Cosmetic bottle cap automated processing equipment

By designing automated central circulation feeding components and linear feeding components, combined with blowers and dust collection plates, the problem of low efficiency in manual placement of cosmetic bottle caps in vacuum coating machines was solved, and an efficient and stable coating process was achieved.

CN119734958BActive Publication Date: 2025-09-26GUANGZHOU CONGHUA DINGMEI PLASTIC ARTS & CRAFTS CO LTD
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Patent Information

Application Number
CN202411797629.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-09-26
Estimated Expiration
2044-12-09

AI Technical Summary

Technical Problem

When cosmetic bottle caps are fed into the vacuum coating machine, they need to be manually sorted and arranged in sequence, which is inefficient.

Method used

Design automated processing equipment for cosmetic bottle caps, including a central circulation feeding component, a linear feeding component and a vacuum coating machine. Through the coordination of the transmission motor, toothed chain belt and sliding belt, the directional conveying and material removal of the bottle caps are realized. A blower and dust collection plate are also equipped to remove dust and improve coating efficiency.

Benefits of technology

It realizes the automatic conveying and coating of cosmetic bottle caps, improves efficiency, reduces the impact of dust on coating, and ensures the stability and quality of the bottle caps during the coating process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention is applicable to the technical field of cosmetic packaging, and provides automated processing equipment for cosmetic bottle caps, including a central circulation feeding component, a linear feeding component and a vacuum coating machine: the central circulation feeding component includes a side frame and a central seat, and the inner wall of the side frame is movably connected with a circulation mechanism; the first transmission motor, the transmission gear and the toothed chain belt in the circulation mechanism are used in conjunction with each other, and in use, the bottle caps to be processed are inserted into the first support block and the second support block in turn, and the first transmission motor drives the transmission gear to rotate, so that the toothed chain belt is transmitted along the inside of the side frame, thereby realizing directional conveying, which is convenient for use with the linear feeding component and the vacuum coating machine to receive and load materials; the sliding belt and the second transmission motor are used in conjunction with each other, and in use, the second transmission motor drives the rotation, so that the sliding belt can slide in a directional manner along the feed side seat and the feeding side seat, thereby realizing directional feeding and taking materials.
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Description

Technical Field

[0001] The present invention belongs to the technical field of cosmetic packaging, and in particular relates to automated processing equipment for cosmetic bottle caps. Background Art

[0002] Cosmetic packaging materials are a type of packaging material industry, which are divided into overall packaging materials and partial packaging materials. For overall packaging materials, cosmetics manufacturers usually provide drawings or general requirements, and the production is completely handed over to packaging material suppliers, while partial packaging materials are much more subtle and more specific to specific situations and needs. They are divided into local printing, bottle cap packaging materials, and bottle body packaging materials. Depending on the type of cosmetic packaging, some small accessories can also be specifically outsourced. The cosmetic packaging material industry and cosmetics are closely linked. Today, the overall homogeneity of the cosmetics industry has further enhanced the value of packaging materials. In recent years, industry insiders have also called for low-carbon and green packaging services. After the cosmetic bottle caps are assembled and processed, the exposed parts of the cosmetic bottle caps need to be coated. Because the cosmetic bottle caps are small in size and have a special shape, they need to be placed in sequence when sent to the vacuum coating machine. The traditional conveying mechanism requires manual sorting and adjustment, which is less efficient.

[0003] In order to solve the above situation, it is necessary to design an automated processing equipment for cosmetic bottle caps. Summary of the Invention

[0004] The present invention provides automated processing equipment for cosmetic bottle caps, which aims to solve the problem that after the cosmetic bottle caps are assembled and processed, the exposed parts of the cosmetic bottle caps need to be coated. Since the cosmetic bottle caps are small in size and have a special shape, they need to be placed in sequence when being fed into a vacuum coating machine. The traditional conveying mechanism requires manual sorting and sequential adjustment for placement, which is inefficient.

