A rose cosmetic filling production line
By installing a support structure and an air bubble removal system in the rose cosmetic filling production line, the problems of bottle tipping and air bubbles at the bottle mouth during transportation are solved, achieving efficient filling and aesthetically pleasing cosmetic production.
Patent Information
- Application Number
- CN202311353609.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-19
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2043-10-19
AI Technical Summary
During the bottling process of rose cosmetics, cosmetic bottles are prone to tipping over when being transferred between two adjacent belt conveyors, resulting in reduced production efficiency.
A support mechanism, including a conveyor belt and support components, is installed between the belt conveyors. The conveyor belt drives the support components to rotate and support the cosmetic bottles. The cooperation of sliding plates and guide plates reduces the possibility of the cosmetic bottles tipping over. At the same time, a fan and exhaust pipe system are used to remove air bubbles from the bottle openings. The fan blades break up and collect the air bubbles, reducing the waste of toner.
It effectively prevents cosmetic bottles from tipping over during transportation, improves filling production efficiency, and removes air bubbles from the bottle mouth in a timely manner, thereby enhancing production efficiency and product aesthetics and reducing waste of cosmetics.
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Figure CN117185230B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of cosmetic processing, in particular to a filling production line for rose cosmetics. BACKGROUND
[0002] Rose cosmetics, i.e. skin care products containing rose essence components, are a kind of cosmetic water. Rose flowers contain quercetin, fatty oil, organic acid and other beneficial beauty substances. At the same time, rose has the effects of regulating qi and blood, soothing the liver and relieving depression, reducing fat and losing weight, and moisturizing and beautifying the skin. Therefore, rose water as a beauty product has become increasingly popular.
[0003] In the production process of rose cosmetics, after the cosmetic water is prepared, the cosmetic water needs to be filled and sealed. At present, the filling of cosmetic water is mostly carried out through a filling production line.
[0004] At present, the existing filling production line mostly includes a rack, a plurality of belt conveyors connected end to end are installed on the rack, the plurality of belt conveyors collectively convey the cosmetic bottles, and the running speed of each belt conveyor is different to meet different filling processes. A filling machine, a cap screwing machine and a sealing machine are installed on the rack in sequence. The belt conveyor first conveys the cosmetic bottles to the filling machine, the filling machine is used to fill the cosmetic bottles with cosmetic water, after the filling is completed, the belt conveyor continues to run to convey the cosmetic bottles to the cap screwing machine, the cap screwing machine screws the caps on the cosmetic bottles, and then the belt conveyor conveys the sealed cosmetic bottles to the sealing machine for sealing.
[0005] For the related art in the above, the inventors found that during the filling production process of the cosmetic bottles, when transferring between adjacent two belt conveyors, due to the transfer gap between the adjacent two belt conveyors, the cosmetic bottles are prone to be tilted during each transfer link. After the cosmetic bottles are tilted, manual assistance is needed to arrange the cosmetic bottles, and then the cosmetic bottles can be conveyed forward, which can easily reduce the filling production efficiency of the cosmetic water. SUMMARY
[0006] In order to alleviate the problem that the cosmetic bottles are prone to be tilted during transfer between adjacent two belt conveyors, and the filling production efficiency of the cosmetic water is reduced, the present application provides a filling production line for rose cosmetics.
[0007] The filling production line for rose cosmetics provided by the present application adopts the following technical scheme:
[0008] The application discloses a rose cosmetic filling production line which comprises a rack, a filling mechanism and a plurality of belt conveyors, the belt conveyors are fixedly connected to the rack, two adjacent belt conveyors are connected end to end, the filling mechanism is connected to the rack and is used for filling cosmetic water into cosmetic bottles, a set of supporting mechanisms is arranged between two adjacent belt conveyors, each set of supporting mechanisms comprises a conveying belt and a plurality of supporting pieces, the conveying belt is rotationally connected to the rack, the conveying belt is located at the top of the belt conveyor, the supporting pieces are fixedly connected to the conveying belt, and the supporting pieces are arranged at intervals along the length direction of the conveying belt, and the supporting pieces are used for supporting and holding the cosmetic bottles.
