Double-sided embossing machine for manufacturing facial tissues

By designing a liftable and quickly installing and disassembled embossing roller system, the existing double-sided embossing machine with low applicability and easy scaling of embossing rollers is solved, and a more efficient multi-patterned embossing process is achieved.

CN222875490UActive Publication Date: 2025-05-16LAOHEKOU YANGSANHONGFU PAPER CO LTD
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Patent Information

Application Number
CN202421877268.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-16
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The existing double-sided embossing machine for fabricating facial tissues can only press one pattern separately, which has low applicability, and the embossing rollers of traditional embossing machines are not convenient for disassembly, resulting in excessive impurities adhering to the surface of the rollers, affecting the quality of the embossing.

Method used

A double-sided embossing machine including a cushion, a support plate, a base plate and a liftable embossing roller are designed. Through the sliding connection of the card block and the connecting rod, the embossing roller is quickly installed and removed, and the position of the embossing roller is adjusted through the gear and belt system to ensure the surface of the embossing roller is clean.

Benefits of technology

It realizes rapid replacement and cleaning of embossing rollers, improves the applicability and embossing quality of the embossing machine, and avoids the influence of impurities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of facial tissue embossing, in particular to a double-sided embossing machine for facial tissue manufacturing, which comprises two first clamping blocks, two supporting plates and a bottom plate, the inner wall of each first clamping block is slidably connected with a second clamping block, the right side surface of each second clamping block is fixedly connected with an embossing roller, and the bottom plate is fixedly connected with the bottom plate. The right end of each embossing roller is fixedly connected with a connecting rod, the embossing rollers are moved to drive a second clamping block to be connected with a corresponding first clamping block, at the moment, a first threaded rod is rotated to drive a first sliding block to move, and through connection of the first sliding block and a supporting plate, the effect that the supporting plate drives a corresponding connecting cylinder to move is achieved; through connection between the connecting cylinders and the corresponding connecting rods, the effect of installing the embossing roller is achieved, then the effect of conveniently replacing different embossing rollers can be achieved through rapid installation and disassembly of the embossing roller, the embossing roller can be conveniently disassembled and cleaned, it is guaranteed that too many impurities cannot adhere to the surface of the embossing roller, and the embossing quality is prevented from being affected.
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Description

Technical Field

[0001] The utility model relates to the technical field of facial tissue embossing, in particular to a double-sided embossing machine used for manufacturing facial tissue. Background Art

[0002] Facial tissue, a paper product used for cleaning, has wet toughness. The main difference in quality between facial tissue and toilet paper is that facial tissue generally has wet toughness, while toilet paper is generally not allowed to have wet toughness to prevent the paper from being difficult to decompose after use and clogging the sanitary septic tank.

[0003] Facial tissue embossing is a process in which special equipment and processes are used during the production of facial tissue to emboss the surface of the facial tissue into different shapes and patterns. This process can not only beautify the appearance of the facial tissue, but more importantly, it can improve the quality and comfort of the facial tissue.

[0004] However, in the existing double-sided embossing machines for manufacturing facial tissue, only one pattern can be embossed on the facial tissue. When different patterns need to be embossed on the facial tissue, the facial tissue needs to be placed on another device for embossing. It is not convenient for one embossing machine to achieve multiple embossing effects and has low adaptability. In addition, the embossing roller of the traditional embossing machine is not easy to disassemble, which will cause too many impurities to adhere to the surface of the embossing roller, affecting the embossing quality.

[0005] Therefore, a new solution needs to be proposed to solve this problem. Utility Model Content

[0006] In view of the above background technology, the existing technology has the following shortcomings and defects: the existing embossing machine can only emboss one pattern alone, has low applicability, and is not convenient to disassemble the embossing roller, which will cause excessive impurities to adhere to the surface of the embossing roller after long-term use, affecting the embossing quality.

