Full-automatic leather roller cleaning device

The design of a fully automatic cleaning roller device has enabled automated cleaning of the rollers, solving the problems of low efficiency and damage caused by manual cleaning, and improving cleaning efficiency and yarn quality.

CN224168111UActive Publication Date: 2026-04-28XINJIANG RUIGE TEXTILE CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XINJIANG RUIGE TEXTILE CO LTD
Filing Date
2025-04-25
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

In existing technologies, cleaning of rollers mainly relies on manual operation, which is inefficient and easily damages the surface of the rollers, resulting in uneven fiber movement and affecting yarn quality.

Method used

A fully automatic cleaning roller device was designed, including a roller fixing component, a feeding component, a dirt removal component, a cleaning component, a drying component, and a discharge component. The device realizes the fixing, conveying, dirt removal, cleaning, and drying of the roller through an automated production line. It uses a flexible brush and a hot water tank for cleaning to avoid damage caused by blade scraping.

Benefits of technology

The process of cleaning the rollers has been automated, which has improved cleaning efficiency, reduced labor costs, extended the service life of the rollers, and ensured the uniformity of fiber movement and yarn quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of textile equipment, in particular to a full-automatic leather roller cleaning device which comprises a leather roller fixing assembly used for fixing a leather roller. And the feeding assembly is used for conveying the leather roller fixing assembly backwards, and an impurity removing assembly, a cleaning assembly, a drying assembly, a discharging assembly and a stacking assembly are sequentially arranged at the output end of the feeding assembly. Impurities on the surface of the leather roller can be automatically and rapidly removed, and damage to the surface of the leather roller is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of textile equipment technology, and in particular to a fully automatic cleaning roller device. Background Technology

[0002] As an important drafting element of a spinning frame, the roller, in conjunction with the roller, forms a frictional interface to control fiber movement, reduce shift deviation, and thus improve the evenness of the yarn.

[0003] As a crucial component of spinning equipment in the textile industry, rubber rollers require regular replacement, cleaning, and maintenance to maintain high efficiency and extend their lifespan. However, currently, most roller cleaning and maintenance relies on manual methods. Rollers removed from spinning equipment must be sent to a roller room for manual washing and drying, which is not only wasteful of manpower and resources and time-consuming but also affects roller efficiency. For example, a textile winding roller cleaning machine disclosed in publication number CN112048790A uses an elastic blade to scrape away fibers adhering to the roller. However, the blade edge creates longitudinal or transverse scratches on the roller surface, with depths ranging from 10 to 50 micrometers. This damages the original smooth surface and produces burrs. The increased friction in the scratched area leads to fluctuations in fiber holding force, further causing fiber misalignment and problems such as warp breakage and weft skew.

[0004] Therefore, those skilled in the art are dedicated to developing a fully automatic roller cleaning device that can automatically and quickly remove impurities from the roller surface and reduce damage to the roller surface. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a fully automatic cleaning roller device, which is conducive to automatically and quickly removing impurities from the surface of the roller and reducing damage to the surface of the roller.

[0006] The technical solution of this utility model to solve the above-mentioned technical problems is as follows:

[0007] A fully automatic cleaning roller device, including

[0008] A roller fixing assembly for fixing a roller;

[0009] The feeding assembly is used to convey the roller fixing assembly backward. The output end of the feeding assembly is sequentially provided with a cleaning assembly, a washing assembly, a drying assembly, a discharging assembly, and a stacking assembly.

[0010] The beneficial effects of adopting the above solution are: the roller fixing component is conveyed backward by the feeding component, and then passes through the impurity removal component, the cleaning component, the drying component, etc., thereby realizing the automation of the roller cleaning process, greatly improving the cleaning efficiency, and saving manpower and time costs.

[0011] Based on the above technical solution, the present invention can be further improved as follows.

[0012] Furthermore, the roller fixing assembly includes a first fixing plate and a second fixing plate. The first fixing plate and the second fixing plate are provided with fixing holes at their relative positions. Both ends of the roller are located in the fixing holes and the outer edge of the roller extends out of the first fixing plate and the second fixing plate. A fixing rod is provided between two adjacent rollers, and a fixing brush is installed on the fixing rod.