[0009] By adopting the above technical scheme, in the process of filling and conveying the cosmetic bottles, the conveying belt is controlled to drive the plurality of supporting pieces to rotate, when the cosmetic bottle moves to the position below the conveying belt, the cosmetic bottle enters between two adjacent supporting pieces with the rotation of the conveying belt, the two adjacent supporting pieces are used for supporting and holding the cosmetic bottle, the possibility of the cosmetic bottle being overturned in the conveying process is reduced, and the filling production efficiency of the rose cosmetic is ensured.
[0010] Preferably, each supporting piece comprises a supporting plate and a sliding plate, the supporting plate is fixedly connected to the conveying belt, the sliding plate is arranged at the end of the supporting plate away from the conveying belt, and the sliding plate is slidingly connected to the supporting plate.
[0011] By adopting the above technical scheme, when the supporting plate is driven by the conveying belt to rotate to the position above the conveying belt, the sliding plate is retracted into the supporting plate under the action of gravity, when the supporting plate rotates downward with the rotation of the conveying belt, the sliding plate is gradually slid out of the supporting plate under the action of gravity, and then the sliding plate can be slid to the front side of the cosmetic bottle, and the supporting and holding of the cosmetic bottle are ensured.
[0012] Preferably, each set of supporting mechanisms further comprises a guide plate, the guide plate is fixedly connected to the rack, the guide plate is located close to the discharging end of the conveying belt, the guide plate is arranged to be inclined, the guide plate is inclined along the direction away from the ground in the conveying direction of the cosmetic bottle, and the sliding plate is gradually slid into the supporting plate under the guidance of the guide plate.
[0013] By adopting the above technical scheme, when the conveying belt continues to drive the supporting plate and the sliding plate to convey forward after the cosmetic bottle is conveyed under the supporting and holding of the sliding plate, the sliding plate can be moved to the guide plate, the sliding plate is gradually slid upward and retracted into the supporting plate under the inclined guidance of the guide plate, and then the conveying belt drives the supporting plate to overturn upward, so that the possibility that the sliding plate is too long to push the front cosmetic bottle down is reduced.
[0014] Preferably, the filling mechanism comprises a filling frame, a liquid storage tank, a pumping assembly and a liquid injection pipe, the filling frame is fixedly connected to the rack, the liquid storage tank is fixedly connected to the filling frame, the liquid injection pipe is fixedly connected to the filling frame, the pumping assembly is connected to the rack, the liquid injection pipe communicates with the liquid storage tank through the pumping assembly, and the liquid injection pipe is used to fill cosmetic water into the cosmetic bottle.
[0015] By adopting the above technical scheme, the cosmetic bottle is conveyed by the belt conveyor, when the cosmetic bottle is conveyed to the filling position by the belt conveyor, the pumping assembly is started, the cosmetic water in the liquid storage tank is pumped by the pumping assembly, and then pumped into the liquid injection pipe, the cosmetic water can be injected into the cosmetic bottle through the liquid injection pipe, and the filling of the cosmetic water is realized.
[0016] Preferably, the filling frame is provided with a bubble cleaning mechanism, the bubble cleaning mechanism comprises a fan and an air suction pipe, the fan is fixedly connected to the filling frame, the air suction pipe communicates with the air inlet of the fan, and the liquid injection pipe communicates with the air suction pipe.
[0017] By adopting the above technical scheme, after the cosmetic water in the cosmetic bottle is filled, the fan is started, the air suction pipe is negatively pumped by the fan, the bubble at the bottle opening of the cosmetic bottle can be extracted by the liquid injection pipe, so that the bubble at the bottle opening of the cosmetic bottle can be removed in time, and the convenience of cleaning the bubble at the bottle opening of the cosmetic bottle is improved.
[0018] Preferably, a fan blade is rotatably connected in the liquid injection pipe, the fan blade faces the liquid outlet of the liquid injection pipe, a receiving plate is fixedly connected to the inner wall of the liquid injection pipe, the receiving plate is annular, and a liquid storage groove is formed between the receiving plate and the inner wall of the liquid injection pipe.
[0019] By adopting the above technical scheme, after the fan is started to extract the bubble, the gas enters the liquid injection pipe from the liquid outlet of the liquid injection pipe, blows the fan blade in the liquid injection pipe to rotate, the fan blade rotates to crush and block the bubble extracted into the liquid injection pipe, and the bubble can be thrown to the inner wall of the liquid injection pipe under the action of the fan blade, and then flows into the liquid storage groove, so that part of the cosmetic water is recycled, and the waste of the cosmetic water is reduced.