[0007] The utility model discloses a double-sided embossing machine for manufacturing facial tissue, comprising two card blocks 1, two support plates and a bottom plate, the inner wall of each card block 1 is slidably connected with a card block 2, the right side surface of each card block 2 is fixedly connected with an embossing roller, the right end of each embossing roller is fixedly connected with a connecting rod, the outer surface of each connecting rod is sleeved with a connecting tube, the inner wall of each support plate is rotatably connected with the outer surface of the corresponding card block 1 and the connecting tube, a sliding groove 1 is provided on the upper surface of the bottom plate, a sliding block 1 is slidably connected to the inner wall of the sliding groove 1, a threaded rod 1 is threadedly connected to the inner wall of the sliding block 1, the outer surface of the threaded rod 1 is rotatably connected to the inner wall of the bottom plate, and the upper surface of the sliding block 1 is fixedly connected to the bottom surface of the corresponding support plate.

[0008] Furthermore, the upper surface of the bottom plate is fixedly connected to the bottom surface of the corresponding support plate, and a sliding groove 2 is provided on a side of each support plate close to each other, and a sliding block 2 is slidably connected to the inner wall of each sliding groove 2.

[0009] Furthermore, the upper surface of each sliding block 2 is rotatably connected to a threaded rod 2, the outer surface of each threaded rod 2 is threadedly connected to the inner wall of the corresponding support plate, and the inner wall of each sliding block 2 is rotatably connected to the outer surface of the corresponding clamping block 1 and the connecting tube.

[0010] Furthermore, a support block is fixedly connected to the upper surface of the base plate, and a motor is fixedly connected to the upper surface of the support block.

[0011] Furthermore, a sliding groove three is opened on the left side of one of the support plates, the inner wall of the sliding groove three is slidably connected to a sliding block three, the inner wall of the sliding block three is slidably connected to two guide rods, and both ends of each guide rod are fixedly connected to the inner wall of the sliding groove three.

[0012] Furthermore, two springs are fixedly connected to the inner wall of the sliding slot three, and the other end of each of the springs is fixedly connected to the back side of the sliding block three.

[0013] Furthermore, the inner wall of the sliding block three is rotatably connected to a gear one, the outer surface of the gear one is meshed with a toothed belt, the inner wall of the toothed belt is meshed with two gears two, one of the inner walls of the gears two is fixedly connected to the corresponding outer surface of the block one and the output shaft of the motor, and the other inner wall of the gear two is rotatably connected to the outer surface of the sliding block two, one of the outer surface of the gears two is meshed with a gear three, and the inner wall of the gear three is fixedly connected to the outer surface of the corresponding block one.

[0014] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0015] 1. The utility model sets components such as a card block 1, a card block 2, a connecting rod, a connecting tube, a sliding block 1, and a threaded rod 1. The embossing roller is moved to drive the card block 2 to connect with the corresponding card block 1. At this time, the threaded rod 1 is rotated to drive the sliding block 1 to move. The connection between the sliding block 1 and the support plate can realize the effect of the support plate driving the corresponding connecting tube to move. The connection between the connecting tube and the corresponding connecting rod can realize the effect of installing the embossing roller. Furthermore, the embossing roller can be quickly installed and disassembled to facilitate the replacement of different embossing rollers, and the embossing roller can be easily disassembled and cleaned to ensure that the surface of the embossing roller does not adhere to too many impurities, etc., to prevent the embossing quality from being affected.

[0016] 2. The utility model sets sliding block 2, threaded rod 2, gear 2, sliding block 3, spring, gear 1, toothed belt and other components, and simultaneously rotates the threaded rod 2 to drive the corresponding sliding block 2 to rise and fall inside the corresponding sliding groove 2, and drives the corresponding clamping block 1 and the connecting tube to rise and fall through the sliding block 2, thereby realizing the lifting effect of the embossing roller. At this time, the corresponding gear 2 and gear 3 are driven to rise and fall through the sliding block 2, and the effect of gear 1 moving is realized through the connection between gear 2 and the toothed belt, and the sliding block 3 is driven to slide on the surface of the guide rod and inside the sliding groove 3 through the gear 1, and the supporting effect of the sliding block 3 is realized by installing a spring on the back side of the sliding block 3, and the sliding block 3 is tightened, thereby realizing the effect that the device is convenient for adjusting the distance between the two embossing rollers, and does not affect the motor driving the two embossing rollers to reverse, so as to facilitate embossing of facial tissues of different thicknesses. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0018] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the utility model;

[0019] Figure 2 This is a schematic diagram of the main structure of the utility model;

[0020] Figure 3 This is a schematic diagram of the connection relationship between the first card block and the second card block of the utility model;

[0021] Figure 4 It is a structural schematic diagram of the connection relationship between the sliding groove three and the sliding block three of the utility model.

