Aluminum film sealing mechanism applied to small aluminum film bag racking machine

By adopting a replaceable working part design and main control module management in the aluminum film sealing mechanism, the problem of low production efficiency caused by PE layer adhesive adhesion is solved, and efficient and convenient aluminum film sealing operation and consistent sealing quality are achieved.

CN223891341UActive Publication Date: 2026-02-10完美(广东)日用品有限公司 +1
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Patent Information

Application Number
CN202520151435.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-02-10
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

In the existing aluminum foil sealing mechanism, the PE layer adhesive tends to adhere to the hot stamping parts during the production process, causing the aluminum foil sealing mechanism to be unable to be transported smoothly, affecting production efficiency and the consistency of sealing quality.

Method used

The aluminum film sealing heating assembly features a replaceable working part design, with rotatable first and second aluminum film sealing heat sealing components. Each component has multiple replaceable working parts and heating elements. The rotation is driven by the aluminum film sealing drive mechanism and independently controlled and preheated by the main control module to ensure uniform heat sealing and production efficiency.

Benefits of technology

It simplifies on-site operation procedures, improves heat sealing efficiency and production efficiency, enhances maintenance convenience, ensures uniformity and consistency of heat sealing, and reduces downtime for cleaning.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

An aluminum film sealing mechanism applied to an aluminum film small bag racking machine comprises an aluminum film sealing supporting base, an aluminum film sealing heating assembly and an aluminum film sealing driving mechanism. The aluminum film sealing heating assembly is connected to the aluminum film sealing supporting base and connected with the aluminum film sealing driving mechanism. The aluminum film sealing heating assembly is provided with a first aluminum film sealing heat-sealing piece and a second aluminum film sealing heat-sealing piece. The first aluminum film sealing heat-sealing piece and the second aluminum film sealing heat-sealing piece are oppositely arranged on the aluminum film sealing supporting base to form an aluminum film sealing area, and the first aluminum film sealing heat-sealing piece and the second aluminum film sealing heat-sealing piece are provided with a plurality of replaceable first working parts and a plurality of replaceable second working parts correspondingly. An aluminum film to be subjected to heat sealing is conveyed into the aluminum film sealing area through the aluminum film sealing driving mechanism and is heated, pressed and sealed through cooperation of the first working part and the second working part. According to the scheme, the design of the replaceable working part is adopted, and the effects that the heat sealing efficiency of the aluminum film sealing mechanism and the field production efficiency are improved, and the maintenance convenience of the aluminum film sealing mechanism is improved are achieved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of aluminum film packaging machines, and particularly relates to an aluminum film sealing mechanism applied to an aluminum film bag dispensing machine. Background Technology

[0002] The rapid development of automation technology has enabled aluminum foil sealing mechanisms to achieve automated production, improving production efficiency and reducing labor costs. Simultaneously, automated aluminum foil sealing mechanisms can achieve precise control of the sealing process, improving the consistency of sealing quality. However, most existing aluminum foil sealing mechanisms employ wheel-type or clamp-type structural designs. During production, due to the effects of high temperature and pressure, the PE layer of the aluminum foil gradually seeps out, causing the PE adhesive to adhere to the hot-stamping components of the sealing mechanism. As the amount of adhered PE adhesive increases, it easily leads to aluminum foil adhering to the hot-stamping components, causing the sealing mechanism to be unable to transport smoothly. This necessitates stopping the machine for manual cleaning of the hot-stamping components, thus hindering the normal operation of automated production and reducing production efficiency. Therefore, this utility model proposes a new solution to the above-mentioned technical problems. Utility Model Content

[0003] The purpose of this utility model is to provide an aluminum film sealing mechanism for use in aluminum film bag packaging machines. It adopts a replaceable working part design, which simplifies the on-site operation process of the aluminum film sealing mechanism, improves the heat sealing efficiency of the aluminum film sealing mechanism, increases on-site production efficiency, and improves the convenience of maintenance of the aluminum film sealing mechanism.