[0020] Preferably, a support rod is rotatably connected in the liquid injection pipe, the fan blade is fixedly connected with the support rod in a coaxial manner, a removal mechanism is arranged on the liquid injection pipe, the removal mechanism comprises a lifting rod and a driving assembly, the lifting rod penetrates through the support rod, the lifting rod is slidingly connected with the support rod, the driving assembly is connected to the liquid injection pipe, and the driving assembly is connected with the lifting rod to drive the lifting rod to slide.
[0021] By adopting the technical scheme, after the liquid injection pipe finishes injecting liquid into the cosmetic bottle, the driving assembly is started, the driving assembly is used to drive the lifting rod to move downwards, the lifting rod can be inserted into the cosmetic water in the cosmetic bottle, then the fan is started to extract the bubbles, the wind drives the fan blade to rotate, the support rod is synchronously driven to rotate, the lifting rod is synchronously driven to rotate, the lifting rod stirs the cosmetic water after filling, the mixed bubbles in the cosmetic water are stirred and removed, and the appearance of the cosmetic water after filling in the cosmetic bottle is ensured.
[0022] Preferably, the driving assembly comprises an oil cylinder, an electric cylinder and an oil outlet pipe, the oil cylinder is fixedly connected to the liquid injection pipe, the oil cylinder is sealingly and slidably connected with a pressing plate, the electric cylinder is fixedly connected to the oil cylinder, the piston rod of the electric cylinder penetrates into the oil cylinder and is fixedly connected with the pressing plate, the oil outlet pipe is in communication with the inside of the oil cylinder, and the oil outlet pipe is in communication with the inside of the support rod.
[0023] By adopting the technical scheme, the electric cylinder is started, the electric cylinder is used to drive the pressing plate to move downwards, the hydraulic oil in the oil cylinder is pressed into the inside of the support rod, the lifting rod is driven to move downwards, the lifting rod is smoothly inserted into the cosmetic bottle, after stirring, the piston rod of the electric cylinder is retracted, and the lifting rod is driven to move back.
[0024] Preferably, the lifting rod is fixedly connected with an extension pipe, the extension pipe is perpendicular to the lifting rod, the oil outlet pipe is communicated with a first branch pipe and a second branch pipe, one end of the first branch pipe away from the oil outlet pipe is in communication with the inside of the support rod, the first branch pipe is provided with a first electric control valve, one end of the second branch pipe away from the oil outlet pipe is in communication with the extension pipe, and the second branch pipe is provided with a second electric control valve.
[0025] By adopting the technical scheme, when it is needed to clean the bubbles in the cosmetic water, the first control valve is opened first, the electric cylinder is started, the lifting rod and the extension pipe on the lifting rod are driven to be inserted into the cosmetic bottle, then the first control valve is closed and the second control valve is opened, the electric cylinder is continuously driven to drive the pressing plate to move downwards, the hydraulic oil in the oil cylinder is pressed into the extension pipe, the extension pipe is elongated, the stirring range of the lifting rod is increased, and the removal effect of the bubbles in the cosmetic water is improved.
[0026] Preferably, a spring is arranged in the extension pipe, one end of the spring is fixedly connected with the lifting rod, and the other end of the spring is fixedly connected with one end of the extension pipe away from the lifting rod.
[0027] By adopting the technical scheme, after the extension pipe is driven to be elongated, the spring arranged in the extension pipe can increase the strength of the extension pipe, and reduce the possibility that the extension pipe is bent and affects the stirring effect of the cosmetic water.
