Humidifying rewinding device with spraying function
By introducing a spray function and a filtration and recycling system into the paper rope humidification and rewinding equipment, the problems of uneven humidification and paper scrap adhesion were solved, achieving uniform wetting and cleaning of the paper rope and improving the quality of the finished product.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-02
- Publication Date
- 2026-03-17
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing paper rope humidification and rewinding equipment uses a single humidification method, resulting in uneven humidification and easily causing residues to stick to the surface of the paper rope, affecting the quality of the finished product.
A humidifying rewinding device with a spray function is adopted, including a winding mechanism, a humidifying mechanism and a supporting mechanism. It provides uniform humidification through atomizing nozzles and drainage pipes, and uses a filtration and recycling system to prevent paper scraps from sticking together, thereby achieving uniform wetting and cleaning of the paper rope.
It achieves uniform humidification and cleaning of paper ropes, improves the quality of finished products, prevents paper residue, and enhances the effectiveness of the equipment.
Smart Images

Figure CN121672273A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of rewinding equipment technology, specifically a humidifying rewinding device with a spray function. Background Technology
[0002] Paper rope is an industrial material specifically designed for making paper bag handles. It is manufactured by Liming Paper Rope and uses imported kraft paper and pure wood pulp paper as raw materials. Through a special mechanical twisting process, it is formed into ropes of different specifications and cut to length according to actual needs. This product can be adapted to the processing needs of handle parts for various paper packaging containers.
[0003] However, in the existing technology, the existing paper rope humidification and rewinding equipment has a single humidification method, which leads to uneven humidification of the paper rope. At the same time, the humidified paper rope is prone to paper scraps sticking and remaining inside the existing paper rope humidification and rewinding equipment. After long-term use, the paper rope surface is prone to sticking with residues during the paper rope rewinding process, which affects the overall quality of the finished paper rope and results in poor actual performance of the existing paper rope humidification and rewinding equipment. Summary of the Invention
[0004] The purpose of this invention is to provide a humidifying rewinding device with a spray function.
[0005] The technical solution adopted in this invention is as follows: a humidifying rewinding device with a spray function, comprising: a winding mechanism for rewinding paper rope after humidification, the winding mechanism comprising a base frame and a rewinding roller, a movable opening being provided on one side of the outer surface of the base frame, and the rewinding roller being rotatably connected to one side of the outer surface of the base frame; A humidification mechanism for humidifying paper rope includes a liquid storage frame, two drain pipes, and multiple atomizing nozzles. The two drain pipes extend through one outer surface of the liquid storage frame, and the multiple atomizing nozzles extend through both outer surfaces of the liquid storage frame. A support mechanism for temporary storage of unmoistened paper rope, the support mechanism comprising a support base and a take-up roller slidably inserted into the top of the support base.
[0006] The winding mechanism further includes a movable frame, a guide block, and an adjusting component. The movable frame is slidably embedded inside the movable opening. A sliding opening is provided on one outer surface of the movable frame. A stick is fixedly connected to one outer surface of the movable frame. A first reciprocating screw is rotatably connected between the two sides of the movable frame and their corresponding inner walls. A movable piece is threadedly connected to the outer surface of the first reciprocating screw. One end of the movable piece slides through the sliding opening. The guide block is fixedly connected to one end of the movable piece. The adjusting component is disposed on the movable frame.
[0007] The first reciprocating screw has a connecting gear and a first adjusting gear sleeved on its outer surface. A second adjusting gear is rotatably connected to the inner wall of one side of the moving frame. The second adjusting gear meshes with the first adjusting gear. A retaining ring is fixedly connected to the outer surface of one side of the second adjusting gear. A moving motor is fixedly connected to the inner wall of the other side of the moving frame. A drive gear is sleeved on the output end of the moving motor. The drive gear meshes with the connecting gear.
[0008] The adjusting component includes a limiting plate, an adjusting rod, and a locking bolt. The limiting plate is fixedly connected to the outer surface of the other side of the moving frame. The adjusting rod slides through the outer surface of one side of the limiting plate, and one end of the adjusting rod slides through the moving frame. The other end of the adjusting rod slides through the second adjusting gear and the retaining ring. The locking bolt is fixedly connected to one end of the adjusting rod. A pressure ring is sleeved on the outer surface of the adjusting rod, and a limiting spring is slidably sleeved on the outer surface of the adjusting rod.
