Wash towel with physical adsorption effect and preparation device

By setting up multiple sections of the wash towel units, through holes, horizontal embosses and longitudinal embosses on the wash towel, the existing wash towels are solved by insufficient friction and increased softness after absorbing water, and more efficient dirt cleaning and water adsorption effects are achieved.

CN120167818APending Publication Date: 2025-06-20SUZHOU KEFAN COSMETICS CO LTD
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Patent Information

Application Number
CN202510545023.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

The existing facial towels are insufficient in use, making it difficult to effectively remove oil, dirt and aging keratinocytes from the face. The softness increases after absorbing water, making it unable to effectively absorb dirt, resulting in low cleaning efficiency.

Method used

A face wash towel with physical adsorption effect was designed. By setting up multiple face wash towel units, linearly distributed through holes, equidistantly distributed transverse and longitudinal convex patterns on the main body of the face wash towel, an oral font structure is formed to improve friction and water adsorption capacity.

Benefits of technology

By improving friction and water adsorption capacity, face wash towels can more efficiently erase facial dirt and improve cleaning results. At the same time, the detection mechanism uses the lighting components and the lighting detection components to detect the deformation of the face towel in real time to ensure product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a face towel with a physical adsorption effect and a preparation device, and relates to the technical field of face towel processing. Comprising a face towel body, multiple sections of face towel units are arranged on the surface of the face towel body, linearly-distributed through holes are formed in the connecting positions of the adjacent face towel units, the two face towel units can be easily torn off and separated based on the through holes, and transverse protruding lines and longitudinal protruding lines which are distributed at equal intervals are arranged on each face towel unit. The longitudinal raised grains and the transverse raised grains are vertically arranged, and every two adjacent longitudinal raised grains and every two adjacent transverse raised grains are matched to form a square-shaped structure of which the end parts are not connected. By arranging the structures such as the longitudinal convex lines and the transverse convex lines, the friction force with the face can be improved, so that dirt on the face can be wiped more efficiently, and as the longitudinal convex lines and the transverse convex lines form the square-shaped structure, water can be limited on the inner side of the square-shaped structure as much as possible to a certain extent and can be better adsorbed on the face in the using process, so that the dirt on the face can be wiped more efficiently. And the use effect is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of facial towel processing, and particularly to a facial towel with a physical adsorption effect and a preparation device thereof. Background Art

[0002] As a convenient, hygienic and relatively mild facial cleansing tool, facial towels have gradually gained the favor of consumers. It does not require the additional use of chemical cleaners such as facial cleansers. Just dip it in clean water and gently wipe the face to achieve the cleaning effect, reducing the irritation of chemical substances to the skin and being more suitable for people with various skin types. However, there are still some deficiencies in the use of existing ordinary facial towels. For example, some facial towel materials are relatively smooth, with less friction against the face, making it difficult to effectively remove facial oils, dirt, and aging keratinocytes during the wiping process, resulting in an unsatisfactory cleaning effect. Moreover, when the facial towel absorbs water, it easily becomes too soft and cannot well adsorb dirt when attached to the face, resulting in low cleaning efficiency.

[0003] In terms of detection, in the traditional production process of facial towels, the control of product quality often relies on manual visual inspection, which is not only inefficient but also prone to missed inspections and misinspections.

[0004] After retrieval, the application solution with the Chinese patent application number CN202311206778.3 discloses a new type of facial towel, including a facial towel main body. The upper surface of the facial towel main body is provided with an upper surface layer, the lower surface of the facial towel main body is provided with a folding line, the surface of the upper surface layer is provided with a folding line, side protrusions are connected to the outer wall of the facial towel main body, through holes and plant fiber knitting lines are arranged inside the facial towel main body, a plant fiber layer A is arranged on the outer layer of the facial towel main body, a bamboo fiber layer A is arranged below the plant fiber layer A, a non-woven fabric layer A is connected to one side of the bamboo fiber layer A, a sponge layer is arranged at the bottom of the non-woven fabric layer A, a non-woven fabric layer B is connected to one side of the sponge layer, a bamboo fiber layer B is arranged at the bottom of the non-woven fabric layer B, and a plant fiber layer B is arranged below the bamboo fiber layer B. The facial towel in the above literature has the following deficiencies: The structure is relatively flat. Although it has the function of water accumulation, it cannot better assist in removing facial stains.