[0005] The present invention is implemented as follows: the automated processing equipment for cosmetic bottle caps includes a central circulation feeding component, a linear feeding component and a vacuum coating machine: the central circulation feeding component includes a side frame and a central seat, and the inner wall of the side frame is movably connected to the circulation mechanism;

[0006] The circulation mechanism includes a toothed chain belt and a first transmission motor, wherein the output shaft of the first transmission motor is fixedly connected to a transmission gear via a coupling, and the outer wall of the transmission gear is engaged with the bottom of the toothed chain belt; the first transmission motor, the transmission gear and the toothed chain belt in the circulation mechanism cooperate with each other, and during use, the bottle caps to be processed are sequentially inserted into the first support block and the second support block, and the first transmission motor drives the transmission gear to rotate, so that the toothed chain belt is driven along the inside of the side frame, thereby realizing directional conveying, which is convenient for cooperation with the linear feeding assembly and the vacuum coating machine for receiving and loading;

[0007] The linear feeding assembly includes a sliding belt and a second transmission motor, the output shaft of the second transmission motor is fixedly connected to a transmission disk through a coupling, and the outer wall of the transmission disk is tightly fitted with the bottom of the sliding belt; the sliding belt and the second transmission motor are used in conjunction with each other, and during use, the second transmission motor drives the rotation, thereby realizing directional sliding of the sliding belt along the feed side seat and the feed side seat, thereby realizing directional feeding and taking of materials;

[0008] A coating tray assembly is provided on the inner wall of the outer wall feed port of the vacuum coating machine, and the coating tray assembly includes a sliding tray mechanism slidably provided on the inner wall of the outer wall feed port of the vacuum coating machine, and a plurality of supporting members are provided on the top of the sliding tray mechanism;

[0009] The support member includes a sleeve member fixedly arranged on the sliding plate mechanism, and a plurality of small spring cylinders are fixedly connected to the outer wall of the top of the sleeve member in a circular arrangement, and one end of the small spring cylinder is fixedly connected to the inner support frame. Through the arrangement of the coating plate assembly, the purpose of taking and feeding materials between the vacuum coating machine and the central circulation feeding assembly and the linear feeding assembly can be achieved. The arrangement of the support member, under the cooperation of the small spring cylinders arranged in a circular arrangement and the inner support frame, can achieve the effect of coordinated use with different bottle caps, thereby achieving a better fitting connection effect, so that the bottle caps maintain stability during the coating operation.

[0010] The inner wall of the outer wall feed inlet of the vacuum coating machine is provided with a dust cleaning assembly, and the dust cleaning assembly includes an upper blower, a lower blower and a side sliding seat fixedly arranged on the vacuum coating machine, and the inner wall of the side sliding seat is fitted with a dust suction plate; through the coordinated use of the upper blower and the lower blower, during use, the outer wall of the bottle cap in the coating tray assembly that is about to be fed into the vacuum coating machine can be blown to blow out the dust on the bottle cap, reduce the influence of dust on the coating, and improve the coating effect of the bottle cap, wherein the upper blower and the lower blower cooperate to form a directional airflow path, so that the dust is discharged to the ground along the wind direction path of the upper blower and the lower blower, so as to prevent the dust from falling again onto the bottle caps waiting for coating on the central circulation feeding assembly and the linear feeding assembly;

[0011] Among them, the dust absorption plate is a hard cardboard wrapped with a film, and a non-woven fabric is attached to the hard cardboard, and the center of the non-woven fabric is in a wet state; through the setting of the dust absorption plate, when there is a lot of dust on the bottle cap or around the vacuum coating machine, the dust reduction effect can be accelerated.

[0012] Preferably, the two sides of the center seat are symmetrically fixedly connected with lower small hydraulic cylinders, and one end of the lower small hydraulic cylinder is fixedly connected to the outer wall of the first transmission motor; through the arrangement of the upper and lower small hydraulic cylinders of the center seat, during use, the first transmission motor can be pulled to move the position of the transmission gear by starting and controlling the use of the lower small hydraulic cylinder, thereby controlling the connection relationship between the transmission gear and the bottom of the toothed chain belt, and achieving an emergency stop operation of the toothed chain belt by pulling the transmission gear away from the toothed chain belt.

[0013] Preferably, the sleeve member includes sleeves that are slidably connected to each other, and the two sleeves are clamped together by a bayonet pin; through the arrangement of the sleeve member, the use height of the sleeve member can be adjusted according to the height of the bottle cap.

[0014] Preferably, the sliding plate mechanism includes a sliding plate on the inner wall of the outer wall feed port of the vacuum coating machine, and several rollers are movably connected to the inner walls on both sides of the sliding plate, and the outer walls of the rollers are movably connected to the inner walls of the outer wall feed port of the vacuum coating machine, and the top of the sliding plate is fixedly connected with an edge strip; by setting several rollers on both sides of the sliding plate mechanism, the purpose of facilitating sliding feeding can be achieved.

