Textile cleaning device
By combining a cleaning roller and an adsorption mechanism in a textile cleaning device, the problems of poor cleaning effect and low efficiency of existing devices are solved, and efficient removal of lint, hair, thread ends and other debris is achieved. The device is adaptable to different textile thicknesses and improves cleaning effect and efficiency.
Patent Information
- Application Number
- CN202422827560.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Existing textile cleaning devices have the problem of poor cleaning effect and low efficiency when removing debris such as lint, hair, and thread ends from the surface of clothing. In particular, when the clothing has wrinkles, the debris is difficult to be effectively removed.
The design combines a cleaning roller with an adsorption mechanism. The cleaning roller scrapes away debris through friction, the adsorption mechanism sucks impurities through the negative pressure port, and the filter screen blocks the textiles from entering the adsorption mechanism. The spacing between the cleaning rollers is adjusted to adapt to textiles of different thicknesses to ensure the cleaning effect.
It improves the cleaning effect and efficiency of textiles, prevents debris from re-attaching, is suitable for textiles of different thicknesses, and maintains the cleanliness of the working environment.
Smart Images

Figure CN223329592U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of textile processing equipment, in particular to a textile cleaning device. Background Art
[0002] Textiles are products made through textile processing, including spinning, weaving, and finished goods, including clothing. The clothing production process inevitably involves cutting, which produces a large amount of debris such as lint, wool, and thread. These debris are light and small, often adhering to the outer surface of clothing, affecting the sense of sight. To ensure clothing quality, clothing must be cleaned before leaving the factory to remove these debris.
[0003] The existing cleaning device includes an equipment body and an adsorption mechanism. The equipment body forms a debris removal space and a suction port. The adsorption mechanism is connected to the debris removal space formed by the equipment body. The adsorption mechanism sucks the air in the debris removal space to form a negative pressure at the suction port. In this way, the fluff, hair, thread ends and other debris attached to the part of the clothes that is close to the suction port can be separated from the clothes under the action of negative pressure. Due to the limited power of the adsorption mechanism, the adsorption force between some debris and the clothes is too large, making it impossible for these debris to be separated from the clothes. In addition, if the clothes placed in the debris removal space have wrinkles, the debris hidden in the wrinkled area cannot be adsorbed because it is blocked by the fabric of the clothes. Therefore, the staff needs to first lay each piece of clothing flat and wrinkle-free and place it in the debris removal space, which is bound to reduce the cleaning efficiency. In summary, the existing cleaning device has the disadvantages of poor cleaning effect and low cleaning efficiency. Utility Model Content
[0004] In order to solve the above technical problems and achieve at least one advantage of the present invention, the present invention provides a textile cleaning device, comprising:
[0005] An equipment body, the equipment body comprising an equipment body, the equipment body forming a debris removal space and an inlet and outlet communicating with the debris removal space, and textiles extending into or out of the debris removal space through the inlet and outlet;
[0006] A cleaning mechanism, the cleaning mechanism includes at least one cleaning roller and a driving member, the cleaning roller is located in the debris removal space and close to the inlet and outlet, the outer peripheral wall of the cleaning roller has a predetermined friction force, the outer peripheral wall of the cleaning roller contacts the surface of the textile extending from the inlet and outlet into the debris removal space, the cleaning roller is rotationally connected to the driving member, the cleaning roller is driven by the driving member to drive the textile extending from the inlet and outlet into the debris removal space toward the direction of deepening into the debris removal space and scrape the surface of the textile moving through the outer peripheral wall of the cleaning roller.
[0007] According to one embodiment of the present invention, the textile cleaning device also includes an adsorption mechanism, and the equipment body also forms a negative pressure port connected to the impurity removal space, the adsorption mechanism has an air inlet and an air outlet, the air inlet of the adsorption mechanism is connected to the negative pressure port, and the adsorption mechanism is configured to guide the airflow from the air inlet to the air outlet.
[0008] According to one embodiment of the present invention, the device body further includes a filter, which is installed on the device body to form the negative pressure port, and the filter is used to prevent textiles from entering the adsorption mechanism from the negative pressure port.
[0009] According to one embodiment of the present invention, the device body includes a box body and a cover body, the box body forms the inlet and outlet, the impurity removal space and the negative pressure port, the device body also forms a taking port connected to the impurity removal space on the box body, and the cover body is installed on the box body to cover or open the taking port.
