A wet wipe processing wet wipe liquid collection mechanism
Patent Information
- Application Number
- CN202522408737.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-13
AI Technical Summary
而该申请利用滚液轮来挤出湿巾中的液体,但不同类型湿巾对含液量的要求各异,而两个滚液轮之间的距离难以依据不同湿巾的含液量进行调整,因此具有一定的局限性
通过直线位移机构带动两个连接杆的上端相互靠近或远离,从而使连接杆的两端分别以直线位移机构和第一连接块上的转动点产生偏转,进而带动升降板与挤压辊整体进行升降,便于灵活调整挤压辊与过滤板之间的间隙以适应不同湿巾含液量的挤压工作。同时在第二连接块作用下,能够使连接杆在偏转的过程中,同时带动活动杆以第二连接块为支点进行转动,从而减少升降板在上下移动时出现晃动的概率,提升挤压辊在升降移动过程中的稳定性。
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Figure CN224799154U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of wet wipe processing equipment, specifically, it relates to a wet wipe liquid collection mechanism. Background Technology
[0002] Wet wipes are typically made from pure water, spunlace nonwoven fabric, and propylene glycol, and are used to wipe the face, hands, or skin.
[0003] Chinese Patent CN205438748U discloses a device for punching holes in the tear line of wet wipes, comprising a wet wipe liquid collection tank, a wet wipe liquid recovery tank, and a rotating drum. The wet wipe liquid collection tank contains a rolling roller and a rotating roller, and has a drain outlet at its bottom. The wet wipe liquid recovery tank has an inlet, a drain valve, and a vent. The inlet is connected to the drain outlet of the wet wipe liquid collection tank via a pipe. The rotating drum is fixed inside the wet wipe liquid collection tank and has a tear line cutter on it. This application utilizes a rolling roller to squeeze out the liquid from the wet wipes, but different types of wet wipes have varying liquid content requirements, and the distance between the two rolling rollers is difficult to adjust according to the liquid content of different wet wipes, thus having certain limitations. Utility Model Content
[0004] The technical problem to be solved by this utility model is to overcome the shortcomings of the prior art and provide a wet wipe processing wet wipe liquid collection mechanism, which solves the problems mentioned in the background art.
[0005] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by this utility model is as follows: A wet wipe processing and wet wipe liquid collection mechanism includes: The drain hopper has a filter plate at its upper part, a lifting plate that slides above the filter plate, and a squeezing roller that rotates between the two sides of the inner wall of the lifting plate. Two first connecting blocks are installed on the upper side of the lifting plate. A support frame installed on the upper side of the drain hopper has two second connecting blocks mounted on its inner upper wall. A movable rod is rotatably fitted to the lower part of each second connecting block, and a connecting rod is rotatably fitted to the end of the movable rod furthest from the second connecting block. A bearing plate is installed on the upper side of the bearing frame. A linear displacement mechanism for driving two connecting rods to deflect is movably fitted on the bearing plate. The upper end of the connecting rod is rotatably fitted on the linear displacement mechanism, and the lower end of the connecting rod is rotatably fitted on the first connecting block.
[0006] Preferably, the linear displacement mechanism includes a bidirectional threaded screw rotatably fitted within a bearing plate, with sliders threadedly fitted to both ends of the bidirectional threaded screw, a third connecting block mounted on the lower side of the sliders, and the upper end of the connecting rod rotatably fitted onto the third connecting block.
[0007] Preferably, a bearing is installed on the circumference of one end of the bidirectional threaded screw, and the bearing is embedded in the bearing plate.
[0008] Preferably, a second connecting shaft is installed on both sides of the first connecting block, and the lower end of the connecting rod is rotatably fitted around the two second connecting shafts.
[0009] Preferably, a third connecting shaft is installed on both sides of the end of the movable rod near the second connecting block, and the two third connecting shafts are rotatably engaged within the second connecting block. A fourth connecting shaft is installed on both sides of the end of the movable rod near the connecting rod, and the two fourth connecting shafts are rotatably engaged within the connecting rod.
[0010] Preferably, an L-shaped filter frame is installed below the filter plate, and a connecting frame is installed around the periphery of the L-shaped filter frame.
[0011] Preferably, a bearing block is installed on both sides of the drain hopper, a threaded rod is installed on the upper side of the bearing block, a connecting plate is installed on both sides of the bearing frame, two L-shaped positioning blocks are installed on the upper side of the connecting frame, the connecting plate and the L-shaped positioning block located on the same side are both sleeved on the periphery of the threaded rod, and a nut is threaded on the upper part of the threaded rod.
