A storage device for electrical wire reels
Patent Information
- Application Number
- CN202522213991.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-20
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-10-20
AI Technical Summary
[0003]但是,传统的收线架装置缺乏有效的自动化控制,操作过程中会出现操作不当或设备损坏的风险,增加安全隐患,且无法很好地适应不同类型或尺寸的电线,收线架的设计可能不够灵活,导致不同电线的收纳不便
[0017]1、对比传统的多数接电线绕线架的存放装置,该装置设置有收线机构,在链轮链条的传动下,伺服电机能够对所对应的收线架进行驱动,以便完成对电线的收纳,减少手动操作的劳动强度,提高工作效率,也使得各个收线机构能够单独进行电线的收纳缠绕,从而减少人为干预,降低操作中的安全隐患,且收线架通过卡接安装的方式螺栓固定在安装座上,从而使得使用人员能够较为便捷地对收线架进行拆卸更换。
Smart Images

Figure CN224691512U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of winding rack technology, and in particular to a storage device for a wire winding rack. Background Technology
[0002] A wire winding rack is a mechanical device used for storing and managing wires. It is mainly used for the winding, storage, transportation and maintenance of wires. Wire connection refers to the entire process of connecting power plants with the transmission and distribution networks in the power system. This process involves a large number of wires, cables and connecting equipment to ensure that electrical energy is transmitted efficiently, safely and stably from the power source to the user end.
[0003] However, traditional cable reel devices lack effective automated control, which may lead to improper operation or equipment damage during operation, increasing safety hazards. Furthermore, they cannot adapt well to different types or sizes of cables, and the design of the cable reel may not be flexible enough, resulting in inconvenience in storing different types of cables.
[0004] Therefore, those skilled in the art have provided a storage device for a wire winding rack to solve the problems mentioned in the background art. Summary of the Invention
[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing a storage device for a wire winding rack. This device is equipped with a winding mechanism. Under the transmission of a sprocket and chain, a servo motor can drive the corresponding winding rack to complete the winding of the wire, reducing the labor intensity of manual operation, improving work efficiency, and allowing each winding mechanism to independently wind and wind the wire, thereby reducing human intervention and lowering safety hazards during operation. Furthermore, the winding rack is bolted to the mounting base by a snap-fit installation method, allowing users to easily disassemble and replace the winding rack.
[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: a storage device for a wire winding rack, including a base plate, a support frame fixed on the base plate, a winding mechanism horizontally rotatably connected to the support frame, and a protective mechanism covering the winding mechanism. The side of the protective mechanism away from the support frame is the opening and closing side. A control cabinet and a control panel for controlling the rotation of the winding mechanism are also installed on the base plate.
[0007] Preferably, the take-up mechanism array is distributed on the support frame.
[0008] Preferably, the take-up mechanism includes a drive housing and a transmission housing fixed on the support frame. A servo motor is installed inside the drive housing. A mounting base is horizontally rotatably connected to the movable end of the transmission housing. A take-up frame is detachably connected to the mounting base. A transmission structure for driving the servo motor and the take-up frame is provided inside the transmission housing.
[0009] Preferably, the transmission housings are arranged in pairs, the servo motor is connected to any one of the transmission housings, the mounting base is located on the opposite sides of the two transmission housings, and the opposite sidewalls of the two mounting bases are provided with rectangular mounting slots, and the end wall of the take-up frame is provided with mounting blocks that are adapted to the mounting slots.
[0010] Preferably, a partition plate is vertically fixed on the transmission housing to cover the end of the take-up frame.
[0011] Preferably, the transmission structure includes a first transmission shaft coaxially fixedly connected to the output end of the servo motor, the first transmission shaft being rotatably connected to the transmission housing, a second transmission shaft coaxially fixedly connected to the mounting base, the second transmission shaft being rotatably connected to the transmission housing, and the first transmission shaft and the second transmission shaft being connected by a drive sprocket, a chain and an auxiliary sprocket.
[0012] Preferably, the protective mechanism includes an arc-shaped positioning shell, an arc-shaped protective plate slidably connected to the end of the positioning shell, the arc-shaped protective plate being coaxial with the positioning shell, and a notch being provided on the side of the positioning shell away from the support frame, the length of the arc-shaped protective plate being greater than the length of the notch.
[0013] Preferably, the top and bottom of the positioning shell are slidably connected to the arc-shaped protective plate, and the opposite ends of the two arc-shaped protective plates are fixedly connected to magnetic blocks.
[0014] Preferably, an arc-shaped guide block is fixedly connected to the end of the positioning shell, and the outer wall of the arc-shaped guard plate is in contact with the inner wall of the arc-shaped guide block.
[0015] Preferably, a handle is fixedly connected to one end of the arc-shaped guard plate located on the outside of the positioning shell.
[0016] This utility model provides a storage device for a wire winding rack, which has the following beneficial effects.