[0005] After retrieval, the application solution with the Chinese patent application number CN202022686225.0 discloses a wrinkle auxiliary detection device for decorative paper, including a housing. Inside the housing, there are two rotationally stable blocks rotatably connected. On the front of the right rotationally stable block, there is an externally connected block rotatably connected. Between the two rotationally stable blocks, there is a main body in transmission connection. Inside the housing, there is a connection block fixedly connected, and on the right side of the connection block, there is a spring box fixedly connected. The wrinkle auxiliary detection device in the above-mentioned document has the following deficiencies: Although it has an analysis ability, in the case where the product itself has wrinkles and protrusions, it cannot detect well and cannot be well applied to the detection of non-woven fabrics with embossed patterns. Summary of the Invention

[0006] The purpose of the present invention is to solve the shortcomings existing in the prior art and propose a facial tissue with a physical adsorption effect and a preparation device therefor.

[0007] To achieve the above purpose, the present invention adopts the following technical solutions:

[0008] A facial tissue with a physical adsorption effect includes a facial tissue main body. On the surface of the facial tissue main body, there are multiple facial tissue units arranged. At the connection of adjacent facial tissue units, there are linearly distributed through holes. Based on the through holes, the two facial tissue units can be easily torn and separated. On each facial tissue unit, there are equidistantly distributed transverse ridges and longitudinal ridges, and the longitudinal ridges and transverse ridges are vertically arranged. Adjacent two longitudinal ridges and two transverse ridges cooperate to form a mouth-shaped structure with unconnected ends.

[0009] As a preferred embodiment of the present invention: The preparation process of the facial tissue includes the following steps:

[0010] S1: Inspection of non-woven fabric feeding;

[0011] S2: Loading the non-woven fabric onto the machine;

[0012] S3: Open through holes on the facial tissue main body through the preparation device and form transverse ridges and longitudinal ridges;

[0013] S4: Detection and processing;

[0014] S5: Folding of the non-woven fabric;

[0015] S6: Sorting and conveying;

[0016] S7: Bagging and sealing, inkjet coding treatment, and finished product inspection;

[0017] S8: Putting the product into the box and sealing the box;

[0018] S9: Stacking the products and storing them in the warehouse.

[0019] Preparation device for a facial cleansing towel with physical adsorption effect: comprising:

[0020] An opening mechanism for opening through holes in the main body of the facial cleansing towel;

[0021] A embossing mechanism for pressing longitudinal ridges and transverse ridges on the main body of the facial cleansing towel;

[0022] A detection mechanism for detecting whether the main body of the facial cleansing towel meets the processing requirements;

[0023] Among them, the detection mechanism includes:

[0024] A light illumination component, which is arranged below the main body of the facial cleansing towel and is directly below the movement path of the through holes. Multiple output ends of the light illumination component correspond to the linearly distributed through holes one by one;

[0025] A detection frame, on which a light illumination detection component is installed, and the light illumination detection component is directly above the light illumination component.

[0026] As a preferred embodiment of the present invention: A first mounting frame is arranged below the main body of the facial cleansing towel. A vertical frame is slidably connected to the first mounting frame, and one inner wall of the first mounting frame is threadedly connected with a fixing knob for fixing the vertical frame.

[0027] As a preferred embodiment of the present invention: An auxiliary pressing wheel mechanism is arranged on the vertical frame. The auxiliary pressing wheel mechanism includes auxiliary pressing wheels, which are distributed in pairs. Two pairs of auxiliary pressing wheels are arranged on both sides of the main body of the facial cleansing towel, and the two auxiliary pressing wheels of each pair are located on the upper and lower sides of the edge of the main body of the facial cleansing towel; An auxiliary pressing wheel driving part for driving the movement of the auxiliary pressing wheels is installed on the vertical frame.

[0028] As a preferred embodiment of the present invention: The auxiliary pressing wheel driving part includes:

[0029] An auxiliary wheel driving motor, which is installed on the vertical frame through a bracket;

[0030] A driving gear, the shaft of which is in transmission connection with the output end of the auxiliary wheel driving motor;

[0031] Driven gears, which are distributed in pairs. The two driven gears of each pair are meshed with each other. One driven gear is meshed with the driving gear, and the two driven gears of each pair are respectively installed on the shafts of the two auxiliary pressing wheels.

