Multi-channel precise mixing equipment for aroma customization

By designing a multi-channel mixing device, the mixing rod swings laterally during rotation. Combined with the mixing blades and cleaning ring, this solves the problems of uneven aroma mixing and contamination, achieving high-precision and consistent aroma customization.

CN223980416UActive Publication Date: 2026-03-10SHENZHEN TAIRUI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing aroma mixing equipment suffers from uneven material distribution and waste and cross-contamination due to material adhesion to the wall surface during the mixing process, making it difficult to meet the requirements for high-precision and consistent aroma customization.

Method used

The multi-channel mixing equipment features a mixing rod that swings laterally while rotating. Combined with the design of mixing blades and cleaning rings, it ensures that the material fully contacts and cleans the inner wall of the mixing chamber. Precise control is achieved through multiple feeding ports and electrically controlled valves.

Benefits of technology

It significantly improves mixing uniformity, reduces material waste and the risk of cross-contamination, ensures the purity and consistency of aroma mixing, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses multi-channel accurate mixing equipment for aroma customization, and relates to the technical field of aroma customization, the multi-channel accurate mixing equipment for aroma customization comprises a mixing cavity, a motor and a mixing rod, the motor is arranged at one end of the mixing cavity, and an output shaft of the motor penetrates into the mixing cavity and is fixedly connected with one end of a sliding rod; the other end of the sliding rod is fixedly connected with a limiting block, and one end of the mixing rod is fixedly connected with a sliding sleeve; according to the utility model, the mixing rod can transversely swing while rotating, so that the stirring dimensionality and range are greatly increased, materials can be fully contacted and mixed at all corners in the mixing cavity, the mixing uniformity is obviously improved, and the requirement on higher-precision aroma mixing is met.
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Description

Technical Field

[0001] This utility model relates to the field of aroma customization technology, specifically a multi-channel precision mixing device for aroma customization. Background Technology

[0002] In the field of custom fragrances, precise and efficient mixing equipment is essential.

[0003] Traditional mixing equipment typically uses a simple mixing method, usually just rotating the mixing rod.

[0004] In this simple mixing mode, it is difficult to achieve a uniform mixing of materials in all directions during the mixing process.

[0005] For example, aroma ingredients with different densities or viscosities often accumulate in certain areas of the mixing chamber, resulting in an imbalance in the proportion of aroma components after mixing, which fails to meet the customer's high-precision requirements for aroma customization.

[0006] At the same time, the single rotating mixing rod cannot fully clean the inner wall of the mixing chamber, and the material is very easy to adhere to the wall surface.

[0007] Over time, the remaining materials not only cause waste, but also mix into the new materials during subsequent mixing, causing cross-contamination and seriously affecting the purity of the product and the consistency of the aroma of each batch.

[0008] In view of the above, this application is hereby submitted. Utility Model Content

[0009] The purpose of this invention is to provide a multi-channel precision mixing device for aroma customization, so as to solve the problems mentioned in the background art.

[0010] To solve the above-mentioned technical problems, this utility model provides a multi-channel precision mixing device for aroma customization, including a mixing chamber, a motor, and a mixing rod. The motor is located at one end of the mixing chamber, and the output shaft of the motor passes through the mixing chamber and is fixedly connected to one end of a sliding rod. The other end of the sliding rod is fixedly connected to a limit block. One end of the mixing rod is fixedly connected to a sliding sleeve, and a sliding cavity is formed in the sliding sleeve. The limit block is slidably connected in the sliding cavity, and a spring is provided between the limit block and the sliding cavity. A support rod is provided on the outside of the sliding sleeve, and a protrusion is provided at one end of the mixing chamber near the sliding sleeve.

[0011] Furthermore, the two ends of the protrusion are arc-shaped.

[0012] Furthermore, there are three of each of the support rods and protrusions, arranged in a circumferential array at equal intervals.

[0013] Furthermore, the mixing rod includes a mixing blade and a cleaning ring, the mixing blade being disposed along the outer side wall of the mixing rod, and the cleaning ring being disposed outside the mixing blade.

