Electronic element wire arranging tool
By setting up a combing roller on the rotating disc and using elastic parts to push it to squeeze with the processing table, the problem of messy wiring harness of electronic components is solved, and efficient wiring harness combing and product quality improvement is achieved.
Patent Information
- Application Number
- CN202421997384.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-19
AI Technical Summary
After the production of existing electronic components is completed, the wiring harness is messy, resulting in confusion in the lines during the equipment assembly process, reducing production efficiency and product quality.
An electronic component wire processing tool is designed. By a circular array of several combing rollers on the rotating disc, the first elastic member is used to push the combing roller away from the axis of the rotating disc, so that the combing roller and the processing table are squeezed to each other, increasing the combing distance, and effectively combing the wire harness.
Effectively sort out the wiring harness, improve production efficiency, reduce line error connections, and improve product quality.
Smart Images

Figure CN223125066U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electronic component tooling, and more specifically, it relates to a wire arranging tooling for electronic components. Background Art
[0002] After the existing electronic components are produced, the wire harnesses on the electronic components are in a mess, which leads to a large amount of time spent on sorting out the chaotic wire harnesses during the equipment assembly process. Therefore, incorrect connections or misoperations caused by wire chaos will occur, thus reducing production efficiency and product quality.
[0003] Therefore, a new solution is needed to solve this problem. Summary of the Utility Model
[0004] Aiming at the deficiencies of the existing technology, the purpose of the utility model is to provide a wire arranging tooling for electronic components. By annularly arranging a number of combing rollers on a rotating disk, and pushing the combing rollers away from the axis of the rotating disk through a first elastic member, the combing rollers can be pressed against the processing table, so that the combing distance of the wire harness by the combing rollers is increased, and thus the effect of combing the wire harness is achieved.
[0005] The above technical purpose of the utility model is achieved through the following technical solutions: A wire arranging tooling for electronic components includes a processing table, a clamping assembly is arranged on the processing table, an installation plate that slides horizontally is arranged on the processing table, a positioning plate that slides vertically is arranged on the installation plate, a driving motor is fixedly arranged on the positioning plate, a rotating disk is fixedly arranged at the driving end of the driving motor, a wire arranging assembly is arranged on the rotating disk, the wire arranging assembly includes a number of combing rollers annularly arranged on the rotating disk, a number of the combing rollers are arranged to slide along the radial direction of the rotating disk, a number of combing rings that slide along the axis direction of the rotating disk are arranged on the combing rollers, and a number of first elastic members corresponding to the number of combing rollers one by one are annularly arranged on the rotating disk, and the first elastic member has an elastic potential energy for pushing the combing roller away from the axis of the rotating disk.
[0006] Preferably, a positioning groove is formed in the combing roller, a driving plate that slides along the radial direction of the combing ring is arranged in the positioning groove, a number of long strip holes are formed in the driving plate, the distance between one ends of adjacent long strip holes is greater than that between the other ends, and a number of limiting rods are arranged on a number of the combing rings, and a number of the limiting rods are respectively slidably arranged in a number of the long strip holes.
[0007] Preferably, a driving rod that rotates vertically is arranged on the combing roller, a driving gear is arranged on the driving rod, a transmission rack that meshes with the driving gear is arranged on the driving plate, and a knob is arranged at the end of the driving rod.
[0008] Preferably, a chute is provided on the mounting plate, the positioning plate is slidably arranged in the chute, a linear driver for pushing the positioning plate to slide is arranged on the mounting plate, a second elastic member is arranged in the chute, the second elastic member has an elastic potential energy for pushing the positioning plate away from the processing table, and a driving cylinder for pushing the mounting plate to slide is arranged on the processing table.
[0009] The present utility model has the following beneficial effects:
[0010] By rotating the knob to drive the driving rod to rotate, the driving gear on the driving rod drives the driving plate to slide radially along the combing ring through the transmission rack. Since the distance between one end of the adjacent long slot holes on the driving plate is greater than that of the other end, the combing ring slides along the axis of the rotating disk, thereby achieving the effect of adjusting the distance between adjacent combing rings, making the device applicable to wire harnesses of different sizes on electronic components. The electronic component is clamped by the clamping assembly so that the wire harness on the electronic component corresponds to the wire arranging assembly. The driving cylinder is used to push the mounting plate to slide so that the wire arranging assembly corresponds to the electronic component. Then, the linear driver is started to push the positioning plate, so that the positioning plate drives the wire arranging assembly to slide towards the processing table. Then, the driving motor is started to drive the rotating disk to rotate, and several combing rollers on the rotating disk comb the wire harness one by one, so that after the wire harness can be combed multiple times, it can be separated between several combing rings. When combing, the combing ring and the processing table are mutually pressed, causing the first elastic member to undergo elastic deformation, so that the combing roller fits with the processing table under the action of the first elasticity, thereby achieving the effect of combing the wire harness. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 is a schematic structural diagram of the present utility model;
[0012] Figure 2 is a schematic structural diagram of the present utility model with the processing table hidden;
[0013] Figure 3 is a schematic structural diagram of the rotating disk and the wire arranging assembly of the present utility model;
[0014] Figure 4 is a schematic structural diagram of the combing roller of the present utility model;
[0015] Figure 5 is an exploded view of the combing roller of the present utility model.
