Flexible packaging container

By forming the container body with the lower cover in one piece, and adopting a rotary cover-fit structure and biased bumps and groove design, the problems of complex production and insecure sealing of existing flexible packaging containers are solved, and the effect of reducing production costs and improving sealing safety is achieved.

CN223002025UActive Publication Date: 2025-06-20李国金
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Patent Information

Application Number
CN202422347836.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-06-20
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

The existing flexible packaging containers have many parts and complex processes during the production process, resulting in increased production costs and time. At the same time, the sealing structure is easily opened by mistake during transportation and sales, resulting in the outflow or degeneration of the content.

Method used

By forming the container body with the lower cover in one piece, the rotary cover-fit structure and biased bumps and groove design are adopted to achieve a safe seal of the container outlet and is convenient to open when needed.

Benefits of technology

It reduces production parts and processes, reduces production costs and time, and improves sealing safety, avoids unexpected outflow or degeneration of contents during transportation and sales.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223002025U_ABST
    Figure CN223002025U_ABST
Patent Text Reader

Abstract

The utility model provides a flexible packaging container which comprises a container body, a lower cover and an upper cover, and the upper end of the container body and the lower cover are integrally formed together. A container outlet is formed in the top of the lower cover in an offset manner; a rotary covering structure is arranged between the upper cover and the lower cover, a protruding block corresponding to the container outlet is formed at the bottom of the upper cover in an offset mode, and the rotary covering structure rotates to the corresponding position so that the protruding block can be correspondingly inserted into the container outlet in a sleeved mode. A detachable sealing piece is arranged in the container outlet, and the protruding block is inserted into the container outlet in a sleeved mode so that the sealing piece can be separated from the container outlet. The container body and the lower cover are integrally formed, so that the number of whole parts can be reduced, the production and assembly procedures are reduced, and the cost and time can be effectively reduced; the use of plastic can be reduced, and the purpose of environmental protection is achieved; the container outlet and the protruding block are formed in an offset mode, the protruding block and the container outlet are installed in a staggered mode when the sealing piece is transported or not used, the situation that the sealing piece is accidentally opened by mistake is avoided, and the sealing safety of the container outlet can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of product packaging, in particular to a flexible packaging container. Background Art

[0002] In the existing flexible packaging containers, generally, a lid body is threadedly connected to the container outlet at the upper end of the packaging container. The lid body is composed of a lower lid sleeved at the container outlet and an upper lid for closing the container outlet. At the container outlet, an aluminum foil or a plastic part is often used for sealing, and the sealing of the aluminum foil or the plastic part is opened by means of piercing or removing.

[0003] For the above-mentioned existing packaging containers, the lower lid and the upper lid of the lid body need to be formed separately. During the production process, the number of components increases, and the production and assembly processes also increase accordingly. The production cost and time will also increase. Moreover, the container outlet of the existing packaging container is generally arranged in the center. After the lid body is covered on the container outlet, the structure for opening the seal of the container outlet on the lid body is likely to be accidentally opened during transportation or sales, resulting in the outflow of the content inside the packaging container or the denaturation after opening. Summary of the Invention

[0004] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a flexible packaging container, which is used to reduce the production cost and improve the sealing safety of the packaging container.

[0005] To achieve the above purpose, the technical solution provided by the utility model is: a flexible packaging container, including a container body, a lower lid connected to the container body, and an upper lid covered on the lower lid. The upper end of the container body is integrally formed with the lower lid. The lower end of the container body is open, and the lower end of the container body is sealed after injecting materials into the container body. A container outlet is formed on the lower lid, and the container outlet is offset and arranged at the top of the lower lid. A rotating and covering structure is arranged between the upper lid and the lower lid. A convex block corresponding to the container outlet is integrally formed at the offset bottom of the upper lid. The rotating and covering structure rotates to a corresponding position to make the convex block correspondingly inserted into the container outlet. A detachable sealing member is arranged in the container outlet. When the convex block is inserted into the container outlet, the sealing member is separated from the container outlet.

