Paper cover packaging machine

By designing a paper cover packaging machine that includes a support body, a paper cover conveying mechanism, a pushing mechanism, a coating mechanism, and a heat sealing and cutting mechanism, the problem of artificial packaging paper cover is solved, and automated packaging is realized, efficiency is improved and resources are saved.

CN120156739APending Publication Date: 2025-06-17SICHUAN SOPER SCI & TECH CO LTD
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Patent Information

Application Number
CN202510531429.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-06-17

AI Technical Summary

Technical Problem

In the prior art, the process of manually packing multiple paper covers together is cumbersome and consumes a lot of physical strength and time.

Method used

A paper cover packaging machine is designed, including a support body, a paper cover conveying mechanism, a pushing mechanism, a coating mechanism, and a heat sealing and cutting mechanism. The machine automatically completes the packaging and cutting of the paper cover through chain conveying, pushing rod pushing, film forming and heat sealing cutting.

Benefits of technology

The automated paper cover packaging process is realized, which improves work efficiency and saves staff time and physical strength.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120156739A_ABST
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Abstract

The invention discloses a paper cover packaging machine, and relates to the technical field of paper cover packaging equipment, the paper cover packaging machine comprises a support main body, a paper cover conveying mechanism, a pushing mechanism, a film covering mechanism and a heat sealing and cutting mechanism, the support main body is provided with a first belt conveying mechanism and a second belt conveying mechanism; the paper cover conveying mechanism is arranged on the supporting body, and a plurality of supporting containing grooves are formed in the paper cover conveying mechanism. The film laminating mechanism is arranged on the supporting main body, the film laminating mechanism comprises a roller, a sealing film guide assembly, a sealing film former assembly and a sealing film conveying assembly, the sealing film former assembly is located above the sealing film guide assembly, and the roller conveying assembly is located above the first belt conveying mechanism; and the heat sealing and cutting mechanism is arranged on the supporting main body and is provided with a cutter capable of moving up and down. Compared with a manual mode, the working efficiency can be improved, and workers can be helped to save time.
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Description

Technical Field

[0001] The present invention relates to the technical field of paper lid packaging equipment, and particularly relates to a paper lid encapsulation machine. Background Art

[0002] In the process of paper lid production, it is necessary to pack multiple processed paper lids and put them into the next processing equipment. Currently, generally, multiple paper lids are stacked together manually and then packaged with a packaging film. However, this process is cumbersome and extremely laborious and time-consuming for the staff. Summary of the Invention

[0003] The purpose of the present invention is to overcome the above-mentioned deficiencies existing in the prior art, and provide a paper lid encapsulation machine to solve the problem that it is extremely laborious and time-consuming for staff to package multiple paper lids together manually.

[0004] In order to achieve the above-mentioned invention purpose, the present invention provides the following technical solutions:

[0005] A paper lid encapsulation machine, comprising:

[0006] A support main body, on which a first belt conveying mechanism and a second belt conveying mechanism are arranged;

[0007] A paper lid conveying mechanism, which is arranged on the support main body, and on which a plurality of support receiving grooves are arranged;

[0008] A pushing mechanism, which is arranged on the support main body and above the first belt conveying mechanism. The pushing mechanism includes a push rod and a driving member. The push rod is movably arranged on the support main body; the driving member is arranged on the support main body and connected to the push rod, and is used to drive the push rod to perform a linear reciprocating motion;

[0009] A film covering mechanism, which is arranged on the support main body. The film covering mechanism includes a roller, a film covering guiding component, a film covering forming component and a film covering conveying component. The film covering forming component is above the film covering guiding component, and the roller conveying component is above the first belt conveying mechanism; the roller is rotatably arranged on the support main body.

[0010] A heat sealing and cutting mechanism, which is arranged on the support main body and has a heat sealing component and a cutter that can move up and down.

[0011] Further, the driving member is a telescopic cylinder, the telescopic cylinder has a movable connecting seat, and the push rod is fixedly arranged on the connecting seat.

[0012] Further, the film forming device assembly includes a left former, a middle former, and a right former. The left former and the right former are symmetrically arranged on the support body in a mirror image, and the middle former is located between the left former and the right former.

