Cosmetic homogenizing stirrer

By combining the horizontally arranged mixing drum and V-shaped feed plate with the flip mechanism, the problem of insufficient stirring of the raw materials at the bottom of the mixing tank in the cosmetic homogenization mixer is solved, and the full mixing and homogenization effect of the cosmetic raw materials is achieved.

CN223184487UActive Publication Date: 2025-08-05GUANGZHOU LION WIN COSMETICS CO LTD
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Patent Information

Application Number
CN202422454282.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-08-05
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

During the stirring process, existing cosmetic homogenization mixers cannot fully stir the raw materials at the bottom of the mixing tank and in the discharge pipe, which affects the homogenization effect of cosmetics.

Method used

A horizontally arranged stirring drum, V-shaped feed plate and flip mechanism are adopted to fully stir the raw materials at the bottom of the stirring drum by rotating the stirring mechanism and flipping the turn mechanism, and preventing the raw materials from depositing in the inlet and outlet pipes.

Benefits of technology

Fully stirring of cosmetic raw materials is achieved, the raw materials are avoided in the inlet and outlet pipes are deposited, and the homogenization effect of cosmetics is improved.

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Abstract

The utility model relates to the technical field of cosmetic production and processing, in particular to a cosmetic homogenizing stirrer which comprises a support and further comprises a stirring barrel, a stirring rod, a stirring rod and a motor, the V-shaped material lifting plates are arranged in the circumferential direction of the stirring barrel at equal intervals, and the V-shaped material lifting plates are fixed to the stirring mechanism and attached to the inner surface of the stirring barrel; the feeding and discharging pipe is connected to the stirring barrel in a communicating manner, and the feeding and discharging pipe is arranged in the radial direction of the stirring barrel; and the turnover mechanism is arranged between the bracket and the mixing drum. Through the arrangement of the stirring barrel, the V-shaped lifting plate, the feeding and discharging pipe and the turnover mechanism, raw materials at the bottom of the stirring barrel can be repeatedly lifted, so that the raw materials can be fully stirred; and in the stirring process, no raw materials are deposited in the feeding and discharging pipe, so that the cosmetic raw materials are fully stirred conveniently, and the homogenizing effect of cosmetics is not easily influenced.
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Description

Technical Field

[0001] The utility model relates to the technical field of cosmetic production and processing, in particular to a cosmetic homogenizing mixer. Background Art

[0002] A cosmetics homogenizer is a device specifically designed for mixing, emulsifying, stabilizing, and evenly distributing cosmetics during preparation. Its operating principle relies on the shear and compression forces generated by a high-speed rotating cutting head. As the material passes through the cutting head, it is subjected to intense shear and compression, resulting in uniform, stable, and delicate results.

[0003] The current cosmetic homogenizer mainly consists of a mixing tank, an agitator and a transmission device; the mixing tank is the main part of the equipment, usually made of stainless steel, with characteristics such as corrosion resistance and easy cleaning; the agitator is the core component of the equipment, which generates strong shear force and eddy current through high-speed rotation, so that the cosmetic raw materials can be mixed quickly and evenly; the transmission device consists of a motor, a reducer and a coupling, which is used to drive the agitator to rotate.

[0004] Existing mixing tanks are generally vertical, and usually a feed pipe is set at the top of the mixing tank and a discharge pipe is set at the bottom of the mixing tank. However, during the mixing process, it is found that the raw materials at the bottom of the mixing tank cannot be fully stirred, especially the raw materials deposited in the discharge pipe, which affects the homogenization effect of the cosmetics. Therefore, we propose a cosmetics homogenizing mixer to effectively solve the above disadvantages. Utility Model Content

[0005] The purpose of the present utility model is to provide a cosmetic homogenizer to solve the problems raised in the above background technology.

[0006] The utility model is realized by the following technical solution: a cosmetic homogenizer, comprising a bracket, and further comprising:

[0007] A mixing drum, wherein the mixing drum is arranged in a horizontal direction;

[0008] A stirring mechanism, wherein the stirring mechanism is movably disposed in the stirring drum;

[0009] A stirring motor, which is mounted on the outer end surface of the stirring drum and is used to drive the stirring mechanism to rotate along the central axis of the stirring drum;

[0010] A plurality of V-shaped lifting plates are arranged at equal intervals along the circumference of the mixing drum, and each V-shaped lifting plate is fixed on the mixing mechanism and fits the inner surface of the mixing drum;

[0011] Inlet and outlet pipes, the inlet and outlet pipes are connected to the mixing drum and are arranged along the radial direction of the mixing drum;

[0012] The turning mechanism is arranged between the bracket and the mixing drum, and is used to turn the mixing drum along the central axis of the mixing drum.