[0013] The beneficial effects of adopting the above-mentioned further solution are: the fixing rod and fixing brush between adjacent rollers can ensure that the rollers maintain an appropriate distance during the cleaning process, making the cleaning more uniform. At the same time, the setting of the fixing brush can perform preliminary cleaning of the rollers during the cleaning process, removing dust and impurities from the surface and improving the cleaning efficiency of subsequent cleaning components.

[0014] Furthermore, the feeding assembly includes a feeding support frame, on which a feeding drive shaft is mounted, and a feeding drive belt is sleeved on the feeding drive shaft. The feeding drive shaft is also connected to a first power device.

[0015] The beneficial effects of adopting the above-mentioned further solution are: the feeding assembly realizes automatic conveying of the rollers through the feeding drive shaft and the feeding drive belt, reducing manual intervention and improving production efficiency.

[0016] Furthermore, the impurity removal component includes an impurity removal box located at the output end of the feeding component, and a first conveying component is installed inside the impurity removal box;

[0017] The upper end of the impurity removal box is equipped with a first telescopic component, the output end of the first telescopic component is equipped with an impurity removal plate, the impurity removal plate is equipped with a second power device and a first rotating brush assembly, and the second power device drives the first rotating brush assembly to rotate.

[0018] The impurity removal plate is equipped with first sliders at both ends, and the side wall of the impurity removal box is equipped with a first slide rail that cooperates with the first sliders. The first slide rail is vertically arranged.

[0019] The beneficial effects of adopting the above-mentioned further solution are: the first conveying component in the impurity removal box can stably convey the roller to the impurity removal area, and the first telescopic component drives the impurity removal plate to move up and down, so that the first rotating brush component can thoroughly remove impurities from the surface of the roller, thereby improving the impurity removal efficiency.

[0020] The first rotating brush assembly is driven to rotate by the second power device, which performs gentle cleaning on the surface of the roller, avoiding the damage to the roller surface caused by the traditional blade scraping method and extending the service life of the roller.

[0021] Furthermore, since the outer edge of the roller extends out to form a first fixed plate and a second fixed plate, when the first conveying assembly drives the roller fixing assembly to move, there is friction between the outer edge of the roller and the first conveying assembly, causing the roller to rotate. This allows the fixed brush between two adjacent rollers to further clean the surface of the roller. The conveyor belt on the first conveying assembly has dense protrusions, which not only drive the roller to rotate and move forward, but also clean the surface of the roller.

[0022] Meanwhile, since the fixed brush cleans in the tangential direction of the outer edge of the roller, and the first rotating brush cleans in the axial direction, the fiber threads wrapped around the surface of the roller break under the action of cleaning forces in different directions, thereby improving the cleaning efficiency of the roller surface.

[0023] Furthermore, the lower side of the impurity removal plate has a dust collection box, and the dust collection box is connected to a negative pressure fan through a negative pressure suction nozzle.

[0024] The beneficial effects of adopting the above-mentioned further solution are: the dust collection box can collect the dust and impurities generated during the cleaning process, maintain the cleanliness of the working environment, and reduce environmental pollution.

[0025] Furthermore, the cleaning assembly includes a cleaning tank located at the output end of the impurity removal assembly, and a second conveying assembly is installed inside the cleaning tank;

[0026] The upper end of the cleaning tank is equipped with a second telescopic component, the output end of the second telescopic component is equipped with a cleaning plate, the cleaning plate is equipped with a third power device and a second rotating brush assembly, and the third power device drives the second rotating brush assembly to rotate.

[0027] The cleaning plate is equipped with second sliders at both ends, and the cleaning tank sidewall is equipped with a second slide rail that cooperates with the second sliders. The second slide rail is vertically arranged.

[0028] The cleaning plate is also equipped with a hot water tank, and multiple water spray nozzles are installed on the lower side of the cleaning plate, with the water spray nozzles connected to the hot water tank.

[0029] The beneficial effects of adopting the above-mentioned further solution are: the second conveying component in the cleaning box stably conveys the roller to the cleaning area, and the second telescopic component drives the cleaning plate to move up and down, so that the second rotating brush component can thoroughly clean the surface of the roller and improve the cleaning effect.

[0030] The hot water tank contains warm water and chemicals, which can better dissolve and remove fibers from the surface of the roller.

