A light controller socket sealing ring feeding device
Patent Information
- Application Number
- CN202522431162.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-11-14
AI Technical Summary
[0004]上述技术方案中,提高了密封圈的自动化程度和生产效率,但整体为间歇性作业,人工上料成为生产节拍的瓶颈,效率较低
[0012] The present invention is further configured such that: the rotating component includes a rotating motor, the output shaft of the rotating motor passes through the fixed frame and is connected to a rotating disk, and the rotating disk is provided with a plurality of storage slots for placing the light controller.
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Figure CN224767727U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a light controller, and more specifically, it relates to a feeding device for a sealing ring of a light controller socket. Background Technology
[0002] A light controller is a type of controller that controls the switching on and off of lights by sensing changes in the light source. It is commonly used in automatic power control devices for streetlights, general lighting, and advertising light boxes that need to operate at night. When installing a light controller, the location of the corresponding light source or environment must be considered to ensure its effective operation. For better safety and compatibility with light controllers, a power outlet is often used to supply power to the light controller.
[0003] The technical features of the Chinese patent announcement CN223492556U, which discloses a sealing ring assembly mechanism, are as follows: it includes a worktable, on which a first guide mechanism, a second guide mechanism, an installation mechanism, and a unloading mechanism are provided.
[0004] The above technical solutions improve the automation level and production efficiency of sealing rings, but the overall operation is intermittent, and manual feeding becomes a bottleneck in the production cycle, resulting in low efficiency.
[0005] Therefore, a new technical solution is urgently needed to solve the above-mentioned technical problems. Utility Model Content
[0006] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a feeding device for the sealing ring of the light controller socket.
[0007] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a feeding device for a light controller socket sealing ring, comprising a workbench, the surface of which is provided with a transfer frame and a fixing frame, the transfer frame being a hollow structure, characterized in that: a material transfer component is provided on the transfer frame, a material conveying component is provided on one side of the material transfer component, a hopper is provided above the material conveying component, and transfer grooves are provided on opposite sides of the transfer frame, a pushing component for pushing material into the material transfer component and a rotating component for placing the light controller are respectively provided on one side of the two transfer grooves, the rotating component being rotatably connected to the fixing frame.
[0008] By adopting the above technical solution: the workbench provides corresponding support for the whole device. The operator first pours the material into the hopper and places the photoelectric controller on the rotating component. The material in the hopper falls onto the material conveying component. The material is transported by the material conveying component. The material leaves from the discharge end of the material conveying component and enters the material transfer component. The material transfer component is raised and lowered accordingly so that the height of the material on the material transfer component is the same as the height of the two transfer troughs. At this time, the material on the material transfer component is pushed onto the photoelectric controller on the rotating component by the pushing component on one side.
[0009] The present invention is further configured such that: the material transfer assembly includes several transfer plates, adjacent transfer plates are connected to each other by four transfer columns, a transfer space is formed between adjacent transfer plates, a transfer connecting plate is provided on one side of the transfer plate, a transfer cylinder is provided on the transfer connecting plate, the transfer cylinder is fixed to the transfer frame by transfer seat bolts, and a lifting groove for the transfer connecting plate to be raised and lowered is provided on the transfer frame.
[0010] The present invention is further configured such that: the material conveying assembly includes a material conveyor belt, on which a main conveyor wheel and a driven conveyor wheel are sleeved; each of the main conveyor wheel and the driven conveyor wheel is provided with a mounting plate; the two mounting plates are connected to the transfer frame by a mounting bracket; a conveying motor is connected to the main conveyor wheel; the conveying motor is fixed to the transfer frame by a conveying seat bolt; and a connecting plate is provided at the discharge end of the material conveyor belt.
[0011] The present invention is further configured such that: the pushing assembly includes a pushing cylinder, a pushing plate is provided on the piston rod of the pushing cylinder, and the pushing cylinder is fixed to the transfer frame by a pushing seat bolt.
[0012] The present invention is further configured such that: the rotating component includes a rotating motor, the output shaft of the rotating motor passes through the fixed frame and is connected to a rotating disk, and the rotating disk is provided with a plurality of storage slots for placing the light controller.
