Thermal transfer ribbon recoverer bonding mechanism
By designing a ribbon recycler bonding mechanism and utilizing the coordinated work of components such as the ribbon transfer frame, ribbon rotation mechanism, and recycler rotation mechanism, the problems of low ribbon assembly efficiency and unstable quality were solved, achieving automated production and high-quality products.
Patent Information
- Application Number
- CN202520061131.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-10
AI Technical Summary
The existing carbon ribbon assembly industry suffers from low efficiency and unstable product quality due to manual assembly.
Design a ribbon recycler bonding mechanism to achieve automatic bonding between the ribbon and the recycler through the coordinated work of a conveyor frame, a ribbon rotation mechanism, a recycler rotation mechanism, a baffle mechanism, and a gripper assembly.
It improved the efficiency of carbon ribbon assembly, enhanced product quality, and enabled unmanned operation.
Smart Images

Figure CN223672127U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to carbon tape automation assembly field especially relates to a carbon tape recycling device bonding mechanism. BACKGROUND
[0002] Carbon tape, also known as thermal transfer tape, is a consumable specifically designed for thermal transfer printers. Its main function is to transfer toner from the tape to the medium under the action of heat, thereby producing a durable and clear printing effect. Carbon tape is widely used in various fields such as labels, barcodes, clothing labels, and electronic product labels.
[0003] The carbon tape assembly industry has long used manual assembly. Manual assembly can easily wrinkle the carbon tape, resulting in poor product quality and low assembly efficiency. Therefore, it is necessary to develop a carbon tape recycling device bonding mechanism with high automation. Not only can it improve production efficiency, but also can improve product quality. UTILITY MODEL CONTENT
[0004] To solve the problems in the prior art, the utility model provides a carbon tape recycling device bonding mechanism. The purpose is to realize the automatic bonding of carbon tape and recycling device, improve production efficiency and product quality.
[0005] To achieve the above purpose, the utility model adopts the following technical scheme: a carbon tape recycling device bonding mechanism, comprising a tape rotating frame, a processing platform is arranged at the upper end of the tape rotating frame, a carbon tape rotating mechanism and a recycling device rotating mechanism are arranged on the processing platform, a guide rail one parallel to the connecting line of the carbon tape rotating mechanism and the recycling device rotating mechanism is fixedly installed on the processing platform, a baffle mechanism is slidingly matched with the guide rail one, a jaw assembly is further arranged on the front side of the processing platform, and the jaw assembly is slidingly matched with the tape rotating frame through a guide rail two.
[0006] Based on the above, when the carbon tape is rotating, the carbon tape and the recycling device are placed on the carbon tape rotating mechanism and the recycling device rotating mechanism respectively, then the baffle mechanism moves to the appropriate position and blocks the top of the carbon tape and the recycling device to prevent them from being thrown out during rotation. At the same time, the jaw assembly moves to the carbon tape rotating mechanism, the carbon tape rotates slowly first, when the fiber optic sensor on the jaw assembly senses the eartip of the carbon tape, the jaw assembly clamps the eartip and pulls it towards the recycling device rotating mechanism, then the jaw assembly pulls the eartip of the carbon tape to the recycling device rotating mechanism and sticks it to the recycling device, and then the jaw assembly retracts, the recycling device rotating mechanism rotates to fix the carbon tape, and the action of bonding the carbon tape and the recycling device is completed. Through the cooperation between multiple mechanisms, the bonding of the carbon tape and the recycling device is automatically completed, the assembly efficiency is improved, the product quality is guaranteed, and unmanned operation is realized.
[0007] Further, the baffle mechanism comprises a pushing cylinder one, a connecting plate, a limiting carrier plate and an upper baffle, the pushing cylinder is fixedly installed on the rear end surface of the machining platform, the limiting carrier plate is in sliding fit with the guide rail one through a sliding block one, the output shaft end of the pushing cylinder is fixedly connected with the limiting carrier plate through the connecting plate, and the upper baffle is installed on the limiting carrier plate.
[0008] Based on the above, the baffle mechanism blocks the upper part of the carbon tape and the recycler through the upper baffle, so as to prevent the carbon tape and the recycler from being thrown out during rotation.