[0028] To sum up, the present application at least includes the following beneficial technical effects:
[0029] 1. By arranging a plurality of supports on the conveying belt, when the cosmetic bottle moves under the conveying belt, the cosmetic bottle is brought into the adjacent two supports with the rotation of the conveying belt, and the adjacent two supports support the cosmetic bottle, thereby reducing the possibility of the cosmetic bottle falling during the transfer process and ensuring the filling production efficiency of the rose cosmetic;
[0030] 2. By connecting the liquid injection pipe and the air extraction pipe, the air bubbles at the bottle opening of the cosmetic bottle can be extracted by the fan negative pressure air extraction of the air extraction pipe, so that the air bubbles at the bottle opening of the cosmetic bottle can be removed in time, and the convenience of cleaning the air bubbles at the bottle opening of the cosmetic bottle is improved;
[0031] 3. By rotating the connecting fan blade in the liquid injection pipe, the fan blade rotates to crush and block the air bubbles extracted into the liquid injection pipe, and the air bubbles can be thrown to the inner wall of the liquid injection pipe under the action of the fan blade, and then flow into the liquid storage groove, thereby realizing the recovery of part of the cosmetic water and reducing the waste of the cosmetic water. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 is a schematic diagram of the overall structure of the embodiment of the present application;
[0033] Figure 2 is a schematic diagram of the structure of the support mechanism in the embodiment of the present application;
[0034] Figure 3 is a schematic diagram of the structure of the filling mechanism in the embodiment of the present application;
[0035] Figure 4 is a schematic diagram of the structure of the air bubble cleaning mechanism in the embodiment of the present application;
[0036] Figure 5 is a schematic diagram of the cross-sectional structure of the liquid injection pipe in the embodiment of the present application;
[0037] Figure 6 is a schematic diagram of the structure of the driving assembly in the embodiment of the present application;
[0038] Figure 7 is a schematic diagram of the structure of the driving assembly in the embodiment of the present application; Figure 5
[0039] Figure 8 is a schematic diagram of the structure of the lifting rod in the embodiment of the present application;
[0040] Figure 9 is a schematic diagram of the structure of the telescopic pipe in the embodiment of the present application.
[0041] 100, rack; 110, belt conveyor; 120, cap screwing machine; 130, plastic sealing machine; 200, filling mechanism; 210, filling rack; 220, liquid storage tank; 230, liquid injection pipe; 240, pumping assembly; 241, water pump; 242, liquid outlet pipe; 300, supporting mechanism; 310, conveying belt; 320, support; 321, support plate; 322, sliding plate; 330, guide plate; 400, bubble cleaning mechanism; 410, fan; 420, air suction pipe; 430, air suction branch pipe; 440, support rod; 450, fan blade; 460, receiving plate; 500, removing mechanism; 510, lifting rod; 520, driving assembly; 521, oil cylinder; 522, pressing plate; 523, electric push cylinder; 524, oil outlet pipe; 525, rotary joint; 526, oil passage; 530, telescopic pipe; 540, spring; 550, first branch pipe; 551, first electric control valve; 560, second branch pipe; 561, second electric control valve. DETAILED DESCRIPTION
[0042] The following will be described in detail below with reference to the accompanying drawings. Figures 1-9 The application is further described in detail.
[0043] The embodiment of the application discloses a filling production line for rose cosmetics.
[0044] Referring to Figure 1 A filling production line for rose cosmetics comprises a rack 100, a plurality of belt conveyors 110 fixedly connected to the rack 100, the plurality of belt conveyors 110 being sequentially arranged along the length direction of the rack 100 and being connected end to end between two adjacent belt conveyors 110. A filling mechanism 200 is installed on the rack 100, and the filling mechanism 200 is used for filling cosmetic water into cosmetic bottles. A cap screwing machine 120 is installed on the rack 100, and the cap screwing machine 120 is used for screwing and sealing the cosmetic bottles. A plastic sealing machine 130 is installed on the rack 100, and the plastic sealing machine 130 is used for plastic sealing the cosmetic bottles. A supporting mechanism 300 is installed on the rack 100 at the transfer position of each adjacent belt conveyor 110, and the supporting mechanism 300 is used for supporting and holding the cosmetic bottles at the transfer position. After the cosmetic water is prepared, the cosmetic bottles are placed at the feeding end of the belt conveyor 110, and the belt conveyor 110 is used for sequentially conveying the cosmetic bottles, so that the cosmetic bottles sequentially pass through the filling mechanism 200, the cap screwing machine 120 and the plastic sealing machine 130. After the filling mechanism 200 fills the cosmetic water into the cosmetic bottles, the cap screwing machine 120 screws and seals the cosmetic bottles, and then the cosmetic bottles pass through the plastic sealing machine 130 to be plastic sealed with a layer of plastic film on the outside of the cosmetic bottles. When the cosmetic bottles are transferred on the two adjacent belt conveyors 110, the supporting mechanism 300 is used for holding the cosmetic bottles, so that the possibility of the cosmetic bottles being overturned during the transfer process is reduced.