[0014] Furthermore, there are multiple cleaning rings, which are equally spaced on the outside of the mixing blade, and the spacing between the cleaning rings is the same as the length of the sliding cavity.

[0015] Furthermore, a sliding sleeve is provided on the outer side of the other end of the mixing rod, and the sliding sleeve is rotatably connected to the mixing chamber.

[0016] Furthermore, it also includes a feeding box, which is located at one end of the mixing chamber. The feeding box has multiple feeding ports and is equipped with a flow valve.

[0017] Furthermore, it also includes a discharge port, which is located at the other end of the mixing chamber, and an electrically controlled valve is provided in the discharge port.

[0018] Compared with the prior art, the beneficial effects of this utility model are:

[0019] In this invention, the mixing rod can also swing laterally while rotating, which greatly increases the dimension and range of stirring, allowing the materials to fully contact and mix in every corner of the mixing chamber, significantly improving the uniformity of mixing and meeting the requirements for higher precision aroma mixing.

[0020] In this invention, the swinging of the mixing rod allows the mixing blade and cleaning ring to make more comprehensive contact with the inner wall of the mixing chamber, effectively preventing material from accumulating and remaining in corners or edges. This ensures that the material in the mixing chamber is discharged more thoroughly after each mixing, reducing material waste and also reducing the risk of cross-contamination caused by material residue, thus guaranteeing the purity and consistency of each batch of aroma mixture. Attached Figure Description

[0021] Figure 1 A schematic diagram of the overall structure of a multi-channel precision mixing device for customizing a single aroma;

[0022] Figure 2 A schematic diagram of the internal structure of a multi-channel precision mixing device for customizing a single aroma.

[0023] Figure 3 A cross-sectional schematic diagram of a multi-channel precision mixing device for customizing a specific aroma.

[0024] In the diagram: 1. Mixing chamber; 2. Feeding box; 3. Discharge port; 4. Motor; 401. Slide rod; 402. Limiting block; 5. Mixing rod; 501. Sliding sleeve; 502. Sliding chamber; 503. Mixing blade; 504. Cleaning ring; 6. Spring; 7. Support rod; 8. Protrusion. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0026] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0027] Please see Figure 1-3 This utility model provides a technical solution:

[0028] A multi-channel precision mixing device for custom aromas includes a mixing chamber 1, a motor 4, and a mixing rod 5. It also includes a feeding box 2 and a discharge port 3. The feeding box 2 is located at one end of the mixing chamber 1 and has multiple feeding ports. A flow valve is installed in the feeding box 2. The discharge port 3 is located at the other end of the mixing chamber 1 and is equipped with an electrically controlled valve.

[0029] When customizing the aroma, the flow rate valves of each feeding port in the feeding box 2 are first adjusted according to the pre-set aroma formula.

[0030] Different aroma ingredients enter the feeding box 2 in precise proportions through multiple feeding ports under the precise control of the flow valve, and then flow into the mixing chamber 1.

[0031] At this time, motor 4 starts to run, driving mixing rod 5 to rotate at high speed in mixing chamber 1, stirring the aroma raw materials in the chamber in an all-round and high-intensity manner, so as to promote them to be fully mixed evenly.

[0032] Once the mixing process is complete, the electrically controlled valve at outlet 3 is opened, and the mixed material is smoothly discharged from outlet 3 for subsequent product processing.

[0033] Multiple feeding ports, coupled with flow valves, enable precise control over the amount of each aroma ingredient added, ensuring extremely high precision in aroma formulation and meeting the stringent requirements of various customers for aroma customization.

[0034] The electrically controlled valve installed at the discharge port 3 can flexibly control the start and stop of the discharge according to the actual production needs, making the management of the production process more convenient and efficient.

[0035] The mixing rod 5 includes a mixing blade 503 and a cleaning ring 504. The mixing blade 503 is arranged along the outer side wall of the mixing rod 5. The cleaning ring 504 is arranged on the outer side of the mixing blade 503. There are multiple cleaning rings 504, which are evenly spaced on the outer side of the mixing blade 503. The spacing of the cleaning rings 504 is the same as the length of the sliding cavity 502.