[0032] As a preferred embodiment of the present invention: The embossing mechanism includes:

[0033] An embossing frame, on which an embossing wheel is rotatably mounted, and on the circumferential outer wall of the embossing wheel are adjustably mounted evenly distributed transverse convex plates; on the circumferential outer wall of the embossing wheel are arranged longitudinal arc convex strips arranged in pairs, and the longitudinal arc convex strips are arranged in a C-shaped distribution;

[0034] A rotating support part, wherein the rotating support part is installed on the embossing frame;

[0035] Rotation drive parts: two rotation drive parts are installed on the embossing frame and are used to drive the embossing wheel and the rotation support part to rotate.

[0036] As a preferred embodiment of the present invention, the rotating support part includes a supporting wheel, which is rotatably mounted on the embossing frame, and a transverse groove and a longitudinal groove are arranged on the outer wall of the supporting wheel, wherein the transverse groove is adapted to the position of the transverse convex plate, and the longitudinal groove is adapted to the position of the longitudinal arc-shaped convex strip;

[0037] The rotation driving unit comprises:

[0038] A rotation drive motor is installed on the embossing frame;

[0039] The output ends of the two rotating drive motors are connected to the shafts of the embossing wheel and the supporting wheel through the gear transmission assembly.

[0040] As a preferred embodiment of the present invention: the transverse convex plate is slidably connected to the embossing wheel, a ball head rod is fixed to one end of the transverse convex plate located in the embossing wheel, a plurality of inner brackets are fixed to the inner side of the face wash towel body, the ball head rod is slidably connected to the inner wall of the inner bracket, and the ball head rod and the inner bracket are connected by a spring;

[0041] A guide rod is fixed on one side of the embossing frame, and a mounting plate is slidably connected to the outer wall of the guide rod. An annular limiting cylinder is fixed on the outer side of the mounting plate. The annular limiting cylinder is a trumpet-shaped structure with a gradually increasing outer diameter, and the ball head rod slides on the outer wall of the annular limiting cylinder;

[0042] An adjusting screw is rotatably mounted on the embossing frame, a mounting plate is connected to the outer wall of the adjusting screw through threads, and a control motor for controlling the rotation of the adjusting screw is mounted on one side of the embossing frame.

[0043] As a preferred embodiment of the present invention: the hole opening mechanism includes:

[0044] A support frame, on which a support plate is mounted, and the face washcloth body passes through the top of the support plate;

[0045] An electric telescopic cylinder is installed on a support frame. A knife plate is fixed to the output end of the electric telescopic cylinder. A linearly distributed opening knife head is arranged at the bottom of the knife plate. A through opening adapted to the through hole is arranged on the support plate.

[0046] The beneficial effects of the present invention are:

[0047] 1. By providing structures such as longitudinal ridges and transverse ridges, the present invention can enhance the friction with the face, thereby more efficiently removing facial dirt. Since the longitudinal ridges and transverse ridges form a square-shaped structure, during use, it can also limit the water body inside the square-shaped structure to a certain extent as much as possible, better adsorbing to the face and improving the use effect.

[0048] 2. In the present invention, due to the need to generate longitudinal ridges and transverse ridges through the embossing mechanism by the detection mechanism, during pressing, it is easy to cause excessive deformation of the main body of the facial towel, resulting in the main body of the facial towel being skewed or overly wrinkled. This solution can use the through holes in the main body of the facial towel itself as features. Based on the light output of the light-emitting component, the light detection component can detect the light passing through the through holes in real time. If the main body of the facial towel is skewed or overly deformed, the abnormality can be detected in a timely manner based on the light detection data.

[0049] 3. By providing an embossing wheel and a rotating support part, the present invention can operate based on the rotation driving part. Using the transverse convex plate and the longitudinal arc-shaped convex strip, transverse ridges and longitudinal ridges are formed on the surface of the main body of the facial towel. Each time the embossing wheel rotates one week, the processing of one facial towel unit is completed. Moreover, the C-shaped distributed longitudinal arc-shaped convex strips are adapted to the through holes, enabling the connection part of two facial towel units to pass through orderly, realizing continuous and stable production.

