Cosmetic bottle manufacturing apparatus
By combining a lifting UV unit and an air-filling assembly with a high-temperature steam cleaner, the problem of incomplete cleaning and disinfection of cosmetic bottles is solved, achieving comprehensive disinfection and cleaning of the inside and outside of the bottle, thus improving safety and efficiency.
Patent Information
- Application Number
- CN202311392578.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-25
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-10-25
AI Technical Summary
Existing cosmetic bottle cleaning and disinfection devices have poor cleaning effects, especially with blind spots inside and outside the bottle, and the cleaning tools easily absorb residual bacteria, making it difficult to achieve comprehensive disinfection.
It adopts a combination of a liftable UV unit and an air filling component. The UV unit extends into the bottle through the bottle opening to perform ultraviolet disinfection, while the air filling component injects beneficial gases. Combined with a high-temperature steam cleaner, it performs comprehensive cleaning and seal performance testing.
It achieves comprehensive and uniform disinfection and cleaning of cosmetic bottles, improves disinfection effectiveness, reduces the risk of cross-infection, simplifies the operation process, and saves manpower and time costs.
Smart Images

Figure CN117181738B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cosmetic bottle production, in particular to a cosmetic bottle manufacturing equipment. BACKGROUND
[0002] Modern society is developing faster and faster, and cosmetics are now an essential daily necessity for people. Different cosmetics can produce different effects when applied to different parts of the body through smearing, spraying, etc., and can play a role in maintaining, cleaning and modifying. Cosmetics are basically in direct contact with the human skin, which requires higher requirements for the composition of cosmetics and the production environment. The bottle body directly contacted with the cosmetics needs to be strictly cleaned and disinfected to improve the safety of the cosmetics. However, there are still problems in the prior art. The existing cosmetic bottle body cleaning and disinfecting device mostly uses cleaning tools such as cleaning brushes to clean the inside and outside of the bottle body, and then sprays disinfectant to disinfect. This way makes the residues or bacteria on the cleaning tool during the cleaning of the bottle body, resulting in a lower cleaning effect on the bottle body over time. Moreover, the liquid sprayed during the cleaning process of the cosmetic bottle body can only achieve a cleaning effect, which makes the cleaning of the bottle body have a certain blind area and cannot achieve complete cleaning and disinfection. SUMMARY
[0003] The present application provides a cosmetic bottle manufacturing equipment with cleaning, rapid disinfection and detection of bottle sealing performance.
[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme:
[0005] A cosmetic bottle manufacturing equipment, comprising: a cabinet body, a turnover plate rotatably installed on the inner wall of the cabinet body, the turnover plate being provided with a clamp for clamping a batch of bottles;
[0006] A liftable disinfecting assembly, the disinfecting assembly comprising a UV unit, the UV unit being capable of extending into the interior of the bottle through the bottle opening and simultaneously closing the bottle opening;
[0007] A gas filling assembly, the gas filling assembly being capable of injecting beneficial gas into the interior of the sealed bottle.
[0008] Optionally, the UV unit comprises a gas jet pipe, two annular UV lamps being provided on the outer wall of the gas jet pipe, a lifting assembly being installed on the inner top of the cabinet body, the UV unit being installed on the lifting assembly, and a plurality of UV lamp tubes being further installed on the inner top of the disinfecting assembly.
[0009] Optionally, the top of the jet pipe is fixedly installed with a blocking plate, the lifting assembly comprises a telescopic rod, the output end of the telescopic rod is fixedly connected with a scissor arm, the scissor arm has a plurality of scissor arms, the scissor arms are all hingedly connected through the middle parts, the output ends of the scissor arms are connected with an assembling frame, the outer wall of the assembling frame is provided with a through sliding groove, and the scissor arms are slidingly installed in the inner wall of the through sliding groove.
[0010] Optionally, the inside of the assembling frame is provided with an L-shaped channel, the bottom of the assembling frame is fixedly installed with a UV unit, the outer wall of the assembling box is installed with an oxygen machine, the two sides of the oxygen machine are respectively connected with oxygen pipes, one end of the L-shaped channel is provided with a communication pipe, the oxygen pipes communicate with the L-shaped channel through the communication pipe, and the oxygen flows to the UV unit through the oxygen pipes, the communication pipe and the L-shaped channel.
