Raw material mixing device for preparing perfume in laboratory

By designing a mixing device that automatically records the volume of raw materials and filters impurities, the problem of recording troubles and difficult to remove impurities in perfume preparation is solved, the experimental efficiency and perfume purity are improved, and the perfume quality is ensured.

CN223159124UActive Publication Date: 2025-07-29武夷学院
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Patent Information

Application Number
CN202421494144.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-27
Publication Date
2025-07-29
Estimated Expiration
2034-06-27

AI Technical Summary

Technical Problem

When preparing perfume, the existing mixing device makes it difficult to record the amount of raw materials, which affects the accuracy of experimental data, and is difficult to remove debris, affecting the quality of the perfume.

Method used

A raw material mixing device including a cutting structure and a recording structure is designed to automatically record the raw material volume and is equipped with a filter structure to remove precipitates and impurities. Combined with the electronic valve control process, it improves experimental efficiency and perfume purity.

Benefits of technology

Automatic recording of raw material volume is realized, artificial misrecording is reduced, experimental efficiency and perfume purity are improved, perfume quality is ensured, the packaging process is simplified, and work efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a raw material mixing device for preparing perfume in a laboratory, and belongs to the technical field of perfume raw material mixing devices. The device comprises a supporting frame and a discharging barrel located above the supporting frame, the upper end of the discharging barrel is communicated with a stirring barrel through a first valve, a discharging structure used for adding raw materials is arranged above the stirring barrel, and a recording structure corresponding to the discharging structure is arranged at the upper end of the stirring barrel. A stirring structure used for stirring raw materials is arranged in the stirring barrel, a filtering structure playing a filtering role is arranged in the discharging barrel, and discharging openings are evenly formed in the lower end of the discharging barrel. The feeding structure and the recording structure of the raw material mixing device are matched to automatically record the adding volume of the raw materials, so that the experiment efficiency is improved, an experimenter can conveniently record and sort data in the later period, meanwhile, the filtering structure can filter precipitates and solid impurities, and the perfume quality is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of perfume raw material mixing devices, and specifically relates to a raw material mixing device for preparing perfume in a laboratory. Background Art

[0002] Perfume is an alcoholic solution of essence, plus appropriate fixatives, antioxidants, surfactants, etc. It has a fragrant aroma and can be sprayed on the wrists, elbows, clothes, handkerchiefs, etc. to emit a pleasant fragrance. It is one of the important cosmetics. When making perfume, various raw materials are usually mixed in a certain proportion. The proportion between aromatic raw materials is crucial. Therefore, it is necessary to accurately control the accuracy of the raw materials. When making perfume, a mixing ratio device is usually required. The mixing ratio device can determine the ratio of liquid raw materials and can perform mixing after determining the ratio.

[0003] When making perfume in a laboratory, about 6 - 7 or more kinds of essence raw materials are needed, and even more than a dozen different fragrance types of essence are required. Among them, 2 - 3 kinds of essence are used as the main fragrance types, and the others are used as auxiliaries. The addition amount of the auxiliary spices is relatively small, but many kinds need to be added. During the laboratory production process, it is rather troublesome to record the volume of these spices added in milliliters. Sometimes, the recording is forgotten. Moreover, because in the process of making perfume, an oil-soluble antioxidant is usually added, and this antioxidant is a solid and needs to be dissolved in the perfume, which will produce solid precipitates. These solid precipitates need to be filtered out, otherwise the quality of the perfume will be affected. Summary of the Utility Model

[0004] Aiming at the above problems existing in the prior art, the technical problem to be solved by the utility model is to provide a raw material mixing device for preparing perfume in a laboratory, so as to solve the problems that the raw material addition amount is troublesome to record during the preparation of perfume by the current mixing device, which affects the accuracy of experimental data, and it is not easy to remove impurities.

