Vacuum homogenizing emulsifier
Patent Information
- Application Number
- CN202521513180.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-18
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-07-18
AI Technical Summary
[0003]在对化妆品进行乳化处理时,需要将水和原料都加入真空混合筒内,从而使油水相融,达到对化妆品进行乳化处理的目的,但目前在对油和水进行加入时,一般都是通过工作人员手动使用称重称等工具来对油和水进行定量称重处理,从而使油水配比达到标准,虽然这种方式也能够有效地对油水进行配比处理,但配比过程较为费时费力,不仅降低了化妆品的乳化效率,还增大了工作人员的工作负担,并且容易出现误差,当水过多时,则会导致化妆品整体变稀,而当油过多时,则会导致化妆品整体油腻厚重,从而会对化妆品的生产质量造成影响
[0020] 1. This utility model, through the setting of quantitative components, can conveniently and effectively quantitatively process cosmetic raw materials, thereby ensuring that the proportion of cosmetic raw materials meets the standards, and eliminating the need for manual operation by staff. This effectively improves the production efficiency and effect of cosmetics, reduces the workload of staff, and enhances the overall practicality of the device.
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Figure CN224724066U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cosmetic production equipment technology, specifically a vacuum homogenizing emulsifier. Background Technology
[0002] Cosmetics refer to chemical industrial products or fine chemical products that are applied to any part of the human body by means of smearing, spraying or other similar methods to achieve the purpose of cleaning, maintaining, beautifying, modifying and changing appearance, and maintaining a good condition. Vacuum homogenizing emulsifiers are required when producing cosmetics.
[0003] When emulsifying cosmetics, water and raw materials need to be added to a vacuum mixing drum to mix the oil and water and achieve the purpose of emulsification. However, currently, when adding oil and water, workers usually use tools such as weighing scales to weigh the oil and water in a quantitative manner to ensure that the oil-water ratio is up to standard. Although this method can effectively balance the oil and water, the process is time-consuming and labor-intensive, which not only reduces the emulsification efficiency of cosmetics but also increases the workload of workers. Furthermore, it is prone to errors. If there is too much water, the cosmetic will become too thin, while if there is too much oil, the cosmetic will become too oily and heavy, thus affecting the production quality of the cosmetic.
[0004] Therefore, a vacuum homogenizing emulsifier is now provided, which can eliminate the drawbacks of existing equipment. Utility Model Content
[0005] The purpose of this invention is to provide a vacuum homogenizing emulsifier to solve the problems in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A vacuum homogenizing emulsifier includes a vacuum mixing cylinder, a closed cover directly above the vacuum mixing cylinder, a proportioning cylinder directly above the closed cover, support frames symmetrically arranged on the surface of the closed cover, a feeding cylinder installed inside the support frames, the bottom of the feeding cylinder being connected to the inside of the proportioning cylinder via a first solenoid valve and a first corrugated pipe, the bottom of the proportioning cylinder being connected to the inside of the closed cover via a second solenoid valve and a second corrugated pipe, and a discharge pipe connected to the bottom of the vacuum mixing cylinder via a third solenoid valve.
[0008] A metering component is installed on the outer wall of the mixing cylinder and is used to meter the raw materials.
[0009] A stirring assembly is disposed on the upper surface of the closed cover and is used to stir and mix the raw materials;
[0010] The fixing components are symmetrically arranged on the surface of the closed cover and are used to fix the closed cover to the vacuum mixing cylinder.
[0011] Based on the above technical solutions, this utility model also provides the following optional technical solutions:
[0012] In one alternative embodiment: the metering component includes a fixed ring fixedly connected to the outer wall of the mixing cylinder, a connecting frame symmetrically arranged on the surface of the fixed ring, a weighing sensor directly below the connecting frame, the bottom of the weighing sensor being fixedly connected to the upper surface of the closed cover, a connecting plate symmetrically arranged on the surface of the fixed ring, a damping rod symmetrically arranged on the upper surface of the closed cover, the telescopic end of the damping rod being fixedly connected to the bottom of the connecting plate, and a return spring sleeved on the outside of the damping rod, the return spring abutting between the connecting plate and the closed cover.