[0031] Furthermore, since the outer edge of the roller extends with a first fixed plate and a second fixed plate, when the first conveying assembly drives the roller fixing assembly to move, there is friction between the outer edge of the roller and the second conveying assembly, causing the roller to rotate. This allows the fixed brush between two adjacent rollers to further clean the roller surface. The conveyor belt on the first conveying assembly has dense protrusions. Warm water increases the friction between the roller, the second conveyor belt, and the fixed brush. The protrusions not only drive the roller to rotate and move forward, but also clean the roller surface.

[0032] Meanwhile, since the fixed brush cleans in the tangential direction of the outer edge of the roller, and the first rotating brush cleans in the axial direction, the fiber threads wrapped around the surface of the roller are subjected to cleaning forces in different directions and break quickly under the acceleration of warm water and chemicals, thereby improving the cleaning efficiency of the roller surface.

[0033] Furthermore, the drying assembly includes a drying chamber located at the output end of the cleaning assembly, and a third conveying assembly is installed inside the drying chamber;

[0034] A drying fan is installed at the top of the drying chamber. The output end of the drying fan is connected to an air outlet and an air nozzle. The air outlet and the air nozzle are located directly above the third conveying component.

[0035] The beneficial effects of adopting the above-mentioned further solution are: the third conveying component in the drying chamber stably conveys the cleaned rollers to the drying area, and the drying fan blows hot air onto the surface of the rollers through the air outlet and air nozzle, which can quickly evaporate the moisture on the surface of the rollers and improve the drying efficiency.

[0036] Furthermore, both the cleaning box and the drying box have a wastewater collection box on their lower sides.

[0037] The beneficial effects of adopting the above-mentioned further solution are: the wastewater collection tank at the bottom of the washing and drying boxes can collect the wastewater generated during the washing and drying process, preventing wastewater from flowing everywhere and maintaining a clean working environment.

[0038] Furthermore, the discharge assembly includes a discharge support frame, on which a discharge drive shaft is mounted, and a discharge drive belt is sleeved on the discharge drive shaft. The discharge drive shaft is also connected to a fourth power device.

[0039] The beneficial effects of adopting the above-mentioned further solution are: the discharge assembly realizes the automatic conveying of the cleaned roller through the discharge drive shaft and the discharge drive belt, which reduces manual intervention and improves production efficiency.

[0040] Furthermore, the stacking assembly includes a stacking pallet located at the output end of the discharge assembly. The stacking pallet is mounted on a scissor lift assembly, which is mounted on a moving assembly. The moving assembly is also equipped with a fifth power device for driving the scissor lift assembly to move up and down.

[0041] The beneficial effects of adopting the above-mentioned further solution are: the stacking assembly realizes the automatic stacking of the cleaned rollers through the stacking pallet, scissor lifting assembly and moving assembly, which reduces manual intervention and improves production efficiency. Attached Figure Description

[0042] Figure 1 This is a schematic diagram of a specific embodiment of the present utility model;

[0043] Figure 2 This is a schematic diagram of the structure of a roller fixing assembly according to a specific embodiment of the present invention.

[0044] The attached diagram lists the components represented by each number as follows:

[0045] 1. Feeding assembly; 101. Feeding drive belt; 102. Feeding drive shaft; 103. Feeding support frame;

[0046] 2. Impurity removal assembly; 201. First slider; 202. First telescopic assembly; 203. Second power unit; 204. Impurity removal plate; 205. First rotating brush assembly; 206. Impurity removal box; 207. Dust collection box; 208. First conveying assembly; 209. Negative pressure suction nozzle; 210. Negative pressure fan;

[0047] 3. Impurity removal assembly; 301. Hot water tank; 302. Second telescopic assembly; 303. Third power unit; 304. Cleaning plate; 305. Second slider; 306. Second rotating brush assembly; 307. Water spray nozzle; 309. Cleaning tank; 310. Second conveying assembly;

[0048] 4. Drying assembly; 401. Drying fan; 402. Air outlet; 403. Air nozzle; 404. Drying chamber; 405. Wastewater collection tank; 406. Third conveying assembly;

[0049] 5. Discharge assembly; 501. Discharge support frame; 502. Discharge drive shaft; 503. Discharge drive belt;

[0050] 6. Stacking assembly; 601. Stacking pallet; 602. Scissor lift assembly; 603. Moving assembly; 604. Fifth power unit;

[0051] 7. Roller fixing assembly; 701. First fixing plate; 702. Second fixing plate; 703. Fixing rod; 704. Fixing brush;

[0052] 8. Roller. Detailed Implementation

[0053] The principles and features of this utility model are described below with reference to the accompanying drawings. The examples given are only for explaining this utility model and are not intended to limit the scope of this utility model.