[0005] To solve the above technical problems, the technical solution adopted by the utility model is as follows:

[0006] A raw material mixing device for preparing perfume in a laboratory, comprising: a support frame and a discharge barrel located above the support frame. The upper end of the discharge barrel is connected to a stirring barrel through a first valve. A feeding structure for adding raw materials is arranged above the stirring barrel, and a recording structure corresponding to the feeding structure is arranged at the upper end of the stirring barrel. A stirring structure for stirring raw materials is arranged inside the stirring barrel. A filtering structure for filtering is arranged inside the discharge barrel. The lower end of the discharge barrel is evenly provided with discharge ports. The evenly arranged discharge ports facilitate the processed perfume to flow into different perfume bottles along the discharge ports, which is convenient for sub-packaging and greatly improves the working efficiency.

[0007] The blanking structure includes: an installation groove evenly installed on the upper end surface of the mixing barrel and communicating with the inside of the mixing barrel, and a raw material measuring cylinder installed inside the installation groove with an open lower end. A pull plate corresponding to the lower end surface of the raw material measuring cylinder is provided inside the mixing barrel;

[0008] The recording structure includes: a sliding rod fixed on the upper side of the mixing barrel. A sliding sleeve is provided on the sliding rod, and the sliding sleeve is matched with the sliding rod through a locking bolt. A recording camera is provided at the upper end of the sliding sleeve through a connecting rod corresponding to the raw material measuring cylinder. The cooperation of the blanking structure and the recording structure can automatically record the volume of the raw materials, eliminating the need to record the volume of each addition of these spices one by one in milliliters, and there will be no forgetting. The combination of the blanking structure and the recording structure improves the experimental efficiency, facilitates the addition of spices, and can quickly record the volume of the spices, making it convenient for experimenters to record and organize data later, greatly improving the experimental efficiency, being more convenient and fast, saving time and effort.

[0009] Further, corresponding sliding grooves are provided at the upper end inside the mixing barrel, and the pull plate is embedded in the sliding grooves. A first opening corresponding to the pull plate is provided on one side of the mixing barrel. A feeding port for adding raw materials such as antioxidants, fixatives, solvents, etc. is provided at the upper end of the mixing barrel.

[0010] Further, the stirring structure includes: a driving motor provided on one side of the mixing barrel, and a stirring rod connected to the output end of the driving motor and provided inside the mixing barrel. The driving motor drives the stirring rod to stir, facilitating the full mixing of various raw materials and spices.

[0011] Further, a second opening is provided on one side of the discharging barrel. Support plates corresponding to the second opening are provided on both sides inside the discharging barrel. A filtering structure corresponding to the second opening is provided on the support plates. The support plates facilitate the sliding of the filtering structure and are convenient for extraction.

[0012] Further, the filtering structure includes: a frame provided on the support plate and corresponding to the first valve. A filter screen is provided at the lower end inside the frame for filtering solid impurities. The side surface of the frame is matched with the second opening. When the stirred perfume enters the discharging barrel through the first valve, the perfume first flows through the filtering structure. The filter screen of the filtering structure can filter out the precipitates and solid impurities, and the pure perfume enters the lower end of the discharging barrel; when the impurities accumulated in the filtering structure reach a certain level, it can be taken out for cleaning, which is time-saving, labor-saving, convenient and fast, and ensures the experimental efficiency.

[0013] Further, a second valve is provided at the discharging port. Both the first valve and the second valve are electronic valves, which facilitates experimenters to timely control the simultaneous opening and closing of multiple valves, making it more convenient for the smooth progress of the experiment and the accuracy of the experiment.

[0014] Beneficial effects: Compared with the prior art, the present application has the following advantages:

[0015] 1. The raw material mixing device for laboratory perfume preparation is provided with a feeding structure and a recording structure. When various raw materials need to be added, the required raw materials only need to be directly added into the raw material measuring cylinders of the feeding structure. Subsequently, the recording camera of the recording structure will quickly take pictures to record the volume of the raw materials in each raw material measuring cylinder. Then, the experimenter pulls out the pull plate, and the raw materials enter the mixing barrel for stirring. There is no need to record one by one how many milliliters of these spices are added, and it will not be forgotten. The combination of the feeding structure and the recording structure improves the experimental efficiency, facilitates the addition of spices, and can quickly record the volume of the spices, which is convenient for the experimenter to record and organize data later, greatly improving the experimental efficiency, being more convenient and fast, saving time and effort.

