacent sides. The baffles (31) are detachably connected to the spacer frame (2) and the support rod (11) on the adjacent side.

2. The cable storage device for photovoltaic engineering cables according to claim 1, characterized in that: The connecting assembly includes connecting cavities (32) opened at both ends of the winding drum (3), a connecting ring (321) is fixedly connected to the inner wall of one side of the connecting cavity (32), and a high elastic rope (33) is connected to the connecting ring (321).

3. A cable storage device for photovoltaic engineering cables according to claim 2, characterized in that: The winding drum (3) has a through groove (331) at one end, which is connected to the connecting cavity (32) on the adjacent side. One end of the high elastic rope (33) passes through the through groove (331) and is fixedly connected to the center of the baffle (31) on the adjacent side.

4. A cable storage device for photovoltaic engineering cables according to claim 3, characterized in that: The through groove (331) is opened at the center of one side of the winding drum (3), and the diameter of the through groove (331) matches that of the high elastic rope (33).

5. A cable storage device for photovoltaic engineering cables according to claim 1, characterized in that: The baffle (31) has connecting grooves (311) at both ends on one side, and two connecting protrusions (21) are symmetrically arranged on both sides of the spacer (2). The connecting grooves (311) are engaged with the connecting protrusions (21) on the adjacent side.

6. A cable storage device for photovoltaic engineering cables according to claim 1, characterized in that: The spacer (2) is fixedly connected to a slider (22) at its bottom end. The base (1) has several grooves (221) on its top. The spacer (2) is slidably connected to the grooves (221) through the slider (22).

7. A cable storage device for photovoltaic engineering cables according to claim 1, characterized in that: One of the support rods (11) has a connecting screw hole (141), and the adjusting rod (14) is detachably connected to the support rod (11) through the connecting screw hole (141).