[0011] Optionally, the outer wall of the blocking plate is provided with an arc-shaped groove, the inner slide of the arc-shaped groove is installed with a linkage rod, one end of the linkage rod is fixedly connected with a gas blocking plate, the other end of the linkage rod is fixedly connected with an arc-shaped trigger block, and the trigger block can slide to the inner wall of the arc-shaped groove.
[0012] Optionally, the outer wall of the blocking plate is provided with a liquid cavity, the top of the liquid cavity is provided with a liquid level instrument, and the inside of the liquid cavity is slidingly installed with a piston; in the original state, the liquid in the liquid cavity can immerse the liquid level instrument.
[0013] Optionally, the outer wall of the cabinet is fixedly installed with a steam cleaner, the bottom of the steam cleaner is provided with a flow guide pipe, and one end of the flow guide pipe is connected with a jet pipe.
[0014] Optionally, the outlet end of the jet pipe is provided in an expanded shape, and the surface of the outlet end of the jet pipe is further provided with a plurality of small holes.
[0015] Optionally, the outer wall of the cabinet is installed with two motors, the bottom of the cabinet is fixedly installed with a bearing seat, the bearing seat is rotatably installed with two rotating rods, one end of each of the two rotating rods is fixedly installed with a gear, the two gears are meshed, the outer wall of each of the two rotating rods is fixedly installed with an assembling plate, the flow guide pipe is fixed to the outer wall of the assembling plate, the outer wall of the assembling plate is fixedly installed with a plurality of supporting rods, the outer wall of the supporting rod is fixedly installed with a jet pipe, one end of the jet pipe communicates with the flow guide pipe, the inside of the cabinet is provided with a plurality of through grooves, the supporting rods can reach the inside of the cabinet through the through grooves, the output end of one of the two motors is installed with an output gear, the output gear is meshed with the gear, and the rotation of the turnover plate is controlled by the other motor through a belt drive.
[0016] Optionally, the clamp on the turnover plate is detachable, and the place where the clamp contacts the bottle is provided with silica gel material.
[0017] The cosmetic bottle manufacturing equipment provided by the present application makes the loading process simple and convenient, and the operator only needs to put the cosmetic bottle into the loading port, and after the sterilization is completed, the sterilized cosmetic bottle is taken out through the loading port; such design makes the taking-out process simple and convenient, and the operator only needs to take out the sterilized cosmetic bottle from the loading port, without complicated operation steps and additional tools, which greatly improves the operation efficiency, saves time and labor cost. Under the driving of the motor, the turnover assembly turns the platform with the cosmetic bottle to the working position of the sterilization assembly, so that the cosmetic bottle can be completely exposed to the action of the sterilization assembly, ensuring the overall and uniform sterilization effect. At the same time, after the sterilization assembly is started, it performs sterilization treatment on the cosmetic bottle, and the sterilization assembly performs sterilization and disinfection on the cosmetic bottle according to a specific sterilization mode. In this way, bacteria, viruses and other pollutants on the surface and inside of the cosmetic bottle can be effectively removed, ensuring the hygiene and safety of the cosmetic bottle. The reliability and high efficiency of the sterilization assembly can improve the sterilization effect and reduce the risk of cross infection. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is an external perspective view of the present application;
[0019] Figure 2 It is an internal cross-sectional view of the present application;
[0020] Figure 3 It is an internal cross-sectional view of the cleaning assembly of the present application;
[0021] Figure 4 It is an external perspective view of the turnover assembly of the present application;
[0022] Figure 5 It is an external perspective view of the sterilization assembly of the present application;
[0023] Figure 6 It is a right view of the sterilization assembly of the present application;
[0024] Figure 7 It is a structure schematic view of the present application Figure 6 along A-A;
[0025] Figure 8 It is an upper view of the UV unit of the present application;
[0026] Figure 9 It is a front view of the UV unit of the present application;
[0027] Figure 10 It is a structure schematic view of the present application Figure 9 along B-B.