[0017] 1. Compared with most traditional cable winding racks, this device is equipped with a cable winding mechanism. Driven by a sprocket and chain, a servo motor drives the corresponding cable winding rack to complete the cable winding, reducing the labor intensity of manual operation, improving work efficiency, and allowing each winding mechanism to independently wind and wind the cable, thereby reducing human intervention and safety hazards during operation. In addition, the cable winding rack is bolted to the mounting base by a snap-fit installation method, which makes it easy for users to disassemble and replace the cable winding rack.
[0018] 2. The present invention proposes a storage device for a wire winding rack. Compared with most traditional wire winding rack storage devices, this device is equipped with a protective mechanism. Users can isolate and protect the winding rack after winding by moving the upper and lower arc-shaped protective plates, thereby improving the safety of the device. The simple structure also makes it easy for users to operate and use. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 This is a schematic diagram of the structure of a storage device for a wire winding rack according to the present invention.
[0020] Figure 2 This is a schematic diagram of the protective mechanism structure of a storage device for a wire winding rack proposed in this utility model.
[0021] Figure 3 This is a schematic diagram of the winding mechanism of a wire winding rack storage device proposed in this utility model.
[0022] Figure 4 This is a schematic diagram of the mounting base structure of a storage device for a wire winding rack proposed in this utility model.
[0023] Figure 5 This is a schematic diagram of the first drive shaft structure of a storage device for a wire winding rack proposed in this utility model.
[0024] Legend: 1. Support frame; 2. Protective mechanism; 201. Positioning shell; 202. Arc-shaped guide groove; 203. Arc-shaped protective plate; 204. Arc-shaped guide... 205. Magnetic block; 206. Handle; 3. Take-up mechanism; 301. Drive housing; 302. Servo motor; 303. Drive sprocket; 304. Chain; 305. Transmission housing; 306. Partition plate; 307. First transmission shaft; 308. Second transmission shaft; 309. Mounting block; 3010, Auxiliary sprocket; 3011, Mounting base; 3012, Mounting slot; 3013, Cable take-up bracket; 4. Control panel; 5. Control cabinet; 6. Base plate. Detailed Implementation
[0025] Reference Figure 1 , 34. A storage device for a wire winding rack, comprising a support frame 1, wherein the outer wall of the front end of the support frame 1 is provided with a plurality of protective mechanisms 2, the protective mechanism 2 comprising a positioning shell 201, wherein the upper and lower parts of the outer wall of the front end of the positioning shell 201 are provided with arc-shaped guide grooves 202, the inner walls of the arc-shaped guide grooves 202 are slidably connected with arc-shaped guard plates 203, the outer wall of the rear end of the arc-shaped guard plate 203 is fixedly connected with an arc-shaped guide block 204, and the outer wall of the front end of the arc-shaped guard plate 203 is fixedly connected with a magnetic block 205; The protective mechanism 2 has a winding mechanism 3 inside. The winding mechanism 3 includes a drive housing 301 and a transmission housing 305. A servo motor 302 is fixedly connected inside the drive housing 301. A drive sprocket 303 is fixedly connected to the output end of the servo motor 302. A chain 304 is sleeved on the outer wall of the drive sprocket 303. The front ends of the inner walls of the two transmission housings 305 are respectively rotatably connected to a first transmission shaft 307 and a second transmission shaft 308. An auxiliary sprocket 3 is fixedly connected to the outer wall of the first transmission shaft 307. 010, the inner walls of the first drive shaft 307 and the second drive shaft 308 are both fixedly connected to the mounting base 3011. The front end of the outer wall of one side of the mounting base 3011 is provided with the mounting slot 3012. The inner wall of the mounting base 3011 is engaged with the take-up frame 3013. The center of the outer walls on both sides of the take-up frame 3013 is fixedly connected to the mounting block 309. The device is equipped with a protective mechanism 2. The user can move the upper and lower arc-shaped protective plates 203 to isolate and protect the take-up frame 3013 after the take-up is completed, thereby improving the safety of the device. The simple structure also makes it easy for the user to operate and use.
