Necking and capping device for soft aerosol bottle

By introducing electrostatic removal and dust removal devices into the capping and necking device for soft mist bottles, the problem of aluminum shavings adsorption was solved, ensuring product aesthetics and quality, and improving production efficiency.

CN223445197UActive Publication Date: 2025-10-17TRUKING TECH LTD
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Patent Information

Application Number
CN202422785652.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-17
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

In existing technologies, aluminum shavings generated during the narrowing, tightening, and polishing of the aluminum cylinder of the soft mist spray bottle are easily adsorbed onto the product, affecting its appearance and quality.

Method used

A capping and necking device for soft mist bottles was designed, comprising a conveying mechanism, a placement mechanism, a necking mechanism, a grooving mechanism, a flanging mechanism, an electrostatic removal mechanism, a dust removal chamber, and a dust removal pipe. The electrostatic removal and dust removal devices effectively remove debris, ensuring that the product's appearance is not affected during the production process.

Benefits of technology

It effectively removes debris during the production process, ensuring the product's appearance and quality, improving production efficiency, and preventing aluminum shavings from adhering to the bottle body.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223445197U_ABST
Patent Text Reader

Abstract

The utility model discloses a soft aerosol bottle necking and capping device, which relates to the technical field of pharmaceutical equipment and packaging equipment and comprises a conveying mechanism, one side of the conveying mechanism is sequentially provided with a placing mechanism, a necking mechanism, a groove rolling mechanism and a flanging mechanism, the soft aerosol bottle necking and capping device further comprises a static electricity removing mechanism, a dust removing cavity and a dust removing pipe, and the static electricity removing mechanism is arranged corresponding to the placing mechanism. The dedusting cavity is arranged corresponding to the necking mechanism and the groove rolling mechanism, the flanging mechanism comprises a hemming cutter, and the dedusting pipe is arranged corresponding to the moving area of the hemming cutter. The necking and capping device for the soft aerosol bottle has the advantages of being reasonable in layout and capable of effectively removing chippings.
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Description

Technical Field

[0001] The utility model belongs to the technical field of pharmaceutical and packaging equipment, in particular to a necking and capping device for a soft aerosol bottle. Background Art

[0002] Soft mist is a combined drug and device inhalation preparation product. The soft mist bottle is mainly used to contain liquid medicine with active ingredients. In order to increase the strength and stability of the soft mist bottle during transportation or use, the filled soft mist bottle needs to be placed in a bottle sleeve, and then the neck of the bottle sleeve is shrunken and sealed to play a fixed protection and auxiliary sealing role. The bottle sleeve is usually an aluminum cylinder. During the production process, the medicine bottle is placed in the aluminum cylinder, and the opening of the aluminum cylinder is shrunken, rolled, and flanging. When the aluminum cylinder is shrunken, rolled, and polished, the repeated friction and contact between the steel rolling knife and the aluminum cylinder will produce aluminum chips, which will often be adsorbed on the product and affect the product's appearance. Utility Model Content

[0003] The technical problem to be solved by the utility model is to overcome the deficiencies of the prior art and provide a soft aerosol bottle necking and capping device which has a reasonable layout and can effectively remove debris.

[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0005] A device for shrinking and capping soft aerosol bottles comprises a conveying mechanism 1. A placement mechanism 2, a shrinking mechanism 3, a grooving mechanism 4 and a flanging mechanism 5 are sequentially arranged on one side of the conveying mechanism 1. The device also comprises an electrostatic removal mechanism 6, a dust removal chamber 7 and a dust removal pipe 8. The electrostatic removal mechanism 6 is arranged corresponding to the placement mechanism 2, the dust removal chamber 7 is arranged corresponding to the shrinking mechanism 3 and the grooving mechanism 4, the flanging mechanism 5 comprises a crimping knife 11, and the dust removal pipe 8 is arranged corresponding to the moving area of ​​the crimping knife 11. The layout is reasonable and can effectively remove debris generated by the shrinking, grooving and flanging processes.