[0013] Further, the film conveying assembly includes a driving assembly, two first cylinders, and a second cylinder. The first cylinders and the second cylinder are rotatably arranged on the support body. The driving member is arranged on the support body and is used to drive the first cylinders and the second cylinder to rotate. The two first cylinders are symmetrically arranged in a mirror image, and the two second cylinders are symmetrically arranged in a mirror image. Protrusions are arranged on the outer surfaces of the first cylinders and the second cylinder.

[0014] Further, the heat sealing and cutting mechanism includes a driving member and a serrated cutter arranged on the support body. The output end of the driving member is connected to the serrated cutter, and the driving member is used to drive the serrated cutter to perform a linear reciprocating motion.

[0015] Further, a heat sealing assembly is also included. The heat sealing assembly includes a driving member arranged on the support body, and a first heat sealing seat and a second heat sealing seat connected to the output end of the driving member. The first heat sealing seat and the second heat sealing seat are symmetrically arranged and movably arranged on the support body. The driving member is used to drive the first heat sealing seat and the second heat sealing seat to approach or move away from each other. The serrated cutter is located inside the second heat sealing seat.

[0016] Further, the paper cover conveying mechanism has two chains arranged symmetrically in a mirror image. A plurality of the support receiving grooves are arranged at equal intervals on the two chains, and the support receiving grooves are perpendicular to the chains.

[0017] Compared with the prior art, the present invention has the following advantages and beneficial effects:

[0018] During actual use, the stacked paper covers are placed in the support receiving grooves, and then transported to the pushing mechanism. Then, the push rod pushes the stacked paper covers into the film forming device assembly. Under the action of the film conveying assembly and the first belt conveying mechanism, the packaged paper covers are sent into the heat sealing and cutting mechanism, where they are cut and heat sealed and then enter the second belt conveying mechanism. Compared with the manual method, using the present invention can improve work efficiency and help workers save time and physical strength. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a three-dimensional structural schematic diagram of one perspective of the present invention;

[0020] Figure 2 is Figure 1 the enlarged structural schematic diagram of part A in

[0021] Figure 3 is a three-dimensional structural schematic diagram of another perspective of the present invention.

[0022] Names of parts and reference numerals in the drawings:

[0023] 1 - Support main body, 2 - First belt conveying mechanism, 3 - Second belt conveying mechanism, 4 - Paper cover conveying mechanism, 401 - Support receiving groove, 402 - Chain, 5 - Pushing rod, 6 - Roller, 7 - Film sealing guiding component, 8 - Film sealing former component, 801 - Left former, 802 - Middle former, 803 - Right former, 9 - Film sealing conveying component, 901 - First cylinder, 902 - Second cylinder, 10 - Serrated cutter, 11 - First heat sealing seat, 12 - Second heat sealing, 13 - Connecting seat. Specific embodiments

[0024] The present invention will be further described in detail below in conjunction with test examples and specific embodiments. However, this should not be construed as limiting the scope of the above-mentioned subject matter of the present invention to the following embodiments. Any technology implemented based on the content of the present invention belongs to the scope of the present invention.

[0025] In this embodiment, a paper cover packaging machine is provided, as Figures 1 - 3 shown, including:

[0026] A support main body 1, on which a first belt conveying mechanism 2 and a second belt conveying mechanism 3 are provided;

[0027] A paper cover conveying mechanism 4, which is provided on the support main body 1, and a plurality of support receiving grooves 401 are provided on the paper cover conveying mechanism 4;

[0028] A pushing mechanism, which is provided on the support main body 1 and above the first belt conveying mechanism 2. The pushing mechanism includes a pushing rod 5 and a driving member. The pushing rod 5 is movably arranged on the support main body 1; the driving member is arranged on the support main body 1 and connected to the pushing rod 5 for driving the pushing rod 5 to perform linear reciprocating motion;

[0029] A film covering mechanism, which is provided on the support main body 1. The film covering mechanism includes a roller 6, a film sealing guiding component 7, a film sealing former component 8 and a film sealing conveying component 9. The film sealing former component 8 is above the film sealing guiding component 7, and the roller conveying component 9 is above the first belt conveying mechanism 2; the roller 6 is rotatably arranged on the support main body 1, a driving motor is provided on the support main body 1, the main shaft of the driving motor is connected to the roller 6, a cylindrical packaging film is installed on the roller 6, and its free end passes through the film sealing guiding component 7 and then enters the film sealing forming component 8 to form a shape that can wrap the paper covers stacked in a stack. Immediately afterwards, the two sides of the packaging film are closed and enter the film sealing conveying component.

