Viscous cloth bonding device convenient to position
By using a paper conveying structure that eliminates the need for a positioning belt, and combining the design of a limiting cylinder, limiting roller, conveying roller, and cutting roller, the complex operation caused by the breakage of the positioning belt in existing devices is solved, and efficient automatic positioning, cutting, and bonding of paper are achieved.
Patent Information
- Application Number
- CN202520401310.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-10
AI Technical Summary
Existing bonding devices are complex to operate when the positioning strip breaks or needs to be replaced, resulting in low processing efficiency.
Employing a conveyor structure that eliminates the need for positioning belts, the paper is automatically positioned, cut, and bonded through a combination of limiting cylinders, limiting rollers, conveying rollers, and cutting rollers, along with a belt conveyor and positioning mechanism.
It simplifies the process of changing the positioning belt, improves processing efficiency, and adapts to the cutting and bonding needs of various paper lengths and thicknesses.
Smart Images

Figure CN223877688U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cloth bonding device technical field, concretely relates to a viscous cloth bonding device convenient to position. BACKGROUND
[0002] Animal urine pad is a disposable sanitary product designed for pets, usually made of high molecular water-absorbing material, can quickly absorb the urine of pets, prevent urine leakage, keep the surrounding environment dry, usually composed of multiple layers of material, can absorb a large amount of liquid, reduce the frequency of replacing the urine pad, the surface layer usually adopts soft non-woven fabric material, comfortable touch, will not stimulate the skin absorption layer of pets, mainly composed of high molecular water-absorbing resin (SAP) and fluff pulp. This is the key layer of pet urine pad to play the water-absorbing function; the bottom layer is generally waterproof breathable film, such as polyethylene film. The role of this layer is to prevent urine from leaking to the ground or other objects, keep the surrounding environment dry; the adhesive layer is used to firmly bond multiple layers of cloth together, usually uses environmentally friendly glue, ensures firm bonding while not causing harm to the health of pets.
[0003] The existing bonding device includes a feeding device one, a feeding device two and a bonding and extruding device, the feeding device two includes two groups of limiting cylinders, the extruding device includes an extruding disc and an extruding cylinder, the feeding device two is in feeding to the extruding device, the cloth is positioned and transmitted through the positioning belt thereon, and when the positioning belt is connected, it needs to pass between the two groups of limiting cylinders on the feeding device two first, then pass reversely between the extruding disc and the lower positioning, then reversely again between the extruding disc and the extruding cylinder, and finally the positioning belt is sleeved on the outer wall of the guide wheel by setting the guide wheel at the position close to the feeding device and the extruding device, the whole operation is relatively complex, when the positioning belt is broken or needs to be replaced, the above-mentioned complex operation will be relatively time-consuming, which is not conducive to the overall processing efficiency.
[0004] Therefore, the utility model designs a viscous cloth bonding device convenient to position to solve the above-mentioned problems. UTILITY MODEL CONTENTS
[0005] The utility model provides a paper reversing device for avoiding edge folding to solve the problem that in the prior art, due to the positional relationship of the transmission structure, a positioning belt needs to be used for auxiliary conveying, but when the positioning belt is broken or needs to be replaced, the operation is relatively complex, time-consuming and not conducive to the overall processing efficiency.
[0006] The utility model provides a viscidity cloth bonding device convenient to position, including processing platform and the material conveying device no. one, bonding extrusion device, material conveying device no. two and glue injection device of setting on processing platform, the material conveying device no. one includes the limiting cylinder of rotation installation in the front side wall surface of the vertical end of processing platform, limiting roller, conveying roller and cutting roller, fixedly installs in the front side wall surface of the vertical end of processing platform extrusion scraper, rotationally connects the air pipe in the front side wall surface of limiting cylinder, and the transmission device that makes limiting cylinder and limiting roller rotate to the opposite direction, transmission device sets up on processing platform, the outer wall of limiting cylinder is provided with the air hole, limiting roller is located the upper side position of limiting cylinder, cutting roller is located the left side position of limiting cylinder, conveying roller is provided with a plurality and all is located the lower side position of cutting roller, extrusion scraper is the circular arc board concentric with limiting cylinder and extrusion scraper and the outer wall of limiting cylinder mutually adhere, cutting roller is provided with the transmission motor of fixedly in the rear side wall surface of processing platform, and the output end of transmission motor and cutting roller fixed connection.