[0006] As a further improvement of the above technical solution:

[0007] The necking mechanism 3 includes multiple groups of necking components 9, the grooving mechanism 4 includes multiple groups of grooving components 10, the dust removal chamber 7 is arranged corresponding to the multiple groups of necking components 9 and the multiple groups of grooving components 10, the flanging mechanism 5 includes multiple groups of curling knives 11, and the working areas of the curling knives 11 are respectively provided with dust removal pipes 8. The layout is reasonable and does not interfere with the production process of the necking, grooving and flanging steps. One-to-many dust removal is realized at the necking mechanism 3 and the grooving mechanism 4, and one-to-one dust removal is realized at the flanging mechanism 5.

[0008] The static electricity removal mechanism 6 is installed above the placement mechanism 2 through the bracket 12, and is aimed at the bottle mouth to remove static electricity, which is convenient for subsequent dust removal.

[0009] The dust removal cavity 7 is connected with the supporting hard pipe 14 and the conveying hose 15 connected with the dust collection device, and the installation is facilitated.

[0010] The mounting seat 16 is further included, the supporting hard pipe 14 can be adjusted up and down along the mounting seat 16, and the position of the dust removal cavity 7 is adjusted to align with the necking mechanism and the rolling groove mechanism.

[0011] The dust removal pipe 8 is connected with the gas distribution block 18 and the conveying hose 15 connected with the dust collection device, and the installation is facilitated.

[0012] The placing mechanism 2 is a placing seat, and the kick-out chute 20 is arranged on the side of the placing seat, the kick-out chute 20 comprises an inlet 21, and the inlet 21 and the placing seat are intermittently arranged, so that the unqualified bottle bodies produced in the front-end process are kicked out, and the placing requirement of the intermittent movement of the bottle bodies is met.

[0013] The visual detection mechanism 22, the kick-out mechanism 19 and the finished product output mechanism 13 are further arranged at the rear end of the flanging mechanism 5, the visual detection mechanism 22 is arranged on one side of the conveying mechanism 1, the kick-out mechanism 19 is arranged on one side of the finished product conveying mechanism 1, the waste collecting mechanism 17 is arranged on the other side of the finished product conveying mechanism 1, the visual detection of the bottle bodies is realized, and the unqualified bottle bodies are kicked out.

[0014] The dust removal cavity 7 is provided with two groups, and the two groups of dust removal cavities 7 are correspondingly arranged on the sides of the necking mechanism 3 and the rolling groove mechanism 4, so that the dust removal effect is guaranteed.

[0015] The placing mechanism 2, the electrostatic removal mechanism 6, the necking mechanism 3, the rolling groove mechanism 4, the flanging mechanism 5, the dust removal mechanism, the visual detection mechanism 22, the kick-out mechanism 19 and the finished product output mechanism 13 are symmetrically arranged on the two sides of the conveying mechanism 1, and the production efficiency is higher.

[0016] Compared with the prior art, the advantages of the utility model lie in that:

[0017] The soft spray bottle necking and cover rolling device of the utility model, electrostatic removal mechanism 6 is arranged corresponding to placing mechanism 2, and the electrostatic elimination is carried out to the soft spray bottle, so that the chippings generated in the subsequent work station are not easy to be adsorbed on the bottle body, and the chippings and dust are removed, placing mechanism 2 is used for accommodating the bottle body, so that the conveying mechanism 1 intermittently conveys the bottle body, and the bottle body can complete the necking, rolling and flanging processes on the necking mechanism 3, rolling mechanism 4 and flanging mechanism 5, placing mechanism 2 only needs to accommodate and place the bottle body, and the bottle body is not operated on placing mechanism 2, and a larger space is formed, so that electrostatic removal mechanism 6 can be conveniently arranged corresponding to the space, the necking mechanism 3 and rolling mechanism 4 are lifted and / or rotated in the original position, and the necking mechanism 3 and rolling mechanism 4 do not need to be moved to other positions in the horizontal direction, the dust removal cavity 7 is arranged corresponding to the necking mechanism 3 and rolling mechanism 4, and the dust removal of two work stations can be completed, and the edge rolling cutter 11 of the flanging mechanism 5 has the movement in the horizontal direction, and the movement area of the edge rolling cutter 11 is arranged corresponding to the dust removal pipe 8, so that the dust removal can be carried out close to the position where the chippings are generated, and the interference with the flanging action can be avoided, and the overall structure layout is reasonable, and the chippings generated in the necking, rolling and flanging processes can be effectively removed. BRIEF DESCRIPTION OF DRAWINGS

[0018] Fig. 1 It is a structural schematic view of a soft spray bottle necking and cover rolling device of the utility model;

[0019] Fig. 2 It is a perspective view of a soft spray bottle necking and cover rolling device of the utility model;

[0020] Fig. 3 It is a structural schematic view of a dust removal cavity of the utility model;

[0021] Fig. 4 It is a structural schematic view of a dust removal pipe of the utility model.