[0050] 4. By providing structures such as an annular limiting cylinder, the present invention can operate based on the control motor, drive the adjusting screw rod to rotate and then drive the annular limiting cylinder to translate. Since the annular limiting cylinder has a trumpet-shaped structure with an outer diameter gradually increasing, the ball head rod is limited by the annular limiting cylinder, thereby adjusting the length of the transverse convex plate protruding from the embossing wheel and achieving the purpose of changing the bulge degree of the transverse ridges. BRIEF DESCRIPTION OF THE DRAWINGS

[0051] Figure 1 is a schematic structural diagram of a facial towel with a physical adsorption effect proposed by the present invention;

[0052] Figure 2 is a schematic structural diagram of a preparation device for a facial towel with a physical adsorption effect proposed by the present invention;

[0053] Figure 3 is a schematic structural diagram of an embossing mechanism of a preparation device for a facial towel with a physical adsorption effect proposed by the present invention;

[0054] Figure 4 is a schematic structural diagram of the separation of the embossing wheel and the support wheel of a preparation device for a facial towel with a physical adsorption effect proposed by the present invention;

[0055] Figure 5Schematic cross-sectional structure diagram of the embossing wheel of a preparation device for a facial towel with physical adsorption effect proposed by the present invention;

[0056] Figure 6 Schematic structure diagram of the detection mechanism of a preparation device for a facial towel with physical adsorption effect proposed by the present invention;

[0057] Figure 7 Schematic structure diagram of the hole-opening mechanism of a preparation device for a facial towel with physical adsorption effect proposed by the present invention.

[0058] In the figure: 1 facial towel main body, 2 longitudinal convex stripes, 3 through holes, 4 transverse convex stripes, 5 detection frame, 6 light detection component, 7 embossing wheel, 8 guide rod, 9 electric telescopic cylinder, 10 support frame, 11 embossing frame, 12 support wheel, 13 auxiliary wheel drive motor, 14 first mounting frame, 15 longitudinal groove, 16 transverse groove, 17 transverse convex plate, 18 longitudinal arc-shaped convex strip, 19 gear transmission component, 20 rotation drive motor, 21 annular limiting cylinder, 22 mounting plate, 23 adjusting screw, 24 spring, 25 ball head rod, 26 inner support, 27 light component, 28 vertical frame, 29 auxiliary pressing wheel, 30 driven gear, 31 driving gear, 32 fixing knob, 33 hole-opening cutter head, 34 support plate, 35 cutter plate. Specific embodiments

[0059] The technical solutions of the present invention will be further described in detail below in conjunction with specific embodiments.

[0060] The embodiments of the present invention will be described in detail below. The examples of the embodiments are shown in the drawings, in which the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation of the present invention.

[0061] Embodiment 1:

[0062] A facial towel with physical adsorption effect, as Figure 1-7 shown, includes a facial towel main body 1. Multiple facial towel units are arranged on the surface of the facial towel main body 1. Through holes 3 distributed linearly are arranged at the joints of adjacent facial towel units. Based on the through holes 3, two facial towel units can be easily torn and separated. Equally spaced transverse convex stripes 4 and longitudinal convex stripes 2 are arranged on each facial towel unit. The longitudinal convex stripes 2 and the transverse convex stripes 4 are vertically arranged. Two adjacent longitudinal convex stripes 2 and two transverse convex stripes 4 cooperate to form a mouth-shaped structure with unconnected ends;

[0063] By setting structures such as longitudinal ridges 2 and transverse ridges 4, the friction with the face can be increased, so as to more efficiently wipe off the dirt on the face. Since the longitudinal ridges 2 and transverse ridges 4 form a mouth-shaped structure, when in use, the water body can be restricted inside the mouth-shaped structure to a certain extent, better adsorbed on the face, and the use effect is improved.

[0064] The preparation process of the facial tissue includes the following steps:

[0065] S1: Inspection of non-woven fabric feeding;

[0066] S2: Loading the non-woven fabric onto the machine;

[0067] S3: Open through holes 3 in the facial tissue main body 1 through a preparation device, and form transverse ridges 4 and longitudinal ridges 2;

[0068] S4: Detection and processing;

[0069] S5: Folding the non-woven fabric;

[0070] S6: Sorting and conveying;

[0071] S7: Bagging and sealing, inkjet coding processing, finished product inspection;

[0072] S8: Putting the product into the box and sealing the box;

[0073] S9: Stacking the products and storing them in the warehouse.

