Cosmetic filling machine with conditioning function

By using a mechanical linkage quantitative filling mechanism, the problems of high energy consumption and high failure rate of cosmetic filling machines have been solved, realizing a low-energy, quantitatively accurate filling process that can adapt to different filling needs.

CN224529084UActive Publication Date: 2026-07-21SHANGHAI LAPLACE HEALTH MANAGEMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI LAPLACE HEALTH MANAGEMENT CO LTD
Filing Date
2025-07-11
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing cosmetic filling machines rely on peristaltic pumps, and the continuous operation of the motor leads to high energy consumption and frequent failures, and they are difficult to adapt to filling needs of different capacities.

Method used

It adopts a mechanical linkage quantitative filling mechanism, which realizes automatic quantitative filling through the mechanical structure of rotating frustum and annular chute. Combined with quantitative component and elastic limit component, it uses solenoid valve to control the discharge, abandoning the traditional peristaltic pump design.

Benefits of technology

It achieves a low-energy-consumption, quantitatively accurate filling process, is highly adaptable, reduces equipment failure rate and maintenance frequency, and meets filling needs of different capacities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cosmetic filling machine with adjusting function, including machine table, the loading box is installed on the machine table top, and the rotary round table is installed at the machine table top, and the filling bottle of annular distribution can be placed on the rotary round table, its characterized in that: the loading box top is inserted and slides and is installed with valve rod, and the valve rod bottom installs the conical valve block, the conical valve block is attached in the discharge pipe head top installation of loading box bottom, and the discharge pipe head bottom intercommunication installation fixed loading box. The utility model discloses the mechanical linkage type ration filling mechanism, discarded the design of traditional peristaltic pump, realizes automatic ration through the mechanical structure of rotary round table drive annular sliding slot, is more energy -conserving than traditional electric peristaltic pump, and the energy -conserving cost is reduced greatly.
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Description

Technical Field

[0001] This utility model relates to the field of filling design technology, and in particular to a cosmetic filling machine with adjustable function. Background Technology

[0002] Cosmetic filling refers to the process of quantitatively dispensing liquid cosmetics into bottles and other packaging containers. The filling process directly affects product quality, production efficiency, and hygiene and safety, and is one of the key links in cosmetic production.

[0003] The applicant's research revealed that most existing cosmetic filling machines use multi-station rotary table filling machines. These machines employ a rotary table (turntable) design, with multiple stations operating simultaneously to achieve continuous filling and significantly improve production efficiency. However, current quantitative filling largely relies on peristaltic pumps, which require solenoid valves to prevent leakage. Peristaltic pumps depend on motor operation and need to run continuously to maintain pipeline pressure, making them prone to damage and consuming a lot of electricity. In particular, the continuous on / off operation does not meet current environmental protection and energy-saving requirements. Frequent on / off operation also increases the probability of pump failure and requires frequent maintenance.

[0004] Therefore, the applicant needs to design a cosmetic filling machine with adjustable functions to solve the problem. Utility Model Content

[0005] This invention provides a cosmetic filling machine with adjustable function, which solves the problems mentioned in the background.

[0006] To solve the above-mentioned technical problems, this utility model provides a cosmetic filling machine with adjustable function, including a machine base, a filling box installed above the machine base, and a rotating round table installed on the top of the machine base, on which filling bottles arranged in a ring can be placed. The machine is characterized in that: a valve rod is slidably installed on the top of the filling box, and a conical valve block is installed at the bottom of the valve rod. The conical valve block fits into the top opening of the discharge pipe head installed at the bottom of the filling box. The bottom of the discharge pipe head is connected to a fixed material box. A solenoid valve is provided on the discharge pipe installed on one side of the fixed material box, and the outlet of the discharge pipe can correspond to a filling bottle inlet.

[0007] The valve stem is connected to the rotating frustum by a metering component for the timed opening and closing of the conical valve block;

[0008] The top of the valve stem is connected to the loading box with an elastic limiting component to prevent the valve stem from rotating and to make the valve stem and the loading box elastically connected.

[0009] Preferably, the metering component includes an annular groove fixed above a frustum, on which a cylinder slides. The annular groove has equidistantly distributed arc segments, the number of which is the same as the number of filling bottles. The cylinder is fixed to the bottom of a square steel plate, which is slidably connected to the top of the filling box. One end of the square steel plate passes through the opening of the valve stem, and a top plate is installed on the top of the square steel plate. The top of the top plate contacts a pulley rotatably installed on the inner wall of the valve stem opening. One end of the top plate has an arc surface design.

[0010] Preferably, a vertical plate is installed on the top of the loading box, and the convex slider at the bottom of the square steel plate slides in the slide rail at the top of the vertical plate.