[0015] Preferably, several first supporting blocks are fixedly connected to the top of the toothed chain belt, and the several first supporting blocks are equidistantly arranged, and several second supporting blocks are fixedly connected to the top of the sliding belt, and the several second supporting blocks are equidistantly arranged; through the arrangement of the first supporting blocks and the second supporting blocks, each bottle cap can be placed separately for easy retrieval.

[0016] Preferably, a plurality of movable supports are installed at the bottom of the linear feeding assembly, and the movable supports include two side frames, the outer walls of the side frames are provided with fixing bolts, and a movable adjustment rod is provided between the two side frames, and the inner walls of the side frames are provided with motor seats, and the inner walls of the motor seats are fixedly connected to the outer wall of the second transmission motor; by providing the movable supports, it is possible to facilitate fixing the positions of the linear feeding assembly and the second transmission motor;

[0017] The movable adjustment rod includes a screw barrel fixedly arranged on the inner wall of the side seat frame, and the two screw barrels are connected by a screw rod; through the setting of the movable adjustment rod, the screw rod and the screw barrel on the movable adjustment rod can be rotated as needed during use, thereby flexibly adjusting the distance between the two side seat frames, so as to fix the installation mechanism above the side seat frame.

[0018] Preferably, there are two linear feeding assemblies, and outer walls of the two linear feeding assemblies are respectively provided with a feed side seat and a feed side seat.

[0019] Preferably, the feed side seat, linear feeding assembly and movable support constitute a loading mechanism; the feeding side seat, linear feeding assembly and movable support constitute a feeding mechanism; through the setting of the loading mechanism, the assembled cosmetic bottle caps can be placed on the linear feeding assembly on the loading mechanism, and transported along the loading mechanism to the upper central circulation feeding assembly, and unqualified parts can be picked out during the transfer to the central circulation feeding assembly; through the setting of the feeding mechanism, during use, the bottle caps that have been coated in the vacuum coating machine can be easily taken out and sent to the linear feeding assembly on the feeding mechanism.

[0020] Preferably, a plurality of support columns are provided at the bottom of the central circulation feeding assembly, and the plurality of support columns are symmetrically arranged.

[0021] Compared with the prior art, the embodiments of the present application have the following beneficial effects:

[0022] Through the coordinated use of the first transmission motor, transmission gear and toothed chain belt in the circulation mechanism, during use, the bottle caps to be processed are inserted into the first support block and the second support block in turn, and the first transmission motor drives the transmission gear to rotate, so that the toothed chain belt is transmitted along the inside of the side frame, thereby realizing directional conveying, which is convenient for use with the linear feeding component and the vacuum coating machine to receive and load materials; through the coordinated use of the sliding belt and the second transmission motor, during use, the second transmission motor drives the rotation, thereby realizing directional sliding of the sliding belt along the feed side seat and the feeding side seat, thereby realizing directional feeding and taking materials; through the setting of the upper and lower small hydraulic cylinders of the center seat, during use, the lower small hydraulic cylinder can be started and controlled to pull the first transmission motor to move the position of the transmission gear, thereby controlling the connection relationship between the transmission gear and the bottom of the toothed chain belt, and by pulling the transmission gear away from the toothed chain belt, the toothed chain belt emergency stop operation is achieved;

[0023] Through the setting of the coating plate assembly, the purpose of taking and feeding materials between the vacuum coating machine and the central circulation feeding assembly and the linear feeding assembly can be achieved. The setting of the support member, under the cooperation of the small spring cylinder and the inner support frame arranged in a ring, can achieve the effect of matching with different bottle caps, thereby achieving a better fitting connection effect, so that the bottle caps maintain stability during the coating operation;

[0024] By using the upper blower and the lower blower in coordination, during use, the outer wall of the bottle cap in the coating tray assembly that is about to be sent into the vacuum coating machine can be blown to blow out the dust on the bottle cap, thereby reducing the impact of dust on the coating and improving the coating effect of the bottle cap. The upper blower and the lower blower cooperate to form a directional airflow path, so that the dust is discharged to the ground along the wind direction path of the upper blower and the lower blower, avoiding the dust from falling again onto the bottle caps waiting for coating on the central circulation feeding assembly and the linear feeding assembly; by setting the dust suction plate, when there is a lot of dust on the bottle caps or around the vacuum coating machine, the dust reduction effect can be accelerated;

