226-series automatic assembly operation production line with cotton pasting device
By designing a 226 series of automated assembly operation production line with cotton sticking devices in the toner box assembly production line, the clamping, pressing and adjustment components of the clamping robot clamping robot are used to accurately clamp and paste the flocking cotton, which solves the problems of inaccurate, easy to offset and unstable paste in the prior art, and improves the efficiency and quality of the production line.
Patent Information
- Application Number
- CN202422331971.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-09-24
AI Technical Summary
The existing toner box assembly production lines are not accurate, easy to offset, and unstable pasting.
A 226 series automated assembly operation production line with cotton sticking device is designed, using clamping robots, including clamping parts, pressing parts and adjustment parts. Through the synergy of these parts, precise flocking cotton clamping and pasting is achieved.
Through integrated design, the accuracy and stability of flocked cotton pasting is improved, ensuring the correct position of the pasting, and solving the problems of inaccurate, easy to offset and unstable pasting of flocked cotton.
Smart Images

Figure CN223049171U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of toner cartridge assembly, in particular to an automated assembly production line of the 226 series with a cotton pasting device. Background Art
[0002] With the development of office automation, the popularity rate of printers has increased day by day, and the demand for consumables has also increased accordingly. Among them, as one of the important consumables of printers, the production quality and efficiency of toner cartridge directly affect the performance of the final product and the user experience. In the production process of toner cartridge, the pasting of flocked cotton is a key process, which is used to absorb and stabilize toner to ensure printing quality.
[0003] At present, the production of many toner cartridges still relies on manual assembly, especially in the link of pasting flocked cotton. This method not only has high labor intensity and low efficiency, but also due to the uncertainty of manual operation, it is easy to cause problems such as inaccurate pasting position and insecure pasting of flocked cotton, thus affecting the overall quality of toner cartridge. In addition, manual operation may also cause pollution to the production environment and increase the workload of subsequent cleaning.
[0004] Although there are already some automated toner cartridge assembly equipments on the market, there is still room for improvement in aspects such as the pasting accuracy and operation flexibility of flocked cotton. For example, when some equipments clamp and paste flocked cotton, due to the lack of effective avoidance and pressing mechanisms, it is easy to cause dislocation or insecure pasting of flocked cotton.
[0005] Therefore, it is imperative to redesign an automated assembly production line of the 226 series with a cotton pasting device. Summary of the Utility Model
[0006] Aiming at the defects of the above-mentioned prior art, the utility model provides an automated assembly production line of the 226 series with a cotton pasting device, aiming to solve the problems of inaccurate pasting, easy deviation and insecure pasting of flocked cotton in the toner cartridge assembly production line in the prior art.
[0007] To achieve the above object, the technical solution adopted by the present utility model is as follows: A 226 series automated assembly production line with a cotton pasting device, including a cotton pasting device. The cotton pasting device includes a flocked cotton pasting mechanism. The flocked cotton pasting mechanism includes a clamping manipulator. The clamping manipulator includes a mounting frame body and two jaw components symmetrically arranged on the mounting frame body. The jaw component is composed of a cotton clamping part, a cotton pressing part, and an adjustment part. The cotton clamping part and the adjustment part are both arranged on the mounting frame body. The cotton pressing part is arranged at the output end of the adjustment part. When the cotton clamping part performs a clamping operation on the flocked cotton, the adjustment part drives the cotton pressing part to move to a position away from the cotton clamping part; when the cotton clamping part pastes the flocked cotton onto the powder bin, the adjustment part drives the cotton pressing part to move to one side close to the cotton clamping part to press the flocked cotton tightly to ensure its firm pasting.
[0008] Based on the above, the beneficial effect of a 226 series automated assembly production line with a cotton pasting device is to solve the problems of inaccurate flocked cotton pasting, easy deviation, and insecure pasting in the toner cartridge assembly production line in the prior art; specifically manifested as follows: The present utility model integrates the jaw component through the cotton clamping part, the cotton pressing part, and the adjustment part. When the cotton clamping part clamps the flocked cotton on the flocked cotton belt, the adjustment part drives the cotton pressing part away from the cotton clamping part, so that the cotton pressing part presses on the flocked cotton belt to prevent the flocked cotton belt from being pulled up when clamping the flocked cotton on the flocked cotton belt. When the cotton clamping part pastes the flocked cotton into the powder bin, the adjustment part drives the cotton pressing part close to the cotton clamping part, so that the cotton pressing part presses on the flocked cotton to complete accurate pasting, thereby solving the problems of inaccurate flocked cotton pasting, easy deviation, and insecure pasting.
