Manufacturing tool for anti-counterfeiting material outlet

By using a contour mold and a servo motor-driven transmission screw system, the problem of the packaging cap being easily opened was solved, enabling rapid and efficient production of anti-counterfeiting materials and enhancing the anti-counterfeiting properties of the packaging cap.

CN223946559UActive Publication Date: 2026-02-27SUZHOU HYCAN HLDG CO LTD
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Patent Information

Application Number
CN202520352693.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-02-27
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

The existing packaging containers have easily opened caps, resulting in poor product anti-counterfeiting features and an inefficient manufacturing process.

Method used

The system employs two sets of contouring molds and a transmission screw system driven by a servo motor. By moving the contouring molds in opposite directions or away from each other, the lower convex part of the encapsulation cover is expanded and reset, forming a columnar cavity structure to ensure that the encapsulation cover cannot be easily opened.

Benefits of technology

It enables rapid and efficient production of anti-counterfeiting materials for export, enhances the anti-counterfeiting properties of the sealing cap, and ensures that the product is not easily tampered with during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a manufacturing tool for an anti-fake material outlet. The manufacturing tool enables manufacturing of the anti-fake material outlet to be fast and efficient. The device comprises two groups of profiling dies, each group of profiling dies comprises an upper lead screw nut, a connecting seat and a lower forming petal die, each lower forming petal die comprises a connecting piece and a forming petal, and the periphery of each forming petal is provided with a convex profiling petal die; the servo motor comprises an output shaft, the two ends of the output shaft protrude laterally to form a shaft with the two sides protruding, and the output shaft of the servo motor is horizontally arranged and rotates bidirectionally; the two transmission screw rods are opposite in rotation direction and are respectively a first transmission screw rod and a second transmission screw rod; connecting bases of the two sets of profiling dies are oppositely arranged, the peripheries of the lower forming petals on the two sides are combined to form a sizing die, the convex ends of the two sides of a first output shaft of the servo motor are fixedly connected with a first transmission screw and a second transmission screw through connecting flanges correspondingly, and the first transmission screw is in threaded connection with an upper lead screw nut of one set of profiling dies. And the second transmission screw rod is in threaded connection with the corresponding upper screw rod nut.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of packing container outlet seal, specifically is a kind of anti-fake material outlet's manufacturing tooling. BACKGROUND

[0002] Packaging container needs to be set with packing cover at the material outlet position of container after being made, and the existing mechanism is to set the annular flange on the material outlet of container in advance, then directly seal the packing cover on the annular flange paper, wherein the packing cover is column except the flange ring of the head position, and the cross section of column is arranged in the shape of the circular area of material outlet, in actual packaging process, the packing cover is easy to be opened, and after being opened, the product inside is easy to be exchanged, then the packing cover is sealed again, so that the anti-fake of product has no substantial progress, and then, in order to prevent counterfeiting, the lower convex part of packing cover is developed to be deep into the inner cavity of packaging container, and the lower convex part is larger than the corresponding structure of material outlet area, so that the packing cover cannot be opened without being damaged, but how to quickly and efficiently manufacture the anti-fake material outlet is urgently needed to develop the corresponding manufacturing tooling. SUMMARY

[0003] In view of the above problems, the utility model provides a kind of anti-fake material outlet's manufacturing tooling, which makes the production of anti-fake material outlet quickly and efficiently.

[0004] A kind of anti-fake material outlet's manufacturing tooling, it is characterized in that, it includes:

[0005] Two groups of profiling dies, each profiling die includes upper screw nut, connecting seat, lower forming petal die, the lower forming petal die includes connecting piece, forming petal, and the outer periphery of the forming petal is outer convex profiling petal die;

[0006] Servo motor, including output shaft, the both ends of the output shaft are convex, forming two convex shafts, the output shaft of the servo motor is horizontally arranged, and bidirectional rotation;

[0007] And two transmission screws of opposite rotation, respectively first transmission screw, second transmission screw;

[0008] The connecting seats of two groups of profiling dies are arranged towards each other, and the outer periphery of the lower forming petal on both sides is combined to form a shaping die, the both ends of the first output shaft of the servo motor are respectively fixed to the first transmission screw and the second transmission screw by connecting flange, the first transmission screw is threadedly connected with the upper screw nut of one group of profiling dies, and the second transmission screw is threadedly connected with the upper screw nut of the other group of profiling dies;

[0009] Linear guide mechanism is arranged between the two connecting seats, the linear guide mechanism is arranged parallel to the first transmission screw and the second transmission screw,

[0010] The servo motor rotates to drive the two convex profiled mold halves to move towards or away from each other, and when the inner walls of the two convex profiled mold halves abut against each other, the two convex profiled mold halves linearly ascend or descend in or out of the inner cavity of the packaging cover, and when the inner walls of the two convex profiled mold halves are far away from each other to the maximum distance, the two convex profiled mold halves flares the lower convex part of the packaging cover.

