Nylon zipper top stop machine
By using the electrostatic elimination rod and air pump air spray device to remove static electricity in the nylon zipper top stopper, and using the motor drive rod and limit block for limit treatment, the nylon zipper cloth is solved, and the processing quality and efficiency are improved.
Patent Information
- Application Number
- CN202421079842.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-17
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2034-05-17
AI Technical Summary
When the existing nylon zipper top stop machine is used, the nylon zipper cloth produces static electricity due to friction, adsorbs foreign matters, and is offset under impact, affecting the processing quality.
A nylon zipper top stopper including a top stopper body, a placing rack and an operating table is designed. The static electricity is eliminated by an electrostatic elimination rod and an air pump air spray device, and the limit treatment is carried out through the motor drive rod and limit block to ensure the stability and cleanliness of the nylon zipper cloth.
Effectively remove static electricity and foreign matter on the surface of nylon zipper cloth, reduce deviation phenomenon, and improve the processing quality and efficiency of nylon zippers.
Smart Images

Figure CN222885234U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of nylon zipper processing, in particular to an upper stop machine for nylon zippers. Background Technique
[0002] A nylon zipper is a type of zipper, which is composed of nylon monofilaments wound around a center line through hot pressing and molding. Nylon zippers can be classified into closed-end, open-end zippers (left and right inserts), double-closed-end zippers (X or O), and double-open-end zippers (left and right inserts) according to varieties; the main material of nylon zippers is polyester, and the cost is relatively low.
[0003] When the existing upper stop machine for nylon zippers is in use, the nylon zipper cloth is usually directly placed on the upper stop machine for processing operations. However, when the nylon zipper cloth moves, it rubs against the components of the upper stop machine, and the friction causes static electricity to be generated on the surface of the nylon zipper cloth. Foreign objects in the outside world will be adsorbed on the nylon zipper cloth. At the same time, when the nylon zipper cloth is being processed at the upper stop, the nylon zipper cloth will shift when it receives an impact force, which will have a certain impact on the processing quality of the nylon zipper. Therefore, an upper stop machine for nylon zippers is provided. Content of the Utility Model
[0004] The purpose of the utility model is to provide an upper stop machine for nylon zippers, so as to solve the problems presented in the above background technique that when the existing upper stop machine for nylon zippers is in use, the nylon zipper cloth rubs against the components of the upper stop machine when it moves, the friction causes static electricity to be generated on the surface of the nylon zipper cloth, foreign objects in the outside world will be adsorbed on the nylon zipper cloth, and at the same time, when the nylon zipper cloth is being processed at the upper stop, the nylon zipper cloth will shift when it receives an impact force, which will have a certain impact on the processing quality of the nylon zipper.
[0005] To achieve the above object, the utility model provides the following technical solutions: A nylon zipper top stop machine, including a top stop machine main body, a placement rack and an operating table; A connecting rack for fixing the spray pipe is welded on one side of the operating table, a base for fixing the air pump is bolted to the bottom of the operating table, a branch pipe for conveying gas is screw-fixed on one side of the air pump, and the end of the branch pipe away from the air pump extends into the connecting rack. An air cavity for conveying gas is arranged inside the connecting rack, and an electrostatic eliminator for removing static electricity from the nylon zipper cloth is screw-fixed on one side of the connecting rack. The outer side of the placement rack is inserted with a limit block A and a limit block B for limiting the nylon zipper cloth, and the limit block A is located on the left side of the limit block B. A motor for driving the driving rod to rotate is bolted inside the placement rack, a driving belt for driving the lead screw to rotate is sleeved outside the driving rod, and a driving block for driving the limit block A to move is threadedly connected to the outside of the lead screw. When processing the nylon zipper, first pass the nylon zipper cloth through the connecting rack on the operating table. The electrostatic eliminator in the connecting rack generates a large number of air masses with positive and negative charges, which can neutralize the charges on the nylon zipper cloth. At the same time, the air pump outside the base conveys gas through the branch pipe into the air cavity inside the connecting rack. Subsequently, the spray pipe inside the connecting rack blows air on the surface of the nylon zipper cloth, thereby facilitating the removal of static electricity from the nylon zipper cloth and cleaning the foreign matters adhered to the nylon zipper cloth, improving the processing quality of the nylon zipper;
[0006] After the nylon zipper cloth moves onto the placement rack, the motor inside the placement rack converts the received electrical energy into mechanical energy. The motor drives the driving belt outside the driving rod to rotate, and then the driving belt drives the lead screw to rotate. The driving block outside the lead screw drives the limit block A to move. The limit block A contacts the surface of the nylon zipper cloth. Two sets of driving belts, lead screws and driving blocks are arranged inside the placement rack, so that the limit block B contacts the surface of the nylon zipper cloth, thereby facilitating the limiting treatment of the nylon zipper cloth. Then, the top stop machine main body on the operating table performs the top stop treatment on the nylon zipper cloth, improving the processing efficiency of the nylon zipper.