[0009] Further, the clamping jaw assembly comprises a clamping plate one, a clamping plate two, a clamping cylinder one, a clamping cylinder two, a pushing cylinder two and a moving carrier plate, the moving carrier plate is in sliding fit with the guide rail two through a sliding block two, the pushing cylinder is fixedly installed on the upper surface of the moving carrier plate, the upper end of the pushing cylinder is further in sliding fit with a cylinder mounting plate, the cylinder mounting plate is fixedly connected with the output shaft end of the pushing cylinder, the clamping cylinder one and the clamping cylinder two are fixedly installed on the upper surface of the cylinder mounting plate, the clamping plate one and the clamping plate two are fixedly fitted with the output ends of the clamping cylinder one and the clamping cylinder two respectively, and one end of the moving carrier plate is further connected with a driving device.
[0010] Based on the above, the clamping cylinder one and the clamping cylinder two respectively push the clamping plate one and the clamping plate two to clamp the ejection film of the carbon tape, the driving device drives the moving carrier plate to move on the guide rail two, so as to realize the movement of the ejection film of the carbon tape to the recycler rotating mechanism to engage with the recycler.
[0011] Further, the carbon tape rotating mechanism comprises a carbon tape rotating disc and a rotating motor one, the carbon tape rotating disc is fixedly fitted with the output shaft of the rotating motor one, and the recycler rotating mechanism comprises a recycler rotating disc and a rotating motor two, the recycler rotating disc is fixedly fitted with the output shaft of the rotating motor two.
[0012] Based on the above, the rotating motor one and the rotating motor two respectively drive the carbon tape rotating disc and the recycler rotating disc to rotate.
[0013] Further, the driving device comprises a clamping jaw moving motor, a synchronous wheel one, a synchronous wheel two and a driving connecting plate, the clamping jaw moving motor is fixedly installed on the rotating belt rack and close to one end of the guide rail two, the synchronous wheel one is fixedly matched with the rotating shaft of the clamping jaw moving motor, the synchronous wheel two is fixedly installed on the rotating belt rack and close to the other end of the guide rail two, the synchronous belt is arranged between the synchronous wheel one and the synchronous wheel two, the driving clamping plate matched with the transmission gear is arranged on the driving connecting plate, the transmission gear meshed with the synchronous belt is arranged on the driving clamping plate, and the upper end of the driving connecting plate is fixedly connected with the moving load plate.
[0014] Based on the above, the driving clamping plate is meshed with the synchronous belt through the transmission gear, and the clamping jaw moving motor rotates to drive the driving clamping plate to move between the two ends of the guide rail two.
[0015] Further, the limiting block is arranged on the limiting load plate, and the arc surface structure is arranged on the limiting block, so that the arc surface structure guides and combs the carbon belt when the carbon belt rotating mechanism rotates.
[0016] Based on the above, the arc surface structure guides and combs the carbon belt, so that the carbon belt is prevented from being scattered in the winding process and the quality of the final product is affected.
[0017] In order to make the above features of the utility model and the purposes to be achieved more clearly, the utility model will be further described in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the structural schematic diagram of the utility model;
[0019] Figure 2 It is the structural schematic diagram of the clamping jaw assembly;
[0020] Figure 3 It is the side view of the clamping jaw assembly;
[0021] Figure 4 It is the structural schematic diagram of the carbon belt rotating mechanism and the carbon belt rotating mechanism;
[0022] Figure 5 It is the structural schematic diagram of the baffle mechanism;
[0023] Figure 6 It is the top view of the baffle mechanism.
[0024] Explanation of reference numerals: 1 rotating belt frame; 2 processing platform; 3 carbon tape rotating mechanism; 4 recycling device rotating mechanism; 5 guide rail one; 6 baffle mechanism; 7 clamping jaw assembly; 8 guide rail two; 9 push cylinder one; 10 connecting plate; 11 limit carrier plate; 12 upper baffle; 13 sliding block one; 14 clamping plate one; 15 clamping plate two; 16 clamping cylinder one; 17 clamping cylinder two; 18 push cylinder two; 19 moving carrier plate; 20 sliding block two; 21 cylinder mounting plate; 22 driving device; 23 carbon tape rotating disc; 24 rotating motor one; 25 recycling device rotating disc; 26 rotating motor two; 27 clamping jaw moving motor; 28 synchronous wheel one; 29 synchronous wheel two; 30 driving connecting plate; 31 synchronous belt; 32 driving clamping plate; 33 transmission teeth; 34 limit block; 35 cambered surface structure. DETAILED DESCRIPTION
[0025] Figures 1 to 5 As shown in the figure, a carbon tape recycling device bonding mechanism comprises a rotating belt frame 1, the upper end of the rotating belt frame 1 is provided with a processing platform 2, the processing platform 2 is provided with a carbon tape rotating mechanism 3 and a recycling device rotating mechanism 4, the processing platform 2 is further fixedly installed with a guide rail one 5 parallel to the connecting line of the carbon tape rotating mechanism 3 and the recycling device rotating mechanism 4, the guide rail one 5 is slidingly fitted with a baffle mechanism 6, the front side of the processing platform 2 is further provided with a clamping jaw assembly 7, the clamping jaw assembly 7 is slidingly fitted with the rotating belt frame 1 through a guide rail two 8.
