Zipper puller

By incorporating a rotatable pull tab and spring plate structure into the zipper head design, the spring force of the spring plate is used to automatically reset the pull tab, solving the problem of the pull tab not being able to reset after flipping, ensuring stable locking between the zipper head and the zipper, and improving the user experience.

CN223817069UActive Publication Date: 2026-01-23ZHEJIANG WEIXING IND DEV +1
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Patent Information

Application Number
CN202520492527.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-01-23
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

The existing zipper pull fails to automatically reset after the pull tab is flipped at a large angle, causing the zipper to lose its lock and affecting the user experience.

Method used

Design a zipper puller comprising a rotatable pull tab and a spring plate. The spring plate has a locking plate and a plug-in plate at both ends. Through the design of the first and second support plates and the connecting plate, the elastic force of the first and second spring tabs is used to make the pull tab automatically reset in any position, ensuring that the zipper puller is locked to the zipper.

Benefits of technology

It enables the pull tab to automatically reset after flipping, preventing the pull head from slipping down, ensuring the zipper is stably locked, and improving the user experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223817069U_ABST
    Figure CN223817069U_ABST
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Abstract

The utility model discloses a zipper puller, which relates to the technical field of clothing accessories and comprises a puller body, a pull piece is rotatably arranged on the puller body, an elastic plate is arranged on the puller body in a penetrating manner, a clamping plate and an inserting plate are respectively arranged on the elastic plate on two sides of the puller body, and the elastic plate is connected onto the puller body through the clamping plate. The inserting plate extends into the inner cavity of the puller body and is connected with zipper teeth in the inner cavity in an inserting mode, the side, close to the puller body, of the elastic plate is provided with a first elastic piece in an extending mode, and the first elastic piece is located between the pulling piece and the clamping plate. The technical problem that after the overturning angle of a pull piece of an existing pull head is too large, elastic force applied to the pull piece by an elastic plate of the pull head cannot enable the pull piece to automatically reset is solved.
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Description

Technical Field

[0001] This utility model relates to the field of clothing accessories technology, and in particular to a zipper pull. Background Technology

[0002] Zippers, as an important accessory in garment production, consist of components such as the zipper pull, fabric tape, zipper teeth, and square pins. The zipper pull, besides being used to open and close the zipper teeth, also serves to enhance the appearance and improve usability. There are various types of zipper pulls, including standard zipper pulls, guide zipper pulls, locomotive zipper pulls, and spring zipper pulls. Spring zipper pulls consist of a pull body, a spring plate, and a pull tab. When the pull tab is in the flipped-down state, the end of the spring plate extends into the zipper pull body and engages with the zipper teeth, preventing the zipper pull from slipping down the zipper. Opening the zipper involves flipping the pull tab, lifting the spring plate, and separating the end of the spring plate from the zipper teeth. The zipper pull can then be used to pull the zipper pull. However, in actual use, if the pull tab is flipped to an excessive angle, the spring plate may fail to push the pull tab back automatically, causing the zipper to lose its lock, fall, and separate the zipper teeth, affecting the user experience.

[0003] In summary, developing a zipper pull that can automatically reset the zipper pull after it has been flipped at a large angle is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0004] The purpose of this utility model is to provide a zipper pull that solves the technical problem that when the pull tab of an existing zipper pull is flipped at an excessive angle, the elastic force applied by the spring plate of the zipper pull to the pull tab cannot automatically reset the pull tab.

[0005] To achieve the above objectives, this utility model provides a zipper pull, comprising:

[0006] The zipper head body has a rotatable pull tab.

[0007] A spring plate is provided on the zipper body. A snap-fit ​​plate and a plug-in plate are respectively provided at both ends of the spring plate. The spring plate is connected to the zipper body through the snap-fit ​​plate. The plug-in plate extends into the inner cavity of the zipper body and engages with the zipper teeth in the inner cavity.

[0008] The spring plate includes a first bearing plate and a second bearing plate, and a connecting plate is provided between the first bearing plate and the second bearing plate;

[0009] There is a height difference between the first bearing plate and the second bearing plate;

[0010] The first bearing plate and the second bearing plate are respectively provided with a first spring and a second spring. The first spring is located between the connecting plate and the plug-in plate, and the second spring is located between the connecting plate and the snap-in plate.

