Turnover labeling conveying device
By designing a flipping labeling conveyor device that combines conveying and flipping mechanisms, online flipping of materials is achieved, solving the problem of low efficiency in manual operation of packaging and labeling production lines and realizing fully automated and efficient material flipping operation.
Patent Information
- Application Number
- CN202423018298.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-09
AI Technical Summary
The existing packaging and labeling production lines rely mainly on manual labor for bagging, sealing, and labeling of materials, resulting in low production efficiency, inaccurate material handling, and potential chaos.
Design a flip labeling conveyor device that combines a conveying mechanism and a flipping mechanism. Through precise positioning by sensors, it realizes online flipping and reversing of materials. It also adopts a cross-shaped main rotating disk and a guide auxiliary disk to flip the materials 90° during the conveying process, ultimately achieving fully automated production line operation.
It improved production efficiency, ensured accurate material turning, realized fully automated operation of the production line, and enhanced the convenience and efficiency of back-end labeling and packaging.
Smart Images

Figure CN223494990U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of packaging and labeling production lines, and specifically relates to a flipping labeling conveyor device. Background Technology
[0002] In the field of modern industrial manufacturing, automated equipment has become an important means to improve production efficiency and reduce labor costs.
[0003] Currently, all operations in packaging and labeling production lines, from the initial material bagging and sealing to the subsequent packaging and labeling, are done manually, which greatly reduces production efficiency and increases production costs. At the same time, manual handling of materials can easily lead to disordered placement, making it less accurate than automated equipment.
[0004] Therefore, there is an urgent need to design a new type of automated equipment to solve the above problems. Utility Model Content
[0005] Purpose of the utility model: In order to overcome the above shortcomings, the purpose of this utility model is to provide a flipping label conveying device. Through the cooperation of the conveying mechanism and the flipping mechanism, the material is flipped and reversed online on the conveying line. At the same time, through the precise positioning operation of the sensor, the entire production line is fully automated, which provides convenience and efficiency for the labeling or packaging needs of downstream customers.
[0006] Technical Solution: To achieve the above objectives, this utility model provides a flipping label conveying device, including a placement frame, a conveying mechanism, and a flipping mechanism. The conveying mechanism is mounted on the placement frame. The flipping mechanism is mounted on the placement frame and cooperates with the conveying mechanism to complete the flipping conveying. The flipping mechanism includes a flipping rod, a flipping power assembly, a set of cross-shaped main rotating disks, a set of cross-shaped guide auxiliary disks, and four tensioning sleeves. Both ends of the flipping rod are mounted on the placement frame via bearing seats. The flipping power assembly is located on one side of the placement frame and connected to one end of the flipping rod. The cross-shaped main rotating disks and the cross-shaped guide auxiliary disks are both fixedly connected to the flipping rod via tensioning sleeves. The set of cross-shaped main rotating disks is symmetrically arranged in the middle of the flipping rod, and the set of cross-shaped guide auxiliary disks are respectively arranged on both sides of the set of cross-shaped main rotating disks. The tensioning sleeves ensure the reliability of the connection between the cross-shaped main rotating disks and the cross-shaped guide auxiliary disks and the flipping rod, ensuring that the flipping action can be smoothly executed.
[0007] Furthermore, the extended straight plates of the cross-shaped main rotating disk are at 90° to each other, and each extended straight plate is provided with a U-shaped opening. The U-shaped opening is used to support the material and perform the flipping action, ensuring the flipping action is realized.
[0008] Furthermore, the extended straight plates of the cross-shaped guide auxiliary disk are at 90° to each other, and guide plates are provided on the extended straight plates. The guide plates are used to correct and assist the material entry, ensuring that the material can enter the flipping mechanism as required.
[0009] Furthermore, the conveying mechanism includes a set of conveying rotating rods, three conveyor belts, three sets of rotating wheels, and a conveying power assembly. The conveying rotating rods are located at both ends of the placement frame. The conveyor belts are positioned between the set of conveying rotating rods via a set of rotating wheels. The conveying power assembly is located on the side of the placement frame and connected to one end of the conveying rotating rods. The three conveyor belts ensure the smooth transport of materials during the conveying process and, in conjunction with the conveying rotating rods, complete the material conveying process.