[0013] In one alternative embodiment: the stirring assembly includes a support frame fixedly connected to the upper surface of the closed cover, a rotating rod symmetrically rotatably connected to the bottom of the support frame, a turntable fixedly connected to the bottom end of the rotating rod, multiple stirring rods fixedly connected to the outer wall of the rotating rod, a drive motor fixedly connected to the upper surface of the support frame, the output shaft of the drive motor being fixedly connected to the top end of one of the rotating rods via a coupling, and the two rotating rods being connected by a chain and sprocket drive.
[0014] In one alternative embodiment: the fixing assembly includes an outer plate symmetrically arranged on the surface of the closed cover, an insert plate fixedly connected to the bottom of the outer plate, a positioning frame symmetrically arranged on the surface of the vacuum mixing cylinder, an movable groove for the insert plate to move on the upper surface of the positioning frame, a fixing block fixedly connected to the surface of the positioning frame, a fixing rod slidably inserted into the fixing block, one end of the fixing rod extending to the outside of the fixing block and fixedly connected to a pull ring, an abutment plate fixedly connected to the outer wall of the fixing rod, an abutment spring sleeved on the outside of the fixing rod, the abutment spring abutting between the abutment plate and the fixing block, and slots for the fixing rod to move on the contact surfaces of the fixing block and the positioning frame and the surface of the insert plate.
[0015] In one alternative: both damping rods are fitted with accordion covers, and the two ends of the accordion covers are fixedly connected to the opposite side of the connecting plate and the closing cover, respectively.
[0016] In one alternative: rubber sealing rings are bonded to the bottom of the closed lid and the upper surface of the vacuum mixing cylinder.
[0017] In one alternative: a limiting plate is fixedly connected to one side of each of the two support frames, and guide rods are symmetrically provided at the bottom of the limiting plate. The bottom ends of each pair of guide rods are fixedly connected to the inner walls of the two support frames, and guide plates are slidably connected to the outer walls of each pair of guide rods. The outer walls of the two guide plates are fixedly connected to the outer walls of the two connecting frames.
[0018] In one alternative: the surface of the vacuum mixing cylinder is fixedly connected to multiple support feet, and the bottom of each support foot is bonded with a rubber anti-slip pad. The bottom of the rubber anti-slip pad has herringbone anti-slip grooves at equal intervals.
[0019] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0020] 1. This utility model, through the setting of quantitative components, can conveniently and effectively quantitatively process cosmetic raw materials, thereby ensuring that the proportion of cosmetic raw materials meets the standards, and eliminating the need for manual operation by staff. This effectively improves the production efficiency and effect of cosmetics, reduces the workload of staff, and enhances the overall practicality of the device.
[0021] 2. This utility model, through the setting of the stirring component, can effectively mix and stir multiple raw materials inside the vacuum mixing cylinder, thereby effectively performing emulsification production of cosmetics.
[0022] 3. By setting up a fixing component, this utility model can effectively close the closed cover and the vacuum mixing cylinder, while making it easy for staff to open the closed cover. This facilitates the cleaning of the inside of the closed cover and the inside of the vacuum mixing cylinder, further improving the overall practicality of the device. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0024] Figure 2 This is a cross-sectional structural diagram of the accordion cover of this utility model.
[0025] Figure 3 This is a schematic diagram of the structure of the closed cover after it is opened in this utility model;
[0026] Figure 4 This is a bottom view of the structure of this utility model;
[0027] Figure 5 for Figure 2 Enlarged structural diagram of region A in the middle;
[0028] Figure 6 for Figure 3 A magnified structural diagram of region B in the middle.