[0013] Optionally, the bracket includes an inverted convex plate, and the flip mechanism is arranged between the inverted convex plate and the mixing drum; a plurality of legs are parallel and fixedly connected at intervals to the bottom of the inverted convex plate, and a clearance gap adapted to the inlet and outlet pipes is opened on the inverted convex plate.

[0014] Optionally, the stirring mechanism includes a stirring shaft that is rotatably connected to the stirring drum through a bearing and a shaft seat, and the stirring motor is transmission-connected to the stirring shaft; a number of main stirring rods are fixedly connected to each V-shaped lifting plate at equal intervals, and one end of each main stirring rod away from the V-shaped lifting plate is fixed on the stirring shaft, and a number of auxiliary stirring rods are evenly distributed on each main stirring rod.

[0015] Optionally, a through opening is opened on the mixing drum along the length direction, and a material guide groove adapted to the through opening is fixedly connected to the outer surface of the mixing drum. The inlet and outlet pipes are connected to the material guide groove, and a guide bevel is fixed in the material guide groove to guide the material to the inlet and outlet pipes.

[0016] Optionally, the flip mechanism includes a plurality of fixed rods fixed to the outer end surface of the mixing drum and located on the periphery of the mixing motor, a rotating disk is fixedly connected to one end of each fixed rod away from the mixing drum, and a connecting shaft is fixedly connected to the side of the rotating disk away from the fixed rod, and the connecting shaft is rotatably connected to the bracket through the cooperation of bearings;

[0017] A flip shaft is fixedly connected to the outer end surface of the mixing drum away from the mixing motor, and a flip motor connected to the flip shaft is installed on the bracket; the central axis of the flip shaft and the central axis of the connecting shaft coincide with the central axis of the mixing drum respectively.

[0018] Optionally, the flip mechanism further comprises a first positioning slot and a second positioning slot spaced apart on the rotating disk, and a positioning rod is hingedly connected to the bracket;

[0019] When the positioning rod is placed in the first positioning groove, the inlet and outlet pipes are located at the highest position; when the positioning rod is placed in the second positioning groove, the inlet and outlet pipes are located at the lowest position.

[0020] Compared with the prior art, the present invention provides a cosmetic homogenizer with the following features:

[0021] Beneficial effects:

[0022] 1. The utility model provides a mixing drum and a V-shaped material lifting plate. Since the mixing drum is arranged in a horizontal direction, when the V-shaped material lifting plate rotates with the mixing mechanism, the raw materials at the bottom of the mixing drum can be repeatedly lifted, so that the raw materials can be fully stirred by the mixing mechanism.

[0023] 2. The utility model is provided with an inlet and outlet pipe and a turning mechanism. Before stirring, the inlet and outlet pipes are located at the highest point, and the cosmetic raw materials can enter the mixing drum through the inlet and outlet pipes; during the stirring process, the inlet and outlet pipes are always kept at the highest point, so that no raw materials will be deposited in the inlet and outlet pipes, which is convenient for fully stirring the cosmetic raw materials and is not likely to affect the homogenization effect of the cosmetics; after the stirring is completed, the turning mechanism is used to turn the mixing drum along the central axis of the mixing drum, so that the inlet and outlet pipes are located at the lowest point, so that the mixed raw materials can be discharged. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a state diagram of the utility model where the feed and discharge pipes are located at the highest point;

[0025] Figure 2 for Figure 1 A partial enlarged schematic diagram of point A in the middle;

[0026] Figure 3 This is a state diagram of the utility model where the feed and discharge pipes are located at the lowest point;

[0027] Figure 4 This is a schematic diagram of the structure inside the mixing drum of the utility model;

[0028] Figure 5 It is a structural diagram of the stirring mechanism of the present utility model.

