A packing case production process for hinges

CN122540465APending Publication Date: 2026-08-11FOSHAN LIANQISHUN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-01
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]本发明的目的是为了解决现有技术中存在缺少二次独立包装的缺点,而提出的一种用于铰链的打包装箱生产工艺

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Abstract

This invention relates to the field of hinge manufacturing technology, and in particular to a packaging and boxing production process for hinges. A first set of belt conveyors sequentially transports single hinge bodies. A second set of belt conveyors is located on one side of the output end of the first set of belt conveyors. A first transport device is positioned between the first and second sets of belt conveyors to transport the hinge bodies from the first set of belt conveyors to the second set of belt conveyors, ensuring that the hinge bodies are arranged in pairs side-by-side. This packaging and boxing production process for hinges overcomes the shortcomings of existing technologies that lack secondary independent packaging.
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Description

Technical Field

[0001] This invention relates to the field of hinge manufacturing technology, and more particularly to a packaging and boxing manufacturing process for hinges. Background Technology

[0002] After the hinges are manufactured into finished hinges, they need to be packaged. In the existing technology, the finished hinges are directly placed into the packaging box. The finished hinges lack secondary independent packaging, which causes the multiple finished hinges in the packaging box to come into direct contact and collide, resulting in scratches on the surface of the finished hinges. Furthermore, the lack of secondary independent packaging is not conducive to long-term storage and repackaging for sale. Summary of the Invention

[0003] The purpose of this invention is to address the shortcomings of existing technologies that lack secondary independent packaging, and to propose a packaging box production process for hinges.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] Design a packaging box manufacturing process for hinges, including the following steps:

[0006] S1: A single set of hinge bodies is sequentially conveyed by a first set of belt conveyors. A second set of belt conveyors is set on one side of the output end of the first set of belt conveyors. A first conveying device is set between the first set of belt conveyors and the second set of belt conveyors. The hinge bodies on the first set of belt conveyors are conveyed to the second set of belt conveyors by the first conveying device, so that the hinge bodies are placed side by side in pairs.

[0007] S2: A feeding vibrating plate is installed on one side of the second set of belt conveyors to feed bolts to the hinge bodies placed side by side.

[0008] S3: Located at the output end of the second belt conveyor, it connects to the bagging device, which bags and seals the hinge bodies and bolts placed side by side.

[0009] S4: The third belt conveyor is connected to the output end of the bagging device. The third belt conveyor is used to receive and transport the bagged and sealed hinge body and bolts. A fourth belt conveyor is set on one side of the third belt conveyor. The fourth belt conveyor is used to transport the packaging box. A second handling device is set between the third belt conveyor and the fourth belt conveyor. The second handling device transports the bagged and sealed hinge body and bolts on the third belt conveyor into the packaging box.

[0010] S5: The third belt conveyor will transport the bagged and sealed hinge bodies and bolts outward for further processing by the staff.

[0011] Preferably, the first conveying device includes a sliding guide rail, a rotary cylinder is installed at the free end of the sliding guide rail, a finger cylinder is installed on the rotating disk of the rotary cylinder, the hinge body is clamped by the finger cylinder, and the clamped hinge body is rotated 180° by the rotary cylinder, so that the two hinge bodies placed side by side are inverted.

[0012] Preferably, the second set of belt conveyors is equipped with two sets of push cylinders, which are located behind the feeding vibrating plate. The two sets of push cylinders are arranged opposite each other, and push the hinge bodies placed side by side towards each other and bring them closer together.

[0013] Preferably, two sets of guide plates are provided above both the first set of belt conveyors and the second set of belt conveyors. The two sets of guide plates are arranged opposite each other and are used to guide the hinge body to be in the middle of the first set of belt conveyors and the second set of belt conveyors. The input end of the two sets of guide plates has a trumpet-shaped outward opening structure.

[0014] Preferably, a belt weighing device is provided at the output end of the feeding vibratory plate, and a fifth set of belt conveyors is connected to the output end of the belt weighing device. A third conveying device is provided between the output end of the feeding vibratory plate and the belt weighing device, and between the fifth set of belt conveyors and the second set of belt conveyors. The third conveying device includes a sliding guide rail, and a magnetic suction device is installed at the free end of the sliding guide rail. Material is picked up by magnetic suction bolts of the magnetic suction device.

[0015] Preferably, the second conveying device includes a sliding guide rail, and a magnetic attraction device is installed at the free end of the sliding guide rail. Material is picked up by the magnetic attraction device, magnetic bolts, and hinge body.