[0028] In the figure: 1-motor; 2-steam cleaner; 3-cabinet; 4-baffle; 5-oxygen machine 5; 7-gear; 8-supporting rod; 9-injection pipe; 12-oxygen pipe; 13-flip plate; 14-clamp; 15-rotating rod; 16-output gear; 17-guide pipe; 18-assembly plate; 22-assembly frame; 23-scissor arm; 24-assembly box; 26-communication pipe; 27-injection pipe; 28-trigger block; 29-block plate; 30-annular UV lamp; 31-piston; 32-linkage rod; 33-air resistance plate; 34-liquid level meter; 35-liquid cavity; 36-telescopic rod; 38-UV lamp tube. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0030] Please refer to Figures 1 to 10 The present application provides a technical solution: a cosmetic bottle manufacturing equipment, comprising: a cabinet 3, a flip plate 13 rotatably installed on the inner wall of the cabinet 3, and a clamp provided on the flip plate 13 for clamping a batch of bottles;
[0031] The sterilization assembly is liftable, and the UV unit can extend into the bottle body through the bottle opening and simultaneously seal the bottle opening;
[0032] The gas filling assembly can inject beneficial gas into the sealed bottle body. The design of the rotating flip plate 13 in the cabinet 3, the clamp for clamping a batch of bottles, the liftable sterilization assembly, and the gas filling assembly has the advantages of batch processing, efficient sterilization, gas control, and automatic operation. This design can improve production efficiency, ensure product safety and quality, and realize automation and controllability of operation. The clamp on the rotating flip plate 13 can clamp multiple bottles, which can greatly improve production efficiency and reduce manual operation time. Through batch processing, multiple bottles can be processed at the same time, saving time and labor cost for processing each bottle. The UV unit in the sterilization assembly can extend into the bottle body through the bottle opening and seal the bottle opening. This can ensure that the bacteria and viruses in the bottle are fully sterilized by ultraviolet light. The liftable design of the UV unit makes the sterilization process more comprehensive, not only sterilizing the bottle opening but also reaching every part of the bottle body. This helps to ensure that the inside and outside of the bottle body are effectively sterilized, ensuring product safety and quality.
[0033] Further, the UV unit includes a jet pipe 27, the outer wall of which is provided with two annular UV lamps 30, the inner top of the cabinet body 3 is provided with a lifting assembly, the UV unit is installed on the lifting assembly, and a plurality of UV lamp tubes 38 are installed on the inner top of the disinfection assembly. When the UV unit is inserted into the bottle body, the annular UV lamp 30 will work. At this time, the bottle body is already filled with oxygen. The light of the UV lamp can directly and uniformly irradiate every corner of the inner wall of the bottle body by using the gas filling method. The UV lamp is a device that can generate ultraviolet light. Ultraviolet light has a strong sterilization effect. It can destroy the nucleic acid structure of bacteria, viruses, fungi and other microorganisms, thereby destroying their biological activity and achieving the effect of killing. At the same time, the gas filling method can spray disinfectants or gas into the area that needs to be disinfected, further increasing the disinfection effect. The combined use of the two methods can effectively kill bacteria and viruses in the air. The use of UV lamps and the gas filling method for disinfection can greatly reduce the time required for disinfection, improve work efficiency, and the UV lamp does not need to use chemical disinfectants during the sterilization process, and will not produce toxic substances and pollutants. The oxygen used in the gas filling method will not harm the human body and the environment. This disinfection method will not leave any residues, and the safety of the surrounding environment and personnel is relatively high.
