A filling machine for producing cream skin care products
By designing a paste-like skin care filling machine with integrated feeding, filling and conveying weighing functions, the problem of low filling efficiency of paste-like skin care in the prior art is solved, automatic quantitative filling is realized, and production efficiency is improved.
Patent Information
- Application Number
- CN202011238497.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-11-09
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2040-11-09
AI Technical Summary
In the prior art, filling of paste-shaped skin care products mainly relies on small man-made extrusion filling machines, resulting in low work efficiency and high artificial force consumption.
A filling machine for the production of paste-like skin care products is designed, including a feeding mechanism and a filling mechanism, and combined with a conveying weighing mechanism, it realizes automatic quantitative filling of paste-like materials.
Through the automated feeding and infusion process, work efficiency is significantly improved, the demand for manual operation is reduced, and efficient production of paste-like skin care products is achieved.
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Figure CN112224468B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of skin care product production equipment, and more specifically, to a filling machine for producing cream skin care products. Background Art
[0002] Filling is a means of sealing some products. There are many types of filling, and there are large filling machines and small filling machines, which are used in different industries. There are liquid filling and semi-solid filling. Generally, liquid filling is used to fill some beverage products, while semi-solid filling is used to fill some paste-like objects.
[0003] At present, when some cream skin care products are filled, small filling machines are generally used. However, such small filling machines usually perform filling by manual squeezing, which not only consumes a lot of manpower but also has low work efficiency. Summary of the invention
[0004] In order to overcome the defects of the prior art, the technical problem to be solved by the present invention is to propose a filling machine for the production of cream skin care products, which has a novel structure and can realize automatic quantitative filling of cream skin care products, thereby effectively improving work efficiency.
[0005] To achieve this object, the present invention adopts the following technical solutions:
[0006] The present invention provides a filling machine for producing cream skin care products, comprising a feeding mechanism, a perfusion mechanism installed on one side of the feeding mechanism, the feeding port of the perfusion mechanism being connected with the discharging port of the feeding mechanism; the discharging port of the perfusion mechanism is arranged downward; a conveying and weighing mechanism for conveying containers is arranged below the perfusion mechanism; the perfusion mechanism comprises a feeding cylinder, a glue discharging head is installed at the bottom end of the feeding cylinder, a first infrared sensor is installed on one side of the glue discharging head, a threaded rod is installed inside the feeding cylinder, the top end of the threaded rod protrudes from the top end of the feeding cylinder and is drivingly connected to the output shaft of the first motor; the top side wall of the feeding cylinder is connected with the discharging port of the feeding mechanism; the conveying and weighing mechanism comprises a first conveying platform, a second conveying platform, an electronic scale and a third conveying platform, the conveying surfaces of the first conveying platform, the second conveying platform and the third conveying platform are all flush with the top surface of the electronic scale, and the first conveying platform, the electronic scale and the second conveying platform are all flush with the top surface of the electronic scale. The conveying platforms are in the same straight line, and the electronic scale is located between the first conveying platform and the second conveying platform, the third conveying platform is located on one side of the first conveying platform, and the conveying direction of the third conveying platform is perpendicular to the conveying direction of the first conveying platform, and a first separation mechanism and a second separation mechanism are installed on one side of the third conveying platform, the first separation mechanism is located on the output end side of the third conveying platform, and the second separation mechanism is located on the side of the first separation mechanism away from the first conveying platform, and the first separation mechanism and the second separation mechanism are used to independently separate the containers on the third conveying platform; a linear slide is provided on the side of the first conveying platform away from the third conveying platform, the linear slide extends along the conveying direction of the first conveying platform, and the end extends to the second conveying platform, a push plate is fixedly provided on the slider of the linear slide, the bottom of the push plate is arranged close to the conveying surface of the first conveying platform, and a second infrared sensor is installed on the push plate.
[0007] In a preferred technical solution of the present invention, the feeding mechanism includes a material barrel and a barrel cover, the barrel cover is connected to a feeding pipe and a discharge pipe, the top end of the feeding pipe is provided with an end cover, and the discharge pipe is connected to the top side wall of the feeding cylinder; a piston plate is provided inside the material barrel, the piston plate is adapted to the internal shape of the material barrel and is sealingly slidably matched with the inner wall of the material barrel, the bottom of the material barrel is connected to an exhaust pipe, a solenoid valve is provided on the exhaust pipe, an air compressor is provided on one side of the material barrel, and the air outlet of the air compressor is connected to the bottom of the material barrel through an air supply pipe.