[0007] Preferably, a conveyor roller for conveying the nylon zipper cloth is rotatably connected to the outside of the operating table, and conveyor rollers for conveying the nylon zipper are symmetrically rotatably connected to the outside of the placement rack. The nylon zipper cloth moves through the conveyor roller outside the operating table and the conveyor rollers outside the placement rack, improving the conveying efficiency of the nylon zipper cloth;
[0008] Preferably, a chute is opened inside the placement rack, and a slider connected to the limit block A is slidably connected to the inside of the chute. When the limit block A moves on the placement rack, the slider on the limit block A slides in the chute opened inside the placement rack, improving the stability of the movement of the limit block A;
[0009] Preferably, a box for placing nylon zipper cloth is bolted to the outside of the base. When processing nylon zippers, the nylon zipper cloth is first placed inside the box, which facilitates the staff to pick up the nylon zipper cloth and improves the processing efficiency of nylon zippers.
[0010] Preferably, the input ends of the motor, the static eliminator bar, and the air pump are electrically connected to the output end of an external power source. By connecting to the external power source, the electrical equipment can work properly.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0012] 1. For a nylon zipper top stop machine of the present utility model, when processing nylon zippers, first pass the nylon zipper cloth through the connecting frame on the operating table. The static eliminator bar inside the connecting frame generates a large number of air masses with positive and negative charges, which can neutralize the charges carried on the nylon zipper cloth. At the same time, the air pump outside the base transports gas through the branch pipe into the air cavity inside the connecting frame, and then the nozzle inside the connecting frame blows air on the surface of the nylon zipper cloth, thus facilitating the static elimination operation on the nylon zipper cloth, cleaning the foreign matters adhered to the nylon zipper cloth, and improving the processing quality of nylon zippers.
[0013] 2. For a nylon zipper top stop machine of the present utility model, after the nylon zipper cloth moves to the placement rack, the motor inside the placement rack converts the received electrical energy into mechanical energy. The motor drives the drive belt outside the drive rod to rotate, and then the drive belt drives the lead screw to rotate. The drive block outside the lead screw drives the limit block A to move. The limit block A contacts the surface of the nylon zipper cloth. There are two sets of drive belts, lead screws, and drive blocks inside the placement rack, so that the limit block B contacts the surface of the nylon zipper cloth, thus facilitating the limiting treatment of the nylon zipper cloth. Then, the top stop machine main body on the operating table performs the top stop treatment on the nylon zipper cloth, improving the processing efficiency of nylon zippers. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural diagram of the present utility model;
[0015] Figure 2 is a schematic structural diagram of the inside of the connecting frame of the present utility model;
[0016] Figure 3 is a schematic structural diagram of the inside of the placement rack of the present utility model.
