A preparation device of a flushable wet tissue
By introducing a dilution water mechanism and an efficiency adjustment mechanism into the flushable wet wipes preparation device, the problem of difficult adjustment of dilution water and dehydration curves in existing devices has been solved, realizing the flexibility and high efficiency of double-layer production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIAXING JIUYU INTELLIGENT EQUIPMENT CO LTD
- Filing Date
- 2025-09-22
- Publication Date
- 2026-07-28
AI Technical Summary
Existing flushable wet wipes production equipment lacks the function of adding dilution water, is inconvenient to adjust the dehydration curve, and cannot carry out double-layer production.
A preparation device including a dilution water mechanism, an efficiency adjustment mechanism, and a dual-layer production mechanism was designed. The slurry concentration is controlled by the dilution water mechanism, the dewatering efficiency is adjusted, and dual-layer production is achieved.
It solves the problem of difficulty in adjusting the horizontal bar quantity and dehydration speed of the inclined wire mesh forming machine, improves production flexibility, and realizes the manufacturing of double-layer products.
Smart Images

Figure CN224564965U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flushable wet wipes technology, specifically to a device for preparing flushable wet wipes. Background Technology
[0002] Flushable wet wipes are a type of wet wipe that can quickly break down into small pieces when exposed to water and pass smoothly through the sewer system. They are mainly used for toilet cleaning. The production of flushable wet wipes requires a preparation device and involves several main steps, including raw material selection, fiber treatment, web forming, reinforcement, and post-treatment.
[0003] Currently, wet forming is often used in the production of flushable wet wipes. Domestic equipment manufacturers mostly use inclined wire forming machines for the forming part of flushable wet wipes. This method has the problems of not having the function of adding dilution water, inconvenience in adjusting the dehydration curve, and usually not being able to carry out double-layer production.
[0004] The patent application document with patent number CN201921235706.0 discloses the structure of the inclined wire mesh forming device, which includes an inclined wire mesh headbox, a forming box and a crossbeam. The forming box is set at the lower part of the inclined wire mesh headbox and fixed on the crossbeam. The inclined wire mesh headbox is fixed on the crossbeam by a support column. One end of the crossbeam is hinged to the frame, and the lower part of the other end is connected to a stepless lifting mechanism.
[0005] However, the aforementioned inclined wire forming device has the problems of not having the function of adding dilution water, inconvenience in adjusting the dehydration curve, and usually not being able to perform double-layer production. Therefore, this utility model designs a wet paper towel preparation device that can be flushed, which solves the problems of the inclined wire forming device being difficult to adjust the horizontal quantity, the inclined wire forming device being difficult to adjust the dehydration speed, and the single function of the previous equipment. Utility Model Content
[0006] The purpose of this invention is to provide a preparation device for washable wet wipes, which aims to improve the problems that existing preparation devices for washable wet wipes usually do not have the function of adding dilution water, are inconvenient to adjust the dehydration curve, and usually cannot carry out double-layer production.
[0007] This invention is implemented as follows: A device for preparing washable wet paper towels includes a device body, which includes a wire mesh frame and a hydraulic headbox. The hydraulic headbox is located on one side of the device body. The surface of the wire mesh frame is provided with a long wire section. A control box is installed on the surface of the device body. A first white water tray is located below the dewatering tank, water leg tank, and low vacuum water absorption tank on the surface of the wire mesh frame. A dilution water mechanism is provided on the surface of the hydraulic headbox. Multiple sets of support seats are installed at the bottom of the wire mesh frame. A double-layer production mechanism is provided on the surface of the support seats. An efficiency adjustment mechanism is provided on the surface of the dewatering tank and the support plate.
[0008] As one embodiment of this utility model: the surface of the mesh table frame is provided with a first breast roller, a forming plate, a dehydration box, a water leg box, a low vacuum water suction box, a high vacuum water suction box, a lying roller and a drive roller in sequence along the long mesh section.
[0009] As one embodiment of this utility model: the surface of the long wire section below the wire table frame is sequentially provided with a guide roller, a water spray pipe assembly, a paper edge cutting assembly, a finishing roller, a pneumatic corrector, a wire tensioner, and a winding assembly, and the surface of the wire table frame is provided with a second adjustment device.