[0025] Through the setting of the loading mechanism, the assembled cosmetic bottle caps can be placed on the linear feeding assembly on the loading mechanism, and transported to the upper central circulation feeding assembly along the loading mechanism, and unqualified parts can be picked out during the transfer to the central circulation feeding assembly; through the setting of the feeding mechanism, during use, the bottle caps that have been coated in the vacuum coating machine can be easily taken out and sent to the linear feeding assembly on the feeding mechanism. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is the front view of the present invention;

[0027] Figure 2 It is a structural schematic diagram of the central circulation feeding assembly of the present invention;

[0028] Figure 3 It is a structural schematic diagram of the circulation mechanism of the present invention;

[0029] Figure 4 It is a schematic structural diagram of the linear feeding assembly of the present invention;

[0030] Figure 5 It is a structural schematic diagram of the movable support of the present invention;

[0031] Figure 6 It is a schematic structural diagram of the coating disk assembly of the present invention;

[0032] Figure 7 It is a structural schematic diagram of the sliding disk mechanism of the present invention;

[0033] Figure 8 It is a structural schematic diagram of the support member of the present invention;

[0034] Figure 9 It is a structural schematic diagram of the dust cleaning component of the present invention.

[0035] Figure: 1. Vacuum coating machine; 2. Center circulation feed assembly; 201. Side frame; 202. Circulation mechanism; 2021. Transmission gear; 2022. First transmission motor; 2023. Toothed chain belt; 2024. First support block; 203. Center seat; 204. Lower small hydraulic cylinder; 3. Linear feed assembly; 301. Slide belt; 302. Second transmission motor; 303. Transmission plate; 304. Second support block; 4. Movable support; 401. Side seat frame; 402. Fixing bolt; 403. Movable adjustment rod; 5. Coating disk assembly; 501. Sliding disk mechanism; 5011. Sliding disk; 5012. Edge strip; 5013. Roller; 502. Support member; 5021. Sleeve member; 5022. Inner support frame; 5023. Small spring cylinder; 6. Dust cleaning assembly; 601. Upper blower; 602. Lower blower; 603. Dust collection plate; 604. Side sliding seat; 7. Feed side seat; 8. Feed side seat; 9. Support column. DETAILED DESCRIPTION

[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meanings as commonly understood by those skilled in the art to which this application belongs. The terms used in the specification of the application are only for the purpose of describing specific embodiments and are not intended to limit this application. The terms "including" and "having" and any variations thereof in the specification and claims of this application and the above-mentioned drawings are intended to cover non-exclusive inclusions. The terms "first", "second", etc. in the specification and claims of this application or the above-mentioned drawings are used to distinguish different objects, not to describe a specific order.

[0037] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0038] The embodiment of the present invention provides an automated processing device for cosmetic bottle caps, including a central circulation feeding assembly 2, a linear feeding assembly 3, and a vacuum coating machine 1. The central circulation feeding assembly 2 includes a side frame 201 and a center seat 203. The inner wall of the side frame 201 is movably connected to a circulation mechanism 202.

[0039] The circulation mechanism 202 includes a toothed chain belt 2023 and a first transmission motor 2022. The output shaft of the first transmission motor 2022 is fixedly connected to a transmission gear 2021 via a coupling. The outer wall of the transmission gear 2021 is engaged with the bottom of the toothed chain belt 2023.

[0040] The linear feeding assembly 3 includes a sliding belt 301 and a second transmission motor 302. The output shaft of the second transmission motor 302 is fixedly connected to a transmission disc 303 via a coupling. The outer wall of the transmission disc 303 is tightly fitted with the bottom of the sliding belt 301.

[0041] The two sides of the center seat 203 are symmetrically fixedly connected with lower small hydraulic cylinders 204, and one end of the lower small hydraulic cylinder 204 is fixedly connected to the outer wall of the first transmission motor 2022;

[0042] The top of the toothed chain belt 2023 is fixedly connected to a plurality of first support blocks 2024 equidistantly arranged. The top of the sliding belt 301 is fixedly connected to a plurality of second support blocks 304 equidistantly arranged.

[0043] It should be noted that, since the exposed parts of cosmetic bottle caps need to be coated after assembly and processing, and since the cosmetic bottle caps are small in size and have a special shape, they need to be placed in sequence when being fed into the vacuum coating machine. The traditional conveying mechanism requires manual sorting and adjustment and placement, which is inefficient.