[0017] In the figure: 1. Upper stop machine main body; 2. Placing rack; 3. Limit block A; 4. Branch pipe; 5. Conveyor roller; 6. Connecting frame; 7. Spray pipe; 8. Transfer roller; 9. Box body; 10. Limit block B; 11. Operating table; 12. Base; 13. Air pump; 14. Static eliminator bar; 15. Air cavity; 16. Slide groove; 17. Slide block; 18. Driving block; 19. Lead screw; 20. Motor; 21. Driving belt; 22. Driving rod. Specific implementation mode
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0019] Embodiment
[0020] Please refer to Figures 1-3 , in the figure: This embodiment is a preferred implementation mode in this technical solution. A nylon zipper upper stop machine includes an upper stop machine main body 1, a placing rack 2 and an operating table 11; A connecting frame 6 for fixing the spray pipe 7 is welded on one side of the operating table 11, a base 12 for fixing the air pump 13 is bolted to the bottom of the operating table 11, a branch pipe 4 for conveying gas is screwed to one side of the air pump 13, and the end of the branch pipe 4 away from the air pump 13 extends into the connecting frame 6. An air cavity 15 for conveying gas is arranged inside the connecting frame 6. A static eliminator bar 14 for removing static electricity from the nylon zipper cloth is screwed to one side of the connecting frame 6. Limit blocks A 3 and B 10 for limiting the nylon zipper cloth are inserted outside the placing rack 2, and the limit block A 3 is located on the left side of the limit block B 10. A motor 20 for driving the driving rod 22 to rotate is bolted inside the placing rack 2. A driving belt 21 for driving the lead screw 19 to rotate is sleeved outside the driving rod 22. A driving block 18 for driving the limit block A 3 to move is threadedly connected to the outside of the lead screw 19. When processing the nylon zipper, first pass the nylon zipper cloth through the connecting frame 6 on the operating table 11. The static eliminator bar 14 in the connecting frame 6 generates a large number of air masses with positive and negative charges, which can neutralize the charges carried on the nylon zipper cloth. At the same time, the air pump 13 outside the base 12 conveys gas through the branch pipe 4 into the air cavity 15 inside the connecting frame 6. Subsequently, the spray pipe 7 inside the connecting frame 6 blows air on the surface of the nylon zipper cloth, so as to facilitate the removal of static electricity from the nylon zipper cloth and clean the foreign matters adhered to the nylon zipper cloth, improving the processing quality of the nylon zipper;
[0021] After the nylon zipper cloth moves onto the placement rack 2, the motor 20 inside the placement rack 2 converts the received electrical energy into mechanical energy. The motor 20 drives the drive belt 21 outside the drive rod 22 to rotate. Subsequently, the drive belt 21 drives the lead screw 19 to rotate. The drive block 18 outside the lead screw 19 drives the limit block A3 to move. The limit block A3 comes into contact with the surface of the nylon zipper cloth. There are two sets of the drive belt 21, the lead screw 19, and the drive block 18 inside the placement rack 2, enabling the limit block B10 to come into contact with the surface of the nylon zipper cloth, thus facilitating the limiting process of the nylon zipper cloth. Then, the upper stop machine main body 1 on the operating table 11 performs the upper stop process on the nylon zipper cloth, improving the processing efficiency of the nylon zipper.
[0022] As Figure 1 shown, a conveyor roller 8 for conveying the nylon zipper cloth is rotatably connected to the outside of the operating table 11, and conveyor rollers 5 for conveying the nylon zipper are symmetrically rotatably connected to the outside of the placement rack 2. The nylon zipper cloth moves through the conveyor roller 8 outside the operating table 11 and the conveyor rollers 5 outside the placement rack 2, improving the conveying efficiency of the nylon zipper cloth.
[0023] As Figure 3 shown, a chute 16 is opened inside the placement rack 2, and a slider 17 connected to the limit block A3 is slidably connected to the inner side of the chute 16. When the limit block A3 moves on the placement rack 2, the slider 17 on the limit block A3 slides in the chute 16 opened inside the placement rack 2, improving the stability of the movement of the limit block A3.
[0024] As Figure 1 shown, a box body 9 for placing the nylon zipper cloth is bolted to the outside of the base 12. When processing the nylon zipper, first place the nylon zipper cloth inside the box body 9, which is convenient for the staff to pick up the nylon zipper cloth and improves the processing efficiency of the nylon zipper.
[0025] As Figures 1-3 shown, the input ends of the motor 20, the static eliminator 14, and the air pump 13 are electrically connected to the output end of an external power supply. By connecting to the external power supply, the electrical equipment operates normally.