[0016] In the figure: 1, processing table; 2, mounting plate; 3, positioning plate; 4, driving motor; 5, rotating disk; 6, wire arranging assembly; 7, combing roller; 8, combing ring; 9, first elastic member; 10, positioning groove; 11, driving plate; 12, long slot hole; 13, limiting rod; 14, driving rod; 15, driving gear; 16, transmission rack; 17, knob; 18, chute; 19, linear driver; 20, second elastic member; 21, driving cylinder. Detailed implementation mode
[0017] 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.
[0018] An electronic component wire management tooling, as Figures 1 to 5 shown, includes a processing table 1. A clamping assembly (the clamping assembly is a prior art) is arranged on the processing table 1. A horizontally sliding mounting plate 2 is arranged on the processing table 1. A driving cylinder 21 for pushing the mounting plate 2 to slide is arranged on the processing table 1. A sliding groove 18 is formed on the mounting plate 2. A sliding positioning plate 3 is installed in the sliding groove 18. A second elastic member 20 is arranged in the sliding groove 18. The second elastic member 20 has an elastic potential energy for pushing the positioning plate 3 away from the processing table 1. A driving motor 4 is fixedly installed on the positioning plate 3. A rotating disk 5 is fixedly arranged at the driving end of the driving motor 4. A wire management assembly 6 is arranged on the rotating disk 5.
[0019] In the above embodiment, the electronic component is clamped by the clamping assembly, so that the wire harness on the electronic component corresponds to the wire management assembly 6. The driving cylinder 21 is used to push the mounting plate 2 to slide so that the wire management assembly 6 corresponds to the electronic component. Then, the linear driver 19 is started to push the positioning plate 3, so that the positioning plate 3 drives the wire management assembly 6 to slide towards the processing table 1. Then, the driving motor 4 is started, so that the driving motor 4 drives the wire management assembly 6 to comb the wire harness of the electronic component.
[0020] Refer to Figure 3 、 Figure 4 and Figure 5 shown: The wire management assembly 6 includes a plurality of combing rollers 7. A plurality of mounting sliding grooves 18 arranged radially along it are annularly arrayed on the rotating disk 5. The plurality of combing rollers 7 are respectively slidably installed in the plurality of mounting sliding grooves 18. The plurality of combing rollers 7 slide radially along the rotating disk 5. A plurality of combing rings 8 sliding along the axis direction of the rotating disk 5 are connected to the combing rollers 7. A plurality of first elastic members 9 corresponding to the plurality of combing rollers 7 one by one are fixedly arranged in the plurality of mounting sliding grooves 18. The first elastic member 9 has an elastic potential energy for pushing the combing roller 7 away from the axis of the rotating disk 5.
[0021] A positioning groove 10 is formed in the combing roller 7. A driving plate 11 sliding radially along the combing ring 8 is arranged in the positioning groove 10. A plurality of long strip holes 12 are formed in the driving plate 11. The distance between one end of adjacent long strip holes 12 is greater than that of the other end. A plurality of limiting rods 13 are arranged on the plurality of combing rings 8. The plurality of limiting rods 13 are respectively slidably arranged in the plurality of long strip holes.
[0022] A vertically rotating drive rod 14 is provided on the carding roller 7. A drive gear 15 is provided on the drive rod 14. A transmission rack 16 meshing with the drive gear 15 is provided on the drive plate 11. A knob 17 is provided at the end of the drive rod 14.