[0010] Furthermore, if the materials are not neatly arranged after entering the conveyor belt, they will be straightened and placed in place after hitting the guide plate.
[0011] Furthermore, the cross-shaped main rotating disk is located between each pair of conveyor belts, and the horizontal plane of the conveyor belts is flush with the U-shaped opening; the cross-shaped guide auxiliary disk is located on both sides of the three sets of conveyor belts, and the horizontal plane of the conveyor belts is flush with the guide plate. The conveyor belts avoid the rotating mechanism and ensure that the material can be transported smoothly; at the same time, the horizontal plane of the conveyor belts is flush with the U-shaped opening and the guide plate, ensuring that the material can be positioned and flipped during the conveying process.
[0012] Furthermore, the conveying power assembly includes a speed-regulating motor, a driving conveyor wheel, a driven conveyor wheel, and a conveying linkage chain. The speed-regulating motor is located below the conveying rotating rod and connected to the placement frame. The driving conveyor wheel is located at the output end of the speed-regulating motor. The driven conveyor wheel is connected to one end of the conveying rotating rod. The driving conveyor wheel and the driven conveyor wheel are linked by the conveying linkage chain. The speed-regulating motor provides power for the material conveying, and the material conveying action is completed in cooperation with the driving conveyor wheel, the driven conveyor wheel, and the conveying linkage chain.
[0013] Furthermore, the flipping power assembly includes a servo motor, a flipping drive wheel, a flipping driven wheel, and a flipping linkage chain; the servo motor is located in the lower part of the placement frame and is connected to the placement frame through a mounting plate; the flipping drive wheel is located at the output end of the servo motor; the flipping driven wheel is connected to one end of the flipping rod; the flipping drive wheel and the flipping driven wheel are linked by the flipping linkage chain.
[0014] Furthermore, due to the large weight of the flipping rod, the cross main rotating disk, the cross guide auxiliary disk, and the material, the servo motor ensures the stability and accuracy of its drive.
[0015] Furthermore, a positioning cross plate is provided on the outer side of the flip driven wheel; a sensor is provided on the side of the placement frame near the positioning cross plate; the positioning cross plate, in conjunction with the sensor, completes the vertical positioning and reset calibration of the flipping mechanism.
[0016] Furthermore, after the material contacts the bottom of the U-shaped opening, the main cross-shaped rotating disk rotates 90° under the drive of the servo motor, transporting the material to the top. The process stops when the sensor detects the positioning cross plate, ensuring the correct angle. Because the main cross-shaped rotating disk does not rotate 180° directly, but rather rotates 90° each time, the uppermost station acts as a buffer station, shortening the interval between each operation and increasing efficiency.
[0017] As can be seen from the above technical solution, this utility model has the following beneficial effects:
[0018] 1. This utility model provides a flipping label conveying device, which realizes the online flipping and reversing of materials on the conveying line through the cooperation of a conveying mechanism and a flipping mechanism;
[0019] 2. The present invention provides a flip labeling conveyor device. Because the cross-shaped main rotating disk does not flip 180° directly, but flips 90° each time, the interval between each operation is shortened, thus improving efficiency.