[0009] The beneficial effect of the cotton pasting device is to improve the accuracy and stability of flocked cotton pasting through integrated design; the beneficial effect of the clamping manipulator is to provide accurate flocked cotton clamping and placing functions to ensure the accurate pasting position; the beneficial effect of the mounting frame body is to mount the jaw component; the beneficial effect of the cotton clamping part is to be responsible for accurately clamping the flocked cotton; the beneficial effect of the cotton pressing part is: when the cotton clamping part clamps the flocked cotton, it presses on the flocked cotton belt to prevent the flocked cotton belt from being pulled up when clamping the flocked cotton on the flocked cotton belt, and applies pressure during the pasting of the flocked cotton to ensure its firm attachment to the powder bin; the beneficial effect of the adjustment part is to switch the different functions of the cotton pressing part when clamping and pasting the flocked cotton by adjusting the position of the cotton pressing part.
[0010] Further, the cotton sandwiching component includes a cotton sandwiching cylinder, a static half-sandwich, and a dynamic half-sandwich. The static half-sandwich and the dynamic half-sandwich are both arranged at the output end of the cotton sandwiching cylinder, and the static half-sandwich is located on the side close to the cotton pressing component. The cotton sandwiching cylinder drives the dynamic half-sandwich to displace towards the static half-sandwich to clamp the flocked cotton; the adjustment component includes an adjustment cylinder and an adjustment connecting plate arranged at the output end of the adjustment cylinder; the cotton pressing component includes a cotton pressing cylinder and a cotton pressing block arranged at the output end of the cotton pressing cylinder, and the cotton pressing cylinder is arranged on the side of the adjustment connecting plate close to the dynamic half-sandwich.
[0011] Based on the above, the beneficial effect of the cotton sandwiching cylinder is to drive the dynamic half-sandwich to act, so that it and the static half-sandwich jointly clamp the flocked cotton; the beneficial effect of the static half-sandwich is to assist the dynamic half-sandwich to complete the clamping task; the beneficial effect of the dynamic half-sandwich is to work together with the static half-sandwich to effectively clamp the flocked cotton; the beneficial effect of the adjustment cylinder is to drive the cotton pressing component to switch between different functions of clamping the flocked cotton and pasting the flocked cotton; the beneficial effect of the adjustment connecting plate is to install the cotton pressing cylinder; the beneficial effect of the cotton pressing cylinder is to drive the cotton pressing block to press down.
[0012] Further, the clamping manipulator further includes a longitudinal driving component, the mounting frame body is arranged at the output end of the longitudinal driving component, the flocked cotton pasting mechanism further includes a transverse driving component and a vertical driving component arranged at the output end of the transverse driving component, and the longitudinal driving component is arranged at the output end of the vertical driving component.
[0013] Based on the above, the beneficial effect of the longitudinal driving component is to drive the cotton sandwiching component to sequentially clamp the flocked cotton from left to right on the flocked cotton belt and adjust the position of pasting the flocked cotton in the powder bin in the left-right direction; the beneficial effect of the transverse driving component is to drive the cotton sandwiching component to sequentially clamp the flocked cotton from front to back on the flocked cotton belt and drive the cotton sandwiching component to move above the powder bin; the beneficial effect of the vertical driving component is to achieve precise movement of the cotton sandwiching component in the up-down direction.
[0014] Further, the production line further includes a powder bin transmission device and a frame. The frame is disposed on the powder bin transmission device. The lateral drive assembly includes a lateral drive cylinder, a lateral drive plate, and two lateral guide rails. The two lateral guide rails are respectively disposed on both sides of the upper end of the frame. The lateral drive plate is disposed on the output end of the drive cylinder and is slidably connected to the two lateral guide rails. The vertical drive assembly is disposed on the lateral drive plate. The cotton pasting device further includes two flocked cotton roll mechanisms and two flattening mechanisms. The two flocked cotton roll mechanisms are both disposed on the upper end of the frame and are respectively located on both sides of the two lateral guide rails. The two flattening mechanisms are disposed on the lower end of the frame and are respectively located below the middle parts of the two lateral guide rails. The flocked cotton belts of each flocked cotton roll mechanism are flattened on their respective flattening mechanisms and are driven and conveyed by the flattening mechanisms. The two jaw assemblies respectively pick up the flocked cotton on the flocked cotton belts from the two flattening mechanisms through the linkage cooperation of the lateral drive assembly, the vertical drive assembly, and the longitudinal drive assembly, and paste it on both sides of the interior of the powder bin located in the powder bin transmission device.