[0029] In the figure: 1. bracket; 101. profile plate; 102. support leg; 103. clearance gap; 2. mixing drum; 3. stirring mechanism; 301. stirring shaft; 302. main stirring rod; 303. auxiliary stirring rod; 4. stirring motor; 5. V-shaped lifting plate; 6. inlet and outlet pipes; 7. turning mechanism; 701. fixing rod; 702. rotating disk; 703. connecting shaft; 704. turning shaft; 705. turning motor; 706. first positioning groove; 707. second positioning groove; 708. positioning rod; 8. material guide trough; 9. guide bevel. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0031] Example: See Figures 1 to 5 A cosmetics homogenizing mixer comprises a support 1, a mixing drum 2, a stirring mechanism 3, a stirring motor 4, a plurality of V-shaped lifting plates 5, a feed and discharge pipe 6, and a turning mechanism 7. By providing the mixing drum 2, the V-shaped lifting plates 5, the feed and discharge pipe 6, and the turning mechanism 7, the raw materials at the bottom of the mixing drum 2 can be repeatedly lifted, thereby fully stirring the raw materials. Furthermore, during the stirring process, no raw materials will be deposited in the feed and discharge pipe 6, thereby facilitating full stirring of the cosmetic raw materials and less likely to affect the homogenization effect of the cosmetics.

[0032] In this embodiment, the mixing drum 2 is arranged in the horizontal direction, which facilitates the repeated lifting of the raw materials at the bottom of the mixing drum 2 by the V-shaped lifting plate 5; at the same time, after the mixing drum 2 is turned over by the turning mechanism 7, the entry and exit of the raw materials can be achieved through an inlet and outlet pipe 6.

[0033] It should be noted that the bracket 1 includes an inverted convex plate 101, and the flip mechanism 7 is arranged between the inverted convex plate 101 and the mixing drum 2, and supports other components in the device through the convex plate 101. A number of legs 102 are parallel and fixedly connected to the bottom of the inverted convex plate 101, so that a certain distance is left between the inverted convex plate 101 and the ground, so that a container can be placed on the ground for collecting processed raw materials. A clearance gap 103 is provided on the inverted convex plate 101 to adapt to the inlet and outlet pipes 6. When the inlet and outlet pipes 6 are at the lowest point, the inlet and outlet pipes 6 pass through the clearance gap 103, so that the processed raw materials can be discharged into the container placed on the ground. In this embodiment, the opening of the clearance gap 103 is larger, which facilitates the inlet and outlet pipes 6 to enter the clearance gap 103.

[0034] Specifically, the stirring mechanism 3 is movably arranged in the stirring drum 2. In this embodiment, the stirring mechanism 3 includes a stirring shaft 301 that is rotatably connected to the stirring drum 2 through a bearing and a shaft seat, and the central axis of the stirring shaft 301 coincides with the central axis of the stirring drum 2. The stirring motor 4 is transmission-connected to the stirring shaft 301, and when the stirring motor 4 is working, it can drive the stirring shaft 301 to rotate. A number of main stirring rods 302 are fixedly connected to each V-shaped lifting plate 5 at equal intervals, and one end of each main stirring rod 302 away from the V-shaped lifting plate 5 is fixed to the stirring shaft 301, and a number of auxiliary stirring rods 303 are evenly distributed on each main stirring rod 302. The stirring motor 4 is mounted on the outer end surface of the stirring drum 2 and is used to drive the stirring mechanism 3 to rotate along the central axis of the stirring drum 2. When the stirring motor 4 is working, it drives the stirring shaft 301 to rotate, so that the cosmetic raw materials can be quickly and evenly mixed through the cooperation of the main stirring rod 301 and the auxiliary stirring rod 303. Furthermore, during this process, the V-shaped lifting plates 5 can be driven to rotate synchronously, thereby lifting the raw materials at the bottom of the mixing drum 2. When the V-shaped lifting plates 5 rotate to a high position and the raw materials fall from the V-shaped lifting plates 5, the main stirring rod 301 and the auxiliary stirring rod 303 can cooperate to stir the falling raw materials, thereby ensuring that the raw materials are fully mixed.

[0035] In this embodiment, each V-shaped lifting plate 5 is arranged at equal intervals along the circumference of the mixing drum 2, and each V-shaped lifting plate 5 is fixed on the stirring mechanism 3 and fits with the inner surface of the mixing drum 2; therefore, when the V-shaped lifting plate 5 rotates with the stirring mechanism 3, the raw materials at the bottom of the mixing drum 2 can be lifted well; when the V-shaped lifting plate 5 rotates to a high position, the lifted raw materials can fall automatically.

