Sizing and embossing machine

By employing a process of applying glue before embossing and using automated control, the problems of low efficiency and unstable quality in the production of tissue paper have been solved, resulting in a more three-dimensional embossing effect and higher production efficiency.

CN119795676BActive Publication Date: 2025-11-07OK SCI & TECH CO LTD
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Patent Information

Application Number
CN202510111432.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-11-07
Estimated Expiration
2045-01-23

AI Technical Summary

Technical Problem

In the existing technology for producing tissue paper, the process of embossing before gluing results in low efficiency, insufficient embossing depth, and impurities during the gluing process affecting the uniformity of glue distribution, leading to unstable product quality.

Method used

The process of applying glue first and then embossing is adopted. Combined with the uniform coverage of the glue on the components and the removal of impurities, the linkage mechanism realizes automatic control to ensure uniform glue application and impurity removal.

Benefits of technology

It improves production efficiency and product quality, ensures uniform glue distribution, enhances equipment adaptability and ease of maintenance, and meets market demands.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a gluing and laminating embossing machine and relates to the field of paper towel production. The gluing and laminating embossing machine comprises a machine body, first raw paper and second raw paper. The machine body is provided with a gluing mechanism for gluing the first raw paper. The gluing mechanism is provided with an embossing mechanism for embossing the first raw paper and the second raw paper. The gluing mechanism is provided with a glue thickness uniform covering assembly and an impurity removing assembly for removing impurities. The glue thickness uniform covering assembly and the impurity removing assembly are connected through a linkage mechanism. The gluing mechanism comprises a gluing roller and a glue box for gluing one side of the first raw paper. The gluing roller is located on the glue box. The glue thickness uniform covering assembly is located on the downstream side of the gluing roller. The impurity removing assembly is located on the other downstream side of the gluing roller. The application realizes gluing before embossing, which can make the embossing more three-dimensional. The gluing mechanism is convenient to clean. The gluing roller has uniform glue thickness, and the paper quality is good.
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Description

TECHNICAL FIELD

[0001] The present application mainly relates to the technical field of paper towel production, in particular to a gluing and compounding embossing machine. BACKGROUND

[0002] Tissue paper is an indispensable sanitary product in daily life, mainly including toilet paper, pull-out tissue paper, box tissue paper, pocket tissue paper, handkerchief paper, napkin paper, and kitchen paper, etc. These products are usually made of cotton pulp, wood pulp, straw pulp or waste paper pulp, and are mainly used for personal hygiene and cleaning.

[0003] In the tissue paper industry, when the market embosses the tissue paper, the prior art proposes a secondary gluing and compounding embossing mechanism for tissue paper, which includes a first embossing roller group and a second embossing roller group. The first embossing roller group and the second embossing roller group respectively emboss the first original paper and the second original paper to form high and low texture patterns. The mechanism also includes a first compounding roller group, a second compounding roller group, and two gluing assemblies. The two gluing assemblies respectively roll glue on the embossed first original paper and the second original paper. The first compounding roller group is used to press the first original paper with glue and the third original paper together for the first time.

[0004] The above production method is to emboss the first original paper and the second original paper respectively by the first embossing roller and the second embossing roller to form high and low texture patterns, roll glue on the embossed first original paper and the second original paper by the gluing equipment, and then press the first original paper with glue and the second or third original paper together by the compounding roller group, so that the glue surfaces are in contact and bonded.

[0005] The above method is to emboss first and then glue, which has slow running speed, low efficiency, and not enough three-dimensional embossing, and cannot meet the increasing market efficiency requirements. In the gluing process, the glue roller is not cleaned. When the glue contains solid impurities or the paper is covered with impurities on the glue roller, the impurities will interfere with the flow and distribution of the glue, resulting in inconsistent glue thickness on the substrate. This not only affects the appearance quality of the product, but also may cause unstable performance of the product during use. Ultimately, the produced product may have quality problems such as poor adhesion, appearance defects, etc., which will directly affect the market competitiveness and customer satisfaction of the product. SUMMARY

[0006] Therefore, the purpose of the present application is to provide a gluing and compounding embossing machine to solve the technical problems in the background art.