[0074] Example 2:

[0075] A preparation device for a facial tissue with a physical adsorption effect, as Figure 1 shown, for facilitating the preparation of the facial tissue main body 1; the preparation device in S3 includes:

[0076] An opening mechanism for opening through holes 3 in the facial tissue main body 1;

[0077] A embossing mechanism for pressing longitudinal ridges 2 and transverse ridges 4 on the facial tissue main body 1;

[0078] A detection mechanism for detecting whether the facial tissue main body 1 meets the processing requirements;

[0079] Among them, the detection mechanism includes:

[0080] A lighting component 27, which is arranged below the facial tissue main body 1, is located directly below the movement path of the through hole 3, and multiple output ends of the lighting component 27 correspond to the linearly distributed through holes 3 one by one;

[0081] A detection rack 5, on which a lighting detection component 6 is installed, and the lighting detection component 6 is located directly above the lighting component 27;

[0082] Through the detection mechanism, since the longitudinal ridges 2 and the transverse ridges 4 need to be generated by the embossing mechanism, during lamination, it is easy to cause excessive deformation of the main body 1 of the facial tissue, resulting in the skew or excessive wrinkling of the main body 1 of the facial tissue; this solution can use the through-hole 3 of the main body 1 of the facial tissue itself as a feature. Based on the light output of the light-emitting component 27, the light detection component 6 can detect the light passing through the through-hole 3 in real time. If the main body 1 of the facial tissue is skewed or excessively deformed, the abnormality can be detected in a timely manner based on the light detection data.

[0083] In addition, a timing unit and the like can also be set. During the uniform production of the device, taking the light beam passing through the through-hole 3 detected by the light detection component 6 as a node, when the time between two nodes detected by the light detection component 6 is too long or too short, it can also be used as a basis for judging abnormality.

[0084] Other methods can also be used for abnormality detection, which will not be elaborated here.

[0085] To facilitate the adjustment of the position of the light-emitting component 27; as Figure 6 shown, a first mounting frame 14 is provided below the main body 1 of the facial tissue. A vertical frame 28 is slidably connected to the first mounting frame 14. One inner wall of the first mounting frame 14 is threadedly connected with a fixing knob 32 for fixing the vertical frame 28.

[0086] By providing structures such as the vertical frame 28 and the fixing knob 32, the height of the light-emitting component 27 can be adjusted.

[0087] To improve the reliability of detection; as Figure 6 shown, an auxiliary pressing wheel mechanism is provided on the vertical frame 28. The auxiliary pressing wheel mechanism includes auxiliary pressing wheels 29. The auxiliary pressing wheels 29 are distributed in pairs. Two pairs of auxiliary pressing wheels 29 are arranged on both sides of the main body 1 of the facial tissue. The two auxiliary pressing wheels 29 in each pair are located on the upper and lower sides of the edge of the main body 1 of the facial tissue. An auxiliary pressing wheel driving part for driving the movement of the auxiliary pressing wheels 29 is installed on the vertical frame 28.

[0088] By providing structures such as the auxiliary pressing wheels 29, based on the operation of the auxiliary pressing wheel driving part, the movement of the auxiliary pressing wheels 29 can be driven, so that the main body 1 of the facial tissue can pass through the detection mechanism more smoothly, improving the reliability of detection.

[0089] To facilitate the driving of the driven gear 30; as Figure 6 shown, the auxiliary pressing wheel driving part includes:

[0090] An auxiliary wheel driving motor 13. The auxiliary wheel driving motor 13 is installed on the vertical frame 28 through a bracket (not shown in the figure).

[0091] The driving gear 31, the shaft of the driving gear 31 is in transmission connection with the output end of the auxiliary wheel driving motor 13;

[0092] The driven gears 30, the driven gears 30 are distributed in pairs, the two driven gears 30 of each pair are meshed with each other, one driven gear 30 is meshed with the driving gear 31, and the two driven gears 30 of each pair are respectively mounted on the shafts of the two auxiliary pressing wheels 29.

