Cooling wet tissue production line
The compactly designed cooling wipes production line solves the problem of existing equipment taking up too much space and being unsuitable for small-scale enterprises, achieving efficient production of wipes and full utilization of cooling supplements.
Patent Information
- Application Number
- CN202511235359.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-01
- Publication Date
- 2025-10-28
AI Technical Summary
Existing equipment for producing cooling wipes is bulky and unsuitable for small businesses.
A compact cooling wipes production line was designed, including a frame, feeding mechanism, folding mechanism, soaking mechanism, cutting mechanism, and insertion and folding mechanism. Through a compact layout and coordinated transport channel design, efficient production of wipes and full utilization of cooling supplements are achieved.
It reduces the space required for equipment, making it suitable for small businesses, and improves the utilization rate of cooling supplements.
Smart Images

Figure CN120841295A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cooling wet wipes production, and more particularly to a cooling wet wipes production line. Background Technology
[0002] Cooling wipes are primarily used for quickly cooling and cleansing the skin, and are suitable for the following scenarios: Rapid cooling: With the addition of ingredients such as mint, it can lower the temperature by about 3°C within 3 seconds of contact with the skin, making it suitable for relieving the stuffy feeling in hot environments. Cleansing and de-sweating: After wiping, it removes sweat, oil, and dirt, keeping the skin fresh, especially suitable after outdoor sports or daily commutes.
[0003] Currently, there are existing patents for the production equipment of cooling wet wipes, such as the invention patent with authorization announcement number (CN116534345B). However, after comparison, it was found that although the patent can realize the production of wet wipes, the overall structure is bulky and not suitable for small-scale enterprises. Therefore, rectification is needed to address this situation. Summary of the Invention
[0004] To overcome the shortcomings of existing technologies, this application provides a cooling wipe production line, including a frame, a feeding mechanism, a folding mechanism, a soaking mechanism, a cutting mechanism, and an insertion and folding mechanism. The folding mechanism, soaking mechanism, cutting mechanism, and insertion and folding mechanism are sequentially arranged on the frame, and the feeding mechanism is located on one side of the frame for feeding the cooling wipe production line. The folding mechanism is used to fold the fabric fed by the feeding mechanism. The soaking mechanism is used to soak the folded fabric in a cooling agent to form a wipe. The cutting mechanism is used to cut the wipe. The insertion and folding mechanism is used to fold the cut wipe and output the folded wipe.
[0005] The cutting mechanism includes a first transport section, a cutting section, a second transport section, and a third transport section. The first transport section is used to guide the wet wipes, after they have been soaked in a cooling agent, into the cutting mechanism. The cutting section is used to cut the wet wipes to a set length. The second transport section is used to catch the cut wet wipes and transport them to the working area of the insertion and folding mechanism. The third transport section is used to receive the wet wipes folded by the insertion and folding mechanism and output the cooling wet wipe production line.
[0006] The first transport section includes a rotating roller 1, a rotating roller 2, a driven roller 1, and a driven roller 2; the rotating roller 1 and the driven roller 1 are connected by a belt to form a transport line; the rotating roller 2 and the driven roller 2 are connected by a belt to form a transport line; the two sets of transport lines are arranged opposite to each other, the rotating roller 1 and the rotating roller 2 operate in opposite directions, and the two sets of transport lines form a transport channel for wet wipes.
[0007] The cutting section includes a rotating roller three and a rotating cutter, which rotate in opposite directions. The rotating cutter is equipped with a cutter blade, and the wet wipes are cut by the interaction of the cutter blade and the rotating roller three.
[0008] The second transport section is divided into two groups, left and right, with a transport channel between them that allows the cut wet wipes to pass through. The left group of the second transport section includes a rotating roller four, a driven roller three, a driven roller five, and an adjusting roller one, all connected by a belt. The rotation of the rotating roller four drives the overall movement. The right group of the second transport section includes a rotating roller five, a driven roller four, a driven roller six, a driven roller seven, and an adjusting roller two, all connected by a belt. The rotation of the rotating roller five drives the overall movement. The right group of the second transport section is divided into two transport areas, one vertical and one inclined. The vertical group is positioned opposite the left group of the second transport section and forms a transport channel that allows the cut wet wipes to pass through.