[0007] Further, the material conveying device no. two includes the belt conveyor of fixedly installing in the front side wall surface of the vertical end of processing platform, and the positioning mechanism of setting on the belt conveyor.
[0008] Further, the positioning mechanism includes the mounting bracket of fixedly installing in the upper side wall surface of the belt conveyor, the positioning roller of rotationally installing in the inside of mounting bracket, the outer wall of positioning roller is provided with the connecting sliding groove, two groups of connecting sliding plates of sliding connection in the outer wall of positioning roller, two groups of positioning wheels of fixedly installing in the inner wall of two connecting sliding plates and all with connecting sliding groove sliding connection, the two-way threaded rod of rotationally installing in the inside of connecting sliding groove, the mounting plate of setting on the two groups of vertical ends of mounting bracket, and the height adjusting device of setting on mounting bracket.
[0009] Further, the outer wall of two-way threaded rod is provided with positive and negative threads, and the positive and negative threads are respectively threadedly connected with the two positioning wheels, the positioning roller is rotationally installed on the wall surface close to the two mounting plates, and the outer wall of the positioning roller movably penetrates the front and rear walls of the front mounting plate.
[0010] Further, the wall surface close to the two vertical ends of the mounting bracket is provided with the mounting slot slidably connected with the mounting plate of the same group, and the height adjusting device includes two groups of limiting sliding rods movably penetrating the upper and lower walls of the mounting plate on the same side and fixedly installed in the inside of the two mounting slots.
[0011] Further, the height adjusting device further includes two groups of screw rods rotationally installed on the bottom wall surface of the mounting slot of the same group and threadedly connected with the mounting plate of the same group.
[0012] Furthermore, the height adjustment device also includes two sets of threaded sleeves rotatably mounted on the top wall of the mounting bracket; the outer walls of the two sets of threaded sleeves are connected to chains by sprocket meshing; the two sets of limit slide rods are slidably connected to the mounting plates of the same group; the two sets of screws are movable through the top wall of the mounting groove of the same group; and the inner walls of the two sets of threaded sleeves are fixedly connected to the screws of the same group.
[0013] Furthermore, the transmission device includes a drive motor fixedly installed on the rear wall of the processing platform; and transmission gears fixedly installed on the outer walls of the limiting cylinder and the limiting roller respectively. The two sets of transmission gears are meshed and connected, and the output end of the drive motor is fixedly connected to the rear end of the limiting roller.
[0014] Compared with the prior art, the advantages of this utility model are as follows: by changing the structure of the prior art, the conveying method of the positioning belt is eliminated, so there is no need to replace the positioning belt, saving the time lost due to the replacement of the positioning belt and improving work efficiency. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 A perspective view of the overall structure provided by an embodiment of the utility model is shown;
[0017] Figure 2 A plan view of the overall structure provided by an embodiment of the utility model is shown;
[0018] Figure 3 A perspective view of the processing platform provided in an embodiment of the utility model is shown;
[0019] Figure 4 It shows Figure 3 Enlarged view of point A;
[0020] Figure 5 It shows Figure 3 Enlarged view of point B.