[0009] The bottom frame has a second reciprocating screw rotatably connected to its inner wall on one side, and the second reciprocating screw is threadedly connected to the moving frame. An adjusting motor is fixedly connected to the inner wall on one side of the bottom frame, and the output end of the adjusting motor is fixedly connected to one end of the second reciprocating screw. An extension frame is fixedly connected to the top of the bottom frame, and a first slide tube is fixedly connected to one end of the extension frame. A first guide wheel and a second guide wheel are rotatably connected to one end of the extension frame. A connecting wheel is sleeved on one end of the rewinding roller. A drive motor is fixedly connected to the bottom surface inside the bottom frame, and a connecting wheel is also sleeved on the output end of the drive motor. A connecting belt is sleeved between the outer surfaces of the two connecting wheels.
[0010] The humidification mechanism further includes a filter frame, a connecting pipe, a partition, and two second sliding pipes. The filter frame is slidably inserted into the outer surface of the other side of the liquid storage frame. The connecting pipe is connected to the outer surface of the liquid storage frame. The partition is fixedly connected between the two inner surface walls of the liquid storage frame. The two second sliding pipes pass through the inner surface walls of the two sides of the liquid storage frame respectively.
[0011] The filter frame has multiple filter ports equidistantly spaced on one side of its outer surface, and each drain pipe has multiple drain holes equidistantly spaced on its outer surface.
[0012] The liquid storage frame has two limiting strips fixedly connected to each other on both sides, and baffles are slidably inserted between the outer surfaces of the four limiting strips. Floats are fixedly connected to the outer surfaces of both sides of the baffles.
[0013] The support base has four locking blocks fixedly connected to its top, and the outer surface of the take-up roller is fitted with two bearing bodies, each of which is slidably inserted between the corresponding two locking blocks.
[0014] A method of using a humidifying rewinding device with a spray function includes the following steps: S1. Rewinding Process: Under the positional constraint of the clamping block, the take-up roller carrying the paper rope is stably placed on top of the support base via the bearing body. One end of the paper rope passes through two second sliding tubes into the liquid storage frame, then the other end passes through the first sliding tube and extends to the bottom of the first guide wheel. Next, the paper rope passes through the bottom of the first guide wheel, then through the top of the second guide wheel and through the guide block. Finally, one end of the paper rope is wound around the outer surface of the rewind roller. At this point, the drive motor is activated, enabling it to rotate in conjunction with the connecting wheel and belt. The rotating rewind roller efficiently winds up the paper rope. Supported by the bearing body, the take-up roller can follow... The paper rope being pulled is rotated and conveyed. During this process, the moving motor in this invention is controlled to drive the first reciprocating screw to rotate. The rotating first reciprocating screw can drive the moving plate to move back and forth in the horizontal direction. Then, under the guidance of the guide block and the adhesion of the sticking rod, the paper rope can be evenly wound onto the outer surface of the rewinding roller. As the number of turns of the paper rope gradually increases, the adjusting motor is controlled to drive the second reciprocating screw to rotate as needed. Then, under the drive of the second reciprocating screw, the moving frame can drive the sticking rod to move away from the rewinding roller, so that the paper rope can be smoothly wound onto the outer surface of the rewinding roller. S2. Wetting Treatment: Existing pipelines are connected to two drain pipes and multiple atomizing nozzles. Water is then injected into the drain pipes and atomizing nozzles via existing water delivery equipment. As the paper rope passes through the storage frame via the two second sliding pipes, the water injected into the drain pipes wets the outer surface of the drain pipes through the drain holes. Supported by the drain pipes, the paper rope smoothly passes through the storage frame. Simultaneously, the water discharged from the drain holes provides initial wetting of the paper rope. Furthermore, the atomizing nozzles spray water mist around the drain pipes, ensuring the paper rope is fully wetted as it passes through the storage frame. Excess water will drip onto the top of the baffle and gradually flow into the filter frame. It will then filter out any remaining solid impurities through the filter port. The filtered water will flow to one side of the baffle. When the water accumulates to a certain level on one side of the baffle, the baffle will rise along the limit bar under the support of the float, allowing the water to be injected into the connecting pipe. The clean water can then be recycled and reused through the connecting pipe, ensuring full utilization of the water resources. At the same time, any paper scraps remaining on the outer surface of the drain pipe can be easily cleaned, preventing paper scraps from sticking to the surface of the paper rope during wetting.