[0011] Preferably, the elastic limiting component includes a horizontal plate fixed to the top of the valve stem, the bottom of the horizontal plate is connected to two telescopic rods at the top of the loading box, and the horizontal plate is connected to the top of the loading box by a spring.

[0012] Preferably, a sealing gasket is installed on the inner wall of the circular hole through which the valve stem passes in the loading box.

[0013] Preferably, a cylindrical holder is placed in the circular groove at the center of the top of the rotating frustum, and four protrusions are fixed to the side wall of the holder, which engage with the recesses on the inner side of the circular groove.

[0014] Preferably, the top of the loading box is connected to the U-shaped frame via two fixing blocks. The U-shaped frame is installed on both sides of the machine platform, and the reinforcing blocks on both sides of the machine platform are fixedly inserted into the U-shaped frame.

[0015] Compared with related technologies, the cosmetic filling machine with adjustable function provided by this utility model has the following beneficial effects:

[0016] This utility model adopts a mechanical linkage quantitative filling mechanism, which abandons the traditional peristaltic pump design. It achieves automatic quantitative filling through a mechanical structure that drives an annular chute via a rotating frustum. It is more energy-efficient than the traditional electric peristaltic pump and significantly reduces energy consumption costs.

[0017] The material hopper and conical valve block in this invention have a matching structure that allows for adjustment of the filling volume by replacing material hoppers of different capacities and adjusting the rotation speed, making it highly adaptable. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the present invention. Figure 1 ;

[0019] Figure 2 This is a schematic diagram of the overall three-dimensional structure of the present invention. Figure 2 ;

[0020] Figure 3 This is a partial three-dimensional structural diagram of the present invention. Figure 1 ;

[0021] Figure 4 This is a partial three-dimensional structural diagram of the present invention. Figure 2 ;

[0022] Figure 5 This is a three-dimensional structural diagram of the quantitative component of this utility model;

[0023] Figure 6 This is a side view sectional diagram of the rotating frustum of this utility model.

[0024] The following are the labels in the diagram: 1. Machine base; 11. Loading box; 12. Valve stem; 13. Conical valve block; 14. Discharge pipe head; 15. Solenoid valve; 16. Fixing block; 17. U-shaped frame; 18. Reinforcing block; 19. Sealing gasket; 110. Fixed material box; 2. Elastic limit assembly; 21. Horizontal plate; 22. Telescopic rod; 23. Spring; 3. Quantitative assembly; 31. Annular chute; 33. Cylinder; 32. Arc segment; 34. Square steel plate; 35. Top plate; 36. Pulley; 37. Vertical plate; 4. Rotating frustum; 41. Card seat; 42. Protrusion. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0026] Depend on Figures 1-6The present invention includes a machine base 1, a filling box 11 mounted on top of the machine base 1, a rotating frustum 4 mounted on the top of the machine base 1, and a ring of filling bottles placed on the rotating frustum 4. A valve stem 12 is slidably mounted on the top of the filling box 11, and a conical valve block 13 is mounted on the bottom of the valve stem 12. The conical valve block 13 fits into the top opening of a discharge pipe head 14 mounted at the bottom of the filling box 11. The bottom of the discharge pipe head 14 is connected to a fixed material box 110. A solenoid valve 15 is installed on a discharge pipe mounted on one side of the fixed material box 110, and the outlet of the discharge pipe can correspond to a filling bottle inlet. A metering component 3 is connected to the valve stem 12 and the rotating frustum 4 for timed opening and closing of the conical valve block 13. An elastic limiting component 2 is connected to the top of the valve stem 12 and the filling box 11 to limit the rotation of the valve stem 12 and to make the valve stem 12 and the filling box 11 elastically connected. The metering component 3 includes a ring fixed on the top of the frustum 4. The annular chute 31 (fixed by four vertical rods) has a cylinder 33 sliding in its opening. The annular chute 31 has equidistantly distributed arc segments 32, which are integrated into one piece. The number of arc segments 32 is the same as the number of bottles, and they are staggered. That is, before each bottle rotates to the bottom of the discharge pipe, the cylinder 33 will definitely pass through an arc segment 32. Therefore, it can be understood that the arc segments 32 and the bottles are staggered. The cylinder 33 is fixed to the bottom of the square steel plate 34. The square steel plate 34 is slidably connected to the top of the filling box 11. One end of the square steel plate 34 passes through the opening of the valve stem 12, and a top plate 35 is installed on the top of the square steel plate 34. The top of the top plate 35 contacts the pulley 36 rotatably installed on the inner wall of the opening of the valve stem 12. One end of the top plate 35 is arc-shaped. A vertical plate 37 is installed on the top of the filling box 11. The convex slider at the bottom of the square steel plate 34 slides in the slide rail at the top of the vertical plate 37.