[0022] In the drawings, the utility model's reference signs are as follows: 1, conveying mechanism; 2, placing mechanism; 3, necking mechanism; 4, rolling mechanism; 5, flanging mechanism; 6, electrostatic removal mechanism; 7, dust removal cavity; 8, dust removal pipe; 9, necking assembly; 10, rolling assembly; 11, edge rolling cutter; 12, support; 13, finished product output mechanism; 14, supporting hard pipe; 15, conveying hose; 16, mounting seat; 17, waste collecting mechanism; 18, gas distribution block; 19, waste kicking mechanism; 20, waste kicking chute; 21, inlet; 22, visual detection mechanism. PREFERRED EMBODIMENT

[0023] The utility model will be further explained in detail in combination with the drawings and specific embodiments of the specification.

[0024] As Figs. 1 to 4As shown, a soft spray bottle necking and rolling cover device includes a conveying mechanism 1, one side of the conveying mechanism 1 is sequentially provided with a placing mechanism 2, a necking mechanism 3, a rolling groove mechanism 4 and a flanging mechanism 5, and further includes an electrostatic removal mechanism 6, a dust removal cavity 7 and a dust removal pipe 8, the electrostatic removal mechanism 6 is arranged corresponding to the placing mechanism 2, the dust removal cavity 7 is arranged corresponding to the necking mechanism 3 and the rolling groove mechanism 4, the flanging mechanism 5 includes a curling knife 11, and the dust removal pipe 8 is arranged corresponding to the moving area of the curling knife 11.

[0025] The electrostatic removal mechanism 6 is arranged corresponding to the placing mechanism 2, and the electrostatic elimination is performed on the soft spray bottle, so that the debris generated in the subsequent workstations is not easy to be adsorbed on the bottle body, and the debris and dust are beneficial to be removed. The placing mechanism 2 is used to accommodate the bottle body, so that the conveying mechanism 1 intermittently conveys the bottle body, and the bottle body can complete the necking, rolling groove and flanging processes on the necking mechanism 3, the rolling groove mechanism 4 and the flanging mechanism 5. The placing mechanism 2 only needs to accommodate and place the bottle body, and does not need to operate the bottle body on the placing mechanism 2, so that there is a larger space, and the electrostatic removal mechanism 6 can be correspondingly arranged. Since the necking mechanism 3 and the rolling groove mechanism 4 perform lifting and / or rotating actions at the original positions, the necking mechanism 3 and the rolling groove mechanism 4 do not need to be moved to other positions in the horizontal direction, the dust removal cavity 7 is arranged corresponding to the necking mechanism 3 and the rolling groove mechanism 4, and the dust removal can be completed for two workstations. The curling knife 11 of the flanging mechanism 5 has movement in the horizontal direction, and the dust removal pipe 8 is arranged corresponding to the moving area of the curling knife 11, so that the dust removal can be performed close to the position where the debris is generated, and interference with the flanging action can be avoided. The overall structure layout is reasonable, and the debris generated in the necking, rolling groove and flanging processes can be effectively removed.

[0026] The necking mechanism 3 includes a plurality of necking assemblies 9, the rolling groove mechanism 4 includes a plurality of rolling groove assemblies 10, the dust removal cavity 7 is arranged corresponding to the plurality of necking assemblies 9 and the plurality of rolling groove assemblies 10, and the flanging mechanism 5 includes a plurality of curling knives 11. The working area of the curling knife 11 is one-to-one corresponding to the dust removal pipe 8. The layout is reasonable, does not interfere with the production process of the necking, rolling groove and flanging processes, realizes one-to-many dust removal at the necking mechanism 3 and the rolling groove mechanism 4, and realizes one-to-one dust removal at the flanging mechanism 5.

