Vibrating cosmetic raw material filtering device
Patent Information
- Application Number
- CN202521464165.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-14
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-07-14
AI Technical Summary
[0003]公开(公布)号CN217550456U的专利公布了一种化妆品原料的筛选装置,所述筛选装置设置有:箱体;所述箱体上部设置有进料口;所述箱体上设置有控制按钮;所述箱体内设置有排料管;所述箱体下部设置有集料盒;所述箱体内部设置有筛网;所述箱体内部设置有紫外线灯;所述箱体内部设置有离心机;所述箱体内部设置有集料斗,本实用新型能够将不同的原料进行分离输出,节省了人力和物力;本实用新型能够将不同的原料收集起来,收纳整理,非常的简单便捷,但是该专利通过离心机进行分离分类存在一定的缺点,其离心机内部空间狭小,在筛分过程中,筛分速度慢、不能将化妆品原料筛分均匀
[0014](1)通过固定架、装料斗、上料管、伺服电机和出料口配合使用可以将化妆品原料快速完成上料,避免人工上料费时费力,提升了化妆品原料过滤的工作效率。
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Figure CN224641570U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cosmetic raw material filtration technology, specifically a vibrating cosmetic raw material filtration device. Background Technology
[0002] Cosmetics are preparations (excluding soap) used on the human body to beautify, preserve, or alter a person's appearance (e.g., for performance purposes), or to cleanse, dye, wipe, correct, or protect the skin, hair, nails, eyes, or teeth. Currently, an essential step in the production of cosmetics is the filtration of cosmetics and raw materials. The quality of the filtration directly affects the purity and quality of the cosmetics.
[0003] Patent CN217550456U discloses a screening device for cosmetic raw materials. The screening device includes: a box; a feed inlet at the top of the box; a control button on the box; a discharge pipe inside the box; a collection box at the bottom of the box; a screen inside the box; an ultraviolet lamp inside the box; a centrifuge inside the box; and a collection hopper inside the box. This invention can separate and output different raw materials, saving manpower and resources. It can also collect and organize different raw materials in a simple and convenient way. However, the centrifuge separation method has certain drawbacks. The centrifuge has a small internal space, resulting in slow screening speed and an inability to uniformly separate the cosmetic raw materials. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a vibrating cosmetic raw material filtration device. The feeding component can quickly feed the cosmetic raw materials, avoiding the time and labor of manual feeding, thus improving the working efficiency of cosmetic raw material filtration. The sieving component can accelerate the sieving speed of the cosmetic raw materials. The first sieve plate, the second sieve plate and the receiving plate are arranged in layers with a sufficiently large sieving space to ensure that the cosmetic raw materials can be filtered and sieved evenly.
[0005] The technical problem to be solved by this utility model is achieved by the following technical solution:
[0006] A vibrating cosmetic raw material filtration device includes: a filter box, a fixed base installed at the bottom of the filter box, a support base disposed at the bottom of the fixed base, a feeding assembly disposed at the outer end of the filter box, the feeding assembly including: a fixed frame, a hopper, a feeding pipe, a servo motor and a discharge port, and a sieving assembly disposed inside the filter box, the sieving assembly including: a first sieve plate, a second sieve plate, a receiving plate and a vibrating motor.
[0007] Preferably, the filter box is provided with a fixed frame at the outer end, a hopper is installed inside the fixed frame, a feeding pipe with an inclined structure is installed at the bottom of the feeding hopper, the feeding pipe is connected to the feeding hopper, a feeding auger is installed inside the feeding pipe, a servo motor for use with the feeding auger is installed on one side of the bottom of the feeding pipe, and a discharge port is installed at the top of the feeding pipe facing the filter box.
[0008] Preferably, a first sieve plate is installed at the top inside the filter box, and a number of coarse sieve holes are opened on the surface of the first sieve plate. A second sieve plate is installed at the bottom of the first sieve plate, and a number of fine sieve holes are opened on the surface of the second sieve plate. A receiving plate is installed at the bottom of the second sieve plate, and a vibration motor is installed on both sides of the bottom of the fixed base.
