Swivel machine assembly equipment for splayed rings
By employing a rotating ring mechanism and a rotating disk for conveying in the figure-eight ring assembly machine, the synchronous assembly of the left and right rings is achieved, solving the problems of complex structure and high cost in existing technologies, improving work efficiency and reducing equipment costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN LINGYING INTELLIGENT TECHNOLOGY CO LTD
- Filing Date
- 2025-05-23
- Publication Date
- 2026-05-05
AI Technical Summary
The existing figure-eight ring assembly machine has a complex structure, low working efficiency, high equipment cost, and requires multiple robotic arms to work together, resulting in low efficiency.
A rotating ring mechanism that allows the left and right rings to be inserted into the copper tube simultaneously is adopted, combined with a rotating disk for conveying. The robotic arm structure is omitted. The left and right rings are assembled synchronously by the synchronous operation of the left and right ring pressing mechanisms.
It improved work efficiency, reduced equipment costs, simplified equipment structure, and increased assembly efficiency.
Smart Images

Figure CN224196285U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of figure-eight ring assembly equipment, specifically a figure-eight ring rotating ring assembly machine. Background Technology
[0002] like Figure 1 As shown, the figure-eight swivel is a small accessory in the Taiwan-style fishing rig. The figure-eight swivel has two functions: its main function is to connect the main line and the leader line, and its secondary function is to release the rotational force exerted by the fish on the line. Generally, some fish spin quite vigorously after being hooked, and the figure-eight swivel can release the rotational force exerted by the fish on the line.
[0003] When assembling figure-eight rings, a figure-eight ring assembly machine, as disclosed in patent publication number CN220498321U, is generally used. This machine includes a work cabinet, with an edge-collecting and material-retrieving mechanism mounted on the upper surface of the work cabinet. A left ring vibrating plate and a copper tube vibrating plate are mounted on one side of the edge-collecting and material-retrieving mechanism, and a right ring vibrating plate is mounted on the other side. An edge-collecting work frame is bolted to the surface of the work cabinet. A drive motor is mounted on the edge-collecting work frame, and the output end of the drive motor is connected to a driven wheel via a transmission shaft. A fixed frame is mounted on the edge-collecting and material-retrieving mechanism, and a fixed crossbeam is mounted on the fixed frame. A guide rail is provided on the front surface of the fixed crossbeam. A mounting frame is fixedly connected via a drive slider. The mounting frame is equipped with an edge-gathering mold and a material-picking robot. An eight-ring assembly mechanism is installed above the work cabinet. The eight-ring assembly mechanism is equipped with a left ring assembly mechanism, a copper tube assembly mechanism, and a right ring assembly mechanism. However, since the eight-ring assembly mechanism is located on one side of the conveying mechanism, the three components need to be simultaneously conveyed to the eight-ring assembly mechanism of the conveying mechanism from three directions. This results in a relatively complex structure and slow conveying efficiency. Furthermore, since the three components are not conveyed in a straight line, a material-picking robot is also required to convey each component, which undoubtedly increases equipment costs and reduces work efficiency. Therefore, improvements are needed. Utility Model Content
[0004] The purpose of this utility model is to provide a rotating ring assembly machine for figure-eight rings to solve the problems of low working efficiency and high equipment cost of existing figure-eight ring assembly machines mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an assembly equipment for a figure-eight ring rotary machine, comprising a work cabinet, a left ring vibrating plate and a copper tube vibrating plate arranged on the left side of the work cabinet, and a right ring vibrating plate arranged on the right side of the work cabinet. The work cabinet also includes a left-turning conveying track that cooperates with the output port of the left ring vibrating plate and a right-turning conveying track that cooperates with the output port of the right ring vibrating plate. The right-turning and left-turning conveying tracks are symmetrically arranged. Between the right-turning and left-turning conveying tracks is a rotary mechanism that cooperates with the output end of the copper tube vibrating plate and is used for conveying and conversion. The rotary mechanism includes a right-ring pressing mechanism that can press the right ring conveyed from the right-turning conveying track into the copper tube and a left-ring pressing mechanism that can press the left ring conveyed from the left-turning conveying track into the copper tube. The left-ring pressing mechanism and the right-ring pressing mechanism work synchronously. Below the rotary mechanism is an inclined feeding channel, and below the feeding channel is a receiving tray movably placed on the work cabinet.