[0009] The third transport section is positioned opposite the right-side inclined transport area of the second transport section, forming a transport channel between them that allows for the transport of folded wet wipes. The third transport section includes a rotating roller six, a driven roller eight, a driven roller nine, and an adjusting roller three, all connected by a belt. The rotation of the rotating roller five drives the overall movement. The insertion folding mechanism includes a rotating disk, a connecting rod, a slider, a sliding rod, and an insert plate. The rotating disk is rotatably connected to the frame and driven by a motor. The sliding rod is located on one side of the rotating disk, and a slider is slidably connected to the sliding rod. An insert plate is mounted on the slider, and the insert plate moves along the sliding rod with the slider. When the insert plate extends, it inserts into the transport channel between the right-side inclined transport area of the third transport section and the second transport section. One end of the connecting rod is rotatably connected to the rotating disk, and the other end is rotatably connected to the slider.
[0010] The folding mechanism includes a first folding plate, a second folding plate, a third folding plate, and a folding roller. Folding gaps are provided on the first folding plate, the second folding plate, and the third folding plate, and the folding gaps of the first folding plate, the second folding plate, and the third folding plate gradually become denser. The fabric output by the feeding mechanism gradually achieves a folded state after passing through the folding gaps provided on the first folding plate, the second folding plate, and the third folding plate, and finally achieves complete folding after passing through the folding roller.
[0011] The impregnation mechanism includes a material tank, a squeezing roller, and a guide roller. There are two sets of guide rollers, which are respectively set as the inlet and outlet of the impregnation mechanism. The folded fabric is introduced into the material tank through the guide roller at the inlet. After the fabric is impregnated with the added cooling agent to form a wet wipe, it is introduced into the squeezing roller. The squeezing roller is divided into upper and lower sets. The wet wipe passes between the two sets of squeezing rollers and finally flows into the cutting mechanism through the guide roller at the outlet.
[0012] It also includes a feeding line and a receiving box; the feeding line is located at the final output of the cutting mechanism and is used to collect the wet wipes after they have been folded in half; the receiving box is located below the soaking mechanism and the cutting mechanism and is used to collect any excess cooling agent left on the wet wipes.
[0013] The beneficial effects of this invention are as follows: 1. In this application, compared with the prior art, except for the feeding mechanism, all other mechanisms are designed on the frame, resulting in a more compact overall structure, smaller footprint, and greater suitability for small-scale use.
[0014] 2. The structure of this application includes a cutting mechanism, which comprises a first transport section, a second transport section, and a third transport section. On one hand, it can transport the wet wipes. On the other hand, in conjunction with the insertion and folding mechanism, the cut wet wipes can be inserted through the insert plate into the transport channel between the right side of the second transport section and the third transport section. Through the coordinated operation of the belts above and below the transport channel and the insert plate, the wet wipes are folded and output. At the same time, the belts above and below the transport channel can also squeeze the folded wet wipes again to squeeze out excess cooling agent and recycle it, thereby improving the overall utilization rate of the cooling agent.
[0015] 3. The first transport section is also divided into two groups, left and right, facing each other. The transport channel between the two groups is narrow at the top and wide at the bottom. The narrow top allows the wet wipes entering the channel to move more precisely and squeeze them once to squeeze out excess cooling agent. The wide bottom provides space for the squeezed cooling agent to flow smoothly along the belt and into the collection box for recycling, improving the overall utilization rate of cooling agent. Attached Figure Description
[0016] Figure 1 This is a structural diagram of the application; Figure 2 This is a structural diagram of the cutting mechanism panel after it is hidden, as shown in this application. Figure 3 This is the front view of the floor plan of this application; Figure 4 Structural diagram of the cutting mechanism behind the hidden panel; Figure 5 This is the initial drawing of the folding mechanism for the present application; Figure 6 This is a diagram showing the working state of the folding mechanism in this application.