[0009] Preferably, two limiting rods are installed on one side of the outer end of the fixing frame, and the feeding pipe is located between the two limiting rods. The two limiting rods and the feeding pipe are fixedly installed by bolts.
[0010] Preferably, mounting plates are installed on both sides of the bottom of the fixed base and both sides of the top of the support base, a steel helical spring is provided between the two mounting plates, and a fixing screw is installed between the two mounting plates and the steel helical spring.
[0011] Preferably, the outer end of the filter box is provided with three discharge ports that are opposite to the first sieve plate, the second sieve plate and the receiving plate. Each of the three discharge ports is equipped with a guide tray. The length of the three guide trays gradually decreases from top to bottom. Each of the three guide trays is provided with a collection box at the bottom.
[0012] Preferably, a control box is installed at the outer end of the fixed frame. The control box is connected to the servo motor and the vibration motor respectively via wires. The control box is provided with start and stop buttons for controlling the servo motor and the vibration motor respectively.
[0013] Compared with existing technologies, the beneficial effects of this utility model are:
[0014] (1) By using a fixed frame, a hopper, a feeding pipe, a servo motor and a discharge port together, cosmetic raw materials can be fed quickly, avoiding the time and effort of manual feeding and improving the working efficiency of cosmetic raw material filtration.
[0015] (2) The use of the first sieve plate, the second sieve plate, the receiving plate and the vibrating motor can speed up the sieving speed of cosmetic raw materials. The first sieve plate, the second sieve plate and the receiving plate are arranged in layers to provide a sufficiently large sieving space, ensuring that the cosmetic raw materials can be filtered and sieved evenly. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0017] Figure 2 This is a schematic cross-sectional view of the present invention.
[0018] Figure 3 This is a schematic diagram of a half-section of the filter box of this utility model.
[0019] Figure 4 For the present utility model Figure 1 Enlarged structural diagram at point A in the middle.
[0020] Figures 1-4 Components: 1. Filter box; 101. Fixed base; 102. Support base; 2. Fixed frame; 201. Feeding hopper; 202. Feeding pipe; 203. Servo motor; 204. Discharge port; 205. Limiting rod; 3. First sieve plate; 301. Second sieve plate; 302. Receiving plate; 303. Vibration motor; 304. Mounting plate; 305. Steel helical spring; 306. Fixing screw; 4. Discharge port; 401. Guide tray; 402. Collection box; 5. Control box. Detailed Implementation
[0021] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0022] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.
[0023] Example
[0024] like Figures 1-4 As shown, a vibrating cosmetic raw material filtration device includes: a filter box 1, a fixed base 101 installed at the bottom of the filter box 1, a support base 102 set at the bottom of the fixed base 101, a feeding assembly set at the outer end of the filter box 1, the feeding assembly including: a fixed frame 2, a hopper 201, a feeding pipe 202, a servo motor 203 and a discharge port 204, and a sieving assembly set inside the filter box 1, the sieving assembly including: a first sieve plate 3, a second sieve plate 301, a receiving plate 302 and a vibrating motor 303.
[0025] The filter box 1 is provided with a fixed frame 2 at its outer end. A hopper 201 is installed inside the fixed frame 2. A feeding pipe 202 with an inclined structure is installed at the bottom of the feeding hopper 201. The feeding pipe 202 is connected to the feeding hopper 201. A feeding auger is installed inside the feeding pipe 202. A servo motor 203 for use with the feeding auger is installed on one side of the bottom of the feeding pipe 202. A discharge port 204 is installed at the top of the feeding pipe 202 facing the filter box 1.