[0004] Based on this, the present invention provides an aluminum film sealing mechanism for use in an aluminum film bag dispensing machine, comprising:

[0005] The system includes an aluminum film sealing support, an aluminum film sealing heating assembly for heat-sealing the aluminum film to be heat-sealed, and an aluminum film sealing driving mechanism for driving the aluminum film sealing heating assembly. The aluminum film sealing heating assembly is connected to the aluminum film sealing support and the aluminum film sealing driving mechanism. The aluminum film sealing heating assembly has a rotatable first aluminum film sealing heat sealing element and a second aluminum film sealing heat sealing element. The first and second aluminum film sealing heat sealing elements are arranged opposite each other on the aluminum film sealing support to form an aluminum film sealing area. The first and second aluminum film sealing heat sealing elements are each provided with multiple replaceable first and second working parts. The aluminum film to be heat-sealed is conveyed into the aluminum film sealing area through the aluminum film sealing driving mechanism and is heated and pressed sealed by the cooperation of the first and second working parts.

[0006] As described above, an aluminum film sealing mechanism applied to an aluminum film bag packaging machine is provided with a plurality of first heating elements and second heating elements corresponding one-to-one with the first working part and the second working part, respectively heating the first working part and the second working part.

[0007] As described above, in an aluminum film sealing mechanism applied to an aluminum film bag packaging machine, the first heating element and the second heating element adjacent to each other in the first aluminum film sealing heat sealing element and the second aluminum film sealing heat sealing element are heated simultaneously.

[0008] As described above, an aluminum film sealing mechanism for use in an aluminum film bag packaging machine has a first aluminum film sealing heat sealing component and a second aluminum film sealing heat sealing component designed as regular hexagonal rotating wheels. The first working part, the second working part, and the second heating component are arranged at equal angles on the first aluminum film sealing heat sealing component and the second aluminum film sealing heat sealing component to heat seal the aluminum film to be heat sealed.

[0009] As described above, in an aluminum film sealing mechanism applied to an aluminum film bag dispensing machine, the first aluminum film sealing heat sealer and the second aluminum film sealing heat sealer are driven to rotate in the same direction by the aluminum film sealing drive mechanism.

[0010] As described above, an aluminum film sealing mechanism applied to an aluminum film bag packaging machine includes a second aluminum film sealing drive group, a first aluminum film sealing drive part, and an aluminum film sealing drive motor. One end of the first aluminum film sealing drive part and the second aluminum film sealing drive group are respectively connected to the first aluminum film sealing heat sealer and the second aluminum film sealing heat sealer, and the other end is respectively connected to the aluminum film sealing drive motor to drive the first aluminum film sealing heat sealer and the second aluminum film sealing heat sealer to rotate.

[0011] As described above, an aluminum film sealing mechanism applied to an aluminum film bag dispensing machine further includes an aluminum film sealing drive mechanism with an aluminum film sealing control conversion structure connected to the aluminum film sealing drive motor. The second aluminum film sealing drive assembly includes a first horizontal aluminum film sealing drive unit and a first rotary aluminum film sealing drive unit. The first rotary aluminum film sealing drive unit and the first aluminum film sealing drive unit are respectively connected to the aluminum film sealing control conversion structure for rotation. The first horizontal aluminum film sealing drive unit is connected to the aluminum film sealing control conversion structure to drive the second aluminum film sealing heat sealer to move horizontally.

[0012] As described above, an aluminum film sealing mechanism for an aluminum film bag dispensing machine is provided. The aluminum film sealing drive mechanism is further provided with an aluminum film conveying wheel assembly. The aluminum film conveying wheel assembly is connected to the aluminum film sealing support base, and the aluminum film to be heat-sealed is fed into the aluminum film sealing area through the aluminum film conveying wheel assembly for heat sealing.

[0013] The aluminum film sealing mechanism applied to the aluminum film bag dispensing machine as described above also includes an electric scissors for cutting the aluminum film. The electric scissors are located on the other side of the aluminum film conveying wheel assembly to cut the heat-sealed aluminum film.

[0014] As described above, an aluminum film sealing mechanism applied to an aluminum film bag dispensing machine includes an aluminum film sealing support base with a first heat sealing wheel mounting part, a second heat sealing wheel mounting part, and a drive motor mounting part. The first aluminum film sealing heat sealing component, the second aluminum film sealing heat sealing component, and the aluminum film sealing drive motor are respectively connected to the aluminum film sealing support base through the first heat sealing wheel mounting part, the second heat sealing wheel mounting part, and the drive motor mounting part for secure connection.

