Arraying machine for plastic buckle production

By setting a top post and wedge block structure at the bottom of the aligning tray, the automatic locking and quick disassembly of the aligning tray are achieved by utilizing the spring's rebound force, which solves the problem of cumbersome installation of traditional aligning machines and improves aligning efficiency and convenience.

CN224061883UActive Publication Date: 2026-03-31KUNSHAN JINXI PLASTIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional swing-type vibratory alignment machines have cumbersome installation procedures when installing alignment trays, which affects the alignment efficiency of O-ring plastic fasteners.

Method used

The swing-type vibration alignment machine uses a top column and wedge block structure at the bottom of the alignment tray to achieve automatic locking and quick disassembly of the alignment tray by utilizing the spring rebound force, which simplifies the installation and removal process of the alignment tray.

Benefits of technology

It improves the working efficiency and ease of use of the alignment machine, and ensures the stable alignment of the O-ring plastic fasteners and the reliability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of arraying machines, in particular to an arraying machine for plastic buckle production. The arraying machine for plastic buckle production comprises a swing type vibration arraying machine, two sets of swing vibration boxes are evenly arranged on the top of a swing vibration table of the swing type vibration arraying machine, an arraying disc is placed in the swing vibration boxes, a top column is placed at the bottom of the arraying disc, a first spring is arranged at the bottom of the top column, and a second spring is arranged at the bottom of the first spring. The outer ring of the top column is slidably sleeved with a friction sleeve, and the front side and the rear side of the arraying disc are each provided with a set of pull grooves. According to the utility model, the arraying disc is placed on the support pillar and is pressed downwards, and after the wedge groove on the outer side of the arraying disc is aligned with the wedge block, the second spring drives the wedge block to be inserted into the wedge groove, so that the arraying disc is automatically locked in the accommodating groove of the swinging vibration box, and the effect of quickly assembling the arraying disc and the swinging vibration box is realized; therefore, the working efficiency of the swing type vibration arraying machine can be improved.
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Description

Technical Field

[0001] This utility model relates to the field of aligning machine technology, specifically an aligning machine for producing plastic fasteners. Background Technology

[0002] Plastic rope buckles are a type of plastic fastener, a lightweight and durable rigging accessory commonly used for securing, connecting, and adjusting ropes, canvas, and other items. Plastic fasteners are a broader category, encompassing various shapes and uses, such as D-rings, O-rings, S-rings, and T-rings, which are widely used in outdoor activities, sports, construction, and transportation.

[0003] After the O-rings are produced, a vibratory aligning machine is needed to vibrate multiple sets of O-rings into an aligning tray for later processing and assembly. However, traditional vibratory aligning machines require unlocking the fixing plate before placing the aligning tray into the vibratory box, and then locking the fixing plate to secure the tray. This results in numerous steps when installing the aligning tray, reducing the ease of use and affecting the aligning efficiency of the O-rings. To address this, a technological innovation is proposed based on the existing aligning machine. Utility Model Content

[0004] The purpose of this invention is to provide an aligning machine for the production of plastic fasteners, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a lining machine for producing plastic fasteners, comprising:

[0006] A swing-type vibratory alignment machine has two sets of swing vibration boxes evenly arranged on the top of the swing vibration table. An alignment plate is placed inside each swing vibration box. A top column is placed at the bottom of the alignment plate, and a first spring is installed at the bottom of the top column. A friction sleeve is slidably sleeved on the outer ring of the top column. A set of pull grooves is opened on both the front and rear sides of the alignment plate, and a set of wedge grooves is opened on both the left and right sides of the alignment plate. Two sets of wedges are evenly arranged inside the swing vibration box. A connecting rod and a second spring are evenly arranged on the outer side of each wedge. The second spring is located on the outer ring of the connecting rod. A pull rod is arranged on the side of the connecting rod away from the wedge. The wedges correspond to the wedge grooves.

[0007] Preferably, the bottom of the inner wall of the swing vibration box is provided with a storage groove, the bottom of the storage groove is provided with a recess, and the left and right sides of the inner wall of the storage groove are provided with sliding grooves, and two sets of through holes are uniformly opened in the sliding grooves.

[0008] Preferably, the friction sleeve is disposed in the groove, the bottom of the first spring is fixedly disposed at the bottom of the inner sidewall of the groove, and the elastic force of the first spring is greater than the frictional force between the top post and the friction sleeve.