[0007] To achieve the above purpose, the present application provides the following technical solutions:

[0008] The upper glue composite embossing machine comprises a machine body, a first raw paper and a second raw paper, an upper glue mechanism for gluing the first raw paper is arranged on the machine body, an embossing mechanism for embossing the first raw paper and the second raw paper is arranged on one side of the upper glue mechanism, a glue thickness uniform covering assembly and a impurity removing assembly for removing impurities are arranged on the upper glue mechanism, and the glue thickness uniform covering assembly and the impurity removing assembly are connected through a linkage mechanism.

[0009] The upper glue mechanism comprises an upper glue roller and a glue box for gluing one side of the first raw paper, the upper glue roller is located on the glue box, the upper glue roller is connected with the machine body at the top of the two ends of the glue box through a support assembly, the glue thickness uniform covering assembly is located at the downstream position on one side of the upper glue roller, and the impurity removing assembly is located at the downstream position on the other side of the upper glue roller.

[0010] Specifically, the embossing mechanism comprises a rolling flower roller for bonding the first raw paper and the second raw paper and an embossing roller for embossing the first raw paper and the second raw paper, the rolling flower roller is close to one side of the upper glue roller near the top of the impurity removing assembly, the embossing roller is close to the other side of the rolling flower roller away from the upper glue roller, the first raw paper passes through the upper glue roller and the rolling flower roller and the rolling flower roller and the embossing roller in sequence through a guide roller, the second raw paper passes through the rolling flower roller and the embossing roller through a guide roller, and the lower surface of the first raw paper and the upper surface of the second raw paper are in contact and bonded.

[0011] Specifically, the support assembly comprises a support seat and a first bearing seat for displacing the top of the support seat, the bottom of the support seat is connected with the machine body, the two ends of the upper glue roller are connected with the first bearing seat, one end of the upper glue roller penetrates through the first bearing seat and is connected with an upper glue motor, and the lower outer circumferential wall of the upper glue roller abuts against glue in the glue box.

[0012] Specifically, the glue thickness uniform covering assembly comprises a thickness covering roller and a thickness uniform scraper parallel to the outer wall of the thickness covering roller close to the upper glue roller, the upper outer wall of the thickness uniform scraper movably abuts against the lower outer wall of the upper glue roller, and the two ends of the thickness covering roller are connected with the machine body through a second bearing seat.

[0013] The impurity removing assembly specifically comprises a removing roller located at a downstream position of the gluing roller away from the thickness covering roller and a cleaning scraper plate located on the outer wall of the removing roller in parallel, the outer wall of the cleaning scraper plate is in movable abutment with the outer wall of the gluing roller away from the thickness covering roller, the cleaning scraper plate is arranged in an arc structure with an inner recess, the removing roller is connected to the machine body through the third bearing seat at both ends, the cleaning scraper plate is provided with a baffle for preventing glue dripping after cleaning at one end, a filter box is arranged below the other end of the cleaning scraper plate away from the baffle, the filter box is located above the glue box, a filter screen is arranged in the filter box, the filter screen is replaceable, and a filter guide slot is arranged at the end of the cleaning scraper plate close to the filter box.

[0014] The cleaning scraper plate is arranged in a low inclination structure close to the filter box.

[0015] The linkage mechanism specifically comprises a driving motor, a driving driving gear, a glue uniform driven gear and a cleaning driven gear, the glue uniform driven gear is located on the outer circumferential wall of the thickness covering roller penetrating the second bearing seat at one end, the cleaning driven gear is located on the outer circumferential wall of the end of the removing roller close to the side of the glue uniform driven gear, the output end of the driving motor is connected to the driving driving gear, the driving driving gear is located between the glue uniform driven gear and the cleaning driven gear, and the driving driving gear is connected to the glue uniform driven gear and the cleaning driven gear in meshing.

[0016] When the driving motor drives the driving driving gear to rotate in a forward direction, the outer wall of the thickness uniform scraper plate is not in abutment with the outer wall of the gluing roller, and the cleaning scraper plate is in abutment with the outer wall of the gluing roller.

[0017] The driving motor is connected to the controller on the machine body through a wire.

[0018] The rolling pattern roller and the embossing roller can be arranged horizontally or vertically.

[0019] In summary, the present application mainly has the following beneficial effects:

[0020] 1. In view of the problems in the background art, the production mode of the present application is a process step of gluing first and then embossing, which can make the embossing more three-dimensional. The surface of one or two layers of paper is glued first, and then combined with another layer of paper to enter the pattern roller and the glue roller at the same time for embossing, so that the embossing is more three-dimensional and the running speed is faster, thereby meeting the requirement of increasing market efficiency. Compared with the traditional gluing and compounding, the running speed is faster and the efficiency is higher.