[0010] According to an embodiment of the present invention, the device body further includes a shielding member, which is installed on the device body and forms a hidden cavity, and the adsorption mechanism is installed in the hidden cavity.
[0011] According to an embodiment of the present invention, the cleaning mechanism is provided with a cleaning roller, and the outer peripheral wall of the cleaning roller contacts the lower surface of the textile extending into the impurity removal space from the inlet and outlet.
[0012] According to one embodiment of the present invention, the cleaning mechanism is provided with two cleaning rollers, and the two cleaning rollers are spaced apart in an upper and lower manner. The driving component drives the cleaning roller located above to rotate counterclockwise and the cleaning roller located below to rotate clockwise. The outer peripheral walls of the two cleaning rollers arranged above and below respectively contact the upper and lower surfaces of the textiles extending into the impurity removal space from the inlet and outlet.
[0013] According to one embodiment of the present invention, the box body includes a fixed part and two pairs of movable parts, the two end portions of each cleaning roller are respectively installed on a pair of two movable parts, the cleaning roller is rotatably installed on the movable parts, the fixed part forms a limiting guide rail, the limiting guide rail extends vertically, and all the movable parts are installed on the limiting guide rail so as to be slidable vertically.
[0014] According to one embodiment of the present invention, the textile cleaning device also includes two position adjustment parts, each of the position adjustment parts forms two belt-moving parts, the outer peripheral walls of the two belt-moving parts provided with the same position adjustment part form external threads with opposite thread directions, and the two movable parts located on the same side are respectively threadedly installed on the two belt-moving parts of one position adjustment part.
[0015] According to one embodiment of the present invention, the driving component includes a driving component, a transmission belt and a driving wheel group, the driving wheel group includes two driving wheels and two steering wheels, the two driving wheels and the two steering wheels are arranged on the same side, the two driving wheels are respectively installed on the ends of the two cleaning rollers, any one of the two driving wheels and the two steering wheels is driven to be connected to the driving component, the transmission belt is wound around the outer periphery of each of the two driving wheels and the two steering wheels, and one of the driving wheels and the two steering wheels is in contact with the inner wall of the transmission belt, and the other driving wheel is in contact with the outer wall of the transmission belt, and any one of the driving wheels and the two steering wheels forms a triangular structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 The figure shows a structural schematic diagram of the textile cleaning device of the present invention.
[0017] Figure 2 A cross-sectional view at a certain angle of the textile cleaning device of the present invention is shown.
[0018] Figure 3 A cross-sectional view of the textile cleaning device of the present invention is shown at another angle.
[0019] Figure 4 Shown Figure 3 Schematic diagram of the structure of part A. DETAILED DESCRIPTION
[0020] The following description is intended to disclose the present invention and enable those skilled in the art to implement the present invention. The preferred embodiments described below are provided for illustrative purposes only, and those skilled in the art will readily appreciate other obvious variations. The basic principles of the present invention as defined in the following description may be applied to other embodiments, variations, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the present invention.
[0021] Those skilled in the art should understand that, in the disclosure of the present invention, the terms "longitudinal", "transverse", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicating the orientation or position relationship are based on the orientation or position relationship shown in the accompanying drawings, which are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms cannot be understood as limiting the present invention.
[0022] It is to be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the elements may be multiple, and the term "one" should not be understood as a limitation on the quantity.
[0023] refer to Figures 1 to 4 The textile cleaning device according to a preferred embodiment of the present invention will be described in detail below. The textile cleaning device includes an apparatus body 10 and a cleaning mechanism 20 .
[0024] The device body 10 includes a device body 11 , which forms a debris removal space 1101 and an inlet and outlet 1102 communicating with the debris removal space 1101 , and textiles can be extended into or withdrawn from the debris removal space 1101 through the inlet and outlet 1102 .
[0025] The cleaning mechanism 20 includes at least one cleaning roller 21 and a rotating member 22. The cleaning roller 21 is mounted on the device body 11, and is located in the impurity removal space 1101 and near the inlet and outlet 1102. The outer peripheral wall of the cleaning roller 21 has a predetermined frictional force, and the outer peripheral wall of the cleaning roller 21 contacts the surface of the textile extending into the impurity removal space 1101 from the inlet and outlet 1102. The cleaning roller 21 is rotationally connected to the rotating member 22. The cleaning roller 21 is rotated by the rotating member 22, thereby driving the textile extending into the impurity removal space 1101 from the inlet and outlet 1102 to move deeper into the impurity removal space 1101. In this way, when the cleaning roller 21 is driven to rotate by the driving member 22, the cleaning roller 21 drives the textile to move deeper into the impurity removal space 1101 through friction. At the same time, the fluff, hair, thread ends and other debris attached to the surface of the textile are scraped off one by one by the cleaning roller 21 in the process of moving through the outer wall of the cleaning roller 21 to clean the textile.