[0029] Figure label annotations:
[0030] 1. Vacuum mixing cylinder; 2. Closing cover; 3. Proportioning cylinder; 4. Support frame; 5. Feed cylinder; 6. Fixing ring; 7. First solenoid valve; 8. First bellows; 9. Second solenoid valve; 10. Second bellows; 11. Rubber sealing ring; 12. Outer plate; 13. Insert plate; 14. Support frame; 15. Drive motor; 16. Rotating rod; 17. Turntable; 18. Stirring rod; 19. Third solenoid valve; 20. Discharge pipe; 21. Support foot; 22. Rubber anti-slip pad; 23. Connecting frame; 24. Weighing sensor; 25. Limiting plate; 26. Guide rod; 27. Guide plate; 28. Damping rod; 29. Connecting plate; 30. Return spring; 31. Bellows protective cover; 32. Positioning frame; 33. Fixing block; 34. Fixing rod; 35. Contact plate; 36. Contact spring. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.
[0032] In one embodiment, such as Figures 1-6 As shown, a vacuum homogenizing emulsifier includes a vacuum mixing cylinder 1, a closed cover 2 directly above the vacuum mixing cylinder 1, a proportioning cylinder 3 directly above the closed cover 2, a support frame 4 symmetrically arranged on the surface of the closed cover 2, a feed cylinder 5 installed inside the support frame 4, the bottom of the feed cylinder 5 being connected to the inside of the proportioning cylinder 3 via a first solenoid valve 7 and a first corrugated pipe 8, the bottom of the proportioning cylinder 3 being connected to the inside of the closed cover 2 via a second solenoid valve 9 and a second corrugated pipe 10, and the bottom of the vacuum mixing cylinder 1 being connected to a discharge pipe 20 via a third solenoid valve 19.
[0033] A metering component is installed on the outer wall of the mixing cylinder 3 and is used to meter the raw materials.
[0034] A stirring assembly is disposed on the upper surface of the closed cover 2 and is used to stir and mix the raw materials;
[0035] The fixing components are symmetrically arranged on the surface of the closed cover 2 and are used to fix the closed cover 2 to the vacuum mixing cylinder 1.
[0036] In this embodiment, when emulsification processing of cosmetics is required, different raw materials are first added to two feed cylinders 5 respectively. At this time, the first solenoid valve 7 at the bottom of one feed cylinder 5 opens, and the raw material inside the feed cylinder 5 enters the mixing cylinder 3. When one raw material enters the mixing cylinder 3, its weight causes the mixing cylinder 3 to shift downwards. At this time, the metering component can be used to weigh one raw material. After the weighing of one raw material is completed, the metering component transmits a signal to the controller. The controller then controls the first solenoid valve 7 at the bottom of one feed cylinder 5 to close and controls the first solenoid valve 7 at the bottom of the other feed cylinder 5 to open. At this time, the raw material inside the other feed cylinder 5... The material is also added into the mixing cylinder 3. The metering component can also effectively weigh another material. When the other material is weighed, the metering component transmits a signal to the controller. The controller then controls the first solenoid valve 7 at the bottom of the other feeding cylinder 5 to close and the second solenoid valve 9 at the bottom of the mixing cylinder 3 to open. At this time, the metered material will fall into the vacuum mixing cylinder 1. When the material is completely inside the vacuum mixing cylinder 1, the stirring component starts to run. At this time, the stirring component can be used to mix and stir the material, thereby effectively emulsifying the cosmetics. The fixed component makes it easy for the staff to open or close the closing cover 2, effectively improving the overall practicality of the device.
[0037] In one embodiment, such as Figure 2 and Figure 5 As shown, the quantitative assembly includes a fixing ring 6 fixedly connected to the outer wall of the mixing cylinder 3. A connecting frame 23 is symmetrically arranged on the surface of the fixing ring 6. A weighing sensor 24 is located directly below the connecting frame 23. The bottom of the weighing sensor 24 is fixedly connected to the upper surface of the closed cover 2. A connecting plate 29 is symmetrically arranged on the surface of the fixing ring 6. A damping rod 28 is symmetrically arranged on the upper surface of the closed cover 2. The telescopic end of the damping rod 28 is fixedly connected to the bottom of the connecting plate 29. A return spring 30 is sleeved on the outside of the damping rod 28. The return spring 30 abuts against the connecting plate 29 and the closed cover 2. When the raw material falls into the interior of the mixing cylinder 3, the weight of the raw material causes the mixing cylinder 3 to move downwards. When the mixing cylinder 3 moves downward, the fixed ring 6 moves synchronously, and the fixed ring 6 moves synchronously, which in turn moves synchronously, the connecting frame 23. When the bottom of the connecting frame 23 touches the upper surface of the weighing sensor 24, the raw material can be weighed and quantitatively processed by the weighing sensor 24, so that the raw material ratio can reach the specified standard. During the downward movement of the fixed ring 6, the connecting plate 29 will also move synchronously. At this time, the connecting plate 29 will squeeze the damping rod 28 and the return spring 30. When the raw material inside the mixing cylinder 3 is completely discharged into the vacuum mixing cylinder 1, the return spring 30 returns to its original position, thereby driving the mixing cylinder 3 to return to its original position.