[0017] In the picture: 1. Rack; 2. Feeding mechanism; 3. Folding mechanism; 31. First folding plate; 32. Second folding plate; 33. Third folding plate; 34. Folding roller; 4. Dipping mechanism; 41. Material tank; 42. Extrusion roller; 43. Guide roller; 5. Cutting Mechanism; 51. First Transport Section; 511. Rotating Roller 1; 512. Rotating Roller 2; 513. Driven Roller 1; 514. Driven Roller 2; 52. Cutting Section; 521. Rotating Roller 3; 522. Rotating Cutter; 53. Second Transport Section; 531. Rotating Roller 4; 532. Rotating Roller 5; 533. Driven Roller 3; 534. Driven Roller 4; 535. Driven Roller 5; 536. Driven Roller 6; 537. Driven Roller 7; 538. Adjusting Roller 1; 539. Adjusting Roller 2; 54. Third Transport Section; 541. Rotating Roller 6; 542. Driven Roller 8; 543. Driven Roller 9; 544. Adjusting Roller 3; 6. Insertion folding mechanism; 61. Rotating disk; 62. Connecting rod; 63. Sliding block; 64. Sliding rod; 65. Insert plate; 7. Feeding line; 8. Receiving box. Detailed Implementation
[0018] The invention will now be described more fully below with reference to the accompanying drawings, in which presently preferred embodiments of the invention are illustrated. However, the invention may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for thoroughness and completeness and to fully convey the scope of the invention to those skilled in the art.
[0019] A cooling wipe production line includes a frame 1, a feeding mechanism 2, a folding mechanism 3, a soaking mechanism 4, a cutting mechanism 5, and an insertion and folding mechanism 6. The folding mechanism 3, the soaking mechanism 4, the cutting mechanism 5, and the insertion and folding mechanism 6 are sequentially arranged on the frame 1. The feeding mechanism 2 is located on one side of the frame 1 and is used to feed the cooling wipe production line. The folding mechanism 3 is used to fold the fabric fed by the feeding mechanism 2. The soaking mechanism 4 is used to soak the folded fabric in a cooling agent to form a wipe. The cutting mechanism 5 is used to cut the wipe. The insertion and folding mechanism 6 is used to fold the cut wipe and output the folded wipe.
[0020] Based on the appendix Figure 1 As can be seen, except for the feeding mechanism, all other mechanisms are designed on the frame, resulting in a more compact overall structure, smaller footprint, and greater suitability for small-scale use. The fabric is output through the feeding mechanism 2 and enters the folding mechanism 3 from bottom to top. After being folded by the folding mechanism 3, the fabric is output through the soaking mechanism 4 and the cutting mechanism 5. The wet wipes cut by the cutting mechanism 5 are then folded in half by the interlocking folding mechanism 6 in cooperation with the cutting mechanism 5, and finally output to the unloading line 7 through the transport channel below the cutting mechanism 5.
[0021] Preferably, the cutting mechanism 5 includes a first transport section 51, a cutting section 52, a second transport section 53, and a third transport section 54; the first transport section 51 is used to guide the wet wipes soaked in the cooling agent into the cutting mechanism 5; the cutting section 52 is used to cut the wet wipes to a set length; the second transport section 53 is used to catch the cut wet wipes and transport them to the working area of the insertion folding mechanism 6; the third transport section 54 is used to receive the wet wipes folded by the insertion folding mechanism 6 and output the cooling wet wipe production line.
[0022] Based on the appendix Figure 2-6 As shown, the cutting mechanism 5 receives the wet wipes formed by the impregnation mechanism 4 through the first transport section 51, and then transports them to the cutting section 52. The cut wet wipes move downward to the second transport section 53 and fall down. Through the insertion folding mechanism 6, the wet wipes are folded and inserted into the third transport section 54. The folded wet wipes are then output to the unloading line 7 through the third transport section 54.
[0023] Preferably, the first transport section 51 includes a rotating roller 1 511, a rotating roller 2 512, a driven roller 1 513, and a driven roller 2 514; the rotating roller 1 511 and the driven roller 1 513 are connected by a belt to form a transport line; the rotating roller 2 512 and the driven roller 2 514 are connected by a belt to form a transport line; the two sets of transport lines are arranged opposite to each other, the rotating roller 1 511 and the rotating roller 2 512 operate in opposite directions, and a transport channel for wet wipes is formed between the two sets of transport lines.
[0024] Based on the appendix Figure 4 It can be seen that the first transport section 51 is divided into two groups, left and right. The left group is formed by a belt connecting a rotating roller 511 and a driven roller 513, which are driven to rotate by the rotating roller 511. The right group is formed by a belt connecting a rotating roller 512 and a driven roller 514, which are driven to rotate by the rotating roller 512. The two groups are arranged opposite to each other, forming a transport channel for wet wipes. The wet wipes move downward through the first transport section 51 and enter the cutting section 52.