[0034] Further, the top of the jet pipe 27 is fixedly provided with a blocking plate 29, the lifting assembly includes a telescopic rod 36, the output end of the telescopic rod 36 is fixedly connected with a scissor arm 23, there are a plurality of scissor arms 23, the scissor arms 23 are all connected through the middle part by a scissor hinge, the output end of the scissor arm 23 is connected with an assembly frame 22, a through sliding groove is formed in the outer wall of the assembly frame 22, the scissor arm 23 is slidingly installed in the inner wall of the through sliding groove, the blocking plate 29 is made of rubber, the telescopic rod 26 is used to control the included angle between the scissor arms to realize the extension and retraction of the assembly frame 22. When the blocking plate 29 is in contact with the bottle mouth, the blocking plate 29 forms a closed space with the inside of the bottle body. The scissor arms 23 are connected together by the connecting rod, forming a stable support system, so that the lifting platform remains stable during operation. Moreover, the space occupied by the lifting assembly is relatively small when it is retracted after use. In addition, the lifting assembly has a simple and clear structure, fewer components, and is convenient for checking and maintaining the working state of each component. In summary, the stable support system has the advantages of stability, small space occupation, simple and clear structure, and fewer components. The structure design of the scissor lifting machine can provide a stable working platform during operation, improve work safety, occupy a relatively small space after use, facilitate the operation of other equipment, and have a simple and clear structure, fewer components, and convenient maintenance and inspection, thereby improving the reliability and service life of the equipment.
[0035] Further, the inside of the assembly frame 22 is provided with an L-shaped channel, the bottom of the assembly frame 22 is fixedly installed with a UV unit, the outer wall of the assembly box 24 is installed with an oxygen machine 5, both sides of the oxygen machine 5 are respectively connected with oxygen pipes 12, one end of the L-shaped channel is provided with a communication pipe 26, the oxygen pipes 12 communicate with the L-shaped channel through the communication pipe 26, and oxygen flows to the UV unit through the oxygen pipes 12, the communication pipe 26 and the L-shaped channel. When disinfecting, the lifting assembly pushes the entire assembly frame 22 out, and at the same time, the UV unit on the assembly frame 22 is inserted into the bottle body to disinfect and fill the bottle body with oxygen. Oxygen has strong oxidizing properties and can kill bacteria and other microorganisms. By filling the bottle body with oxygen, it can help remove odors and keep the bottle body clean and hygienic. Through this design, rapid disinfection of objects can be achieved. The oxygen generated by the oxygen machine 5 can provide an oxidizing environment, which has a sterilizing effect. The design of the UV unit can uniformly spray oxygen on the inner surface of the bottle body. The lifting function of the assembly box 24 and the setting of the L-shaped channel enable oxygen to cover every corner of the bottle body, improving the disinfection effect. The function of the lifting assembly is to push the assembly frame 22 out, so that the UV unit can be inserted into the bottle body. The advantage of this design is that the UV unit can contact every corner of the inner surface of the bottle body, ensuring that oxygen can fully cover every part of the bottle body, improving the disinfection effect.
[0036] Further, the outer wall of the blocking plate 29 is provided with an arc-shaped groove, the arc-shaped groove is internally slidably installed with a linkage rod 32, one end of the linkage rod 32 is fixedly connected with a gas blocking plate 33, the other end of the linkage rod 32 is fixedly connected with an arc-shaped trigger block 28, and the trigger block 28 can slide to the inner wall of the arc-shaped groove. The above structure is triggered after the bottle mouth contacts the blocking plate 29 to inject oxygen into the bottle body. When the bottle mouth contacts the blocking plate 29, the arc-shaped trigger block 28 is pushed into the arc-shaped groove. Since the linkage rod 32 is connected with the arc-shaped trigger block 28 and the other end is connected with the gas blocking plate 33, when the arc-shaped trigger block 28 is displaced, the gas blocking plate 33 is also displaced, thereby opening the air inlet channel to inject oxygen into the bottle body. By digging an arc-shaped groove on the outer wall of the blocking plate 29 and installing the linkage rod 32 and the trigger block 28 in the groove, the stability of the entire system can be increased. The arc-shaped groove provides a guide path for the linkage rod 32, enabling the linkage rod 32 to move on a fixed track, reducing the possibility of shaking and deviation. The sliding track of the trigger block 29 overlaps with the arc-shaped groove, and no additional space is needed to install the trigger block 29. This design enables the blocking plate 29 to be folded or fixed in a smaller space after use, without occupying too much space. The above structure ensures the stability of the blocking plate 29 during operation, provides flexibility and convenience for operation, saves space resources, and is easy to maintain and check.