[0038] In one embodiment, such as Figure 3 As shown, the stirring assembly includes a support frame 14 fixedly connected to the upper surface of the closed cover 2. A rotating rod 16 is symmetrically rotatably connected to the bottom of the support frame 14. A turntable 17 is fixedly connected to the bottom end of the rotating rod 16. Multiple stirring rods 18 are fixedly connected to the outer wall of the rotating rod 16. A drive motor 15 is fixedly connected to the upper surface of the support frame 14. The output shaft of the drive motor 15 is fixedly connected to the top end of one of the rotating rods 16 via a coupling. The two rotating rods 16 are connected by a chain and sprocket transmission. When the raw materials need to be mixed, the drive motor 15 starts running. Since the two rotating rods 16 are connected by a chain and sprocket transmission, they rotate synchronously, causing the stirring rods 18 to rotate synchronously. The stirring rods 18 can then be used to mix the raw materials, thus effectively emulsifying the cosmetics.
[0039] In one embodiment, such as Figure 3 and Figure 6 As shown, the fixing assembly includes an outer plate 12 symmetrically arranged on the surface of the closed cover 2. An insert plate 13 is fixedly connected to the bottom of the outer plate 12. A positioning frame 32 is symmetrically arranged on the surface of the vacuum mixing cylinder 1. An movable groove for the insert plate 13 to move is opened on the upper surface of the positioning frame 32. A fixing block 33 is fixedly connected to the surface of the positioning frame 32. A fixing rod 34 is slidably inserted into the fixing block 33. One end of the fixing rod 34 extends to the outside of the fixing block 33 and is fixedly connected to a pull ring. An abutment plate 35 is fixedly connected to the outer wall of the fixing rod 34. An abutment spring 36 is sleeved on the outside of the fixing rod 34. The abutment spring 36 abuts between the abutment plate 35 and the fixing block 33. The contact surfaces of the fixing block 33 and the positioning frame 32, as well as the surface of the insert plate 13, are provided with grooves for the fixing rod 34 to move. 4. The movable slot allows for the closure of the cover 2 and the vacuum mixing cylinder 1. Simply pull the pull ring, which will move the fixing rod 34 synchronously. The fixing rod 34 will then move the contact plate 35 synchronously. During the movement of the contact plate 35, the contact spring 36 will be compressed. Then, insert the insertion plate 13 into the positioning frame 32 and release the pull ring. The contact spring 36 will then return to its original position, moving the contact plate 35 and the fixing rod 34 synchronously. When the fixing rod 34 is inserted into the slot on the surface of the insertion plate 13, the cover 2 and the vacuum mixing cylinder 1 can be closed and fixed. This also allows the staff to easily open the cover 2, facilitating the cleaning of the entire internal parts of the device.
[0040] In one embodiment, such as Figures 1-4As shown, both damping rods 28 are fitted with bellows covers 31. The two ends of the bellows covers 31 are fixedly connected to the opposite side of the connecting plate 29 and the closing cover 2, respectively. The bellows covers 31 can effectively protect the damping rods 28 and the return spring 30, thereby effectively extending the service life of the damping rods 28 and the return spring 30, without affecting the normal use of the return spring 30 and the damping rods 28.