[0011] The slider body is provided with an abutment groove, and the second spring piece extends into the abutment groove and abuts against the inner wall of the abutment groove;

[0012] Throughout the entire process of the pull tab being lifted from its lying position towards the rear of the pull head body and rotating towards the front of the pull head body, it is always subject to the elastic force of the first spring piece;

[0013] The elasticity allows the pull tab to automatically return to a lying position towards the rear of the pull head body regardless of the posture.

[0014] Preferably, the slider body includes a top plate and a bottom plate. The top plate is provided with at least one stop, which has an abutment portion that can abut against the slider to make the maximum rotatable angle of the slider between 90° and 120°.

[0015] Preferably, the first spring, the second spring, the snap-fit ​​plate, and the plug-in plate all point to the same side of the spring plate from one end of their respective connection roots to the other end.

[0016] Preferably, the end face of the slider body is provided with a snap-fit ​​hole and a plug-in hole, which are arranged along the length of the slider body. The snap-fit ​​hole cooperates with the snap-fit ​​plate to fix the spring plate to the slider body. The plug-in hole communicates with the inner cavity of the slider body, and the plug-in plate passes through the plug-in hole.

[0017] Preferably, both sides of the end of the pull tab connected to the slider body have protruding shafts. The protruding shafts have outer portions that extend beyond the sides of the pull tab. Each protruding shaft has a positioning block on both sides. Each positioning block clamps and fixes the protruding shaft, connecting the pull tab to the slider body.

[0018] Preferably, a top shaft is provided between each convex shaft, and the axis of the top shaft is spaced apart from the axis of the convex shaft. The pull plate has a connecting hole on the side of the top shaft away from the convex shaft. The spring plate passes through the connecting hole, and the top shaft is sleeved in the space formed by the first spring plate, the first bearing plate and the plug plate.

[0019] Preferably, a rotating groove is provided between each positioning block, and the convex shaft is rotatably disposed in the rotating groove. At least one stop is provided on the side of the rotating groove near the front end of the pull head body, and the stop is disposed on the inner side of the positioning block.

[0020] Preferably, the slider body includes a top plate and a bottom plate, with a mechanism vertically disposed between the top plate and the bottom plate, and the mechanism is located on the side of the slider body where the snap-fit ​​hole is located.

[0021] Preferably, the side wall edge of the top plate with the snap-fit ​​hole is recessed towards the side closer to the movement.

[0022] Compared to the aforementioned background technology, the zipper pull provided by this utility model includes: a puller body, a pull tab rotatably mounted on the puller body, a spring plate passing through the pull tab such that both ends of the spring plate are located on both sides of the pull tab, and each end of the spring plate is bent towards the side closer to the puller body with a locking plate and an inserting plate, wherein the locking plate is fixed to the puller body to prevent the spring plate from falling off the puller body, and the inserting plate at the other end of the spring plate extends into the inner cavity of the puller body and engages with the zipper teeth in the inner cavity of the puller body. Furthermore, the spring plate includes a first support plate and a second support plate. The ends are connected by a connecting plate. The first and second support plates are parallel to each other, and the connecting plate is set at a certain angle to the first support plate, creating a certain height difference between them. The first support plate is further away from the zipper head body than the second support plate. After the first support plate passes through the zipper tab, the distance between it and the zipper head body is set so that the zipper tab can hold the spring plate when it is rotated at a certain angle, thus separating the insert plate from the zipper teeth. Furthermore, the first support plate is provided with a first spring piece, and the second support plate is provided with a second spring piece. The first spring piece and the second spring piece... The pull tab is positioned between the insert plate and the snap plate. The first spring tab abuts against the side wall of the pull tab, and the second spring tab extends into the abutment groove of the zipper head body and fits against the inner wall of the abutment groove. When the pull tab is not flipped, it hangs down, and the insert plate extends into the inner cavity of the zipper head body, locking the zipper head body to the zipper. When unlocking the zipper, the pull tab is flipped towards the front end of the zipper head body, and the pull tab abuts against the first support plate of the spring plate, lifting the spring plate. The insert plate at the end of the spring plate separates from the zipper teeth, allowing the zipper head body to slide along the zipper. During the flipping process, the pull tab also pushes the first spring plate. The first spring sheet deforms and gains elastic potential energy. In addition, the pushing force of the pull tab also acts on the second support plate through the connecting plate, causing the second spring sheet on the second support plate to abut against the inner wall of the abutment groove. The second spring sheet deforms and gains elastic potential energy. When the user releases the pull tab, the first spring sheet applies elastic force to the pull tab, and the second spring sheet applies additional power to the pull tab through the connecting plate and the first support plate, ensuring that the pull tab can return to its original position. The spring plate returns to its original shape with the pull tab, allowing the insertion plate to extend into the inner cavity of the zipper head body. The zipper head body and the zipper teeth are locked, preventing the zipper head body from sliding down and pulling the zipper open. Attached Figure Description