[0054] In the description of this utility model, it should be understood that the terms "center", "length", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "inner", "outer", "circumferential", "circumferential", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the system or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0055] In the description of this utility model, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0056] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0057] Figure 1 , Figure 2 As shown, a fully automatic cleaning roller device includes a roller fixing assembly 7, which is used to fix a roller 8.

[0058] The feeding assembly 1 is used to convey the roller fixing assembly 7 backward. The output end of the feeding assembly 1 is sequentially provided with a cleaning assembly 2, a washing assembly 3, a drying assembly 4, a discharge assembly 5, and a stacking assembly 6.

[0059] The fully automatic cleaning roller device involved in this utility model is a highly integrated and automated industrial cleaning equipment, specially designed for the deep cleaning process of rollers. From the fixing and conveying of rollers, to the removal of impurities, washing, drying, and finally the discharge and stacking, it forms a complete and orderly cleaning production line, which greatly improves the cleaning efficiency and quality of rollers, reduces manual intervention, and ensures the stable performance of rollers.

[0060] like Figure 1 , Figure 2 As shown, in some embodiments, the roller fixing assembly 7 includes a first fixing plate 701 and a second fixing plate 702, and the first fixing plate 701 and the second fixing plate 702 are arranged opposite to each other. Fixing holes are provided at the opposite positions of the first fixing plate 701 and the second fixing plate 702. The two ends of the roller 8 are respectively located in the fixing holes and the outer edge of the roller 8 extends out of the first fixing plate 701 and the second fixing plate 702, which facilitates the contact and cleaning of the outer surface of the roller 8 with the conveying assembly and the cleaning assembly. A fixing rod 703 is provided between two adjacent rollers 8. A fixing brush 704 is installed on the fixing rod 703 and the outer edge of the fixing brush 704 contacts the outer surface of the roller 8.

[0061] like Figure 1 As shown, in some embodiments, the feeding assembly 1 includes a feeding support frame 103, on which a feeding drive shaft 102 is mounted. Multiple feeding drive shafts 102 are evenly spaced on the feeding support frame 103. A feeding drive belt 101 is sleeved on the feeding drive shaft 102. The feeding drive shaft 102 is also connected to a first power device, which is usually a motor. After the motor is started, it pushes the roller fixing assembly 7 to move via the feeding drive shaft 102 and the feeding drive belt 101.

[0062] like Figure 1 As shown, in another embodiment, the impurity removal component 2 includes an impurity removal box 206 located at the output end of the feeding component 1. A first conveying component 208 is installed inside the impurity removal box 206. The first conveying component 208 can have the same structure as the feeding component 1 and has a conveyor belt with multiple uniformly raised cleaning points. The raised cleaning points not only drive the roller 8 to rotate and move forward but also clean the surface of the roller 8. A first telescopic component 202 is installed at the upper end of the impurity removal box 206. The first telescopic component 202 can be a telescopic cylinder or a telescopic hydraulic cylinder. An impurity removal plate 204 is installed at the output end of the first telescopic component 202. A second power device 203 and multiple uniformly arranged first rotating brush assemblies 205 are installed on the impurity removal plate 204. The second power device 203 can be a motor, which drives the first rotating brush assemblies 205 to rotate.

[0063] To ensure the smooth up-and-down movement of the impurity removal plate 204, first sliders 201 are installed at both ends of the impurity removal plate 204. A first slide rail that cooperates with the first sliders 201 is installed on the side wall of the impurity removal box 206. The first slide rail is vertically set. A dust collection box 207 is located on the lower side of the impurity removal plate 204. The dust collection box 207 is connected to a negative pressure fan 210 through a negative pressure suction nozzle 209. Under the action of the negative pressure fan 210, the negative pressure suction nozzle 209 sucks the impurities cleaned by the first rotating brush assembly 205 into the impurity collection box.

[0064] Since the cleaning direction of the fixed brush 704 is the tangential direction of the outer edge of the roller 8, and the cleaning direction of the first rotating brush assembly 205 is the axial direction of the roller 8, the fiber threads wrapped around the surface of the roller 8 break under the action of cleaning forces in different directions, thereby improving the cleaning efficiency of the roller surface.