[0026] When using the filter box 1 and the loading hopper 201, they are installed in a cleanroom. Before entering the cleanroom, workers must wear special production clothing and undergo full-body dust removal and disinfection to ensure good hygiene during cosmetic production. When filtering cosmetic raw materials, the raw materials are poured into the loading hopper 201. Since the feeding pipe 202 is connected to the loading hopper 201, the raw materials inside the loading hopper 201 can enter the feeding pipe 202 and come into contact with the feeding auger inside the feeding pipe 202. At this time, the servo motor 203 is started, and the servo motor 203 drives the feeding auger to run inside the feeding pipe 202, conveying the raw materials to the top of the feeding pipe 202 and discharging them from the outlet 204 into the filter box 1. This allows for rapid loading of cosmetic raw materials, avoiding the time-consuming and labor-intensive manual loading and improving the efficiency of cosmetic raw material filtration.
[0027] Two limiting rods 205 are installed on one side of the outer end of the fixing frame 2. The feeding pipe 202 is located between the two limiting rods 205. The two limiting rods 205 and the feeding pipe 202 are fixedly installed with bolts. When the feeding pipe 202 is in use, since the feeding pipe 202 has an inclined structure and a long pipe body, the feeding pipe 202 is fixedly installed with the two limiting rods 205 at the middle position of the feeding pipe 202. This can stably place the feeding pipe 202 and ensure that the feeding pipe 202 has good stability during use.
[0028] The filter box 1 has a first sieve plate 3 installed at the top inside, with several coarse sieve holes on its surface. A second sieve plate 301 is installed at the bottom of the first sieve plate 3, with several fine sieve holes on its surface. A receiving plate 302 is installed at the bottom of the second sieve plate 301. Vibration motors 303 are installed on both sides of the bottom of the fixed base 101.
[0029] When the feeding pipe 202 conveys the cosmetic raw materials and discharges them from the outlet 204 into the filter box 1, the vibration motor 303 is started first. The vibration motor 303 generates vibration force on the fixed base 101, which is transmitted to the filter box 1. The cosmetic raw materials fall onto the first sieve plate 3 and are initially sieved through several coarse sieve holes on the surface of the first sieve plate 3, separating out large particles of cosmetic raw materials. After the initial sieving, the cosmetic raw materials fall onto the second sieve plate 301 and are further sieved through several fine sieve holes on the surface of the second sieve plate 301. Cosmetic raw materials undergo secondary sieving to separate out fine particles. After secondary sieving, the cosmetic raw materials fall onto the receiving plate 302. At this point, the cosmetic raw material powder falling onto the receiving plate 302 is uniform. During use, the first sieve plate 3, the second sieve plate 301, and the receiving plate 302, under the action of vibration, can accelerate the sieving speed of the cosmetic raw materials. The layered arrangement of the first sieve plate 3, the second sieve plate 301, and the receiving plate 302 provides a sufficiently large sieving space to ensure that the cosmetic raw materials can be filtered and sieved uniformly.
[0030] The filter box 1 has three discharge ports 4 at its outer end, which are opposite to the first sieve plate 3, the second sieve plate 301 and the receiving plate 302. Each of the three discharge ports 4 is equipped with a guide tray 401 at its outer end. The length of the three guide trays 401 gradually decreases from top to bottom. Each of the three guide trays 401 is equipped with a collection box 402 at its bottom.
[0031] During the filtration and sieving of cosmetic raw materials using the first sieve plate 3, the second sieve plate 301, and the receiving plate 302, discharge ports 4 are provided at the outer ends of all three plates. Large particles of cosmetic raw materials sieved from the first sieve plate 3 are discharged from the filter box 1 through the discharge port 4, then pass through the guide tray 401 and fall into the collection box 402. Meanwhile, small particles of cosmetic raw materials sieved from the second sieve plate 301 are discharged from the filter box 1 through their respective discharge ports 4, then pass through the guide tray 401 and fall into the corresponding collection box 402. Finally, finished cosmetic raw materials collected on the receiving plate 302 are discharged from the filter box 1 through their respective discharge ports 4, then pass through the guide tray 401 and fall into the corresponding collection box 402. This allows for the layered filtration and collection of large particles, small particles, and finished cosmetic raw materials.
