Conveying device for slit and folded spunlace non-woven fabric

By designing the conveying device of the limit rod and pressing wheel, the problem of spunlace non-woven fabric dispersed during the conveying process after slit and folding is solved, achieving a tighter roll pack and easier manual packaging.

CN223015119UActive Publication Date: 2025-06-24NANTONG KEDI MEDICAL MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202421924758.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-06-24
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The existing conveying device after the slit and folding of spunlace non-woven fabrics cannot effectively avoid the problem of spunlace non-woven fabrics dispersing during movement or when manually picked up, resulting in inconvenient packaging.

Method used

A conveying device including a conveying mechanism and a limiting mechanism is designed to realize the alignment of the spunlace non-woven fabric through the limiting rod, and the folded spunlace non-woven fabric is made closer to avoid dispersion through the pressing wheel at the bottom of the limiting rod.

Benefits of technology

It effectively avoids the problem of spunlace non-woven fabrics dispersing during movement or when manually picking them up, making manual packaging easier.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a conveying device for slit and folded spunlace non-woven fabrics, which is characterized in that two side plates are connected through a connecting rod, a plurality of rollers are arranged between the side plates, the rollers are respectively matched and connected with a plurality of narrow conveying belts, two vertical plates are respectively arranged on the upper surface of the first side plate, the top ends of the vertical plates are connected with a top plate, and the top plate is connected with the top plate. A rotating rod is arranged between the vertical plates and sleeved with a sleeve, a plurality of limiting rods are arranged on the surface of the outer side of the sleeve, the limiting rods and the narrow conveying belts are arranged in a staggered mode, pressing wheels are arranged at the bottoms of the limiting rods through extension plates, and the pressing wheels are movably arranged in gaps between every two adjacent narrow conveying belts. Firstly, alignment treatment of spunlace non-woven fabric is achieved through the limiting rods, then when the folded spunlace non-woven fabric passes through the positions of the limiting rods, the folded spunlace non-woven fabric is more compact through the pressing wheels at the bottoms of the limiting rods, the situation that the folded spunlace non-woven fabric is scattered in the moving process or the manual taking process when the folded spunlace non-woven fabric moves to the tail end is avoided, and meanwhile manual packaging is easier after the folded spunlace non-woven fabric is pressed.
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Description

Technical Field

[0001] The utility model relates to the technical field of spunlace non-woven fabric conveying equipment, in particular to a conveying device for the cut and folded spunlace non-woven fabric. Background Technique

[0002] Spunlace non-woven fabric is made by spraying high-pressure micro water jets onto one or more fiber webs, so that the fibers are entangled with each other, so that the fiber web can be strengthened and have a certain strength, and the obtained fabric is spunlace non-woven fabric. Its fiber raw materials are widely sourced, and can be polyester, nylon, polypropylene, viscose fiber, chitin fiber, superfine fiber, tencel, silk, bamboo fiber, wood pulp fiber, seaweed fiber, etc.

[0003] According to customer requirements, spunlace non-woven fabric sometimes needs to be cut and folded before packing, moved to the conveying device after passing through the folding device, and the cut and folded spunlace non-woven fabric is conveyed to the end by the conveying device, and then taken by hand and finally packed. At present, the conveying device for the cut and folded spunlace non-woven fabric generally only moves the spunlace non-woven fabric to the end through the conveyor belt, and then taken by hand and packed. However, the spunlace non-woven fabric after the folding machine may be uneven, and without being pressed, the top spunlace non-woven fabric is easy to turn up and spread during the conveying and manual taking process, thus causing inconvenience. Therefore, an improved technology is urgently needed to solve this problem existing in the prior art. Content of the Utility Model

[0004] The purpose of the utility model is to provide a conveying device for the cut and folded spunlace non-woven fabric, which realizes the alignment of the spunlace non-woven fabric through the limiting rod. Then, when the folded spunlace non-woven fabric passes through the position of the limiting rod, the pressing wheel at the bottom of the limiting rod makes the folded spunlace non-woven fabric more compact, avoiding spreading during the moving process or the manual taking process when moving to the end, and at the same time making the manual packing easier after being pressed, so as to solve the problems put forward in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A conveying device for the cut and folded spunlace non-woven fabric, comprising a conveying mechanism and a limiting mechanism;