[0027] Through the design of the quantitative component 3, during the filling operation, six bottles arranged in a ring are placed on the rotating platform 4. The rotating platform 4 is then activated to rotate, causing the annular chute 31 to rotate. This allows the cylinder 33 to slide relative to the other cylinder within the annular chute 31. After a bottle moves below the discharge pipe, the cylinder 33 passes through an arc-shaped section 32. At this point, the square steel plate 34 is moved, performing a horizontal reciprocating motion. During this process, the top plate 35 also reciprocates once, causing the pulley 36 to move from the square steel plate 34 (initially on the square steel plate 34), through the arc-shaped surface of the top plate 35, and onto the top plate 35. This causes the valve stem 12 to... As the position is raised, the conical valve block 13 will also move upward and disengage from the discharge pipe head 14. The discharge pipe head 14 can guide the material into the fixed material box 110. Then, the top plate 35 is reset, the pulley 36 moves onto the square steel plate 34, and the valve stem 12 is automatically reset through the elastic limit component 2. After the filling bottle moves below the discharge pipe, the solenoid valve 15 is opened for a period of time to discharge all the material in the fixed material box 110 (including a small amount of material inside the discharge pipe head 14 below the conical valve block 13) into the filling bottle below. The discharge pipe has a small tilt angle, which can discharge the material well. Finally, after a single bottle is filled, the solenoid valve 15 is closed, and the rotating table 4 is rotated again to repeat the operation until all the bottles are filled.

[0028] Furthermore, for bottles of different volumes, a corresponding material container 110 can be replaced. The sum of the material container 110 and the small amount of material inside the discharge pipe head 14 below the conical valve block 13 is roughly equal to the internal volume of the bottle. The material container 110 can be installed to the bottom of the discharge pipe head 14 via a threaded connection for easy replacement. When adjusting the workstation, when the bottle volume is larger, the speed of the rotating platform 4 can be adjusted. The slower the annular slide 31 rotates, the longer the cylinder 33 takes to pass through the arc section 32, the longer the square steel plate 34 takes to move back and forth once, and the longer the time for the conical valve block 13 to move up and re-close, the more material is discharged, ensuring that the corresponding material container 110 is filled. Note that the bottle volume difference will not be too large, and the speed adjustment range of the rotating platform 4 is moderate, so as not to cause the liquid inside the filled bottle to spill out.

[0029] The elastic limiting component 2 includes a horizontal plate 21 fixed to the top of the valve stem 12. The bottom of the horizontal plate 21 is connected to the top of the loading box 11 with two telescopic rods 22, and the horizontal plate 21 is connected to the top of the loading box 11 with a spring 23. Optionally, two long rods can also be fixed to the top of the horizontal plate 21. The long rods can slide through the round hole at the top of the U-shaped frame 17 to further improve the limiting effect.

[0030] The two telescopic rods 22 prevent the horizontal plate 21 and valve stem 12 from rotating, thus achieving a limiting effect. Secondly, the spring 23 can be stretched when the valve stem 12 moves upward. After the top plate 35 is reset, the spring 23 can help the valve stem 12 to reset more stably, and help the pulley 36 to move smoothly from the top plate 35 back to the square steel plate 34.

[0031] A sealing gasket 19 is installed on the inner wall of the circular hole through which the valve stem 12 passes in the loading box 11.

[0032] The valve stem 12 moves up and down with good sealing due to the sealing gasket 19. When the valve stem 12 is in the initial position, the opening of the valve stem 12 mounting pulley 36 is located above the sealing gasket 19.

[0033] A cylindrical holder 41 is placed in the circular groove at the center of the top of the rotating frustum 4. Four protrusions 42 are fixed on the side wall of the holder 41. The protrusions 42 engage with the recesses on the inner side of the circular groove. The holder 41 has circular grooves arranged in a ring for holding filling bottles.

[0034] The card holder 41 is designed to engage with the circular groove at the center of the top of the rotating platform 4 via a protrusion 42. It can rotate with the platform 4 and can be easily removed for replacement when filling bottles of different volumes and shapes (e.g., square). This design is highly practical. It's important to note that the rotation of the rotating platform 4 follows conventional design principles. For example, the machine base 1 has a hollow interior, with a motor b internally connected to the center of the rotating platform 4. Circularly distributed ball bearings a roll on the bottom side of the rotating platform 4. An electric push rod c can also be installed at the bottom of the rotating platform 4. The output end of the electric push rod c passes through the circular groove at the center of the top of the rotating platform 4, pushing the card holder 41 upwards. Before filling, the flat end can be moved closer to the discharge port. After filling, the output end of the electric push rod c descends, allowing the card holder 41 to move downwards under its own weight. These are all conventional designs and will not be elaborated upon further here. (See reference...) Figure 6 That's all.