[0025] The preferred first transport section 51 has a transport channel between the left and right groups that is narrow at the top and wide at the bottom. The narrow top allows the wet wipes entering between to move more precisely and squeeze them once to squeeze out excess cooling agent. The wide bottom provides space for the squeezed cooling agent to flow smoothly along the belt and into the collection box for recycling, thereby improving the overall utilization rate of cooling agent.
[0026] Preferably, the cutting section 52 includes a rotating roller 521 and a rotating cutter 522, which rotate in opposite directions; the rotating cutter 522 is provided with a cutter, and the wet wipes are cut by the cutter and the rotating roller 521 engaging.
[0027] Based on the appendix Figure 4It is known that the rotating cutter 522 of the cutting section 52 is equipped with a cutter, and there can be multiple sets of cutters. When the cutter rotates to the relative position of the rotating roller 3 521, the wet towel is squeezed and cut through the mutual cooperation of the cutter and the rotating roller 3 521.
[0028] Preferably, the second transport section 53 is provided with two sets, left and right, and a transport channel is provided between the two sets to allow the cut wet wipes to pass through. The left set of the second transport section 53 includes a rotating roller 4 531, a driven roller 3 533, a driven roller 5 535, and an adjusting roller 1 538, and is connected by a belt. The rotation of the rotating roller 4 531 drives the overall movement. The right set of the second transport section 53 includes a rotating roller 5 532, a driven roller 4 534, a driven roller 6 536, a driven roller 7 537, and an adjusting roller 2 539, and is connected by a belt. The rotation of the rotating roller 5 532 drives the overall movement. The right set of the second transport section 53 is divided into two transport areas, one vertical and one inclined. The vertical set is arranged opposite to the left set of the second transport section 53 and forms a transport channel to allow the cut wet wipes to pass through.
[0029] Based on the appendix Figure 4 It can be seen that the second transport section 53 is also divided into two groups, left and right. The left group is connected by a belt to rotating roller 4 531, driven roller 3 533, driven roller 5 535 and adjusting roller 1 538; the right group is connected by a belt to rotating roller 5 532, driven roller 4 534, driven roller 6 536, driven roller 7 537 and adjusting roller 2 539. The right group is divided into two transport areas, one vertical and one inclined. The vertical transport area and the left group cooperate to form a transport channel that allows the wet wipes to pass through after being cut.
[0030] In one set of embodiments, the vertical transport area and the transport channel between the left set are configured to be wider at the top and narrower at the bottom. The wider top can better support the cut wet wipes for easy transport, while the narrower bottom can effectively clamp the cut wet wipes, facilitating the subsequent insertion and folding process and providing appropriate clamping force.
[0031] Preferably, the third transport section 54 is arranged opposite to the transport area on the right side of the second transport section 53 in an inclined direction, and a transport channel for wet wipes that can be folded is formed between them; the third transport section 54 includes a rotating roller 541, a driven roller 542, a driven roller 543 and an adjusting roller 544, and is connected by a belt, and the rotation of the rotating roller 532 drives the overall movement.
[0032] Based on the appendix Figure 4 and appendix Figure 5It can be seen that the third transport section 54 and the transport areas on the right side of the second transport section 53 are arranged opposite each other in an inclined direction, providing a transport channel for the folded wet wipes. Through the cooperation of the third transport section 54 and the second transport section 53 in an inclined direction on the right side, the belts above and below the transport channel can also squeeze the folded wet wipes again, squeezing out the excess cooling agent inside the folded wet wipes and recycling it, thereby improving the overall utilization rate of the cooling agent.
[0033] Preferably, the insertion and folding mechanism 6 includes a rotating disk 61, a connecting rod 62, a slider 63, a sliding rod 64, and an insert plate 65; the rotating disk 61 is rotatably connected to the frame 1 and is driven by a motor; the sliding rod 64 is disposed on one side of the rotating disk 61, and the slider 63 is slidably connected to the sliding rod 64; the insert plate 65 is disposed on the slider 63, and the insert plate moves along the sliding rod 64 with the slider 63, and when the insert plate 65 extends, it inserts into the transport channel between the third transport section 54 and the right side of the second transport section 53 in an inclined direction; one end of the connecting rod 62 is rotatably connected to the rotating disk 61, and the other end of the connecting rod 62 is rotatably connected to the slider 63.