[0023] In the above embodiment, by rotating the knob 17 to drive the drive rod 14 to rotate, the drive gear 15 on the drive rod 14 drives the drive plate 11 to slide radially along the carding ring 8 through the transmission rack 16. Since the distance between one end of the adjacent long slot holes 12 on the drive plate 11 is greater than that of the other end, the carding ring 8 slides along the axis of the rotating disk 5, thereby achieving the effect of adjusting the distance between adjacent carding rings 8, making the device applicable to wire harnesses of different sizes on electronic components. When the rotating disk 5 rotates, the carding roller 7 on the rotating disk 5 is pre-attached to the processing table 1 through the carding ring 8. The carding ring 8 and the processing table 1 are pressed against each other, causing the first elastic member 9 to undergo elastic deformation. The rotating disk 5 rotates, and several carding rollers 7 on it card the wire harness one by one, so that the wire harness can be carded multiple times and then separated between several carding rings 8.
[0024] Working principle:
[0025] By rotating the knob 17 to drive the drive rod 14 to rotate, the drive gear 15 on the drive rod 14 drives the drive plate 11 to slide radially along the carding ring 8 through the transmission rack 16. Since the distance between one end of the adjacent long slot holes 12 on the drive plate 11 is greater than that of the other end, the carding ring 8 slides along the axis of the rotating disk 5, thereby achieving the effect of adjusting the distance between adjacent carding rings 8, making the device applicable to wire harnesses of different sizes on electronic components. The electronic component is clamped by the clamping assembly so that the wire harness on the electronic component corresponds to the wire arranging assembly 6. The drive cylinder 21 is used to push the mounting plate 2 to slide so that the wire arranging assembly 6 corresponds to the electronic component. Then the linear actuator 19 is started to push the positioning plate 3, so that the positioning plate 3 drives the wire arranging assembly 6 to slide towards the processing table 1. Then the drive motor 4 is started to drive the rotating disk 5 to rotate. Several carding rollers 7 on the rotating disk 5 card the wire harness one by one, so that the wire harness can be carded multiple times and then separated between several carding rings 8. During carding, the carding ring 8 and the processing table 1 are pressed against each other, causing the first elastic member 9 to undergo elastic deformation, so that the carding roller 7 is attached to the processing table 1 under the action of the first elasticity, thereby achieving the effect of carding the wire harness.
[0026] The above description is only a preferred embodiment of the present invention. The protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, several improvements and retouches made without departing from the principle of the present invention should also be regarded as the protection scope of the present invention.
Claims
1. An electronic component wire management tooling, including a processing table (1), and a clamping assembly is arranged on the processing table (1), characterized in that: A mounting plate (2) that slides horizontally is provided on the processing table (1). A positioning plate (3) that slides vertically is provided on the mounting plate (2). A driving motor (4) is fixedly provided on the positioning plate (3). A rotating disc (5) is fixedly provided at the driving end of the driving motor (4). A wire arranging assembly (6) is provided on the rotating disc (5). The wire arranging assembly (6) includes a plurality of combing rollers (7) arranged in an annular array on the rotating disc (5). The plurality of combing rollers (7) are slidably arranged along the radial direction of the rotating disc (5). A plurality of combing rings (8) are arranged on the combing rollers (7) and slide along the axial direction of the rotating disc (5). A plurality of first elastic members (9) corresponding to the plurality of combing rollers (7) one by one are arranged in an annular array on the rotating disc (5). The first elastic member (9) has an elastic potential energy for pushing the combing roller (7) away from the axis of the rotating disc (5).
2. The wire management tooling for electronic components according to claim 1, wherein: A positioning groove (10) is formed in the combing roller (7). A driving plate (11) that slides along the radial direction of the combing ring (8) is arranged in the positioning groove (10). A plurality of long slot holes (12) are formed in the driving plate (11). The distance between one ends of adjacent long slot holes (12) is greater than that between the other ends. A limiting rod (13) is arranged on each of the plurality of combing rings (8). The plurality of limiting rods (13) are respectively slidably arranged in the plurality of long slot holes.
3. The wire management tooling for electronic components according to claim 2, characterized in that: A driving rod (14) that rotates vertically is arranged on the combing roller (7). A driving gear (15) is arranged on the driving rod (14). A transmission rack (16) that meshes with the driving gear (15) is arranged on the driving plate (11). A knob (17) is arranged at the end of the driving rod (14).
4. The wire management tooling for electronic components according to claim 3, characterized in that: A chute (18) is provided on the mounting plate (2). The positioning plate (3) is slidably arranged in the chute (18). A linear driver (19) for pushing the positioning plate (3) to slide is provided on the mounting plate (2). A second elastic member (20) is arranged in the chute (18). The second elastic member (20) has an elastic potential energy for pushing the positioning plate (3) away from the processing table (1). A driving cylinder (21) for pushing the mounting plate (2) to slide is provided on the processing table (1).