[0006] Preferably, the rotating and covering structure includes a ferrule movably connected to the lower lid, a guide block formed at the bottom of the ferrule, and an arc-shaped guide rail groove formed at the top of the lower lid and arranged around the center. The upper lid is connected to the ferrule, and the guide block moves in the arc-shaped guide rail groove, so that the upper lid can rotate relative to the lower lid.

[0007] Furthermore, the two ends of the arc-shaped guide rail groove do not coincide, and positioning grooves are formed at both ends of the arc-shaped guide rail groove. The guide block can be respectively clamped in the positioning grooves.

[0008] Furthermore, the rotation angle of the protrusion is the same as the included angle formed by the two ends of the arc-shaped guide groove, and the positioning groove at one end and the protrusion or the container outlet are on the same radius straight line.

[0009] Preferably, a groove is offsetly formed on the top of the lower cover on a circle with the same radius as the container outlet, and the rotating cover structure is rotated to a corresponding position so that the protrusion is correspondingly inserted into the groove.

[0010] Furthermore, a pair of fixing grooves are formed on the top of the lower cover, and an insertion strip is formed on the bottom of the upper cover to be plugged and fixed with any of the fixing grooves, the insertion strip and the protrusion are on the same radius line, and the pair of fixing grooves respectively correspond to the container outlet on the same radius line and the groove on the same radius line.

[0011] Furthermore, a clamping ring is formed on the inner surface of the outer periphery of the ferrule, and a clamping groove which is clamped and connected with the clamping ring is formed on the upper outer periphery of the lower cover.

[0012] Preferably, the sealing member is a plastic block torn downward from the container outlet, and the protrusion is formed with a long protrusion for piercing the sealing member.

[0013] Preferably, the sealing member is a plastic block torn upward from the container outlet, a vertical connecting rod and a horizontal pressure rod are formed on the plastic block, the cantilever end of the horizontal pressure rod extends out of the edge of the container outlet, and the protrusion is formed with a pressing portion for pressing the horizontal pressure rod to extend out of the edge of the container outlet.

[0014] In this solution, the container body and the lower cover are integrally formed, and the upper cover is covered on the lower cover, which can reduce the overall components, and the production and assembly processes are also reduced, and the production cost and time are also effectively reduced; at the same time, the integrally formed container body and lower cover can reduce the use of plastics, thereby achieving the purpose of environmental protection; the container outlet and the protrusion that makes the sealing piece fall off are offsetly formed at the top of the lower cover and the bottom of the upper cover respectively. When transporting or not in use, the protrusion and the container outlet are staggered and installed to avoid the sealing piece from being accidentally opened by mistake, and it is not easy to cause the material in the container body to flow out or change after opening. When in use, the protrusion is turned to the corresponding position to make the sealing piece fall off, and then it can be used normally, which can greatly improve the sealing safety of the container outlet. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall state of the utility model;

[0016] Figure 2 This is a schematic diagram of the overall structure of the utility model in state 2;

[0017] Figure 3 Schematic diagram of the overall disassembled structure of the present utility model Figure 1 ;

[0018] Figure 4 Schematic diagram of the overall disassembled structure of the present utility model Figure 2 ;

[0019] Figure 5 Schematic diagram of the overall disassembled structure of the present utility model Figure 3 ;

[0020] Figure 6 Schematic diagram of the upper cover and the rotating closing structure of the present utility model Figure 1 ;

[0021] Figure 7 Schematic diagram of the upper cover and the rotating closing structure of the present utility model Figure 2 ;

[0022] Figure 8 Schematic diagram of the container body and the lower cover structure of the present utility model;

[0023] Figure 9 Schematic diagram of the top view structure of the container body and the lower cover of the present utility model;

[0024] Figure 10 Schematic diagram of the side view structure of the container body and the lower cover of the present utility model;