[0006] Preferably, for ease of operation, the rotating mechanism includes a fixed support, a rotary motor, and a rotating disk. The fixed support is fixed to the table surface of the work cabinet, the rotary motor is fixed to the side of the fixed support, and the rotating disk is rotatably connected inside the fixed support. The output shaft of the rotary motor is connected to the rotating disk. One or more copper tube slots are arranged in a ring on the rotating disk, and the two sides of the copper tube slots are distributed and connected to the corresponding left-turn conveyor track and right-turn conveyor track.
[0007] Preferably, the fixed support includes a left fixed plate and a right fixed plate spaced apart, the material feeding channel is located in the gap between the left fixed plate and the right fixed plate, the rotating disk is provided with a rotating seat at its center, the output shaft of the rotating motor is inserted into the left fixed plate and connected to one end of the rotating seat, and the other end of the rotating seat is rotatably connected to the right fixed plate through a bearing.
[0008] Preferably, for ease of movement, a connecting frame is fixed between the upper parts of the left and right fixed plates. The left and right ring pressing mechanisms are respectively located on the left and right sides of the connecting frame, and the left and right ring pressing mechanisms have the same structure, each including a push cylinder, a push block, and a push plate. A fixed beam is provided at the front end of the connecting frame, and a horizontally arranged guide rail is provided at the front end of the fixed beam. Two push cylinders are located on the left and right sides of the fixed beam, and a push block is slidably connected to the piston rod of the push cylinder on the guide rail. Each push block has a push plate at its front end that sends the corresponding left or right ring into the copper tube.
[0009] Preferably, in order to accurately press the left and right rings into the copper tube, a guide channel 1 aligned with the left-turn conveying track is provided on the left fixed plate. The push block on the left is inserted into the guide channel 1 and can move horizontally along the guide channel 1. A guide channel 2 aligned with the right-turn conveying track is provided on the right fixed plate. The push block on the right is inserted into the guide channel 2 and can move horizontally along the guide channel 2. Vertical guide rails 2 are also provided on the left and right sides of the fixed beam. The fixed beam is slidably connected between the two guide rails 2. A cylinder seat is provided on both sides of the fixed beam, and the push cylinder 1 is fixed on the cylinder seat.
[0010] Preferably, a second pushing cylinder is provided above the fixed beam, the piston rod of the second pushing cylinder is connected to the fixed beam, and a lower pressing strip is provided below the fixed beam to press the copper tube into the copper tube slot.
[0011] Preferably, to enable the copper tube to be quickly fed into the copper tube slot, a clamping mechanism is also provided on the side of the right fixed plate near the output end of the copper tube vibratory plate. The clamping mechanism includes a clamping cylinder and a push rod. The piston rod of the clamping cylinder is connected to the push rod to engage the push rod with a corresponding copper tube slot.
[0012] Preferably, the work cabinet has mounting through holes on its table surface, into which the rotary motor is inserted.
[0013] As a preferred option, and for ease of user operation, a control LCD screen is also provided on the work cabinet.