[0016] 2. A filtering structure is provided in the discharge barrel of the raw material mixing device for laboratory perfume preparation. The stirred perfume enters the discharge barrel from the mixing structure through the first valve. The perfume first flows through the filtering structure, and the filter screen of the filtering structure can filter out sediments and impurities, enabling pure perfume to enter the lower end of the discharge barrel. When the impurities accumulated in the filtering structure reach a certain level, they can be taken out for cleaning, which is time-saving and labor-saving, convenient and fast, and ensures the experimental efficiency.

[0017] 3. The lower end of the discharge barrel of the raw material mixing device for laboratory perfume preparation is evenly provided with discharge ports, and the processed perfume will be filled into different perfume bottles along the discharge ports, which is convenient for filling and greatly improves the work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is an overall schematic diagram of the raw material mixing device for laboratory perfume preparation;

[0019] Figure 2 is a schematic diagram of the internal structure of the mixing barrel;

[0020] Figure 3 is a schematic diagram of the internal structure of the discharge barrel;

[0021] Figure 4 is a schematic diagram of the upper end face structure of the mixing barrel;

[0022] Figure 5 is a schematic diagram of the recording structure;

[0023] Figure 6 is a schematic diagram of the filtering structure.

[0024] Reference numerals: 1, support frame; 2, discharge barrel; 201, second opening; 202, support plate; 3, mixing barrel; 301, sliding groove; 302, first opening; 303, feeding port; 4, blanking structure; 401, mounting groove; 402, pull plate; 403, raw material measuring cylinder; 5, recording structure; 501, sliding rod; 502, sliding sleeve; 503, locking bolt; 504, recording camera; 6, mixing structure; 601, driving motor; 602, mixing rod; 7, first valve; 8, discharge port; 9, second valve; 10, filtering structure; 101, frame; 102, filter screen. Detailed implementation manners

[0025] The present utility model will be further described below with reference to the accompanying drawings.

[0026] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 shown, a raw material mixing device for laboratory perfume preparation includes: a support frame 1 and a discharge barrel 2 located above the support frame 1. The support frame 1 plays an overall supporting role, and the support frame 1 is fixedly connected to the discharge barrel 2. The upper end of the discharge barrel 2 is connected to a mixing barrel 3 through a first valve 7. The perfume mixed well in the mixing barrel 3 can smoothly flow into the interior of the discharge barrel 2 through the first valve 7. A blanking structure 4 for adding raw materials is provided above the mixing barrel 3. The raw materials to be added enter the interior of the mixing barrel 3 through the blanking structure 4. And a recording structure 5 corresponding to the blanking structure 4 is provided at the upper end of the mixing barrel 3. When the raw materials are put into the interior of the blanking structure 4, the recording structure 5 will take pictures of the blanking structure 4 to record the volume of the raw materials, eliminating the need for manual recording, saving time and effort, being convenient and fast, avoiding omissions, and improving the accuracy of the experiment. A mixing structure 6 for mixing raw materials is provided inside the mixing barrel 3. A filtering structure 10 for filtering is provided inside the discharge barrel 2. When the perfume mixed by the mixing structure 6 enters the discharge barrel 2 along with the first valve 7, the perfume first flows through the filtering structure 10. The filtering structure 10 can filter out precipitates and impurities, enabling pure perfume to enter the lower end of the discharge barrel 2. The lower end of the discharge barrel 2 is evenly provided with discharge ports 8. The evenly arranged discharge ports 8 facilitate the processed perfume to be filled into different perfume bottles along the discharge ports 8, facilitating filling and greatly improving work efficiency.