[0025] Figure 11 Schematic diagram of the closing cross-sectional structure of the overall state two of the present utility model;

[0026] Figure 12 Schematic diagram of the closing cross-sectional structure of the overall state one of the present utility model;

[0027] Figure 13 Schematic diagram of the sealing member structure of Embodiment 9 of the present utility model. Detailed implementation manners

[0028] The present utility model will be further described below in conjunction with specific embodiments: Embodiment 1

[0029] As Figure 1-12 shown, a flexible packaging container includes a container body 1, a lower cover 2 connected to the container body 1, and an upper cover 3 covering the lower cover 2. In the prior art, a threaded container outlet 5 is formed at the upper end of the container body 1, the lower cover 2 is screwed and sleeved outside the container outlet 5, and the upper cover 3 covers the lower cover 2 to close the container outlet 5. The container body 1, the lower cover 2, and the upper cover 3 are also made of different materials, so there are many produced parts, the processes and time are increased, and the production cost is also increased.

[0030] In the present application, the upper end of the container body 1 is integrally formed with the lower cover 2, and the lower end of the container body 1 is open. The lower end of the container body 1 is sealed after the material is injected into the container body 1, thereby reducing the overall components, and the production and assembly processes are also reduced accordingly, and the production cost and time are also effectively reduced; a container outlet 5 is formed on the lower cover 2, and the container outlet 5 is offset at the top of the lower cover 2; a rotating covering structure 4 is provided between the upper cover 3 and the lower cover 2, and a protrusion 31 corresponding to the container outlet 5 is offset at the bottom of the upper cover 3, and the rotating covering structure 4 is rotated to the corresponding position so that the protrusion 31 is correspondingly inserted into the container outlet 5; a detachable sealing member 6 is provided in the container outlet 5, and the protrusion 31 is inserted into the container outlet 5 so that the sealing member 6 is detached from the container outlet 5.

[0031] When transporting or not in use, the protrusion 31 and the container outlet 5 are staggered by rotating the rotating cover structure 4, so as to avoid the sealing member 6 being accidentally opened, and it is not easy to cause the material in the container body 1 to flow out or change its nature after opening; when in use, the protrusion 31 is rotated to the corresponding position by the rotating cover structure 4, so that the protrusion 31 can be inserted into the container outlet 5, so that the sealing member 6 falls off, and the container can be used normally, which can greatly improve the sealing safety of the container outlet 5. Example 2

[0032] The difference from Example 1 is that the rotating covering structure 4 includes a ring 41 movably connected to the lower cover 2, a guide block 42 formed at the bottom of the ring 41 and an arc-shaped guide groove 43 formed at the top of the lower cover 2 and arranged around the center, the inner surface of the outer periphery of the ring 41 is formed with a clamping ring 411, and the upper outer periphery of the lower cover 2 is formed with a clamping groove 21 clamped and connected to the clamping ring 411, the upper cover 3 is hingedly or otherwise connected to the ring 41, so that the upper cover 3 rotates with the rotation of the ring 41, and the guide block 42 moves in the arc-shaped guide groove 43, so that the upper cover 3 can rotate relative to the lower cover 2, that is, the relative position of the protrusion 31 and the container outlet 5 can be controlled, so as to achieve the effect of staggered installation or plug-in connection of the protrusion 31 and the container outlet 5. Example 3

[0033] The difference from Example 2 is that: generally, the two ends of the arc guide groove 43 do not overlap, the arc guide groove 43 is formed in an arc shape with a notch on the top of the lower cover 2, and positioning grooves 431 are formed at both ends of the arc guide groove 43. The positioning groove 431 is composed of the end of the arc guide groove 43 and the oblique convex strip 432 formed in the arc guide groove 43. The guide block 42 can be respectively clamped in the positioning groove 431 to play a certain positioning and fixing role.