[0030] The heat-sealing and cutting mechanism is arranged on the support main body 1 and has a heat-sealing component and a serrated cutter 10 that can move up and down. The film-sealing guiding component has two rollers arranged in mirror symmetry. During actual use, the film passes through the gap between the two rollers and enters the film-sealing former component 8.

[0031] For further optimization of the above embodiment, the driving part is a telescopic cylinder. The telescopic cylinder has a movable connecting seat 13, and the push rod 5 is fixedly arranged on the connecting seat 13. During the actual working process, under the action of the telescopic cylinder, the connecting seat 13 makes a linear reciprocating motion, thereby driving the push rod 5 to make a linear reciprocating motion, and then pushing the stacked paper covers into the film-sealing former component.

[0032] For further optimization of the above embodiment, the film-sealing former component 8 includes a left former 801, a middle former 802, and a right former 803. The left former 801 and the right former 803 are arranged in mirror symmetry on the support main body 1, and the middle former 802 is located between the left former 801 and the right former 803. The film is laid on the left former 801, the middle former 802, and the right former 803 after coming out of the film-sealing guiding component, so as to form a shape that can wrap the stacked paper cups.

[0033] For further optimization of the above embodiment, the film-sealing transmission component includes a driving component, two first cylinders 901, and a second cylinder 902. The first cylinders 901 and the second cylinder 902 are rotatably arranged on the support main body 1. The driving part is arranged on the support main body 1 and is used to drive the first cylinders 901 and the second cylinder 902 to rotate. The two first cylinders 901 are arranged in mirror symmetry, and the two second cylinders 902 are arranged in mirror symmetry. Protrusions are arranged on the outer surfaces of the first cylinders 901 and the second cylinder 902. Among them, the arrangement of the protrusions can contact the film, thereby generating friction force, and then driving the film to move forward. The two first cylinders 901 rotate in opposite directions at the same speed, and the two second cylinders 902 move in opposite directions at the same speed. The two sides of the film are joined together and are in the gaps between the two first cylinders 901 and in the gaps between the two second cylinders 902. Among them, the driving component is a gear group driving structure, which has multiple output ends and the output ends are connected to the first cylinders 901 and the second cylinder 902.

[0034] For further optimization of the above embodiment, the heat-sealing and cutting mechanism includes a driving part and a serrated cutter 10 arranged on the support main body 1. The output end of the driving part is connected to the serrated cutter 10, and the driving part is used to drive the serrated cutter 10 to make a linear reciprocating motion. Among them, the driving part is two cylinders, the two cylinders are fixedly arranged on the support main body 1, and the main shafts of the cylinders are connected to the serrated cutter 10.

[0035] Further optimizing the above embodiments, it further includes a heat-sealing assembly. The heat-sealing assembly includes a driving member disposed on the support body 1, and a first heat-sealing seat 11 and a second heat-sealing seat 12 connected to the output end of the driving member. The first heat-sealing seat 11 and the second heat-sealing seat 12 are movably arranged in a mirror-symmetrical manner on the support body 1. The driving member is used to drive the first heat-sealing seat 11 and the second heat-sealing seat 12 to approach or move away from each other. The serrated cutter 10 is located within the second heat-sealing seat 12. Among them, the driving member is a plurality of driving motors and a crank-link structure, and the output end of the crank-link structure is connected to the first heat-sealing seat 11 and the second heat-sealing seat 12.