[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: (1) In this invention, during use, under the position restriction of the locking block, the take-up roller carrying the paper rope is stably placed on the top of the support seat through the bearing body. Then, one end of the paper rope passes through the liquid storage frame through the two second sliding tubes, and then the other end of the paper rope passes through the first sliding tube and extends to the bottom of the first guide wheel. Then, the paper rope passes through the bottom of the first guide wheel, passes through the top of the second guide wheel and passes through the guide block. Finally, one end of the paper rope is wound around the outer surface of the rewinding roller. At this time, by controlling the start of the drive motor, the drive motor, together with the connecting wheel and the connecting belt, can drive the rewinding roller to rotate. The rotating rewinding roller can efficiently perform the paper rope winding process. At this time, under the support of the bearing body, the take-up roller can follow the pulled paper. The rope is conveyed in a rotating manner. During this process, the moving motor is started by controlling the first reciprocating screw to rotate. The rotating first reciprocating screw drives the moving plate to move back and forth in the horizontal direction. Then, under the guidance of the guide block and the contact rod, the paper rope can be evenly wound onto the outer surface of the rewinding roller. As the number of turns of the paper rope gradually increases, the adjusting motor is started by controlling the second reciprocating screw to rotate as needed. Then, under the drive of the second reciprocating screw, the moving frame can move the contact rod away from the rewinding roller, so that the paper rope can be smoothly wound onto the outer surface of the rewinding roller, thus enabling the equipment to efficiently perform its intended functions.
[0016] (2) In this invention, existing pipes are connected to two drain pipes and multiple atomizing nozzles. Water resources can be injected into the drain pipes and atomizing nozzles using existing water transport equipment. As the paper rope passes through the storage frame via the two second sliding pipes, the water injected into the drain pipe can wet the outer surface of the drain pipe through the drain hole. Then, supported by the drain pipe, the paper rope can smoothly pass through the storage frame. At the same time, the water discharged from the drain hole can perform preliminary wetting treatment on the paper rope. Simultaneously, under the spray of the atomizing nozzle, the water mist can fill the area around the drain pipe, and the paper rope can be fully wetted as it passes through the storage frame. Meanwhile, excess water will drip onto the top of the partition. The water gradually flows into the filter frame along the top of the partition, and then filters out any remaining solid foreign matter in the water through the filter port. The filtered water flows to one side of the baffle. When the water accumulates to a certain level on one side of the baffle, the baffle rises along the limit bar under the support of the float, allowing the water to flow into the connecting pipe. The clean water can then be recycled and reused through the connecting pipe, ensuring full utilization of the water resources. At the same time, the paper scraps remaining on the outer surface of the drain pipe can be easily cleaned, preventing paper scraps from sticking to the surface of the paper rope during wetting, improving the overall quality of the final product, and enabling the equipment to perform its intended functions efficiently. Attached Figure Description
[0017] Figure 1 This is a first-view perspective perspective view of the present invention; Figure 2 This is a second-view perspective perspective view of the present invention; Figure 3 This is a first-view sectional perspective view of the present invention; Figure 4 This is a first-view sectional perspective view of the winding device of the present invention; Figure 5 For the present invention Figure 4 Enlarged view of point A in the middle; Figure 6 For the present invention Figure 4 Enlarged view at point B in the middle; Figure 7 For the present invention Figure 4 Enlarged view at point C; Figure 8 This is a second-view sectional perspective view of the winding device of the present invention; Figure 9 For the present invention Figure 8 Enlarged view at point D; Figure 10 This is a first-view perspective view of the humidification mechanism of the present invention. Figure 11 This is a second-view sectional perspective view of the humidification mechanism of the present invention; Figure 12 This is a perspective view of the support mechanism portion of the present invention.