[0022] In the figure: 1. Block 1; 2. Block 2; 3. Embossing roller; 4. Connecting rod; 5. Connecting cylinder; 6. Support plate; 7. Bottom plate; 8. Sliding groove 1; 9. Sliding block 1; 10. Threaded rod 1; 11. Sliding groove 2; 12. Sliding block 2; 13. Threaded rod 2; 14. Motor; 15. Support block; 16. Gear 2; 17. Sliding groove 3; 18. Sliding block 3; 19. Guide rod; 20. Spring; 21. Gear 1; 22. Toothed belt; 23. Gear 3. DETAILED DESCRIPTION

[0023] The following will disclose multiple embodiments of the utility model with diagrams. For the purpose of clear description, many physical details will be described together in the following description. However, it should be understood that these physical details should not be used to limit the utility model. In other words, in some embodiments of the utility model, these physical details are not necessary. In addition, for the purpose of simplifying the diagram, some conventional structures and components will be depicted in a simple schematic manner in the diagram.

[0024] See also Figure 1 , Figure 2 , Figure 3 , Figure 4 The utility model is a double-sided embossing machine for facial tissue manufacturing, comprising two card blocks 1, two support plates 6 and a bottom plate 7, the inner wall of each card block 1 is slidably connected with a card block 2, the card block 2 2 is placed on the inner wall of the card block 1, and is set to be a sliding connection, through the connection between the card block 1 and the card block 2, the rotation of the card block 1 is realized by the rotation of the card block 1, the right side of each card block 2 2 is fixedly connected with an embossing roller 3, the embossing roller 3 is connected to the card block 2 2, and the rotation effect of the embossing roller 3 is realized by the rotation of the card block 2 2.

[0025] like Figure 3 As shown, the right end of each embossing roller 3 is fixedly connected with a connecting rod 4, and the connecting rod 4 is installed at the right end of the embossing roller 3 to achieve the positioning and installation effect of the connecting rod 4, and the outer surface of each connecting rod 4 is sleeved with a connecting tube 5, and the inner wall of each support plate 6 is rotatably connected to the corresponding block 1 and the outer surface of the connecting tube 5, and the connecting tube 5 is connected to the corresponding connecting rod 4 to achieve the limiting effect of the connecting rod 4, and the support plate 6 is connected to the corresponding block 1 and the connecting tube 5 to achieve the limiting effect of one of the blocks 1 and the connecting tube 5.

[0026] In this embodiment, a sliding groove 8 is provided on the upper surface of the bottom plate 7, and the sliding groove 8 is provided on the upper surface of the bottom plate 7 to achieve the positioning effect of the sliding groove 8. The inner wall of the sliding groove 8 is slidably connected with a sliding block 9, and the sliding block 9 is placed inside the sliding groove 8. The limiting effect of the sliding block 9 is achieved by the contour of the sliding groove 8. The inner wall of the sliding block 9 is threadedly connected with a threaded rod 10, and the outer surface of the threaded rod 10 is rotatably connected to the inner wall of the bottom plate 7. The threaded rod 10 is installed on the inner wall of the sliding block 9 and is set to be threaded. The movement effect of the sliding block 9 can be achieved by rotating the threaded rod 10, and the threaded rod 10 and the bottom plate 7 are set to be rotatably connected to achieve the limiting effect of the threaded rod 10. The upper surface of the sliding block 9 is fixedly connected to the bottom surface of the corresponding support plate 6, and the upper surface of the sliding block 9 is connected to the corresponding support plate 6. The movement of the support plate 6 can be achieved by moving the sliding block 9.