[0093] For facilitating the embossing process; as Figures 2-5 shown, the embossing mechanism includes:

[0094] The embossing frame 11, the embossing wheel 7 is rotatably mounted on the embossing frame 11, and evenly distributed transverse convex plates 17 are adjustably mounted on the circumferential outer wall of the embossing wheel 7; paired longitudinal arc-shaped convex strips 18 are provided on the circumferential outer wall of the embossing wheel 7, and the longitudinal arc-shaped convex strips 18 are arranged in a C-shaped distribution, that is, if the number of transverse convex lines 4 on each facial tissue unit is 6, the number of longitudinal convex lines 2 is 5 pairs, correspondingly, 6 equidistantly distributed transverse convex plates 17 and 5 pairs of longitudinal arc-shaped convex strips 18 are provided on the circumferential outer wall of the embossing wheel 7. Since the longitudinal arc-shaped convex strips 18 are 5 pairs instead of 6 pairs, the longitudinal arc-shaped convex strips 18 are arranged in a C-shaped distribution, rather than a complete circumferential distribution, and the vacant position is adapted to the position passed by the through hole 3;

[0095] The rotation support part, the rotation support part is mounted on the embossing frame 11;

[0096] The rotation driving part, two rotation driving parts are mounted on the embossing frame 11, and are used to drive the embossing wheel 7 and the rotation support part to rotate;

[0097] By providing the embossing wheel 7 and the rotation support part, it can work based on the rotation driving part, and use the transverse convex plates 17 and the longitudinal arc-shaped convex strips 18 to process and form transverse convex lines 4 and longitudinal convex lines 2 on the surface of the facial tissue main body 1. Each time the embossing wheel 7 rotates one week, the processing of one facial tissue unit is completed, and the C-shaped distributed longitudinal arc-shaped convex strips 18 are adapted to the through hole 3, and can enable the connection part of the two facial tissue units to pass through orderly, realizing continuous and stable production.

[0098] For facilitating the support; as Figure 3 、 Figure 4 shown, the rotation support part includes a support wheel 12, the support wheel 12 is rotatably mounted on the embossing frame 11, and a transverse groove 16 and a longitudinal groove 15 are provided on the outer wall of the support wheel 12, the transverse groove 16 is adapted to the position of the transverse convex plate 17, and the longitudinal groove 15 is adapted to the position of the longitudinal arc-shaped convex strip 18.

[0099] For facilitating the driving of the embossing wheel 7 and the support wheel 12 to rotate; as Figure 3 、 Figure 4 shown, the rotation driving part includes:

[0100] Rotate the drive motor 20, and the drive motor 20 is installed on the embossing frame 11;

[0101] Gear transmission assembly 19, the output ends of two drive motors 20 are respectively connected to the shafts of the embossing wheel 7 and the support wheel 12 through the gear transmission assembly 19 for shaft transmission.

[0102] To facilitate adjusting the length of the transverse convex plate 17 protruding from the embossing wheel 7; as Figure 5 shown, the transverse convex plate 17 is slidably connected inside the embossing wheel 7. A ball head rod 25 is fixed at one end of the transverse convex plate 17 located inside the embossing wheel 7. A plurality of inner brackets 26 are fixed inside the main body 1 of the facial tissue. The ball head rod 25 is slidably connected to the inner wall of the inner bracket 26, and the ball head rod 25 and the inner bracket 26 are connected by a spring 24;

[0103] One side of the embossing frame 11 is provided with a fixed guide rod 8. The outer wall of the guide rod 8 is slidably connected with a mounting plate 22. An annular limiting cylinder 21 is fixed outside the mounting plate 22. The annular limiting cylinder 21 has a trumpet-shaped structure with an outer diameter gradually increasing. The ball head rod 25 slides on the outer wall of the annular limiting cylinder 21;

[0104] An adjusting screw rod 23 is rotatably installed on the embossing frame 11. The mounting plate 22 is threadedly connected to the outer wall of the adjusting screw rod 23. A control motor for controlling the rotation of the adjusting screw rod 23 is installed on one side of the embossing frame 11;

[0105] By providing structures such as the annular limiting cylinder 21, based on the operation of the control motor, the adjusting screw rod 23 can be driven to rotate and then drive the annular limiting cylinder 21 to translate. Since the annular limiting cylinder 21 has a trumpet-shaped structure with an outer diameter gradually increasing, the ball head rod 25 is limited by the annular limiting cylinder 21, so as to adjust the length of the transverse convex plate 17 protruding from the embossing wheel 7, achieving the purpose of changing the bulging degree of the transverse convex pattern 4.

