A punching device for neon signboard production and processing
By using a conveyor system driven by servo motors and stepper motors, along with a pulley and chain drive, the problems of convenient clamping and fixing and multi-position drilling in neon sign punching devices have been solved, enabling convenient assembly line punching and efficient mass production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QIANXINMEICHEN OPTOELECTRONIC TECHNOLOGY (HUZHOU) CO LTD
- Filing Date
- 2025-08-13
- Publication Date
- 2026-07-21
AI Technical Summary
Existing punching devices are not convenient for convenient assembly line punching of neon signs, and are difficult to clamp, fix and transport, which affects the range of multi-position punching and batch punching efficiency.
The conveyor system, driven by servo motors and stepper motors, combined with pulleys and chain drives, enables convenient clamping, fixing, and conveying of neon signs. The position of the punching machine can be adjusted via a sliding frame to achieve multi-position punching.
It enables convenient assembly line-style punching of neon signs, improves clamping and conveying efficiency, expands the punching range, and enhances the efficiency of batch punching.
Smart Images

Figure CN224527433U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of drilling device technology, specifically a drilling device for the production and processing of neon signs. Background Technology
[0002] Neon signs, as the name suggests, are upright neon advertising boards. They are typically composed of materials such as glass tubes, electrodes, and gas. A high-voltage electric field causes the gas to emit light, thus creating a rich and colorful visual effect. The main characteristics of upright neon signs include being eye-catching, vibrant, and dynamic, attracting attention at night and enhancing brand awareness and commercial value.
[0003] As disclosed in the authorization announcement number CN222430966U, a drilling device includes a drilling assembly, which includes a drilling motor and a drilling drill bit. The drilling motor is used to drive the drilling drill bit to rotate and drill holes. The drilling drill bit is provided with a waste discharge channel that runs through the drilling drill bit. Waste generated during the drilling process enters the waste discharge channel and is discharged through the waste discharge channel.
[0004] Although it has achieved the goal of having a waste discharge channel on the drilling bit, the waste generated during the drilling process enters the waste discharge channel and is then discharged from the waste discharge channel, solving the technical problem that traditional drilling devices do not have the function of waste removal and require the setting of another mechanism to process the waste.
[0005] However, this does not solve the problem that existing punching devices of this type are generally not conducive to convenient assembly line punching of neon signs, are not convenient for clamping and fixing neon signs, are not convenient for transporting neon signs, and are not convenient for punching multiple positions on neon signs, thus affecting the range of punching on neon signs and the efficiency of the punching device for batch punching of neon signs. Utility Model Content
[0006] The purpose of this utility model is to provide a punching device for neon sign production and processing, so as to solve the problems mentioned in the background art, such as the difficulty in convenient assembly line punching of neon signs, the difficulty in convenient clamping and fixing of neon signs, the difficulty in convenient transportation of neon signs, and the difficulty in convenient multi-position punching of neon signs, which affect the punching range of neon signs and the efficiency of batch punching of neon signs.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a punching device for neon sign production and processing, comprising a conveyor frame and an adjusting frame. An adjusting frame is provided outside the conveyor frame. A support frame is installed at the top of the conveyor frame below the adjusting frame. Clamping frames are symmetrically installed on the outer wall of the support frame. A sliding frame is slidably installed at the top of the adjusting frame. A punching machine is symmetrically arranged outside the adjusting frame below the sliding frame. A servo motor is installed on the outer wall of the conveyor frame. A rotating shaft is installed at the output end of the servo motor, extending to the outside of the conveyor frame and movably connected to it. A drive sprocket is symmetrically fitted on the surface of the rotating shaft, and a chain is fitted on the surface of each drive sprocket. A support shaft is movably installed on the outer wall of the conveyor frame away from the rotating shaft, and a driven sprocket is fitted on the surface of each support shaft, with the chain extending... Extending to the surface of the driven sprocket, support bars are symmetrically installed on the outer wall of the support frame on one side of the clamping frame. Multiple sets of conveyor buckles with equal spacing are installed on the outer wall of the chain, and the conveyor buckles are slidably connected to the support bars. A fixing frame is installed on the outer wall of the clamping frame. A stepper motor is installed at the top of the fixing frame. A gear is installed at the output end of the stepper motor. A drive frame is slidably installed on the outer wall of the clamping frame on one side of the gear, and the drive frame extends to the outside of the clamping frame. A clamping block is installed on the outer wall of the drive frame near the clamping frame. A rack is installed at the bottom end of the drive frame, and the rack meshes with the gear. Sliding rods are symmetrically installed on the outer wall of the drive frame on one side of the clamping block, and the sliding rods are slidably connected to the clamping frame and the clamping block. A sliding sleeve is slidably fitted on the surface of the sliding rod, and the sliding sleeve is connected to the clamping frame.