[0018] In the diagram, the markings are as follows: 1. Rewinding mechanism; 101. Base frame; 102. Extension frame; 103. First slide tube; 104. First guide wheel; 105. Second guide wheel; 106. Rewinding roller; 107. Drive motor; 108. Moving frame; 109. Contact rod; 110. First reciprocating screw; 111. Moving plate; 112. Guide block; 113. First adjusting gear; 114. Limiting plate; 115. Adjusting rod; 116. Pressure ring; 117. Limiting spring; 118. Second adjusting gear; 119. 1. Snap ring; 120. Snap bolt; 121. Connecting gear; 122. Moving motor; 123. Adjusting motor; 124. Second reciprocating screw; 2. Humidification mechanism; 201. Liquid storage frame; 202. Filter frame; 203. Atomizing nozzle; 204. Partition plate; 205. Limiting strip; 206. Baffle plate; 207. Float block; 208. Connecting pipe; 209. Second slide pipe; 210. Drain pipe; 3. Support mechanism; 301. Support base; 302. Snap block; 303. Take-up roller; 304. Bearing body. Detailed Implementation
[0019] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0020] For examples, please refer to [link / reference]. Figures 1-3 A humidifying rewinding device with a spray function is composed of a winding mechanism 1, a humidifying mechanism 2, and a supporting mechanism 3.
[0021] The details are as follows: Please see Figures 4-9The winding mechanism 1 is used for rewinding the humidified paper rope. The winding mechanism 1 includes a base frame 101 and a rewinding roller 106. A movable opening is provided on one side of the outer surface of the base frame 101. The rewinding roller 106 is rotatably connected to one side of the outer surface of the base frame 101. The winding mechanism 1 also includes a movable frame 108, a guide block 112, and an adjusting component. The movable frame 108 is slidably embedded in the movable opening. A sliding opening is provided on one side of the outer surface of the movable frame 108. A sticking rod 109 is fixedly connected to one side of the outer surface of the movable frame 108. A first reciprocating screw 110 is rotatably connected between the two sides of the movable frame 108 and their corresponding inner walls. A movable piece 111 is threadedly connected to the outer surface of the first reciprocating screw 110. One end of the movable piece 111 slides through the sliding opening. The guide block 112 is fixedly connected to the movable frame 108. At one end of plate 111, an adjusting component is mounted on the movable frame 108. A connecting gear 121 and a first adjusting gear 113 are sleeved on the outer surface of the first reciprocating lead screw 110. A second adjusting gear 118 is rotatably connected to the inner wall of one side of the movable frame 108, meshing with the first adjusting gear 113. A retaining ring 119 is fixedly connected to the outer surface of one side of the second adjusting gear 118. A moving motor 122 is fixedly connected to the inner wall of the other side of the movable frame 108. A drive gear is sleeved on the output end of the moving motor 122, meshing with the connecting gear 121. The adjusting component includes a limiting plate 114, an adjusting rod 115, and a retaining bolt 120. The limiting plate 114 is fixedly connected to the outer surface of the other side of the movable frame 108, and the adjusting rod 115... A sliding rod 115 slides through the outer surface of the limiting plate 114, and one end of the adjusting rod 115 slides through the moving frame 108. The adjusting rod 115 also slides through the second adjusting gear 118 and the retaining ring 119. A retaining bolt 120 is fixedly connected to one end of the adjusting rod 115. A pressure ring 116 is sleeved on the outer surface of the adjusting rod 115, and a limiting spring 117 is slidably sleeved on the outer surface of the adjusting rod 115. A second reciprocating screw 124 is rotatably connected to the inner wall of one side of the bottom frame 101. The second reciprocating screw 124 and the moving frame 108 are threaded together. An adjusting motor 123 is fixedly connected to the inner wall of one side of the bottom frame 101. The output end of the adjusting motor 123 is fixedly connected to one end of the second reciprocating screw 124. An extension frame 102 is fixedly connected to the top of the bottom frame 101. One end of the extension frame 102 is fixedly connected to a first slide tube 103, and one end of the extension frame 102 is rotatably connected to a first guide wheel 104 and a second guide wheel 105. One end of the rewinding roller 106 is fitted with a connecting wheel. A drive motor 107 is fixedly connected to the bottom surface inside the base frame 101, and a connecting wheel is also fitted at the output end of the drive motor 107. A connecting belt is fitted between the outer surfaces of the two connecting wheels. By pulling the adjusting rod 115, the adjusting rod 115 can drive one end of the latch 120 to insert into the retaining ring 119. Then, by rotating the adjusting rod 115, the adjusting rod 115, in conjunction with the latch 120 and the retaining ring 119, can drive the second adjusting gear 118 to rotate, thereby enabling the rotating second adjusting gear 118 to rotate in conjunction with the first adjusting gear 113.Furthermore, the first reciprocating screw 110 can be manually rotated and adjusted by rotating the adjusting rod 115. Rotating the first reciprocating screw 110 allows for manual adjustment of the position of the moving piece 111, thereby determining the position of the paper rope wound around the outer surface of the rewinding roller 106. This enables the equipment