[0020] 3. This utility model provides a flip labeling and conveying device, which uses sensors for precise positioning and operation to achieve fully automated operation of the entire production line, providing convenience and efficiency for the labeling or packaging needs of downstream customers. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of a flip-labeling conveyor device according to the present invention;
[0022] Figure 2 This is a schematic diagram of the conveying mechanism and the flipping mechanism in the flipping label conveying device of this utility model;
[0023] Figure 3 This is a partially enlarged view of the flipping mechanism in the flipping labeling conveying device of this utility model;
[0024] Figure 4 This is a schematic diagram of the conveying power component and the flipping power component in the flipping labeling conveying device of this utility model;
[0025] Figure 5 This is a schematic diagram of the positioning cross plate and sensor in the flip labeling conveying device of this utility model;
[0026] In the picture:
[0027] 1-Placement rack;
[0028] 2-Conveying mechanism; 21-Conveying rotating rod; 22-Conveyor belt; 23-Roller; 24-Conveying power assembly;
[0029] 241-Speed-regulating motor; 242-Conveyor drive wheel; 243-Conveyor driven wheel; 244-Conveyor linkage chain;
[0030] 3-Tilting mechanism; 31-Tilting rod; 32-Tilting power assembly; 33-Cross main rotating disk; 34-Cross guide auxiliary disk; 35-Tightening sleeve;
[0031] 321-Servo motor; 322-Tilting drive wheel; 323-Tilting driven wheel; 324-Tilting linkage chain; 331-U-shaped opening; 341-Guide plate;
[0032] 4-Positioning cross plate;
[0033] 5-Sensors. Detailed Implementation
[0034] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model. Example
[0035] In this embodiment, as Figure 1 , Figure 2 and Figure 3 This utility model discloses a flip-labeling conveying device, including a placement frame 1, a conveying mechanism 2, and a flipping mechanism 3; the conveying mechanism 2 is disposed on the placement frame 1; the flipping mechanism 3 is disposed on the placement frame 1 and cooperates with the conveying mechanism 2 to complete the flipping conveying; the flipping mechanism 3 includes a flipping rod 31, a flipping power component 32, a set of cross main rotating disks 33, a set of cross guide auxiliary disks 34, and four tension sleeves 35; the two ends of the flipping rod 31 are disposed on the placement frame 1 through bearing seats; the flipping power component 32 is disposed on one side of the placement frame 1 and connected to one end of the flipping rod 31; the cross main rotating disks 33 and the cross guide auxiliary disks 34 are both fixedly connected to the flipping rod 31 through tension sleeves 35; the set of cross main rotating disks 33 are symmetrically disposed in the middle of the flipping rod 31, and the set of cross guide auxiliary disks 34 are respectively disposed on both sides of the set of cross main rotating disks 33.
[0036] Specifically, such as Figure 1 A protective frame can be added to the outside of the conveying mechanism 2 and the tilting mechanism 3 to prevent external factors from affecting the conveying and tilting actions.
[0037] In this embodiment, as Figure 3 The straight plates extending from the cross-shaped main rotating disk 33 are at 90° to each other, and the extended straight plates are provided with U-shaped openings 331.
[0038] Specifically, the size of the U-shaped opening 331 is determined by the size of the material on the production line.
[0039] Specifically, a rubber component can be added to the bottom of the U-shaped opening 331 to cushion and protect the material and prevent it from being damaged.
[0040] In this embodiment, as Figure 3 The straight plates extending from the cross-shaped guide auxiliary disk 34 are at 90° to each other, and guide plates 341 are provided on the extended straight plates.
[0041] Specifically, such as Figure 3 The guide plate 341 is sloped away from the center of the cross guide auxiliary disk 34 to ensure that the material is guided smoothly when it is not neat.
[0042] Specifically, the size of the guide plate 341 is determined by the size of the materials on the production line.
[0043] In this embodiment, as Figure 2 The conveying mechanism 2 includes a set of conveying rotating rods 21, three conveyor belts 22, three sets of rotating wheels 23, and a conveying power assembly 24. The conveying rotating rods 21 are located at both ends of the placement frame 1. The conveyor belts 22 are located between the set of conveying rotating rods 21 via a set of rotating wheels 23. The conveying power assembly 24 is located on the side of the placement frame 1 and is connected to one end of the conveying rotating rods 21.
[0044] Specifically, the conveyor rotating rod 21, the conveyor belt 22, the pulley 23 and the conveyor power assembly 24 work together to achieve belt drive.
[0045] In this embodiment, as Figure 2 and Figure 3 The cross-shaped main rotating disk 33 is located between each pair of transmission belts 22, and the horizontal plane of the transmission belts 22 is flush with the U-shaped opening 331; the cross-shaped guide auxiliary disk 34 is located on both sides of the three sets of transmission belts 22, and the horizontal plane of the transmission belts 22 is flush with the guide plate 341.