[0041] In one embodiment, such as Figure 3 As shown, rubber sealing rings 11 are bonded to the bottom of the closed cover 2 and the upper surface of the vacuum mixing cylinder 1. By setting the rubber sealing rings 11, the sealing performance between the closed cover 2 and the vacuum mixing cylinder 1 after closure can be effectively improved, thereby avoiding leakage of raw materials inside the vacuum mixing cylinder 1.
[0042] In one embodiment, such as Figures 1-4 As shown, a limiting plate 25 is fixedly connected to one side of each of the two support frames 4. Guide rods 26 are symmetrically provided at the bottom of the limiting plate 25. The bottom ends of each pair of guide rods 26 are fixedly connected to the inner walls of the two support frames 4 respectively. A guide plate 27 is slidably connected to the outer wall of each pair of guide rods 26. The outer walls of the two guide plates 27 are fixedly connected to the outer walls of the two connecting frames 23 respectively. During the movement of the connecting frame 23, the guide plates 27 will also move synchronously on the outer walls of the guide rods 26. At this time, the guide plates 27 and the guide rods 26 can effectively play a limiting and guiding role, thereby effectively improving the stability of the mixing cylinder 3 during the movement, and thus effectively improving the accuracy of the weighing sensor 24 in weighing the raw materials.
[0043] In one embodiment, such as Figure 4 As shown, multiple support feet 21 are fixedly connected to the surface of the vacuum mixing cylinder 1. Rubber anti-slip pads 22 are glued to the bottom of each support foot 21. Herringbone anti-slip grooves are evenly spaced on the bottom of the rubber anti-slip pads 22. The rubber anti-slip pads 22 and the herringbone anti-slip grooves can effectively increase the friction between the device and the ground, thereby preventing displacement of the device during operation and effectively improving the stability of the device during operation.
[0044] The above embodiments disclose a vacuum homogenizing emulsifier. When emulsifying cosmetics, different raw materials are first added to two feed cylinders 5. The first solenoid valve 7 at the bottom of one feed cylinder 5 opens, allowing the raw material inside the feed cylinder 5 to enter the mixing cylinder 3. When one raw material enters the mixing cylinder 3, its weight causes the mixing cylinder 3 to shift downwards. At this point, a weighing sensor 24 can be used to weigh the raw material. After weighing, the weighing sensor 24 transmits a signal to the controller, which then controls the first solenoid valve 7 at the bottom of one feed cylinder 5 to close and the first solenoid valve 7 at the bottom of the other feed cylinder 5 to open. At this time, the raw material inside the other feeding cylinder 5 will also be added to the mixing cylinder 3. The weighing sensor 24 can also effectively weigh the other raw material. When the other raw material is weighed, the weighing sensor 24 will transmit the signal to the controller. The controller will then control the first solenoid valve 7 at the bottom of the other feeding cylinder 5 to close and control the second solenoid valve 9 at the bottom of the mixing cylinder 3 to open. At this time, the quantitative raw material will fall into the vacuum mixing cylinder 1. When the raw material is completely inside the vacuum mixing cylinder 1, the drive motor 15 will start running and drive the stirring rod 18 to rotate synchronously. At this time, the raw material can be mixed and stirred by the stirring rod 18, which can effectively carry out emulsification production of cosmetics and effectively improve the overall practicality of the device.
[0045] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A vacuum homogenizing emulsifier, comprising a vacuum mixing cylinder (1), characterized in that, A closed cover (2) is provided directly above the vacuum mixing cylinder (1), and a proportioning cylinder (3) is provided directly above the closed cover (2). A support frame (4) is symmetrically provided on the surface of the closed cover (2). A feed cylinder (5) is installed inside the support frame (4). The bottom of the feed cylinder (5) is connected to the inside of the proportioning cylinder (3) through a first solenoid valve (7) and a first bellows (8). The bottom of the proportioning cylinder (3) is connected to the inside of the closed cover (2) through a second solenoid valve (9) and a second bellows (10). The bottom of the vacuum mixing cylinder (1) is connected to a discharge pipe (20) through a third solenoid valve (19). The system also includes: A metering component is disposed on the outer wall of the mixing cylinder (3) and is used to meter the raw materials; A stirring assembly is disposed on the upper surface of the closed cover (2) and is used to stir and mix the raw materials; The fixing components are symmetrically arranged on the surface of the closed cover (2) and are used to fix the closed cover (2) to the vacuum mixing cylinder (1).