[0023] 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 embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0024] Figure 1 This is an assembly drawing of the zipper pull provided in an embodiment of the present utility model;

[0025] Figure 2This is a structural diagram of the spring plate provided in an embodiment of the present utility model;

[0026] Figure 3 This is a diagram of the pull tab structure provided in an embodiment of the present utility model;

[0027] Figure 4 This is an assembly drawing of the spring plate and pull tab provided in an embodiment of the present utility model;

[0028] Figure 5 This is a side view of the zipper body provided in an embodiment of the present utility model;

[0029] Figure 6 This is a top view of the zipper head body provided in an embodiment of the present utility model.

[0030] Among them, 1-pull head body; 101-top plate; 102-bottom plate; 2-pull tab; 3-spring plate; 301-clamping plate; 302-insertion plate; 303-first bearing plate; 304-second bearing plate; 305-first spring piece; 306-second spring piece; 307-connecting plate; 4-convex shaft; 5-top shaft; 6-connecting hole; 7-positioning block; 8-stop block; 9-mechanism; 10-abutment groove; 12-rotation groove; 13-clamping hole; 14-insertion hole. Detailed Implementation

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0032] To enable those skilled in the art to better understand the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0033] This utility model provides a zipper pull; please refer to the appendix of the instruction manual. Figure 1The zipper pull includes a puller body 1, a rotatable pull tab 2 on the puller body 1, and a spring plate 3 passing through the pull tab 2. The two ends of the spring plate 3 are located on opposite sides of the pull tab 2. A locking plate 301 and an inserting plate 302 are respectively provided on both sides of the spring plate 3. The locking plate 301 is connected to the puller body 1, fixing the spring plate 3 to the puller body 1. The inserting plate 302 can extend into the inner cavity of the puller body 1 and engage with the zipper teeth inside the inner cavity of the puller body 1, locking the puller body 1 connected to the spring plate 3 to the zipper. The spring plate 3 includes a first support plate 303 and a second support plate 304 that are parallel to each other. A connecting plate 307 is provided at their opposite ends. The first support plate 303 and the second support plate 304 are respectively provided with... The device includes a plug-in plate 302 and a snap-fit ​​plate 301. A connecting plate 307 is set at a certain angle to the first support plate 303. Compared to the second support plate 304, the first support plate 303 is farther away from the slider body 1, allowing the first support plate 303 to pass through the pull tab 2. The gap between the first support plate 303 and the slider body 1 is used to accommodate the pull tab 2. A first spring piece 305 and a second spring piece 306 are also provided on the spring plate 3. The first spring piece 305 is located between the connecting plate 307 and the plug-in plate 302, and its sidewall can fit against the sidewall of the pull tab 2. The second spring piece 306 is located between the connecting plate 307 and the snap-fit ​​plate 301, and it extends into the abutment groove 10 of the slider body 1 and abuts against the inner wall of the abutment groove 10. Regarding the fit, it should be noted that the insert plate 302, the first spring piece 305, the connecting plate 307, the second spring piece 306, and the locking plate 301 are arranged sequentially along the zipper pull direction of the zipper body 1. When the zipper body 1 is locked to the zipper, the pull tab 2 is in a downward hanging state. When the zipper body 1 needs to be pulled, the pull tab 2 is flipped towards the end closer to the locking plate 301. During the rotation of the pull tab 2, the pull tab 2 pushes up the first support plate 303 that passes through the pull tab 2. Since the locking plate 301 of the spring plate 3 is fixedly connected to the zipper body 1, the pull tab 2 only pushes up the first support plate 303 with the insert plate 302, separating the insert plate 302 from the zipper teeth. In addition, when the pull tab 2 is flipped towards the side closer to the locking plate 301... During the process, the side wall of the pull tab 2 abuts against the first spring piece 305 of the first support plate 303, pushing the pull tab 2 to deform the first spring piece 305. The pushing force of the pull tab 2 also acts on the second support plate 304 through the connecting plate 307, causing the second spring piece 306 on the second support plate 304 to abut against the inner wall of the abutment groove 10. The deformation of the second spring piece 306 has elastic potential energy. When the user completes the zipper zipping and releases the pull tab 2, the first spring piece 305 and the second spring piece 306 rebound and apply elastic force to the pull tab 2, pushing the pull tab 2 away from the end of the locking plate 301, restoring the pull tab 2 to its original position. The spring plate 3 returns to its original position, and the insertion plate 302 extends into the inner cavity of the zipper head body 1 again, locking the zipper head body 1 and the zipper.