[0021] The labels in the diagram represent:
[0022] 1, processing platform; 2, feeding device one; 21, limiting cylinder; 22, limiting roller; 23, conveying roller; 24, extrusion scraper; 25, cutting roller; 26, air pipe; 3, bonding extrusion device; 4, feeding device two; 41, belt conveyor; 42, positioning mechanism; 421, mounting frame; 422, positioning roller; 423, connecting chute; 424, connecting slide plate; 425, positioning wheel; 426, two-way threaded rod; 427, mounting plate; 5, glue injection device; 6, transmission device; 61, transmission gear; 62, driving motor; 7, height adjusting device; 71, mounting groove; 72, screw rod; 73, limiting slide rod; 74, threaded sleeve; 75, chain. DETAILED DESCRIPTION
[0023] To make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0024] In the following description, "left", "right", "front", "rear", "upper", "lower" are oriented with the perspective of the front view.
[0025] As Figure 1 - Figure 5A kind of viscous cloth bonding device for positioning, including processing platform 1 and the material conveying device one 2, bonding extrusion device 3, material conveying device two 4 and glue injection device 5 being arranged on processing platform 1, glue injection device 5 includes glue storage tank and glue spray head, glue spraying operation can be carried out to paper surface by glue injection device 5, bonding extrusion device 3 includes extrusion cylinder and extrusion disc, this is prior art and will not be described here, material conveying device one 2 includes limit cylinder 21 being rotatably installed in the front side wall surface of the vertical end of processing platform 1, limiting roller 22, conveying roller 23 and cutting roller 25, cutting knife is fixedly installed in the bottom of cutting roller 25, air hole is opened in the outer wall of limit cylinder 21, one kind of paper is positioned and transported between the gap between limit cylinder 21 and limiting roller 22, and the transported paper is cut by cutting roller 25, when specific work, transmission motor that drives cutting roller 25 to rotate can be installed in the back side wall surface of processing platform 1, the rotating speed of transmission motor can be adjusted according to demand, paper of multiple lengths is cut, another group of paper is transported by conveying roller 23, the conveying mode is prior art and will not be described here;Air pipe 26 is rotatably connected to the front side wall surface of limit cylinder 21, fan connected with air pipe 26 is arranged on processing platform 1, limit cylinder 21 can be pumped by fan and air pipe 26, the cut paper can be adsorbed by the cooperation of air hole;Extrusion scraper 24 is fixedly installed in the front side wall surface of the vertical end of processing platform 1, when the cut paper is close to the paper transported by conveying roller 23, because extrusion scraper 24 shields the air hole in the outer wall of limit cylinder 21, extrusion scraper 24 can separate the cut paper from limit cylinder 21, and two kinds of paper are pre-pasted by extrusion scraper 24 and corresponding conveying roller 23;And the transmission device 6 that limit cylinder 21 and limiting roller 22 rotate towards opposite directions, transmission device 6 is arranged on processing platform 1;Limiting roller 22 is located in the upper side position of limit cylinder 21, cutting roller 25 is located in the left side position of limit cylinder 21, conveying roller 23 is provided with multiple and is located in the lower side position of cutting roller 25;Extrusion scraper 24 is concentric arc plate with limit cylinder 21 and the outer wall of extrusion scraper 24 and limit cylinder 21 mutually fits, because extrusion scraper 24 and limit cylinder 21 mutually fit, the shielding effect of air hole can be improved, and the paper and limit cylinder 21 are more convenient to separate.The cutting roller 25 is provided with a transmission motor fixed on the rear side wall of the processing platform 1, and the output end of the transmission motor is fixedly connected with the cutting roller 25. In use, the paper to be cut is passed through the position between the limiting cylinder 21 and the limiting roller 22, and the inside of the limiting cylinder 21 is subjected to air extraction. The gas moves from the outside to the inside through the air hole, and an acting force is generated on the surface of the paper, so that the cut paper is adsorbed on the surface of the limiting cylinder 21. At the same time, the transmission motor drives the cutting roller 25 to rotate, and the cutting knife on the cutting roller 25 periodically approaches the limiting cylinder 21 and cuts the paper. The paper conveyed on the conveying roller 23 is passed through the position between the extrusion scraper 24 and the corresponding conveying roller 23, and is connected to the adhesive extrusion device 3. The paper conveyed on the conveying roller 23 is subjected to glue injection by the glue injection device 5. The cut paper is separated from the outer wall of the limiting cylinder 21 under the action of the extrusion scraper 24, and is adhered to the lower paper. Then, the two kinds of paper are passed through the position between the extrusion scraper 24 and the corresponding conveying roller 23, and are pre-adhered. Finally, the two groups of paper are further adhered by the adhesive extrusion device 3. The above-mentioned adhering method is prior art, and the specific working process is not described here. The positioning belt conveying device is removed in the present scheme, so that the positioning belt does not need to be replaced, the time waste is reduced, the overall efficiency is improved, and the rotation speed of the cutting roller 25 can be adjusted according to the rotation speed of the rotation motor, the rotation speed of the cutting roller 25 is adjusted, the period of the cutting knife on the cutting roller 25 approaching the limiting cylinder 21 is changed, the cutting of paper with various lengths can be realized, various demands can be met, and the practicability is improved.