[0044] Specifically, in this embodiment, this scheme is mainly used in conjunction with the setting of the central circulation feeding component 2 and the vacuum coating machine 1 and the loading mechanism and the feeding mechanism. During use, the assembled cosmetic bottle caps are placed on the second support block 304 in the linear feeding component 3 on the loading mechanism, and transported to the upper central circulation feeding component 2 along the loading mechanism, and unqualified parts are picked out during the transfer on the central circulation feeding component 2. The first transmission motor 2022 drives the transmission gear 2021 to rotate, so that the toothed chain belt 2023 is transmitted along the inside of the side frame 201, thereby driving the coating disk component 5 in front of the directional vacuum coating machine 1 to be transported, and the bottle caps in the first support block 2024 are manually transferred. To the support 502, and sent into the vacuum coating machine 1 through the coating plate assembly 5. Through the coordinated use of the upper blower 601 and the lower blower 602, during use, the outer wall of the bottle cap in the coating plate assembly 5 that is about to be sent into the vacuum coating machine 1 can be blown with air, thereby blowing out dust on the bottle cap, reducing the impact of dust on the coating, and improving the coating effect of the bottle cap; Coating in the vacuum coating machine 1: 1. Check whether the various operating control switches of the vacuum coating machine are in the "off" position; 2. Turn on the main power switch to power the equipment; 3. Pull out the low-pressure valve; open the inflation valve. When the airflow sound is no longer heard, start the bell valve to raise the bell; 4. Install and fix the tungsten spiral heater; fix the PVDF film and the aluminum cover plate on the rotating disk; Thread the aluminum wire into the spiral heater; clean all parts of the bell jar to ensure that there are no impurities or dirt; 5. Drop the bell jar; 6. Start the vacuum mechanical pump; 7. Turn on the power of the compound vacuum gauge; 8. When the pointer in the low vacuum gauge "2" moves clockwise to 6.7Pa again, push in the low-pressure valve; 9. Turn on the cooling water of the vacuum coating machine, start the diffusion pump, and heat for 40 minutes; 10. Pull out the low-pressure valve; Repeat the action procedure in step 7: When the pointer moves to 6.7Pa, open the high-pressure valve stem and rotate it clockwise. 11. When the pointer in the low vacuum gauge "2" moves to the right to 0.1Pa, turn on the gauge filament switch; 12. Rotate the emission adjustment knob; 13. Rotate the emission, zero point, and measurement knobs to point to the zero position; 14 1. Turn the zero adjustment knob so that the needle on the high-pressure vacuum gauge points to 0. 2. Turn the emission, zero, and measurement knobs to the measurement position. 3. Turn the standard adjustment knob so that the needle on the high-pressure vacuum gauge points to 10. 4. Turn the "multiplier" switch knob to 10-12. When the needle on the high-pressure vacuum gauge moves counterclockwise to the left by more than 1, turn the "multiplier" switch knob to 10-3. 5. When the needle on the high-pressure vacuum gauge moves counterclockwise by more than 6.7 Pa, turn the workpiece rotation knob to rotate the PVDF film to be plated in the bell jar. 6. Turn the evaporation knob to the right. Insert the current distributor plug into the evaporation electrode distribution hole. 7. Turn the right voltage regulator handwheel with your right hand to slowly increase the voltage. 8. If you want to evaporate again to increase the thickness of the electrode metal layer: remove the current distributor plug and insert it into another electrode distribution hole. Repeat steps 20. 9.Turn off the gauge filament switch; close the high-pressure valve and turn the handle counterclockwise; stop workpiece rotation; turn off evaporation; turn the mechanical pump knob to the diffusion pump position; 23. Pull out the low-pressure valve; inflate the bell jar; inflate for a while, and when there is no sound, raise the bell jar; 24. Add aluminum wire to the tungsten spiral heater; swap the PVDF film so that the aluminum-coated bottom side faces downward; secure it to the rotating disk; 25. Lower the bell jar; turn on the mechanical pump; when the pointer on the low-pressure vacuum gauge moves clockwise to 0.1 Pa, turn on the gauge filament; repeat steps 17 to 20; 26. After the aluminum layer is evaporated on the PVDF film, close the gauge filament, high-pressure valve, mechanical pump, and diffusion pump in that order; pull out the low-pressure valve; inflate the bell jar; raise the bell jar after inflation is complete; remove the workpiece and clean the inside of the bell jar; after the bottle cap is removed, feed it out through the feed mechanism.