[0034] Please refer to the instruction manual appendix. Figure 2The first support plate 303 and the second support plate 304 are parallel to each other and are connected by a connecting plate 307. The first support plate 303 and the connecting plate 307 are set at a certain angle, so that the first support plate 303 is further away from the slider body 1 relative to the second support plate 304. The first support plate 303 passes through the slider 2. Furthermore, the first spring piece 305 is located between the slider 2 and the connecting plate 307, that is, the first spring piece 305 is located at the end of the first support plate 303 away from the insertion plate 302. In addition, a second spring piece 306 is provided on the second support plate 304. The second spring piece 306 is located on the second support plate 304 near the connecting plate 307. At the end, the first spring piece 305, the second spring piece 306, the first bearing plate 303, and the second bearing plate 304 are all located on the side of the spring plate 3 near the slider body 1. The first spring piece 305 is inclined towards the side near the connecting plate 307, and the first spring piece 305 is parallel to the second spring piece 306. The plug plate 302 is inclined away from the connecting plate 307, making it easier for the plug plate 302 to extend into the inner cavity of the slider body 1. The snap plate 301 is inclined towards the side near the connecting plate 307, so that the snap plate 301 and the second bearing plate 304 form a hook-like structure. After the snap plate 301 extends into the slider body 1, the snap plate 301 also hooks and locks with the slider body 1, so that the snap plate 301 and the slider body 1 are firmly connected.

[0035] Furthermore, a insertion hole 14 and a snap-fit ​​hole 13 are provided on the end face of the zipper head body 1. The insertion hole 14 and the snap-fit ​​hole 13 are arranged along the length direction of the zipper head body 1. The snap-fit ​​hole 13 cooperates with the snap-fit ​​plate 301, and the snap-fit ​​plate 301 is fixed to the zipper head body 1. The insertion hole 14 communicates with the inner cavity of the zipper head body 1. The insertion plate 302 passes through the insertion hole 14, so that the end of the insertion hole 14 is inserted into the zipper teeth of the inner cavity of the zipper head body 1. Preferably, the end of the insertion plate 302 that extends into the inner cavity of the zipper head body 1 is provided with a snap-fit ​​hole. The needle, the sharp part of the zipper pin, is inserted into the gap of the zipper teeth to lock the insertion plate 302 with the zipper teeth. In addition, an abutment groove 10 is provided on the end face of the zipper head body 1. The hole of the abutment groove 10 gradually narrows radially away from the side of the spring plate 3. The second spring piece 306 cooperates with the abutment groove 10. During the flipping of the zipper 2, the second spring piece 306 gradually abuts against the inner wall of the abutment groove 10. The second spring piece 306 deforms. After the zipper 2 is put down, the second spring piece 306 rebounds, providing additional thrust for the zipper 2 to rebound and reset.

[0036] Please refer to the instruction manual appendix. Figure 6The zipper pull body 1 includes a top plate 101 and a bottom plate 102. Two sets of paired positioning blocks 7 are provided on the top plate 101. Each set of positioning blocks 7 is symmetrically arranged on both sides of the axis of symmetry of the top plate 101. A rotating groove 12 is provided between each pair of positioning blocks 7. Preferably, the width of the positioning block 7 gradually decreases towards the side away from the zipper pull body 1. The side wall of the end of each positioning block 7 away from the rotating groove 12 is specifically a curved surface. The outer surface of the positioning block 7 with this structure is more gentle when in contact with clothing, avoiding scratching the clothing when pulling the zipper, and also preventing the zipper from scratching the user.