[0026] The material conveying device two 4 comprises a belt conveyor 41 fixedly installed on the front side wall of the vertical end of the processing platform 1, and a positioning mechanism 42 arranged on the belt conveyor 41. The third kind of paper can be conveyed by the belt conveyor 41.
[0027] The positioning mechanism 42 comprises a mounting frame 421 fixedly installed on the upper side wall surface of the belt conveyor 41; a positioning roller 422 rotatably installed in the mounting frame 421, which can position the conveyed paper by passing the third kind of paper through the position between the positioning roller 422 and the conveying belt of the belt conveyor 41, thereby reducing the risk of deviation, and the outer wall of the positioning roller 422 is provided with a connecting sliding groove 423; two groups of connecting sliding plates 424 slidably connected to the outer wall of the positioning roller 422, which can limit the paper between the two groups of connecting sliding plates 424 during the conveying process, thereby improving the deviation prevention effect and limiting the paper at the middle position of the belt conveyor 41, achieving the centering positioning of the paper, and avoiding the need for the user to position the paper at the middle position by visual inspection or measurement; two groups of positioning wheels 425 fixedly installed on the inner walls of the two connecting sliding plates 424 and slidably connected to the connecting sliding groove 423; a bidirectional threaded rod 426 rotatably installed in the connecting sliding groove 423; mounting plates 427 arranged on the front and rear vertical ends of the mounting frame 421; and a height adjusting device 7 arranged on the mounting frame 421, which can limit the paper between the two groups of connecting sliding plates 424 during the conveying process, thereby improving the deviation prevention effect and limiting the paper at the middle position of the belt conveyor 41, achieving the centering positioning of the paper, and avoiding the need for the user to position the paper at the middle position by visual inspection or measurement.
[0028] The outer wall of the bidirectional threaded rod 426 is provided with forward and reverse threads, which are respectively threadedly connected to the two positioning wheels 425, and by rotating the bidirectional threaded rod 426, the two groups of connecting sliding plates 424 can move under the limitation of the connecting sliding groove 423 and the positioning wheel 425, and according to the different rotating directions of the bidirectional threaded rod 426, the two groups of connecting sliding plates 424 can move towards or away from each other, thereby changing the distance between the two groups of connecting sliding plates 424 to adapt to paper of various widths, improving the application range, and the positioning roller 422 is rotatably installed on the wall surfaces of the two mounting plates 427 close to each other, and the outer wall of the positioning roller 422 movably penetrates the front and rear wall surfaces of the front mounting plate 427, and in specific use, the paper is passed through the position between the positioning roller 422 and the conveying belt of the belt conveyor 41, and the paper is conveyed from the right side to the position of the pasted paper through the transmission belt, and the three kinds of paper are pasted through the adhesive extrusion device 3, and in addition, when conveying other kinds of paper, the length of the paper in the front and rear directions can be determined to rotate the bidirectional threaded rod 426 in the forward or reverse direction, adjust the distance between the two groups of connecting sliding plates 424, and make the paper pass through the position between the two groups of connecting sliding plates 424, and since the connecting sliding plates 424 move synchronously and by the same distance, the paper can always be located at the middle position of the belt conveyor 41, without the need for the staff to find the centering position.