[0027] Combination Figure 2 and Figure 3 The upper surface of the bottom plate 7 is fixedly connected to the bottom surface of the corresponding support plate 6, and the bottom plate 7 is fixed to one of the support plates 6 to achieve the supporting effect of the support plate 6. A sliding groove 2 11 is opened on one side of each support plate 6 that is close to each other, and a sliding block 2 12 is slidably connected to the inner wall of each sliding groove 2 11. The sliding groove 2 11 is opened and the sliding block 2 12 is placed inside the sliding groove 2 11, and it is set to be a sliding connection to achieve the limiting effect of the sliding block 2 12.

[0028] In a preferred embodiment, the upper surface of each sliding block 12 is rotatably connected with a threaded rod 13, and the threaded rod 13 is placed on the upper surface of the sliding block 12 and is set to be rotatably connected to achieve a limiting effect on the threaded rod 13. The outer surface of each threaded rod 13 is threadedly connected to the inner wall of the corresponding support plate 6. The threaded rod 13 is connected to the corresponding support plate 6. The threaded rod 13 can be lifted and lowered by rotating the threaded rod 13, and then the corresponding sliding block 12 can be driven to lift and lower. The inner wall of each sliding block 12 is rotatably connected to the outer surface of the corresponding clamping block 1 and the connecting tube 5. The sliding block 12 is connected to the corresponding clamping block 1 and the connecting tube 5. The lifting and lowering of the sliding block 12 can achieve the lifting and lowering effect of the corresponding clamping block 1 and the connecting tube 5, and then the lifting and lowering of the embossing roller 3 can be achieved.

[0029] In this embodiment, a support block 15 is fixedly connected to the upper surface of the base plate 7, and the support block 15 is installed on the upper surface of the base plate 7 to achieve a supporting and installing effect for the support block 15. A motor 14 is fixedly connected to the upper surface of the support block 15, and the motor 14 is installed on the upper surface of the support block 15 to achieve a supporting effect for the motor 14 through the support block 15.

[0030] like Figure 4 As shown, a sliding groove 3 17 is provided on the left side surface of one of the support plates 6, and the sliding groove 3 17 is provided on the surface of the corresponding support plate 6 to achieve the positioning effect of the sliding groove 3 17, and the inner wall of the sliding groove 3 17 is slidably connected with a sliding block 3 18, and the sliding block 3 18 is installed inside the sliding groove 3 17 and is set to be a sliding connection to achieve the limiting effect of the sliding block 3 18, and the inner wall of the sliding block 3 18 is slidably connected with two guide rods 19, and both ends of each guide rod 19 are fixedly connected to the inner wall of the sliding groove 3 17, and the guide rod 19 is installed on the inner wall of the sliding groove 3 17, and the guide rod 19 is connected to the sliding block 3 18 to achieve the secondary limiting effect of the sliding block 3 18.

[0031] In this embodiment, two springs 20 are fixedly connected to the inner wall of the sliding groove three 17. The springs 20 are installed on the inner wall of the sliding groove three 17 to achieve the positioning and installation effect of the springs 20. The other end of each spring 20 is fixedly connected to the back of the sliding block three 18. The other end of the spring 20 is connected to the sliding block three 18. The spring 20 can achieve the effect of tightening the sliding block three 18.

[0032] In a preferred embodiment, the inner wall of the sliding block 3 18 is rotatably connected with a gear 1 21, and the gear 1 21 is installed on the inner wall of the sliding block 3 18 and is set to be rotatably connected to achieve the limiting effect of the gear 1 21. The outer surface of the gear 1 21 is meshed with a toothed belt 22, and the inner wall of the toothed belt 22 is meshed with two gears 2 16. The toothed belt 22 is placed on the side of the gear 1 21, and the gear 2 16 is connected to the toothed belt 22. By rotating one of the gears 2 16, the gear 1 21 and the other gear 2 16 can be rotated by the toothed belt 22. The inner wall of one of the gears 2 16 is fixedly connected with the outer surface of the corresponding block 1 and the output shaft of the motor 14. The lower gear 2 16 is fixed with the block 1 and the output shaft of the motor 14, and the corresponding gear 2 16 and the block 1 can be rotated by the motor 14, and then the other gear 2 16 can be rotated by the toothed belt 22.