[0021] 2. By integrating the glue thickness uniform covering assembly and the impurity removing assembly on both sides of the gluing mechanism, not only the efficiency and product quality of the gluing and embossing machine are improved, but also the adaptability and maintenance convenience of the equipment are enhanced, so that the market demand is better met.

[0022] 3. The glue thickness uniform covering assembly comprises a thickness covering roller and a thickness uniform scraper, so that the glue adhered to the gluing roller is uniformly covered, and the glue coating on the base paper is further ensured to be more uniform, thereby ensuring the production quality.

[0023] 4. The impurity removing assembly is designed to remove the impurities that may occur in the gluing process, including the solid impurities adhered to the gluing roller and the impurities carried by the paper, and through the combination of the removing roller and the cleaning scraper plate, these impurities can be effectively removed to prevent them from affecting the glue coating quality and the appearance and performance of the final product.

[0024] 5. The glue thickness uniform covering assembly and the impurity removing assembly are linked through the linkage mechanism, when the driving motor drives the driving driving gear to rotate forward, the outer wall of the thickness uniform scraper plate does not abut against the outer wall of the gluing roller, the cleaning scraper plate abuts against the outer wall of the gluing roller, the impurities adhered to the outer wall of the gluing roller are removed through the cleaning scraper plate, the glue carrying the impurities after scraping is guided to the inside of the filter box through the cleaning scraper plate in an inclined structure for filtration, and after filtration, it is used in the glue box for circulation, the coordinated work of these components can realize the automatic control of the gluing and cleaning process, and the production efficiency and the stability of the product quality are improved. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is the axial view of the embossing machine of the present application;

[0026] Figure 2 is the side view of the present application;

[0027] Figure 3 is the axial view of the impurity removing assembly and the glue thickness uniform covering assembly of the present application;

[0028] Figure 4 is the schematic view of the overall gluing mechanism structure of the present application;

[0029] Figure 5 is the schematic view of the running of the embossing upper side of the present application;

[0030] Figure 6 is the schematic view of the impurity removing assembly structure of the present application;

[0031] Figure 7 is the schematic view of the Figure 3 is the enlarged view of area A in the middle.

[0032] Figure Descriptions: 1. Machine body; 2. First base paper; 21. Rolling embossing roller; 22. Embossing roller; 3. Second base paper; 4. Gluing mechanism; 41. Gluing roller; 42. Glue box; 43. Support base; 44. First bearing seat; 5. Embossing mechanism; 6. Glue thickness uniform covering assembly; 61. Thickness covering roller; 62. Thickness uniform scraper; 63. Second bearing seat; 7. Impurity removal assembly; 71. Cleaning roller; 72. Cleaning scraper; 721. Baffle; 722. Filter box; 723. Filter guide slot; 73. Third bearing seat; 8. Drive motor; 81. Drive gear; 82. Glue uniform driven gear; 83. Cleaning driven gear. Detailed Implementation

[0033] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0034] The embodiments of the present invention will now be described. Example

[0035] Please see the appendix Figures 1-7As shown, the glue composite embossing machine comprises a machine body 1, a first raw paper 2 and a second raw paper 3, a glue mechanism 4 for gluing the first raw paper 2 is arranged on the machine body 1, a one side of the glue mechanism 4 is provided with an embossing mechanism 5 for embossing the first raw paper 2 and the second raw paper 3, a glue thickness uniform covering assembly 6 and a impurity removing assembly 7 for removing impurities are arranged on the glue mechanism 4, and the glue thickness uniform covering assembly 6 and the impurity removing assembly 7 are connected through a linkage mechanism; the glue mechanism 4 comprises a glue roller 41 for gluing one side of the first raw paper 2 and a glue box 42, the glue roller 41 is located on the glue box 42, both ends of the glue roller 41 are connected with the machine body 1 at the top of both ends of the glue box 42 through a support assembly, the support assembly comprises a support seat 43 and a first bearing seat 44 at the top of the support seat 43, the bottom of the support seat 43 is connected with the machine body 1, both ends of the glue roller 41 are connected with the first bearing seat 44, one end of the glue roller 41 penetrates through the first bearing seat 44 and is connected with a glue motor, the outer circumferential wall below the glue roller 41 abuts against the glue inside the glue box 42, the glue thickness uniform covering assembly 6 is located at a downstream position on one side of the glue roller 41, and the impurity removing assembly 7 is located at a downstream position on the other side of the glue roller 41; the embossing mechanism 5 comprises a rolling flower roller 21 for making the first raw paper 2 and the second raw paper 3 adhere to each other and an embossing roller 22 for embossing the first raw paper 2 and the second raw paper 3, the rolling flower roller 21 is tightly attached to one side of the glue roller 41 close to the top of the impurity removing assembly 7, the embossing roller 22 is tightly attached to one side of the rolling flower roller 21 away from the glue roller 41, the first raw paper 2 passes through the glue roller 41 and the rolling flower roller 21 and the rolling flower roller 21 and the embossing roller 22 in sequence through a guide roller, the second raw paper 3 passes through the rolling flower roller 21 and the embossing roller 22 through a guide roller, and the glue on the lower surface of the first raw paper 2 and the upper surface of the second raw paper 3 are in contact and bonded; the rolling flower roller 21 and the embossing roller 22 can be horizontally arranged or vertically arranged, and a driving motor 8 is connected with a controller on the machine body 1 through a wire.