[0006] The conveying mechanism includes side plates, connecting rods, support legs, rollers, narrow conveyor belts and a first reduction motor. There are two side plates connected by connecting rods. A number of support legs are arranged on the lower surface of the side plates. A number of rollers are arranged between the side plates. The rollers are respectively connected with multiple narrow conveyor belts in a matching manner. A gap is left between adjacent narrow conveyor belts. A first reduction motor is arranged outside one of the side plates, and the output shaft of the first reduction motor is connected with the corresponding roller;

[0007] The limiting mechanism includes vertical plates, a rotating rod, a second reduction motor, a driving gear, a driven gear, a sleeve, limiting rods and pressing wheels. There are two vertical plates which are respectively arranged on the upper surface of the first side plate. The top ends of the vertical plates are connected to the top plate. A rotating rod is arranged between the vertical plates. A second reduction motor is arranged on the outer surface of one of the vertical plates. The output shaft of the second reduction motor passes through the corresponding vertical plate and is equipped with a driving gear. One end of the rotating rod is provided with a driven gear, and the driven gear meshes with the driving gear. The rotating rod is sleeved with a sleeve. A plurality of limiting rods are arranged on the outer surface of the sleeve. The limiting rods and the narrow conveyor belt are arranged in a staggered manner. A groove is formed at one end of the limiting rod away from the sleeve. Extension plates are arranged on both sides of the limiting rod at the groove. A pressing wheel is arranged between the extension plates. The pressing wheel is arranged in the groove and is movably arranged in the gap between two adjacent narrow conveyor belts.

[0008] Preferably, for a conveying device after splitting and folding of spunlace non-woven fabric provided by the present utility model, a plurality of screw holes are formed in the rotating rod, and a plurality of connection holes are formed in the sleeve. The sleeve is matched with the screw holes of the rotating rod through the connection holes and is fixedly connected through bolts.

[0009] Preferably, for a conveying device after splitting and folding of spunlace non-woven fabric provided by the present utility model, the width of the pressing wheel is smaller than the distance between two adjacent narrow conveyor belts.

[0010] Preferably, for a conveying device after splitting and folding of spunlace non-woven fabric provided by the present utility model, a reinforcing cross bar is arranged between two adjacent support legs.

[0011] Preferably, for a conveying device after splitting and folding of spunlace non-woven fabric provided by the present utility model, a plurality of limiting grooves are uniformly arranged on the surface of the roller, and the narrow conveyor belt is matched with the limiting grooves of the roller.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0013] Vertical plates are arranged on the upper surfaces of the side plates. A rotating rod is arranged between the vertical plates. A sleeve is sleeved outside the rotating rod. A plurality of limiting rods are uniformly arranged on one side of the sleeve. A groove is formed at the bottom of the limiting rod and a pressing wheel is installed. First, the alignment of the spunlace non-woven fabric is realized through the limiting rods. Then, when the folded spunlace non-woven fabric passes through the position of the limiting rods, the folded spunlace non-woven fabric is made more compact through the pressing wheels at the bottom of the limiting rods, avoiding scattering during the moving process or during the manual taking process at the end. At the same time, after being pressed tightly, the manual packaging becomes easier. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a front view structural schematic diagram of the present utility model;

[0015] Figure 2 Schematic diagram of the top view structure (the top plate is not shown) of the present utility model;

[0016] Figure 3 Schematic diagram of the side view structure of the present utility model;

[0017] Figure 4 Schematic diagram of the limiting rod structure;

[0018] Figure 5 Schematic diagram of the roller structure;

[0019] Figure 6 Schematic diagram of the state when the present utility model presses the spunlace non-woven fabric.

[0020] In the figure: side plate 1, connecting rod 2, support leg 3, roller 4, narrow conveyor belt 5, first reduction motor 6, vertical plate 7, rotating rod 8, second reduction motor 9, driving gear 10, driven gear 11, sleeve 12, limiting rod 13, pressing wheel 14, top plate 15, extension plate 16, reinforcing cross bar 17, limiting groove 18. Specific implementation manners

[0021] Next, the technical solutions of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model;

[0022] It should be noted that in the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "inside", "outside", "above", "below", "both sides", "one end", "the other end", "left", "right", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.