[0010] As one embodiment of this utility model: a walkway is installed on the surface of the wire mesh table frame, paper is provided on the surface of the long wire mesh section, a fixed platform is installed on the surface of the wire mesh table frame, a second front-to-back adjustment device is provided on the surface of the fixed platform, a first breast roller is provided on the surface of the wire mesh table frame that contacts the bottom of the long wire mesh section, a first adjustment device for adjusting the height of the first breast roller is provided on the surface of the wire mesh table frame, multiple sets of dehydration plates are arrayed on the surface of the dehydration box, the first front-to-back adjustment device is provided on the surface of the water leg box, and a third adjustment device is provided on the surfaces of the low vacuum water absorption box and the high vacuum water absorption box.
[0011] As one embodiment of this utility model: the surfaces of the first breast roller, the lower roller, the drive roller, and the guide roller are all covered with wear-resistant rubber. A fourth adjustment device, a fifth adjustment device, and a sixth adjustment device are installed on the surface of the support base. A scraper assembly is respectively provided on one side of the first breast roller and the guide roller. A guide roller is installed at the bottom of the screen frame by screws. A tension roller is installed at the bottom of the screen frame by screws. A press roller is provided on the surface of the support base.
[0012] As one embodiment of this utility model: a support leg is installed on the surface of the support base, a controller is installed on the surface of the support leg, a balance chamber is opened inside the support leg, a slurry discharge chamber is installed on the surface of the balance chamber, a turbulence generator is installed inside the balance chamber, a slurry distribution tube bundle is installed on the surface of the balance chamber, the slurry distribution tube bundle is connected to the inside of the balance chamber through a liquid inlet pipe, and a lip plate and a lip plate adjustment assembly are installed inside the balance chamber.
[0013] As one embodiment of this utility model: the double-layer production mechanism consists of a second breast roller disposed on the surface of the support base, a guide roller disposed on the surface of the support base, a drive roller disposed on the surface of the support base, a suction roller disposed on the surface of the support base, a dewatering plate box disposed on the surface of the support base, a bottom forming net disposed on the surface of the second breast roller, a second white water pan disposed on the surface of the support base, and a pressing roller disposed on the surface of the support base.
[0014] As one embodiment of this utility model: the efficiency adjustment mechanism includes a mounting block disposed on the surface of the dehydration tank, a threaded sleeve disposed on the surface of the mounting block, an assembly stud disposed on the surface of the threaded sleeve for mounting the dehydration tank on the surface of the support plate, and bolts disposed on the surface of the dehydration tank for mounting the dehydration plate.
[0015] As one embodiment of this utility model: the dilution water mechanism includes a dilution water pump disposed on the surface of the hydraulic headbox, a dilution water pipe disposed on the surface of the dilution water pump, a regulating valve disposed on the dilution water pipe, and a dilution water plate and a diffuser plate disposed inside the headbox.
[0016] The beneficial effects of this utility model are: 1. This utility model is equipped with a dilution water mechanism. By adding dilution water into the slurry, the concentration of the slurry can be effectively controlled, which solves the problem of the inclined mesh forming machine having difficulty in adjusting the horizontal bar quantity. 2. This utility model is equipped with an efficiency adjustment mechanism. By increasing or decreasing the number of dewatering tanks, the dewatering efficiency of the paper can be adjusted, which solves the problem that the dewatering speed of the inclined wire forming machine is difficult to adjust. 3. This utility model is equipped with a double-layer production mechanism. By adding a bottom forming mesh, it can solve the problem of the single use of the previous equipment. Moreover, the operation of the double mesh can perfectly solve the problem of producing high-quantity products that cannot be produced by a single mesh, thus greatly improving production flexibility. Attached Figure Description
[0017] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of the utility model, making other features, objects, and characteristics of the utility model more apparent. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an undue limitation of the utility model.