[0035] The top of the loading box 11 is connected to the U-shaped frame 17 via two fixing blocks 16. The U-shaped frame 17 is installed on both sides of the machine base 1 and is fixedly inserted into the reinforcing blocks 18 on both sides of the machine base 1.

[0036] The loading box 11 is installed using the U-shaped frame 17, and the U-shaped frame 17 can be further reinforced and connected using the reinforcing block 18, resulting in better overall integrity.

[0037] Working Principle: During operation, six filling bottles are placed in a ring on the mounting base 41 of the rotating platform 4. After starting the equipment, the rotating platform 4 drives the annular slide 31 to rotate synchronously. When the cylinder 33 slides into the arc section 32, it pushes the square steel plate 34 to move horizontally. The arc surface of the top plate 35 lifts the valve stem 12 through the pulley 36, causing the conical valve block 13 to disengage from the discharge pipe head 14, and the liquid in the filling box 11 flows into the fixed material box 110. Subsequently, the cylinder 33 slides out of the arc section 32, and the valve stem 12 resets and closes the valve under the action of the elastic limit component 2. When the filling bottle rotates to the bottom of the discharge pipe, the solenoid valve 15 opens, and the metered liquid in the fixed material box 110 is injected into the bottle to complete one filling. The filling volume can be controlled by adjusting the rotation speed of the rotating platform 4. Different capacity fixed material boxes 110 can be used to accommodate bottles of different specifications. The entire filling process is automatically completed by mechanical linkage, featuring accurate metering and simple operation.

[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0039] Although embodiments of the present invention 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 to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A cosmetic filling machine with adjustable function, comprising a machine base (1), a filling box (11) mounted above the machine base (1), and a rotating frustum (4) mounted on the top of the machine base (1), wherein filling bottles arranged in a ring can be placed on the rotating frustum (4), characterized in that: A valve stem (12) is slidably installed on the top of the filling box (11), and a conical valve block (13) is installed at the bottom of the valve stem (12). The conical valve block (13) fits into the top opening of the discharge pipe head (14) installed at the bottom of the filling box (11). The bottom of the discharge pipe head (14) is connected to the fixed material box (110). A solenoid valve (15) is provided on the discharge pipe installed on one side of the fixed material box (110). The outlet of the discharge pipe can correspond to a filling bottle inlet. The valve stem (12) is connected to the rotating frustum (4) by a metering component (3) for timing the opening and closing of the conical valve block (13); The top of the valve stem (12) is connected to the loading box (11) by an elastic limiting component (2) to limit the valve stem (12) from rotating and to make the valve stem (12) and the loading box (11) form an elastic connection.

2. The cosmetic filling machine with adjustable function according to claim 1, characterized in that, The quantitative component (3) includes an annular groove (31) fixed above the frustum (4), on which a cylinder (33) slides. The annular groove (31) is provided with equally spaced arc segments (32), the number of which is the same as the number of filling bottles. The cylinder (33) is fixed to the bottom of a square steel plate (34), which is slidably connected to the top of the filling box (11). One end of the square steel plate (34) passes through the opening of the valve stem (12), and a top plate (35) is installed on the top of the square steel plate (34). The top of the top plate (35) contacts a pulley (36) rotatably installed on the inner wall of the opening of the valve stem (12). One end of the top plate (35) is designed with an arc surface.

3. A cosmetic filling machine with adjustable function according to claim 2, characterized in that, The top of the loading box (11) is equipped with a vertical plate (37), and the convex slider at the bottom of the square steel plate (34) slides in the slide rail at the top of the vertical plate (37).

4. A cosmetic filling machine with adjustable function according to claim 2, characterized in that, The elastic limiting component (2) includes a horizontal plate (21) fixed to the top of the valve stem (12), the bottom of the horizontal plate (21) is connected to two telescopic rods (22) at the top of the loading box (11), and the horizontal plate (21) is connected to the top of the loading box (11) by a spring (23).

5. A cosmetic filling machine with adjustable function according to claim 1, characterized in that, The inner wall of the circular hole through which the valve stem (12) passes in the loading box (11) is fitted with a sealing gasket (19).

6. A cosmetic filling machine with adjustable function according to claim 1, characterized in that, A cylindrical holder (41) is placed in the circular groove at the center of the top of the rotating frustum (4). Four protrusions (42) are fixed on the side wall of the holder (41), and the protrusions (42) engage with the recesses on the inner side of the circular groove.

7. A cosmetic filling machine with an adjustable function according to claim 5, characterized in that, The top of the loading box (11) is connected to the U-shaped frame (17) by two fixing blocks (16). The U-shaped frame (17) is installed on both sides of the machine base (1). The U-shaped frame (17) is fixedly inserted into the reinforcing blocks (18) on both sides of the machine base (1).