[0029] The two groups of vertical ends of the mounting frame 421 are provided with mounting grooves 71 which are in sliding connection with the mounting plates 427 of the same group. The height adjusting device 7 comprises two groups of limiting sliding rods 73 which are respectively fixedly installed in the two groups of mounting grooves 71 and movably penetrate the upper and lower walls of the same side mounting plate 427. When the mounting plate 427 moves, it can move along the outer wall of the limiting sliding rod 73, thereby improving the stability of the movement of the mounting plate 427.
[0030] The height adjusting device 7 further comprises two groups of screw rods 72 which are respectively rotationally installed on the bottom wall of the same group of mounting grooves 71 and are in threaded connection with the same group of mounting plates 427. By rotating the two groups of screw rods 72, the two groups of mounting plates 427 can move in the same side mounting groove 71, and the height of the two groups of mounting plates 427 can be changed, so as to change the distance between the positioning roller 422 and the conveying belt of the belt conveyor 41, thereby adapting to the transportation of paper sheets of various thicknesses and improving the application range.
[0031] The height adjusting device 7 further comprises two groups of threaded sleeves 74 which are rotationally installed on the top wall of the mounting frame 421. The outer walls of the two groups of threaded sleeves 74 are connected with a chain 75 through sprocket meshing. The two groups of limiting sliding rods 73 are in sliding connection with the same group of mounting plates 427. The two groups of screw rods 72 movably penetrate the top wall of the same group of mounting grooves 71. The inner walls of the two groups of threaded sleeves 74 are fixedly connected with the same group of screw rods 72. By rotating one of the two groups of threaded sleeves 74, the two groups of threaded sleeves 74 are synchronously and uniformly rotated, the two groups of screw rods 72 are synchronously and uniformly rotated, and the two groups of mounting plates 427 are simultaneously moved under the cooperation of the chain 75 and the sprocket and the limiting of the limiting sliding rods 73. Therefore, it is not necessary to simultaneously operate the two groups of screw rods 72, which facilitates the use of the device. In specific use, the two groups of screw rods 72 are simultaneously and uniformly moved under the cooperation of the chain 75 and the sprocket and the limiting of the limiting sliding rods 73. According to the thickness of the paper sheet, the direction of rotation of the threaded sleeve 74 is determined to adapt to the limiting of paper sheets of various thicknesses.
[0032] The transmission device 6 comprises a driving motor 62 which is fixedly installed on the rear wall of the machining platform 1, and transmission gears 61 which are respectively fixedly installed on the outer walls of the limiting cylinder 21 and the limiting roller 22. The two groups of transmission gears 61 are in meshing connection. The output end of the driving motor 62 is fixedly connected with the rear end of the limiting roller 22. By driving the driving motor 62, the output end of the driving motor 62 drives the limiting roller 22 to rotate. Under the cooperation of the two groups of transmission gears 61, the limiting cylinder 21 and the limiting roller 22 start to synchronously and reversely rotate.