[0046] Specifically, the three conveyor belts 22 are arranged side by side and spaced apart, which does not obstruct the turning mechanism 3 while ensuring that the material can be transported smoothly.
[0047] In this embodiment, as Figure 2 and Figure 4 The conveying power assembly 24 includes a speed-regulating motor 241, a conveying drive wheel 242, a conveying driven wheel 243, and a conveying linkage chain 244. The speed-regulating motor 241 is located below the conveying rotating rod 21 and is connected to the placement frame 1. The conveying drive wheel 242 is located at the output end of the speed-regulating motor 241. The conveying driven wheel 243 is connected to one end of the conveying rotating rod 21. The conveying drive wheel 242 and the conveying driven wheel 243 are linked by the conveying linkage chain 244.
[0048] Specifically, such as Figure 4 Since the materials are relatively light, such as books, the radius of the conveying drive wheel 242 is set to be larger than the radius of the conveying driven wheel 243. The larger wheel drives the smaller wheel to achieve speed-up transmission, which makes the conveying driven wheel 243 drive the conveying rotating rod 21 to rotate at a relatively faster speed, thus improving the conveying efficiency.
[0049] In particular, protective shells can be installed on the outside of the conveying drive wheel 242, the conveying driven wheel 243, and the conveying linkage chain 244 to prevent dust and other contaminants from affecting the conveying process.
[0050] In this embodiment, as Figure 2 , Figure 4 and Figure 5 The flipping power assembly 32 includes a servo motor 321, a flipping drive wheel 322, a flipping driven wheel 323, and a flipping linkage chain 324. The servo motor 321 is located in the lower part of the placement frame 1 and is connected to the placement frame 1 through a mounting plate. The flipping drive wheel 322 is located at the output end of the servo motor 321. The flipping driven wheel 323 is connected to one end of the flipping rod 31. The flipping drive wheel 322 and the flipping driven wheel 323 are linked by the flipping linkage chain 324.
[0051] Specifically, due to the large weight of the tilting rod, the cross main rotating disk, the cross guide auxiliary disk, and the material, the radius of the tilting drive wheel 322 is set smaller than the radius of the tilting driven wheel 323. The smaller wheel drives the larger wheel to rotate, ensuring its stability and sufficient transmission power.
[0052] In particular, protective shells can be installed on the outside of the flipping drive wheel 322, the flipping driven wheel 323, and the flipping linkage chain 324 to prevent dust and other contaminants from affecting the flipping process.
[0053] In this embodiment, as Figure 5 The outer side of the flip driven wheel 323 is provided with a positioning cross plate 4; a sensor 5 is provided on the side of the placement frame 1 near the positioning cross plate 4; the positioning cross plate 4, in conjunction with the sensor 5, completes the vertical positioning and reset calibration of the flipping mechanism 3.
[0054] Specifically, the straight plates extending from the positioning cross plate 4 are at 90° to each other, and the straight plates extending from the positioning cross plate 4 cooperate with the sensor 5 to complete the vertical positioning and reset calibration of the flipping mechanism 3.
[0055] The working principle of the above embodiments is as follows:
[0056] This utility model discloses a flip labeling conveyor device. First, after the material enters the conveyor belt 22, if it is not neat, it will be straightened into place after hitting the guide plate 341 of the cross guide auxiliary disk 34.
[0057] Then, after the material comes into contact with the bottom of the U-shaped opening 331 on the cross main rotating disk 33, the servo motor 321 drives the cross main rotating disk 33 and the cross guide auxiliary disk 34 to rotate 90°, and the material is transported to the top; and the servo motor 321 stops driving after the sensor 5 detects the positioning cross plate 4 to ensure the correct angle.
[0058] Finally, after the second material arrives, the servo motor 321 drives the cross main rotating disk 33 and the cross guide auxiliary disk to continue rotating, rotating the second material to the top. Then, the servo motor 321 stops driving after the sensor 5 detects the positioning cross plate 4. At this time, the first material is rotated 180° and returns to the conveyor belt 22, and is then sent out by the conveyor belt 22, completing the front and back flipping of the material.