[0026] In one example, the cleaning roller 21 is implemented as a brush roller.
[0027] Furthermore, the textile cleaning device further includes an adsorption mechanism 30 .
[0028] The device body 11 also forms a negative pressure port 1103 in communication with the impurity removal space 1101. The adsorption mechanism 30 has an air inlet 301 and an air outlet 302. The air inlet 301 of the adsorption mechanism 30 is in communication with the negative pressure port 1103. The adsorption mechanism 30 is configured to direct the airflow from the air inlet 301 to the air outlet 302, so that the adsorption mechanism 30 extracts the gas in the impurity removal space 1101 through the negative pressure port 1103 to form a negative pressure in the impurity removal space 1101. In this way, when the adsorption mechanism 30 is in operation, the airflow flows from the inlet and outlet 1102 through the impurity removal space 1101 to the negative pressure port 1103, and is finally discharged from the air outlet 302 through the air inlet 301. That is, impurities scraped from the surface of the textile and adhering to the surface of the cleaning roller 21 and floating in the impurity removal space 1101 are discharged from the negative pressure port 1103 through the air inlet 301 and out the air outlet 302 under the action of negative pressure, thereby cleaning the cleaning roller 21 and the impurity removal space 1101 and preventing lint, hair, lint, and other impurities from re-adhering to the surface of the cleaned textile. It is also understood that textiles that have passed through the surface of the cleaning roller 21 and penetrated into the impurity removal space 1101 can be cleaned again under the action of negative pressure to ensure thorough cleaning.
[0029] It is worth mentioning that a collecting bag is detachably installed at one end of the adsorption mechanism 30 forming the air outlet 302, and the collecting bag allows air flow to pass through. In this way, the debris sucked by the adsorption mechanism 30 can eventually fall into the collecting bag for collection, thereby preventing impurities from being discharged into the air, so as to maintain the cleanliness of the working environment around the textile cleaning device and prevent debris in the environment from adhering to the textiles again.
[0030] Preferably, the device body 10 further includes a filter 12. The filter 12 is installed on the device body 11 to form the negative pressure port 1103, and the air flow passes through the filter holes of the filter 12. The filter 12 is used to prevent the textile from entering the adsorption mechanism 30 from the negative pressure port 1103. It is understandable that when the staff holds one end of the textile to extend the other end of the textile from the inlet and outlet 1102 into the impurity removal space 1101, the textile may escape the control of the staff under the combined action of the negative pressure and the friction of the cleaning roller 21 and completely enter the impurity removal space 1101. At this time, the textile is blocked by the filter 12 and retained in the impurity removal space 1101, avoiding being entangled in the interior of the adsorption mechanism 30, thereby protecting the textile.
[0031] In one example, the adsorption mechanism 30 is implemented to include an air pump.
[0032] Preferably, the device body 11 includes a housing 111 and a cover 112. The housing 111 defines the inlet and outlet 1102, the impurity removal space 1101, and the negative pressure port 1103. The device body 11 also defines a retrieval port 1104 in communication with the impurity removal space 1101. The cover 112 is mounted to the housing 111 to cover or open the retrieval port 1104. When the cover 112 is opened, a worker can retrieve textiles that have fallen into the impurity removal space 1101 through the retrieval port 1104.
[0033] Furthermore, the device body 10 further includes a shielding member 13. The shielding member 13 is mounted on the device body 11 and forms a hidden cavity 1301. The adsorption mechanism 30 is mounted in the hidden cavity 1301, thereby improving the safety and aesthetics of the textile cleaning device.
[0034] In one embodiment, the cleaning mechanism 20 includes a cleaning roller 21, the outer peripheral wall of which contacts the lower surface of the textile inserted into the impurity removal space 1101 through the inlet and outlet 1102. After the cleaning roller 21 has finished cleaning the lower surface of the textile, the worker removes the textile and turns it upside down. The textile is then inserted into the impurity removal space 1101 again through the inlet and outlet 1102 in an upside-down position, allowing the cleaning roller 21 to clean the upper surface of the textile. As an example, the driving member 22 is implemented as a motor.