[0036] It should be noted that in the embodiment, the production mode of the application is the process step of gluing first and then embossing, which can make the embossing more three-dimensional, and by gluing one side of one or two layers of paper first and then combining with another layer of paper to enter the flower roller and the glue roller at the same time for embossing, the first gluing and then embossing can make the embossing more three-dimensional and run faster, thereby meeting the requirement of increasing market efficiency, and compared with the traditional glue composite, the running speed is faster and the efficiency is higher.

[0037] Further, when gluing, the drive motor 8 rotates reversely, driving the drive driving gear 81 to rotate reversely, the outer wall of the thickness uniform scraper 62 abuts against the outer wall of the gluing roller 41, the cleaning scraper plate 72 does not abut against the outer wall of the gluing roller 41, the gluing roller 41 contacts the glue in the glue box 42 from below, and the thickness of the glue on the outer wall of the gluing roller 41 is scraped and made uniform by the thickness uniform scraper 62, ensuring the uniformity of the glue layer thickness and avoiding excessive glue accumulation on the base paper, thereby ensuring the uniformity of glue distribution. At this time, the first base paper 2 is sent into the gluing mechanism 4 by the guide roller, and here it passes through the gluing roller 41, the outer wall of the first base paper 2 below abuts against the outer wall of the gluing roller 41, avoiding excessive glue accumulation on the base paper and ensuring the uniformity of glue distribution. The first base paper 2 and the second base paper 3 are sent into the rolling pattern roller 21 and the embossing roller 22 together, where the two papers are laminated and embossed to form the required three-dimensional pattern effect. This process can enhance the three-dimensionality and aesthetics of the paper, making the final product have better visual effect and touch feeling.

[0038] Further, in the whole process, the coordination between various components is very important. When the drive motor 8 rotates reversely, the thickness uniform scraper 62 abuts against the outer wall of the gluing roller 41, while the cleaning scraper plate 72 does not abut against the outer wall of the gluing roller 41. This can ensure that the uniform coating of glue is not disturbed during the gluing process. At the same time, the design of the linkage mechanism ensures smooth transition between different steps, improving production efficiency and product quality.

[0039] Further, the drive motor 8 is connected to the controller on the machine body 1 through wires, which means that the operation of the whole machine can be monitored and adjusted by the controller. This electronic control system can realize highly automated production process, reduce the possibility of human error, and improve the flexibility and efficiency of production.