[0013] The present invention is further configured such that: both sides of the hopper are connected to the mounting frame by support rods, and a height limiting frame is provided at the bottom of the hopper.
[0014] The present invention has the following advantages: 1. The entire device achieves an automated process from material being poured into the hopper to being installed on the light controller through the coordinated work of multiple components, reducing manual operation and improving production efficiency.
[0015] 2. The conveyor belt structure of the material conveying component, in conjunction with the connecting plate, can stably transport materials from the hopper to the material transfer component, and the height limit frame prevents material stacking, ensuring the smoothness and stability of material transportation.
[0016] 3. The transfer plate of the material transfer component is raised and lowered by a transfer cylinder. It can be lowered precisely according to the material transfer situation to ensure that each transfer space can receive materials in an orderly manner.
[0017] 4. The pusher component can precisely push the material to the corresponding position of the light controller on the rotating component.
[0018] 5. The rotating assembly can continuously place light controllers, enabling uninterrupted processing, and the light controllers can be easily removed after processing, improving the continuity of the overall production process. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural diagram of this embodiment;
[0020] Figure 2 This is a three-dimensional structural schematic diagram from another perspective of this embodiment;
[0021] Figure 3 This is a three-dimensional structural diagram of the material transfer component in this embodiment;
[0022] Figure 4 This is a three-dimensional structural diagram of the material conveying assembly and hopper in this embodiment.
[0023] Attached diagram descriptions: 1. Workbench; 2. Transfer frame; 3. Fixed frame; 4. Hopper; 5. Transfer trough; 6. Transfer plate; 7. Transfer space; 8. Transfer connecting plate; 9. Transfer cylinder; 10. Lifting trough; 11. Material conveyor belt; 12. Main conveyor wheel; 13. Driven conveyor wheel; 14. Mounting plate; 15. Mounting frame; 16. Conveyor motor; 17. Connecting plate; 18. Push cylinder; 19. Push plate; 20. Rotary motor; 21. Rotary disc; 22. Storage trough; 23. Support rod; 24. Height limiter. Detailed Implementation
[0024] The present invention will be further described in detail below with reference to the accompanying drawings.
[0025] Identical parts are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "bottom surface," "top surface," "inner," and "outer" refer to directions toward or away from the geometric center of a specific part, respectively.
[0026] like Figures 1 to 2As shown, a feeding device for a light controller socket sealing ring includes a workbench 1. A transfer frame 2 and a fixing frame 3 are provided on the surface of the workbench 1. The transfer frame 2 is a hollow structure. A material transfer component is provided on the transfer frame 2. A material conveying component is provided on one side of the material transfer component. A hopper 4 is provided above the material conveying component. Transfer grooves 5 are provided on opposite sides of the transfer frame 2. A pushing component for pushing the material into the material transfer component and a rotating component for placing the light controller are respectively provided on one side of the two transfer grooves 5. The rotating component is rotatably connected to the fixing frame 3.
[0027] In use, the workbench 1 provides support for the entire device. The operator first pours the material (i.e., the sealing ring) into the hopper 4 and places the photocontroller on the rotating assembly. The material in the hopper 4 falls onto the material conveying assembly, which transports the material. The material leaves the discharge end of the material conveying assembly and enters the material transfer assembly. The material transfer assembly is raised and lowered so that the height of the material on the material transfer assembly is the same as the height of the two transfer troughs 5. At this time, the push assembly on one side pushes the material on the material transfer assembly onto the photocontroller on the rotating assembly. It should be noted that both the material conveying assembly and the material transfer assembly can accommodate multiple materials, as explained below. After the material conveying assembly feeds a material into the material transfer assembly, the material transfer assembly lowers by the corresponding height. Similarly, after the push assembly pushes a material onto the photocontroller, the push assembly reciprocates, and the material transfer assembly lowers by the corresponding height.