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the front cross-sectional structure of this utility model; Figure 3 For the present utility model Figure 2 Enlarged schematic diagram of the middle section; Figure 4 For the present utility model Figure 2A magnified schematic diagram of the double-layer production mechanism; Figure 5 For the present utility model Figure 2 Enlarged structural diagram of the dilution water mechanism; In the diagram: Device body 1; wire mesh platform 10; control box 11; support base 12; hydraulic headbox 13; support leg 131; pulp distribution tube bundle 132; controller 133; liquid inlet pipe 134; turbulence generator 135; discharge chamber 136; balance chamber 137; lip plate and lip plate adjustment assembly 138; paper body 14; long wire section 15; walkway 16; first breast roll 17; first adjustment device 171; forming plate 18; second adjustment device 181; water leg box 19; first front and rear adjustment device 191; low vacuum suction box 110; high vacuum suction box 1101; third adjustment device 1102; flat roll 111; drive roll 112; fourth adjustment device 1121; guide roll 113; fifth adjustment device 1131; water spray pipe assembly 114; paper edge cutting assembly 115. 116. Rewinding assembly; 117. Pneumatic straightener; 118. Finishing roller; 119. Tensioner; 1191. Sixth adjusting device; 120. Wear-resistant rubber; 121. Scraper assembly; 122. First white water pan; 123. Guide roller; 124. Tensioning roller; 125. Press roller; 126. Fixed platform; 127. Dewatering box; 1271. Second front and rear adjusting device; 128. Dewatering plate; 129. Support plate; 2. Double-layer production mechanism; 21. Drive roller; 22. Guide roller; 23. Dewatering plate box; 24. Second breast roller; 25. Bottom forming net; 26. Suction roller; 27. Pressing roller; 28. Second white water pan; 3. Efficiency adjustment mechanism; 31. Screw sleeve; 32. Bolt; 33. Assembly stud; 34. Mounting block; 4. Dilution water mechanism; 41. Dilution water pump; 42. Adjusting valve; 43. Dilution water pipe; 44. Dilution water plate; 45. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0021] Example 1: In order to improve the problems that existing preparation devices usually do not have the function of adding dilution water, are inconvenient to adjust the dehydration curve, and usually cannot perform double-layer production, this utility model designs a preparation device for wet paper towels that can be flushed. It can solve the problem that the inclined wire forming device is difficult to adjust the horizontal quantity, the problem that the inclined wire forming device is difficult to adjust the dehydration speed, and the problem of the single use of previous equipment.
[0022] like Figures 1-5 As shown, specifically, the apparatus for preparing washable wet wipes of this utility model includes a main body 1 comprising a wire mesh frame 10 and a hydraulic headbox 13. The hydraulic headbox 13 is provided on one side of the main body 1. The surface of the wire mesh frame 10 is provided with a long wire section 15. A control box 11 is installed on the surface of the main body 1. A first white water tray 122 is provided below the dewatering tank 127, the water leg tank 19, and the low vacuum water absorption tank 110 on the surface of the wire mesh frame 10. A dilution water mechanism 4 is provided on the surface of the hydraulic headbox 13. Multiple sets of support seats 12 are installed at the bottom of the wire mesh frame 10. A double-layer production mechanism 2 is provided on the surface of the support seat 12. An efficiency adjustment mechanism 3 is provided on the surface of the dewatering tank 127 and the support plate 129.
[0023] Specifically, such as Figures 1-2 As shown, the apparatus for preparing wet wipes mainly consists of an apparatus body 1, which includes a wire mesh frame 10 and a hydraulic headbox 13. The apparatus body 1 has a frame structure, with the hydraulic headbox 13 located on one side to provide the pulp required for preparing wet wipes. The wire mesh frame 10 serves as the main forming and dewatering area, and its surface is provided with a long wire section 15, which is a ring-shaped wire belt structure used to carry and transport the pulp. A control box 11 is mounted on the surface of the apparatus body 1, containing a control system that can control and adjust the operating parameters of the entire preparation apparatus, such as the pulp flow rate and the operating speed of each component.
[0024] On the surface of the headboard 10, along the conveying direction of the long headboard section 15, a first breast roller 17, a forming plate 18, a dewatering box 127, a water leg box 19, a low vacuum suction box 110, a high vacuum suction box 1101, a bottom roller 111, and a drive roller 112 are arranged sequentially. The first breast roller 17 contacts the bottom of the long headboard section 15, serving to support and guide the long headboard section 15. The height of the first breast roller 17 can be adjusted by the first adjusting device 171 to adjust the tension and operating state of the long headboard section 15. The forming plate 18 is used to initially shape the slurry flowing from the hydraulic headbox 13, so that the slurry is evenly distributed on the long headboard section 15.
[0025] The surface of the dewatering tank 127 is arrayed with multiple sets of dewatering plates 128. When the slurry passes through the dewatering tank 127, the dewatering plates 128 can perform preliminary dewatering, removing some moisture. The surface of the water leg tank 19 is provided with a first front-to-back adjustment device 191, which can adjust the position of the water leg tank 19 according to the actual production situation to optimize the dewatering effect. The surfaces of the low vacuum suction tank 110 and the high vacuum suction tank 1101 are provided with a third adjustment device 1102, which is used to adjust the vacuum degree of the suction tank to further dewater the slurry. As the slurry is conveyed on the long screen section 15, the degree of dewatering gradually increases. The accumulator roller 111 and the drive roller 112 are used to drive the long screen section 15 to circulate, ensuring continuous slurry conveying.