[0012] Preferably, both sides of the drain hopper are equipped with docking plates, and the docking plates are symmetrically provided with two docking holes.
[0013] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all of the following advantages at the same time: A linear displacement mechanism moves the upper ends of two connecting rods closer together or further apart, causing the two ends of the connecting rods to deflect around the linear displacement mechanism and the rotation point on the first connecting block, respectively. This, in turn, causes the lifting plate and the squeezing roller to move up and down as a whole, facilitating flexible adjustment of the gap between the squeezing roller and the filter plate to accommodate squeezing operations with different liquid contents of wet wipes. Simultaneously, under the action of the second connecting block, the connecting rod, during its deflection, simultaneously drives the movable rod to rotate around the second connecting block as a fulcrum, thereby reducing the probability of swaying during the up-and-down movement of the lifting plate and improving the stability of the squeezing roller during its lifting and lowering process.
[0014] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0015] The accompanying drawings described below are merely some embodiments. Those skilled in the art can obtain other drawings based on these drawings without any creative effort. In the drawings: Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a structural schematic diagram of the cross-sectional portion of the drain hopper of this utility model; Figure 3 This is a schematic diagram of the cross-sectional structure of the connecting rod of this utility model; Figure 4 This is a schematic diagram of the cross-sectional structure of the support frame of this utility model; Figure 5 This is an exploded structural diagram of the movable rod part of this utility model; Figure 6 This is a structural schematic diagram of the cross-sectional portion of the L-shaped positioning block of this utility model; Figure 7 This is a schematic diagram of the filter plate portion of this utility model.
[0016] The attached diagram lists the components represented by each number as follows: 1. Drain hopper; 101. Bearing block; 102. Threaded rod; 103. Nut; 104. Drain pipe; 105. Inlet / outlet; 106. Positioning groove; 2. Bearing frame; 201. Bearing plate; 202. Connecting plate; 3. Linear displacement mechanism; 301. Slider; 302. Third connecting block; 303. First connecting shaft; 304. Bearing; 305. Knob; 306. Bidirectional threaded screw; 4. Connecting rod; 401. Movable groove; 5. First connecting block; 501. Second connecting shaft; 6. Lifting plate; 601. Squeezing roller; 602. Bearing rod; 603. Limiting ring; 7. Filter plate; 701. L-shaped positioning block; 702. L-shaped filter frame; 703. Connecting frame; 8. Movable rod; 801. Third connecting shaft; 802. Fourth connecting shaft; 9. Second connecting block; 10. Butt plate; 1001. Butt hole.
[0017] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the present invention in any way, but rather to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed Implementation
[0018] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0019] Please see Figure 1-7 As shown, this embodiment provides a wet wipe processing liquid collection mechanism, including: The drain hopper 1 has a filter plate 7 on its upper part, a lifting plate 6 is slidably fitted above the filter plate 7, and a squeezing roller 601 is rotatably fitted between the two sides of the inner wall of the lifting plate 6. Two first connecting blocks 5 are installed on the upper side of the lifting plate 6. A support frame 2 is installed on the upper side of the drain hopper 1. Two second connecting blocks 9 are installed on the upper inner wall of the support frame 2. A movable rod 8 is rotatably fitted to the lower part of each second connecting block 9. A connecting rod 4 is rotatably fitted to the end of the movable rod 8 away from the second connecting block 9. A bearing plate 201 is installed on the upper side of the bearing frame 2. A linear displacement mechanism 3 is movably fitted on the bearing plate 201 to drive the two connecting rods 4 to deflect. The upper end of the connecting rod 4 is rotatably fitted on the linear displacement mechanism 3, and the lower end of the connecting rod 4 is rotatably fitted on the first connecting block 5.
[0020] One application of this embodiment is as follows: First, adjust the linear displacement mechanism 3 so that the upper ends of the two connecting rods 4 move closer or further apart. This allows the two ends of the connecting rods 4 to deflect around the rotation points on the linear displacement mechanism 3 and the first connecting block 5, respectively. At this time, the first connecting block 5, the lifting plate 6, and the extrusion roller 601 can move upward or downward, changing the distance between the extrusion roller 601 and the filter plate 7. During the deflection of the connecting rods 4, the movable rod 8 will simultaneously rotate around the second connecting block 9 as a fulcrum, thus keeping the lifting plate 6 horizontal during its up-and-down movement. It should be noted that all electrical equipment involved in this application can be powered by a battery or an external power source.