[0106] To facilitate processing the through hole 3; as Figure 7 shown, the opening mechanism includes:

[0107] Support frame 10, a support plate 34 is installed on the support frame 10, and the main body 1 of the facial tissue passes over the top of the support plate 34;

[0108] Electric telescopic cylinder 9, the electric telescopic cylinder 9 is installed on the support frame 10. The output end of the electric telescopic cylinder 9 is fixed with a knife plate 35. The bottom of the knife plate 35 is provided with linearly distributed opening cutter heads 33. A through port adapted to the through hole 3 is provided on the support plate 34;

[0109] By providing the opening mechanism, based on the operation of the electric telescopic cylinder 9, the knife plate 35 can be driven to move downward to process the through hole 3 in the main body 1 of the facial tissue.

[0110] For the parts not exhaustively disclosed in the present invention, those skilled in the art can ensure the smooth implementation of the solution of the present invention based on common sense, normal thinking logic and the prior art.

[0111] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes, shall be covered by the protection scope of the present invention.

Claims

1. A face washcloth with physical adsorption effect, characterized in that: The invention comprises a face-washing towel body (1), wherein a plurality of face-washing towel units are arranged on the surface of the face-washing towel body (1), and linearly distributed through holes (3) are arranged at the connection points of adjacent face-washing towel units, and two face-washing towel units can be easily torn apart based on the through holes (3), and each face-washing towel unit is provided with equally distributed transverse convex patterns (4) and longitudinal convex patterns (2), wherein the longitudinal convex patterns (2) and the transverse convex patterns (4) are arranged vertically, and two adjacent longitudinal convex patterns (2) cooperate with two transverse convex patterns (4) to form a U-shaped structure with disconnected ends.

2. A face washcloth with physical adsorption effect according to claim 1, characterized in that: The preparation process of the face wash towel comprises the following steps: S1: Non-woven fabric incoming material inspection; S2: non-woven fabric loading; S3: using a preparation device to open a through hole (3) on the face washcloth body (1), and to form transverse convex patterns (4) and longitudinal convex patterns (2); S4: detection and processing; S5: nonwoven folding; S6: Sorting and conveying; S7: Bagging and sealing, coding, and finished product inspection; S8: Products are put into boxes and sealed; S9: Stacking of products and storage.

3. A preparation device for a face washcloth with a physical adsorption effect, used for preparing the face washcloth according to claim 1, characterized in that: include: A hole-opening mechanism, the hole-opening mechanism is used to open a through hole (3) on the face-washing towel body (1); An embossing mechanism, the embossing mechanism being used to press and form longitudinal convex patterns (2) and transverse convex patterns (4) on the face washcloth body (1); A testing mechanism, the testing mechanism is used to test whether the face washcloth body (1) meets the processing requirements; Wherein, the detection mechanism includes: An illumination component (27), the illumination component (27) being arranged below the face-washing towel body (1), the illumination component (27) being located directly below the movement path of the through hole (3), and the plurality of output ends of the illumination component (27) corresponding one-to-one to the linearly distributed through holes (3); A detection frame (5) is provided with a light detection assembly (6) mounted on the detection frame (5), and the light detection assembly (6) is located directly above the light assembly (27).

4. The device for preparing a face washcloth with physical adsorption effect according to claim 3, characterized in that: A first mounting frame (14) is arranged below the face-washing towel body (1), a vertical frame (28) is slidably connected to the first mounting frame (14), and a fixing knob (32) for fixing the vertical frame (28) is threadedly connected to an inner wall of one side of the first mounting frame (14).

5. The device for preparing a face washcloth with physical adsorption effect according to claim 4, characterized in that: The stand (28) is provided with an auxiliary pressing wheel mechanism, the auxiliary pressing wheel mechanism comprising auxiliary pressing wheels (29), the auxiliary pressing wheels (29) being arranged in pairs, two pairs of auxiliary pressing wheels (29) being arranged on both sides of the face-washing towel body (1), the two auxiliary pressing wheels (29) of each pair being located on the upper and lower sides of the edge of the face-washing towel body (1); an auxiliary pressing wheel driving unit for driving the auxiliary pressing wheels (29) to move is installed on the stand (28).