[0015] The second heat-sealing wheel mounting part is provided with a heat-sealing wheel guide rail assembly, and the second aluminum film sealing heat-sealing component is connected to the heat-sealing wheel guide rail assembly and driven to move horizontally by the second horizontal aluminum film sealing drive part.

[0016] Implementing the embodiments of this utility model has the following beneficial effects:

[0017] 1. This solution adopts a replaceable working part design. The aluminum film sealing heating assembly is connected to the aluminum film sealing support base and to the aluminum film sealing drive mechanism. The aluminum film sealing heating assembly is equipped with a first aluminum film sealing heat sealing component and a second aluminum film sealing heat sealing component, which can rotate under the drive of the aluminum film sealing drive mechanism. Multiple first and second working parts are respectively provided on the first and second aluminum film sealing heat sealing components. The first and second working parts cooperate to heat seal the aluminum film to be heat sealed in the aluminum film sealing area. When the PE adhesive in the first and second working parts in the aluminum film sealing area reaches a certain amount, new first and second working parts can be replaced by rotating the first and second aluminum film sealing heat sealing components. This allows for the machine to be stopped and cleaned when multiple first and second working parts are used up. This achieves the effects of simplifying the on-site operation process of the aluminum film sealing mechanism, improving the heat sealing efficiency of the aluminum film sealing mechanism, improving on-site production efficiency, and improving the convenience of maintenance of the aluminum film sealing mechanism. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1This is a schematic diagram of the structure of an embodiment of the present utility model;

[0020] Figure 2 For the corresponding Figure 1 A schematic diagram of the structure of part A;

[0021] Figure 3 For the corresponding Figure 1 A schematic diagram of the structure of section B;

[0022] Figure 4 correspond Figure 1 A schematic diagram of the C section structure.

[0023] In the diagram: 1-Aluminum film sealing support, 11-First heat sealing wheel mounting part, 12-Second heat sealing wheel mounting part, 13-Drive motor mounting part; 21-First aluminum film sealing heat sealing component, 211-First working part, 212-First heating component, 213-First heat sealing wheel rotating shaft, 22-Second aluminum film sealing heat sealing component, 221-Second working part, 222-Second heating component, 223-Second heat sealing wheel rotating shaft; 31-Second aluminum film sealing drive group, 311-Second horizontal aluminum film sealing drive part, 312-Second rotating aluminum film sealing drive part, 32-First aluminum film sealing drive part, 33-Aluminum film sealing drive motor, 34-Aluminum film sealing control conversion structure, 35-Aluminum film conveying wheel group; 4-Aluminum film to be heat sealed; 5-Aluminum film sealing area; 6-Electric scissors for cutting aluminum film. Detailed Implementation

[0024] 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.

[0025] like Figures 1 to 4 As shown, this utility model embodiment provides an aluminum film sealing mechanism for use in an aluminum film bag dispensing machine, comprising:

[0026] The system includes an aluminum film sealing support base 1, an aluminum film sealing heating assembly for heat-sealing the aluminum film 4 to be heat-sealed, and an aluminum film sealing drive mechanism for driving the aluminum film sealing heating assembly. The aluminum film sealing heating assembly is connected to the aluminum film sealing support base 1 and to the aluminum film sealing drive mechanism. The aluminum film sealing heating assembly has a rotatable first aluminum film sealing heat-sealing component 21 and a second aluminum film sealing heat-sealing component 22. The first aluminum film sealing heat-sealing component 21 and the second aluminum film sealing heat-sealing component 22 are connected to the aluminum film sealing drive mechanism and are driven to rotate by the aluminum film sealing drive mechanism. The first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 are disposed opposite each other on the aluminum film sealing support 1 to form an aluminum film sealing area 5. The first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 are respectively provided with multiple replaceable first working parts 211 and second working parts 221, which are replaced by rotating the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22. The aluminum film 4 to be heat-sealed is conveyed into the aluminum film sealing area by the aluminum film sealing drive mechanism and is heated and pressed by the cooperation of the first working parts 211 and the second working parts 221.