[0032] Mounting plates 304 are installed on both sides of the bottom of the fixed base 101 and both sides of the top of the support base 102. A steel helical spring 305 is provided between the two mounting plates 304, and a fixing screw 306 is installed between the two mounting plates 304 and the steel helical spring 305.
[0033] When the fixed base 101 and the support base 102 are in use, they are connected by a steel helical spring 305. The steel helical spring 305 is made of spring steel and has a helical structure that can withstand pressure. It has an equal pitch design and its load-bearing capacity is proportional to the diameter of the steel wire and the number of turns. It has a good load-bearing capacity. When the vibrating motor 303 vibrates the filter box 1, the setting of the steel helical spring 305 can make the filter box 1 have elastic force, avoid excessive resistance of the filter box 1, and ensure that the filter box 1 has good vibrating performance.
[0034] The control box 5 is installed on the outer end of the fixed frame 2. The control box 5 is connected to the servo motor 203 and the vibration motor 303 by wires. The control box 5 is equipped with start and stop buttons for controlling the servo motor 203 and the vibration motor 303, respectively. When the servo motor 203 and the vibration motor 303 are in use, they are connected to the control box 5. The power of the control box 5 is provided by an external power source, so that the control box 5, the servo motor 203 and the vibration motor 303 can be powered on and used normally. The user can control the servo motor 203 and the vibration motor 303 to start or stop according to the actual use needs through the control box 5.
[0035] Working principle:
[0036] When using the filter box 1 and the loading hopper 201, they are installed in a cleanroom. Before entering the cleanroom, workers must wear special production clothing and undergo full-body dust removal and disinfection to ensure good hygiene during cosmetic production. When filtering cosmetic raw materials, the raw materials are poured into the loading hopper 201. Since the feeding pipe 202 is connected to the loading hopper 201, the raw materials inside the loading hopper 201 can enter the feeding pipe 202 and come into contact with the feeding auger inside the feeding pipe 202. At this time, the servo motor 203 is started, and the servo motor 203 drives the feeding auger to run inside the feeding pipe 202, conveying the raw materials to the top of the feeding pipe 202 and discharging them from the outlet 204 into the filter box 1. This allows for rapid loading of cosmetic raw materials, avoiding the time-consuming and labor-intensive manual loading and improving the efficiency of cosmetic raw material filtration.
[0037] When the feeding pipe 202 conveys the cosmetic raw materials and discharges them from the outlet 204 into the filter box 1, the vibration motor 303 is started first. The vibration motor 303 generates vibration force on the fixed base 101, which is transmitted to the filter box 1. The cosmetic raw materials fall onto the first sieve plate 3 and are initially sieved through several coarse sieve holes on the surface of the first sieve plate 3, separating out large particles of cosmetic raw materials. After the initial sieving, the cosmetic raw materials fall onto the second sieve plate 301 and are further sieved through several fine sieve holes on the surface of the second sieve plate 301. Cosmetic raw materials undergo secondary sieving to separate out fine particles. After secondary sieving, the cosmetic raw materials fall onto the receiving plate 302. At this point, the cosmetic raw material powder falling onto the receiving plate 302 is uniform. During use, the first sieve plate 3, the second sieve plate 301, and the receiving plate 302, under the action of vibration, can accelerate the sieving speed of the cosmetic raw materials. The layered arrangement of the first sieve plate 3, the second sieve plate 301, and the receiving plate 302 provides a sufficiently large sieving space to ensure that the cosmetic raw materials can be filtered and sieved uniformly.