[0027] The blanking structure 4 includes: an installation groove 401 evenly installed on the upper end surface of the mixing barrel 3 and communicating with the inside of the mixing barrel 3, and a raw material measuring cylinder 403 installed inside the installation groove 401 with an open lower end. The outer surface of the raw material measuring cylinder 403 is provided with scales. The open raw material measuring cylinder 403 facilitates the entry of raw materials into the mixing barrel 3. The installation groove 401 is used to fix the raw material measuring cylinder 403 to facilitate the stability of the raw material measuring cylinder 403. Inside the mixing barrel 3, there is a pull plate 402 corresponding to the lower end surface of the raw material measuring cylinder 403. When the pull plate 402 is located at the lower end of the raw material measuring cylinder 403, the raw materials will not flow out of the raw material measuring cylinder 403, which facilitates the recording structure 5 to take pictures and record. After the picture-taking record is completed, the pull plate 402 is pulled out, and the raw materials enter the mixing barrel 3 for stirring;

[0028] The recording structure 5 includes: a sliding rod 501 fixed to the upper side of the mixing barrel 3. A sliding sleeve 502 is provided on the sliding rod 501, and the sliding sleeve 502 is matched with the sliding rod 501 through a locking bolt 503. The upper end of the sliding sleeve 502 is provided with a recording camera 504 through a connecting rod corresponding to the raw material measuring cylinder 403. The experimenter adjusts the position of the sliding sleeve 502 on the sliding rod 501 by loosening the locking bolt 503, and at the same time, the position of the recording camera 504 is adjusted. The user adjusts the position of the recording camera 504 according to the actual situation to facilitate the recording camera 504 to simultaneously capture the data of multiple raw material measuring cylinders 403. The recording camera 504 is an existing camera, and only the photographing function needs to be realized.

[0029] Corresponding sliding grooves 301 are provided at the upper end inside the mixing barrel 3, and the pull plate 402 is embedded in the sliding grooves 301 to facilitate the reciprocating movement of the pull plate 402 to ensure the smooth entry of raw materials. One side of the mixing barrel 3 is provided with a first opening 302 corresponding to the pull plate 402 to facilitate the entry and exit of the pull plate 402. The upper end of the mixing barrel 3 is provided with a feeding port 303 for adding raw materials such as antioxidants and surfactants. The feeding port 303 facilitates the addition of raw materials such as antioxidants and surfactants.

[0030] The stirring structure 6 includes: a driving motor 601 provided on one side of the mixing barrel 3, and a stirring rod 602 connected to the output end of the driving motor 601 and provided inside the mixing barrel 3. When stirring is required, the driving motor 601 drives the stirring rod 602 to stir, which facilitates the full mixing of various raw materials and spices.

[0031] A second opening 201 is provided on one side of the discharge barrel 2 to facilitate the entry and exit of the filtering structure 10. On both sides inside the discharge barrel 2, there are support plates 202 corresponding to the second opening 201. The support plates 202 facilitate the sliding of the filtering structure 10 for easy extraction. The filtering structure 10 corresponding to the second opening 201 is provided on the support plates 202.

[0032] The filtering structure 10 includes a frame 101 provided on the support plate 202 and corresponding to the first valve 7. The frame 101 corresponds to the second opening 201. In the normal state, the end face of the frame 101 blocks the opening 201 to prevent liquid leakage. And a filter net 102 is provided at the lower end inside the frame 101 for filtering impurities. The side surface of the frame 101 cooperates with the second opening 201. The filter net 102 of the filtering structure 10 can filter out sediments and impurities, enabling pure perfume to enter the lower end of the discharge barrel 2. When the impurities accumulated in the filtering structure 10 reach a certain level, it can be taken out for cleaning, which is time-saving, labor-saving, convenient and fast, and ensures the efficiency of the experiment.

[0033] A second valve 9 is provided on the discharge port 8. Both the first valve 7 and the second valve 9 are electronic valves. The electronic valves respond in a timely manner, which is convenient for the experimenter to control the simultaneous opening and closing of multiple valves in a timely manner, and is more convenient for the smooth progress of the experiment and the accuracy of the experiment.