[0014] Compared with the prior art, the beneficial effects of this utility model are: the structure allows the left and right rings to be inserted into the copper tube simultaneously, the structure of the robot arm is omitted in the later stage, and the product is transported by a rotating disk, which further improves work efficiency and reduces equipment costs. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the figure-eight ring structure in the prior art;
[0016] Figure 2 This is a schematic diagram of the structure of a swivel ring assembly equipment for figure-eight rings in Embodiment 1;
[0017] Figure 3 This is a schematic diagram of the structure of the work cabinet in Embodiment 1 when the left ring vibratory plate and the copper tube vibratory plate are not installed on the table surface;
[0018] Figure 4 This is a schematic diagram of the structure of the work cabinet in Embodiment 1 when the left ring vibratory feeder, copper tube vibratory feeder, right ring vibratory feeder, right-turn conveyor track, and left-turn conveyor track are not installed on the table. Figure 1 ;
[0019] Figure 5 This is a schematic diagram of the structure of the work cabinet in Embodiment 1 when the left ring vibratory feeder, copper tube vibratory feeder, right ring vibratory feeder, right-turn conveyor track, and left-turn conveyor track are not installed on the table. Figure 2 ;
[0020] Figure 6 for Figure 5 A structural diagram without the right mounting plate;
[0021] Figure 7 A schematic diagram of the connection structure between the two left ring pressing mechanisms, the right ring pressing mechanism, and the connecting frame;
[0022] Figure 8 This is a schematic diagram of the structure of an eight-ring swivel assembly machine in Example 1 without the installation of the work cabinet, left ring vibratory plate, copper tube vibratory plate, right ring vibratory plate, control LCD screen, and left fixed plate.
[0023] Figure 9 for Figure 8 Enlarged view of point A.
[0024] In the diagram: 1. Operating cabinet; 2. Left ring vibratory feeder; 3. Copper tube vibratory feeder; 4. Right ring vibratory feeder; 5. Left-turn conveyor track; 6. Right-turn conveyor track; 7. Rotating ring mechanism; 701. Fixed support; 702. Rotary motor; 703. Rotary disc; 704. Copper tube slot; 7011. Left fixed plate; 7012. Right fixed plate; 705. Rotating seat; 706. Bearing; 707. Connecting frame; 8. Right ring pressing mechanism; 8. Push cylinder 1; 801. Push block; 802. Push plate; 803. Left ring pressing mechanism; 9. Discharge channel; 10. Receiving tray; 11. Guide rail 1; 13. Guide channel 1; 14. Guide channel 2; 15. Guide rail 2; 16. Cylinder seat; 17. Push cylinder 2; 18. Lower pressure bar; 19. Mounting through hole; 20. Control LCD screen; 21. Pressing cylinder; 22. Push rod; 23. Feed inlet; 24. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.
[0026] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.
[0027] Example 1
[0028] Please see Figures 2-9 As shown in the figure-eight ring assembly equipment disclosed in this embodiment, a work cabinet 1 is included. For user convenience, a control LCD screen 21 is also provided on the work cabinet 1. A left ring vibrating plate 2 and a copper tube vibrating plate 3 are arranged on the left side of the work cabinet 1, and a right ring vibrating plate 4 is arranged on the right side of the work cabinet 1. A left-turning conveyor track 5 that cooperates with the output port of the left ring vibrating plate 2 and a right-turning conveyor track 6 that cooperates with the output port of the right ring vibrating plate 4 are also provided on the work cabinet 1. The right-turning conveyor track 6 and the left-turning conveyor track 5 are symmetrically arranged. A rotating ring mechanism 7 is provided between the right-turn conveying track 6 and the left-turn conveying track 5, which cooperates with the output end of the copper tube vibratory plate 3 and is used for conveying and conversion. The rotating ring mechanism 7 is provided with a right ring pressing mechanism 8 that can press the right ring conveyed from the right-turn conveying track 6 into the copper tube and a left ring pressing mechanism 9 that can press the left ring conveyed from the left-turn conveying track 5 into the copper tube. The left ring pressing mechanism 9 and the right ring pressing mechanism 8 work synchronously. An inclined feeding channel 10 is provided below the rotating ring mechanism 7. A receiving tray 11 is movably placed on the work cabinet 1 below the feeding channel 10.
[0029] Preferably, for ease of operation, the rotating mechanism 7 includes a fixed support 701, a rotary motor 702, and a rotating disk 703. The fixed support 701 is fixed to the table surface of the work cabinet 1, the rotary motor 702 is fixed to the side of the fixed support 701, and the rotating disk 703 is rotatably connected to the fixed support 701. The output shaft of the rotary motor 702 is connected to the rotating disk 703. One or more copper tube slots 704 are arranged in a ring on the rotating disk 703, and the two sides of the copper tube slots 704 are distributed and connected to the corresponding left-turn conveying track 5 and right-turn conveying track 6. The table surface of the work cabinet 1 is provided with mounting through holes 20, and the rotary motor 702 is partially inserted into the mounting through holes 20.