[0021] The linear displacement mechanism 3 drives the upper ends of the two connecting rods 4 to move closer or further apart, thereby causing the two ends of the connecting rods 4 to deflect at the rotation points on the linear displacement mechanism 3 and the first connecting block 5, respectively. This, in turn, drives the lifting plate 6 and the squeezing roller 601 to move up and down as a whole, making it easy to flexibly adjust the gap between the squeezing roller 601 and the filter plate 7 to adapt to squeezing operations with different liquid contents of wet wipes. At the same time, under the action of the second connecting block 9, the connecting rod 4 can drive the movable rod 8 to rotate around the second connecting block 9 as a fulcrum during the deflection process, thereby reducing the probability of the lifting plate 6 swaying when moving up and down and improving the stability of the squeezing roller 601 during the lifting and moving process.
[0022] Specifically, the upper two sides of the drain hopper 1 are provided with inlets and outlets 105, and the lower part of the drain hopper 1 is equipped with a drain pipe 104, which is connected to the drain hopper 1. The inlets and outlets 105 facilitate the conveying of the soaked wet wipes to the filter plate 7, so that the squeeze roller 601 can smoothly contact the wet wipes and squeeze them. When the liquid in the wet wipes is squeezed out by the squeeze roller 601, it will flow into the drain hopper 1 through the filter plate 7, achieving the liquid collection effect. Under the action of the drain pipe 104, the liquid can be recycled. By connecting the end of the drain pipe 104 away from the drain hopper 1 to the recycling mechanism in the prior art, the liquid collected in the drain hopper 1 can be conveyed to the recycling mechanism through the drain pipe 104, thereby achieving the effect of liquid reuse.
[0023] Specifically, a support rod 602 is installed between the two sides of the inner wall of the lifting plate 6, and a limiting ring 603 is installed on the circumference of the middle part of the support rod 602. The extrusion roller 601 is rotatably engaged with the support rod 602 and the limiting ring 603. Under the action of the support rod 602, the rotatable connection between the extrusion roller 601 and the lifting plate 6 can be realized; and under the action of the limiting ring 603, the lateral movement of the extrusion roller 601 can be restricted, making it less likely to move arbitrarily on the support rod 602, thus improving the rotational stability of the extrusion roller 601 on the support rod 602.
[0024] To smoothly drive the connecting rod 4 to deflect, its specific structure is as follows: Figure 1 , Figure 3 , Figure 4 and Figure 5 As shown. The linear displacement mechanism 3 includes a bidirectional threaded screw 306 rotatably fitted within the support plate 201. The bidirectional threaded screw 306 extends transversely through the support plate 201. Both ends of the bidirectional threaded screw 306 are threaded with sliders 301. A third connecting block 302 is mounted on the lower side of the slider 301. The upper end of the connecting rod 4 is rotatably fitted on the third connecting block 302. First connecting shafts 303 are mounted on both sides of the third connecting block 302. The upper end of the connecting rod 4 is rotatably fitted on the periphery of the two first connecting shafts 303. The upper part of the slider 301 is slidably fitted within the support plate 201. A knob 305 is mounted on one end face of the bidirectional threaded screw 306.
[0025] By rotating the knob 305, the bidirectional threaded screw 306 can be rotated, causing the two sliders 301 to move closer or further apart under the action of the bidirectional threaded screw 306 and the bearing plate 201. At the same time, it can drive the third connecting block 302 and the first connecting shaft 303 to move, thereby driving the connecting rod 4 to deflect smoothly; and under the action of the first connecting shaft 303, the rotational connection between the connecting rod 4 and the third connecting block 302 is realized.
[0026] To achieve stable rotation of the bidirectional threaded screw 306, its specific structure is as follows: Figure 3 and Figure 4 As shown. A bearing 304 is installed on the circumference of one end of the bidirectional threaded screw 306, and the bearing 304 is embedded in the bearing plate 201.
[0027] By setting the bearing 304, not only can the rotational connection between the bidirectional threaded screw 306 and the bearing plate 201 be realized, but the lateral movement of the bidirectional threaded screw 306 can also be restricted, making it less likely to slip within the bearing plate 201, thereby improving the rotational stability of the bidirectional threaded screw 306 on the bearing plate 201.