[0023] Please refer to Figures 1-5 , the present utility model provides a technical solution: a conveying device for a spunlace non-woven fabric after slitting and folding, including a conveying mechanism and a limiting mechanism;

[0024] The conveying mechanism includes side plates 1, connecting rods 2, support legs 3, rollers 4, narrow conveyor belts 5 and a first reduction motor 6. There are two side plates 1 which are connected by connecting rods 2. A number of support legs 3 are provided on the lower surface of the side plates 1. Reinforcing crossbars 17 are provided between adjacent two support legs 3 to ensure the stability of the entire support structure. A number of rollers 4 are provided between the side plates 1. The rollers 4 are respectively connected in cooperation with a plurality of narrow conveyor belts 5. A number of limiting grooves 18 are evenly provided on the surface of the rollers 4. The narrow conveyor belts 5 are engaged with the limiting grooves 18 of the rollers 4 to ensure that the narrow conveyor belts 5 do not deviate. A gap is left between adjacent narrow conveyor belts 5. A first reduction motor 6 is provided outside one of the side plates 1. The output shaft of the first reduction motor 6 is connected to the corresponding roller 4;

[0025] The limiting mechanism includes vertical plates 7, rotating rods 8, a second reduction motor 9, a driving gear 10, a driven gear 11, a sleeve 12, a limiting rod 13 and a pressing wheel 14. There are two vertical plates 7 which are respectively provided on the upper surface of the first side plate 1. The top ends of the vertical plates 7 are connected to the top plate 15. A rotating rod 8 is provided between the vertical plates 7. A second reduction motor 9 is provided on the outer surface of one of the vertical plates 7. The output shaft of the second reduction motor 9 passes through the corresponding vertical plate 7 and is equipped with a driving gear 10. One end of the rotating rod 8 is provided with a driven gear 11. The driven gear 11 meshes with the driving gear 10. The rotating rod 8 is sleeved with a sleeve 12. A number of screw holes are provided on the rotating rod 8. A number of connection holes are provided on the sleeve 12. The sleeve 12 is connected with the screw holes of the rotating rod 8 through the connection holes and is fixedly connected by bolts. The sleeve 12 is fixedly connected to the rotating rod 8 by bolts to realize the connection and disassembly between the sleeve 12 and the rotating rod 8. A number of limiting rods 13 are provided on the outer surface of the sleeve 12. The limiting rods 13 are arranged alternately with the narrow conveyor belts 5. A groove is provided at one end of the limiting rod 13 away from the sleeve 12. Extension plates 16 are provided on both sides of the limiting rod 13 where the groove is located. A pressing wheel 14 is provided between the extension plates 16. The pressing wheel 14 is arranged in the groove. The pressing wheel 14 is movably arranged in the gap between adjacent two narrow conveyor belts 5. The width of the pressing wheel 14 is less than the distance between adjacent two narrow conveyor belts 5 so that when the limiting rod 13 is in a vertical state, the pressing wheel 14 can be smoothly located between the two narrow conveyor belts 5.

[0026] Installation method and operating principle: First, install the roller 4 between the two side plates 1, and put the narrow conveyor belt 5 outside all the rollers 4. Then connect the two side plates 1 through the connecting rod 2, and install the narrow conveyor belt 5 at the limiting groove 18 of the roller 4. Next, install the support legs 3 at the bottom of the side plates 1, install the strengthening cross bar 17 between the support legs 3, and install the first reduction motor 6 on the outside of the corresponding side plate 1, so that the output shaft of the first reduction motor 6 is connected to the end of the corresponding roller 4 to complete the installation. Put the sleeve 12 with the limiting rod 13 outside the rotating rod 8 and fasten it with bolts. Install the pressing roller at the groove at the bottom of the limiting rod 13. Then install the vertical plate 7 on the upper surface of the side plate 1 with bolts. At the same time, install the rotating rod 8 with the driven gear 11 and the sleeve 12 between the two vertical plates 7. Then connect the two ends of the top plate 15 to the top of the vertical plate 7. Finally, install the second reduction motor 9 on the outside of the corresponding vertical plate 7, install the driving gear 10 on the output shaft of the second reduction motor 9, and make the driving gear 10 mesh with the driven gear 11 to complete the installation. When in use, the slit and folded spunlace non-woven fabric directly moves to the feeding end of the narrow conveyor belt 5 after coming out of the folding machine. The second reduction motor 9 drives the rotating rod 8 to rotate through the driving gear 10 and the driven gear 11, and makes the limiting rod 13 vertical. At this time, the pressing wheel 14 is located between two adjacent narrow conveyor belts 5. Through the blocking of the limiting rod 13, all the spunlace non-woven fabrics are made flush. Then drive the rotating rod 8 to rotate through the second reduction motor 9 to lift the limiting rod 13 to a height slightly lower than the height of the folded spunlace non-woven fabric. The first reduction motor 6 drives the corresponding roller 4 to rotate, thereby driving the narrow conveyor belt 5 to rotate. The folded spunlace non-woven fabric advances along the narrow conveyor belt 5 and passes through the pressing wheel 14. Through the pressing of the pressing wheel 14, the folded spunlace non-woven fabric becomes tighter, as Figure 6 shown. The structure of the utility model is reasonable. Vertical plates 7 are arranged on the upper surfaces of the side plates 1. A rotating rod 8 is arranged between the vertical plates 7. A sleeve 12 is sleeved outside the rotating rod 8. A number of limiting rods 13 are evenly arranged on one side of the sleeve 12. Grooves are opened at the bottoms of the limiting rods 13 and pressing wheels 14 are installed. First, the alignment of the spunlace non-woven fabric is realized through the limiting rods 13. Then when the folded spunlace non-woven fabric passes through the position of the limiting rods 13, through the pressing wheels 14 at the bottoms of the limiting rods 13, the folded spunlace non-woven fabric becomes tighter, avoiding scattering during the moving process or during the manual taking process at the end, and at the same time making the manual packing easier after being pressed.