[0026] In this embodiment, first, all parts are installed. When processing a nylon zipper, the nylon zipper cloth is first passed through the connecting frame 6 on the operating table 11. The static eliminator bar 14 in the connecting frame 6 generates a large number of air masses with positive and negative charges, which can neutralize the charges carried on the nylon zipper cloth. At the same time, the air pump 13 outside the base 12 transports gas through the branch pipe 4 into the air cavity 15 in the connecting frame 6. Subsequently, the nozzle 7 on the inner side of the connecting frame 6 blows air on the surface of the nylon zipper cloth, thereby facilitating the static elimination operation on the nylon zipper cloth, cleaning the foreign matters adhered to the nylon zipper cloth, and improving the processing quality of the nylon zipper. Subsequently, after the nylon zipper cloth moves to the placing rack 2, the motor 20 in the placing rack 2 converts the received electrical energy into mechanical energy. The motor 20 drives the drive belt 21 outside the drive rod 22 to rotate. Subsequently, the drive belt 21 drives the lead screw 19 to rotate. The drive block 18 outside the lead screw 19 drives the limit block A3 to move. The slider 17 on the limit block A3 slides in the chute 16 opened in the placing rack 2, improving the stability of the movement of the limit block A3. The limit block A3 contacts the surface of the nylon zipper cloth. Two sets of the drive belt 21, the lead screw 19, and the drive block 18 are provided in the placing rack 2, so that the limit block B10 contacts the surface of the nylon zipper cloth, thereby facilitating the limiting treatment of the nylon zipper cloth. Then, the upper stop machine main body 1 on the operating table 11 performs the upper stop treatment on the nylon zipper cloth, improving the processing efficiency of the nylon zipper.
[0027] The above content further elaborates on the present invention in combination with specific implementation manners. It cannot be determined that the specific implementation of the present invention is only limited to these descriptions. For those of ordinary skill in the technical field to which the present invention pertains, without departing from the concept of the present invention, several simple deductions or substitutions can still be made, and all should be regarded as belonging to the protection scope determined by the claims submitted for the present invention.
Claims
1. A nylon zipper top stop machine, comprising a top stop machine body (1), a placement frame (2) and an operating table (11); characterized in that: A connecting frame (6) for fixing the nozzle (7) is welded on one side of the operating table (11); a base (12) for fixing the air pump (13) is bolted to the bottom of the operating table (11); a branch pipe (4) for conveying gas is screwed to one side of the air pump (13); an end of the branch pipe (4) away from the air pump (13) extends to the inside of the connecting frame (6); an air cavity (15) for conveying gas is provided inside the connecting frame (6); a static electricity removal operation for nylon zipper cloth is screwed to one side of the connecting frame (6). The static elimination rod (14) is used as an electrostatic elimination rod, the outer side of the placement frame (2) is plugged with a limit block A (3) and a limit block B (10) for limiting the nylon zipper cloth, and the limit block A (3) is located on the left side of the limit block B (10), the internal bolts of the placement frame (2) are connected to a motor (20) for driving a driving rod (22) to rotate, the outer side of the driving rod (22) is sleeved with a driving belt (21) for driving a screw rod (19) to rotate, and the outer side of the screw rod (19) is threadedly connected to a driving block (18) for driving the limit block A (3) to move.
2. A nylon zipper top stop machine according to claim 1, characterized in that: The operating table (11) is externally rotatably connected to a conveying roller (8) for conveying the nylon zipper cloth, and the placement rack (2) is externally symmetrically rotatably connected to a conveying roller (5) for conveying the nylon zipper.
3. A nylon zipper top stop machine according to claim 1, characterized in that: The placement rack (2) is provided with a slide groove (16) inside, and a sliding block (17) connected to the limit block A (3) is slidably connected inside the slide groove (16).
4. A nylon zipper top stop machine according to claim 1, characterized in that: The outer side of the base (12) is bolted to a box (9) for placing the nylon zipper cloth.
5. A nylon zipper top stop machine according to claim 1, characterized in that: The input ends of the motor (20), the static electricity eliminating rod (14), and the air pump (13) are all electrically connected to the output end of the external power supply.