[0030] Preferably, the fixed support 701 includes a left fixed plate 7011 and a right fixed plate 7012 spaced apart. The feeding channel 10 is located in the gap between the left fixed plate 7011 and the right fixed plate 7012. The rotating disk 703 has a rotating seat 705 at its center. The output shaft of the rotating motor 702 is inserted into the left fixed plate 7011 and connected to one end of the rotating seat 705. The other end of the rotating seat 705 is rotatably connected to the right fixed plate 7012 through a bearing 706.
[0031] Preferably, for ease of movement, a connecting frame 707 is fixed between the upper parts of the left fixed plate 7011 and the right fixed plate 7012. The left ring pressing mechanism 9 and the right ring pressing mechanism 8 are respectively arranged on the left and right sides of the connecting frame 707, and the structures of the left ring pressing mechanism 9 and the right ring pressing mechanism 8 are identical, each including a push cylinder 801, a push block 802, and a push plate 803. A fixed beam 12 is provided at the front end of the connecting frame 707, and a horizontally arranged guide rail 13 is provided at the front end of the fixed beam 12. Two push cylinders 801 are arranged on the left and right sides of the fixed beam 12, and a sliding contact is connected to the piston rod of the push cylinder 801. A pusher block 802 is movably connected to the guide rail 13, and each pusher block 802 has a pusher plate 803 at its front end to feed the corresponding left or right ring into the copper tube. In order to accurately press the left and right rings into the copper tube, a guide channel 14 aligned with the left-turn conveying track 5 is provided on the left fixed plate 7011. The pusher block 802 on the left is inserted into the guide channel 14 and can move horizontally along the guide channel 14. A guide channel 2 15 aligned with the right-turn conveying track 6 is provided on the right fixed plate 7012. The pusher block 802 on the right is inserted into the guide channel 2 15 and can move horizontally along the guide channel 2 15. Vertically arranged guide rails 16 are provided on both sides of the fixed beam 12. The fixed beam 12 is slidably connected between the two guide rails 16. A cylinder seat 17 is provided on both sides of the fixed beam 12. The push cylinder 801 is fixed on the cylinder seat 17. A push cylinder 18 is also provided above the fixed beam 12. The piston rod of the push cylinder 18 is connected to the fixed beam 12. A pressure bar 19 is provided below the fixed beam 12 to press the copper tube into the copper tube slot 704. During operation, the left ring is transported to the left turn conveying track 5 through the left ring vibrating plate 2 and enters the guide channel 14. The right ring is transported to the right turn conveying track 6 through the right ring vibrating plate 4. The ring enters the guide channel 2 15. At this time, the drive cylinder 2 18 works, causing the fixed beam 12 to move down. At this time, the push plates 803 on both sides are respectively inserted into the guide channel 1 14 and the guide channel 2 15. Simultaneously, the pressure bar 19 presses down to press and limit the copper tube in the copper tube slot 704 on the rotating disk 703, which is aligned with the guide channel 1 14 and the guide channel 2 15. At this time, the left ring pressing mechanism 9 and the right ring pressing mechanism 8 are driven to work, driving the cylinder 1 801 to work, causing the push block 802 to move along the guide rail 1 13. At this time, the push plates 803 on both sides work simultaneously to insert the left and right rings on the left and right sides into the copper tubes in the copper tube slot 704, realizing the assembly of the figure-eight ring.