[0027] Specifically, the aluminum film sealing mechanism for an aluminum film bag packaging machine provided in this embodiment of the present invention further includes a main control module. The first aluminum film sealing heat sealing component 21 and the second aluminum film sealing heat sealing component 22 are also provided with a plurality of first heating elements 212 and second heating elements 222 corresponding one-to-one with the first working part 211 and the second working part 221. The plurality of first heating elements 212 and second heating elements 222 are respectively connected to the main control module so that the plurality of first heating elements 212 and second heating elements 222 can be independently controlled by the main control module. The first heating elements 212 and second heating elements 222 heat the first working part 211 and the second working part 221 entering the aluminum film sealing area 5, respectively, to ensure that the aluminum film 4 to be heat-sealed is heat-sealed by the cooperation of the first working part 211 and the second working part 221, thereby improving the convenience of operation. The first heating elements 212 and the second heating elements 222 are both designed to be detachable to facilitate early installation and later maintenance.

[0028] Furthermore, the first heating element 212 and the second heating element 222 adjacent to each other in the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 are heated simultaneously to ensure that both sides of the aluminum film 4 to be heat-sealed are heated and then pressed and sealed simultaneously.

[0029] In this embodiment of the present invention, the first heating element 212 corresponding to the first working part 211 entering the aluminum film sealing area 5 on the first aluminum film sealing heat sealing member 21 is in a heating state, and the first heating element 212 corresponding to another first working part 211 adjacent to the first working part 211 in the aluminum film sealing area 5 is in a waiting-to-heat state. Heating the first heating element 212 of the first working part 211 in the aluminum film sealing area 5 is working heating, while heating the first heating element 212 of the adjacent first working part 211 is waiting-to-heat. The start-up heating time depends on the advance heating time set by the main control module, that is, when the first working part 211 entering the aluminum film sealing area 5 is in a working state... When the first heating element 212 is in the heating state, the other first heating elements 212 are in the non-heating state. When the user sets the first working part 211 to be switched every hour through the main control module, and the preheating time of the adjacent first working part 211 is 10 minutes, then at 50 minutes, the first heating element 212 corresponding to the adjacent first working part 211 will start preheating. This ensures that after the aluminum film sealing mechanism replaces the new first working part 211 during the automated production process, the temperature of the first working part 211 reaches the working temperature, thereby ensuring the uniformity and consistency of the heat-sealed aluminum film 4, while reducing the preheating time and improving the heat-sealing production efficiency.

[0030] The second heating element 222 corresponding to the second working part 221 entering the aluminum film sealing area 5 on the second aluminum film sealing heat sealing component 22 is in a heating state, and the second heating element 222 corresponding to another second working part 221 adjacent to the second working part 221 in the aluminum film sealing area 5 is in a waiting-to-heat state. Heating the second heating element 222 of the second working part 221 in the aluminum film sealing area 5 is working heating, and heating the second heating element 222 of the adjacent second working part 221 is waiting-to-heat. The start-up heating time depends on the advance heating time set by the main control module; that is, when the second working part 221 entering the aluminum film sealing area 5 is in a working state, its corresponding second heating element 222 is in a heating state, and the other second heating elements 222 are not. Heating status: When the user sets the main control module to switch the second working part 221 every hour, and the preheating time of the adjacent second working part 221 is 10 minutes, then at 50 minutes, the second heating element 222 corresponding to the adjacent second working part 221 starts to preheat. This ensures that after the aluminum film sealing mechanism replaces the new second working part 221 during the automated production process, the temperature of the second working part 221 reaches the working temperature, thereby ensuring the uniformity and consistency of the heat-sealed aluminum film 4, while reducing the preheating time and improving the heat-sealing production efficiency. The adjacent second heating element 222 can also be set to start heating at a time through the main control module to reduce the energy consumption of heating two second heating elements 222 at the same time, thereby enhancing the environmental friendliness of the aluminum film sealing mechanism.