[0033] The above examples are only used to illustrate the technical solutions of the present application, and are not intended to limit them; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that the technical solutions recorded in the foregoing examples can still be modified, or some technical features therein can be replaced by equivalents; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A viscose cloth bonding device for facilitating positioning, comprising a processing platform (1), characterized in that: Also include the setting in the processing platform (1) on the material conveying device one (2), the adhesive extrusion device (3), the material conveying device two (4) and the glue injection device (5), the material conveying device one (2) includes the limiting cylinder (21) that rotates installation in the processing platform (1) vertical end front side wall surface, limiting roller (22), conveying roller (23) and cutting roller (25), fixedly installed in the processing platform (1) vertical end front side wall surface extrusion scraper (24), rotatingly connected in the limiting cylinder (21) front side wall surface air pipe (26), and the transmission device (6) that makes limiting cylinder (21) and limiting roller (22) rotate to the opposite direction, transmission device (6) is set on the processing platform (1), The outer wall of the limiting cylinder (21) is provided with a vent hole; The limiting roller (22) is located at the upper side of the limiting cylinder (21), the cutting roller (25) is located at the left side of the limiting cylinder (21), and the conveying roller (23) is provided with a plurality of and is located at the lower side of the cutting roller (25); The extrusion scraper (24) is a concentric circular arc plate with the limiting cylinder (21), and the outer wall of the extrusion scraper (24) and the limiting cylinder (21) is mutually attached; The cutting roller (25) is provided with a transmission motor fixedly connected to the rear side wall of the processing platform (1), and the output end of the transmission motor is fixedly connected to the cutting roller (25).
2. The adhesive tape attachment device of claim 1, wherein, The material conveying device two (4) includes a belt conveyor (41) fixedly installed on the vertical end front side wall of the processing platform (1), and a positioning mechanism (42) provided on the belt conveyor (41).
3. The adhesive tape attachment device of claim 2, wherein, The positioning mechanism (42) includes a mounting bracket (421) fixedly installed on the upper side wall of the belt conveyor (41), a positioning roller (422) rotatably installed in the mounting bracket (421), a connecting sliding groove (423) formed in the outer wall of the positioning roller (422), two groups of connecting sliding plates (424) slidably connected to the outer wall of the positioning roller (422), two groups of positioning wheels (425) fixedly installed in the inner walls of the two connecting sliding plates (424) and slidably connected to the connecting sliding groove (423), a double-threaded rod (426) rotatably installed in the connecting sliding groove (423), mounting plates (427) provided on the front and rear vertical ends of the mounting bracket (421), and a height adjusting device (7) provided on the mounting bracket (421).
4. The adhesive tape attachment device of claim 3, wherein, The outer wall of the double-threaded rod (426) is provided with forward and reverse threads, the forward and reverse threads are respectively threadedly connected to the two positioning wheels (425), the positioning roller (422) is rotatably installed on the wall surfaces of the two groups of mounting plates (427) close to each other, and the outer wall of the positioning roller (422) movably penetrates the front and rear walls of the front mounting plate (427).
5. The adhesive tape attachment device of claim 4, wherein, The wall surfaces close to each other of the two groups of vertical ends of the mounting bracket (421) are provided with mounting grooves (71) slidably connected to the same group of mounting plates (427), and the height adjusting device (7) includes two groups of limiting sliding rods (73) fixedly installed in the two groups of mounting grooves (71) and movably penetrating the upper and lower walls of the same side mounting plate (427).
6. The adhesive tape attachment device of claim 5, wherein, The height adjusting device (7) further includes two groups of screw rods (72) rotatably installed on the bottom wall surfaces of the same group of mounting grooves (71) and threadedly connected to the same group of mounting plates (427).
7. The adhesive tape attachment device of claim 6, wherein, The height adjusting device (7) further comprises two groups of threaded sleeves (74) rotatably installed on the top wall surface of the mounting frame (421), the outer wall surfaces of the two groups of threaded sleeves (74) are connected with a chain (75) through sprocket meshing, the two groups of limiting sliding rods (73) are slidingly connected with the mounting plates (427) of the same group, the two groups of threaded sleeves (74) are fixedly connected with the threaded rods (72) of the same group.
8. The adhesive tape attachment device of claim 1, wherein, The transmission device (6) comprises a driving motor (62) fixedly installed on the rear side wall surface of the machining platform (1), and transmission gears (61) fixedly installed on the outer wall surfaces of the limiting cylinders (21) and the limiting rollers (22) respectively, the two groups of transmission gears (61) are meshingly connected, and the output end of the driving motor (62) is fixedly connected with the rear side end of the limiting roller (22).