[0026] Reference Figure 3 , 45. Positioning housing 201 is fixedly connected to the upper and lower parts of the front outer wall of the support frame 1, respectively. Arc-shaped guide block 204 is slidably connected to arc-shaped guide groove 202, thereby allowing the arc angle of arc-shaped guard plate 203 to be adjusted. A handle 206 is fixedly connected to the center of the outer wall of magnetic block 205, so that the user can adjust the position of arc-shaped guard plate 203 through handle 206. Drive housing 301 is fixedly connected to the middle of one side of the rear outer wall of positioning housing 201. The front end of the inner wall of chain 304 meshes with auxiliary sprocket 3010, so that servo motor 302 can drive take-up frame 3013 through sprocket chain 304. Transmission housing 305 is fixedly connected to the upper and lower parts of the front outer wall of the support frame 1, respectively. Arc-shaped guide block 204 is slidably connected to arc-shaped guide groove 202, thereby allowing the arc angle of arc-shaped guard plate 203 to be adjusted. A partition 306 is fixedly connected to the front end of the outer wall of the transmission housing 305 at the center of one side of the positioning housing 201, so that the partition 306 can isolate the take-up frames 3013. The mounting block 309 engages with the mounting slot 3012, so that the take-up frame 3013 can be snapped onto the support frame 1. A control panel 4 is fixedly connected to the middle of one side of the outer wall of the support frame 1. By setting the control panel 4, the user can preset the operation of the device. A base plate 6 is fixedly connected to the lower surface of the support frame 1. A control cabinet 5 is fixedly connected to the rear end of one side of the upper surface of the base plate 6. By setting the control cabinet 5, the device can be automatically controlled.
[0027] Working principle: First, the corresponding servo motor 302 is started through the control panel 4. Under the transmission of the sprocket and chain 304, the first drive shaft 307 and the second drive shaft 308 rotate synchronously so that the cable retractor 3013 can store the cable. Multiple cable retractors 3 do not affect each other, so that the user can store and place multiple cables at the same time. After completion, pull the upper and lower arc-shaped guard plate 203, and the magnetic attraction of the magnetic block 205 will complete the protection of the cable retractor 3013. Finally, the cable retractor 3013 can be disassembled and replaced by bolts.
Claims
1. A storage device for a wire winding rack, characterized in that: It includes a base plate (6), a support frame (1) fixed on the base plate (6), a winding mechanism (3) horizontally rotatably connected to the support frame (1), and a protective mechanism (2) covering the winding mechanism (3). The side of the protective mechanism (2) away from the support frame (1) is the opening and closing side. The base plate (6) is also equipped with a control cabinet (5) and a control panel (4) for controlling the rotation of the winding mechanism (3) by operating the control cabinet (5).
2. The storage device for a wire winding rack as described in claim 1, characterized in that: The take-up mechanism (3) is arrayed on the support frame (1).
3. The storage device for a wire winding rack as described in claim 2, characterized in that: The take-up mechanism (3) includes a drive housing (301) and a transmission housing (305) fixed on the support frame (1). A servo motor (302) is installed inside the drive housing (301). The movable end of the transmission housing (305) is horizontally rotatably connected to a mounting base (3011). A take-up frame (3013) is detachably connected to the mounting base (3011). A transmission structure for driving the servo motor (302) and the take-up frame (3013) is provided inside the transmission housing (305).
4. The storage device for a wire winding rack as described in claim 3, characterized in that: The transmission housings (305) are arranged in pairs, and the servo motor (302) is connected to any one of the transmission housings (305). The mounting base (3011) is located on the opposite side of the two transmission housings (305), and the opposite sidewalls of the two mounting bases (3011) are provided with rectangular mounting slots (3012). The end wall of the take-up frame (3013) is provided with mounting blocks (309) that are adapted to the mounting slots (3012).
5. The storage device for a wire winding rack as described in claim 4, characterized in that: A partition (306) is vertically fixed on the transmission housing (305) to cover the end of the take-up frame (3013).
6. The storage device for a wire winding rack as described in claim 3, characterized in that: The transmission structure includes a first transmission shaft (307) coaxially fixedly connected to the output end of the servo motor (302), the first transmission shaft (307) being rotatably connected to the transmission housing (305), a second transmission shaft (308) coaxially fixedly connected to the mounting base (3011), the second transmission shaft (308) being rotatably connected to the transmission housing (305), and the first transmission shaft (307) and the second transmission shaft (308) being connected by a drive sprocket (303), a chain (304) and an auxiliary sprocket (3010).
7. The storage device for a wire winding rack as described in claim 1, characterized in that: The protective mechanism (2) includes an arc-shaped positioning shell (201), and an arc-shaped guard plate (203) is slidably connected to the end of the positioning shell (201). The arc-shaped guard plate (203) is coaxial with the positioning shell (201). A notch is provided on the side of the positioning shell (201) away from the support frame (1). The length of the arc-shaped guard plate (203) is greater than the length of the notch.
8. The storage device for a wire winding rack as described in claim 7, characterized in that: The top and bottom of the positioning shell (201) are slidably connected to the arc-shaped guard plate (203), and the opposite ends of the two arc-shaped guard plates (203) are fixedly connected to the magnetic block (205).
9. The storage device for a wire winding rack as described in claim 7, characterized in that: An arc-shaped guide block (204) is fixedly connected to the end of the positioning shell (201), and the outer wall of the arc-shaped guard plate (203) is in contact with the inner wall of the arc-shaped guide block (204).
10. A storage device for a wire winding rack as described in any one of claims 7-9, characterized in that: A handle (206) is fixedly connected to one end of the arc-shaped guard plate (203) located outside the positioning shell (201).