[0040] Please refer to the accompanying drawings Figure 3 , 4The glue thickness uniformity covering assembly 6 shown in FIGS. 6 and 7 includes a thickness covering roller 61 and a thickness uniformity scraping plate 62 parallel to the outer wall of the thickness covering roller 61 on the side close to the glue roller 41. The outer wall above the thickness uniformity scraping plate 62 is in movable abutment with the outer wall below the glue roller 41. The two ends of the thickness covering roller 61 are connected to the machine body 1 through a second bearing seat 63. The impurity removing assembly 7 includes a removing roller 71 at a downstream position on the side away from the thickness covering roller 61 of the glue roller 41 and a cleaning scraping plate 72 parallel to the outer wall of the removing roller 71. The outer wall of the cleaning scraping plate 72 is in movable abutment with the outer wall of the glue roller 41 on the side away from the thickness covering roller 61. The cleaning scraping plate 72 is in an arc-shaped structure with an inner recess. The two ends of the removing roller 71 are connected to the machine body 1 through a third bearing seat 73. A baffle 721 is arranged at one end of the cleaning scraping plate 72 to prevent glue liquid from dripping after cleaning. A filter box 722 is arranged below the other end of the cleaning scraping plate 72 away from the baffle 721. The filter box 722 is above the glue box 42. A filter screen is arranged inside the filter box 722. The filter screen is replaceable. A filter guide slot 723 is arranged at the end of the cleaning scraping plate 72 close to the filter box 722. The cleaning scraping plate 72 is in a low degree of inclination structure close to the filter box 722.

[0041] It should be noted that in this embodiment, the linkage mechanism includes a drive motor 8, a drive pinion 81, a glue uniform driven gear 82 and a cleaning driven gear 83. The glue uniform driven gear 82 is located on the outer circumferential wall of the thickness uniform scraper 62 through the second bearing seat 63 at one end. The cleaning driven gear 83 is located on the outer circumferential wall of the cleaning roller 71 near the glue uniform driven gear 82. The output end of the drive motor 8 is connected with the drive pinion 81. The drive pinion 81 is located between the glue uniform driven gear 82 and the cleaning driven gear 83. The drive pinion 81 is connected with the glue uniform driven gear 82 and the cleaning driven gear 83 in meshing. When the drive motor 8 reversely rotates, it drives the drive pinion 81 to also reversely rotate. The drive pinion 81 is connected with the glue uniform driven gear 82 and the cleaning driven gear 83 in meshing. When the drive motor 8 drives the drive pinion 81 to reversely rotate, the outer wall of the thickness uniform scraper 62 abuts against the outer wall of the glue roller 41. The cleaning scraper 72 does not abut against the outer wall of the glue roller 41. The glue roller 41 contacts with the glue in the glue box 42 from below. The glue uniformly coated on the outer wall of the glue roller 41 is scraped by the thickness uniform scraper 62 to ensure the uniformity of the glue thickness and avoid excessive glue accumulation on the base paper, thereby ensuring the uniformity of the glue distribution. At this time, the first base paper 2 is sent into the gluing mechanism 4 by the guide roller. Here, it passes through the glue roller 41. The outer wall of the first base paper 2 abuts against the outer wall of the glue roller 41 from below to avoid excessive glue accumulation on the base paper and ensure the uniformity of the glue distribution. The first base paper 2 is sent into the rolling roller 21 and the embossing roller 22 together with the second base paper 3. Here, the two papers are laminated and embossed to form the required three-dimensional pattern effect. This process can enhance the three-dimensionality and aesthetics of the paper, so that the final product has better visual effect and touch feeling.

[0042] When it is necessary to clean the outer wall of the glue roller 41, the controller controls the drive motor 8 to forward rotate. It drives the drive pinion 81 to also forward rotate. The drive pinion 81 is connected with the glue uniform driven gear 82 and the cleaning driven gear 83 in meshing. The outer wall of the thickness uniform scraper 62 does not abut against the outer wall of the glue roller 41. The cleaning scraper 72 abuts against the outer wall of the glue roller 41. The impurities coated on the outer wall of the glue roller 41 are removed by the cleaning scraper 72. The glue carrying the impurities after scraping is guided to the filter box 722 through the cleaning scraper 72 in an inclined structure for filtration. After filtration, it enters the glue box 42 for recycling, thereby reducing the waste of glue and maintaining the quality of the glue.

[0043] Further, the linkage mechanism includes the drive motor 8, the drive pinion 81, the glue uniform driven gear 82 and the cleaning driven gear 83. This mechanism ensures that in different working modes, each component can work coordinately to realize automatic process control.