[0036] Further optimizing the above embodiments, the paper cover conveying mechanism has two chains 402 arranged in a mirror-symmetrical manner. A plurality of support receiving grooves 401 are arranged at equal intervals on the two chains 402, and the support receiving grooves 401 are perpendicular to the chains 402. The paper cover conveying mechanism also has a driving assembly. Under the action of the driving assembly, the two chains 402 drive the support receiving grooves 401 to move in a circular motion.

[0037] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A paper cover packaging machine, characterized in that: include: A supporting body (1), wherein a first belt conveying mechanism (2) and a second belt conveying mechanism (3) are provided on the supporting body (1); A paper cover conveying mechanism, the paper cover conveying mechanism being arranged on the supporting body (1), and the paper cover conveying mechanism being provided with a plurality of supporting accommodating grooves (401); A pushing mechanism, the pushing mechanism is arranged on the supporting body (1) and is located above the first belt conveying mechanism (2), the pushing mechanism comprises a pushing rod (5) and a driving member, the pushing rod (5) is movably arranged on the supporting body (1); the driving member is arranged on the supporting body (1) and connected to the pushing rod (5), and is used to drive the pushing rod (5) to perform linear reciprocating motion; A film laminating mechanism, the film laminating mechanism being arranged on the supporting body (1), the film laminating mechanism comprising a roller (6), a film sealing guide assembly (7), a film sealing former assembly (8) and a film sealing conveying assembly (9), the roller (6) being rotatably arranged on the supporting body (1), the film sealing former assembly (8) being located above the film sealing guide assembly (7), and the roller conveying assembly (9) being located above the first belt conveying mechanism (2); A heat sealing and cutting mechanism is provided on a supporting body and comprises a heat sealing component and a cutter (10) which can move up and down.

2. A paper cover packaging machine according to claim 1, characterized in that: The driving member is a telescopic cylinder having a movable connecting seat (13), and the pushing rod (5) is fixedly arranged on the connecting seat (13).

3. A paper cover packaging machine according to claim 2, characterized in that: The film sealing former assembly (8) comprises a left former (801), a middle former (802) and a right former (803); the left former (801) and the right former (803) are arranged on the supporting body (1) in a mirror-symmetrical manner, and the middle former (802) is located between the left former (801) and the right former (803).

4. A paper cover packaging machine according to claim 3, characterized in that: The film sealing and conveying assembly comprises a driving assembly, two first cylinders (901) and a second cylinder (902); the first cylinder (901) and the second cylinder (902) are rotatably arranged on a supporting body (1); the driving assembly is arranged on the supporting body (1) and is used to drive the first cylinder (901) and the second cylinder (902) to rotate; the two first cylinders (901) are arranged in a mirror-symmetrical manner; the two second cylinders (902) are arranged in a mirror-symmetrical manner; and protrusions are arranged on the outer surfaces of the first cylinder (901) and the second cylinder (902).

5. A paper cover packaging machine according to claim 1, characterized in that: The heat sealing and cutting mechanism comprises a driving member and a sawtooth cutter (10) arranged on a supporting body (1), wherein an output end of the driving member is connected to the sawtooth cutter (10), and the driving member is used to drive the sawtooth cutter (10) to perform linear reciprocating motion.

6. A paper cover packaging machine according to claim 5, characterized in that: The invention also comprises a heat sealing assembly, wherein the heat sealing assembly comprises a driving member arranged on a supporting body (1) and a first heat sealing seat (11) and a second heat sealing seat (12) connected to an output end of the driving member, wherein the first heat sealing seat (11) and the second heat sealing seat (12) are arranged on the supporting body (1) in a mirror-symmetrical manner, and the driving member is used to drive the first heat sealing seat (11) and the second heat sealing seat (12) to move closer to or away from each other, and the sawtooth cutter (10) is located in the second heat sealing seat (12).

7. A paper cover packaging machine according to claim 1, characterized in that: The paper cover conveying mechanism comprises two chains (402) arranged in a mirror-symmetrical manner, a plurality of the support accommodating grooves (401) are arranged at equal intervals on the two chains (402), and the support accommodating grooves (401) are arranged perpendicular to the chains (402).