[0038] During the filtration and sieving of cosmetic raw materials using the first sieve plate 3, the second sieve plate 301, and the receiving plate 302, discharge ports 4 are provided at the outer ends of all three plates. Large particles of cosmetic raw materials sieved from the first sieve plate 3 are discharged from the filter box 1 through the discharge port 4, then pass through the guide tray 401 and fall into the collection box 402. Meanwhile, small particles of cosmetic raw materials sieved from the second sieve plate 301 are discharged from the filter box 1 through their respective discharge ports 4, then pass through the guide tray 401 and fall into the corresponding collection box 402. Finally, finished cosmetic raw materials collected on the receiving plate 302 are discharged from the filter box 1 through their respective discharge ports 4, then pass through the guide tray 401 and fall into the corresponding collection box 402. This allows for the layered filtration and collection of large particles, small particles, and finished cosmetic raw materials.
[0039] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.
[0040] The above provides a detailed description of a vibrating cosmetic raw material filtration device provided in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the technical solutions and core ideas of this application. Those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A vibrating cosmetic raw material filtering apparatus, characterized by, include: Filter box (1); A mounting base (101) installed at the bottom of the filter box (1); A support base (102) is disposed at the bottom of the fixed base (101); The feeding assembly is located at the outer end of the filter box (1). The feeding assembly includes: a fixed frame (2), a hopper (201), a feeding pipe (202), a servo motor (203), and a discharge port (204). The sieving assembly is installed inside the filter box (1). The sieving assembly includes: a first sieving plate (3), a second sieving plate (301), a receiving plate (302), and a vibration motor (303).
2. The vibratory cosmetic raw material filtering apparatus according to claim 1, characterized by, The filter box (1) is provided with a fixed frame (2) at the outer end. A loading hopper (201) is installed inside the fixed frame (2). A feeding pipe (202) with an inclined structure is installed at the bottom of the loading hopper (201). The feeding pipe (202) is connected to the loading hopper (201). A feeding auger is installed inside the feeding pipe (202). A servo motor (203) for use with the feeding auger is installed on one side of the bottom of the feeding pipe (202). A discharge port (204) is installed at the top of the feeding pipe (202) facing the filter box (1).
3. The vibratory cosmetic raw material filtering apparatus according to claim 2, characterized by, The filter box (1) has a first sieve plate (3) installed at the top inside. The surface of the first sieve plate (3) has several coarse sieve holes. The bottom of the first sieve plate (3) has a second sieve plate (301) installed. The surface of the second sieve plate (301) has several fine sieve holes. The bottom of the second sieve plate (301) has a receiving plate (302) installed. The bottom sides of the fixed base (101) are equipped with vibration motors (303).
4. The vibratory cosmetic raw material filtering apparatus according to claim 2, characterized by Two limiting rods (205) are installed on one side of the outer end of the fixing frame (2). The feeding pipe (202) is located between the two limiting rods (205). The two limiting rods (205) and the feeding pipe (202) are fixedly installed by bolts.
5. The vibratory cosmetic raw material filtering apparatus according to claim 1, characterized by, Mounting plates (304) are installed on both sides of the bottom of the fixed base (101) and both sides of the top of the support base (102). A steel helical spring (305) is provided between the two mounting plates (304), and a fixing screw (306) is installed between the two mounting plates (304) and the steel helical spring (305).
6. The vibratory cosmetic raw material filtering apparatus according to claim 3, characterized by The filter box (1) has three discharge ports (4) at its outer end, which are opposite to the first sieve plate (3), the second sieve plate (301) and the receiving plate (302). Each of the three discharge ports (4) is equipped with a guide tray (401) at its outer end. The length of the three guide trays (401) gradually decreases from top to bottom. Each of the three guide trays (401) is equipped with a collection box (402) at its bottom.
7. The vibratory cosmetic raw material filtering apparatus according to claim 3, characterized by The outer end of the fixed frame (2) is equipped with a control box (5). The control box (5) is connected to the servo motor (203) and the vibration motor (303) respectively by wires. The control box (5) is provided with start and stop buttons for controlling the servo motor (203) and the vibration motor (303) respectively.
Citation Information
Patent Citations
Screening device for cosmetic raw materials
CN217550456U