Licker-in cleaning device
By using talc powder adsorption and brushing, the problem of water vapor and oil forming sticky substances in existing technologies has been solved, achieving efficient cleaning of the licker-in roller and normal textile use.
Patent Information
- Application Number
- CN202520561316.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Existing licker-in roller cleaning devices are ineffective at removing sticky substances formed by moisture and oil, affecting the cleaning effect of the licker-in roller and its normal textile use.
The method of talc adsorption and brushing is adopted. Through the design of powder tank, discharge component and brush head, talc adsorption absorbs water vapor and oil on the surface of the piercing roller, and the brush head removes impurities. Combined with the drive of motor and hydraulic cylinder, the cleaning is automated.
This effectively prevents moisture and oil from forming sticky substances on the surface of the licker-in roller, ensuring a cleaner cleaning of the licker-in roller and guaranteeing its normal textile use.
Smart Images

Figure CN223963622U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of carding machine technology, specifically to a licker-in roller cleaning device. Background Technology
[0002] During the carding process, residual cotton impurities accumulate in the gaps of the licker-in rollers. If these impurities accumulate excessively, they will inevitably affect the continuous working efficiency of the carding machine. To ensure the efficiency of the carding machine, Chinese Patent No. CN208803185U discloses a licker-in roller cleaning device, including a hollow cleaning cylinder. Bolts are installed at both ends of the hollow cleaning cylinder, which is fixed to the frame via the bolts and a fixing shaft. An air inlet is located at the upper end of the hollow cleaning cylinder, connected to an air intake device. The air intake device includes an air pump and an air intake pipe connected to the air inlet. Air outlets are spaced apart at the lower end of the hollow cleaning cylinder, connected to air jets. Several air jet holes are arranged on the inner wall of the air jet, and a brush is installed at the lower end of the air jet. With its simple structure, this cleaning device can be installed above the licker-in roller to remove impurities by blowing air and brushing in real time, achieving automated impurity removal, greatly reducing the amount of impurities in the gap between the licker-in rollers, ensuring the continuous operation of the carding machine, and improving the operating efficiency of the equipment.
[0003] However, in practical applications, the above-mentioned licker-in roller cleaning device still has the following shortcomings: In the textile production process, when the water vapor in the air and the oil contained in the fiber itself are directly brushed off, the water vapor and oil are easy to adhere to the surface of the licker-in roller and form a sticky substance. It is difficult to blow off the sticky substance on the licker-in roller with air, making it difficult to clean the licker-in roller and seriously affecting the normal textile use of the licker-in roller. Utility Model Content
[0004] The purpose of this invention is to address the above-mentioned shortcomings by providing a cleaning device for licker-in rollers, which can effectively prevent the formation of sticky substances from moisture and oil on the surface of the licker-in rollers, making the cleaning of the licker-in rollers more thorough and ensuring that the licker-in rollers can be used normally in textiles.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A spiking roller cleaning device includes a frame, a spiking roller rotating clamp mounted on the frame, a cleaning seat disposed above the spiking roller rotating clamp, a powder tank disposed on the cleaning seat, a plurality of discharge ports and brush heads disposed at the bottom of the cleaning seat, a discharge assembly disposed inside the powder tank, the discharge assembly being used to discharge the powder in the powder tank from the discharge ports, a controller disposed on one side of the frame, and the spiking roller rotating clamp and the discharge assembly being electrically connected to the controller.
[0007] Furthermore, the rotating clamp for the licker roller includes two rotating disks facing each other, a rotating motor fixed on the frame, one end of each rotating disk being rotatably connected to the frame, and two arc-shaped clamping blocks facing each other at the other end of each rotating disk. The rotating motor is used to drive either rotating disk to rotate. A sliding groove is provided on the rotating disk, and two sliders are slidably connected in the sliding groove. A double-headed hydraulic cylinder is provided between the two sliders. One end of each arc-shaped clamping block is fixed to the slider, and the double-headed hydraulic cylinder is fixed in the sliding groove. The piston rod of the double-headed hydraulic cylinder drives the connected slider, and the double-headed hydraulic cylinder is used to drive the slider to move the two arc-shaped clamping blocks closer to or further apart from each other.
[0008] Furthermore, the cleaning seat is provided with a circular powder channel, the top of the arc-shaped powder channel is connected to the bottom of the powder tank through a connecting pipe, and the top of the discharge port is connected to the arc-shaped powder channel; the discharge assembly includes a discharge mechanism disposed in the powder tank and a discharge mechanism disposed in the circular powder channel, the discharge mechanism is used to discharge the powder in the powder tank into the connecting pipe, and the discharge mechanism is used to discharge the powder in the circular powder channel into the discharge port.