[0027] The specific structure of the necking mechanism 3 and the necking assembly 9 can refer to the aluminum cylinder necking and pressing device disclosed in patent application No. CN202222156109.7; the specific structure of the rolling groove mechanism 4 and the rolling groove assembly 10 can refer to the rolling groove mechanism in the special-shaped bottle necking and rolling cover system disclosed in patent application No. CN202221674038.3; the specific structure of the flanging mechanism 5 can refer to the cylindrical cylinder flanging device disclosed in patent application No. CN202222145103.X; and the specific structure of the conveying mechanism 1 can refer to the compact bottle conveying device disclosed in patent application No. CN202222095155.0.

[0028] The static electricity removing mechanism 6 is installed above the placing mechanism 2 through the support 12, and the static electricity removing mechanism 6 removes the static electricity of the bottle mouth by blowing ion wind to the bottle mouth, so that the debris generated in the subsequent station is not easy to be adsorbed on the bottle body, and dust removal is facilitated.

[0029] The dust removal cavity 7 and the dust removal pipe 8 can be connected with a dust collection device or a compressed air source. When the dust is removed by suction, the debris falling on the equipment production platform can be removed while the appearance of the bottle body is ensured, so that the equipment operation is stable. When the dust is removed by blowing, the debris is not adhered to the bottle body, so that the appearance of the product is ensured.

[0030] The dust removal cavity 7 is connected with the support hard pipe 14 and the conveying soft pipe 15, the conveying soft pipe 15 is connected with the dust collection device, and the dust removal cavity 7 is supported and installed through the support hard pipe 14, so that the installation of the dust removal cavity 7 is facilitated.

[0031] The installation seat 16 is further included, the support hard pipe 14 can be adjusted up and down along the installation seat 16, so that the position of the dust removal cavity 7 is adjusted to align with the necking and grooving regions.

[0032] The dust removal pipe 8 is connected with the gas distribution block 18 and the conveying soft pipe 15, the conveying soft pipe 15 is connected with the dust collection device, and a plurality of dust removal pipes 8 are connected with one conveying soft pipe 15 through the gas distribution block 18, so that the installation of the dust removal pipe 8 and the conveying soft pipe 15 is facilitated.

[0033] The dust collection device can use an industrial dust collector, and is integrated with a vacuum pump, a filter and a recovery barrel.

[0034] The placing mechanism 2 is a placing seat, and the placing seat is provided with a kick-off chute 20 at the side, the kick-off chute 20 includes a feeding port 21, and the feeding port 21 is intermittently arranged between the placing seat, so that the unqualified bottle bodies produced in the front-end bottle pressing process are kicked off, the jig on the conveying device 1 puts the unqualified bottle bodies into the feeding port 21, and the qualified products are put into the placing seat. The unqualified bottle bodies enter the kick-off chute 20 through the feeding port 21, the conveying mechanism 1 translates left and right by one station to perform one-time bottle conveying and resetting, the bottle bodies in the placing seat are conveyed to the necking mechanism 3, the bottle bodies are intermittently moved, and the bottle bodies are stopped at different positions to complete corresponding processes.

[0035] The visual detection mechanism 22 is arranged at the rear end of the flanging mechanism 5, the visual detection mechanism 22 is arranged at one side of the conveying mechanism 1, the kick-out mechanism 19 is arranged at one side of the conveying mechanism 1, the waste collecting mechanism 17 is arranged at the other side of the conveying mechanism 1, the visual detection mechanism 22 comprises a horizontally movable camera and a bottle rotating seat, the visual detection of the bottle is realized through the horizontal movement of the camera and the self-rotation of the bottle, the kick-out mechanism 19 comprises a bottle blowing mechanism, the bottle blowing mechanism blows the unqualified bottle on the conveying mechanism 1 into the waste collecting mechanism 17, and the qualified bottle is conveyed to the next station for labeling through the conveying mechanism 1.

[0036] The dust removal cavities 7 are arranged in two groups, and the two groups of dust removal cavities 7 are arranged at the sides of the necking mechanism 3 and the slotting mechanism 4, respectively, so that the dust removal effect is ensured.

[0037] The placing mechanism 2, the electrostatic removal mechanism 6, the necking mechanism 3, the slotting mechanism 4, the flanging mechanism 5, the dust removal mechanism, the visual detection mechanism 22, the kick-out mechanism 19 and the product output mechanism 13 are symmetrically arranged at two sides of the conveying mechanism 1, and the production efficiency is higher.