[0008] In a preferred technical solution of the present invention, the material barrel is in a rectangular barrel structure, the piston plate is adapted to the inner wall of the material barrel, the side wall of the material barrel is fixed with a vertically arranged guide strip, the piston plate is provided with a guide groove corresponding to the guide strip, and the piston plate moves along the guide strip through the guide groove.
[0009] In a preferred technical solution of the present invention, a blocking structure is installed on the side of the barrel close to the feed cylinder, and the blocking structure includes a second motor. The output shaft of the second motor is fixed with a baffle, and the top surface of the baffle is flush with the port of the glue discharge head. The baffle rotated into place can block the glue discharge head.
[0010] In a preferred technical solution of the present invention, a limit frame is fixedly provided on the side wall of the barrel, and a limit groove is provided on the limit frame. The groove width of the limit groove is adapted to the thickness of the baffle, and the baffle is placed in the limit groove near one end of the barrel.
[0011] In a preferred technical solution of the present invention, the first conveying platform includes first vertical plates arranged opposite to each other, a plurality of first rollers mounted between the two first vertical plates, and the structure of the second conveying platform is the same as that of the first conveying platform; the third conveying platform includes second vertical plates arranged opposite to each other, a plurality of second rollers mounted between the two second vertical plates, a third motor is installed on the second vertical plate, and the plurality of second rollers and the third motor are connected by a sprocket chain transmission; the first separation mechanism includes a lead screw, which is driven by a fourth motor, and an insert plate is fixedly provided on the slider of the lead screw, and the insert plate can movably pass through the second vertical plate and extend into the inner side of the third conveying platform, and the structure of the second separation mechanism is the same as that of the first separation mechanism; a third infrared sensor is installed on the second vertical plate between the first separation mechanism and the second separation mechanism.
[0012] The beneficial effects of the present invention are:
[0013] The present invention provides a filling machine for the production of cream skin care products, which has a novel structure. The design and coordination of the feeding mechanism and the filling mechanism can supply and extrude the paste material to facilitate subsequent filling. The design of the conveying and weighing mechanism can automatically convey and separate the containers and can adjust the filling volume to achieve quantitative filling. The overall work has a high degree of automation, which can effectively improve work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural schematic diagram of a filling machine for producing cream skin care products provided in a specific embodiment of the present invention;
[0015] Figure 2 It is a schematic diagram of the internal structure of the feeding mechanism and the filling mechanism provided in a specific embodiment of the present invention;
[0016] Figure 3 It is a top view of the conveying and weighing mechanism provided in a specific embodiment of the present invention.
[0017] In the figure:
[0018] 100, feeding mechanism; 110, material barrel; 120, barrel cover; 130, feeding pipe; 140, discharge pipe; 150, piston plate; 160, exhaust pipe; 170, air compressor; 180, air pipe; 190, guide strip; 200, filling mechanism; 210, feeding barrel; 220, glue head; 230, first infrared sensor; 240, threaded rod; 250, first motor; 300, conveying and weighing mechanism; 310, first conveying platform; 311, first vertical plate; 312, first roller; 320, second conveyor platform; 330, third conveyor platform; 331, second vertical plate; 332, second roller; 333, third motor; 340, electronic scale; 350, linear slide; 360, push plate; 370, second infrared sensor; 380, third infrared sensor; 410, first separation mechanism; 411, lead screw; 412, fourth motor; 413, plug plate; 420, second separation mechanism; 500, blocking structure; 510, second motor; 520, baffle; 530, limit frame. DETAILED DESCRIPTION
[0019] The technical solution of the present invention is further described below with reference to the accompanying drawings and through specific implementation methods.