[0045] In this embodiment, the first transmission motor 2022, the transmission gear 2021 and the toothed chain belt 2023 in the circulation mechanism 202 cooperate with each other. During use, the bottle caps to be processed are sequentially inserted into the first support block 2024 and the second support block 304. The first transmission motor 2022 drives the transmission gear 2021 to rotate, so that the toothed chain belt 2023 is driven along the inside of the side frame 201, thereby achieving directional conveying, which is convenient for cooperation with the linear feeding assembly 3 and the vacuum coating machine 1 to receive and load the caps.

[0046] In this embodiment, the sliding belt 301 and the second transmission motor 302 are used in conjunction. During use, the second transmission motor 302 drives the sliding belt 301 to rotate, thereby achieving directional sliding along the feed side seat 7 and the feed side seat 8, thereby achieving directional feeding and taking of materials.

[0047] In this embodiment, by setting the upper and lower small hydraulic cylinders 204 of the center seat 203, the lower small hydraulic cylinder 204 can be started and controlled to pull the first transmission motor 2022 to move the position of the transmission gear 2021, thereby controlling the connection relationship between the transmission gear 2021 and the bottom of the toothed chain belt 2023. By pulling the transmission gear 2021 away from the toothed chain belt 2023, an emergency stop operation of the toothed chain belt 2023 can be achieved.

[0048] In this embodiment, by providing the first support block 2024 and the second support block 304 , each bottle cap can be placed individually for easy retrieval.

[0049] In a further preferred embodiment of the present invention, a coating tray assembly 5 is provided on the inner wall of the outer wall feed port of the vacuum coating machine 1. The coating tray assembly 5 includes a sliding tray mechanism 501 slidably provided on the inner wall of the outer wall feed port of the vacuum coating machine 1. A plurality of support members 502 are provided on the top of the sliding tray mechanism 501.

[0050] The support member 502 includes a sleeve member 5021 fixedly mounted on the sliding plate mechanism 501. A plurality of small spring cylinders 5023 are fixedly connected to the top outer wall of the sleeve member 5021. One end of the small spring cylinder 5023 is fixedly connected to the inner support frame 5022.

[0051] The sleeve member 5021 includes sleeves that are slidably connected to each other, and the two sleeves are clamped together by a bayonet pin;

[0052] The sliding plate mechanism 501 includes a sliding plate 5011 on the inner wall of the outer wall feed port of the vacuum coating machine 1, and several rollers 5013 are movably connected to the inner walls on both sides of the sliding plate 5011, and the outer walls of the rollers 5013 are movably connected to the inner walls of the outer wall feed port of the vacuum coating machine 1, and the top of the sliding plate 5011 is fixedly connected with a side strip 5012.

[0053] In this embodiment, the coating plate assembly 5 is provided to achieve the purpose of taking and feeding materials between the vacuum coating machine 1 and the central circulation feeding assembly 2 and the linear feeding assembly 3. The support member 502 is provided, and the small spring cylinders 5023 and the inner support frame 5022 arranged in an annular manner cooperate with each other to achieve a good fit and connection effect, so that the bottle caps maintain stability during the coating operation.

[0054] In this embodiment, by setting the sleeve member 5021, the use height of the sleeve member 5021 can be adjusted according to the height of the bottle cap;

[0055] In this embodiment, by disposing a plurality of rollers 5013 on both sides of the sliding plate mechanism 501, the purpose of facilitating sliding feeding can be achieved.

[0056] In a further preferred embodiment of the present invention, a dust cleaning assembly 6 is provided on the inner wall of the outer wall feed port of the vacuum coating machine 1. The dust cleaning assembly 6 includes an upper blower 601, a lower blower 602 and a side sliding seat 604 fixedly arranged on the vacuum coating machine 1. A dust collecting plate 603 is fitted and plugged into the inner wall of the side sliding seat 604.

[0057] The dust collecting plate 603 is a hard cardboard wrapped with a film, and a non-woven fabric is attached to the hard cardboard, and the center of the non-woven fabric is in a wet state.

[0058] In this embodiment, by cooperating with the upper blower 601 and the lower blower 602, during use, it is possible to blow air onto the outer wall of the bottle caps in the coating tray assembly 5 that are about to be fed into the vacuum coating machine 1, blow out dust on the bottle caps, reduce the impact of dust on the coating, and improve the coating effect of the bottle caps. The upper blower 601 and the lower blower 602 cooperate to form a directional airflow path, so that the dust is discharged to the ground along the wind direction path of the upper blower 601 and the lower blower 602, preventing the dust from falling again onto the bottle caps waiting for coating on the central circulation feeding assembly 2 and the linear feeding assembly 3;

[0059] In this embodiment, by providing the dust collecting plate 603 , when there is a lot of dust on the bottle cap or around the vacuum coating machine 1 , the dust reduction effect can be accelerated.