[0008] Preferably, a power motor is installed at the top of the adjustment frame on one side of the sliding frame, and a pulley assembly is provided at the output end of the power motor.
[0009] Preferably, a drive shaft is movably mounted on the top of the adjusting bracket on one side of the pulley assembly, and the pulley assembly extends to the surface of the drive shaft.
[0010] Preferably, a drive pulley is fitted onto the surface of the drive shaft on one side of the pulley assembly.
[0011] Preferably, a drive belt is fitted onto the surface of the drive pulley, and a support pulley is movably mounted on the top of the adjusting frame on the side away from the drive pulley, with the drive belt extending to the surface of the support pulley.
[0012] Preferably, slide rails are symmetrically installed on the top of the adjustment frame on one side of the drive belt, and sliders are slidably installed on the top of each slide rail, with the sliders connected to the slide frame.
[0013] Preferably, a connecting block is installed on the outer wall of the sliding frame on one side of the drive belt, and the connecting block is connected to the drive belt, and the sliding frame is connected to the punching machine.
[0014] Compared with the prior art, the beneficial effects of this utility model are: the punching device not only realizes convenient assembly line punching of neon signs, but also facilitates convenient clamping and fixing of neon signs, and convenient transportation of neon signs. In addition, it facilitates convenient multi-position punching of neon signs, increases the range of punching of neon signs, and improves the efficiency of batch punching of neon signs.
[0015] (1) The servo motor drives the rotating shaft to rotate under the movable support of the conveyor frame. The rotating shaft drives two sets of active sprockets to rotate. The active sprockets drive the chain to move. The chain drives the conveyor buckle to move. The support bar provides sliding support for the conveyor buckle to facilitate the conveyor buckle to transport the neon sign to the bottom of the two sets of punching machines. The stepper motor drives the gear to rotate. The gear drives the rack to move. The rack drives the drive frame to move. The clamping frame provides sliding support for the drive frame. The drive frame drives the sliding rod to move so that the sliding rod drives the two sets of clamping blocks to clamp the neon sign. The two sets of punching machines are turned on to punch the neon sign. After punching is completed, the stepper motor is turned on in the opposite direction and the servo motor is turned on again to transport the neon sign to the next process. This realizes convenient assembly line punching of neon signs by the punching device, which facilitates convenient clamping and fixing of neon signs, facilitates convenient transport of neon signs, and improves the efficiency of the punching device for batch punching of neon signs.
[0016] (2) The power motor drives the pulley assembly to rotate, the pulley assembly drives the transmission shaft to rotate, the adjustment frame provides movable support for the transmission shaft, the transmission shaft drives the drive pulley to rotate, the drive pulley drives the drive belt to move, the drive belt drives the sliding frame to move through the connecting block, and the sliding frame drives the punching machine to move to the appropriate position, thus realizing convenient multi-position punching of neon signs by the punching device, facilitating convenient height adjustment of the punching position of neon signs, increasing the range of punching neon signs, and improving the convenience of punching neon signs. Attached Figure Description
[0017] Figure 1 This is a front view structural diagram of the present utility model; Figure 2 This is a three-dimensional structural diagram of the present invention; Figure 3 This is a three-dimensional structural diagram of the sliding frame of this utility model; Figure 4 This is a three-dimensional structural diagram of the conveyor frame of this utility model; Figure 5 This is a three-dimensional structural diagram of the clamping frame of this utility model; Figure 6 This is a three-dimensional structural diagram of the punching machine of this utility model; Figure 7 This is a three-dimensional structural diagram of the drive belt of this utility model; Figure 8 This is a three-dimensional structural diagram of the conveyor buckle of this utility model; Figure 9 This is a three-dimensional structural diagram of the connecting block of this utility model.