[0026] On the surface of the long wire section 15 below the wire table 10, a guide roller 113, a water spray pipe assembly 114, a paper edge cutting assembly 115, a finishing roller 118, a pneumatic straightener 117, a wire tensioner 119, and a winding assembly 116 are sequentially arranged. The guide roller 113 guides the running direction of the long wire section 15, ensuring its smooth operation. The water spray pipe assembly 114 sprays water onto the long wire section 15 to clean and wet it, preventing pulp from adhering to the long wire section 15. The paper edge cutting assembly 115 cuts the edges of the wet paper towels to make them neat in shape. The finishing roller 118 finishes the surface of the wet paper towels, improving their surface quality.
[0027] The pneumatic calibrator 117 is used to correct the operating position of the long wire section 15 and prevent it from deviating. The wire tensioner 119 can adjust the tension of the long wire section 15 to ensure its stable operation. The winding assembly 116 is used to wind up the prepared wet wipes for easy subsequent packaging and storage.
[0028] A walkway 16 is installed on the surface of the wire mesh workbench 10 to facilitate equipment maintenance and inspection by operators. Paper 14, i.e., the wet paper towel being prepared, is mounted on the surface of the long wire mesh section 15. A fixed platform 126 is installed on the surface of the wire mesh workbench 10, and a second front-to-back adjustment device 1271 is provided on the surface of the fixed platform 126 for adjusting the position of relevant components on the fixed platform 126. A second adjustment device 181 is also provided on the surface of the wire mesh workbench 10 to adjust the parameters of the entire wire mesh workbench 10 to meet different production needs.
[0029] like Figure 2 and Figure 3As shown, a dilution water mechanism 4 is provided on the surface of the hydraulic headbox 13. The dilution water mechanism 4 includes a dilution water pump 41 disposed on the surface of the hydraulic headbox 13, a dilution water pipe 43 disposed on the surface of the dilution water pump 41, a regulating valve 42 disposed on the surface of the dilution water pipe 43, a dilution water plate 44 disposed inside the distribution tube bundle 132, and a diffuser plate 45 disposed inside the distribution tube bundle 132. The dilution water pump 41 is mounted on the surface of the distribution tube bundle 132, and the input end of the dilution water pump 41 is electrically connected to the output end of the control box 11. The output end of the dilution water pump 41 is connected to a dilution water pipe 43. One end of the dilution water pipe 43 extends into the interior of the slurry distribution tube bundle 132. A dilution water plate 44 is installed inside the slurry distribution tube bundle 132. The dilution water plate 44 is connected to one end of the dilution water pipe 43. A diffuser plate 45 is installed inside the slurry distribution tube bundle 132. The diffuser plate 45 has a double plate structure. The dilution water plate 44 is located between the double plates of the diffuser plate 45. A regulating valve 42 is fitted on the surface of the dilution water pipe 43. The input end of the regulating valve 42 is electrically connected to the output end of the control box 11.
[0030] In order to effectively control the concentration of the pulp and solve the problem of difficulty in adjusting the width metering of the inclined wire forming machine, the user can manually or automatically open the regulating valve 42, so that the dilution water enters the surface of the dilution water plate 44 through the dilution water pipe 43, and then diffuses the dilution water through the diffuser plate 45. The dilution water enters the mixing chamber inside the pulp tube bundle 132 and mixes with the pulp. The mixed pulp enters all parts of the hydraulic headbox 13 evenly. The opening of the regulating valve 42 can be automatically adjusted to dilute the pulp entering the pulp tube bundle 132.
[0031] like Figure 2 and Figure 4 As shown, a double-layer production mechanism 2 is provided on the surface of the support base 12, a second breast roller 24 is provided on the surface of the support base 12, a bottom forming mesh 25 is provided on the surface of the second breast roller 24, a dewatering plate box 23 is provided on the surface of the support base 12 at the bottom of the dewatering plate box 23, a second white water tray 28 is installed on the surface of the support base 12 at the bottom of the dewatering plate box 23, the second white water tray 28 is divided into upper and lower layers, two white water outlet flanges are installed on the surface of the second white water tray 28, a guide roller 22 is provided on the surface of the support base 12, a drive roller 21 is provided on the surface of the support base 12, a suction roller 26 is provided on the surface of the support base 12, and a pressing roller 27 is provided on the surface of the support base 12. The surfaces of the pressing roller 27, the suction roller 26, the second breast roller 24, the guide roller 22, and the drive roller 21 are in contact with the surface of the bottom forming mesh 25.