[0026] Preferably, the baffle mechanism 6 comprises a push cylinder one 9, a connecting plate 10, a limit carrier plate 11 and an upper baffle 12, the push cylinder is fixedly installed on the rear end face of the processing platform 2, the limit carrier plate 11 is slidingly fitted with the guide rail one 5 through a sliding block one 13, the output shaft end of the push cylinder is fixedly connected with the limit carrier plate 11 through the connecting plate 10, and the upper baffle 12 is installed on the limit carrier plate 11.
[0027] Preferably, the clamping jaw assembly 7 comprises a clamping plate one 14, a clamping plate two 15, a clamping cylinder one 16, a clamping cylinder two 17, a push cylinder two 18 and a moving carrier plate 19, the moving carrier plate 19 is slidingly fitted with the guide rail two 8 through a sliding block two 20, the push cylinder is fixedly installed on the upper surface of the moving carrier plate 19, the upper end of the push cylinder is further slidingly fitted with a cylinder mounting plate 21, the cylinder mounting plate 21 is fixedly connected with the output shaft end of the push cylinder, the clamping cylinder one 16 and the clamping cylinder two 17 are fixedly installed on the upper surface of the cylinder mounting plate 21, the clamping plate one 14 and the clamping plate two 15 are respectively fixedly fitted with the output ends of the clamping cylinder one 16 and the clamping cylinder two 17, and one end of the moving carrier plate 19 is further connected with a driving device 22.
[0028] Preferably, the carbon tape rotating mechanism 3 comprises a carbon tape rotating disc 23 and a rotating motor 24, the carbon tape rotating disc 23 is fixedly matched with the output shaft of the rotating motor 24, the collector rotating mechanism 4 comprises a collector rotating disc 25 and a rotating motor 26, the collector rotating disc 25 is fixedly matched with the output shaft of the rotating motor 26.
[0029] Preferably, the driving device 22 comprises a jaw moving motor 27, a synchronous pulley 28, a synchronous pulley 29 and a driving connecting plate 30, the jaw moving motor 27 is fixedly installed on the rotating tape rack 1 and close to one end of the guide rail 8, the synchronous pulley 28 is fixedly matched with the rotating shaft of the jaw moving motor 27, the synchronous pulley 29 is fixedly installed on the rotating tape rack 1 and close to the other end of the guide rail 8, the synchronous pulley 28 and the synchronous pulley 29 are provided with a synchronous belt 31, the driving connecting plate 30 is provided with a driving jaw plate 32 matched with the transmission teeth 33, the driving jaw plate 32 is provided with the transmission teeth 33 engaged with the synchronous belt 31, the upper end of the driving connecting plate 30 is fixedly connected with the moving load plate 19.
[0030] Preferably, the limiting load plate 11 is further provided with a limiting block 34, the limiting block 34 is provided with an arc surface structure 35, when the collector rotating mechanism 4 rotates the tape, the arc surface structure 35 guides and combs the carbon tape.
[0031] The specific implementation of the embodiment is that: when rotating the tape, the carbon tape and the collector are respectively placed on the carbon tape rotating disc 23 and the collector rotating disc 25, then the baffle mechanism 6 is moved to a suitable position, the upper baffle 12 is blocked above the carbon tape and the collector to prevent the carbon tape and the collector from being thrown out during rotation, and the arc surface structure 35 guides and combs the carbon tape to prevent the carbon tape from being scattered during winding. At the same time, the jaw assembly 7 is moved to the carbon tape rotating mechanism 3, the carbon tape is first slowly rotated, when the optical fiber sensor on the jaw assembly 7 senses the eartip of the carbon tape, the jaw plate 14 and the jaw plate 15 are close to each other, the eartip of the carbon tape is clamped and pulled to the collector rotating mechanism 4, then the driving device 22 is started, the jaw assembly 7 pulls the eartip of the carbon tape to the collector rotating mechanism 4, and the eartip of the carbon tape is adhered to the collector, finally the jaw assembly 7 is reset, the collector rotating mechanism 4 rotates to wind and fix the carbon tape, and the action of adhering the carbon tape to the collector is completed.