[0032] like Figure 8 , Figure 9As shown, preferably, to quickly feed the copper tube into the copper tube slot 704, a clamping mechanism is also provided on the side of the right fixed plate 7012 near the output end of the copper tube vibrating plate 3. The clamping mechanism includes a clamping cylinder 22 and a push rod 23. The piston rod of the clamping cylinder 22 is connected to the push rod 23 to engage the push rod 23 with a corresponding copper tube slot 704. Since the left fixed plate 7011 is provided with a feed port 24 connected to the output end of the copper tube vibrating plate 3, after the copper tube is transported to the feed port 24 by the copper tube vibrating plate 3, it enters the position aligned with one of the copper tube slots 704. At this time, the clamping cylinder 22 is driven to work, and the push rod 23 is driven to work to push the copper tube into one of the copper tube slots 704.
[0033] The specific working principle of this structure is as follows: The left ring is conveyed to the left-turning conveyor track 5 via the left ring vibrating plate 2 and enters the guide channel 14. The right ring is conveyed to the right-turning conveyor track 6 via the right ring vibrating plate 4 and enters the guide channel 25. The copper tube vibrating plate 3 is used to push the copper tube through the feed port 24 and into one of the copper tube slots 704 of the rotating plate 703. The rotating motor 702 is driven to work, driving the rotating plate 703 to rotate. The copper tube slot 704 containing the copper tube is rotated to the top and aligned with the guide channel 14 and the guide channel 25. Then, the push cylinder 2 18 is driven to work, driving the fixed beam 12 to move down. At this time, the push plates 803 on both sides are respectively inserted into the guide channel 14 and the guide channel 2 15. At the same time, the pressure bar 19 presses down to press and limit the copper tube in the copper tube slot 704 on the rotating plate 703 that is aligned with the guide channel 14 and the guide channel 2 15. At the same time, the left ring pressing mechanism 9 and the... When the right ring pressing mechanism 8 operates, it drives cylinder 801 to work, which in turn moves push block 802 along guide rail 13. At this time, push plates 803 on both sides work simultaneously to insert the left and right rings on both sides into the copper tubes in copper tube slots 704, thus assembling the figure-eight rings. After assembly, the figure-eight rings continue to rotate to the next station as the rotary motor 702 continues to work. Meanwhile, the other copper tube without the left and right rings rotates to the position aligned with guide channel 14 and guide channel 2 15, and the left and right rings are then installed. When the assembled figure-eight rings continue to rotate to the bottom of the rotary disk 703 as the rotary motor 702 continues to work, they fall directly into the unloading channel 10 under the action of gravity and then slide onto the receiving tray 11. Therefore, this structure enables the left and right rings to be inserted into the copper tubes simultaneously, eliminating the need for a robotic arm and using the rotary disk 703 to rotate and transport the products, further improving work efficiency and reducing equipment costs.
[0034] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An assembly equipment for a figure-eight ring rotating ring machine, comprising a work cabinet (1), a left ring vibrating plate (2) and a copper tube vibrating plate (3) arranged on the left side of the work cabinet (1), and a right ring vibrating plate (4) arranged on the right side of the work cabinet (1), characterized in that: The work cabinet (1) is also equipped with a left-turn conveying track (5) that cooperates with the output port of the left ring vibratory plate (2) and a right-turn conveying track (6) that cooperates with the output port of the right ring vibratory plate (4). The right-turn conveying track (6) and the left-turn conveying track (5) are arranged symmetrically on the left and right sides. Between the right-turn conveying track (6) and the left-turn conveying track (5) is a rotating ring mechanism (7) that cooperates with the output end of the copper tube vibratory plate (3) and is used for conveying and switching. The rotating ring mechanism (7) is equipped with a function that can... The right ring pressing mechanism (8) presses the right ring conveyed by the right-turn conveyor track (6) into the copper tube and the left ring pressing mechanism (9) presses the left ring conveyed by the left-turn conveyor track (5) into the copper tube. The left ring pressing mechanism (9) and the right ring pressing mechanism (8) work synchronously. An inclined feeding channel (10) is provided below the rotating ring mechanism (7). A receiving tray (11) is movably placed on the work cabinet (1) below the feeding channel (10).