[0011] It further has the features that:

[0012] It further has the features that:

[0013] The top fixing frame is further provided with a connecting guide rod corresponding to each connecting seat, the top of the connecting guide rod is fixed to the top fixing frame, the bottom of the connecting guide rod is in inverted T-shaped structure, the connecting seat is provided with a horizontal guide rail slot corresponding to the inverted T-shaped structure, the inverted T-shaped structure is inserted into the horizontal guide rail slot, and the horizontal T-shaped rail slot is parallel to the first transmission screw and the second transmission screw, which makes the top fixing frame bear the gravity of each profiled mold, ensures that the servo motor only needs to provide rotation and does not need to bear the gravity of the profiled mold, and ensures long-term stable and reliable operation of the servo motor.

[0014] The linear guide mechanism includes a first horizontal guide rod and a second horizontal guide rod, the first horizontal guide rod and the second horizontal guide rod are arranged at different height positions of the two groups of connecting seats, and the first horizontal guide rod and the second horizontal guide rod are parallel to the first transmission screw and the second transmission screw, which ensures that when the two transmission screws rotate, the two convex profiled mold halves move towards or away from each other.

[0015] The two convex profiled mold halves form a ring-shaped lower mold and the smallest outer contour in the assembled state.

[0016] The upper part of the sealing cover is made into a sealing ring, and the lower part is pre-stamped into a columnar cavity structure, the product container is provided with a material port, the columnar cavity structure is installed on the upper convex sealing port of the product sealing surface, the sealing ring covers the sealing port, and the lower convex part is located below the upper surface of the tank body, the product is lifted by the bottom lifting mechanism when the inner walls of the two formed petals are attached to each other, the two outer convex profiling petals are arranged in the inner cavity of the sealing cover, then the servo motor rotates according to the preset rotation profiling and rotation number action, the two outer convex profiling petals expand the lower convex part of the sealing cover, after the expanding operation is completed, the servo motor resets according to the preset rotation profiling and rotation number action, the inner walls of the two formed petals corresponding to the two outer convex profiling petals are attached to each other again, the product is lowered and separated from the anti-fake material outlet manufacturing tool by the bottom lifting mechanism, then the product sequentially passes through the anti-fake material outlet manufacturing tool along the production line and performs the inner cavity expanding operation of the lower convex part of the sealing cover, so that the anti-fake material outlet is quickly and efficiently manufactured. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a front view structure schematic diagram of the utility model;

[0018] Figure 2 It is Figure 1 A schematic view of the A-direction connection structure of the connecting guide rod and the horizontal guide rail slot;

[0019] Figure 3 It is a schematic view of the movement flow of two formed petals of the utility model;

[0020] Figure 4 It is a schematic view of the flow of manufacturing the anti-fake material outlet by using the utility model;

[0021] The names corresponding to the serial numbers in the drawing are as follows:

[0022] Profiling die 10, upper screw nut 11, connecting seat 12, lower formed petal die 13, connecting piece 14, formed petal 15, outer convex profiling petal die 1 horizontal guide rail slot 17, guide hole 18, guide rod mounting positioning groove 19, servo motor 20, output shaft 21, mounting seat 22, top fixed frame 30, motor mounting bracket 31, first transmission screw 40, second transmission screw 50, connecting flange 60, linear guide mechanism 70, first horizontal guide rod 71, second horizontal guide rod 72, connecting guide rod 80, inverted T-shaped structure 81;

[0023] Sealing cover 100, sealing ring 101, lower convex part 102;

[0024] Container 200, material port 201, product sealing surface 202, upper convex sealing port 203, annular sealing ring 204. DETAILED DESCRIPTION

[0025] A manufacturing tool for anti-fake material outlet is disclosed in Figures 1-3 which comprises two sets of profiling dies 10, a servo motor 20, two transmission screws with opposite rotation directions, and a top fixed frame 30.

[0026] Each set of profiling dies 10 comprises an upper screw nut 11, a connecting seat 12, and a lower forming petal die 13, the lower forming petal die 13 comprises a connecting piece 14 and a forming petal 15, the height of the connecting piece is set according to the height of the lower convex part of the packaging cover embedded in the forming petal, the outer periphery of the connecting piece is inwardly recessed to ensure that it does not affect the lifting operation of the product, and the outer periphery of the forming petal 15 is outwardly convex profiling petal die 16.