[0034] Based on the appendix Figure 5 and attached Figure 6 It can be seen that the cut wet wipes conveyed by the second transport section 53 are conveyed out of the vertical transport channel of the second transport section 53 at one end, and clamped at the other end due to the narrow structure of the vertical transport channel, providing clamping force to prevent the cut wet wipes from shaking.
[0035] The rotation of the rotating disk 61 causes the slider 63 to move along the sliding rod 64 via the connecting rod 62, simultaneously causing the insert plate 65 to extend. After the cut wet wipe extends half its length from the second transport section 53, the insert plate 65 extends and abuts against the middle part of the wet wipe, inserting into the working area of the third transport section 54. The continuous movement of the vertical transport section of the second transport section 53 continuously outputs the cut wet wipe, and in conjunction with the movement of the third transport section 54, folds and transports the wet wipe inserted into its transport channel from the middle area, achieving the overall folding of the wet wipe.
[0036] The main function of the insert plate 65 is to insert the wet wipe into the transport channel of the third transport section 54. After the wet wipe is inserted, the insert plate 65 will be retracted as the rotating disk 61 continues to rotate, and prepare for the next round of work.
[0037] Preferably, the folding mechanism 3 includes a first folding plate 31, a second folding plate 32, a third folding plate 33, and a folding roller 34; each of the first folding plate 31, the second folding plate 32, and the third folding plate 33 is provided with folding gaps, and the folding gaps of the first folding plate 31, the second folding plate 32, and the third folding plate 33 gradually become denser; the fabric output by the feeding mechanism 2 gradually achieves a folded state after passing through the folding gaps provided on the first folding plate 31, the second folding plate 32, and the third folding plate 33, and finally achieves complete folding after passing through the folding roller 34.
[0038] Based on the appendix Figure 1-3 As shown, the first folding plate 31, the second folding plate 32, and the third folding plate 33 are arranged from bottom to top. Folding gaps are provided on the first folding plate 31, the second folding plate 32, and the third folding plate 33. The folding gap of the first folding plate 31 has a wider folding arc than the folding gap of the second folding plate 32. The folding gap of the second folding plate 32 has a wider arc than the folding gap of the third folding plate 33. The folding gaps of the three sets of folding plates become tighter from bottom to top. The fabric output by the feeding mechanism 2 passes through the folding gaps set on the first folding plate 31, the second folding plate 32, and the third folding plate 33 in one go, and is gradually folded to prevent uneven folding caused by excessive folding curvature.
[0039] After passing through the folding gap of the third folding plate 33, the fabric enters the folding roller 34. There are two sets of folding rollers 34. The fabric passes through the gap between the two sets of folding rollers 34 and undergoes the final folding process through the compression test of the folding rollers 34.
[0040] Preferably, the impregnation mechanism 4 includes a material tank 41, a squeezing roller 42, and a guide roller 43; the guide roller 43 is provided in two sets, and the entry end and the output end of the impregnation mechanism 4 are respectively provided; the folded fabric is introduced into the material tank 41 through the guide roller 43 at the entry end, and after the fabric is impregnated with the added cooling agent to form a wet wipe, it is introduced into the squeezing roller 42; the squeezing roller 42 is divided into upper and lower sets, the wet wipe passes between the two sets of squeezing rollers 42, and finally flows into the cutting mechanism 5 through the guide roller 43 at the output end.
[0041] Based on the appendix Figure 1-3 As shown, the folded fabric enters the feed trough 41 via the guide roller 43 at the inlet end. The feed trough 41 contains a cooling agent. After the fabric absorbs sufficient agent, it forms a wet wipe and enters the squeeze rollers 42. Two sets of squeeze rollers 42 are provided. The wet wipe passes through the gap between the two sets of squeeze rollers 42, and the excess cooling agent on the wet wipe is squeezed out by the squeeze rollers 42, improving the overall utilization rate of the cooling agent. The wet wipe after passing through the squeeze rollers 42 is output via the guide roller 43 at the outlet end and enters the cutting mechanism 5. Preferably, it also includes a feeding line 7 and a receiving box 8; the feeding line 7 is located at the final output part of the cutting mechanism 5 and is used to collect the wet wipes after they have been folded; the receiving box 8 is located below the soaking mechanism 4 and the cutting mechanism 5 and is used to receive and recycle the excess cooling agent left on the wet wipes.