2. The vacuum homogenizing emulsifier according to claim 1, characterized in that, The quantitative component includes a fixed ring (6) fixedly connected to the outer wall of the mixing cylinder (3). A connecting frame (23) is symmetrically provided on the surface of the fixed ring (6). A weighing sensor (24) is provided directly below the connecting frame (23). The bottom of the weighing sensor (24) is fixedly connected to the upper surface of the closed cover (2). A connecting plate (29) is symmetrically provided on the surface of the fixed ring (6). A damping rod (28) is symmetrically provided on the upper surface of the closed cover (2). The telescopic end of the damping rod (28) is fixedly connected to the bottom of the connecting plate (29). A return spring (30) is sleeved on the outside of the damping rod (28). The return spring (30) abuts against the connecting plate (29) and the closed cover (2).
3. The vacuum homogenizing emulsifier according to claim 1, characterized in that, The stirring assembly includes a support frame (14) fixedly connected to the upper surface of the closed cover (2). A rotating rod (16) is symmetrically rotatably connected to the bottom of the support frame (14). A turntable (17) is fixedly connected to the bottom end of the rotating rod (16). Multiple stirring rods (18) are fixedly connected to the outer wall of the rotating rod (16). A drive motor (15) is fixedly connected to the upper surface of the support frame (14). The output shaft of the drive motor (15) is fixedly connected to the top end of one of the rotating rods (16) through a coupling. The two rotating rods (16) are connected by a chain and sprocket drive.
4. The vacuum homogenizing emulsifier according to claim 1, characterized in that, The fixing assembly includes an outer plate (12) symmetrically arranged on the surface of the closed cover (2). An insert plate (13) is fixedly connected to the bottom of the outer plate (12). A positioning frame (32) is symmetrically arranged on the surface of the vacuum mixing cylinder (1). An active groove for the insert plate (13) to move is opened on the upper surface of the positioning frame (32). A fixing block (33) is fixedly connected to the surface of the positioning frame (32). A fixing rod (34) is slidably inserted into the fixing block (33). One end of the fixing rod (34) extends to the outside of the fixing block (33) and is fixedly connected to a pull ring. An abutment plate (35) is fixedly connected to the outer wall of the fixing rod (34). An abutment spring (36) is sleeved on the outside of the fixing rod (34). The abutment spring (36) abuts between the abutment plate (35) and the fixing block (33). Slots for the fixing rod (34) to move are opened on the contact surface of the fixing block (33) and the positioning frame (32) and on the surface of the insert plate (13).
5. The vacuum homogenizing emulsifier according to claim 2, characterized in that, Both damping rods (28) are fitted with bellows covers (31), and the two ends of the bellows covers (31) are fixedly connected to the opposite side of the connecting plate (29) and the closing cover (2), respectively.
6. The vacuum homogenizing emulsifier according to claim 1, characterized in that, Rubber sealing rings (11) are bonded to the bottom of the closed cover (2) and the upper surface of the vacuum mixing cylinder (1).
7. The vacuum homogenizing emulsifier according to claim 2, characterized in that, Each of the two support frames (4) is fixedly connected to a limiting plate (25) on one side. The bottom of the limiting plate (25) is symmetrically provided with guide rods (26). The bottom ends of each pair of guide rods (26) are fixedly connected to the inner walls of the two support frames (4). Each pair of guide rods (26) is slidably connected to a guide plate (27). The outer walls of the two guide plates (27) are fixedly connected to the outer walls of the two connecting frames (23).
8. The vacuum homogenizing emulsifier according to claim 1, characterized in that, The surface of the vacuum mixing cylinder (1) is fixedly connected with multiple support feet (21), and the bottom of each of the multiple support feet (21) is bonded with a rubber anti-slip pad (22). The bottom of the rubber anti-slip pad (22) is provided with herringbone anti-slip grooves at equal intervals.