[0015] Based on the above, the beneficial effects of the powder bin transmission device are to orderly convey the powder bin for assembly operations at each processing position; the beneficial effect of the frame is to install the lateral drive assembly, the flocked cotton roll mechanism, and the flattening mechanism; the beneficial effect of the lateral drive cylinder is to drive the lateral drive plate to move back and forth along the two lateral guide rails; the beneficial effect of the lateral drive plate is to install the vertical drive assembly; the beneficial effect of the flocked cotton roll mechanism is to output the flocked cotton belt; the beneficial effects of the flattening mechanism are to flatten the flocked cotton belt to facilitate the clamping of the flocked cotton by the cotton clamping component, and to drive the transmission of the flocked cotton belt.
[0016] Further, the flattening mechanism includes a flattening platform, a flattening pressing plate, a backing paper driven roller, a driving motor, and a backing paper driving roller. The flattening pressing plate is disposed on the upper end of the flattening platform for limiting the flocked cotton belt. The backing paper driven roller is disposed on one side of the output end of the flattening platform. The backing paper driving roller is disposed inside the flattening platform. The driving motor is disposed outside the flattening platform, and the backing paper driving roller is connected to the output end of the driving motor. The backing paper of the flocked cotton belt is conveyed by the combined action of the backing paper driving roller and the backing paper driven roller.
[0017] Based on the above, the beneficial effect of the flattening platform is to install the flattening pressing plate, the backing paper driven roller, the driving motor, and the backing paper driving roller; the beneficial effect of the flattening pressing plate is to flatten the flocked cotton belt; the beneficial effect of the backing paper driven roller is to jointly act with the backing paper driving roller to drive the transmission of the flocked cotton belt; the beneficial effect of the driving motor is to drive the backing paper driving roller to rotate for operation.
[0018] Further, a base paper export side rail is also arranged on the output end side of the tiling platform for conveying the base paper of the flocked cotton tape into a recycling bin outside the production line.
[0019] Based on the above, the beneficial effect of the base paper export side rail is to guide the base paper out of the production line, facilitating collection and processing.
[0020] To more clearly elaborate the above features of the present utility model and the objectives to be achieved, the following further describes the present utility model in conjunction with the accompanying drawings and specific embodiments. Description of the Drawings
[0021] Figure 1 : is a three-dimensional schematic diagram of the present utility model;
[0022] Figure 2 : is a schematic diagram of the cotton pasting device of the present utility model;
[0023] Figure 3 : is a schematic diagram of the jaw assembly of the present utility model;
[0024] Figure 4 : is a schematic diagram of another perspective of the jaw assembly of the present utility model;
[0025] Figure 5 : is a schematic diagram of the cotton pressing component of the present utility model.
[0026] Explanation of the reference numerals in the drawings: 1 - cotton pasting device, 11 - flocked cotton roll mechanism, 12 - tiling mechanism, 121 - tiling platform, 1211 - base paper export side rail, 122 - tiling pressing plate, 123 - base paper driven roller, 124 - driving motor, 2 - flocked cotton pasting mechanism, 21 - lateral driving component, 211 - lateral driving cylinder, 212 - lateral driving plate, 213 - lateral guide rail, 22 - vertical driving component, 3 - clamping manipulator, 31 - mounting frame body, 32 - jaw assembly, 321 - cotton clamping component, 3211 - cotton clamping cylinder, 3212 - static half clamp, 3213 - dynamic half clamp, 322 - cotton pressing component, 3221 - cotton pressing cylinder, 3222 - cotton pressing block, 323 - adjusting component, 3231 - adjusting cylinder, 3232 - adjusting connecting plate, 33 - longitudinal driving component, 4 - powder bin transmission device, 5 - frame body, 100 - flocked cotton tape. Detailed Embodiments
[0027] As Figures 1-5As shown in the figure, a 226 series automated assembly production line with a cotton pasting device includes a cotton pasting device 1. The cotton pasting device 1 includes a flocked cotton pasting mechanism 2. The flocked cotton pasting mechanism 2 includes a clamping manipulator 3. The clamping manipulator 3 includes a mounting frame body 31 and two jaw assemblies 32 symmetrically arranged on the mounting frame body 31. The jaw assembly 32 is composed of a cotton clamping component 321, a cotton pressing component 322, and an adjusting component 323. The cotton clamping component 321 and the adjusting component 323 are both arranged on the mounting frame body 31. The cotton pressing component 322 is arranged at the output end of the adjusting component 323. When the cotton clamping component 321 performs a clamping operation on the flocked cotton, the adjusting component 323 drives the cotton pressing component 322 to move to a position away from the cotton clamping component 321; when the cotton clamping component 321 pastes the flocked cotton onto the powder bin, the adjusting component 323 drives the cotton pressing component 322 to move to a side close to the cotton clamping component 321 to press the flocked cotton tightly to ensure its firm adhesion.