[0038] Although the utility model has disclosed as above with preferred embodiments, however, it is not used to limit the utility model. Any skilled person in the art, without departing from the technical scheme range of the utility model, can utilize the above disclosed technical content to make many possible changes and modifications to the utility model technical scheme, or modify as equivalent variation equivalent embodiment. Therefore, any simple modification, equivalent variation and modification made to the above embodiments according to the technical essence of the utility model technical scheme, all should fall within the protection range of the utility model technical scheme.

Claims

1. A soft aerosol bottle necking and capping device, characterized in that: The invention comprises a conveying mechanism (1), wherein a placing mechanism (2), a necking mechanism (3), a grooving mechanism (4) and a flanging mechanism (5) are sequentially arranged on one side of the conveying mechanism (1), and further comprises an electrostatic removal mechanism (6), a dust removal chamber (7) and a dust removal pipe (8), wherein the electrostatic removal mechanism (6) is arranged corresponding to the placing mechanism (2), the dust removal chamber (7) is arranged corresponding to the necking mechanism (3) and the grooving mechanism (4), the flanging mechanism (5) comprises a curling knife (11), and the dust removal pipe (8) is arranged corresponding to the moving area of ​​the curling knife (11).

2. A soft aerosol bottle necking and capping device according to claim 1, characterized in that: The necking mechanism (3) includes multiple groups of necking components (9), the grooving mechanism (4) includes multiple groups of grooving components (10), the dust removal chamber (7) is arranged corresponding to the multiple groups of necking components (9) and the multiple groups of grooving components (10), the flanging mechanism (5) includes multiple groups of curling knives (11), and the working areas of the curling knives (11) are provided with dust removal pipes (8) in a one-to-one correspondence.

3. The soft aerosol bottle necking and capping device according to claim 1, characterized in that: The static electricity removal mechanism (6) is installed above the placement mechanism (2) via a bracket (12).

4. The soft aerosol bottle necking and capping device according to claim 1, characterized in that: The dust removal chamber (7) is connected to a supporting hard tube (14) and a delivery hose (15), and the delivery hose (15) is connected to a dust collection device.

5. The soft aerosol bottle necking and capping device according to claim 4, characterized in that: It also includes a mounting seat (16), and the supporting hard pipe (14) can be adjusted up and down along the mounting seat (16).

6. The soft aerosol bottle necking and capping device according to claim 2, characterized in that: The dust removal pipe (8) is connected to the air distribution block (18) and the delivery hose (15), and the delivery hose (15) is connected to the dust collection device.

7. The soft aerosol bottle necking and capping device according to claim 1, characterized in that: The placement mechanism (2) is a placement seat, and a waste kicking chute (20) is provided on the side of the placement seat. The waste kicking chute (20) includes a feed port (21), and the feed port (21) and the placement seat are intermittently arranged.

8. The soft aerosol bottle necking and capping device according to claim 1, characterized in that: The invention also includes a visual inspection mechanism (22), a waste kicking mechanism (19) and a finished product output mechanism (13) arranged at the rear end of the flanging mechanism (5); the visual inspection mechanism (22) is arranged on one side of the conveying mechanism (1); the waste kicking mechanism (19) is arranged on one side of the finished product conveying mechanism (1); and a waste collection mechanism (17) is provided on the other side of the finished product conveying mechanism (1).

9. The soft aerosol bottle necking and capping device according to claim 1, characterized in that: The dust removal chamber (7) is provided with two groups, and the two groups of dust removal chambers (7) are respectively and correspondingly arranged on the sides of the necking mechanism (3) and the grooving mechanism (4).

10. The soft aerosol bottle necking and capping device according to claim 1, characterized in that: A placement mechanism (2), an electrostatic removal mechanism (6), a necking mechanism (3), a groove rolling mechanism (4), a flanging mechanism (5), a dust removal mechanism, a visual inspection mechanism (22), a waste kicking mechanism (19) and a finished product output mechanism (13) are symmetrically provided on both sides of the conveying mechanism (1).

Citation Information

Patent Citations

  • Compact bottle body conveying device

    CN218025359U

  • Necking and capping system for special-shaped bottle

    CN218025360U

  • Aluminum cylinder necking and pressing device

    CN218403602U

  • Columnar barrel hemming device

    CN218744183U