[0028] To smoothly drive the lifting platform 6 to move up and down, its specific structure is as follows: Figures 2-5 As shown. The first connecting block 5 is equipped with a second connecting shaft 501 on both sides, and the lower end of the connecting rod 4 is rotatably fitted around the two second connecting shafts 501.
[0029] Under the action of the second connecting shaft 501, a connection fulcrum is provided between the first connecting block 5 and the connecting rod 4; and when the connecting rod 4 is deflected, it will drive the lifting plate 6 to move up or down through the first connecting block 5 and the second connecting shaft 501.
[0030] To improve the stability of the lifting process of the extrusion roller 601, its specific structure is as follows: Figures 3-5 As shown. Both sides of the movable rod 8 near the second connecting block 9 are equipped with third connecting shafts 801, and both third connecting shafts 801 are rotatably engaged within the second connecting block 9. Both sides of the movable rod 8 near the connecting rod 4 are equipped with fourth connecting shafts 802, and both fourth connecting shafts 802 are rotatably engaged within the connecting rod 4.
[0031] By setting the third connecting shaft 801 and the fourth connecting shaft 802, not only are connection fulcrums provided between the movable rod 8, the connecting rod 4, and the second connecting block 9, but the swaying of the movable rod 8 during rotation is also effectively reduced, which facilitates the guidance of the movement trajectory of the lifting plate 6 and improves the stability of the lifting process of the extrusion roller 601.
[0032] Specifically, the connecting rod 4 has a movable groove 401 in the middle, and the end of the movable rod 8 away from the second connecting block 9 is located in the movable groove 401. Under the action of the movable groove 401, sufficient space is provided for the rotation of the movable rod 8, reducing the interference between the movable rod 8 and the connecting rod 4, so that the movable rod 8 can rotate smoothly.
[0033] To reduce the probability of liquid dripping from filter plate 7 into the outside after extrusion, its specific structure is as follows: Figure 2 and Figure 7 As shown. An L-shaped filter frame 702 is installed below the filter plate 7. The vertical cross-section of the L-shaped filter frame 702 is two symmetrical L-shapes. A connecting frame 703 is installed around the L-shaped filter frame 702. The connecting frame 703 is located below the inlet and outlet 105.
[0034] When the wet wipes are squeezed after being soaked in liquid, the space formed between the L-shaped filter frame 702 and the connecting frame 703 can collect the squeezed liquid to a certain extent, so that the squeezed liquid can also fall into the drain hopper 1 through the L-shaped filter frame 702, reducing the probability of the squeezed liquid dripping from the filter plate 7 to the outside.
[0035] To facilitate the assembly and disassembly of the drain hopper 1, the support frame 2, and the filter plate 7, the specific structure is as follows: Figure 1 , Figure 2 , Figure 6and Figure 7 As shown. Both sides of the drain hopper 1 are equipped with bearing blocks 101, and the upper side of the bearing blocks 101 is equipped with threaded rods 102. Both sides of the support frame 2 are equipped with connecting plates 202. The upper side of the connecting frame 703 is equipped with two L-shaped positioning blocks 701. The connecting plate 202 and the L-shaped positioning blocks 701 on the same side are both sleeved around the threaded rod 102. The upper part of the threaded rod 102 is threaded with a nut 103. Positioning grooves 106 are provided on both sides of the upper part of the drain hopper 1. The inlet / outlet 105 and the positioning grooves 106 are both connected to the inner cavity of the drain hopper 1 and penetrate the upper side of the drain hopper 1. The middle part of the L-shaped positioning block 701 transversely penetrates the positioning groove 106.
[0036] By rotating the nut 103 and removing it from the threaded rod 102, the L-shaped positioning block 701 and the connecting plate 202 can be released. This allows the support frame 2 and the filter plate 7 to be removed from the drain hopper 1 for cleaning and maintenance by lifting the connecting plate 202 and the L-shaped positioning block 701. When connecting the drain hopper 1 to the support frame 2 and the filter plate 7, the L-shaped positioning block 701 and the connecting plate 202 are sequentially fitted onto the threaded rod 102, and the nut 103 is screwed back onto the threaded rod 102 to complete the connection and fixation between the drain hopper 1, the support frame 2, and the filter plate 7. Simultaneously, when connecting the drain hopper 1 to the filter plate 7, the L-shaped positioning block 701 is engaged in the positioning groove 106, enabling quick positioning of the filter plate 7 and facilitating subsequent operations.