[0065] like Figure 1 As shown, in some embodiments, the cleaning assembly 3 includes a cleaning tank 309, which is located at the output end of the impurity removal assembly 2. The fibers wound on the surface of the roller 8 quickly soften and become brittle under the action of the agent and hot water, facilitating subsequent cleaning. Specifically, a second conveying assembly 310 is installed inside the cleaning tank 309. The second conveying assembly 310 can adopt the same structure as the feeding assembly 1, and it has a conveyor belt with multiple uniformly raised cleaning points. A second telescopic assembly 302 is installed at the upper end of the cleaning tank 309. The second telescopic assembly 302 can be a telescopic cylinder or a telescopic hydraulic cylinder. A cleaning plate 304 is installed at the output end of the second telescopic assembly 302. A third power device 303 and a second rotating brush assembly 306 are installed on the cleaning plate 304. The third power device 303 drives the second rotating brush assembly 306 to rotate. Second sliders 305 are installed at both ends of the cleaning plate 304. A second slide rail that cooperates with the second sliders 305 is installed on the side wall of the cleaning tank 309, and the second slide rail is vertically arranged.

[0066] A warm water tank 301 is also installed on the cleaning plate 304. The warm water tank 301 is filled with warm water and cleaning agents, such as alkaline cleaning agents like sodium hydroxide or sodium carbonate, or cellulase cleaning agents. This quickly softens and brittles the fibers, reducing their overall strength. Multiple spray nozzles 307 are also installed on the underside of the cleaning plate 304. The spray nozzles 307 are connected to the warm water tank 301. The hot water and cleaning agents from the warm water tank 301 are sprayed onto the surface of the roller 8 through the spray nozzles 307 to soften the fibers, facilitating subsequent rapid cleaning.

[0067] To reduce chemical residue, a cleaning water tank is also installed on the cleaning plate 304. The cleaning water tank is filled with purified water and is connected to a cleaning nozzle. The cleaning nozzle is installed below the cleaning plate 304 and near the end of the cleaning tank 309.

[0068] like Figure 1As shown in the embodiment, the drying component 4 includes a drying chamber 404, located at the output end of the cleaning component 3. A third conveying component 406 is installed inside the drying chamber 404. A drying fan 401 is installed at the top of the drying chamber 404. The output end of the drying fan 401 is connected to an air outlet 402 and an air nozzle 403, located directly above the third conveying component 406. The drying fan 401 operates by blowing air, and a high-temperature, low-humidity drying airflow is ejected from the air outlet 402 and the air nozzle 403, acting on the surface of the roller 8 to evaporate all moisture and restore the roller to a dry state. To prevent wastewater dripping during the cleaning process, wastewater collection tanks 405 are provided on the lower side of both the cleaning chamber 309 and the drying chamber 404 to collect wastewater and keep the inside of the chambers clean.

[0069] The discharge assembly 5 includes a discharge support frame 501, a discharge drive shaft 502 is mounted on the discharge support frame 501, a discharge drive belt 503 is sleeved on the discharge drive shaft 502, and the discharge drive shaft 502 is also connected to a fourth power device.

[0070] In other embodiments, a material bottle is also installed on the discharge assembly 5. The material bottle is filled with a preservative and has a discharge hole. After the preservative is dripped onto the surface of the roller 8, it is evenly coated on the surface of the roller 8 under the action of the fixed brush 704 and the discharge transmission belt 503.

[0071] like Figure 1 As shown in the embodiment, the stacking component 6 includes a stacking pallet 601, which is located at the output end of the discharge component 5. The stacking pallet 601 is mounted on the scissor lift component 602, which is mounted on the moving component 603. The moving component 603 is also equipped with a fifth power device 604 for driving the scissor lift component 602 to move up and down. The fifth power device 604 drives the scissor lift component 602 to move, causing the stacking pallet 601 to rise or fall, and stacking the roller fixing components 7 in sequence to form a neat stack, waiting for subsequent transfer and warehousing.

[0072] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0073] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A fully automatic cleaning roller device, characterized in that: include A roller fixing assembly (7) is used to fix a roller (8); The feeding assembly (1) is used to convey the roller fixing assembly (7) backward. The output end of the feeding assembly (1) is sequentially provided with a cleaning assembly (2), a washing assembly (3), a drying assembly (4), a discharge assembly (5), and a stacking assembly (6).