[0036] The mixing blade 503 on the mixing rod 5 stirs and mixes the material in the mixing chamber 1 during the oscillation process.

[0037] Meanwhile, the cleaning rings 504, which are equally spaced on the outer side of the mixing blade 503, can effectively clean the inner wall of the mixing chamber 1 when the mixing rod 5 swings, as their spacing is the same as the length of the sliding cavity 502, thus preventing material from adhering.

[0038] The cleaning ring 504 can automatically clean the inner wall of the mixing chamber 1, preventing material residue from affecting the accuracy of the next mixing and the product quality, and reducing the frequency and workload of manual cleaning.

[0039] The motor 4 is located at one end of the mixing chamber 1. The output shaft of the motor 4 passes through the mixing chamber 1 and is fixedly connected to one end of the slide rod 401. The other end of the slide rod 401 is fixedly connected to the limit block 402. One end of the mixing rod 5 is fixedly connected to the sliding sleeve 501. The sliding sleeve 501 has a sliding cavity 502. The limit block 402 is slidably connected in the sliding cavity 502. A spring 6 is provided between the limit block 402 and the sliding cavity 502. A support rod 7 is provided on the outside of the sliding sleeve 501. A protrusion 8 is provided in the mixing chamber 1 near the end of the sliding sleeve 501.

[0040] After the motor 4 starts, its output shaft drives the slide bar 401 to rotate.

[0041] The support rod 7 on the outside of the sliding sleeve 501 also rotates with the mixing rod 5. When the support rod 7 rotates to contact the protrusion 8 in the mixing chamber 1, the support rod 7 will slide along the outer wall of the protrusion 8, thereby causing the sliding sleeve 501 to swing.

[0042] This causes the limiting block 402 to slide within the sliding cavity 502 of the sliding sleeve 501, while simultaneously compressing the spring 6. After passing the protrusion 8, the elasticity of the spring 6 causes the sliding sleeve 501 to return to its original position.

[0043] This allows the mixing rod 5 to swing laterally while rotating and mixing.

[0044] Once mixing is complete, open the electrically controlled valve at outlet 3 to discharge the mixture.

[0045] The mixing rod 5 can also swing laterally while rotating, which greatly increases the dimensions and range of mixing.

[0046] In ordinary simple rotation stirring methods, materials are prone to uneven mixing in local areas. However, this method of both rotation and oscillation allows the materials to fully contact and mix in every corner of the mixing chamber 1, significantly improving the uniformity of mixing and meeting the requirements for higher precision aroma mixing.

[0047] The diverse mixing action enables the equipment to handle materials with different fluidity, viscosity, and density.

[0048] Whether it's a thin liquid aroma ingredient or a thick paste-like ingredient, this complex stirring method can achieve a good mixing effect, broadening the application range of the equipment in the field of aroma customization and other related mixing processes.

[0049] The elastic return design of spring 6 plays a buffering role to a certain extent, reducing the impact force generated when the support rod 7 contacts the protrusion 8 and the damage to the equipment components.

[0050] Compared to rigidly connected stirring structures, this design with elastic buffers can reduce the wear and tear on the equipment, extend the service life of key components such as motor 4, slide bar 401, and mixing rod 5, and reduce equipment maintenance and replacement costs.

[0051] The swinging of the mixing rod 5 allows the mixing blade 503 and the cleaning ring 504 to make more comprehensive contact with the inner wall of the mixing chamber 1, effectively preventing material from accumulating and remaining in corners or edges, ensuring that the material in the mixing chamber 1 is discharged more thoroughly after each mixing, reducing material waste, and also reducing the risk of cross-contamination caused by material residue, thus ensuring the purity and consistency of each batch of aroma mixing.

[0052] The two ends of the protrusion 8 are arc-shaped, and there are three of each of the support rod 7 and protrusion 8, arranged in a circumferential array at equal intervals.