[0020] like Figures 1 to 3As shown, a specific embodiment of the present invention discloses a filling machine for producing cream skin care products, including a feeding mechanism 100, a filling mechanism 200 installed on one side of the feeding mechanism 100, the feeding port of the filling mechanism 200 is connected with the discharge port of the feeding mechanism 100; the discharge port of the filling mechanism 200 is arranged downward; a conveying weighing mechanism 300 for conveying containers is provided below the filling mechanism 200; the filling mechanism 200 includes a feeding cylinder 210, a glue discharge head 220 is installed at the bottom end of the feeding cylinder 210, a first infrared sensor 230 is installed on one side of the glue discharge head 220, and the first infrared sensor 230 is installed on the first side of the glue discharge head 220. A threaded rod 240 is installed inside the feeding cylinder 210, and the top end of the threaded rod 240 protrudes from the top end of the feeding cylinder 210 and is drivingly connected to the output shaft of the first motor 250; the top side wall of the feeding cylinder 210 is connected to the discharge port of the feeding mechanism 100; the conveying and weighing mechanism 300 includes a first conveying platform 310, a second conveying platform 320, an electronic scale 340, and a third conveying platform 330. The conveying surfaces of the first conveying platform 310, the second conveying platform 320, and the third conveying platform 330 are all flush with the top surface of the electronic scale 340. 0, the second conveying platform 320 is in the same straight line, and the electronic scale 340 is located between the first conveying platform 310 and the second conveying platform 320, the third conveying platform 330 is located on one side of the first conveying platform 310, and the conveying direction of the third conveying platform 330 is perpendicular to the conveying direction of the first conveying platform 310, and a first separation mechanism 410 and a second separation mechanism 420 are installed on one side of the third conveying platform 330, the first separation mechanism 410 is located on the output end side of the third conveying platform 330, and the second separation mechanism 420 is located on the first separation mechanism 410 away from the first output end side. On one side of the conveying platform 310, the first separation mechanism 410 and the second separation mechanism 420 are used to independently separate the containers on the third conveying platform 330; a linear slide 350 is provided on the side of the first conveying platform 310 away from the third conveying platform 330, and the linear slide 350 extends along the conveying direction of the first conveying platform 310, and the end extends to the second conveying platform 320, and a push plate 360 is fixed on the slider of the linear slide 350, and the bottom of the push plate 360 is arranged close to the conveying surface of the first conveying platform 310, and a second infrared sensor 370 is installed on the push plate 360.
[0021] The above-mentioned filling machine for the production of cream skin care products has a novel structure. The design and coordination of the feeding mechanism 100 and the filling mechanism 200 can supply and extrude the paste material to facilitate subsequent filling; and the design of the conveying and weighing mechanism 300 can automatically convey and separate the containers, and can strive for the filling amount to achieve quantitative filling. The overall work has a high degree of automation, which can effectively improve work efficiency.
[0022] Furthermore, the feeding mechanism 100 includes a barrel 110 and a barrel cover 120, the barrel cover 120 is connected to a feeding pipe 130 and a discharge pipe 140, the top of the feeding pipe 130 is provided with an end cover, and the discharge pipe 140 is connected to the top side wall of the feeding cylinder 210; the inside of the barrel 110 is provided with a piston plate 150, the piston plate 150 is adapted to the shape of the inside of the barrel 110, and is sealed and slidably matched with the inner wall of the barrel 110, and the bottom of the barrel 110 is connected to an exhaust pipe 160, and the exhaust pipe 160 is connected to the bottom of the barrel 110. An electromagnetic valve is provided on 60 for pressure relief, and an air compressor 170 is provided on one side of the barrel 110. The air outlet of the air compressor 170 is connected to the bottom of the barrel 110 through an air pipe 180. This structural design can use a pneumatic method to push and supply the paste material in the barrel 110, and push it from bottom to top to ensure the continuity of material supply. In addition, the piston plate 150 is sealed and slidably matched with the inner wall of the barrel 110, and the material adhering to the inner wall of the barrel 110 can be scraped and brushed, effectively preventing the paste material from adhering to the inner wall of the barrel 110.
[0023] Furthermore, the barrel 110 has a rectangular barrel structure, the piston plate 150 is adapted to the inner wall of the barrel 110, the side wall of the barrel 110 is fixedly provided with a vertically arranged guide bar 190, the piston plate 150 is provided with a guide groove corresponding to the guide bar 190, and the piston plate 150 moves along the guide bar 190 through the guide groove; this structural design can effectively limit the movement of the piston plate 150 so as to smoothly push the material.
[0024] Furthermore, a blocking structure 500 is installed on one side of the barrel 110 close to the feed cylinder 210, and the blocking structure 500 includes a second motor 510, and a baffle 520 is fixedly provided on the output shaft of the second motor 510, and the top surface of the baffle 520 is flush with the port of the glue discharge head 220, and the baffle 520 rotated into place can block the glue discharge head 220; this structural design can block the port of the glue discharge head 220, effectively preventing the dripping of material.
[0025] Furthermore, a limit frame 530 is fixedly provided on the side wall of the material barrel 110, and a limit groove is provided on the limit frame 530. The groove width of the limit groove is adapted to the thickness of the baffle 520, and the end of the baffle 520 close to the material barrel 110 is placed in the limit groove; this structural design can support the end of the baffle 520, increase the force on the baffle 520, and further strengthen the blocking of the glue discharge head 220.