6. The device for preparing a face washcloth with physical adsorption effect according to claim 5, characterized in that: The auxiliary pressure wheel driving unit comprises: An auxiliary wheel drive motor (13), the auxiliary wheel drive motor (13) is mounted on the stand (28) via a bracket; A driving gear (31), the shaft of which is drivingly connected to the output end of the auxiliary wheel driving motor (13); The driven gears (30) are distributed in pairs, the two driven gears (30) of each pair are meshed with each other, one driven gear (30) is meshed with the driving gear (31), and the two driven gears (30) of each pair are respectively installed on the shafts of the two auxiliary pressure wheels (29).

7. The device for preparing a face washcloth with physical adsorption effect according to claim 3, characterized in that: The embossing mechanism comprises: An embossing frame (11) is rotatably mounted with an embossing wheel (7), and a uniformly distributed transverse convex plate (17) is adjustably mounted on the circumferential outer wall of the embossing wheel (7); longitudinal arcuate convex strips (18) are arranged in pairs on the circumferential outer wall of the embossing wheel (7), and the longitudinal arcuate convex strips (18) are arranged in a C-shaped distribution; A rotating support part, the rotating support part is mounted on the embossing frame (11); The two rotation driving parts are installed on the embossing frame (11) and are used to drive the embossing wheel (7) and the rotation supporting part to rotate.

8. The device for preparing a face washcloth with physical adsorption effect according to claim 7, characterized in that: The rotating support part comprises a supporting wheel (12), the supporting wheel (12) is rotatably mounted on the embossing frame (11), and a transverse groove (16) and a longitudinal groove (15) are arranged on the outer wall of the supporting wheel (12), the transverse groove (16) is matched with the transverse convex plate (17) in position, and the longitudinal groove (15) is matched with the longitudinal arc-shaped convex strip (18) in position; The rotation driving unit comprises: A rotation drive motor (20), wherein the rotation drive motor (20) is mounted on the embossing frame (11); The output ends of the two rotating drive motors (20) are respectively connected to the shafts of the embossing wheel (7) and the supporting wheel (12) through the gear transmission assembly (19).

9. The device for preparing a face washcloth with physical adsorption effect according to claim 8, characterized in that: The transverse convex plate (17) is slidably connected to the embossing wheel (7), a ball head rod (25) is fixed to one end of the transverse convex plate (17) located in the embossing wheel (7), a plurality of inner brackets (26) are fixed to the inner side of the face wash towel body (1), the ball head rod (25) is slidably connected to the inner wall of the inner bracket (26), and the ball head rod (25) and the inner bracket (26) are connected via a spring (24); A guide rod (8) is fixedly arranged on one side of the embossing frame (11); a mounting plate (22) is slidably connected to the outer wall of the guide rod (8); an annular limiting cylinder (21) is fixed to the outer side of the mounting plate (22); the annular limiting cylinder (21) is a trumpet-shaped structure with a gradually increasing outer diameter; and a ball head rod (25) slides on the outer wall of the annular limiting cylinder (21); An adjusting screw (23) is rotatably mounted on the embossing frame (11), a mounting plate (22) is connected to the outer wall of the adjusting screw (23) through threads, and a control motor for controlling the rotation of the adjusting screw (23) is mounted on one side of the embossing frame (11).

10. The device for preparing a face washcloth with physical adsorption effect according to claim 3, characterized in that: The hole opening mechanism comprises: A support frame (10), a support plate (34) is mounted on the support frame (10), and the face washcloth body (1) passes through the top of the support plate (34); An electric telescopic cylinder (9) is mounted on a support frame (10), a knife plate (35) is fixed to the output end of the electric telescopic cylinder (9), a linearly distributed hole-opening knife head (33) is arranged at the bottom of the knife plate (35), and a through opening matched with the through hole (3) is arranged on the support plate (34).

Citation Information

Patent Citations

  • Novel face towel

    CN117796696A

  • Auxiliary detection device for wrinkles of decorative paper

    CN213456625U