[0037] Further, the outer wall of the blocking plate 29 is provided with a liquid cavity 35, and the top of the liquid cavity 35 is provided with a liquid level instrument 34. The piston 31 is slidably installed in the liquid cavity 35. In the original state, the liquid in the liquid cavity 35 will immerse the liquid level instrument 34. The above structure is the component for detecting the sealing performance of the cosmetic bottle in the application. When the bottle body is filled with oxygen to a preset pressure, the piston 31 will be lifted to push the liquid in the liquid cavity 35 to contact the liquid level instrument 34 under the action of the pressure. At this time, the detection is activated. If the sealing performance of the bottle body is good, the space formed by the blocking plate 29 and the bottle body will not lose pressure, so the piston 31 will not fall down, the liquid will still contact the liquid level instrument 34, and the liquid level instrument 34 will not be triggered. On the contrary, the liquid level instrument 34 will report an abnormality. After sterilization is completed, the operator will pick out the unqualified bottle body, thereby improving work efficiency and convenience.
[0038] Further, the outer wall of the blocking plate 29 is provided with a liquid cavity 35, and the top of the liquid cavity 35 is provided with a liquid level instrument 34. The piston 31 is slidably installed in the liquid cavity 35. In the original state, the liquid in the liquid cavity 35 will immerse the liquid level instrument 34. The above structure is the component for detecting the sealing performance of the cosmetic bottle in the application. When the bottle body is filled with oxygen to a preset pressure, the piston 31 will be lifted to push the liquid in the liquid cavity 35 to contact the liquid level instrument 34 under the action of the pressure. At this time, the detection is activated. If the sealing performance of the bottle body is good, the space formed by the blocking plate 29 and the bottle body will not lose pressure, so the piston 31 will not fall down, the liquid will still contact the liquid level instrument 34, and the liquid level instrument 34 will not be triggered. On the contrary, the liquid level instrument 34 will report an abnormality. After sterilization is completed, the operator will pick out the unqualified bottle body, thereby improving work efficiency and convenience.
[0039] Further, the spray end of the spray pipe 9 is provided in a flared shape, and the surface of the spray end of the spray pipe 9 is further provided with a plurality of small holes. By designing the shape of the spray pipe 9, the sprayed fluid can form a fan-shaped spray range when sprayed. This diffused spraying mode can uniformly disperse the fluid in a larger area, thereby achieving a more extensive coverage and spraying effect. Moreover, since the spray end of the spray pipe 9 is provided in a flared shape and the surface is provided with a plurality of small holes, better spraying effect and spraying control can be achieved during spraying. Compared with the conventional small-diameter spray port, a larger range of coating or cleaning can be achieved under the same spraying flow, thereby saving the use of spraying liquid and energy resources.
[0040] Further, the outer wall of the cabinet 3 is provided with two motors 1, the bottom of the cabinet 3 is fixedly provided with a bearing seat, two rotating rods 15 are rotatably arranged on the bearing seat, one end of each of the two rotating rods 15 is fixedly provided with a gear 7, the two gears 7 are engaged, the outer wall of each of the two rotating rods 15 is fixedly provided with an assembly plate 18, the outer wall of the assembly plate 18 is fixedly provided with a plurality of supporting rods 8, the outer wall of each of the supporting rods 8 is fixedly provided with a jet pipe 9, one end of each of the jet pipes 9 is communicated with the flow guide pipe 17, a plurality of through grooves are arranged in the cabinet 3, the plurality of supporting rods 8 can reach the inside of the cabinet 3 through the through grooves, the output end of one of the motors 1 is provided with an output gear 16, the output gear 16 is engaged with the gear 7, the other motor 1 drives the rotation of the turnover plate 13 through a belt, in the original state, the two assembly plates 18 are parallel to each other, when work is needed, the two assembly plates 18 will be turned out of a plane under the drive of the rotating rod 15, when the cosmetic bottle needs to be cleaned, the turnover assembly is turned to the bottle opening downward at this time, the motor 1 is started, the rotating rod 15 is rotated through the engagement of the gears, when the rotating rod 15 is parallel to the bottom of the cabinet 3, the jet pipe 9 on the outer wall of the assembly plate 18 will enter the inside of the cabinet 3 through the through groove in the bottom of the cabinet 3, at this time, the high-temperature steam of the steam cleaner 2 is sprayed out from the jet pipe 9 along the flow guide pipe 17, realizing the cleaning of the bottle body, the bearing seat in the