[0042] In a preferred embodiment, adjusting roller 1 538, adjusting roller 2 539, and adjusting roller 3 544 are slidably mounted on the frame. By adjusting the sliding of adjusting roller 1 538, adjusting roller 2 539, and adjusting roller 3 544, the tension of the belt in the corresponding area can be adjusted, thereby adjusting the overall transmission efficiency.
[0043] A method for producing cooling wet wipes, comprising: S1. The fabric is conveyed from bottom to top into the folding mechanism 3 via the feeding mechanism 2; S2. After folding, the fabric is guided into the impregnation mechanism 4 by the guide roller 43 at the inlet end, and a cooling agent is added to form a wet wipe. Then, it is discharged through the guide roller 43 at the outlet end and enters the cutting mechanism 5. S3. The cutting mechanism is equipped with a cutting section 52. The cutting section 52 controls the cutting length of the wet wipe by controlling the rotation speed of the rotating roller 521 and the rotating cutter 522. The cut wet wipe is output to the working area of the insertion and folding mechanism 6. Through the operation of the insertion and folding mechanism 6, the cut wet wipe is inserted into the third transport section 54 from the middle part. The wet wipe is finally folded through the continuous movement of the third transport section 54. S4. The folded wet wipes are transported to the unloading line 7 via the third transport section 54.
[0044] The conveying action of the feeder line can be selectively controlled. When stacking wet wipes is required, only the movement interval of the feeder line 7 needs to be controlled to achieve the stacked output of wet wipes transported to the feeder line 7. For example, when multiple layers of wet wipes need to be stacked, the feeder line 7 will output all the multiple layers of wet wipes to the third conveyor section 54. At this time, the multiple layers of wet wipes will be stacked and fall onto the feeder line 7. Then, the feeder line 7 will be started again, the empty feeder area will be aligned with the output part of the third conveyor section 54, and then it will stop. Repeating the above actions can achieve the stacked output of wet wipes.
[0045] The embodiments described above are merely preferred embodiments of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications, improvements, and substitutions without departing from the concept of the present invention, and these all fall within the scope of protection of the present invention. Therefore, the scope of protection of this patent should be determined by the appended claims.
Claims
1. A production line for cooling wet wipes, characterized in that: It includes a frame (1), a feeding mechanism (2), a folding mechanism (3), a dipping mechanism (4), a cutting mechanism (5), and an insertion and folding mechanism (6). The folding mechanism (3), the soaking mechanism (4), the cutting mechanism (5), and the insertion folding mechanism (6) are sequentially arranged on the frame (1). The feeding mechanism (2) is located on one side of the frame (1) and is used to feed the cooling wet wipes production line. Folding mechanism (3) is used to fold the fabric fed by feeding mechanism (2); The impregnation structure (4) is used to impregnate the folded fabric with a cooling agent to form a wet wipe; Cutting mechanism (5) is used to cut the wet wipes; The insertion folding mechanism (6) is used to fold the cut wet wipes in half and output the folded wet wipes.
2. The cooling wet wipes production line according to claim 1, characterized in that: The cutting mechanism (5) includes a first transport section (51), a cutting section (52), a second transport section (53), and a third transport section (54). First transport section (51), used for introducing wet wipes after soaking in replenishing cooling supplement into the cutting mechanism (5). The cutting section (52) is used to cut the wet wipes to a set length; The second transport unit (53) is used to catch the cut wet wipes and transport them to the working area of the insertion and folding mechanism (6); The third transport unit (54) is used to receive wet wipes folded by the insertion folding mechanism (6) and output the cooling wet wipe production line.
3. The cooling wet wipes production line according to claim 2, characterized in that: The first transport unit (51) includes a rotating roller one (511), a rotating roller two (512), a driven roller one (513), and a driven roller two (514). The rotating roller (511) and the driven roller (513) are connected by a belt to form a transport line; The rotating roller 2 (512) and the driven roller 2 (514) are connected by a belt to form a transport line; Two sets of transport lines are set opposite to each other, with rotating roller one (511) and rotating roller two (512) running in opposite directions, forming a transport channel for wet wipes between the two sets of transport lines.