[0028] The cotton clamping component 321 includes a cotton clamping cylinder 3211, a static half clamp 3212, and a dynamic half clamp 3213. The static half clamp 3212 and the dynamic half clamp 3213 are both arranged at the output end of the cotton clamping cylinder 3211, and the static half clamp 3212 is located on the side close to the cotton pressing component 322. The cotton clamping cylinder 3211 drives the dynamic half clamp 3213 to displace towards the static half clamp 3212 to clamp the flocked cotton; the adjusting component 323 includes an adjusting cylinder 3231 and an adjusting connecting plate 3232 arranged at the output end of the adjusting cylinder 3231; the cotton pressing component 322 includes a cotton pressing cylinder 3221 and a cotton pressing block 3222 arranged at the output end of the cotton pressing cylinder 3221. The cotton pressing cylinder 3221 is arranged on the adjusting connecting plate 3232 on the side close to the dynamic half clamp 3213.
[0029] The clamping manipulator 3 further includes a longitudinal driving component 33. The mounting frame body 31 is arranged at the output end of the longitudinal driving component 33. The flocked cotton pasting mechanism 2 further includes a transverse driving component 21 and a vertical driving component 22 arranged at the output end of the transverse driving component 21. The longitudinal driving component 33 is arranged at the output end of the vertical driving component 22.
[0030] The production line further includes a powder bin transmission device 4 and a frame 5. The frame 5 is arranged on the powder bin transmission device 4. The lateral drive assembly 21 includes a lateral drive cylinder 211, a lateral drive plate 212, and two lateral guide rails 213. The two lateral guide rails 213 are respectively arranged on both sides of the upper end of the frame 5. The lateral drive plate 212 is arranged on the output end of the drive cylinder 211 and is slidably connected to the two lateral guide rails 213. The vertical drive assembly 22 is arranged on the lateral drive plate 212. The cotton pasting device 1 further includes two flocked cotton roll mechanisms 11 and two flattening mechanisms 12. The two flocked cotton roll mechanisms 11 are both arranged on the upper end of the frame 5 and are respectively located on both sides of the two lateral guide rails 213. The two flattening mechanisms 12 are arranged on the lower end of the frame 5 and are respectively located below the middle parts of the two lateral guide rails 213. The flocked cotton belts 100 of each flocked cotton roll mechanism 11 are flattened on their respective flattening mechanisms 12 and are driven and conveyed by the flattening mechanisms 12. The two jaw assemblies 32 respectively pick up the flocked cotton on the flocked cotton belts 100 from the two flattening mechanisms 12 through the linkage cooperation of the lateral drive assembly 21, the vertical drive assembly 22, and the longitudinal drive assembly 33, and paste it on both sides of the inner part of the powder bin located in the powder bin transmission device 4.
[0031] The flattening mechanism 12 includes a flattening platform 121, a flattening pressing plate 122, a backing paper driven roller 123, a drive motor 124, and a backing paper drive roller. The flattening pressing plate 122 is arranged on the upper end of the flattening platform 121 for limiting the flocked cotton belt 100. The backing paper driven roller 123 is arranged on one side of the output end of the flattening platform 121. The backing paper drive roller is arranged in the flattening platform 121. The drive motor 124 is arranged outside the flattening platform 121, and the backing paper drive roller is connected to the output end of the drive motor 124. The backing paper of the flocked cotton belt 100 is conveyed by the combined action of the backing paper drive roller and the backing paper driven roller 123.