[0035] In another embodiment, the cleaning mechanism 20 includes two cleaning rollers 21 spaced apart from one another. The driving member 22 drives the upper cleaning roller 21 to rotate counterclockwise and the lower cleaning roller 21 to rotate clockwise. The outer peripheral walls of the upper and lower cleaning rollers 21 contact the upper and lower surfaces of the textile extending from the inlet and outlet 1102 into the impurity removal space 1101, respectively. In this way, the two cleaning rollers 21 can simultaneously clean the upper and lower surfaces of the textile, thereby improving cleaning efficiency compared to the previous embodiment. Preferably, the rotation axes of the two cleaning rollers 21 are parallel.
[0036] In one example, the two cleaning rollers 21 are fixedly and rotatably mounted on the housing 111 .
[0037] As a variation of the previous example, the two cleaning rollers 21 are mounted on the housing 111 in an adjustable manner. Specifically, the housing 111 includes a fixed portion 1111 and two pairs of movable portions 1112. The two ends of each cleaning roller 21 are respectively mounted on a pair of two movable portions 1112, and the cleaning roller 21 is rotatably mounted on the movable portions 1112. The fixed portion 1111 forms a limiting guide rail 11111, which extends vertically, and all the movable portions 1112 are mounted on the limiting guide rail 11111 so as to be slidable vertically.
[0038] Furthermore, the textile cleaning device further includes two position adjustment members 40 .
[0039] Each position adjustment member 40 is formed with two belt-moving portions 41, and the outer peripheral walls of the two belt-moving portions 41 provided on the same position adjustment member 40 are formed with external threads with opposite thread directions. The two movable portions 1112 located on the same side are respectively threadedly mounted on the two belt-moving portions 41 of the position adjustment member 40. When the position adjustment member 40 is rotated in any direction, the two pairs of movable portions 1112 are guided by the limiting guide rail 11111 and move vertically toward or away from each other, so that the two pairs of movable portions 1112 drive the two cleaning rollers 21 vertically toward or away from each other, thereby adjusting the spacing between the two cleaning rollers 21. It is understood that different types of textiles have different thicknesses. The staff can adjust the spacing between the two cleaning rollers 21 according to the thickness of the textiles to be cleaned so that textiles of different thicknesses maintain contact with the outer peripheral walls of the two cleaning rollers 21 during the cleaning process, so that the textile cleaning device can be applied to different types of textiles and ensure the cleaning effect, thereby improving the practicality of the textile cleaning device.
[0040] As an example, the position adjustment member 40 is implemented to include a bidirectional lead screw.
[0041] In a preferred embodiment, the driving member 22 includes a driving component 221, a transmission belt 222, and a transmission wheel assembly 223. The transmission wheel assembly 223 includes two driving wheels 2231 and two steering wheels 2232. The two driving wheels 2231 and the two steering wheels 2232 are arranged on the same side, and the two driving wheels 2231 are respectively mounted on the ends of the two cleaning rollers 21. Either the two driving wheels 2231 or the two steering wheels 2232 are rotatably connected to the driving component 221. The transmission belt 222 is wound around the outer peripheries of the two driving wheels 2231 and the two steering wheels 2232, and one of the driving wheels 2231 and the two steering wheels 2232 is in contact with the inner wall of the transmission belt 222, while the other driving wheel 2231 is in contact with the outer wall of the transmission belt 222. Any driving wheel 2231 and the two steering wheels 2232 form a triangular structure. The driving wheel 2231 or the steering wheel 2232 connected to the driving component 221 is driven to rotate by the driving component 221, and the remaining driving wheel 2231 and the steering wheel 2232 are driven to rotate via the transmission belt 222, so that the two cleaning rollers 21 rotate towards each other.
[0042] That is to say, when the position adjustment member 40 rotates in any direction, the two pairs of movable parts 1112 approach each other or move away from each other, and the two driving wheels 2231 installed on the two cleaning rollers 21 move away from each other or approach each other. The driving wheel 2231 located on the inner ring of the transmission belt 222 relaxes or tightens the transmission belt 222, while the driving wheel 2231 located on the outer ring of the transmission belt 222 tightens or loosens the transmission belt 222, so that the transmission belt 222 remains in a tense state.