[0037] To connect the drain hopper 1 to the designated location, its specific structure is as follows: Figure 1 As shown. Both sides of the drain hopper 1 are equipped with docking plates 10, and two docking holes 1001 are symmetrically provided on the docking plates 10.
[0038] The drain hopper 1 can be installed at a designated position on the immersion equipment through the docking hole 1001, which facilitates the delivery of the immersed wet wipes to the upper side of the filter plate 7.
[0039] This utility model is not limited to the above-described embodiments. Anyone should know that structural changes made under the guidance of this utility model, and any technical solutions that are the same as or similar to this utility model, fall within the protection scope of this utility model. Technical aspects, shapes, and structures not described in detail in this utility model are all publicly known technologies.
Claims
1. A wet wipe processing liquid collection mechanism, characterized in that, include: The drain hopper (1) has a filter plate (7) on its upper part. A lifting plate (6) is slidably fitted above the filter plate (7). A squeezing roller (601) is rotatably fitted between the two sides of the inner wall of the lifting plate (6). Two first connecting blocks (5) are installed on the upper side of the lifting plate (6). A support frame (2) is installed on the upper side of the drain hopper (1). Two second connecting blocks (9) are installed on the upper side of the inner wall of the support frame (2). A movable rod (8) is rotatably engaged at the lower part of the second connecting block (9). A connecting rod (4) is rotatably engaged at the end of the movable rod (8) away from the second connecting block (9). The support plate (201) is installed on the upper side of the support frame (2). A linear displacement mechanism (3) for driving the two connecting rods (4) to deflect is movably fitted on the support plate (201). The upper end of the connecting rod (4) is rotatably fitted on the linear displacement mechanism (3), and the lower end of the connecting rod (4) is rotatably fitted on the first connecting block (5).
2. The wet wipe processing liquid collection mechanism according to claim 1, characterized in that, The linear displacement mechanism (3) includes a bidirectional threaded screw (306) rotatably fitted in the bearing plate (201). Both ends of the bidirectional threaded screw (306) are threaded with sliders (301). A third connecting block (302) is installed on the lower side of the slider (301). The upper end of the connecting rod (4) is rotatably fitted on the third connecting block (302).
3. The wet wipe processing liquid collection mechanism according to claim 2, characterized in that, A bearing (304) is installed on the circumference of one end of the double-threaded screw (306), and the bearing (304) is embedded in the bearing plate (201).
4. The wet wipe processing liquid collection mechanism according to claim 1, characterized in that, The first connecting block (5) is equipped with a second connecting shaft (501) on both sides, and the lower end of the connecting rod (4) is rotatably fitted around the two second connecting shafts (501).
5. The wet wipe processing liquid collection mechanism according to claim 1, characterized in that, The movable rod (8) is equipped with a third connecting shaft (801) on both sides of the end near the second connecting block (9). Both third connecting shafts (801) are rotatably fitted inside the second connecting block (9). The movable rod (8) is equipped with a fourth connecting shaft (802) on both sides of the end near the connecting rod (4). Both fourth connecting shafts (802) are rotatably fitted inside the connecting rod (4).
6. The wet wipe processing liquid collection mechanism according to claim 1, characterized in that, An L-shaped filter frame (702) is installed below the filter plate (7), and a connecting frame (703) is installed around the L-shaped filter frame (702).
7. The wet wipe processing liquid collection mechanism according to claim 6, characterized in that, Both sides of the drain hopper (1) are equipped with bearing blocks (101), and the upper side of the bearing block (101) is equipped with a threaded rod (102). Both sides of the support frame (2) are equipped with connecting plates (202), and the upper side of the connecting frame (703) is equipped with two L-shaped positioning blocks (701). The connecting plate (202) and the L-shaped positioning block (701) located on the same side are both sleeved on the periphery of the threaded rod (102), and the upper thread of the threaded rod (102) is threaded with a nut (103).
8. The wet wipe processing liquid collection mechanism according to claim 1, characterized in that, Both sides of the drain hopper (1) are equipped with docking plates (10), and two docking holes (1001) are symmetrically provided on the docking plates (10).
Citation Information
Patent Citations
A easily tear line perforating device for wetting piece of cloth production
CN205438748U