[0034] When the guide block 42 of the ferrule 41 rotates to the end of the arc-shaped guide rail groove 43, the guide block 42 can stop rotating and prevent rotation after breaking through the inclined ridge 432. Only when a reverse rotation is applied, the guide block 42 is disengaged from the inclined ridge 432 of the positioning groove 431 and then continues to rotate reversely to the positioning groove 431 at the other end. Embodiment 4

[0035] The difference from Embodiment 3 is that: the angle formed by the rotation of the convex block 31 is the same as the included angle formed by the two ends of the arc-shaped guide rail groove 43, and one end of the positioning groove 431 and the convex block 31 or the container outlet 5 are on the same radius straight line, so that when the convex block 31 rotates to one end of the positioning groove 431, it can be accurately inserted into the container outlet 5 in a corresponding manner. Embodiment 5

[0036] The difference from Embodiments 1-4 is that: a groove 7 is formed by offset molding on the top of the lower cover 2 on the same circumference as the container outlet 5. The rotating cover structure 4 rotates to a corresponding position so that the convex block 31 is inserted into the groove 7 in a corresponding manner. The groove 7 is not communicated with the inside of the container body 1. The groove 7 is used to receive and position the convex block 31 at the groove 7 when the convex block 31 is misaligned and installed with the container outlet 5. Embodiment 6

[0037] The difference from Embodiment 5 is that: a pair of fixing grooves 8 are formed on the top of the lower cover 2, and inserting strips 32 are formed on the bottom of the upper cover 3 for plugging and fixing with any one of the fixing grooves 8. The inserting strips 32 and the convex block 31 are on the same radius straight line. The pair of fixing grooves 8 are respectively corresponding to the container outlet 5 on the same radius straight line and the groove 7 on the same radius straight line.

[0038] The plugging of the inserting strip 32 and the fixing groove 8 can further fix the positions of the upper cover 3 and the lower cover 2, and can make the upper cover 3 fixed at different positions during transportation or when not in use and after use, improving the sealing safety of the container outlet 5. Embodiment 7

[0039] The difference from Embodiment 6 is that as Figure 9 shown, more preferably, the included angles between the container outlet 5 and the groove 7 and the center of the lower cover 2 are 180 degrees. The two ends of the arc-shaped guide rail groove 43 and the positioning groove 431 are respectively located on the radius straight lines of the container outlet 5 and the groove 7. The pair of fixing grooves 8 are also respectively located on the radius straight lines of the container outlet 5 and the groove 7. Embodiment 8

[0040] The difference from Example 1 is that the sealing member 6 is a plastic block torn downward from the container outlet 5, and the protrusion 31 is formed with a long ridge 311 for piercing the sealing member 6. When in use, the upper cover 3 is covered on the lower cover 2, and the protrusion 31 is inserted into the container outlet 5. The long ridge 311 presses the plastic block downward to tear it downward and open it. Example 9

[0041] The difference from Example 1 is: Figure 13 As shown, the sealing member 6 is a plastic block torn upward from the container outlet 5, and a vertical connecting rod 61 and a horizontal pressure rod 62 are formed on the plastic block. The cantilever end of the horizontal pressure rod 62 extends out of the edge of the container outlet 5, and the protrusion 31 is formed with a pressing portion for pressing the horizontal pressure rod 62 to extend out of the edge of the container outlet 5. When in use, the pressing portion of the protrusion 31 presses the portion of the horizontal pressure rod 62 extending outside the edge of the container outlet 5, and the plastic block is tilted upward through the vertical connecting rod 61 to open.

[0042] Working principle:

[0043] When transporting or not in use, the upper cover 3 is rotated to the corresponding position, that is, the guide block 42 of the ring 41 moves in the arc guide groove 43 and stops after reaching one end of the arc guide groove 43. The guide block 42 is clamped in the positioning groove 431, and the protrusion 31 of the upper cover 3 is staggered and covered with the container outlet 5. The protrusion 31 is inserted into the groove 7 of the lower cover 2. At this time, the insertion strip 32 of the upper cover 3 can be inserted into the fixing groove 8 at the corresponding position, so that the relative position of the upper cover 3 and the lower cover 2 is stably fixed.