2. The figure-eight ring assembly equipment for a rotating ring machine according to claim 1, characterized in that: The rotating mechanism (7) includes a fixed support (701), a rotary motor (702), and a rotating disk (703). The fixed support (701) is fixed on the table surface of the work cabinet (1). The rotary motor (702) is fixed on the side of the fixed support (701). The rotating disk (703) is rotatably connected to the fixed support (701). The output shaft of the rotary motor (702) is connected to the rotating disk (703). One or more copper tube slots (704) are arranged in a ring on the rotating disk (703). The two sides of the copper tube slots (704) are distributed and connected to the corresponding left-turn conveying track (5) and right-turn conveying track (6).
3. The figure-eight ring assembly equipment for a rotating ring machine according to claim 2, characterized in that: The fixed support (701) includes a left fixed plate (7011) and a right fixed plate (7012) spaced apart. The feeding channel (10) is located in the gap between the left fixed plate (7011) and the right fixed plate (7012). A rotating seat (705) is provided at the center of the rotating disk (703). The output shaft of the rotating motor (702) is inserted into the left fixed plate (7011) and connected to one end of the rotating seat (705). The other end of the rotating seat (705) is rotatably connected to the right fixed plate (7012) through a bearing (706).
4. The figure-eight ring assembly equipment for a rotating ring machine according to claim 3, characterized in that: A connecting frame (707) is fixed between the upper parts of the left fixed plate (7011) and the right fixed plate (7012). The left ring pressing mechanism (9) and the right ring pressing mechanism (8) are respectively arranged on the left and right sides of the connecting frame (707), and the left ring pressing mechanism (9) and the right ring pressing mechanism (8) have the same structure, each including a push cylinder (801), a push block (802) and a push plate (803). The front of the connecting frame (707) A fixed beam (12) is provided at one end. A horizontally arranged guide rail (13) is provided at the front end of the fixed beam (12). Two push cylinders (801) are provided on the left and right sides of the fixed beam (12). A push block (802) is slidably connected to the piston rod of the push cylinder (801) on the guide rail (13). Each push block (802) has a push plate (803) at its front end that sends the corresponding left or right ring into the copper tube.
5. The figure-eight ring assembly equipment for a rotating ring machine according to claim 4, characterized in that: A guide channel 1 (14) aligned with the left-turn conveying track (5) is provided on the left fixed plate (7011). The push block (802) on the left is inserted into the guide channel 1 (14) and can move horizontally along the guide channel 1 (14). A guide channel 2 (15) aligned with the right-turn conveying track (6) is provided on the right fixed plate (7012). The push block (802) on the right is inserted into the guide channel 2 (15) and can move horizontally along the guide channel 2 (15). Vertical guide rails 2 (16) are also provided on the left and right sides of the fixed beam (12). The fixed beam (12) is slidably connected between the two guide rails 2 (16). A cylinder seat (17) is provided on both sides of the fixed beam (12). The push cylinder 1 (801) is fixed on the cylinder seat (17).
6. The figure-eight ring assembly equipment for a rotating ring machine according to claim 5, characterized in that: Above the fixed beam (12) is a second push cylinder (18), the piston rod of the second push cylinder (18) is connected to the fixed beam (12), and below the fixed beam (12) is a lower pressure strip (19) that presses the copper tube into the copper tube slot (704).
7. The figure-eight ring assembly equipment for a rotating ring machine according to claim 6, characterized in that: A clamping mechanism is also provided on the side of the right fixed plate (7012) near the output end of the copper tube vibratory plate (3). The clamping mechanism includes a clamping cylinder (22) and a push rod (23). The piston rod of the clamping cylinder (22) is connected to the push rod (23) to engage the push rod (23) with a corresponding copper tube slot (704).
8. The assembly equipment for a figure-eight ring using a rotating ring machine according to claim 2 or 3, characterized in that: The work cabinet (1) has a mounting through hole (20) on its table surface, and the rotary motor (702) is partially inserted into the mounting through hole (20).
9. The figure-eight ring assembly equipment for a rotating ring machine according to claim 1, characterized in that: An operating LCD screen (21) is also provided on the operating cabinet (1).
Citation Information
Patent Citations
Splayed ring assembling machine
CN220498321U