[0027] The servo motor 20 comprises an output shaft 21, the two ends of the output shaft 21 are protruding to form two protruding shafts, and the output shaft of the servo motor 20 is horizontally arranged and bidirectional rotating.

[0028] The two transmission screws with opposite rotation directions are respectively a first transmission screw 40 and a second transmission screw 50.

[0029] The connecting seats 12 of the two sets of profiling dies 10 are arranged towards each other, and the outer convex profiling petal dies 16 of the outer peripheries of the two lower forming petals 13 are combined to form a shaping die, the two protruding ends of the output shaft 21 of the servo motor 20 are respectively fixedly connected to the first transmission screw 40 and the second transmission screw 50 through connecting flanges 60, the first transmission screw 40 is threadedly connected to the upper screw nut 11 of one set of profiling dies 10, and the second transmission screw 50 is threadedly connected to the upper screw nut 11 of the other set of profiling dies 10.

[0030] A linear guide mechanism 70 is arranged between the two connecting seats 12 and is horizontally arranged, and the linear guide mechanism 70 is arranged parallel to the first transmission screw 40 and the second transmission screw 50.

[0031] The servo motor 20 rotates to drive the outwardly convex profiling petal dies 16 of the two forming petals 15 to move towards each other or away from each other, when the inner walls of the two forming petals 15 abut against each other, the two outwardly convex profiling petal dies 16 linearly ascend or descend in or out of the inner cavity of the packaging cover 100, and when the inner walls of the two forming petals 15 are away from each other to the maximum designed distance, the two outwardly convex profiling petal dies 16 will expand the lower convex part of the packaging cover 100.

[0032] In the implementation, the top fixed frame 30 is fixedly connected to the mounting seat 22 of the servo motor 20 through a motor mounting bracket 31, which ensures the stable and reliable mounting of the servo motor 20.

[0033] In particular implementation, the top fixed frame 30 is further provided with a connecting guide rod 80 corresponding to each set of connecting seats 12, the top of the connecting guide rod 80 is fixed to the top fixed frame 30, the bottom of the connecting guide rod 80 is a reverse T-shaped structure 81, the connecting seat 12 is provided with a horizontal guide rail slot 17 corresponding to the reverse T-shaped structure 81, the reverse T-shaped structure 81 is inserted into the horizontal guide rail slot 17, and the horizontal T-shaped rail slot 17 is parallel to the first transmission screw 40 and the second transmission screw 50, so that the top fixed frame 30 is used for bearing the gravity of each set of profiling dies 10, and it is ensured that the servo motor 20 only needs to provide rotation and does not need to bear the gravity of the profiling die 10, and long-term stable and reliable operation of the servo motor 20 is ensured.

[0034] The linear guide mechanism 70 includes a first horizontal guide rod 71 and a second horizontal guide rod 72, the first horizontal guide rod 71 and the second horizontal guide rod 72 are arranged at different height positions of the two sets of connecting seats 12, and the first horizontal guide rod 71 and the second horizontal guide rod 72 are parallel to the first transmission screw 40 and the second transmission screw 50, so that the outer convex profiling die 16 of the two sets of transmission screws moves towards or away from each other when the two sets of transmission screws rotate.

[0035] In particular embodiments, the two sets of connecting seats 12 are provided with corresponding guide holes 18 and guide rod mounting positioning slots 19, the large end of the first horizontal guide rod 40 and the second horizontal guide rod 50 is positioned and arranged in the corresponding guide rod mounting positioning slot 19 of the different connecting seat 12, respectively, each horizontal guide rod is inserted into the guide hole 18 of the other connecting seat 12 after penetrating through the guide hole 18 of the respective connecting seat 12, and stable and reliable guide connection is ensured.

[0036] In particular embodiments, the two sets of connecting seats 12 are provided with corresponding guide holes 18 and guide rod mounting positioning slots 19, the large end of the first horizontal guide rod 40 and the second horizontal guide rod 50 is positioned and arranged in the corresponding guide rod mounting positioning slot 19 of the different connecting seat 12, respectively, each horizontal guide rod is inserted into the guide hole 18 of the other connecting seat 12 after penetrating through the guide hole 18 of the respective connecting seat 12, and stable and reliable guide connection is ensured.