[0009] Preferably, the array of trays corresponds to the storage slot and is located above the storage slot.

[0010] Preferably, the wedge is disposed in the groove, and the inclined surface of the wedge is located at the bottom of the entire array of discs.

[0011] Preferably, the second spring is fixedly disposed in the slide groove, the connecting rod is slidably disposed in the slide groove and the through hole, the pull rod is located on the outside of the rocking vibration box, and the side of the connecting rod away from the wedge block passes through the through hole and is connected to the pull rod.

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

[0013] This invention involves placing the aligning tray on the top column and pressing it down. When the wedge groove on the outer side of the aligning tray aligns with the wedge block, the second spring drives the wedge block to insert into the wedge groove, thereby automatically locking the aligning tray into the storage slot of the swing vibration box. This achieves the effect of rapid assembly of the aligning tray and the swing vibration box, thereby improving the working efficiency of the swing vibration aligning machine.

[0014] Once the entire array of trays is filled with O-ring plastic fasteners, pulling the lever outward causes the wedge to move outward and separate from the wedge groove. At this time, the first spring uses its own rebound force to drive the top column to push the entire array of trays upward out of the storage slot. Then, the entire array of trays can be easily removed from the swing vibration box by pulling the groove, thus ensuring the ease of use of the device. Furthermore, when the first spring drives the top column to move upward, the top column will move up and down relatively smoothly due to the friction between itself and the friction sleeve. This allows the top column to drive the entire array of trays to move upward relatively smoothly, ensuring that the O-ring plastic fasteners can be stably placed inside the entire array of trays when the entire array of trays moves upward, thereby ensuring the reliability of the device. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of the aligning machine for producing plastic fasteners according to this utility model;

[0016] Figure 2 This is a partial sectional view of the first front view of the aligning machine for producing plastic fasteners according to this utility model;

[0017] Figure 3 This is a second partial sectional view of the front of the alignment machine for producing plastic fasteners according to this utility model.

[0018] In the diagram: 1. Swing-type vibratory alignment machine; 11. Swing vibratory box; 12. Alignment plate; 13. Pull groove; 14. Pull rod; 15. Connecting rod; 16. First spring; 17. Friction sleeve; 18. Top column; 19. Second spring; 2. Wedge block; 21. Wedge groove. Detailed Implementation

[0019] 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.

[0020] Please see Figures 1-3 The plastic fastener production aligning machine includes a swing-type vibration aligning machine 1. Two sets of swing-type vibration boxes 11 are evenly fixed on the top of the swing-type vibration table of the swing-type vibration aligning machine 1. The swing-type vibration aligning machine 1 is a relatively mature mechanical device, and its working principle will not be elaborated here. An aligning plate 12 is placed inside the swing-type vibration box 11. A top column 18 is placed at the bottom of the aligning plate 12. A first spring 16 is fixed at the bottom of the top column 18. A friction sleeve 17 is slidably sleeved on the outer ring of the top column 18. A set of pull grooves 13 are opened on both the front and rear sides of the aligning plate 12, and a set of wedge grooves 2 are opened on both the left and right sides of the aligning plate 12. 1. Two sets of wedges 2 are evenly placed inside the swing vibration box 11. A connecting rod 15 and a second spring 19 are evenly fixed on the outer side of the wedges 2. The second spring 19 is located on the outer ring of the connecting rod 15. A pull rod 14 is fixed on the side of the connecting rod 15 away from the wedges 2. When the entire array 12 is placed on the top column 18 and pressed down, the entire array 12 moves downward and squeezes the wedges 2 to move outward to avoid them. When the wedge groove 21 on the outer side of the entire array 12 is aligned with the wedges 2, the second spring 19 uses its own rebound force to drive the wedges 2 to insert into the wedge groove 21, thereby fixing the entire array 12. The wedges 2 and the wedge grooves 21 correspond to each other.

[0021] The inner wall of the swing vibration box 11 has a storage groove at the bottom, and a recess at the bottom of the storage groove. The inner wall of the storage groove has sliding grooves on both the left and right sides, and two sets of through holes are evenly opened in the sliding grooves. The friction sleeve 17 is fixedly installed in the recess. The bottom of the first spring 16 is fixedly installed at the bottom of the inner wall of the recess. The elastic force of the first spring 16 is greater than the friction between the top column 18 and the friction sleeve 17. When the first spring 16 uses its own rebound force to drive the top column 18 to move upward, the top column 18 will move up and down relatively smoothly due to the friction between itself and the friction sleeve 17. The array plate 12 corresponds to the storage groove and is located above the storage groove. The wedge 2 is slidably installed in the sliding groove, and the inclined surface of the wedge 2 is located at the bottom of the array plate 12. The second spring 19 is fixedly installed in the sliding groove. The connecting rod 15 is slidably installed in the sliding groove and the through hole. The pull rod 14 is located on the outside of the swing vibration box 11. The side of the connecting rod 15 away from the wedge 2 is connected to the pull rod 14 through the through hole.