[0031] Furthermore, the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 are designed as regular hexagonal rotating wheels to divide the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 into six equal-angled parts; the first working part 211 and the second working part 221 are equally angled on the outer contour edge of the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 to ensure that the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 rotate 60° at equal angles when replacing the first working part 211 and the second working part 221, thereby ensuring the tightness and uniformity of heat sealing of the aluminum film 4 to be heat-sealed.

[0032] Furthermore, the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 are driven to rotate in the same direction by the aluminum film sealing drive mechanism. This ensures that by setting one aluminum film sealing drive mechanism, the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 can be driven to rotate synchronously, ensuring the consistency of angle adjustment, thereby improving the uniformity and consistency of heat sealing of the aluminum film 4 to be heat-sealed. In this embodiment of the present invention, the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 both rotate counterclockwise to ensure that the relative movement direction of the first aluminum film sealing heat sealer 21 and the second aluminum film sealing heat sealer 22 is consistent, reducing damage to the surface coating or heat-sensitive layer of the aluminum film 4 to be heat-sealed, thereby improving the stability of the heat sealing effect.

[0033] Furthermore, the aluminum film sealing drive mechanism includes a second aluminum film sealing drive group 31, a first aluminum film sealing drive part 32, and an aluminum film sealing drive motor 33. The aluminum film sealing drive motor 33 is connected to the main control module and its rotation is controlled by the main control module. The first aluminum film sealing heat sealing component 21 and the second aluminum film sealing heat sealing component 22 are respectively provided with a first heat sealing wheel rotation shaft 213 and a second heat sealing wheel rotation shaft 223. The first heat sealing wheel rotation shaft 213 and the second heat sealing wheel rotation shaft 223 are fixedly connected to the first heat sealing wheel rotation shaft 213 and the second heat sealing wheel rotation shaft 223, so as to drive the first aluminum film sealing heat sealing component 21 and the second aluminum film sealing heat sealing component 22 to rotate through the first heat sealing wheel rotation shaft 213 and the second heat sealing wheel rotation shaft 223. The first aluminum film sealing drive part 32 and One end of the second aluminum film sealing drive group 31 is connected to the first heat sealing wheel rotation shaft 213 and the second heat sealing wheel rotation shaft 223 respectively, and the other end is connected to the aluminum film sealing drive motor 33 to drive the first aluminum film sealing heat sealing component 21 and the second aluminum film sealing heat sealing component 22 to rotate at equal angles, so as to ensure the uniformity of rotation of the first aluminum film sealing heat sealing component 21 and the second aluminum film sealing heat sealing component 22, thereby improving the uniformity and consistency of heat sealing of the aluminum film 4 to be heat sealed; in this embodiment of the present invention, the aluminum film sealing drive motor 33 is preferably a servo motor. The main control module can accurately control the speed, torque and rotation angle of the servo motor, so as to achieve precise driving of the first aluminum film sealing heat sealing component 21 and the second aluminum film sealing heat sealing component 22, ensuring the accuracy and consistency of the heat sealing process.

[0034] Furthermore, the aluminum foil sealing drive mechanism also includes an aluminum foil sealing control conversion structure 34, which is connected to the aluminum foil sealing drive motor 33 and includes a conversion gear set. The second aluminum foil sealing drive group 31 includes a second horizontal aluminum foil sealing drive unit 311 and a second rotary aluminum foil sealing drive unit 312. The conversion gear set is used to distribute and convert the second horizontal aluminum foil sealing drive unit 311, the second rotary aluminum foil sealing drive unit 312, and the first aluminum foil sealing drive unit 32. Part 312 and the first aluminum film sealing drive part 32 are respectively connected to the conversion gear set and rotate to achieve precise adjustment of the rotation of the first aluminum film sealing heat sealing member 21 and the second aluminum film sealing heat sealing member 22 by the aluminum film sealing drive motor 33; the second horizontal aluminum film sealing drive part 311 is connected to the conversion gear set to drive the second aluminum film sealing heat sealing member 22 to move horizontally, thereby realizing the heat-pressing sealing movement of the second aluminum film sealing heat sealing member 22 in the horizontal direction, so as to adapt to the sealing requirements of the aluminum film 4 to be heat-sealed of different sizes and improve the versatility and flexibility of the aluminum film sealing structure.