4. The cooling wet wipes production line according to claim 2, characterized in that: The cutting section (52) includes a rotating roller three (521) and a rotating cutter (522), which rotate in opposite directions; The rotating cutter (522) is equipped with a cutter, and the wet wipes are cut by the combination of the cutter and the rotating roller (521).
5. The cooling wet wipes production line according to claim 2, characterized in that: The second transport section (53) is set up with two groups on the left and right, and a transport channel is set between the two groups to allow the wet wipes to pass through after being cut. The second transport section (53) includes a set of four rotating rollers (531), three driven rollers (533), five driven rollers (535), and one adjusting roller (538) on the left side, and is connected by a belt. The rotation of the four rotating rollers (531) drives the whole unit to move. The second transport section (53) includes a set of rotating roller five (532), driven roller four (534), driven roller six (536), driven roller seven (537), and adjusting roller two (539) on the right side, and is connected by a belt. The rotation of rotating roller five (532) drives the overall movement. The right side of the second transport section (53) is divided into two transport areas: one vertical and one inclined. The vertical group is set opposite to the left side of the second transport section (53) and forms a transport channel that allows the wet wipes to pass through after being cut.
6. The cooling wet wipes production line according to claim 5, characterized in that: The third transport section (54) is positioned opposite the transport area on the right side of the second transport section (53) in an inclined direction, and a transport channel for wet wipes that can be folded is formed between them; The third transport unit (54) includes a rotating roller six (541), a driven roller eight (542), a driven roller nine (543), and an adjusting roller three (544), and is connected by a belt. The rotation of the rotating roller five (532) drives the overall movement.
7. A cooling wet wipes production line according to claim 6, characterized in that: The insertion folding mechanism (6) includes a rotating disk (61), a connecting rod (62), a slider (63), a sliding rod (64), and an insertion plate (65). The rotating disk (61) is rotatably connected to the frame (1) and is driven by a motor. A sliding rod (64) is set on one side of the rotating disk (61), and a slider (63) is slidably connected to the sliding rod (64). A plate (65) is provided on the slider (63). The plate moves along the sliding rod (64) with the slider (63), and when the plate (65) extends, it is inserted into the transport channel between the third transport section (54) and the transport area on the right side of the second transport section (53) in the inclined direction. One end of the connecting rod (62) is rotatably connected to the rotating disk (61), and the other end of the connecting rod (62) is rotatably connected to the slider (63).
8. The cooling wet wipes production line according to claim 1, characterized in that: The folding mechanism (3) includes a first folding plate (31), a second folding plate (32), a third folding plate (33), and a folding roller (34). Folding gaps are provided on the first folding plate (31), the second folding plate (32), and the third folding plate (33), and the folding gaps of the first folding plate (31), the second folding plate (32), and the third folding plate (33) gradually become denser. The fabric output by the feeding mechanism (2) gradually achieves a folded state after passing through the folding gaps set on the first folding plate (31), the second folding plate (32), and the third folding plate (33), and finally achieves complete folding after passing through the folding roller (34).
9. A cooling wet wipes production line according to claim 1, characterized in that: The impregnation mechanism (4) includes a material tank (41), an extrusion roller (42), and a guide roller (43). Two sets of guide rollers (43) are provided, and the entry end and the output end of the immersion mechanism (4) are respectively provided; The folded fabric is guided into the feed trough (41) through the guide roller (43) at the inlet end. After the fabric is soaked in the cooling agent to form a wet wipe, it is introduced into the squeeze roller (42). The squeezing rollers (42) are divided into upper and lower groups. The wet wipe passes between the two groups of squeezing rollers (42) and finally flows into the cutting mechanism (5) through the guide roller (43) at the output end.
10. A cooling wet wipes production line according to claim 1, characterized in that: It also includes a feeding line (7) and a receiving box (8); The feeding line (7) is located at the final output part of the cutting mechanism (5) and is used to collect the wet wipes after they have been folded. The receiving box (8) is located below the soaking mechanism (4) and the cutting mechanism (5) and is used to receive excess cooling supplement left on the wet wipes.
Citation Information
Patent Citations
Wet tissue production equipment and production method
CN116534345B
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