[0060] In a further preferred embodiment of the present invention, a plurality of movable supports 4 are installed at the bottom of the linear feeding assembly 3. The movable supports 4 include two side mounts 401. The outer walls of the side mounts 401 are provided with fixing bolts 402. A movable adjustment rod 403 is provided between the two side mounts 401. The inner walls of the side mounts 401 are provided with motor mounts. The inner walls of the motor mounts are fixedly connected to the outer walls of the second transmission motor 302.

[0061] The movable adjustment rod 403 includes a screw barrel fixedly arranged on the inner wall of the side seat frame 401, and the two screw barrels are connected by a screw rod.

[0062] In this embodiment, the position of the linear feeding assembly 3 and the second transmission motor 302 can be fixed by setting the movable support 4;

[0063] In this embodiment, through the setting of the movable adjustment rod 403, during use, the screw and the screw barrel on the movable adjustment rod 403 can be rotated as needed, so as to flexibly adjust the distance between the two side seats 401 so as to fix the installation mechanism above the side seat 401.

[0064] In a further preferred embodiment of the present invention, the number of the linear feeding components 3 is two, and the outer walls of the two linear feeding components 3 are respectively provided with a feed side seat 7 and a feed side seat 8;

[0065] The feeding side seat 7, the linear feeding assembly 3 and the movable support 4 constitute the loading mechanism; the feeding side seat 8, the linear feeding assembly 3 and the movable support 4 constitute the feeding mechanism;

[0066] A plurality of support columns 9 are provided at the bottom of the central circulation feeding component 2 , and the plurality of support columns 9 are symmetrically arranged.

[0067] In this embodiment, through the setting of the loading mechanism, the assembled cosmetic bottle caps can be placed on the linear feeding component 3 on the loading mechanism, and transported to the upper central circulation feeding component 2 along the loading mechanism, and unqualified parts can be picked out during the transfer to the central circulation feeding component 2; through the setting of the feeding mechanism, during use, the bottle caps that have been coated in the vacuum coating machine 1 can be easily taken out and sent to the linear feeding component 3 on the feeding mechanism.

[0068] It should be noted that for the aforementioned embodiments, for simplicity of description, they are all expressed as a series of action combinations. However, those skilled in the art should be aware that the present invention is not limited by the order of the actions described, because according to the present invention, certain steps may be performed in other orders or simultaneously. Secondly, those skilled in the art should also be aware that the embodiments described in this specification are all preferred embodiments, and the actions and modules involved are not necessarily required by the present invention.

[0069] In the several embodiments provided in this application, it should be understood that the disclosed devices can be implemented in other ways. For example, the device embodiments described above are merely illustrative, such as the division of the above-mentioned units. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the coupling or communication connection between each other shown or discussed can be through some interfaces, and the indirect coupling or communication connection between devices or units can be in the form of telecommunications or other forms.

[0070] The units described above as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0071] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the scope of protection of the invention. Obviously, the embodiments described are only some embodiments of the present invention, rather than all embodiments. Based on these embodiments, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. Although the present invention has been described in detail with reference to the above embodiments, ordinary technicians in this field can still combine, add, delete or make other adjustments to the features in the various embodiments of the present invention according to the circumstances without conflict, without making creative work, so as to obtain different other technical solutions that do not deviate from the concept of the present invention in essence, and these technical solutions also fall within the scope of protection of the present invention.