[0044] Further, the cleaning doctor blade 72 is provided with a baffle plate 721 at one end to prevent glue droplets from falling after cleaning, and a filter box 722 is arranged below the other end of the cleaning doctor blade 72 away from the baffle plate 721, the filter box 722 is located above the glue box 42, a filter screen is arranged inside the filter box 722, the filter screen is replaceable, and the cleaning doctor blade 72 is provided with a filter guide slot 723 at the end close to the filter box 722; the cleaning doctor blade 72 is arranged in a low degree of inclination close to the filter box 722, the glue scraped off is ensured to fall from one end of the filter guide slot 723 through the baffle plate 721, so that the impurities and glue liquid scraped off in the cleaning process are prevented from falling to other parts of the machine, secondary pollution is avoided, and the normal operation of the machine is affected, the design can improve the cleaning efficiency, and the machine is protected from unnecessary damage, the cleaning doctor blade 72 is arranged in a low degree of inclination close to the filter box 722, the design helps the scraped-off glue liquid and impurities to flow more smoothly into the filter box 722 by gravity, so that the cleaning efficiency is improved, the scraped-off glue liquid and impurities are guided to flow smoothly into the filter box 722, and it is ensured that the glue can be filtered by the filter box 722 for recycling;

[0045] The design of the cleaning doctor blade 72 and its related parts reflects the pursuit of modern manufacturing industry for automation and efficiency, through precise mechanical design and intelligent control, the machine can ensure product quality while improving production efficiency, reducing manual intervention and reducing production cost, and these characteristics make the glue coating and composite embossing machine become one of the indispensable equipment in the modern packaging industry.

[0046] The working principle of the present application is as follows:

[0047] When gluing, the driving motor 8 rotates reversely, the driving motor 8 drives the driving driving gear 81 to rotate reversely, the outer wall of the thickness uniform scraping plate 62 abuts against the outer wall of the gluing rubber roller 41, the cleaning doctor blade 72 does not abut against the outer wall of the gluing rubber roller 41, the gluing rubber roller 41 contacts the glue in the glue box 42 from below, the thickness of the glue adhered to the outer wall of the gluing rubber roller 41 is scraped and uniformed by the thickness uniform scraping plate 62, so that the thickness of the glue layer is consistent, and too much glue is prevented from accumulating on the raw paper, thereby ensuring the uniformity of glue distribution, at this time, the first raw paper 2 is sent into the gluing mechanism 4 by the guide roller, and here it passes through the gluing rubber roller 41, the outer wall of the first raw paper 2 below abuts against the outer wall of the gluing rubber roller 41, too much glue is prevented from accumulating on the raw paper, and the uniformity of glue distribution is ensured, the first raw paper 2 is sent into the rolling embossing roller 21 and the embossing roller 22 together with the second raw paper 3, here, the two papers are laminated and embossed to form the required three-dimensional pattern effect, this process can enhance the three-dimensionality and aesthetics of the paper, so that the final product has better visual effect and touch feeling;

[0048] When the outer wall of the gluing roller 41 needs to be cleaned, the controller controls the driving motor 8 to rotate forward, which drives the driving driving gear 81 to rotate forward as well. The driving driving gear 81 is connected with the glue uniform driven gear 82 and the cleaning driven gear 83 through meshing. The outer wall of the thickness uniform scraper 62 does not abut against the outer wall of the gluing roller 41, and the cleaning scraper 72 abuts against the outer wall of the gluing roller 41. The cleaning scraper 72 removes the impurities adhered to the outer wall of the gluing roller 41. The glue carrying the impurities after scraping is guided to the inside of the filter box 722 through the cleaning scraper 72 in an inclined structure, filtered, and then enters the glue box 42 to be recycled, thereby reducing the waste of glue and maintaining the quality of the glue.

[0049] Although the embodiments of the present application have been shown and described, the specific embodiments are merely illustrative of the present application, and are not intended to limit the present application. The specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner, and those skilled in the art can make modifications, replacements and variations of the embodiments without creative contribution after reading the specification, as long as they are within the scope of the present application.