[0016] Preferably, the third set of belt conveyors is equipped with two sets of push cylinders, which are used to clamp the packaging box in opposite directions.

[0017] Preferably, a belt weighing device is connected between the bagging device and the third belt conveyor to detect whether the weight of the bagged hinge body and bolts output by the bagging device is qualified.

[0018] The packaging box manufacturing process for hinges proposed in this invention has the following advantages:

[0019] By setting up a first set of belt conveyors and a second set of belt conveyors, and setting up a first conveying device between the first set of belt conveyors and the second set of belt conveyors, two sets of hinge bodies can be placed side by side in pairs. Bolts are placed between the two sets of hinge bodies placed side by side by a feeding vibrating plate, and the two sets of hinge bodies and bolts are fed into the bagging device at the same time to achieve synchronous and paired packaging of hinge bodies and bolts.

[0020] The second conveying device can transfer the bagged and sealed hinge body and bolts from the third belt conveyor to the packaging box on the fourth belt conveyor, thereby realizing the boxing operation. Attached Figure Description

[0021] Figure 1 A top-down view of the main structure.

[0022] In the diagram: 1. First belt conveyor; 2. Second belt conveyor; 3. First handling device; 4. Feeding vibratory plate; 5. Bagging device; 6. Third belt conveyor; 7. Fourth belt conveyor; 8. Second handling device; 9. Push cylinder; 10. Guide plate; 11. Belt weighing device; 12. Fifth belt conveyor; 13. Third handling device. Detailed Implementation

[0023] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0024] Example 1

[0025] A packaging box manufacturing process for hinges includes the following steps:

[0026] S1: A single set of hinge bodies is sequentially conveyed by the first set of belt conveyors 1. A second set of belt conveyors 2 is set on one side of the output end of the first set of belt conveyors 1. A first conveying device 3 is set between the first set of belt conveyors 1 and the second set of belt conveyors 2. The hinge bodies on the first set of belt conveyors 1 are conveyed to the second set of belt conveyors 2 by the first conveying device 3, so that the hinge bodies are placed side by side in pairs.

[0027] S2: A feeding vibrating plate 4 is installed on one side of the second belt conveyor 2 to feed bolts to the hinge bodies placed side by side.

[0028] S3: Located at the output end of the second belt conveyor 2, it connects to the bagging device 5, which bags and seals the hinge bodies and bolts that are placed side by side.

[0029] S4: The output end of the bagging device 5 is connected to the third belt conveyor 6. The third belt conveyor 6 is used to receive and transport the bagged and sealed hinge body and bolts. A fourth belt conveyor 7 is set on one side of the third belt conveyor 6. The fourth belt conveyor 7 is used to transport the packaging box. A second handling device 8 is set between the third belt conveyor 6 and the fourth belt conveyor 7. The second handling device 8 transports the bagged and sealed hinge body and bolts on the third belt conveyor 6 into the packaging box.

[0030] S5: The third belt conveyor 6 will transport the bagged and sealed hinge bodies and bolts outward for further processing by the staff.

[0031] Example 2

[0032] The first conveying device 3 includes a sliding guide rail, a rotary cylinder is installed at the free end of the sliding guide rail, and a finger cylinder is installed on the rotating disk of the rotary cylinder. The hinge body is clamped by the finger cylinder, and the clamped hinge body is rotated 180° by the rotary cylinder, so that the two hinge bodies placed side by side are inverted.

[0033] Furthermore, the second set of belt conveyors 2 is equipped with two sets of push cylinders 9. The two sets of push cylinders 9 are located behind the feeding vibrating plate 4. The two sets of push cylinders 9 are arranged opposite each other. The two sets of push cylinders 9 push and bring the hinge bodies placed side by side together towards each other.

[0034] Furthermore, two sets of guide plates 10 are provided above both the first set of belt conveyors 1 and the second set of belt conveyors 2. The two sets of guide plates 10 are arranged opposite each other and are used to guide the hinge body to be in the middle of the first set of belt conveyors 1 and the second set of belt conveyors 2. The input end of the two sets of guide plates 10 has a trumpet-shaped outward opening structure.

[0035] The output end of the feeding vibratory plate 4 is equipped with a belt weighing device 11. The output end of the belt weighing device 11 is connected to a fifth set of belt conveyors 12. A third conveying device 13 is provided between the output end of the feeding vibratory plate 4 and the belt weighing device 11, and between the fifth set of belt conveyors 12 and the second set of belt conveyors 2. The third conveying device 13 includes a sliding guide rail, and a magnetic suction device is installed at the free end of the sliding guide rail. Material is picked up by magnetic suction bolts of the magnetic suction device.