[0043] As an example, the rotation driving component 221 is implemented to include a motor.
[0044] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are provided for illustrative purposes only and do not limit the present invention. The advantages of the present invention have been fully and effectively realized. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from the principles described.
Claims
1. A textile cleaning device, characterized in that The textile cleaning device comprises: An equipment body, the equipment body comprising an equipment body, the equipment body forming a debris removal space and an inlet and outlet communicating with the debris removal space, and textiles extending into or out of the debris removal space through the inlet and outlet; A cleaning mechanism, the cleaning mechanism includes at least one cleaning roller and a driving member, the cleaning roller is located in the debris removal space and close to the inlet and outlet, the outer peripheral wall of the cleaning roller has a predetermined friction force, the outer peripheral wall of the cleaning roller contacts the surface of the textile extending from the inlet and outlet into the debris removal space, the cleaning roller is rotationally connected to the driving member, the cleaning roller is driven by the driving member to drive the textile extending from the inlet and outlet into the debris removal space toward the direction of deepening into the debris removal space and scrape the surface of the textile moving through the outer peripheral wall of the cleaning roller.
2. The textile cleaning device according to claim 1, characterized in that: The textile cleaning device also includes an adsorption mechanism, and the equipment body also forms a negative pressure port connected to the impurity removal space. The adsorption mechanism has an air inlet and an air outlet. The air inlet of the adsorption mechanism is connected to the negative pressure port. The adsorption mechanism is configured to guide the airflow from the air inlet to the air outlet.
3. The textile cleaning device according to claim 2, characterized in that: The device body further includes a filter screen, which is installed on the device body to form the negative pressure port, and the filter screen is used to prevent textiles from entering the adsorption mechanism from the negative pressure port.
4. The textile cleaning device according to claim 3, characterized in that: The device body includes a box body and a cover body, the box body forms the inlet and outlet, the impurity removal space and the negative pressure port, the device body also forms a taking port connected to the impurity removal space on the box body, and the cover body is installed on the box body to cover or open the taking port.
5. The textile cleaning device according to claim 4, characterized in that: The device body further includes a shielding member, which is installed on the device body and forms a hidden cavity, and the adsorption mechanism is installed in the hidden cavity.
6. The textile cleaning device according to claim 5, characterized in that: The cleaning mechanism is provided with a cleaning roller, and the outer peripheral wall of the cleaning roller contacts the lower surface of the textile extending into the impurity removal space from the inlet and outlet.
7. The textile cleaning device according to claim 5, characterized in that: The cleaning mechanism is provided with two cleaning rollers, and the two cleaning rollers are spaced apart in an upper and lower manner. The driving component drives the cleaning roller located above to rotate counterclockwise and the cleaning roller located below to rotate clockwise. The outer peripheral walls of the two cleaning rollers arranged above and below respectively contact the upper and lower surfaces of the textiles extending into the impurity removal space from the inlet and outlet.
8. The textile cleaning device according to claim 7, characterized in that: The box body includes a fixed part and two pairs of movable parts. The two ends of each cleaning roller are respectively installed on a pair of two movable parts. The cleaning roller is rotatably installed on the movable part. The fixed part forms a limiting guide rail, and the limiting guide rail extends vertically. All the movable parts are installed on the limiting guide rail so as to be slidable vertically.
9. The textile cleaning device according to claim 8, characterized in that: The textile cleaning device also includes two position adjustment parts, each of which forms two belt-moving parts. The outer peripheral walls of the two belt-moving parts provided on the same position adjustment part form external threads with opposite thread directions, and the two movable parts located on the same side are respectively threadedly installed on the two belt-moving parts of a position adjustment part.
10. The textile cleaning device according to claim 9, characterized in that: The driving component includes a driving component, a transmission belt and a driving wheel group, the driving wheel group includes two driving wheels and two steering wheels, the two driving wheels and the two steering wheels are arranged on the same side, the two driving wheels are respectively installed at the ends of the two cleaning rollers, any one of the two driving wheels and the two steering wheels is driven to be connected to the driving component, the transmission belt is wound around the outer periphery of each of the two driving wheels and the two steering wheels, and one of the driving wheels and the two steering wheels is in contact with the inner wall of the transmission belt, and the other driving wheel is in contact with the outer wall of the transmission belt, and any one of the driving wheels and the two steering wheels forms a triangular structure.