[0026] Furthermore, the first conveying platform 310 includes first vertical plates 311 arranged opposite to each other, and a plurality of first rollers 312 arranged between the two first vertical plates 311. The structure of the second conveying platform 320 is the same as that of the first conveying platform 310. The third conveying platform 330 includes second vertical plates 331 arranged opposite to each other, and a plurality of second rollers 332 arranged between the two second vertical plates 331. A third motor 333 is installed on the second vertical plate 331. The plurality of second rollers 332 and the third motor 333 are connected through a sprocket chain transmission. The first separating mechanism 410 includes a lead screw 411, which is driven by a fourth motor 412. A plug plate 413 is fixed on the slider of the lead screw 411, and the plug plate 413 can be movably penetrated. The second separation mechanism 420 passes through the second vertical plate 331 and extends into the inner side of the third conveying platform 330, and has the same structure as the first separation mechanism 410; the second vertical plate 331 is provided with a third infrared sensor 380 between the first separation mechanism 410 and the second separation mechanism 420; the design of the first conveying platform 310 and the second conveying platform 320 can facilitate the movement of the containers, and the design of the linear slide 350 and the push plate 360 can drive the separated containers to move to the electronic scale 340 for quantitative filling, and can also push the filled products away from the electronic scale 340 for subsequent packaging; the cooperation of the third conveying platform 330, the first separation mechanism 410 and the second separation mechanism 420 can separate the containers independently.
[0027] Working principle:
[0028] When the present invention is working, the staff arranges the containers on the third conveyor platform 330. At this time, the plug plate of the first separation mechanism 410 is in an extended state, the output end of the third conveyor platform 330 is blocked, the equipment is started, the third motor 333 is started, and the plurality of second rollers 332 are rotated, so that the arranged containers move to the output end of the third conveyor platform 330. The containers are closely arranged under the limitation of the first separation mechanism 410. Then the second separation mechanism 420 is started and the plug plate is pushed in to separate the containers at the end position. Then the first separation mechanism 410 withdraws the plug plate, and the separated containers enter the first conveyor platform 310 under the transportation of the third conveyor platform 330. The second infrared sensor 370 detects that the container moves to the first conveyor platform 310. The linear slide 350 is started to drive the push plate 360 to move toward the direction of the electronic scale 340. When the first infrared sensor 230 detects the container, the linear slide 350 drives the push plate 360 to move toward the electronic scale 340. The push plate 360 moves back a preset distance to separate the push plate 360 from the container; then, the blocking structure 500 releases the blocking of the glue head 220, the feeding mechanism 100 and the filling mechanism 200 are started, and the paste material is injected into the container through the glue head 220. When the electronic scale 340 detects that the preset filling amount has been reached, the filling mechanism 200 and the feeding mechanism 100 stop moving, and the blocking structure 500 is started to block the glue head 220; then, the linear slide 350 is started again to push the container containing the material away from the electronic scale 340 and move toward the second conveying platform 320 to complete the filling; the above steps are repeated to realize automatic and continuous filling action; it should be noted that during the filling process, the first separation mechanism 410 pushes the plug plate out again, and the second separation mechanism 420 retracts the plug plate. When the third infrared sensor 380 detects that the container has moved into place, the second separation mechanism 420 pushes the plug plate out, thereby realizing independent separation of the container.
[0029] The present invention is described by preferred embodiments, and those skilled in the art will appreciate that various changes or equivalent substitutions may be made to these features and embodiments without departing from the spirit and scope of the present invention. The present invention is not limited to the specific embodiments disclosed herein, and other embodiments falling within the claims of this application are within the scope of protection of the present invention.