to efficiently perform its intended functions. One end of the paper rope passes through the two second sliding tubes 209 through the liquid storage frame 201, then through the first sliding tube 103 and extends to the bottom of the first guide wheel 104. The paper rope then passes through the bottom of the first guide wheel 104, through the top of the second guide wheel 105, and through the guide block 112. Finally, one end of the paper rope is wound around the outer surface of the rewinding roller 106. At this point, the drive motor 107 is started, causing it to rotate in conjunction with the connecting wheel and belt, thus rotating the rewinding roller 106. The rotating rewinding roller 106 efficiently winds up the paper rope. Meanwhile, in the bearing body 304... With support, the take-up roller 303 can rotate and transport the traction paper rope. During this process, by controlling the start of the moving motor 122, the moving motor 122 drives the first reciprocating screw 110 to rotate. The rotating first reciprocating screw 110 drives the moving plate 111 to reciprocate horizontally. Then, under the guidance of the guide block 112 and the contact rod 109, the paper rope can be evenly wound onto the outer surface of the rewinding roller 106. As the number of turns of the paper rope gradually increases, the adjusting motor 123 is started, which drives the second reciprocating screw 124 to rotate as needed. Then, driven by the second reciprocating screw 124, the moving frame 108 drives the contact rod 109 to continuously move away from the rewinding roller 106, so that the paper rope can be smoothly wound onto the outer surface of the rewinding roller 106, thereby enabling the equipment to efficiently perform its intended functions. Please see Figure 10 and Figure 11The humidifying mechanism 2 is used for humidifying the paper rope. The humidifying mechanism 2 includes a liquid storage frame 201, two drain pipes 210, and multiple atomizing nozzles 203. Both drain pipes 210 penetrate one outer surface of the liquid storage frame 201, and the multiple atomizing nozzles 203 penetrate both outer surfaces of the liquid storage frame 201. The humidifying mechanism 2 also includes a filter frame 202, a connecting pipe 208, a partition 204, and two second sliding pipes 209. The filter frame 202 is slidably inserted into the other outer surface of the liquid storage frame 201. The connecting pipe 208 is connected to the outer surface of the liquid storage frame 201. The partition 204 is fixedly connected between the opposing inner walls on both sides of the liquid storage frame 201. Each second sliding tube 209 penetrates the inner surface wall of both sides of the liquid storage frame 201. Multiple filter ports are equidistantly opened on one side of the outer surface of the filter frame 202. Multiple drain holes are equidistantly opened on the outer surface of each drain pipe 210. Two limiting strips 205 are fixedly connected to both sides of the liquid storage frame 201. Baffles 206 are slidably inserted between the outer surfaces of the four limiting strips 205. Floats 207 are fixedly connected to the outer surfaces of both sides of the baffles 206. These are connected to the two drain pipes 210 and multiple atomizing nozzles 203 via existing pipes. Water can then be injected into the drain pipes 210 and atomizing nozzles 203 using existing water delivery equipment. As the paper rope passes through the liquid storage frame 201 via the two second sliding pipes 209, the water injected into the drain pipe 210 wets the outer surface of the drain pipe 210 through the drain hole. Supported by the drain pipe 210, the paper rope smoothly passes through the liquid storage frame 201. Simultaneously, the water discharged from the drain hole provides initial wetting of the paper rope. Furthermore, the spray from the atomizing nozzle 203 fills the area around the drain pipe 210 with water mist, ensuring the paper rope is thoroughly wetted as it passes through the liquid storage frame 201. Excess water drips onto the top of the partition 204 and gradually flows into the filter frame 202. Inside, the filter can filter out solid foreign objects remaining in the water. The filtered water will flow to one side of the baffle 206. When the water on one side of the baffle 206 accumulates to a certain level, the baffle 206 can rise along the limiting strip 205 under the support of the float 207. Then, the water can be injected into the connecting pipe 208 through the baffle 206. The clean water can then be recycled and reused through the connecting pipe 208 to ensure the full utilization of water resources. At the same time, the paper scraps remaining on the outer surface of the drain pipe 210 can be easily cleaned, thus preventing the paper scraps from sticking to the surface of the paper rope during the wetting process. Please see Figure 12The support mechanism 3 is used for temporary storage of unmoisturized paper rope. The support mechanism 3 includes a support base 301 and a take-up roller 303. The take-up roller 303 is slidably inserted into the top of the support base 301. Four locking blocks 302 are fixedly connected to the top of the support base 301. Two bearing bodies 304 are sleeved on the outer surface of the take-up roller 303. Each bearing body 304 is slidably inserted between the corresponding two locking blocks 302. Under the position restriction of the locking blocks 302, the take-up roller 303 carrying the paper rope is stably placed on the top of the support base 301 through the bearing bodies 304.