[0032] A backing paper outlet side rail 1211 is further arranged on the output end side of the flattening platform 121 for conveying the backing paper of the flocked cotton belt 100 into a recycling bin outside the production line.
[0033] In summary, the specific implementation manner of the present utility model is as follows:
[0034] First, the flocked cotton tape 100 is output from the flocked cotton roll mechanism 11. Under the action of the flattening press plate 122 of the flattening mechanism 12, it is smoothly laid on the flattening rack 121. Then, the flattening press plate 122 keeps the flocked cotton tape 100 in a flat state, and the driving motor 124 drives the base paper driving roller to rotate. The base paper driving roller and the base paper driven roller 123 jointly drive the base paper at the end of the flocked cotton tape 100 where there is no flocked cotton through friction, so that the flocked cotton tape 100 advances until the part of the flocked cotton tape 100 with flocked cotton pasted on it covers the flattening rack 121. Each time, the stock of flocked cotton on the flattening rack 121 is detected by the sensor. If all the flocked cotton has been clamped and pasted, the driving motor 124 drives the base paper driving roller to rotate again to achieve continuous supply of the flocked cotton tape 100.
[0035] Before starting to clamp, the lateral driving component 21 operates to position the jaw component 32 above the flattening rack 121. Then, through the cooperation of the longitudinal driving component 33 and the vertical driving component 22, the jaw component 32 is driven to descend to the position where the flocked cotton is pasted on the flattening rack 121, and the flocked cotton is clamped in sequence. The adjustment cylinder 3231 drives the adjustment connecting plate 3232 to move the cotton pressing component 322 away from the cotton clamping component 321. At this time, the cotton pressing block 3222 is located above the flocked cotton tape 100 and is gently pressed on the flocked cotton tape 1000 by the cotton pressing cylinder 3221 to prevent the whole flocked cotton tape 100 from being lifted during the clamping process. Then, the cotton clamping cylinder 3211 drives the dynamic half clamp 3213 to move towards the static half clamp 3212, and the two jointly act to clamp the flocked cotton. When the flocked cotton is clamped, the lateral driving component 21 and the longitudinal driving component 33 operate in sequence to position the clamped flocked cotton at an appropriate position above the powder bin. Then, the vertical driving component 22 drives the jaw component 32 to descend to the position where the flocked cotton is pasted in the powder bin. Then, the adjustment cylinder 3231 operates again. This time, the cotton pressing component 322 on the adjustment connecting plate 3232 is moved closer to the cotton clamping component 321, and the cotton pressing block 3222 presses the flocked cotton tightly so that it is firmly pasted in the powder bin. Finally, the cotton clamping cylinder 3211 drives the dynamic half clamp 3213 to separate from the static half clamp 3212, releasing the pasted flocked cotton. The vertical driving component 22 drives the jaw component 32 to reset, and the clamping manipulator 3 continues to repeat the above operations.
[0036] After clamping and pasting the flocked cotton multiple times, when the flocked cotton on the part of the flocked cotton tape 100 on the flattening rack 121 has been completely clamped, the base paper is jointly driven by the base paper driving roller and the base paper driven roller 123 through friction and is conveyed into the recycling bin outside the production line via the base paper outlet side rail 1211. This design not only improves production efficiency, reduces waste in the production process, but also ensures the cleanliness of the production environment.
[0037] The above is only the optimal solution embodiment of the present utility model and is not used to limit the present utility model. Various modifications or substitutions made by those skilled in the art to the present utility model without departing from the essence and protection scope of the present utility model should also be within the protection scope of the present utility model.
Claims
1. A 226 series automated assembly production line with a cotton sticking device, comprising a cotton sticking device (1), characterized in that: The cotton pasting device (1) comprises a flocked cotton pasting mechanism (2), the flocked cotton pasting mechanism (2) comprises a clamping robot (3), the clamping robot (3) comprises a mounting frame (31) and two clamping jaw assemblies (32) symmetrically arranged on the mounting frame (31), the clamping jaw assembly (32) comprises a cotton clamping component (321), a cotton pressing component (322) and an adjusting component (323), the cotton clamping component (321) and the adjusting component (323) are both arranged on the mounting frame (31), The cotton pressing component (322) is arranged at the output end of the adjusting component (323); when the cotton clamping component (321) clamps the flocked cotton, the adjusting component (323) drives the cotton pressing component (322) to move to a position away from the cotton clamping component (321); when the cotton clamping component (321) sticks the flocked cotton to the powder bin, the adjusting component (323) drives the cotton pressing component (322) to move to a side close to the cotton clamping component (321) to press the flocked cotton to ensure that it is firmly stuck.