[0044] When in use, after the upper cover 3 is opened, the upper cover 3 is rotated to the corresponding position, that is, the guide block 42 of the ring 41 moves to the other end in the arc guide groove 43 and then stops, the guide block 42 is clamped in the positioning groove 431, and the protrusion 31 of the upper cover 3 is inserted and installed with the container outlet 5. The protrusion 31 can pierce the sealing member 6 of the container outlet 5, so that the material in the container body 1 can flow out. At this time, the insertion strip 32 of the upper cover 3 can be inserted in another position fixing groove 8, so that the relative position of the upper cover 3 and the lower cover 2 is stably fixed.

Claims

1. A flexible packaging container, comprising a container body, a lower cover connected to the container body, and an upper cover covering the lower cover, characterized in that: The upper end of the container body is integrally formed with the lower cover, and the lower end of the container body is open. The lower end of the container body is sealed after the material is injected into the container body; a container outlet is formed on the lower cover, and the container outlet is offset at the top of the lower cover; a rotating cover structure is provided between the upper cover and the lower cover, and a protrusion corresponding to the container outlet is offset at the bottom of the upper cover, and the rotating cover structure is rotated to a corresponding position so that the protrusion is correspondingly inserted into the container outlet; a detachable sealing member is provided in the container outlet, and the protrusion is inserted into the container outlet to detach the sealing member from the container outlet.

2. A flexible packaging container according to claim 1, characterized in that: The rotating covering structure includes a ring movably connected to the lower cover, a guide block formed at the bottom of the ring and an arc-shaped guide groove formed around the center of the top of the lower cover. The upper cover is connected to the ring, and the guide block moves in the arc-shaped guide groove, so that the upper cover can rotate relative to the lower cover.

3. A flexible packaging container according to claim 2, characterized in that: The two ends of the arc-shaped guide rail groove do not overlap, and positioning grooves are formed at both ends of the arc-shaped guide rail groove, and the guide blocks can be respectively clamped in the positioning grooves.

4. A flexible packaging container according to claim 3, characterized in that: The rotation angle of the protrusion is the same as the included angle formed by the two ends of the arc-shaped guide groove, and the positioning groove at one end and the protrusion or the container outlet are on the same radius straight line.

5. A flexible packaging container according to any one of claims 1 to 4, characterized in that: A groove is offsetly formed on the top of the lower cover and is located on a circumference with the same radius as the container outlet. The rotating cover structure is rotated to a corresponding position so that the protrusion is correspondingly inserted into the groove.

6. A flexible packaging container according to claim 5, characterized in that: A pair of fixing grooves are formed on the top of the lower cover, and an insertion strip that is plugged and fixed to any of the fixing grooves is formed on the bottom of the upper cover. The insertion strip and the protrusion are on the same radius line, and the pair of fixing grooves respectively correspond to the container outlet and the groove on the same radius line.

7. The flexible packaging container according to claim 2, characterized in that: A clamping ring is formed on the inner surface of the outer periphery of the ferrule, and a clamping groove which is clamped and connected with the clamping ring is formed on the upper outer periphery of the lower cover.

8. The flexible packaging container according to claim 1, characterized in that: The sealing piece is a plastic block torn downward from the container outlet, and the protrusion is formed with a long protrusion for piercing the sealing piece.

9. The flexible packaging container according to claim 1, characterized in that: The sealing member is a plastic block torn upward from the container outlet, on which a vertical connecting rod and a horizontal pressure rod are formed, the cantilever end of the horizontal pressure rod extends out of the edge of the container outlet, and the protrusion is formed with a pressing portion for pressing the horizontal pressure rod to extend out of the edge of the container outlet.