[0028] like Figure 1 and Figure 3 As shown, the material transfer assembly includes several transfer plates 6. Adjacent transfer plates 6 are connected to each other by four transfer columns. A transfer space 7 is formed between adjacent transfer plates 6. A transfer connecting plate 8 is provided on one side of the transfer plate 6. A transfer cylinder 9 is provided on the transfer connecting plate 8. The transfer cylinder 9 is fixed to the transfer frame 2 by transfer seat bolts. A lifting groove 10 is provided on the transfer frame 2 for the transfer connecting plate 8 to be raised and lowered.
[0029] The material conveyed by the material conveying component enters between the two corresponding transfer plates 6, that is, into the corresponding transfer space 7. The transfer cylinder 9 is the power source. The piston rod of the transfer cylinder 9 drives the transfer connecting plate 8 to rise and fall accordingly, and causes several transfer plates 6 to rise and fall accordingly. The transfer cylinder 9 cooperates with the material conveying component. When each piece of material enters the transfer space 7, the transfer cylinder 9 drives the transfer plate 6 to fall to a corresponding height through the corresponding component, so that the material on the material conveying component can enter the empty transfer space 7.
[0030] like Figure 2 and Figure 4As shown, the material conveying assembly includes a material conveyor belt 11, on which a main conveyor wheel 12 and a driven conveyor wheel 13 are mounted. Both the main conveyor wheel 12 and the driven conveyor wheel 13 are provided with mounting plates 14. The two mounting plates 14 are connected to the transfer frame 2 through mounting brackets 15. A conveyor motor 16 is connected to the main conveyor wheel 12. The conveyor motor 16 is fixed to the transfer frame 2 by conveyor seat bolts. A connecting plate 17 is provided at the discharge end of the material conveyor belt 11.
[0031] Mounting bracket 15 and mounting plate 14 provide corresponding support for the material conveying assembly. The conveying motor 16 is the power source. The output shaft of the conveying motor 16 causes the main conveying wheel 12 to rotate, which in turn causes the conveying wheel 13 and the material conveying belt 11 to start rotating. The material on the material conveying belt 11 is transported accordingly. Since the material being conveyed is a flexible material and there is a certain distance between the material conveying belt 11 and the transfer space 7, a connecting plate 17 is designed to fill the distance between the two, making the material conveying smoother.
[0032] like Figure 3 As shown, the pushing assembly includes a pushing cylinder 18, and a pushing plate 19 is provided on the piston rod of the pushing cylinder 18. The pushing cylinder 18 is fixed to the transfer frame 2 by a pushing seat bolt.
[0033] The push cylinder 18 is the power source. By pushing the piston rod of the cylinder 18, the push plate 19 moves linearly. In conjunction with the transfer space 7 of the material transfer assembly, the material can be pushed onto the light controller. It should be noted that, in order to facilitate the pushing of the material, the size of the transfer groove 5 and the size of the push plate 19 facing the transfer groove 5 are the same as the diameter of the sealing ring.
[0034] like Figures 1 to 2 As shown, the rotating component has a rotating motor 20. The output shaft of the rotating motor 20 passes through the fixed frame 3 and is connected to a rotating disk 21. The rotating disk 21 has several storage slots 22 for placing the light controller. The rotating component is located near a transfer trough 5 on one side. The material pushed out by the push plate 19 can leave from the transfer trough 5 and enter the light controller on the storage slot 22. The processed light controller can be taken away by the operator or by a robot.
[0035] like Figure 1 and Figure 4 As shown, the two sides of the hopper 4 are connected to the mounting frame 15 by support rods 23, and a height limiting frame 24 is provided at the bottom of the hopper 4; the mounting frame 15 provides corresponding support for the hopper 4, and the height limiting frame 24 prevents the material leaving the hopper 4 from piling up, which facilitates subsequent processing.