bottom of the cabinet 3 is provided with two rotating rods 15, the rotating rod 15 can rotate stably through the support of the bearing seat, one end of the rotating rod 15 is fixedly provided with a gear 7, the two gears 7 of the rotating rod 15 are engaged, so that they can move synchronously when rotating, the supporting rod 8 guides the high-temperature and high-pressure water vapor generated by the steam cleaner 2 to a specific direction, so as to clean, compared with the traditional equipment, the high-temperature and high-pressure water vapor is directly sprayed, which can deeply enter the fine gap of the bottle body, completely clean the inside and outside of the bottle body, ensure hygiene, save resources and cost, only need to start the motor 1 to turn the rotating rod 15, without complex operation steps, through the design of the gear 7 and the rotating rod 15, the rotation of the assembly plate 18 and the jet pipe 9 is synchronous, avoiding misalignment and jamming, ensuring the stability and safety of the operation, and the through groove in the bottom of the cabinet 3 can accommodate a plurality of supporting rods 8, so a plurality of jet pipes 9 can be added according to needs, so as to clean a plurality of bottle bodies at the same time, improving the work efficiency.
[0041] Further, the clamps 14 on the turnover plate 13 are detachable, and the part in contact with the bottle is made of silica gel material, in the present application, the detachability of the clamps 14 makes the whole system more flexible and convenient, the clamps can be easily installed and removed, so that when it is necessary to replace or repair the clamps, it can be quickly done. This helps to improve production efficiency and reduce downtime, by providing silica gel material at the part of the clamp 12 in contact with the bottle, additional protection can be provided to reduce wear and damage to the bottle, silica gel has good elasticity and wear resistance, which can effectively reduce the friction and impact force of the clamp on the bottle, which helps to reduce damage and loss caused by the clamp 14, the silica gel material has excellent anti-skid performance, by using silica gel material, a safer and more reliable contact is provided at the part of the clamp in contact with the bottle.
[0042] Working principle: when the cosmetic bottle manufacturing equipment is in use, in the present application, through the cooperation of the above-mentioned mechanism, convenient and fast feeding and discharging can be realized, and the cleaning and effective sterilization and disinfection of the cosmetic bottle can be realized, when in use, first clean, with the bottle mouth facing down, clean the bottle body, when cleaning is completed, the turnover plate will turn the bottle body upside down, at this time the disinfection assembly works, disinfects and sterilizes the inside and outside of the bottle body, compared with the traditional technology, the present application improves the efficiency of disinfection and cleaning, simplifies the operation steps, and is more convenient and fast.
[0043] The standard parts used in the present embodiment can be directly purchased from the market, and the non-standard structural parts according to the description and drawings can also be directly processed according to the existing technical knowledge without any doubt, and the connection mode of each part adopts the mature conventional means in the existing technology, and the machinery, parts and equipment adopt the conventional models in the existing technology, so specific description is not made here.
[0044] Although embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made thereto without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A cosmetic bottle body manufacturing apparatus comprising: Cabinet (3), characterized in that it comprises: The turnover plate (13) is rotatably installed on the inner wall of the cabinet (3), and the turnover plate (13) is provided with a clamp for clamping a batch of bottle bodies; The sterilization assembly includes a UV unit, which can be inserted into the bottle body through the bottle opening and simultaneously seal the bottle opening; The gas filling assembly can inject beneficial gas into the sealed bottle body; The UV unit includes a jet pipe (27), the outer wall of the jet pipe (27) is provided with two annular uv lamps (30), the inner top of the cabinet (3) is provided with a lifting assembly, the UV unit is installed on the lifting assembly, and the inner top of the sterilization assembly is also provided with a plurality of uv lamp tubes (38); The top of the jet pipe (27) is fixedly provided with a blocking plate (29); oxygen flows to the jet pipe (27) through the oxygen pipe (12), the communication pipe (26) and the L-shaped channel; The outer wall of the blocking plate (29) is provided with a liquid cavity (35), the top of the liquid cavity (35) is provided with a liquid level instrument (34), and the inside of the liquid cavity (35) is slidably provided with a piston (31); in the original state, the liquid in the liquid cavity (35) will immerse the liquid level instrument (34).