[0036] The second conveying device 8 includes a sliding guide rail, and a magnetic attraction device is installed at the free end of the sliding guide rail. Material is picked up by the magnetic attraction device, the magnetic bolt, and the hinge body.

[0037] The third set of belt conveyors 6 is equipped with two sets of push cylinders 9, which are used to clamp the packaging boxes in opposite directions.

[0038] A belt weighing device 11 is connected between the bagging device 5 and the third belt conveyor 6. The belt weighing device 11 is used to detect whether the weight of the hinge body and bolts after bagging and sealing output by the bagging device 5 is qualified.

[0039] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A packaging box manufacturing process for hinges, characterized in that: The steps include the following: S1: A single set of hinge bodies is sequentially conveyed by a first set of belt conveyors. A second set of belt conveyors is set on one side of the output end of the first set of belt conveyors. A first conveying device is set between the first set of belt conveyors and the second set of belt conveyors. The hinge bodies on the first set of belt conveyors are conveyed to the second set of belt conveyors by the first conveying device, so that the hinge bodies are placed side by side in pairs. S2: A feeding vibrating plate is installed on one side of the second set of belt conveyors to feed bolts to the hinge bodies placed side by side. S3: Located at the output end of the second belt conveyor, it connects to the bagging device, which bags and seals the hinge bodies and bolts placed side by side. S4: The third belt conveyor is connected to the output end of the bagging device. The third belt conveyor is used to receive and transport the bagged and sealed hinge body and bolts. A fourth belt conveyor is set on one side of the third belt conveyor. The fourth belt conveyor is used to transport the packaging box. A second handling device is set between the third belt conveyor and the fourth belt conveyor. The second handling device transports the bagged and sealed hinge body and bolts on the third belt conveyor into the packaging box. S5: The third belt conveyor will transport the bagged and sealed hinge bodies and bolts outward for further processing by the staff.

2. The packaging box manufacturing process for hinges according to claim 1, characterized in that: The first conveying device includes a sliding guide rail, a rotary cylinder is installed at the free end of the sliding guide rail, and a finger cylinder is installed on the rotating disk of the rotary cylinder. The finger cylinder clamps the hinge body, and the rotary cylinder causes the clamped hinge body to rotate 180°, so that the two hinge bodies placed side by side are inverted.

3. The packaging box manufacturing process for hinges according to claim 2, characterized in that: The second set of belt conveyors is equipped with two sets of push cylinders. The two sets of push cylinders are located behind the feeding vibrating plate and face each other. The two sets of push cylinders push and bring the hinge bodies placed side by side together.

4. The packaging box manufacturing process for hinges according to claim 3, characterized in that: Two sets of guide plates are provided above both the first set of belt conveyors and the second set of belt conveyors. The two sets of guide plates are arranged opposite each other and are used to guide the hinge body to be in the middle of the first set of belt conveyors and the second set of belt conveyors. The input end of the two sets of guide plates has a trumpet-shaped outward opening structure.

5. The packaging box manufacturing process for hinges according to claim 1, characterized in that: The output end of the feeding vibratory plate is equipped with a belt weighing device, and a fifth set of belt conveyors is connected to the output end of the belt weighing device. A third conveying device is provided between the output end of the feeding vibratory plate and the belt weighing device, and between the fifth set of belt conveyors and the second set of belt conveyors. The third conveying device includes a sliding guide rail, and a magnetic suction device is installed at the free end of the sliding guide rail. Material is picked up by magnetic suction bolts of the magnetic suction device.

6. The packaging box manufacturing process for hinges according to claim 1, characterized in that: The second conveying device includes a sliding guide rail, and a magnetic attraction device is installed at the free end of the sliding guide rail. Material is picked up by the magnetic attraction device, magnetic bolts, and hinge body.

7. The packaging box manufacturing process for hinges according to claim 1, characterized in that: The third set of belt conveyors is equipped with two sets of push cylinders, which are used to clamp the packaging box in opposite directions.

8. The packaging box manufacturing process for hinges according to claim 1, characterized in that: A belt weighing device is connected between the bagging device and the third belt conveyor. The belt weighing device is used to detect whether the weight of the hinge body and bolts after bagging and sealing output by the bagging device is qualified.