Claims
1. A filling machine for the production of cream skin care products, Features: It comprises a feeding mechanism (100), a pouring mechanism (200) installed on one side of the feeding mechanism (100), the feeding port of the pouring mechanism (200) being connected to the discharging port of the feeding mechanism (100); the discharging port of the pouring mechanism (200) being arranged downward; and a conveying weighing mechanism (300) for conveying containers is arranged below the pouring mechanism (200); The pouring mechanism (200) comprises a feeding cylinder (210), a glue discharging head (220) is installed at the bottom end of the feeding cylinder (210), a first infrared sensor (230) is installed on one side of the glue discharging head (220), a threaded rod (240) is installed inside the feeding cylinder (210), the top end of the threaded rod (240) protrudes from the top end of the feeding cylinder (210) and is drivingly connected to the output shaft of the first motor (250); the top side wall of the feeding cylinder (210) is connected to the discharge port of the feeding mechanism (100); The conveying and weighing mechanism (300) comprises a first conveying platform (310), a second conveying platform (320), an electronic scale (340), and a third conveying platform (330); the conveying surfaces of the first conveying platform (310), the second conveying platform (320), and the third conveying platform (330) are all flush with the top surface of the electronic scale (340); the first conveying platform (310), the electronic scale (340), and the second conveying platform (320) are in the same straight line, and the electronic scale (340) is located between the first conveying platform (310) and the second conveying platform (320); the third conveying platform (330) is located on one side of the first conveying platform (310), and the conveying direction of the third conveying platform (330) is perpendicular to the conveying direction of the first conveying platform (310); a first separation mechanism (410) and a second separation mechanism (420) are installed on one side of the third conveying platform (330); The first separation mechanism (410) is located at one side of the output end of the third conveyor platform (330), and the second separation mechanism (420) is located at one side of the first separation mechanism (410) away from the first conveyor platform (310). The first separation mechanism (410) and the second separation mechanism (420) are used to independently separate the containers on the third conveyor platform (330); a linear slide (350) is provided at one side of the first conveyor platform (310) away from the third conveyor platform (330), and the linear slide (350) extends along the conveying direction of the first conveyor platform (310), and the end thereof extends to the second conveyor platform (320). A push plate (360) is fixedly provided on the slider of the linear slide (350), and the bottom of the push plate (360) is arranged close to the conveying surface of the first conveyor platform (310). A second infrared sensor (370) is installed on the push plate (360); The feeding mechanism (100) comprises a material barrel (110) and a barrel cover (120); the barrel cover (120) is connected to a feeding pipe (130) and a discharge pipe (140); an end cap is provided at the top of the feeding pipe (130); the discharge pipe (140) is connected to the top side wall of the feeding cylinder (210); a piston plate (150) is provided inside the material barrel (110); the piston plate (150) is adapted to the shape of the inside of the material barrel (110) and is in sealing and sliding cooperation with the inner wall of the material barrel (110); An exhaust pipe (160) is provided at the bottom, and a solenoid valve is provided on the exhaust pipe (160); an air compressor (170) is provided at one side of the barrel (110); an air outlet of the air compressor (170) is connected to the bottom of the barrel (110) via an air pipe (180); the first conveying platform (310) comprises first vertical plates (311) arranged opposite to each other, and a plurality of first rollers (312) mounted between two of the first vertical plates (311); the structure of the second conveying platform (320) is the same as that of the first conveying platform (310); The third conveying platform (330) comprises second vertical plates (331) arranged opposite to each other, a plurality of second rollers (332) arranged between the two second vertical plates (331), a third motor (333) being mounted on the second vertical plates (331), and the plurality of second rollers (332) and the third motor (333) being connected via a sprocket chain transmission; The first separation mechanism (410) comprises a lead screw (411), the lead screw (411) being driven by a fourth motor (412), a plug plate (413) being fixedly provided on a slider of the lead screw (411), the plug plate (413) being movably inserted through the second vertical plate (331) and extending into the inner side of the third conveying platform (330), the second separation mechanism (420) having the same structure as the first separation mechanism (410); and a third infrared sensor (380) being installed on the second vertical plate (331) between the first separation mechanism (410) and the second separation mechanism (420).
2. A filling machine for producing cream skin care products according to claim 1, Features: The material barrel (110) is in a rectangular barrel structure, the piston plate (150) is adapted to the inner wall of the material barrel (110), a vertically arranged guide strip (190) is fixedly provided on the side wall of the material barrel (110), the piston plate (150) is provided with a guide groove corresponding to the guide strip (190), and the piston plate (150) moves along the guide strip (190) through the guide groove.
3. A filling machine for producing cream skin care products according to claim 2, Features: A blocking structure (500) is installed on one side of the barrel (110) close to the feed cylinder (210), and the blocking structure (500) includes a second motor (510). A blocking piece (520) is fixedly provided on the output shaft of the second motor (510), and the top surface of the blocking piece (520) is flush with the port of the glue discharge head (220). When the blocking piece (520) is rotated into place, it can block the glue discharge head (220).
4. A filling machine for producing cream skin care products according to claim 3, Features: A limiting frame (530) is fixedly provided on the side wall of the material barrel (110), and a limiting groove is provided on the limiting frame (530). The groove width of the limiting groove is adapted to the thickness of the blocking piece (520), and one end of the blocking piece (520) close to the material barrel (110) is placed in the limiting groove.
Citation Information
Patent Citations
Filling machine for pasty skin care product production
CN213594581U