2. The cosmetic bottle manufacturing apparatus according to claim 1, characterized by: The lifting assembly includes a telescopic rod (36), the output end of the telescopic rod (36) is fixedly connected with a scissor arm (23), the scissor arm (23) has a plurality of scissor arms (23), the scissor arms (23) are all connected through the middle part of the scissor arms (23), the output end of the scissor arm (23) is connected with an assembly frame (22), the outer wall of the assembly frame (22) is provided with a through sliding groove, and the scissor arm (23) is slidably installed in the inner wall of the through sliding groove.
3. The cosmetic bottle manufacturing apparatus according to claim 2, characterized by: The inside of the assembly frame (22) is provided with an L-shaped channel, the bottom of the assembly frame (22) is fixedly provided with a UV unit, the outer wall of the assembly box (24) is provided with an oxygen machine (5), the two sides of the oxygen machine (5) are respectively connected with an oxygen pipe (12), one end of the L-shaped channel is provided with a communication pipe (26), and the oxygen pipe (12) communicates with the L-shaped channel through the communication pipe (26).
4. The cosmetic bottle manufacturing apparatus according to claim 2, characterized by: The outer wall of the blocking plate (29) is provided with an arc-shaped groove, the arc-shaped groove is slidably provided with a linkage rod (32), one end of the linkage rod (32) is fixedly connected with a gas blocking plate (33), the other end of the linkage rod (32) is fixedly connected with an arc-shaped trigger block (28), and the trigger block (28) can slide to the inner wall of the arc-shaped groove.
5. The cosmetic bottle manufacturing apparatus according to claim 1, characterized by: The outer wall of the cabinet is fixedly provided with a steam cleaner (2), the bottom of the steam cleaner (2) is provided with a flow guide pipe (17), one end of the flow guide pipe (17) is connected with a jet pipe (9).
6. The cosmetic bottle manufacturing apparatus according to claim 5, characterized by: The outlet end of the jet pipe (9) is provided in an expanding shape, and the surface of the outlet end of the jet pipe (9) is also provided with a plurality of small holes.
7. The cosmetic bottle manufacturing apparatus according to claim 5, characterized by: The outer wall of the cabinet (3) is provided with two motors (1), the bottom of the cabinet (3) is fixedly provided with a bearing seat, the bearing seat is rotatably provided with two rotating rods (15), one end of each of the two rotating rods (15) is fixedly provided with a gear (7), the two gears (7) are engaged, the outer wall of each of the two rotating rods (15) is fixedly provided with an assembly plate (18), the assembly plate (18) is fixedly provided with a plurality of supporting rods (8), the outer wall of the supporting rod (8) is fixedly provided with a spray pipe (9), one end of the spray pipe (9) is communicated with the flow guide pipe (17), the cabinet (3) is internally provided with a plurality of through grooves, the plurality of supporting rods (8) can reach the inside of the cabinet (3) through the through grooves, the output end of one of the motors (1) is provided with an output gear (16), the output gear (16) is engaged with the gear (7), the other motor (1) drives the rotation of the turnover plate (13) through a belt drive.
8. The cosmetic bottle manufacturing apparatus according to any one of claims 1 to 7, characterized by: The clamp (14) on the turnover plate (13) is detachable, and the part in contact with the bottle is provided with silica gel.
Citation Information
Patent Citations
Skin care product filling packaging container bottle treatment method
CN113102421A
Equipment and method for detecting and removing defects of essence storage bottles
CN115055394A
Brewing filling machine
CN115818546A
Cosmetic filling bottle disinfection device
CN213324059U