[0018] In the diagram: 1. Conveyor frame; 2. Adjusting frame; 3. Support frame; 4. Clamping frame; 5. Sliding frame; 6. Drilling machine; 7. Servo motor; 8. Rotating shaft; 9. Drive sprocket; 10. Chain; 11. Support bar; 12. Support shaft; 13. Driven sprocket; 14. Conveyor buckle; 15. Fixing frame; 16. Stepper motor; 17. Gear; 18. Drive frame; 19. Rack; 20. Sliding rod; 21. Sliding sleeve; 22. Clamping block; 23. Power motor; 24. Pulley assembly; 25. Transmission shaft; 26. Drive pulley; 27. Drive belt; 28. Support pulley; 29. Slide rail; 30. Slider; 31. Connecting block. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0021] 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 indicated technical features. 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.
[0022] Example 1 Please see Figure 1-9 This utility model provides an embodiment of a punching device for neon sign production and processing, comprising a conveyor frame 1 and an adjusting frame 2. The adjusting frame 2 is disposed outside the conveyor frame 1. A support frame 3 is installed at the top of the conveyor frame 1 below the adjusting frame 2. Clamping frames 4 are symmetrically installed on the outer wall of the support frame 3. A sliding frame 5 is slidably installed at the top of the adjusting frame 2. A punching machine 6 is symmetrically disposed outside the adjusting frame 2 below the sliding frame 5. A servo motor 7 is installed on the outer wall of the conveyor frame 1. A rotating shaft 8 is installed at the output end of the servo motor 7, extending to the outside of the conveyor frame 1 and movably connected to the conveyor frame 1. A drive sprocket 9 is symmetrically fitted on the surface of the rotating shaft 8, and a chain 10 is fitted on the surface of each drive sprocket 9. A support shaft 12 is movably installed on the outer wall of the conveyor frame 1 away from the rotating shaft 8, and a driven sprocket 13 is fitted on the surface of each support shaft 12, with the chain 10 extending to the surface of the driven sprocket 13. The clamping frame 4 is located on one side... Support bars 11 are symmetrically installed on the outer wall of the support frame 3. Multiple sets of conveyor buckles 14 with equal spacing are installed on the outer wall of the chain 10, and the conveyor buckles 14 are slidably connected to the support bars 11. Fixing frames 15 are installed on the outer wall of the clamping frame 4. Stepper motors 16 are installed at the top of the fixing frames 15. Gears 17 are installed at the output end of the stepper motors 16. Drive frames 18 are slidably installed on the outer wall of the clamping frame 4 on one side of the gear 17, and the drive frames 18 extend to the clamping frame 4. Externally, clamping blocks 22 are installed on the outer wall of the drive frame 18 near the clamping frame 4. A rack 19 is installed at the bottom of the drive frame 18, and the rack 19 meshes with the gear 17. Sliding rods 20 are symmetrically installed on the outer wall of the drive frame 18 on the side of the clamping block 22. The sliding rods 20 are slidably connected to the clamping frame 4 and connected to the clamping block 22. Sliding sleeves 21 are slidably fitted on the surface of the sliding rods 20 and connected to the clamping frame 4. The neon sign is manually placed on the surface of multiple sets of conveyor buckles 14. The servo motor 7 is turned on. Supported by the conveyor frame 1, the servo motor 7 drives the rotating shaft 8 to rotate under the movable support of the conveyor frame 1. The rotating shaft 8 drives two sets of drive sprockets 9 to rotate, and the drive sprockets 