[0037] Please refer to the instruction manual appendix. Figure 3 With appendix Figure 4 Two protruding shafts 4 are provided on both sides of the end of the pull tab 2 near the pull head body 1. Each protruding shaft 4 extends along the width direction of the pull head body 1. The protruding shaft 4 is located between a pair of positioning blocks 7. The outer wall of the protruding shaft 4 is in contact with the inner wall of the rotating groove 12. The height of the positioning block 7 is greater than the size of the protruding shaft 4. The positioning block 7 is bent away from a part of the pull head body 1, and the bending direction is close to the side of the protruding shaft 4. The ends of the bent positioning blocks 7 abut against each other, locking the protruding shaft 4 between the pair of positioning blocks 7. A top shaft 5 is provided between the convex shafts 4, and the top shaft 5 is spaced apart from the convex shafts 4. A connecting hole 6 is provided on the side of the top shaft 5 away from the convex shafts 4. The spring plate 3 passes through the connecting hole 6 and is attached to the pull tab 2. In addition, the first bearing plate 303, the first spring plate 305, and the plug plate 302 surround the outer periphery of the top shaft 5. When the pull tab 2 is not flipped, the spring plate 3 attached to the pull tab 2 does not deform. When the pull tab 2 is flipped, the convex shaft 4 rotates in the rotating groove 12, and the top shaft 5, which is spaced apart from the convex shaft 4, gradually moves away from the zipper head body 1. The top shaft 5 holds the first bearing plate 303 and pushes the first bearing plate 303 to the side away from the zipper head body 1. The plug plate 302 at the end of the first bearing plate 303 moves out of the plug hole 14 and separates from the chain teeth. The zipper head body 1 can slide with the zipper. When the pull tab 2 is released, the first spring plate 305 rebounds and pushes against the convex shaft 4, so that the pull tab 2 automatically resets.

[0038] Please refer to the instruction manual appendix. Figure 5 With appendix Figure 6 Each positioning block 7 has a stop block 8 on the side near the pull tab 2. There is at least one stop block 8. The stop block 8 has an abutment part that can abut against the side wall of the pull tab 2. The abutment part is set perpendicular to the end face of the pull head body 1. That is, when the abutment part is completely in contact with the side wall of the pull tab 2, the pull tab 2 flips at an angle of 90°. Preferably, the width of the rotating groove 12 is greater than the diameter of the convex shaft 4. That is, the convex shaft 4 can slide in the rotating groove 12 perpendicular to the axis of the convex shaft 4. When the side wall of the pull tab 2 is completely in contact with the abutment part, if the pull tab 2 continues to rotate and abut against the end of the stop block 8, the convex shaft 4 located in the rotating groove 12 slides away from the stop block 8 until it abuts against the side wall of the rotating groove 12. The rotating groove 12 is set in this way to further increase the flip angle of the pull tab 2. It should be noted that the maximum flip angle of the pull tab 2 is 120°.

[0039] A mechanism 9 is sandwiched between the top plate 101 and the bottom plate 102. The mechanism 9 is arranged along the symmetry axis of the top plate 101 and is perpendicular to the top plate 101. The mechanism 9 is located on the side of the slider body 1 near the snap-fit ​​hole 13. The snap-fit ​​hole 13 extends from the top plate 101 into the mechanism 9 until it penetrates the bottom plate 102. There are snap-fit ​​blocks on both sides of the snap-fit ​​plate 301 away from the first support plate 303. The snap-fit ​​blocks mate with the grooves on the inner wall of the snap-fit ​​hole 13 to strengthen the connection between the snap-fit ​​plate 301 and the slider body 1.

[0040] Preferably, the top plate 101 has two sides of the snap-fit ​​hole 13 bent towards the side closer to the mechanism 9 to form a curved surface, which is used to guide the zipper insert into the zipper head body 1. The end face of the top plate 101 is provided with a protrusion corresponding to the mechanism 9. The height of the protrusion increases towards the side closer to the stop block 8, and the side of the protrusion away from the positioning block 7 is an arc surface. The bottom plate 102 is based on the mechanism 9. The bottom plate 102 on both sides of the mechanism 9 is slightly bent towards the side closer to the top plate 101. The zipper head body 1 with the above structure makes the process of pulling and closing the zipper smoother.

[0041] It should be noted that in this specification, relational terms such as first and second are used only to distinguish one entity from several other entities, and do not necessarily require or imply any such actual relationship or order between these entities.

[0042] This article uses specific examples to illustrate the principles and implementation methods of this utility model. The descriptions of the above embodiments are only for the purpose of helping to understand the method and core ideas of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principles of this utility model, and these improvements and modifications also fall within the protection scope of this utility model.