[0009] Furthermore, the discharge mechanism includes a discharge shaft rotatably connected inside the powder tank, discharge blades disposed on the discharge shaft, and a discharge motor fixed to the top of the powder tank. The discharge motor is used to drive the discharge shaft to rotate, and the bottom end of the discharge blades scrapes along the bottom of the powder tank.
[0010] Furthermore, the discharge mechanism includes a discharge shaft rotatably connected within the arc-shaped powder channel, a discharge motor fixed at one end of the arc-shaped powder channel, and a discharge vane provided on the discharge shaft. A spiral feeding channel is formed between the discharge shaft, the discharge vane, and the arc-shaped powder channel.
[0011] Furthermore, it also includes a slide that is slidably connected to the frame, and an electric cylinder for driving the slide to rise or fall. The electric cylinder is mounted on the frame, the cleaning seat is mounted on the slide, and the electric cylinder is electrically connected to the controller.
[0012] The beneficial effects of this utility model are:
[0013] In practical applications, talc powder is added to the powder tank, and the licker-in roller is clamped by the licker-in roller rotating clamp and rotated. The powder in the powder tank is discharged from the discharge port onto the licker-in roller through the discharge component. The talc powder absorbs moisture and oil on the surface of the licker-in roller, preventing the formation of sticky substances. The talc powder and cotton impurities are brushed away by the brush head. This invention can effectively prevent moisture and oil on the surface of the licker-in roller from forming sticky substances, making the cleaning of the licker-in roller more thorough and ensuring that the licker-in roller can be used normally in textiles. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0015] Figure 2 This is a bottom view of the present invention;
[0016] Figure 3 This is the right view of this utility model;
[0017] Figure 4 yes Figure 3 Cross-sectional view at point AA. Detailed Implementation
[0018] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, a burr roller cleaning device includes a frame, a burr roller rotating clamp 1 mounted on the frame, a cleaning seat 2 disposed above the burr roller rotating clamp 1, a powder tank 3 disposed on the cleaning seat 2, a plurality of discharge ports 21 and brush heads 22 disposed at the bottom of the cleaning seat 2, a discharge assembly disposed inside the powder tank 3, the discharge assembly being used to discharge the powder in the powder tank 3 from the discharge ports 21, a controller 4 disposed on one side of the frame, and the burr roller rotating clamp 1 and the discharge assembly being electrically connected to the controller 4.
[0019] In use, talcum powder is added into the powder tank 3, and the licker roller is clamped by the licker roller rotating clamp 1 and rotated. The powder in the powder tank 3 is discharged from the discharge port 21 onto the licker roller through the discharge component. The talcum powder absorbs the moisture and oil on the surface of the licker roller, preventing the formation of sticky substances. The talcum powder and cotton impurities are brushed off by the brush head 22. This utility model can effectively prevent the formation of sticky substances from the moisture and oil on the surface of the licker roller, making the cleaning of the licker roller more thorough and ensuring that the licker roller can be used normally in textiles.
[0020] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the spit roller rotating clamp 1 includes two rotating disks 11 facing each other, and a rotating motor 12 fixed on the frame. One end of each rotating disk 11 is rotatably connected to the frame, and the other end of each rotating disk 11 has two arc-shaped clamping blocks 13 facing each other. The rotating motor 12 drives either rotating disk 11 to rotate. A groove 14 is provided on each rotating disk 11, and two sliders are slidably connected in the groove 14. A double-headed hydraulic cylinder 15 is provided between the two sliders. One end of each arc-shaped clamping block 13 is fixed to the slider, and the double-headed hydraulic cylinder 15 is fixed in the groove 14. The piston rod of the double-headed hydraulic cylinder 15 drives the slider, and the double-headed hydraulic cylinder 15 drives the slider to move the two arc-shaped clamping blocks 13 closer to or further away from each other. In this embodiment, the double-headed hydraulic cylinder 15 drives the slider to slide along the groove 14, so that the two arc-shaped clamping blocks 13 clamp the two ends of the spit roller. The rotating motor 12 drives the rotating disk 11, causing the spit roller to rotate.
[0021] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the cleaning seat 2 is provided with a circular powder channel 23. The top of the arc-shaped powder channel 23 is connected to the bottom of the powder tank 3 through a connecting pipe 24. The top of the discharge port 21 is connected to the arc-shaped powder channel 23. The discharge assembly includes a discharge mechanism disposed in the powder tank 3 and a discharge mechanism disposed in the circular powder channel 23. The discharge mechanism is used to discharge the powder in the powder tank 3 into the connecting pipe 24, and the discharge mechanism is used to discharge the powder in the circular powder channel 23 into the discharge port 21. In this embodiment, the talc powder in the powder tank 3 is discharged into the connecting pipe 24 by the discharge mechanism. The talc powder in the connecting pipe 24 falls into the circular powder channel 23 under the action of gravity. The discharge mechanism sends the talc powder to the discharge port 21 in sequence. The talc powder is discharged from the discharge port 21 under the action of gravity.