[0059] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements can be made without departing from the principle of the present utility model, and these improvements should also be considered within the protection scope of the present utility model.
Claims
1. A flip-labeling conveyor device, characterized in that: include: Placement rack (1) and conveying mechanism (2), wherein the conveying mechanism (2) is mounted on the placement rack (1); A flipping mechanism (3) is mounted on a placement rack (1) and works in conjunction with a conveying mechanism (2) to complete the flipping and conveying process. The flipping mechanism (3) includes a flipping rod (31), a flipping power assembly (32), a set of cross main rotating disks (33), a set of cross guide auxiliary disks (34), and four tensioning sleeves (35). The two ends of the flipping rod (31) are mounted on the placement frame (1) through bearing seats; the flipping power assembly (32) is located on one side of the placement frame (1) and connected to one end of the flipping rod (31); the cross main rotating disk (33) and the cross guide auxiliary disk (34) are both fixedly connected to the flipping rod (31) through the expansion sleeve (35); the set of cross main rotating disks (33) are symmetrically arranged in the middle of the flipping rod (31), and the set of cross guide auxiliary disks (34) are respectively arranged on both sides of the set of cross main rotating disks (33).
2. The flip-labeling conveyor according to claim 1, characterized in that: The straight plates extending from the cross-shaped main rotating disk (33) are at 90° to each other, and the extended straight plates are provided with U-shaped openings (331).
3. The flip-labeling conveyor according to claim 2, characterized in that: The straight plates extending from the cross-shaped guide auxiliary disk (34) are at 90° to each other, and guide plates (341) are provided on the extended straight plates.
4. The flip-labeling conveyor according to claim 3, characterized in that: The conveying mechanism (2) includes a set of conveying rotating rods (21), three conveyor belts (22), three sets of rotating wheels (23) and a conveying power assembly (24). The conveying rotating rod (21) is located at both ends of the placement frame (1); the conveyor belt (22) is located between the conveying rotating rods (21) via a set of rotating wheels (23); the conveying power assembly (24) is located on the side of the placement frame (1) and is connected to one end of the conveying rotating rod (21).
5. The flip-labeling conveyor according to claim 4, characterized in that: The cross-shaped main rotating disk (33) is located between each pair of the transmission belts (22), and the horizontal plane of the transmission belts (22) is flush with the U-shaped opening (331); the cross-shaped guide auxiliary disk (34) is located on both sides of the three sets of transmission belts (22), and the horizontal plane of the transmission belts (22) is flush with the guide plate (341).
6. The flip-labeling conveyor according to claim 4, characterized in that: The conveying power assembly (24) includes a speed-regulating motor (241), a conveying drive wheel (242), a conveying driven wheel (243), and a conveying linkage chain (244). The speed-regulating motor (241) is located below the conveying rotating rod (21) and is connected to the placement frame (1); the conveying drive wheel (242) is located at the output end of the speed-regulating motor (241); the conveying driven wheel (243) is connected to one end of the conveying rotating rod (21); the conveying drive wheel (242) and the conveying driven wheel (243) are connected by a conveying linkage chain (244).
7. The flip-labeling conveyor according to claim 1, characterized in that: The flipping power assembly (32) includes a servo motor (321), a flipping drive wheel (322), a flipping driven wheel (323), and a flipping linkage chain (324). The servo motor (321) is located in the lower part of the placement frame (1) and is connected to the placement frame (1) through a mounting plate; the flipping drive wheel (322) is located at the output end of the servo motor (321); the flipping driven wheel (323) is connected to one end of the flipping rod (31); the flipping drive wheel (322) and the flipping driven wheel (323) are connected by a flipping linkage chain (324).
8. The flip-labeling conveyor according to claim 7, characterized in that: The outer side of the flip driven wheel (323) is provided with a positioning cross plate (4); a sensor (5) is provided on the side of the placement frame (1) near the positioning cross plate (4); the positioning cross plate (4) cooperates with the sensor (5) to complete the vertical positioning and reset calibration of the flipping mechanism (3).