[0032] To achieve double-layer production and address the issue of single-layer operation in previous equipment, pulp can be introduced onto the surface of the bottom forming wire 25 via another set of hydraulic headboxes 13. Under the action of the dewatering plate box 23, the pulp on the surface of the bottom forming wire 25 is dewatered and formed. The water generated during dewatering is collected inside the second white water pan 28. The bottom wet paper sheet formed on the surface of the bottom forming wire 25 is adsorbed onto the long wire section 15 and composited with the paper body 14 on the surface of the long wire section 15 under the pressure of the suction roller 26 and the pressing roller 27. After further dewatering treatment by the dewatering box 127, the low vacuum suction box 110, and the high vacuum suction box 1101, the paper is then humidified by the water spray pipe assembly 114 and the edge cutting assembly 115. Finally, the paper is wound together on the surface of the winding assembly 116 to form a double-layer composite product.
[0033] like Figure 2 and Figure 5 As shown, the surfaces of the dehydration tank 127 and the support plate 129 are provided with an efficiency adjustment mechanism 3. The efficiency adjustment mechanism 3 includes a mounting block 34 on the surface of the dehydration tank 127, a threaded sleeve 31 on the surface of the mounting block 34, an assembly stud 33 on the surface of the threaded sleeve 31 for mounting the dehydration tank 127 on the surface of the support plate 129, and a bolt 32 on the surface of the dehydration tank 127 for mounting the dehydration plate 128. The dehydration tank 127 and the dehydration plate 128 are connected by the bolt 32. Two sets of mounting blocks 34 are symmetrically mounted on the surface of the dehydration tank 127. The surface of the mounting block 34 is equipped with a threaded sleeve 31. The surface of the threaded sleeve 31 is threadedly connected to the assembly stud 33. The bottom end of the assembly stud 33 passes through the threaded sleeve 31 and the mounting block 34 in sequence and is threadedly fastened to the surface of the support plate 129.
[0034] To adjust the dehydration curve and solve the problem of difficulty in adjusting the dehydration speed of the inclined wire forming machine, the dehydration plate 128 is assembled onto the surface of the dehydration box 127 by bolts 32. The user then loosens the assembly studs 33, removes the assembly studs 33, and pulls the dehydration box 127, causing the dehydration box 127 to move the mounting block 34 away from the surface of the support plate 129, thus removing the dehydration box 127 from the surface of the support plate 129 and slowing down the dehydration efficiency of the paper 14 on the surface of the long wire section 15. Alternatively, the user can place the dehydration box 127 at a designated position on the surface of the support plate 129 and tighten the assembly studs 33. Under the action of the assembly studs 33, the dehydration box 127 and the mounting block 34 are installed on the surface of the support plate 129. The screw sleeve 31 can prevent the assembly studs 33 from accidentally loosening, thus increasing the dehydration efficiency of the paper 14 on the surface of the long wire section 15.
[0035] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but only if they are based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0036] The above-described embodiments are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the appended claims.
Claims
1. A device for preparing washable wet wipes, comprising a device body (1), characterized in that: The device body (1) includes a wire mesh table (10) and a hydraulic headbox (13). The hydraulic headbox (13) is provided on one side of the device body (1). The surface of the wire mesh table (10) is provided with a long wire mesh section (15). The surface of the device body (1) is equipped with a control box (11). A first white water tray (122) is provided below the dewatering tank (127), the water leg tank (19) and the low vacuum water suction tank (110) on the surface of the wire mesh table (10). The surface of the hydraulic headbox (13) is provided with a dilution water mechanism (4). The bottom of the wire mesh table (10) is equipped with multiple sets of support seats (12) for support. The surface of the support seat (12) is provided with a double-layer production mechanism (2). The surfaces of the dewatering tank (127) and the support plate (129) are provided with an efficiency adjustment mechanism (3).