Claims

1. A gumming and laminating embosser, comprising a machine body (1), a first base paper (2) and a second base paper (3), characterized in that The body (1) is provided with a gluing mechanism (4) for gluing the first raw paper (2), one side of the gluing mechanism (4) is provided with an embossing mechanism (5) for embossing the first raw paper (2) and the second raw paper (3), the gluing mechanism (4) is provided with a glue thickness uniform covering assembly (6) and a impurity removing assembly (7) for removing impurities covering, the glue thickness uniform covering assembly (6) and the impurity removing assembly (7) are connected through a linkage mechanism; The gluing mechanism (4) comprises a gluing roller (41) and a glue box (42) for gluing one side of the first raw paper (2), the gluing roller (41) is located on the glue box (42), the two ends of the gluing roller (41) are connected with the body (1) through a support assembly at the top of the two ends of the glue box (42), the glue thickness uniform covering assembly (6) is located at one side of the gluing roller (41), and the impurity removing assembly (7) is located at the other side of the gluing roller (41); The embossing mechanism (5) comprises a rolling flower roller (21) for adhering the first raw paper (2) and the second raw paper (3) and an embossing roller (22) for embossing the first raw paper (2) and the second raw paper (3), the rolling flower roller (21) is closely attached to one side of the gluing roller (41) near the top of the impurity removing assembly (7), the embossing roller (22) is closely attached to one side of the rolling flower roller (21) away from the gluing roller (41), the first raw paper (2) passes between the gluing roller (41) and the rolling flower roller (21) through a guide roller in sequence, the second raw paper (3) passes between the rolling flower roller (21) and the embossing roller (22) through a guide roller, and the lower surface glue of the first raw paper (2) and the upper surface of the second raw paper (3) are in contact and bonded; The support assembly comprises a support seat (43) and a first bearing seat (44) located at the top of the support seat (43), the support seat (43) is connected with the body (1) at the bottom, the two ends of the gluing roller (41) are connected with the first bearing seat (44), and an upper gluing motor is connected with one end of the gluing roller (41) penetrating through the first bearing seat (44); and the lower outer circumferential wall of the gluing roller (41) abuts against the glue in the glue box (42); The glue thickness uniform covering assembly (6) comprises a thickness covering roller (61) and a thickness uniform scraper (62) which is parallel to the outer wall of the thickness covering roller (61) and located on one side of the outer wall of the thickness covering roller (61) close to the gluing roller (41), the upper outer wall of the thickness uniform scraper (62) movably abuts against the lower outer wall of the gluing roller (41), and the two ends of the thickness covering roller (61) are connected with the body (1) through a second bearing seat (63).

2. The gumming and laminating embosser of claim 1, wherein, The impurity removing assembly (7) comprises a removing roller (71) located at a downstream position of the gluing roller (41) away from the thickness covering roller (61) and a cleaning scraper plate (72) located on the outer wall of the removing roller (71) in parallel, the outer wall of the cleaning scraper plate (72) is in movable abutment with the outer wall of the gluing roller (41) away from the thickness covering roller (61), the cleaning scraper plate (72) is provided in an arc-shaped structure with an inner recess, the removing roller (71) is connected to the machine body (1) through a third bearing seat (73) at both ends, the cleaning scraper plate (72) is provided with a baffle (721) for preventing glue liquid from dripping after cleaning at one end, a filter box (722) is located below the other end of the cleaning scraper plate (72) away from the baffle (721), the filter box (722) is located above the glue box (42), a filter screen is arranged in the filter box (722), the filter screen is replaceable, and a filter guide slot (723) is arranged at the end of the cleaning scraper plate (72) close to the filter box (722).

3. The gumming and laminating embosser of claim 2, wherein, The cleaning scraper plate (72) is provided in a low degree of inclination structure close to the filter box (722).

4. The gumming and laminating embosser of claim 2, wherein, The linkage mechanism comprises a driving motor (8), a driving driving gear (81), a glue uniform driven gear (82) and a cleaning driven gear (83), the glue uniform driven gear (82) is located on the outer circumferential wall of one end of the thickness covering roller (61) penetrating through the second bearing seat (63), the cleaning driven gear (83) is located on the outer circumferential wall of the end of the removing roller (71) close to one side of the glue uniform driven gear (82), the output end of the driving motor (8) is connected to the driving driving gear (81), the driving driving gear (81) is located between the glue uniform driven gear (82) and the cleaning driven gear (83), and the driving driving gear (81) is connected in meshing engagement with the glue uniform driven gear (82) and the cleaning driven gear (83).

5. The gumming and laminating embosser of claim 4, wherein, When the driving motor (8) drives the driving driving gear (81) to rotate in a forward direction, the outer wall of the thickness uniform scraper plate (62) is not in abutment with the outer wall of the gluing roller (41), and the cleaning scraper plate (72) is in abutment with the outer wall of the gluing roller (41).

6. The gumming and laminating embosser of claim 4 wherein, The driving motor (8) is connected to the controller on the machine body (1) through wires.

7. The gumming and compounding embosser of claim 1, wherein, The rolling flower roller (21) and the embossing roller (22) can be arranged horizontally or vertically.

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