[0034] During the experiment, the experimenter first adds the raw materials to be adjusted into the raw material measuring cylinder 403. The pull plate 402 blocks the lower end of the raw material measuring cylinder 403. The adjusted recording camera 504 takes pictures to record the volume of the raw materials inside the raw material measuring cylinder 403. After the recording is completed, then the experimenter pulls out the pull plate 402, and the raw materials enter the stirring barrel 3 for stirring. There is no need to record the added volume of these spices one by one, and it will not be forgotten. The combination of the feeding structure and the recording structure improves the experimental efficiency, facilitates the addition of spices, and can quickly record the volume of the spices at the same time, which is convenient for the experimenter to record and organize data later, greatly improves the experimental efficiency, is more convenient and fast, and saves time and effort. When the perfume stirred by the stirring structure 10 enters the discharge barrel 2 with the opening of the first valve 7, the perfume will first come into contact with the filtering structure 10. The filter net 102 of the filtering structure 10 can filter out sediments and impurities, enabling pure perfume to enter the lower end of the discharge barrel 2. When the impurities accumulated in the filtering structure 10 reach a certain level, it can be taken out for cleaning, which is time-saving, labor-saving, convenient and fast, and ensures the efficiency of the experiment. Finally, the processed perfume is packaged in different perfume bottles through the discharge port 8, which is convenient for packaging and greatly improves the work efficiency.

[0035] The present utility model provides an idea and an implementation method for a raw material mixing device for preparing perfume in a laboratory. There are many specific application ways. The above is only the preferred implementation manner of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements can still be made, and these improvements should also be regarded as the protection scope of the present utility model.

Claims

1. A raw material mixing device for laboratory preparation of perfume, characterized in that, Including: A support frame (1) and a discharge barrel (2) located above the support frame (1). The upper end of the discharge barrel (2) is connected to a mixing barrel (3) through a first valve (7). Above the mixing barrel (3), there is a feeding structure (4) for adding raw materials, and at the upper end of the mixing barrel (3), there is a recording structure (5) corresponding to the feeding structure (4). Inside the mixing barrel (3), there is a stirring structure (6). Inside the discharge barrel (2), there is a filtering structure (10), and the lower end of the discharge barrel (2) is evenly provided with discharge ports (8). The feeding structure (4) includes: mounting grooves (401) evenly installed on the upper end face of the mixing barrel (3) and communicating with the inside of the mixing barrel (3), and raw material measuring cylinders (403) installed inside the mounting grooves (401) with openings at the lower ends. Inside the mixing barrel (3), there is a pulling plate (402) corresponding to the lower end face of the raw material measuring cylinder (403). The recording structure (5) includes: a sliding rod (501) fixed to the side of the upper end of the mixing barrel (3). A sliding sleeve (502) is provided on the sliding rod (501), and the sliding sleeve (502) is matched with the sliding rod (501) through a locking bolt (503). The upper end of the sliding sleeve (502) is provided with a recording camera (504) corresponding to the raw material measuring cylinder (403) through a connecting rod.

2. The raw material mixing device for laboratory perfume preparation according to claim 1, characterized in that: At the upper end inside the mixing barrel (3), there is a corresponding sliding groove (301), and the pulling plate (402) is embedded in the sliding groove (301). On one side of the mixing barrel (3), there is a first opening (302) corresponding to the pulling plate (402). At the upper end of the mixing barrel (3), there is a feeding port (303) for adding antioxidant.

3. The raw material mixing device for laboratory perfume preparation according to claim 1, characterized in that: The stirring structure (6) includes: a driving motor (601) provided on one side of the mixing barrel (3), and a stirring rod (602) connected to the output end of the driving motor (601) and provided inside the mixing barrel (3).

4. The raw material mixing device for laboratory perfume preparation according to claim 1, characterized in that: On one side of the discharge barrel (2), there is a second opening (201). On both sides inside the discharge barrel (2), there are support plates (202) corresponding to the second opening (201), and a filtering structure (10) corresponding to the second opening (201) is provided on the support plates (202).

5. The raw material mixing device for laboratory perfume preparation according to claim 4, characterized in that: The filtering structure (10) includes: a frame (101) provided on the support plate (202) and corresponding to the first valve (7). At the lower end inside the frame (101), there is a filter net (102) for filtering impurities, and the side of the frame (101) is matched with the second opening (201).

6. The raw material mixing device for laboratory perfume preparation according to claim 1, characterized in that: A second valve (9) is provided on the discharge port (8), and both the first valve (7) and the second valve (9) are electronic valves.