[0022] The following describes in detail the method of using a humidifying rewinding device with a spray function provided in an embodiment of the present invention. The method of use includes the following steps: Step 1, Rewinding: Under the positional constraint of the clamping block 302, the take-up roller 303 carrying the paper rope is stably placed on top of the support base 301 via the bearing body 304. Then, one end of the paper rope passes through the two second slide tubes 209 through the liquid storage frame 201, and then through the first slide tube 103 to the bottom of the first guide wheel 104. After passing the bottom of the first guide wheel 104, the paper rope passes through the top of the second guide wheel 105 and through the guide block 112. Finally, one end of the paper rope is wound around the outer surface of the rewind roller 106. At this time, the drive motor 107 is started by controlling the start, so that the drive motor 107, together with the connecting wheel and the connecting belt, can drive the rewind roller 106 to rotate. The rotating rewind roller 106 can efficiently perform the paper rope winding process. At this time, under the support of the bearing body 304, the take-up roller 303 can follow the pulled paper rope. During the rotary conveying process, the moving motor 122 is activated to drive the first reciprocating screw 110 to rotate. The rotating first reciprocating screw 110 drives the moving piece 111 to reciprocate horizontally. Then, under the guidance of the guide block 112 and the contact rod 109, the paper rope can be evenly wound onto the outer surface of the rewinding roller 106. As the number of turns of the paper rope gradually increases, the adjusting motor 123 is activated to drive the second reciprocating screw 124 to rotate as needed. Then, under the drive of the second reciprocating screw 124, the moving frame 108 can drive the contact rod 109 to move away from the rewinding roller 106, so that the paper rope can be smoothly wound onto the outer surface of the rewinding roller 106, thereby enabling the equipment to efficiently perform its intended functions. Step 2, Wetting Treatment: Connect the existing pipeline to two drain pipes 210 and multiple atomizing nozzles 203. Then, using existing water supply equipment, water can be injected into the drain pipes 210 and atomizing nozzles 203. As the paper rope passes through the two second sliding pipes 209 and through the storage frame 201, the water injected into the drain pipes 210 wets the outer surface of the drain pipes 210 through the drain holes. Supported by the drain pipes 210, the paper rope can smoothly pass through the storage frame 201. Simultaneously, the water discharged from the drain holes provides initial wetting of the paper rope. Furthermore, the spray from the atomizing nozzles 203 fills the area around the drain pipes 210 with water mist, ensuring the paper rope is fully wetted as it passes through the storage frame 201. Excess water will drip onto the partition 2. The water flows from the top of the baffle 204 and gradually into the filter frame 202. Through the filter port, residual solids in the water are filtered out. The filtered water flows to one side of the baffle 206. When the water accumulates to a certain level on one side of the baffle 206, the baffle 206 rises along the limiting strip 205 under the support of the float 207. This allows the water to be injected into the connecting pipe 208, enabling the clean water to be recycled and reused, ensuring full utilization of the water resources. Simultaneously, residual paper scraps on the outer surface of the drain pipe 210 can be easily cleaned, preventing paper scraps from sticking to the surface of the paper rope during wetting, improving the overall quality of the final product, and enabling the equipment to efficiently perform its intended functions.