[0036] It should be noted that the inlet and outlet pipes 6 are connected to the mixing drum 2 and are arranged along the radial direction of the mixing drum 2. They can be used to add raw materials to the mixing drum 2 or to discharge processed raw materials. Preferably, a through opening is provided on the mixing drum 2 along the length direction, and a guide trough 8 adapted to the through opening is fixedly connected to the outer surface of the mixing drum 2. The inlet and outlet pipes 6 are connected to the guide trough 8, and a guide bevel 9 is fixed in the guide trough 8 to guide the material to the inlet and outlet pipes 6. When the processed raw materials need to be discharged, the mixing drum 2 is turned over by the turning mechanism 7, so that the guide trough 8 and the inlet and outlet pipes 6 are located at the lowest point. At this time, the processed raw materials can be guided to the inlet and outlet pipes 6 by the guide bevel 9, so that all the raw materials in the mixing drum 2 can be discharged easily.

[0037] The following is a detailed introduction to the turning mechanism 7:

[0038] The flip mechanism 7 is provided between the bracket 1 and the mixing drum 2 and is used to flip the mixing drum 2 along the central axis of the mixing drum 2. Specifically, the flip mechanism 7 includes a plurality of fixed rods 701 fixed to the outer end surface of the mixing drum 2 and located on the periphery of the mixing motor 4. A rotating disk 702 is fixedly connected to one end of each fixed rod 701 away from the mixing drum 2. A connecting shaft 703 is fixedly connected to the side of the rotating disk 702 away from the fixed rod 701. The connecting shaft 703 is rotatably connected to the bracket 1 through the cooperation of the bearings. Through the cooperation of the fixed rods 701, the rotating disk 702 and the connecting shaft 703, the end surface of the mixing drum 2 on which the mixing motor 4 is mounted can be rotatably supported.

[0039] A flip shaft 704 is fixedly connected to the outer end face of the mixing drum 2 away from the stirring motor 4, and a flip motor 705 is installed on the bracket 1 in transmission connection with the flip shaft 704. The flip motor 705 is a servo motor that can drive the mixing drum 2 to rotate forward or reverse. The central axis of the flip shaft 704 and the central axis of the connecting shaft 703 coincide with the central axis of the mixing drum 2 respectively. When the raw materials enter the mixing drum 2 or when the mixing drum 2 is stirred, the inlet and outlet pipes 6 are both located at the highest point. When the processed raw materials need to be discharged, the flip shaft 704 is driven to rotate by the flip motor 705, thereby driving the mixing drum 2 to rotate 180° along its own central axis, thereby making the inlet and outlet pipes 6 located at the lowest point, and the processed raw materials can be discharged through the inlet and outlet pipes 6.

[0040] The flip mechanism 7 also includes a first positioning groove 706 and a second positioning groove 707 spaced apart on the rotating disk 702, and a positioning rod 708 is hinged on the bracket 1; when the positioning rod 708 is placed in the first positioning groove 706, the feed pipe 6 is at the highest point. Due to the mutual cooperation between the positioning rod 708 and the first positioning groove 706, the rotating disk 702 cannot rotate, and the mixing drum 2 cannot rotate, thereby allowing the feed pipe 6 to always remain at the highest point, facilitating feeding or stirring the raw materials. When the positioning rod 708 is placed in the second positioning groove 707, the feed pipe 6 is at the lowest point. Due to the mutual cooperation between the positioning rod 708 and the second positioning groove 707, the rotating disk 702 cannot rotate, and the mixing drum 2 cannot rotate, thereby allowing the feed pipe 6 to always remain at the lowest point, facilitating the discharge of the raw materials in the mixing drum 2.

[0041] Here's how it works:

[0042] In the initial state, the feed and discharge pipe 6 is at the highest position, and the positioning rod 708 is placed in the first positioning groove 706, so that the rotating disk 702 cannot rotate, and the mixing drum 2 cannot rotate. Figure 1 shown.

[0043] When the cosmetic raw materials need to be stirred and mixed, the raw materials are first fed into the mixing drum 2 through the inlet and outlet pipes 6; then the stirring motor 4 is started to drive the stirring shaft 301 to rotate, so that the cosmetic raw materials can be quickly and evenly mixed through the cooperation of the main stirring rod 302 and the auxiliary stirring rod 303; at the same time, the V-shaped lifting plates 5 are driven to rotate synchronously, so that the raw materials at the bottom of the mixing drum 2 can be lifted; when the V-shaped lifting plates 5 rotate to a high position and the raw materials fall from the V-shaped lifting plates 5, the falling raw materials can be stirred through the cooperation of the main stirring rod 301 and the auxiliary stirring rod 303, so that the raw materials can be fully mixed.