[0022] Working principle: The alignment tray 12 is placed on the top column 18 and pressed down. The downward movement of the alignment tray 12 compresses the wedge block 2, causing it to move outwards to avoid obstruction. When the wedge groove 21 on the outer side of the alignment tray 12 aligns with the wedge block 2, the second spring 19 uses its own rebound force to drive the wedge block 2 into the wedge groove 21, thus automatically locking the alignment tray 12 into the receiving slot of the swing vibration box 11. O-ring plastic fasteners are then poured into the swing vibration box 11. The swing vibration alignment machine 1 drives the swing vibration box 11 and the alignment tray 12 to swing and vibrate, thereby vibrating the O-ring plastic fasteners in the swing vibration box 11 into the alignment tray 12. The swing vibration alignment machine 1 is a relatively advanced type of machine currently used in China. The working principle of the mature mechanical equipment will not be elaborated here. When the entire tray 12 is filled with O-ring plastic fasteners, the pull rod 14 is pulled outward, which drives the wedge block 2 to move outward and separate from the wedge groove 21 through the connecting rod 15. At this time, the first spring 16 uses its own rebound force to drive the top column 18 to push the entire tray 12 upward out of the storage groove. At this time, the entire tray 12 can be easily taken out from the swing vibration box 11 through the pull groove 13. When the first spring 16 uses its own rebound force to drive the top column 18 to move upward, the top column 18 will move up and down relatively smoothly due to the friction between itself and the friction sleeve 17, so that the top column 18 can drive the entire tray 12 to move upward relatively smoothly.

Claims

1. A plastic fastener production aligning machine, characterized by, Include: Swing type vibration aligning machine (1), the swing vibration table top of swing type vibration aligning machine (1) is uniformly provided with two groups of swing vibration boxes (11), the swing vibration box (11) is placed with aligning disc (12) inside, the bottom of aligning disc (12) is placed with top column (18), the bottom of top column (18) is provided with first spring (16), the outer circle of top column (18) is slidably sleeved with friction sleeve (17), the front and rear sides of aligning disc (12) are both provided with a group of pull grooves (13), the left and right sides of aligning disc (12) are both provided with a group of wedge grooves (21), the swing vibration box (11) is uniformly placed with two groups of wedge blocks (2), the outer side of wedge block (2) is uniformly provided with connecting rod (15) and second spring (19), second spring (19) is located at the outer circle of connecting rod (15), the side of connecting rod (15) away from wedge block (2) is provided with pull rod (14), wedge block (2) corresponds with wedge groove (21).

2. The aligner for plastic fastener production according to claim 1, characterized in that: The inner side wall bottom of swing vibration box (11) is provided with receiving groove, the bottom of receiving groove is provided with groove, the left and right sides of the inner side wall of receiving groove are both provided with sliding groove, two groups of through holes are uniformly penetrated in the sliding groove.

3. The aligner for plastic fastener production according to claim 2, characterized in that: The friction sleeve (17) is arranged in the groove, the bottom of the first spring (16) is fixedly arranged on the inner side wall bottom of the groove, and the elastic force of the first spring (16) is greater than the friction force between the top column (18) and the friction sleeve (17).

4. The aligner for plastic fastener production according to claim 2, wherein: The aligning disc (12) corresponds to the receiving groove and is located above the receiving groove.

5. The aligner for plastic fastener production according to claim 2, characterized in that: The wedge block (2) is arranged in the sliding groove, and the inclined surface of the wedge block (2) is located at the bottom of the aligning disc (12).

6. The aligner for plastic fastener production according to claim 2, characterized in that: The second spring (19) is fixedly arranged in the sliding groove, the connecting rod (15) is slidably arranged in the sliding groove and the through hole, the pull rod (14) is located on the outer side of the swing vibration box (11), and the side of the connecting rod (15) away from the wedge block (2) penetrates the through hole and is connected with the pull rod (14).