[0045] Referring to Figure 1 and Figure 2Each set of supporting mechanism 300 comprises a bracket, a conveying belt 310 is rotationally connected to the bracket, the conveying belt 310 can be driven by a servo motor, the conveying belt 310 is located above the belt conveyor 110, and the conveying direction of the conveying belt 310 is the same as the conveying direction of the belt conveyor 110. A plurality of supporting pieces 320 are installed on the conveying belt 310, and the plurality of supporting pieces 320 are arranged at intervals along the length direction of the conveying belt 310.
[0046] Each supporting piece 320 comprises a supporting plate 321, the supporting plate 321 is fixedly connected to the conveying belt 310, and one end of the supporting plate 321 away from the conveying belt 310 is provided with a sliding plate 322, the sliding plate 322 is parallel to the supporting plate 321, and the sliding plate 322 is slidingly connected to the supporting plate 321. A guide plate 330 is fixedly connected to the bracket, the guide plate 330 is located at the position of the discharging end of the conveying belt 310, the guide plate 330 is inclinedly arranged, and the guide plate 330 gradually inclines upwards along the conveying direction away from the belt conveyor 110. In the process that the belt conveyor 110 runs to convey the cosmetic bottles, the conveying belt 310 synchronously runs to drive the plurality of supporting plates 321 to move, when the cosmetic bottles need to be transferred, the supporting plate 321 and the sliding plate 322 located in front of the cosmetic bottles are just rotated to the front of the cosmetic bottles, the cosmetic bottles are supported and held, the possibility that the cosmetic bottles are tilted in the transfer process is reduced, and the filling production efficiency of the rose cosmetics is ensured; after the cosmetic bottles are transferred, the conveying belt 310 continues to drive the supporting plate 321 and the sliding plate 322 to move forwards, so that the sliding plate 322 moves to the guide plate 330, under the inclined guidance of the guide plate 330, the sliding plate 322 will gradually slide upwards and shrink into the supporting plate 321, and then the conveying belt 310 drives the supporting plate 321 to overturn upwards, so that the possibility that the sliding plate 322 excessively extends outward and pushes the cosmetic bottles in front to fall is reduced.
[0047] With reference to Figure 1 and Figure 3 The filling mechanism 200 comprises a filling rack 210, the filling rack 210 is fixedly connected to the rack 100, a liquid storage tank 220 is fixedly connected to the filling rack 210, and the cosmetic water to be filled is stored in the liquid storage tank 220. A plurality of liquid injection pipes 230 are fixed to the filling rack 210, the plurality of liquid injection pipes 230 are arranged at intervals along the conveying direction of the cosmetic bottles, and each liquid injection pipe 230 is vertically arranged. A plurality of pumping assemblies 240 are installed on the filling rack 210, and the plurality of pumping assemblies 240 are arranged in one-to-one correspondence with the plurality of liquid injection pipes 230.
[0048] With reference to Figure 1 and Figure 3Each pumping assembly 240 comprises a water pump 241 fixedly connected to the filling rack 210, the water pump 241 is communicated with a liquid inlet pipe, the liquid inlet pipe is extended into the liquid storage tank 220 and communicated with the inside of the liquid storage tank 220. The water pump 241 is communicated with a liquid outlet pipe 242, the liquid outlet pipe 242 is communicated with the corresponding liquid injection pipe 230. After the belt conveyor 110 transports the cosmetic bottle to the filling position, the water pump 241 is started, the cosmetic water in the liquid storage tank 220 is extracted by the water pump 241, then is supplied into the liquid injection pipe 230 through the liquid outlet pipe 242, so that the cosmetic water is smoothly injected into the cosmetic bottle, and the filling of the cosmetic bottle is realized.