[0044] After the processing is completed, the positioning rod 708 is first taken out from the first positioning groove 706 without restricting the rotating disk 702; then the flip motor 705 is started to drive the mixing drum 2 to rotate 180 degrees, so that the inlet and outlet pipes 6 are at the lowest point and pass through the clearance gap 103; at this time, the second positioning groove 707 is at the highest point, and the positioning rod 708 is flipped and placed into the second positioning groove 707 to restrict the rotating disk 702, so that the mixing drum 2 cannot rotate. Figure 2 As shown. Place a container on the ground below the inlet and outlet pipes 6, then open the inlet and outlet pipes 6. The processed raw materials in the mixing drum 2 can be discharged into the container through the inlet and outlet pipes 6. The raw materials in the mixing drum 2 can also be guided to the inlet and outlet pipes 6 by the guide bevel 9, making it difficult for raw materials to accumulate in the mixing drum 2.

[0045] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.

[0046] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cosmetics homogenizer, comprising a bracket (1), characterized in that: Also includes: A mixing drum (2), wherein the mixing drum (2) is arranged in a horizontal direction; A stirring mechanism (3), wherein the stirring mechanism (3) is movably arranged in the stirring drum (2); A stirring motor (4), the stirring motor (4) being mounted on the outer end surface of the stirring drum (2) and being used to drive the stirring mechanism (3) to rotate along the central axis of the stirring drum (2); A plurality of V-shaped material lifting plates (5), each V-shaped material lifting plate (5) is arranged at equal intervals along the circumference of the mixing drum (2), each V-shaped material lifting plate (5) is fixed on the mixing mechanism (3) and fits with the inner surface of the mixing drum (2); Inlet and outlet pipes (6), the inlet and outlet pipes (6) are conductively connected to the mixing drum (2), and the inlet and outlet pipes (6) are arranged along the radial direction of the mixing drum (2); A turning mechanism (7) is provided between the bracket (1) and the mixing drum (2) and is used to turn the mixing drum (2) along the central axis of the mixing drum (2).

2. A cosmetic homogenizer according to claim 1, characterized in that: The support (1) includes an inverted convex plate (101), and the turning mechanism (7) is arranged between the inverted convex plate (101) and the mixing drum (2); a plurality of legs (102) are parallel and fixedly connected at intervals to the bottom of the inverted convex plate (101), and a clearance notch (103) adapted to the inlet and outlet pipe (6) is opened on the inverted convex plate (101).

3. The cosmetic homogenizer according to claim 1, characterized in that: The stirring mechanism (3) comprises a stirring shaft (301) rotatably connected to the stirring drum (2) through a bearing and a shaft seat, and the stirring motor (4) is transmission-connected to the stirring shaft (301); a plurality of main stirring rods (302) are fixedly connected at equal intervals on each V-shaped material raising plate (5), one end of each main stirring rod (302) away from the V-shaped material raising plate (5) is fixed to the stirring shaft (301), and a plurality of auxiliary stirring rods (303) are evenly distributed on each main stirring rod (302).

4. The cosmetic homogenizer according to claim 1, characterized in that: The mixing drum (2) is provided with a through opening along the length direction, a material guide groove (8) adapted to the through opening is fixedly connected to the outer surface of the mixing drum (2), the inlet and outlet pipes (6) are connected to the material guide groove (8), and a guide inclined block (9) is fixed in the material guide groove (8) for guiding the material to the inlet and outlet pipes (6).

5. The cosmetic homogenizer according to claim 1, characterized in that: The turning mechanism (7) comprises a plurality of fixed rods (701) fixed to the outer end surface of the mixing drum (2) and located on the periphery of the mixing motor (4); a rotating disk (702) is fixedly connected to one end of each fixed rod (701) away from the mixing drum (2); a connecting shaft (703) is fixedly connected to the side of the rotating disk (702) away from the fixed rod (701); and the connecting shaft (703) is rotatably connected to the bracket (1) through the cooperation of the bearings; A turning shaft (704) is fixedly connected to the outer end surface of the mixing drum (2) away from the mixing motor (4), and a turning motor (705) is installed on the bracket (1) and is transmission-connected to the turning shaft (704); the central axis of the turning shaft (704) and the central axis of the connecting shaft (703) respectively coincide with the central axis of the mixing drum (2).

6. The cosmetic homogenizer according to claim 1, characterized in that: The turning mechanism (7) further comprises a first positioning groove (706) and a second positioning groove (707) spaced apart on the rotating disk (702), and a positioning rod (708) is hingedly connected to the bracket (1); When the positioning rod (708) is placed in the first positioning groove (706), the feed pipe (6) is located at the highest point; when the positioning rod (708) is placed in the second positioning groove (707), the feed pipe (6) is located at the lowest point.