[0027] Those parts not detailed in the present utility model are all well-known technologies to those skilled in the art.

[0028] Finally, it should be noted that the above specific implementation methods are only used to illustrate the technical solution of the utility model rather than to limit it. Although the utility model is described in detail with reference to the embodiments, ordinary technicians in the field should understand that the technical solution of the utility model can be modified and replaced by equivalents without departing from the spirit and scope of the technical solution of the utility model, which should be included in the scope of the claims of the utility model.

Claims

1. A conveying device for slitting and folding spunlace nonwoven fabrics, characterized in that: Including conveying mechanism and limiting mechanism; The conveying mechanism comprises a side plate (1), a connecting rod (2), a supporting leg (3), a roller (4), a narrow conveyor belt (5) and a first reduction motor (6); the side plates (1) have two and are connected via a connecting rod (2); a plurality of supporting legs (3) are arranged on the lower surface of the side plates (1); a plurality of rollers (4) are arranged between the side plates (1); the rollers (4) are respectively connected to a plurality of narrow conveyor belts (5); gaps are left between adjacent narrow conveyor belts (5); a first reduction motor (6) is arranged on the outer side of one of the side plates (1); an output shaft of the first reduction motor (6) is connected to the corresponding roller (4); The limiting mechanism comprises a vertical plate (7), a rotating rod (8), a second reduction motor (9), a driving gear (10), a driven gear (11), a sleeve (12), a limiting rod (13) and a pressure wheel (14); the vertical plates (7) have two and are respectively arranged on the upper surface of the first side plate (1); the top end of the vertical plate (7) is connected to the top plate (15); a rotating rod (8) is arranged between the vertical plates (7); the outer surface of one of the vertical plates (7) is provided with a second reduction motor (9); the output shaft of the second reduction motor (9) passes through the corresponding vertical plate (7) and is installed with a driving gear (10); one end of the rotating rod (8) is provided with a The driven gear (11) is meshed with the driving gear (10), the rotating rod (8) is sleeved with a sleeve (12), the outer surface of the sleeve (12) is provided with a plurality of limiting rods (13), the limiting rods (13) and the narrow conveyor belt (5) are arranged alternately, the limiting rods (13) are provided with grooves at one end away from the sleeve (12), the limiting rods (13) are provided with extension plates (16) on both sides of the groove, a pressure wheel (14) is provided between the extension plates (16), the pressure wheel (14) is provided in the groove, and the pressure wheel (14) is movably provided in the gap between two adjacent narrow conveyor belts (5).

2. The conveying device for slitting and folding spunlaced nonwoven fabric according to claim 1, characterized in that: The rotating rod (8) is provided with a plurality of screw holes, and the sleeve (12) is provided with a plurality of connection holes. The sleeve (12) is matched with the screw holes of the rotating rod (8) through the connection holes and is fastened and connected by bolts.

3. The conveying device for slitting and folding spunlace nonwoven fabric according to claim 1, characterized in that: The width of the pressing wheel (14) is smaller than the distance between two adjacent narrow conveyor belts (5).

4. The device for conveying spunlaced nonwoven fabric after slitting and folding according to claim 1, characterized in that: A reinforcing cross bar (17) is provided between two adjacent support legs (3).

5. The device for conveying spunlaced nonwoven fabric after slitting and folding according to claim 1, characterized in that: A plurality of limiting grooves (18) are evenly arranged on the surface of the roller (4), and the narrow conveyor belt (5) cooperates with the limiting grooves (18) of the roller (4).