[0037] The working principle is shown in Figure 4The upper part of the sealing cover 100 is made into a shape of a ring, and the lower part is formed into a cylindrical cavity structure, the product container 200 is provided with a material outlet 201, the cylindrical cavity structure is matched and installed on the upper convex sealing port 203 of the product sealing surface 202, so that the ring-shaped sealing 204 of the sealing port is covered by the ring-shaped sealing 204 of the sealing port, and the lower convex part 102 is located below the upper surface of the tank body, the entire product is transported to the lower side of the anti-fake material outlet manufacturing tool, when the inner walls of the two shaped petals 15 are matched with each other, the bottom lifting mechanism (not shown in the figure, which is a conventional setting of the production line) drives the product to lift, so that the two outer convex profiled petals 16 are embedded in the inner cavity of the sealing cover 100, then the servo motor 20 performs a preset rotation profile and rotation number action, so that the two outer convex profiled petals 16 perform an expansion operation on the lower convex part 102 of the sealing cover, after the expansion operation is completed, the servo motor 20 performs a preset rotation profile and rotation number action, so that the inner walls of the two shaped petals 15 corresponding to the two outer convex profiled petals 16 are matched with each other again, the bottom lifting mechanism drives the product to descend and separate from the anti-fake material outlet manufacturing tool, then the product sequentially passes through the anti-fake material outlet manufacturing tool along the production line and performs an expansion operation on the inner cavity of the lower convex part of the sealing cover, which makes the production of the anti-fake material outlet fast and efficient.

[0038] It is apparent for those skilled in the art that the present application is not limited to the details of the above-mentioned exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and it is intended to encompass all changes falling within the meaning and range of equivalents of the elements of the claims. Any reference signs in the claims should not be considered as limiting the claims to which they belong.

[0039] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A manufacturing tool for producing an anti-counterfeit material outlet, characterized in that, It comprises: Two sets of profiling dies, each set of profiling dies comprising an upper screw nut, a connecting seat, a lower forming petal die, the lower forming petal die comprising a connecting piece, a forming petal, the outer periphery of the forming petal being an outwardly convex profiling petal die; A servo motor comprising an output shaft, the output shaft being convex on both ends to form a double-sided convex shaft, the output shaft of the servo motor being horizontally arranged and bidirectional rotating; And two transmission screws with opposite rotation directions, namely a first transmission screw and a second transmission screw; The connecting seats of the two sets of profiling dies are arranged facing each other, and the outer peripheries of the two lower forming petals combine to form a shaping die, the double-sided convex ends of the first output shaft of the servo motor are respectively fixed to the first transmission screw and the second transmission screw through connecting flanges, the first transmission screw is threadedly connected to the upper screw nut of one set of profiling dies, and the second transmission screw is threadedly connected to the upper screw nut of the other set of profiling dies; A linear guide mechanism arranged horizontally is arranged between the two connecting seats, the linear guide mechanism being arranged parallel to the first transmission screw and the second transmission screw, The servo motor rotates to drive the outwardly convex profiling petal dies of the two forming petals to move towards or away from each other, when the inner walls of the two forming petals abut against each other, the two outwardly convex profiling petal dies linearly ascend or descend in or out of the inner cavity of the packaging cover, and when the inner walls of the two forming petals are away from each other to the maximum designed distance, the two outwardly convex profiling petal dies flares the lower convex part of the packaging cover.

2. The manufacturing tooling for a security material outlet according to claim 1, wherein: It further comprises a top fixed frame, the top fixed frame being fixed to the mounting seat of the servo motor through a motor mounting frame.

3. The manufacturing tooling for a security material outlet according to claim 2, wherein: The top fixed frame is further provided with a connecting guide rod corresponding to each connecting seat, the top of the connecting guide rod being fixed to the top fixed frame, the bottom of the connecting guide rod being a reverse T-shaped structure, the connecting seat being provided with a horizontal guide rail slot corresponding to the reverse T-shaped structure, the reverse T-shaped structure being inserted into the horizontal guide rail slot, and the horizontal T-shaped rail slot being arranged parallel to the first transmission screw and the second transmission screw.

4. The manufacturing tooling for a security material outlet according to claim 3, wherein: The linear guide mechanism comprises a first horizontal guide rod and a second horizontal guide rod, the first horizontal guide rod and the second horizontal guide rod being arranged at different height positions of the two connecting seats, and the first horizontal guide rod and the second horizontal guide rod being arranged parallel to the first transmission screw and the second transmission screw.

5. The manufacturing tooling for a security material outlet according to claim 4, wherein: The two outwardly convex profiling petal dies form a ring-shaped lower die and the smallest outer contour in the assembled state.