[0032] The above description is only the optimal solution embodiment of the present application, and is not used to limit the present application, and various modifications or replacements of the present application made by those skilled in the art without departing from the essence and protection scope of the present application should be within the protection scope of the present application.
Claims
1. A carbon tape recycler bonding mechanism characterized by: The application relates to a carbon tape rotating machine frame, which comprises a rotating machine frame (1) provided with a processing platform (2) at the upper end, a carbon tape rotating mechanism (3) and a recycling device rotating mechanism (4) arranged on the processing platform (2), a guide rail I (5) parallel to the connecting lines of the carbon tape rotating mechanism (3) and the recycling device rotating mechanism (4) fixedly arranged on the processing platform (2), a baffle mechanism (6) slidingly matched with the guide rail I (5), and a clamping jaw assembly (7) arranged on the front side of the processing platform (2) and slidingly matched with the rotating machine frame (1) through a guide rail II (8).
2. A carbon tape recycler bonding mechanism according to claim 1, wherein: The baffle mechanism (6) comprises a pushing cylinder I (9), a connecting plate (10), a limiting carrier plate (11) and an upper baffle (12), the pushing cylinder I is fixedly arranged on the rear end face of the processing platform (2), the limiting carrier plate (11) is slidingly matched with the guide rail I (5) through a sliding block I (13), the output shaft tail of the pushing cylinder is fixedly connected with the limiting carrier plate (11) through the connecting plate (10), and the upper baffle (12) is arranged on the limiting carrier plate (11).
3. A carbon tape recycler bonding mechanism according to claim 1 wherein: The clamping jaw assembly (7) comprises a clamping plate I (14), a clamping plate II (15), a clamping cylinder I (16), a clamping cylinder II (17), a pushing cylinder II (18) and a moving carrier plate (19), the moving carrier plate (19) is slidingly matched with the guide rail II (8) through a sliding block II (20), the pushing cylinder is fixedly arranged on the upper surface of the moving carrier plate (19), the upper end of the pushing cylinder is also slidingly matched with a cylinder mounting plate (21), the cylinder mounting plate (21) is fixedly connected with the output shaft tail of the pushing cylinder, the clamping cylinder I (16) and the clamping cylinder II (17) are fixedly arranged on the upper surface of the cylinder mounting plate (21), the clamping plate I (14) and the clamping plate II (15) are fixedly matched with the output ends of the clamping cylinder I (16) and the clamping cylinder II (17) respectively, and one end of the moving carrier plate (19) is also matched with a driving device (22).
4. The carbon tape recycler bonding mechanism of claim 1 wherein: The carbon tape rotating mechanism (3) comprises a carbon tape rotating disc (23) and a rotating motor I (24), the carbon tape rotating disc (23) is fixedly matched with the output shaft of the rotating motor I (24), the recycling device rotating mechanism (4) comprises a recycling device rotating disc (25) and a rotating motor II (26), and the recycling device rotating disc (25) is fixedly matched with the output shaft of the rotating motor II (26).
5. A carbon tape recycler bonding mechanism according to claim 3, wherein: The driving device (22) includes a clamp jaw moving motor (27), a synchronous wheel one (28), a synchronous wheel two (29) and a driving connecting plate (30), the clamp jaw moving motor (27) is fixedly installed on the rotating belt rack (1) and close to one end of the guide rail two (8), the synchronous wheel one (28) is fixedly matched with the rotating shaft of the clamp jaw moving motor (27), the synchronous wheel two (29) is fixedly installed on the rotating belt rack (1) and close to the other end of the guide rail two (8), the synchronous belt (31) is arranged between the synchronous wheel one (28) and the synchronous wheel two (29), the driving connecting plate (30) is provided with the driving clamp plate (32) matched with the transmission tooth (33), the driving clamp plate (32) is provided with the transmission tooth (33) engaged with the synchronous belt (31), and the upper end of the driving connecting plate (30) is fixedly connected with the moving load plate (19).
6. A carbon tape recycler bonding mechanism according to claim 2, wherein: The limiting block (34) is further arranged on the limiting load plate (11), the arc surface structure (35) is arranged on the limiting block (34), and when the recycling device rotating mechanism (4) rotates the belt, the arc surface structure (35) guides and combs the carbon belt.