[0049] With reference to Figure 3 and Figure 4 When the cosmetic water is injected into the cosmetic bottle, a large number of bubbles are often generated at the bottle opening of the cosmetic bottle, the accumulation of too many bubbles at the bottle opening will affect the observation of the liquid content in the cosmetic bottle by the staff, and the bubbles are easy to flow to the bottle body when the cover is broken, which should affect the appearance of the product. In order to facilitate the removal of the bubbles at the bottle opening of the cosmetic bottle, a bubble cleaning mechanism 400 is installed on the filling rack 210, the bubble cleaning mechanism 400 comprises a fan 410 fixedly connected to the filling rack 210, the fan 410 is communicated with a suction pipe 420, the suction pipe 420 is fixedly connected to the filling rack 210, the suction pipe 420 is communicated with a plurality of suction branch pipes 430, the plurality of suction branch pipes 430 are one-to-one corresponding to the plurality of liquid injection pipes 230, and the end of each suction branch pipe 430 away from the suction pipe 420 is communicated with the top of the corresponding liquid injection pipe 230.
[0050] With reference to Figure 4 and Figure 5In order to reduce the waste of cosmetic water during the extraction process of the bubbles, facilitate the recycling of the cosmetic water mixed in the bubbles, the supporting rod 440 is rotatably connected in the liquid injection pipe 230, the supporting rod 440 is vertically arranged, the supporting rod 440 is fixedly connected with the fan blade 450, and the fan blade 450 faces the air inlet of the liquid injection pipe 230. The inner wall of the liquid injection pipe 230 is fixedly connected with the receiving plate 460, the receiving plate 460 is annular, and the receiving plate 460 and the inner wall of the liquid injection pipe 230 form a liquid storage groove for temporarily storing the recycled cosmetic water; the liquid injection pipe 230 is fixedly connected with the recovery pipe, and the recovery pipe is communicated with the liquid storage groove after extending into the liquid injection pipe 230. After the cosmetic water is filled into the cosmetic bottle, the fan 410 is started, the negative pressure air extraction is performed on the air extraction pipe 420 by the fan 410, air is sucked through the bottom ends of the plurality of liquid injection pipes 230, because the liquid injection pipe 230 is located above the bottle opening of the cosmetic bottle, the liquid injection pipe 230 will synchronously suck the bubbles at the bottle opening of the cosmetic bottle during the air suction process, the gas at the bottle opening of the cosmetic bottle is removed; after the air enters the liquid injection pipe 230, the fan blade 450 is blown to rotate, the fan blade 450 rotates to crush the bubbles mixed in the air, and the cosmetic water mixed in the bubbles is swung to the inner wall of the liquid injection pipe 230, then the cosmetic water in the liquid injection pipe 230 is stored and recycled in the liquid storage groove, and the amount of waste cosmetic water is reduced.
[0051] Referring to Figure 5 After the cosmetic water is injected into the cosmetic bottle, there are often many bubbles in the cosmetic water in the cosmetic bottle, which affects the appearance of the cosmetic water, therefore, the removal mechanism 500 is installed on each liquid injection pipe 230, and the removal mechanism 500 is used for removing the internal bubbles of the cosmetic water in the cosmetic bottle.
[0052] The removal mechanism 500 comprises the lifting rod 510, the lifting rod 510 is arranged in the hollow interior of the supporting rod 440 from the bottom end of the supporting rod 440, the lifting rod 510 is sealingly and slidably connected with the supporting rod 440, the driving assembly 520 is installed on the liquid injection pipe 230, and the driving assembly 520 is used for lifting the lifting rod 510 to insert the lifting rod 510 into the cosmetic bottle.
[0053] Referring to Figure 5 , Figure 6 and Figure 7The driving assembly 520 comprises an oil cylinder 521 fixedly connected to the side wall of the liquid injection pipe 230, the oil cylinder 521 containing hydraulic oil, the oil cylinder 521 being fixedly connected with an electric push cylinder 523, the electric push cylinder 523 being vertically arranged, the piston rod of the electric push cylinder 523 extending into the oil cylinder 521 and being fixedly connected with a pressing plate 522, the pressing plate 522 being sealingly and slidingly connected in the oil cylinder 521, the bottom of the oil cylinder 521 being communicated with an oil outlet pipe 524, one end of the oil outlet pipe 524 away from the oil cylinder 521 being fixedly connected with a rotary joint 525, the rotary joint 525 being communicated with the oil outlet pipe 524, one end of the rotary joint 525 away from the oil outlet pipe 524 being communicated with an oil passage pipe 526, the oil passage pipe 526 being fixedly connected to the top end of the supporting rod 440, the oil passage pipe 526 being communicated with the inside of the supporting rod 440, and the rotation axis of the rotary joint 525 being collinear with the rotation axis of the supporting rod 440.