9 drive the chain 10 to move. Under the movable support of the conveyor frame 1, the support shaft 12 supports the driven sprocket 13, and the driven sprocket 13 supports the chain 10. The chain 10 drives the conveyor buckle 14 to move. The support bar 11 provides sliding support to the conveyor buckle 14, facilitating the conveyor buckle 14 to transport the neon sign to below the two sets of punching machines 6. Two sets of stepper motors 16 are turned on. Supported by the fixed frame 15, the stepper motors 16 drive the gear 17 to rotate. The gear 17 and the gear... Under the meshing of rack 19, gear 17 drives rack 19 to move, rack 19 drives drive frame 18 to move, clamping frame 4 provides sliding support for drive frame 18, drive frame 18 drives sliding rod 20 to move, sliding sleeve 21 provides sliding support for sliding rod 20, so that sliding rod 20 can drive two sets of clamping blocks 22 to clamp the neon sign. Two sets of punching machines 6 are turned on to punch the neon sign. After punching is completed, stepper motor 16 is turned on in reverse, and servo motor 7 is turned on again to transport the neon sign to the next process. This realizes convenient assembly line punching of neon signs by the punching device, which facilitates convenient clamping and fixing of neon signs, facilitates convenient transport of neon signs, and improves the efficiency of the punching device for batch punching of neon signs. A power motor 23 is installed on the top of the adjusting frame 2 on one side of the sliding frame 5. A pulley assembly 24 is provided at the output end of the power motor 23. A drive shaft 25 is movably installed on the top of the adjusting frame 2 on one side of the pulley assembly 24, and the pulley assembly 24 extends to the surface of the drive shaft 25. A drive pulley 26 is fitted on the surface of the drive shaft 25 on one side of the pulley assembly 24. A drive belt 27 is fitted on the surface of the drive pulley 26. A support pulley 28 is movably installed on the top of the adjusting frame 2 on the side away from the drive pulley 26, and the drive belt 27 extends to the surface of the support pulley 28. Slide rails 29 are symmetrically installed on the top of the adjusting frame 2 on the side of the drive belt 27. A slider 30 is slidably installed on the top of each slide rail 29, and the slider 30 is connected to the sliding frame 5. A connecting block 31 is installed on the outer wall of the sliding frame 5 on the side of the drive belt 27, and the connecting block 31 is connected to the drive belt 27. The sliding frame 5 is connected to the punching machine 6. When the drilling position needs to be adjusted, the power motor 23 is turned on. Supported by the adjustment frame 2, the power motor 23 drives the pulley assembly 24 to rotate, which in turn drives the drive shaft 25 to rotate. The adjustment frame 2 provides movable support for the drive shaft 25, which in turn drives the drive pulley 26 to rotate. The drive pulley 26 drives the drive belt 27 to move. Supported by the adjustment frame 2, the support pulley 28 supports the drive belt 27. The drive belt 27 drives the sliding frame 5 to move via the connecting block 31. The slider 30 slides on the surface of the slide rail 29 to provide sliding support for the sliding frame 5. The sliding frame 5 drives the drilling machine 6 to move to the appropriate position, realizing convenient multi-position drilling of neon signs. It facilitates convenient height adjustment of the drilling position of neon signs, increases the drilling range of neon signs, and improves the convenience of drilling neon signs.