Claims

1. A zipper pull, characterized in that, include: The zipper head body (1) is rotatably provided with a zipper tab (2). The zipper body (1) is provided with a spring plate (3), and the two ends of the spring plate (3) are respectively provided with a snap-fit ​​plate (301) and a plug-in plate (302). The spring plate (3) is connected to the zipper body (1) through the snap-fit ​​plate (301). The plug-in plate (302) extends into the inner cavity of the zipper body (1) and is inserted into the zipper teeth in the inner cavity. The spring plate (3) includes a first support plate (303) and a second support plate (304), and a connecting plate (307) is provided between the first support plate (303) and the second support plate (304). There is a height difference between the first support plate (303) and the second support plate (304); The first support plate (303) and the second support plate (304) are respectively provided with a first spring piece (305) and a second spring piece (306). The first spring piece (305) is located between the connecting plate (307) and the plug-in plate (302), and the second spring piece (306) is located between the connecting plate (307) and the snap-fit ​​plate (301). The slider body (1) is provided with an abutment groove (10), and the second spring piece (306) extends into the abutment groove (10) and abuts against the inner wall of the abutment groove (10); Throughout the entire process of the pull tab (2) being lifted from a position lying down towards the rear end of the pull head body (1) and rotating towards the front end of the pull head body (1), it is always subjected to the elastic force of the first spring piece (305); The elasticity allows the pull tab (2) to automatically return to a position where it lies down towards the rear end of the pull head body (1) regardless of its posture.

2. The zipper pull according to claim 1, characterized in that, The zipper body (1) includes a top plate (101) and a bottom plate (102). The top plate (101) is provided with at least one stop (8). The stop (8) has an abutment portion that can abut against the zipper (2) so that the maximum rotatable angle of the zipper (2) is between 90° and 120°.

3. The zipper pull according to claim 2, characterized in that, The first spring (305), the second spring (306), the snap-fit ​​plate (301), and the plug-in plate (302) all point to the same side of the spring plate (3) from one end of their respective connection roots to the other end.

4. The zipper pull according to claim 3, characterized in that, The end face of the zipper body (1) is provided with a snap-fit ​​hole (13) and a plug-in hole (14). The snap-fit ​​hole (13) and the plug-in hole (14) are arranged along the length direction of the zipper body (1). The snap-fit ​​hole (13) cooperates with the snap-fit ​​plate (301) to fix the spring plate (3) to the zipper body (1). The plug-in hole (14) communicates with the inner cavity of the zipper body (1). The plug-in plate (302) passes through the plug-in hole (14).

5. The zipper pull according to claim 3, characterized in that, The pull tab (2) has protruding shafts (4) extending from both sides of the end connected to the pull head body (1). The protruding shafts (4) have outer portions extending beyond the two sides of the pull tab (2). Each of the protruding shafts (4) has a positioning block (7) on both sides. Each positioning block (7) clamps and fixes the protruding shaft (4) to connect the pull tab (2) to the pull head body (1).

6. The zipper pull according to claim 5, characterized in that, A top shaft (5) is provided between each of the convex shafts (4). The axis of the top shaft (5) is spaced apart from the axis of the convex shaft (4). The pull tab (2) has a connecting hole (6) on the side of the top shaft (5) away from the convex shaft (4). The spring plate (3) passes through the connecting hole (6). The top shaft (5) is sleeved in the space formed by the first spring plate (305), the first bearing plate (303) and the plug plate (302).

7. The zipper pull according to claim 5, characterized in that, A rotating groove (12) is provided between each of the positioning blocks (7), and the convex shaft (4) is rotatably disposed in the rotating groove (12). At least one stop block (8) is provided on the side of the rotating groove (12) near the front end of the pull head body (1), and the stop block (8) is disposed on the inner side of the positioning block (7).

8. The zipper pull according to claim 4, characterized in that, The zipper body (1) includes a top plate (101) and a bottom plate (102). A mechanism (9) is vertically arranged between the top plate (101) and the bottom plate (102). The mechanism (9) is located on the side of the zipper body (1) where the snap-fit ​​hole (13) is located.

9. The zipper pull according to claim 8, characterized in that, The top plate (101) has a recessed sidewall edge at one end where the snap-fit ​​hole (13) is located, which is closer to the movement (9).