[0054] With reference to Figure 7 , Figure 8 and Figure 9The side wall of the lifting rod 510 is fixedly connected with an elastic tube 530, the elastic tube 530 is a hollow bellows structure, a spring 540 is installed in the elastic tube 530, one end of the spring 540 is fixedly connected with the lifting rod 510, the other end of the spring 540 is fixedly connected with the end of the elastic tube 530 away from the lifting rod 510, and the spring 540 applies a force to the elastic tube 530 to make it contract. The first branch pipe 550 and the second branch pipe 560 are communicated with the oil pipe 526, the end of the first branch pipe 550 away from the oil pipe 526 extends into the inside of the support rod 440 and is communicated with the inside of the support rod 440, the first electric control valve 551 is installed on the first branch pipe 550, and the first electric control valve 551 is used for controlling the opening and closing of the first branch pipe 550. The second branch pipe 560 extends into the oil pipe 526 and is communicated with the elastic tube 530 through the lifting rod 510, the second branch pipe 560 is a flexible pipe, and the second electric control valve 561 is installed on the second branch pipe 560. Before the air bubbles in the bottle mouth of the cosmetic bottle are removed, the electric push cylinder 523 is started first, and the first electric control valve 551 is opened, the lifting rod 510 is driven to move downward by the electric push cylinder 523, the hydraulic oil in the oil cylinder 521 is pressed into the support rod 440, so that the lifting rod 510 moves downward and is inserted into the cosmetic water in the cosmetic bottle, then the first electric control valve 551 is closed, the second electric control valve 561 is opened, and the hydraulic oil is pressed into the elastic tube 530 through the second branch pipe 560 by continuously pressing the pressing plate 522, so that the elastic tube 530 extends outward, and then the air bubbles are extracted by starting the fan 410, in the process of extracting the air bubbles, the support rod 440 is driven to rotate by the wind power driving the fan blade 450 to rotate, in other embodiments, when the cosmetic water is relatively viscous, the support rod 440 can be driven to rotate by the cooperation of the motor and the gear; the lifting rod 510 and the elastic tube 530 are driven to rotate by the rotation of the support rod 440, so that the lifting rod 510 and the elastic tube 530 can stir the cosmetic water filled in the cosmetic bottle, so that the air bubbles remaining in the cosmetic water can be removed synchronously, and the convenience of removing the air bubbles in the cosmetic water is improved.
[0055] The implementation principle of the embodiment of the rose cosmetic filling production line is as follows: a plurality of support plates 321 and sliding plates 322 are arranged on the conveying belt 310. During the conveying of the cosmetic bottles by the belt conveyor 110, when the cosmetic bottles enter the transfer position, the conveying belt 310 first drives one of the support plates 321 to rotate to the front of the cosmetic bottle, and then the sliding plate 322 automatically slides under the action of its own gravity to form a support and support in front of the cosmetic bottle, thereby reducing the possibility of the cosmetic bottle being tilted during the transfer process and ensuring the filling production efficiency of the rose cosmetic; after the cosmetic bottle is smoothly transferred, the sliding plate 322 slides into the inside of the support plate 321 under the guidance of the guide plate 330, and then the conveying belt 310 drives the support plate 321 to overturn upward, thereby reducing the possibility that the sliding plate 322 is too long to extend outward and pushes the front cosmetic bottle down.