2. The fully automatic cleaning roller device according to claim 1, characterized in that: The roller fixing assembly (7) includes a first fixing plate (701) and a second fixing plate (702). The first fixing plate (701) and the second fixing plate (702) are provided with fixing holes at their relative positions. The two ends of the roller (8) are respectively located in the fixing holes and the outer edge of the roller (8) extends out of the first fixing plate (701) and the second fixing plate (702). A fixing rod (703) is provided between two adjacent rollers (8), and a fixing brush (704) is installed on the fixing rod (703).

3. The fully automatic cleaning roller device according to claim 1, characterized in that: The feeding assembly (1) includes a feeding support frame (103), on which a feeding drive shaft (102) is mounted. The feeding drive shaft (102) is fitted with a feeding drive belt (101), and the feeding drive shaft (102) is also connected to a first power device.

4. The fully automatic cleaning roller device according to claim 1, characterized in that: The impurity removal component (2) includes an impurity removal box (206), which is located at the output end of the feeding component (1), and a first conveying component (208) is installed inside the impurity removal box (206); The upper end of the impurity removal box (206) is equipped with a first telescopic component (202), and the output end of the first telescopic component (202) is equipped with an impurity removal plate (204). The impurity removal plate (204) is equipped with a second power device (203) and a first rotating brush assembly (205). The second power device (203) drives the first rotating brush assembly (205) to rotate. The impurity removal plate (204) is equipped with first sliders (201) at both ends, and the side wall of the impurity removal box (206) is equipped with a first slide rail that cooperates with the first sliders (201), and the first slide rail is vertically arranged.

5. The fully automatic cleaning roller device according to claim 4, characterized in that: The dust collection box (207) is located on the lower side of the dust removal plate (204), and the dust collection box (207) is connected to a negative pressure fan (210) through a negative pressure suction nozzle (209).

6. The fully automatic cleaning roller device according to claim 1, characterized in that: The cleaning component (3) includes a cleaning tank (309), which is located at the output end of the impurity removal component (2), and a second conveying component (310) is installed inside the cleaning tank (309). The cleaning tank (309) is equipped with a second telescopic component (302) at its upper end. A cleaning plate (304) is installed at the output end of the second telescopic component (302). A third power device (303) and a second rotating brush assembly (306) are installed on the cleaning plate (304). The third power device (303) drives the second rotating brush assembly (306) to rotate. The cleaning plate (304) is equipped with second sliders (305) at both ends, and the cleaning box (309) is equipped with a second slide rail that cooperates with the second sliders (305) on the side wall. The second slide rail is vertically arranged. A warm water tank (301) is also installed on the cleaning plate (304), and a plurality of water spray nozzles (307) are also installed on the lower side of the cleaning plate (304), and the water spray nozzles (307) are connected to the warm water tank (301).

7. The fully automatic cleaning roller device according to claim 6, characterized in that: The drying assembly (4) includes a drying chamber (404), which is located at the output end of the cleaning assembly (3), and a third conveying assembly (406) is installed inside the drying chamber (404); A drying fan (401) is installed on the upper end of the drying chamber (404). The output end of the drying fan (401) is connected to an air outlet (402) and an air nozzle (403). The air outlet (402) and the air nozzle (403) are located directly above the third conveying assembly (406).

8. The fully automatic cleaning roller device according to claim 7, characterized in that: Both the cleaning box (309) and the drying box (404) have a wastewater collection box (405) on their lower sides.

9. The fully automatic cleaning roller device according to claim 1, characterized in that: The discharge assembly (5) includes a discharge support frame (501), on which a discharge drive shaft (502) is mounted. The discharge drive shaft (502) is fitted with a discharge drive belt (503), and the discharge drive shaft (502) is also connected to a fourth power device.

10. The fully automatic cleaning roller device according to claim 1, characterized in that: The stacking assembly (6) includes a stacking pallet (601) located at the output end of the discharge assembly (5). The stacking pallet (601) is mounted on a scissor lift assembly (602), which is mounted on a moving assembly (603). The moving assembly (603) is also equipped with a fifth power device (604) for driving the scissor lift assembly to lift.

Citation Information

Patent Citations

  • Textile yarn winding leather roller cleaning machine

    CN112048790A