2. The apparatus for preparing a washable wet tissue according to claim 1, characterized in that: The surface of the mesh frame (10) is provided with a first breast roller (17), a forming plate (18), a dehydration box (127), a water leg box (19), a low vacuum water suction box (110), a high vacuum water suction box (1101), a flat roller (111), and a drive roller (112) in sequence along the long mesh section (15).
3. The apparatus for preparing a washable wet tissue according to claim 2, characterized in that: The long wire section (15) below the wire table frame (10) is provided with a guide roller (113), a water spray pipe assembly (114), a paper edge cutting assembly (115), a finishing roller (118), a pneumatic corrector (117), a wire tensioner (119), and a winding assembly (116) in sequence. The surface of the wire table frame (10) is provided with a second adjustment device (181).
4. The apparatus for preparing a washable wet tissue according to claim 2, characterized in that: The surface of the wire mesh table (10) is equipped with a walkway (16), the surface of the long wire mesh section (15) is provided with paper (14), the surface of the wire mesh table (10) is equipped with a fixed platform (126), the surface of the fixed platform (126) is provided with a second front and rear adjustment device (1271), the surface of the wire mesh table (10) is provided with a first breast roller (17) that contacts the bottom of the long wire mesh section (15), the surface of the wire mesh table (10) is provided with a first adjustment device (171) for adjusting the height of the first breast roller (17), the surface of the dehydration box (127) is arranged with multiple sets of dehydration plates (128), the surface of the water leg box (19) is provided with a first front and rear adjustment device (191), and the surfaces of the low vacuum water absorption box (110) and the high vacuum water absorption box (1101) are provided with a third adjustment device (1102).
5. The apparatus for preparing a washable wet tissue according to claim 4, characterized in that: The surfaces of the first breast roller (17), the bottom roller (111), the drive roller (112), and the guide roller (113) are all covered with wear-resistant rubber (120). A fourth adjustment device (1121) is installed on the surface of the support base (12). A fifth adjustment device (1131) is installed on the surface of the support base (12). A sixth adjustment device (1191) is installed on the surface of the support base (12). A scraper assembly (121) is provided on one side of the first breast roller (17) and the guide roller (113). A guide roller (123) is installed at the bottom of the mesh table frame (10) by screws. A tension roller (124) is installed at the bottom of the mesh table frame (10) by screws. A press roller (125) is provided on the surface of the support base (12).
6. The apparatus for preparing a washable wet tissue according to claim 1, characterized in that: The support base (12) is equipped with a support leg (131), and a controller (133) is installed on the surface of the support leg (131). A balance chamber (137) is opened inside the support leg (131). A slurry discharge chamber (136) is installed on the surface of the balance chamber (137). A turbulence generator (135) is installed inside the balance chamber (137). A slurry distribution tube bundle (132) is installed on the surface of the balance chamber (137). The slurry distribution tube bundle (132) is connected to the interior of the balance chamber (137) through a liquid inlet pipe (134). A lip plate and a lip plate adjustment assembly (138) are installed inside the balance chamber (137).
7. The apparatus for preparing a washable wet tissue according to claim 6, characterized in that: The double-layer production mechanism (2) consists of a second breast roller (24) disposed on the surface of the support base (12), a guide roller (22) disposed on the surface of the support base (12), a drive roller (21) disposed on the surface of the support base (12), a suction roller (26) disposed on the surface of the support base (12), a dewatering plate box (23) disposed on the surface of the support base (12), a bottom forming net (25) disposed on the surface of the second breast roller (24), a second white water pan (28) disposed on the surface of the support base (12), and a pressing roller (27) disposed on the surface of the support base (12).
8. The apparatus for preparing a washable wet tissue according to claim 7, characterized in that: The efficiency adjustment mechanism (3) includes a mounting block (34) disposed on the surface of the dehydration tank (127), a threaded sleeve (31) disposed on the surface of the mounting block (34), an assembly stud (33) disposed on the surface of the threaded sleeve (31) for mounting the dehydration tank (127) on the surface of the support plate (129), and bolts (32) disposed on the surface of the dehydration tank (127) for mounting the dehydration plate (128).
9. The apparatus for preparing a washable wet tissue according to claim 8, characterized in that: The dilution water mechanism (4) includes a dilution water pump (41) disposed on the surface of the hydraulic headbox (13), a dilution water pipe (43) disposed on the surface of the dilution water pump (41), a regulating valve (42) disposed on the dilution water pipe (43), and a dilution water plate (44) and a diffuser plate (45) disposed inside the slurry tube bundle (132).