[0022] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the discharge mechanism includes a discharge shaft 511 rotatably connected inside the powder tank 3, discharge blades 512 disposed on the discharge shaft 511, and a discharge motor 513 fixed to the top of the powder tank 3. The discharge motor 513 is used to drive the discharge shaft 511 to rotate, and the bottom end of the discharge blades 512 scrapes along the bottom of the powder tank 3. In this embodiment, the discharge shaft 511 is driven by the discharge motor 513, and the discharge shaft 511 drives the bottom end of the discharge blades 512 to scrape along the bottom of the powder tank 3, scraping the talc powder in the powder tank 3 towards the connecting pipe 24.
[0023] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the discharge mechanism includes a powder discharge shaft 521 rotatably connected within the arc-shaped powder channel 23, a powder discharge motor 522 fixed at one end of the arc-shaped powder channel 23, and a powder discharge vane 523 provided on the powder discharge shaft 521. A spiral feeding channel is formed between the powder discharge shaft 521, the powder discharge vane 523, and the arc-shaped powder channel 23. In this embodiment, the powder discharge motor 522 drives the powder discharge shaft 521 to rotate the powder discharge vane 523, causing the talc powder falling into the arc-shaped powder channel 23 to be conveyed along the channel. The talc powder falls onto the needle roller during the conveying process through the discharge port 21.
[0024] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, it also includes a slide 61 that slides vertically and vertically on the frame, and an electric cylinder 62 for driving the slide 61 to rise or fall. The electric cylinder 62 is mounted on the frame, the cleaning seat 2 is mounted on the slide 61, and the electric cylinder 62 is electrically connected to the controller 4. In this embodiment, by driving the slide 61 to rise or fall by the electric cylinder 62, not only can the brush head 22 be pressed against the licker roller, but the licker roller cleaning device can also be used for cleaning various licker rollers with different outer diameters, thus improving its applicability.
[0025] The specific embodiments described herein are merely illustrative examples of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the scope defined by this utility model.
Claims
1. A cleaning device for a licker-in roller, characterized in that: The device includes a frame, a rotating clamp for the piercing roller mounted on the frame, a cleaning seat located above the rotating clamp for the piercing roller, a powder tank on the cleaning seat, multiple discharge ports and brush heads at the bottom of the cleaning seat, a discharge assembly inside the powder tank for discharging powder from the discharge ports, and a controller on one side of the frame. The rotating clamp for the piercing roller and the discharge assembly are electrically connected to the controller.
2. The cleaning device for a licker-in roller according to claim 1, characterized in that, The rotating clamp for the licker roller includes two rotating disks facing each other, a rotating motor fixed on the frame, one end of each rotating disk being rotatably connected to the frame, and two arc-shaped clamping blocks facing each other at the other end of each rotating disk. The rotating motor drives either rotating disk to rotate. A groove is provided on each rotating disk, and two sliders are slidably connected in the groove. A double-headed hydraulic cylinder is provided between the two sliders. One end of each arc-shaped clamping block is fixed to the slider, and the double-headed hydraulic cylinder is fixed in the groove. The piston rod of the double-headed hydraulic cylinder drives the connected slider, and the double-headed hydraulic cylinder drives the slider to move the two arc-shaped clamping blocks closer to or further apart.
3. The cleaning device for a licker roller according to claim 1, characterized in that, The cleaning seat is provided with a circular powder channel, the top of which is connected to the bottom of the powder tank via a connecting pipe, and the top of the discharge port is connected to the circular powder channel; the discharge assembly includes a discharge mechanism disposed in the powder tank and a discharge mechanism disposed in the circular powder channel, the discharge mechanism being used to discharge the powder in the powder tank into the connecting pipe, and the discharge mechanism being used to discharge the powder in the circular powder channel into the discharge port.
4. The licker-in roller cleaning device according to claim 3, characterized in that, The discharge mechanism includes a discharge shaft rotatably connected inside the powder tank, discharge blades disposed on the discharge shaft, and a discharge motor fixed to the top of the powder tank. The discharge motor is used to drive the discharge shaft to rotate, and the bottom end of the discharge blades scrapes along the bottom of the powder tank.
5. The licker-in roller cleaning device according to claim 3, characterized in that, The discharge mechanism includes a discharge shaft rotatably connected in the circular powder channel, a discharge motor fixed at one end of the circular powder channel, and a discharge vane on the discharge shaft. A spiral feeding channel is formed between the discharge shaft, the discharge vane, and the circular powder channel.
6. The cleaning device for a licker roller according to claim 1, characterized in that, It also includes a slide that is slidably connected to the frame, and an electric cylinder for driving the slide to rise or fall. The electric cylinder is mounted on the frame, the cleaning seat is mounted on the slide, and the electric cylinder is electrically connected to the controller.
Citation Information
Patent Citations
Licker -in cleaning device
CN208803185U