[0036] Working principle: The operator first pours the material into the hopper 4 and places the light controller on the rotating assembly. The material in the hopper 4 falls onto the material conveying assembly, and the material conveyor belt 11 transports the material on its surface accordingly. During the material transport process, the height limit frame 24 of the hopper 4 limits the material, causing the material on the material conveyor belt 11 to stack. The material enters the corresponding transfer space 7 from the discharge end of the material conveyor belt 11 through the connecting plate 17. The piston rod of the transfer cylinder 9 drives the transfer plate 6 to descend accordingly through the transfer connecting plate 8. Every time it descends a certain height, the material conveyor belt 11... In one operation, materials are fed into the corresponding transfer space 7. During the descent of the transfer plate 6, when a transfer space 7 is aligned with two transfer slots 5, the push cylinder 18 on one side pushes the material on the transfer space 7 onto the light controller in the placement slot 22 via the push plate 19. The rotary motor 20 drives the rotating disk 21 to rotate, aligning the next placement slot 22 and light controller with the transfer slot 5. The processed light controller is then removed by the operator or a robotic arm. At this time, the material conveyor belt 11, transfer plate 6, push plate 19, and rotating disk 21 work simultaneously to complete the transportation, transfer, and processing of materials. To improve efficiency, slots are provided on the operating platform to facilitate the raising and lowering of the transfer plate 6. After all transfer spaces 7 have been used once, the transfer cylinder 9 resets, and the transportation and processing operations are performed again.
[0037] The specific embodiments are merely explanations of this utility model and are not intended to limit it. After reading this specification, those skilled in the art can make modifications to these embodiments without contributing any inventive step, but such modifications are protected by patent law as long as they fall within the scope of the claims of this utility model.
Claims
1. A feeding device for a sealing ring of a photoelectric controller socket, comprising a workbench (1), wherein a transfer frame (2) and a fixing frame (3) are provided on the surface of the workbench (1), wherein the transfer frame (2) is a hollow structure, characterized in that: The transfer frame (2) is provided with a material transfer component. A material conveying component is provided on one side of the material transfer component. A hopper (4) is provided above the material conveying component. Transfer slots (5) are provided on opposite sides of the transfer frame (2). A pushing component for pushing materials into the material transfer component and a rotating component for placing the light controller are respectively provided on one side of the two transfer slots (5). The rotating component is rotatably connected to the fixed frame (3).
2. The feeding device for the sealing ring of a light controller socket according to claim 1, characterized in that: The material transfer assembly includes several transfer plates (6), adjacent transfer plates (6) are connected to each other by four transfer columns, and a transfer space (7) is formed between adjacent transfer plates (6). A transfer connecting plate (8) is provided on one side of the transfer plate (6), and a transfer cylinder (9) is provided on the transfer connecting plate (8). The transfer cylinder (9) is fixed to the transfer frame (2) by transfer seat bolts. A lifting groove (10) for the transfer connecting plate (8) to rise and fall is provided on the transfer frame (2).
3. The feeding device for the sealing ring of a photoelectric controller socket according to claim 2, characterized in that: The material conveying assembly includes a material conveyor belt (11), on which a main conveyor wheel (12) and a driven conveyor wheel (13) are fitted. Both the main conveyor wheel (12) and the driven conveyor wheel (13) are provided with mounting plates (14). The two mounting plates (14) are connected to the transfer frame (2) through mounting brackets (15). A conveyor motor (16) is connected to the main conveyor wheel (12). The conveyor motor (16) is fixed to the transfer frame (2) by conveyor seat bolts. A connecting plate (17) is provided at the discharge end of the material conveyor belt (11).
4. The feeding device for the sealing ring of a photoelectric controller socket according to claim 3, characterized in that: The pushing assembly includes a pushing cylinder (18), and a pushing plate (19) is provided on the piston rod of the pushing cylinder (18). The pushing cylinder (18) is fixed to the transfer frame (2) by a pushing seat bolt.
5. The feeding device for the sealing ring of a photoelectric controller socket according to claim 4, characterized in that: The rotating assembly includes a rotating motor (20), the output shaft of which passes through the fixed frame (3) and is connected to a rotating disk (21). The rotating disk (21) has several storage slots (22) for placing the light controller.
6. The feeding device for the sealing ring of a photoelectric controller socket according to claim 3, characterized in that: The two sides of the hopper (4) are connected to the mounting frame (15) by support rods (23), and a height limiting frame (24) is provided at the bottom of the hopper (4).
Citation Information
Patent Citations
Sealing ring assembling mechanism
CN223492556U