[0035] Furthermore, the aluminum film sealing drive mechanism also includes an aluminum film conveying wheel assembly 35 and a conveying wheel drive motor. The aluminum film conveying wheel assembly 35 is connected to the conveying wheel drive motor and is driven by the conveying wheel drive motor. The conveying wheel drive motor is connected to the main control module and is controlled to start and stop by the main control module. The aluminum film conveying wheel assembly 35 is connected to the aluminum film sealing support 1, and the aluminum film conveying wheel assembly 35 includes an active conveying wheel and a driven conveying wheel. The active conveying wheel is connected to the conveying wheel drive motor and is driven by the conveying wheel drive motor to rotate. The driven conveying wheel and the active conveying wheel cooperate with each other to clamp the aluminum film 4 to be heat-sealed together and convey it to the aluminum film sealing area 5 for heat sealing, so as to ensure the stability and accuracy of the aluminum film 4 to be heat-sealed during the conveying process, reduce the offset and wrinkles of the aluminum film 4 to be heat-sealed during the conveying process, and improve the heat sealing quality.

[0036] Furthermore, the aluminum film sealing mechanism for an aluminum film bag packaging machine provided in this embodiment of the present invention also includes an electric scissors 6 for cutting the aluminum film. The electric scissors 6 are located on the other side of the aluminum film sealing support 1 relative to the aluminum film conveying wheel assembly 35 to cut the heat-sealed aluminum film, thereby achieving precise cutting of the heat-sealed aluminum film. The electric scissors 6 are equipped with a cutting position adjustment device, which is used to adjust the position of the electric scissors 6 on the aluminum film sealing support 1 to adapt to the cutting requirements of aluminum film bags of different lengths, thereby enhancing the applicability and flexibility of the aluminum film sealing mechanism.

[0037] Furthermore, the aluminum film sealing support 1 is provided with a first heat-sealing wheel mounting part 11, a second heat-sealing wheel mounting part 12, and a drive motor mounting part 13. The first aluminum film sealing heat-sealing component 21, the second aluminum film sealing heat-sealing component 22, and the aluminum film sealing drive motor 33 are respectively connected to the aluminum film sealing support 1 through the first heat-sealing wheel mounting part 11, the second heat-sealing wheel mounting part 12, and the drive motor mounting part 13 for secure connection, thereby improving the stability of the connection of each component. The second heat-sealing wheel mounting part 12 is provided with a heat-sealing wheel guide rail assembly, which includes a heat-sealing wheel sliding guide rail and a heat-sealing... The heat-sealing wheel sliding support block is slidably connected to the heat-sealing wheel sliding guide rail, and the heat-sealing wheel sliding support block is fixed to the heat-sealing wheel sliding guide rail. The second aluminum film sealing heat-sealing component 22 is connected to the heat-sealing wheel sliding support block, and is driven by the second horizontal aluminum film sealing drive part 311 to move horizontally along the heat-sealing wheel sliding guide rail. The position of the heat-sealing film in the horizontal direction is adjusted by the second aluminum film sealing heat-sealing component 22, thereby improving the smoothness of the adjustment of the second aluminum film sealing heat-sealing component 22 in the horizontal direction.

[0038] It should be understood that the terms "first," "second," etc., are used in this utility model to describe various information, but this information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of this utility model, "first" information can also be referred to as "second" information, and similarly, "second" information can also be referred to as "first" information. In addition, the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0039] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.

Claims

1. An aluminum film sealing mechanism for use in an aluminum film bag dispensing machine, characterized in that, include: Aluminum film sealing support base (1), aluminum film sealing heating assembly for heat sealing aluminum film (4) to be heat sealed, and aluminum film sealing driving mechanism for driving the aluminum film sealing heating assembly. The aluminum film sealing heating assembly is connected to the aluminum film sealing support (1) and to the aluminum film sealing driving mechanism. The aluminum film sealing heating assembly is provided with a rotatable first aluminum film sealing heat sealer (21) and a second aluminum film sealing heat sealer (22). The first aluminum film sealing heat sealer (21) and the second aluminum film sealing heat sealer (22) are arranged opposite to each other on the aluminum film sealing support (1) to form an aluminum film sealing area (5). The first aluminum film sealing heat sealer (21) and the second aluminum film sealing heat sealer (22) are respectively provided with multiple replaceable first working parts (211) and second working parts (221). The aluminum film (4) to be heat sealed is conveyed into the aluminum film sealing area through the aluminum film sealing driving mechanism and is heated and sealed by the cooperation of the first working part (211) and the second working part (221).

2. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 1, characterized in that, The first aluminum foil sealing heat sealer (21) and the second aluminum foil sealing heat sealer (22) are also provided with a plurality of first heating elements (212) and second heating elements (222) corresponding one-to-one with the first working part (211) and the second working part (221). The first heating elements (212) and the second heating elements (222) heat the first working part (211) and the second working part (221) respectively.

3. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 2, characterized in that, The first heating element (212) and the second heating element (222) adjacent to each other in the first aluminum film sealing heat sealer (21) and the second aluminum film sealing heat sealer (22) are heated simultaneously.

4. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 2, characterized in that, The first aluminum film sealing heat sealer (21) and the second aluminum film sealing heat sealer (22) are hexagonal rotating wheel designs. The first working part (211), the second working part (221), and the second heating element (222) are set at equal angles on the first aluminum film sealing heat sealer (21) and the second aluminum film sealing heat sealer (22) to heat seal the aluminum film (4) to be heat sealed.

5. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 1, characterized in that, The first aluminum foil sealing heat sealer (21) and the second aluminum foil sealing heat sealer (22) are driven to rotate in the same direction by the aluminum foil sealing drive mechanism.

6. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 1, characterized in that, The aluminum film sealing drive mechanism is provided with a second aluminum film sealing drive group (31), a first aluminum film sealing drive part (32), and an aluminum film sealing drive motor (33). One end of the first aluminum film sealing drive part (32) and the second aluminum film sealing drive group (31) are respectively connected to the first aluminum film sealing heat sealer (21) and the second aluminum film sealing heat sealer (22), and the other end is respectively connected to the aluminum film sealing drive motor (33) to drive the first aluminum film sealing heat sealer (21) and the second aluminum film sealing heat sealer (22) to rotate.

7. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 6, characterized in that, The aluminum film sealing drive mechanism is further provided with an aluminum film sealing control conversion structure (34), which is connected to the aluminum film sealing drive motor (33). The second aluminum film sealing drive group (31) is provided with a second horizontal aluminum film sealing drive part (311) and a second rotary aluminum film sealing drive part (312). The second rotary aluminum film sealing drive part (312) and the first aluminum film sealing drive part (32) are respectively connected to the aluminum film sealing control conversion structure (34) for rotation. The second horizontal aluminum film sealing drive part (311) is connected to the aluminum film sealing control conversion structure (34) to drive the second aluminum film sealing heat sealer (22) to move horizontally.

8. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 1, characterized in that, The aluminum film sealing drive mechanism is also provided with an aluminum film conveying wheel assembly (35), which is connected to the aluminum film sealing support base (1), and the aluminum film (4) to be heat-sealed is fed into the aluminum film sealing area (5) through the aluminum film conveying wheel assembly (35) for heat sealing.

9. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 8, characterized in that, It also includes an electric scissors (6) for cutting aluminum film, which is located on the other side of the aluminum film conveying wheel assembly (35) to cut the heat-sealed aluminum film.

10. The aluminum film sealing mechanism for an aluminum film bag dispensing machine according to claim 1, characterized in that, The aluminum film sealing support base (1) is provided with a first heat sealing wheel mounting part (11), a second heat sealing wheel mounting part (12), and a drive motor mounting part (13). The first aluminum film sealing heat sealing component (21), the second aluminum film sealing heat sealing component (22), and the aluminum film sealing drive motor (33) are respectively connected to the aluminum film sealing support base (1) through the first heat sealing wheel mounting part (11), the second heat sealing wheel mounting part (12), and the drive motor mounting part (13) for stabilization. The second heat-sealing wheel mounting part (12) is provided with a heat-sealing wheel guide rail assembly. The second aluminum film sealing heat-sealing part (22) is connected to the heat-sealing wheel guide rail assembly and is driven to move horizontally by the second horizontal aluminum film sealing drive part (311).