[0023] Work steps Servo motor 7 drives rotating shaft 8 to rotate under the movable support of conveyor frame 1. Rotating shaft 8 drives two sets of drive sprockets 9 to rotate. Drive sprockets 9 drive chain 10 to move. Chain 10 drives conveyor buckle 14 to move. Support bar 11 provides sliding support for conveyor buckle 14 to facilitate conveying neon sign to the bottom of two sets of punching machines 6. Stepper motor 16 drives gear 17 to rotate. Gear 17 drives rack 19 to move. Rack 19 drives drive frame 18 to move. Clamping frame 4 provides sliding support for drive frame 18. Drive frame 18 drives sliding rod 20 to move to facilitate sliding rod 20 driving two sets of clamping blocks 22 to clamp neon sign and open the two sets of punching machines 6. The punching machine 6 punches holes in the neon sign. After punching is completed, the stepper motor 16 is turned on in reverse, and the servo motor 7 is turned on to transport the neon sign to the next process. The power motor 23 drives the pulley assembly 24 to rotate, the pulley assembly 24 drives the transmission shaft 25 to rotate, the transmission shaft 25 drives the drive pulley 26 to rotate, the drive pulley 26 drives the drive belt 27 to move, the support pulley 28 supports the drive belt 27, the drive belt 27 drives the sliding frame 5 to move through the connecting block 31, the slider 30 slides on the surface of the slide rail 29 to slide and support the sliding frame 5, and the sliding frame 5 drives the punching machine 6 to move to the appropriate position to complete the use of the punching device.
[0024] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A punching device for manufacturing neon signs, characterized in that: The system includes a conveyor frame and an adjusting frame. An adjusting frame is mounted on the outside of the conveyor frame. A support frame is mounted on the top of the conveyor frame below the adjusting frame. Clamping frames are symmetrically mounted on the outer wall of the support frame. A sliding frame is slidably mounted on the top of the adjusting frame. A punching machine is symmetrically arranged on the outside of the adjusting frame below the sliding frame. A servo motor is mounted on the outer wall of the conveyor frame. A rotating shaft is mounted on the output end of the servo motor and extends to the outside of the conveyor frame, being movably connected to it. A drive sprocket is symmetrically fitted on the surface of the rotating shaft, and a chain is fitted on the surface of each drive sprocket. A support shaft is movably mounted on the outer wall of the conveyor frame away from the rotating shaft. A driven sprocket is fitted on the surface of each support shaft, and a chain extends to the surface of the driven sprocket. The clamping frame has a support on one side... Support bars are symmetrically installed on the outer wall of the support frame. Multiple sets of conveyor buckles with equal spacing are installed on the outer wall of the chain, and the conveyor buckles are slidably connected to the support bars. Fixing frames are installed on the outer wall of the clamping frame. Stepper motors are installed at the top of the fixing frames. Gears are installed at the output ends of the stepper motors. A drive frame is slidably installed on the outer wall of the clamping frame on one side of the gear, and the drive frame extends to the outside of the clamping frame. A clamping block is installed on the outer wall of the drive frame near the clamping frame. A rack is installed at the bottom of the drive frame, and the rack meshes with the gear. Sliding rods are symmetrically installed on the outer wall of the drive frame on one side of the clamping block, and the sliding rods are slidably connected to the clamping frame and the clamping block. Sliding sleeves are slidably fitted on the surface of the sliding rods, and the sliding sleeves are connected to the clamping frame.
2. The punching device for neon sign production and processing according to claim 1, characterized in that: A power motor is installed at the top of the adjustment frame on one side of the sliding frame, and a pulley assembly is provided at the output end of the power motor.
3. The punching device for neon sign production and processing according to claim 2, characterized in that: A drive shaft is movably mounted on the top of the adjusting bracket on one side of the pulley assembly, and the pulley assembly extends to the surface of the drive shaft.
4. The punching device for neon sign production and processing according to claim 2, characterized in that: A drive pulley is fitted onto the surface of the drive shaft on one side of the pulley assembly.
5. A punching device for neon sign production and processing according to claim 4, characterized in that: The surface of the drive pulley is fitted with a drive belt, and a support pulley is movably mounted on the top of the adjusting frame on the side away from the drive pulley, with the drive belt extending to the surface of the support pulley.
6. A punching device for neon sign production and processing according to claim 5, characterized in that: The top of the adjustment frame on one side of the drive belt is symmetrically equipped with slide rails, and the top of each slide rail is slidably equipped with a slider, which is connected to the slide frame.
7. A punching device for neon sign production and processing according to claim 5, characterized in that: A connecting block is installed on the outer wall of the sliding frame on one side of the drive belt, and the connecting block is connected to the drive belt. The sliding frame is connected to the punching machine.