[0053] A sliding sleeve is provided on the outer side of the other end of the mixing rod 5, and the sliding sleeve is rotatably connected to the mixing chamber 1.

[0054] When the motor 4 starts, it drives the slide rod 401 to rotate. The limiting block 402 on the slide rod 401 slides in the sliding cavity 502 of the sliding sleeve 501 and compresses the spring 6, causing the mixing rod 5 to swing, and the support rod 7 also rotates accordingly.

[0055] Because the two ends of the protrusion 8 are curved, when the support rod 7 rotates to contact the protrusion 8, the curved protrusion 8 can allow the support rod 7 to change direction smoothly.

[0056] Furthermore, there are three support rods 7 and three protrusions 8 arranged in a circular array at equal intervals. Multiple support rods 7 and protrusions 8 can share the stress that a single support rod 7 needs to bear when the hybrid rod 5 swings, which can reduce the possibility of the support rod 7 breaking due to stress concentration.

[0057] The outer sleeve of the other end of the mixing rod 5 is rotatably connected to the mixing chamber 1, ensuring that the mixing rod 5 can rotate and swing stably.

[0058] After mixing is complete, open the electrically controlled valve at outlet 3 to discharge the mixture.

[0059] The arc-shaped design of protrusion 8 and the layout of support rod 7 and protrusion 8 make the swing of the hybrid rod 5 more stable.

[0060] The sliding sleeve is rotatably connected to the mixing chamber 1, which enhances the stability of the rotation of the mixing rod 5, ensures that the equipment can operate continuously and efficiently, and extends the service life of the equipment.

Claims

1. A multi-channel precision mixing device for aroma customization, comprising a mixing cavity (1), a motor (4) and a mixing rod (5), characterized in that: The motor (4) is arranged at one end of the mixing cavity (1), an output shaft of the motor (4) penetrates into the mixing cavity (1) and is fixedly connected with one end of a sliding rod (401), the other end of the sliding rod (401) is fixedly connected with a limiting block (402), one end of the mixing rod (5) is fixedly connected with a sliding sleeve (501), the sliding sleeve (501) is provided with a sliding cavity (502), the limiting block (402) is slidably connected in the sliding cavity (502), a spring (6) is arranged between the limiting block (402) and the sliding cavity (502), the outer side of the sliding sleeve (501) is provided with a supporting rod (7), and one end of the mixing cavity (1) close to the sliding sleeve (501) is provided with a protrusion (8).

2. The multi-channel precision mixing device for aroma customization of claim 1, wherein: Both ends of the protrusion (8) are arc-shaped.

3. The multi-channel precision mixing device for aroma customization of claim 2, wherein: The supporting rod (7) and the protrusion (8) are both three, and are arranged in a circumferential array at equal intervals.

4. The multi-channel precision mixing device for aroma customization of claim 3, wherein: The mixing rod (5) comprises mixing blades (503) and cleaning rings (504), the mixing blades (503) are arranged along the outer side wall of the mixing rod (5), and the cleaning rings (504) are arranged outside the mixing blades (503).

5. The multi-channel precision mixing device for aroma customization of claim 4, wherein: The cleaning rings (504) are multiple and are arranged at equal intervals outside the mixing blades (503), and the interval of the cleaning rings (504) is the same as the length of the sliding cavity (502).

6. The multi-channel precision mixing device for aroma customization of claim 5, wherein: The other end of the mixing rod (5) is provided with a sliding sleeve, and the sliding sleeve is rotatably connected with the mixing cavity (1).

7. The multi-channel precision mixing device for aroma customization of claim 6, wherein: Further comprising a feeding box (2), the feeding box (2) is arranged at one end of the mixing cavity (1), the feeding box (2) is provided with multiple feeding ports, and the feeding box (2) is provided with a flow valve.

8. The multi-channel precision mixing device for aroma customization of claim 7, wherein: Further comprising a discharge port (3), the discharge port (3) is arranged at the other end of the mixing cavity (1), and the discharge port (3) is provided with an electric control valve.