[0033] In this embodiment, the inner wall of another gear 2 16 is rotationally connected to the outer surface of the sliding block 2 12, and the sliding block 2 12 is connected to the corresponding gear 2 16 and set to be rotationally connected. The sliding block 2 12 realizes the limiting effect of gear 2 16. The outer surface of one of the gears 2 16 is meshed with gear 3 23, and the gear 3 23 is placed above one of the gears 2 16 and connected. By rotating the gear 2 16, the reverse rotation effect of the gear 3 23 can be achieved. The inner wall of the gear 3 23 is fixedly connected to the outer surface of the corresponding block 1, and the gear 3 23 is connected to the corresponding block 1 and set to be fixedly connected. By rotating the gear 3 23, the rotation of the block 1 can be achieved, thereby realizing that the device can achieve the reverse rotation effect of the gear 2 16 and the gear 3 23, thereby realizing the reverse rotation effect of the two embossing rollers 3.

[0034] The above description is only an embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the scope of the claims of the present invention.

Claims

1. A double-sided embossing machine for manufacturing facial tissue, comprising two card blocks (1), two support plates (6) and a bottom plate (7), characterized in that: The inner wall of each of the card blocks (1) is slidably connected to the card block (2), the right side surface of each of the card blocks (2) is fixedly connected to the embossing roller (3), the right end of each of the embossing rollers (3) is fixedly connected to the connecting rod (4), the outer surface of each of the connecting rods (4) is sleeved with a connecting tube (5), the inner wall of each of the support plates (6) is rotatably connected to the outer surface of the corresponding card block (1) and the connecting tube (5), the upper surface of the bottom plate (7) is provided with a sliding groove (8), the inner wall of the sliding groove (8) is slidably connected to a sliding block (9), the inner wall of the sliding block (9) is threadedly connected to a threaded rod (10), the outer surface of the threaded rod (10) is rotatably connected to the inner wall of the bottom plate (7), and the upper surface of the sliding block (9) is fixedly connected to the bottom surface of the corresponding support plate (6).

2. A double-sided embossing machine for facial tissue manufacturing according to claim 1, characterized in that: The upper surface of the bottom plate (7) is fixedly connected to the bottom surface of the corresponding support plate (6), and each of the support plates (6) is provided with a sliding groove (11) on one side close to each other, and the inner wall of each sliding groove (11) is slidably connected with a sliding block (12).

3. A double-sided embossing machine for facial tissue manufacturing according to claim 2, characterized in that: The upper surface of each sliding block (12) is rotatably connected to a threaded rod (13), the outer surface of each threaded rod (13) is threadedly connected to the inner wall of the corresponding support plate (6), and the inner wall of each sliding block (12) is rotatably connected to the outer surface of the corresponding clamping block (1) and the connecting tube (5).

4. A double-sided embossing machine for facial tissue manufacturing according to claim 1, characterized in that: A support block (15) is fixedly connected to the upper surface of the base plate (7), and a motor (14) is fixedly connected to the upper surface of the support block (15).

5. A double-sided embossing machine for facial tissue manufacturing according to claim 1, characterized in that: A sliding groove three (17) is provided on the left side of one of the support plates (6), and a sliding block three (18) is slidably connected to the inner wall of the sliding groove three (17), and two guide rods (19) are slidably connected to the inner wall of the sliding block three (18), and both ends of each guide rod (19) are fixedly connected to the inner wall of the sliding groove three (17).

6. A double-sided embossing machine for facial tissue manufacturing according to claim 5, characterized in that: Two springs (20) are fixedly connected to the inner wall of the sliding groove three (17), and the other end of each spring (20) is fixedly connected to the back side of the sliding block three (18).

7. A double-sided embossing machine for facial tissue manufacturing according to claim 5, characterized in that: The inner wall of the sliding block three (18) is rotatably connected to a gear one (21), the outer surface of the gear one (21) is meshed with a toothed belt (22), the inner wall of the toothed belt (22) is meshed with two gear twos (16), one of the inner walls of the gear two (16) is fixedly connected to the outer surface of the corresponding clamping block one (1) and the output shaft of the motor (14), the inner wall of the other gear two (16) is rotatably connected to the outer surface of the sliding block two (12), the outer surface of one of the gear two (16) is meshed with a gear three (23), the inner wall of the gear three (23) is fixedly connected to the outer surface of the corresponding clamping block one (1).