[0023] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A humidifying rewinding device having a spraying function, characterized by, Include: Winding mechanism (1) for rewinding process of paper rope after humidification, the winding mechanism (1) includes bottom frame (101) and rewinding roller (106), the bottom frame (101) one side outer surface is provided with moving mouth, the rewinding roller (106) is rotatably connected to the bottom frame (101) one side outer surface; Humidification mechanism (2) for humidification treatment of paper rope, the humidification mechanism (2) includes liquid storage frame (201), two liquid discharge pipes (210) and multiple atomizing nozzles (203), two the liquid discharge pipes (210) are all through the liquid storage frame (201) one side outer surface, multiple the atomizing nozzles (203) are respectively through the liquid storage frame (201) both sides outer surface; And Support mechanism (3) for temporary storage of unhumidified paper rope, the support mechanism (3) includes support seat (301) and winding roller (303), the winding roller (303) is slidably inserted in the support seat (301) top.
2. The humidifying rewinding device with a spraying function according to claim 1, characterized in that: The winding mechanism (1) further includes moving frame (108), guide block (112) and adjusting part, the moving frame (108) is slidably embedded in the moving mouth, the moving frame (108) one side outer surface is provided with sliding port, the moving frame (108) one side outer surface is fixedly connected with stick pole (109), the first reciprocating screw rod (110) is rotatably connected between the opposite inner surface walls of the moving frame (108) two sides, the first reciprocating screw rod (110) outer surface is threadedly connected with moving piece (111), the moving piece (111) one end is slidably penetrated through the sliding port, the guide block (112) is fixedly connected to the moving piece (111) one end, and the adjusting part is arranged on the moving frame (108).
3. The humidifying rewinding device with a spraying function according to claim 2, characterized in that: The first reciprocating screw rod (110) outer surface is provided with a linkage gear (121) and a first adjusting gear (113), the moving frame (108) one side inner surface wall is rotatably connected with a second adjusting gear (118), the second adjusting gear (118) and the first adjusting gear (113) are engaged, the second adjusting gear (118) one side outer surface is fixedly connected with a clasp (119), the moving frame (108) the other side inner surface wall is fixedly connected with a moving motor (122), the output end of the moving motor (122) is provided with a driving gear, and the driving gear and the linkage gear (121) are engaged.
4. The humidifying rewinding device with a spraying function according to claim 3, characterized in that: The adjusting part includes limiting piece (114), adjusting rod (115) and clasp (120), the limiting piece (114) is fixedly connected to the moving frame (108) the other side outer surface, the adjusting rod (115) is slidably penetrated through the limiting piece (114) one side outer surface, and the adjusting rod (115) one end is slidably penetrated through the moving frame (108) and the second adjusting gear (118) and the clasp (119), the clasp (120) is fixedly connected to the adjusting rod (115) one end, the adjusting rod (115) outer surface is provided with a compression ring (116), and the adjusting rod (115) outer surface is slidably provided with a limiting spring (117).
5. The humidifying rewinding device with a spraying function according to claim 4, characterized in that: The bottom frame (101) one side inner wall rotationally connected with the second reciprocating screw rod (124), the second reciprocating screw rod (124) and the moving frame (108) are threadedly connected, the bottom frame (101) one side inner wall fixedly connected with the adjusting motor (123), the output end of the adjusting motor (123) and one end of the second reciprocating screw rod (124) are fixedly connected, the bottom frame (101) top fixedly connected with the extension frame (102), the extension frame (102) one end fixedly connected with the first sliding pipe (103), the extension frame (102) one end rotationally connected with the first guide wheel (104) and the second guide wheel (105), the rewinding roller (106) one end is sleeved with a linkage wheel, the bottom frame (101) inside bottom surface fixedly connected with the driving motor (107), the output end of the driving motor (107) is also sleeved with a linkage wheel, two linkage wheels are sleeved with a linkage belt.
6. The humidifying rewinding device with a spraying function according to claim 5, characterized in that: The humidifying mechanism (2) further comprises a filter frame (202), a connecting pipe (208), a partition (204) and two second sliding pipes (209), the filter frame (202) is slidably inserted into the other side outer surface of the liquid storage frame (201), the connecting pipe (208) is communicated on the outer surface of the liquid storage frame (201), the partition (204) is fixedly connected between the opposite inner walls of the liquid storage frame (201), and the two second sliding pipes (209) penetrate the inner walls of the liquid storage frame (201) respectively.