[0056] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application. Therefore, equivalent changes made on the basis of the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A filling production line for rose cosmetics, characterized in that: The device comprises a rack (100), a filling mechanism (200) and a plurality of belt conveyors (110), the plurality of belt conveyors (110) are fixedly connected to the rack (100), two adjacent belt conveyors (110) are connected end to end, the filling mechanism (200) is connected to the rack (100), the filling mechanism (200) is used for filling cosmetic water into cosmetic bottles, a set of supporting mechanisms (300) are arranged between two adjacent belt conveyors (110), each set of supporting mechanisms (300) comprises a conveyor belt (310) and a plurality of supporting pieces (320), the conveyor belt (310) is rotatably connected to the rack (100), the conveyor belt (310) is located at the top of the belt conveyor (110), the plurality of supporting pieces (320) are fixedly connected to the conveyor belt (310), the plurality of supporting pieces (320) are arranged along the length direction of the conveyor belt (310), and the supporting pieces (320) are used for supporting and holding cosmetic bottles; The filling mechanism (200) comprises a filling rack (210), a liquid storage tank (220), a pumping assembly (240) and a liquid injection pipe (230), the filling rack (210) is fixedly connected to the rack (100), the liquid storage tank (220) is fixedly connected to the filling rack (210), the liquid injection pipe (230) is fixedly connected to the filling rack (210), the pumping assembly (240) is connected to the rack (100), the liquid injection pipe (230) is in communication with the liquid storage tank (220) through the pumping assembly (240), and the liquid injection pipe (230) is used for filling cosmetic water into cosmetic bottles; The filling rack (210) is provided with a bubble cleaning mechanism (400), the bubble cleaning mechanism (400) comprises a fan (410) and a suction pipe (420), the fan (410) is fixedly connected to the filling rack (210), the suction pipe (420) is in communication with the air inlet of the fan (410), and the liquid injection pipe (230) is in communication with the suction pipe (420); A fan blade (450) is rotatably connected in the liquid injection pipe (230), the fan blade (450) faces the liquid outlet of the liquid injection pipe (230), a receiving plate (460) is fixedly connected to the inner wall of the liquid injection pipe (230), the receiving plate (460) is annular, and a liquid storage groove is formed between the receiving plate (460) and the inner wall of the liquid injection pipe (230); The liquid injection pipe (230) is rotationally connected with a support rod (440), the fan blade (450) is coaxially fixedly connected with the support rod (440), the liquid injection pipe (230) is provided with a removal mechanism (500), the removal mechanism (500) comprises a lifting rod (510) and a driving assembly (520), the lifting rod (510) is provided on the support rod (440), the lifting rod (510) is slidably connected with the support rod (440), the driving assembly (520) is connected on the liquid injection pipe (230), and the driving assembly (520) is connected with the lifting rod (510) to drive the lifting rod (510) to slide; The driving assembly (520) comprises an oil cylinder (521), an electric push cylinder (523) and an oil outlet pipe (524), the oil cylinder (521) is fixedly connected on the liquid injection pipe (230), the oil cylinder (521) is sealingly and slidably connected with a pressing plate (522), the electric push cylinder (523) is fixedly connected on the oil cylinder (521), the piston rod of the electric push cylinder (523) penetrates into the oil cylinder (521) and is fixedly connected with the pressing plate (522), the oil outlet pipe (524) is in communication with the inside of the oil cylinder (521), and the oil outlet pipe (524) is in communication with the inside of the support rod (440); The lifting rod (510) is fixedly connected with a telescopic pipe (530), the telescopic pipe (530) is vertically arranged on the lifting rod (510), the oil outlet pipe (524) is in communication with a first branch pipe (550) and a second branch pipe (560), one end of the first branch pipe (550) away from the oil outlet pipe (524) is in communication with the inside of the support rod (440), the first branch pipe (550) is provided with a first electric control valve (551), one end of the second branch pipe (560) away from the oil outlet pipe (524) is in communication with the telescopic pipe (530), and the second branch pipe (560) is provided with a second electric control valve (561); The telescopic pipe (530) is provided with a spring (540), one end of the spring (540) is fixedly connected with the lifting rod (510), and the other end of the spring (540) is fixedly connected with one end of the telescopic pipe (530) away from the lifting rod (510).
2. The rose cosmetic filling production line according to claim 1, characterized in that: Each of the support pieces (320) comprises a support plate (321) and a sliding plate (322), the support plate (321) is fixedly connected on the conveying belt (310), the sliding plate (322) is provided on one end of the support plate (321) away from the conveying belt (310), and the sliding plate (322) is slidably connected with the support plate (321).
3. The rose cosmetic filling production line according to claim 2, characterized in that: Each of the support mechanisms (300) further comprises a guide plate (330) fixedly connected to the rack (100), the guide plate (330) being located close to the discharge end of the conveying belt (310), the guide plate (330) being obliquely arranged, the guide plate (330) being inclined away from the ground in the direction of the conveying direction of the cosmetic bottle, the sliding plate (322) sliding step by step to the inside of the support plate (321) under the guidance of the guide plate (330).
Citation Information
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