Claims

1. Cosmetic bottle cap automated processing equipment, characterized in that, The invention comprises a central circulation feeding assembly (2), a linear feeding assembly (3) and a vacuum coating machine (1): the central circulation feeding assembly (2) comprises a side frame (201) and a central seat (203); the inner wall of the side frame (201) is movably connected with a circulation mechanism (202); The circulation mechanism (202) comprises a toothed chain belt (2023) and a first transmission motor (2022); the output shaft of the first transmission motor (2022) is fixedly connected to a transmission gear (2021) via a coupling; the outer wall of the transmission gear (2021) is engaged with the bottom of the toothed chain belt (2023); The linear feeding assembly (3) comprises a sliding belt (301) and a second transmission motor (302), wherein the output shaft of the second transmission motor (302) is fixedly connected to a transmission disk (303) via a coupling, and the outer wall of the transmission disk (303) is tightly fitted with the bottom of the sliding belt (301); A coating plate assembly (5) is provided on the inner wall of the outer wall feed port of the vacuum coating machine (1), and the coating plate assembly (5) includes a sliding plate mechanism (501) slidably provided on the inner wall of the outer wall feed port of the vacuum coating machine (1), and a plurality of supporting members (502) are provided on the top of the sliding plate mechanism (501); The support member (502) comprises a sleeve member (5021) fixedly arranged on the sliding disc mechanism (501); a plurality of small spring cylinders (5023) are fixedly connected in a circular arrangement on the top outer wall of the sleeve member (5021); one end of the small spring cylinder (5023) is fixedly connected to an inner support frame piece (5022); The inner wall of the outer wall feed port of the vacuum coating machine (1) is provided with a dust cleaning component (6), the dust cleaning component (6) comprising an upper blower (601), a lower blower (602) and a side sliding seat (604) fixedly arranged on the vacuum coating machine (1), and a dust collecting plate (603) is fitted and plugged into the inner wall of the side sliding seat (604); The dust collecting plate (603) is a hard cardboard wrapped with a film, and a non-woven fabric is attached to the hard cardboard, and the center of the non-woven fabric is in a wet state.

2. The automated processing equipment for cosmetic bottle caps according to claim 1, characterized in that: Lower small hydraulic cylinders (204) are symmetrically fixedly connected to both sides of the center seat (203), and one end of the lower small hydraulic cylinder (204) is fixedly connected to the outer wall of the first transmission motor (2022).

3. The automated processing equipment for cosmetic bottle caps according to claim 1, characterized in that: The sleeve member (5021) comprises sleeves that are slidably connected to each other, and the two sleeves are locked together by a bayonet pin.

4. The automated processing equipment for cosmetic bottle caps according to claim 1, characterized in that: The sliding plate mechanism (501) comprises a sliding plate (5011) on the inner wall of the outer wall feed port of the vacuum coating machine (1); the inner walls on both sides of the sliding plate (5011) are movably connected to a plurality of rollers (5013); the outer walls of the rollers (5013) are movably connected to the inner walls of the outer wall feed port of the vacuum coating machine (1); and the top of the sliding plate (5011) is fixedly connected to a side strip (5012).

5. The automated processing equipment for cosmetic bottle caps according to claim 1, characterized in that: The top of the toothed chain belt (2023) is fixedly connected to a plurality of first support blocks (2024), and the plurality of first support blocks (2024) are equidistantly arranged; the top of the sliding belt (301) is fixedly connected to a plurality of second support blocks (304), and the plurality of second support blocks (304) are equidistantly arranged.

6. The automated processing equipment for cosmetic bottle caps according to claim 1, characterized in that: A plurality of movable supports (4) are installed at the bottom of the linear feeding assembly (3), and the movable supports (4) include two side seats (401), the outer walls of the side seats (401) are provided with fixing bolts (402), and a movable adjustment rod (403) is provided between the two side seats (401), and the inner walls of the side seats (401) are provided with motor seats, and the inner walls of the motor seats are fixedly connected to the outer wall of the second transmission motor (302); The movable adjustment rod (403) comprises a screw barrel fixedly arranged on the inner wall of the side seat frame (401), and the two screw barrels are connected by a screw rod.

7. The automated processing equipment for cosmetic bottle caps according to claim 6, characterized in that: The number of the linear feeding components (3) is two, and the outer walls of the two linear feeding components (3) are respectively provided with a feeding side seat (7) and a feeding side seat (8).

8. The automated processing equipment for cosmetic bottle caps according to claim 7, characterized in that: The feed side seat (7), the linear feed assembly (3) and the movable support (4) constitute a loading mechanism; the feed side seat (8), the linear feed assembly (3) and the movable support (4) constitute a feeding mechanism.

9. The automated processing equipment for cosmetic bottle caps according to claim 1, characterized in that: A plurality of support columns (9) are provided at the bottom of the central circulation feeding component (2), and the plurality of support columns (9) are symmetrically arranged.

Citation Information

Patent Citations

  • Bottle cap conveying system

    CN216879927U

  • Anti-bubble vacuum coating machine

    CN218203011U