7. The humidifying rewinding device with a spraying function according to claim 6, characterized in that: A plurality of filter openings are equidistantly formed in the one side outer surface of the filter frame (202), and a plurality of liquid discharge holes are equidistantly formed in the outer surface of each liquid discharge pipe (210).
8. The humidifying rewinding device with a spraying function according to claim 7, characterized in that: The two limiting strips (205) are fixedly connected to the opposite sides of the liquid storage frame (201), the baffle (206) is slidably inserted between the outer surfaces of the four limiting strips (205), and the float (207) is fixedly connected to the outer surfaces of the two sides of the baffle (206).
9. The humidifying rewinding device with a spraying function according to claim 8, characterized in that: The support seat (301) top fixedly connected with four clamping blocks (302), the winding roller (303) outer surface is sleeved with two bearing bodies (304), each bearing body (304) is slidably inserted into the corresponding two clamping blocks (302) between the inner portions.
10. A method of using a humidifying rewinding device having a spraying function, characterized by, The application is applied to the humidifying rewinding device with the spraying function in claim 9, and comprises the following steps: S1, rewinding treatment: under the position restriction of the card block (302), the winding roller (303) carrying the paper rope is smoothly placed on the top of the support seat (301) through the bearing body (304), then one end of the paper rope is penetrated through the liquid storage frame (201) through the two second sliding pipes (209), then the one end of the paper rope is extended to the bottom of the first guide wheel (104) after penetrating through the first sliding pipe (103), then the paper rope is penetrated through the top of the second guide wheel (105) after passing through the bottom of the first guide wheel (104) and penetrating through the guide block (112), finally the one end of the paper rope is wound to the outer surface of the rewinding roller (106), at this time, the driving motor (107) is controlled to start, so that the driving motor (107) can drive the rewinding roller (106) to rotate through the cooperation of the connecting wheel and the connecting belt, the rotating rewinding roller (106) can efficiently perform the winding treatment of the paper rope, at this time, under the support of the bearing body (304), the winding roller (303) can rotate and convey with the paper rope being pulled, in this process, the moving motor (122) is controlled to start in the present application, so that the moving motor (122) can drive the first reciprocating lead screw (110) to rotate, the rotating first reciprocating lead screw (110) can drive the moving piece (111) to move reciprocally in the horizontal direction, then under the guidance of the guide block (112) and the adhesion of the sticking rod (109), the paper rope can be uniformly wound to the outer surface of the rewinding roller (106), at the same time, as the winding turns of the paper rope gradually increase, the adjusting motor (123) is controlled to start, so that the adjusting motor (123) can drive the second reciprocating lead screw (124) to rotate as needed, then the moving frame (108) can drive the sticking rod (109) to constantly move away from the rewinding roller (106) under the driving of the second reciprocating lead screw (124), so that the paper rope can be smoothly wound on the outer surface of the rewinding roller (106); S2, wet treatment: through the existing pipeline and two drainage pipes (210) and a plurality of atomizing spray head (203) are connected, and then through the existing water resources delivery equipment can be injected into the drainage pipe (210) and water resources inside the atomizing spray head (203), in the process of paper rope through two second sliding pipe (209) through the liquid storage frame (201), the water resources injected into the drainage pipe (210) can be wetted by drainage hole drainage pipe (210) outer surface, in turn, under the support of drainage pipe (210), make the paper rope can smoothly through the liquid storage frame (201), while the drainage hole drainage pipe (210) can be discharged to the water resources of the preliminary wet treatment of paper rope, while under the spray of atomizing spray head (203), make the water mist can fill around the drainage pipe (210), in turn, in the process of paper rope through the liquid storage frame (201) can be fully wet treatment, while the excess water resources will drop to the top of the partition (204), and gradually flow along the top of the partition (204) into the filter frame (202) inside, in turn, through the filter can be filtered out the solid foreign matter in water resources, filtered water resources will flow to the baffle (206) side, when the baffle (206) side water resources to a certain extent, under the support of the floating block (207), make the baffle (206) can rise along the limit strip (205), in turn, make the water resources can be injected into the connecting pipe (208) inside the baffle (206), in turn, through the connecting pipe (208) can be recycled use of clean water resources, ensure the full use of water resources, at the same time, the paper scraps left on the surface of the drainage pipe (210) can be conveniently cleaned, in turn, can prevent the paper rope wet process surface sticky paper scraps left,