2. A 226 series automated assembly production line with a cotton sticking device according to claim 1, characterized in that: The cotton clamping component (321) comprises a cotton clamping cylinder (3211), a static half clamp (3212) and a dynamic half clamp (3213), wherein the static half clamp (3212) and the dynamic half clamp (3213) are both arranged at the output end of the cotton clamping cylinder (3211), and the static half clamp (3212) is located on a side close to the cotton pressing component (322), and the cotton clamping cylinder (3211) drives the dynamic half clamp (3213) to move in the direction of the static half clamp (3212). The flocking cotton is clamped by moving; the adjusting component (323) includes an adjusting cylinder (3231) and an adjusting connecting plate (3232) arranged at the output end of the adjusting cylinder (3231); the cotton pressing component (322) includes a cotton pressing cylinder (3221) and a cotton pressing block (3222) arranged at the output end of the cotton pressing cylinder (3221), and the cotton pressing cylinder (3221) is arranged on the side of the adjusting connecting plate (3232) close to the dynamic half clamp (3213).
3. The 226 series automated assembly production line with a cotton sticking device according to claim 1, characterized in that: The clamping robot (3) also includes a longitudinal drive component (33), the mounting frame (31) is arranged on the output end of the longitudinal drive component (33), the flocking cotton pasting mechanism (2) also includes a transverse drive component (21), and a vertical drive component (22) arranged at the output end of the transverse drive component (21), and the longitudinal drive component (33) is arranged on the output end of the vertical drive component (22).
4. The 226 series automated assembly production line with a cotton sticking device according to claim 3, characterized in that: The production line also includes a powder bin transmission device (4) and a frame (5), wherein the frame (5) is arranged on the powder bin transmission device (4), the transverse driving component (21) includes a transverse driving cylinder (211), a transverse driving plate (212) and two transverse guide rails (213), wherein the two transverse guide rails (213) are respectively arranged on both sides of the upper end of the frame (5), the transverse driving plate (212) is arranged on the output end of the driving cylinder (211) and is slidably connected to the two transverse guide rails (213), the vertical driving component (22) is arranged on the transverse driving plate (212), and the cotton pasting device (1) also includes two flocking cotton roll mechanisms (11) and two flattening mechanisms (12), wherein the two flocking cotton roll mechanisms (11) They are both arranged at the upper end of the frame (5) and are respectively located on both sides of the two transverse guide rails (213). The two flattening mechanisms (12) are arranged at the lower end of the frame (5) and are respectively located below the middle of the two transverse guide rails (213). The flocked cotton tape (100) of each flocked cotton roll mechanism (11) is flattened on its own flattening mechanism (12) and driven and transported by the flattening mechanism (12). The two clamping jaw assemblies (32) respectively clamp the flocked cotton on the flocked cotton tape (100) from the two flattening mechanisms (12) through the linkage cooperation of the transverse drive assembly (21), the vertical drive assembly (22) and the longitudinal drive assembly (33), and stick them on both sides of the inside of the powder bin in the powder bin transmission device (4).
5. A 226 series automated assembly production line with a cotton sticking device according to claim 4, characterized in that: The paving mechanism (12) comprises a paving platform (121), a paving pressure plate (122), a bottom paper driven roller (123), a driving motor (124) and a bottom paper driving roller. The paving pressure plate (122) is arranged at the upper end of the paving platform (121) and is used to limit the flocked cotton belt (100). The bottom paper driven roller (123) is arranged at one side of the output end of the paving platform (121). The bottom paper driving roller is arranged inside the paving platform (121). The driving motor (124) is arranged outside the paving platform (121), and the bottom paper driving roller is connected to the output end of the driving motor (124). The bottom paper of the flocked cotton belt (100) is transmitted by the combined action of the bottom paper driving roller and the bottom paper driven roller (123).
6. A 226 series automated assembly production line with a cotton sticking device according to claim 5, characterized in that: The output end side of the flattening stand (121) is also provided with a bottom paper output side rail (1211) for conveying the bottom paper of the flocked cotton tape (100) to a recovery bin outside the production line.