Composite fragrance mixing equipment
By introducing a multi-blade stirring rack and a transmission gear set into the mixing equipment, the problems of uneven mixing and difficult cleaning of the inner wall are solved, achieving uniform mixing and efficient cleaning of aroma components, and meeting the needs of different types of fragrances.
Patent Information
- Application Number
- CN202520326609.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Existing mixing equipment has low stirring efficiency, uneven mixing, and difficulty in cleaning the inner wall. Furthermore, the lack of a screening structure may result in impurities in the flavoring.
The mixing frame employs multiple mixing blades, is equipped with a telescopic cleaning component and a transmission gear set, and achieves uniform mixing through the rotation of the mixing blades. After mixing is completed, the cleaning component cleans the inner wall, and the baffle plate increases the fluid turbulence to accelerate mixing.
It achieves uniform mixing of aroma components, improves mixing efficiency and cleaning effect, adapts to the mixing needs of different types of fragrances, and extends equipment life.
Smart Images

Figure CN223931124U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mixing equipment technology, specifically a compound aroma mixing equipment. Background Technology
[0002] In many fields such as fragrances, perfumes, and food additives, it is often necessary to mix a variety of different aroma components to obtain unique compound aroma products.
[0003] There is an existing Chinese patent (publication number: CN221359482U) for a perilla flavoring mixing device with a sieve frame. Technical problem: During the use of such mixing devices, the stirring structure is often a single stirring rod, resulting in poor mixing effect, uneven aroma in the product, and the flavoring raw materials easily adhere to the inner wall of the tank, making cleaning difficult. Furthermore, the lack of a structure for sieving the mixed flavoring may result in impurities within the flavoring.
[0004] During the use of the above-mentioned equipment, an inner wall scraper is connected to one side of the stirring blade. After the fragrance is mixed, the inner wall can be cleaned by the scraper. Although it has a certain cleaning effect, the scraper is always in contact with the inner wall and has a certain friction during the mixing process, which will undoubtedly reduce the mixing efficiency. Utility Model Content
[0005] The purpose of this invention is to provide a compound aroma mixing device to solve the problems mentioned in the background art.
[0006] To solve the above-mentioned technical problems, this utility model provides a compound aroma mixing device, including a mixing cylinder and a stirring frame rotatably connected inside the mixing cylinder. The stirring frame has multiple stirring blades integrally formed inside, including...
[0007] The telescopic component is slidably disposed inside the stirring blade, with one end of the telescopic component extending to the outside of the stirring blade and connected to a cleaning component.
[0008] A transmission block is connected to the other end of the telescopic component. One end of the transmission block extends into the mixing frame. A connecting rod is slidably mounted inside the mixing frame along its axial direction. Multiple abutment blocks arranged along the axial direction are connected to the connecting rod.
[0009] During the sliding process of the connecting rod, it can drive the contact block and the transmission block to collide with each other, driving the cleaning component to slide away from the stirring blade.
[0010] Furthermore, a fixed seat is connected inside the stirring blade, and an installation rod is slidably provided inside the fixed seat. The other end of the installation rod is connected to the telescopic member, and a first return spring is sleeved on the installation rod. One end of the first return spring is connected to the telescopic member, and the other end is connected to the fixed seat.
[0011] Furthermore, a roller is rotatably connected to the end of the transmission block away from the telescopic member, and a groove is provided on the side of the abutment block that is in contact with the roller. The width and depth of the groove are matched with the roller so that the roller can slide in the groove.
[0012] Furthermore, it also includes,
[0013] A transmission rack is connected to the bottom of the connecting rod, and a transmission gear set is meshed on one side of the transmission rack;
[0014] There are at least two drive gears arranged symmetrically, both of which are rotatably connected to the stirring frame and mesh with each other, with one of the drive gears meshing with the transmission gear set;
[0015] A spoiler is connected to the drive gear, and the spoiler rotates synchronously with the drive gear.
[0016] Furthermore, the transmission gear set includes,
[0017] At least three mounting gears are arranged in a linear array along the axis of the mixing frame, and the three mounting gears mesh with each other.
[0018] Furthermore, the top of the connecting rod extends to the outside of the stirring rack;
[0019] The top of the stirring rack extends to the outside of the mixing cylinder and is connected to a mounting base. A limit post is slidably connected to the mounting base, and one end of the limit post is connected to a connecting plate.
[0020] The second return spring is connected at one end to the mounting base and at the other end to the connecting plate.
[0021] Furthermore, the connecting rod is provided with multiple limiting holes, and the end of the limiting post away from the connecting plate is inserted into the limiting hole.
[0022] Furthermore, a second connecting gear is connected to the stirring rack, and a first connecting gear is meshed with one side of the second connecting gear. A servo motor that drives the first connecting gear to rotate is connected to the mixing cylinder.
[0023] Compared with the prior art, the beneficial effects of this utility model are:
[0024] 1. The stirring rack drives the stirring blades to rotate, which can fully stir the aroma components in the mixing drum, achieving uniform mixing, and the retraction of the cleaning parts does not interfere with the stirring. During cleaning, pushing the connecting rod causes the cleaning parts to extend and contact the inner wall, effectively cleaning the residue on the inner wall and ensuring the cleanliness of the equipment. In addition, the length of the telescopic parts can be adjusted during stirring to change the stirring range, adapting to different types of fragrances and gases, and improving the versatility of the equipment.
[0025] 2. The transmission gear set drives the drive gear to rotate, which can adjust the spacing of the baffles. When the stirring frame rotates, the baffles rotate accordingly, generating a turbulent effect and making the fluid flow inside the mixing drum more complex and disordered. This setting not only accelerates the mixing speed of aroma components, but also allows them to penetrate deeper into different areas of the aroma, compensating for the shortcomings of simple stirring blades and improving mixing efficiency and uniformity. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0027] Figure 2 This is a cross-sectional view of the present invention;
[0028] Figure 3 This utility model Figure 2 Enlarged view of the structure at point A in the middle;
[0029] Figure 4 This utility model Figure 2 Enlarged view of the structure at point B;
[0030] Figure 5 This utility model Figure 2 Enlarged view of the structure at point C.
[0031] In the diagram: 1. Mixing cylinder; 2. Stirring rack; 301. Telescopic component; 302. Cleaning component; 303. Transmission block; 304. Connecting rod; 305. Abutment block; 4. Fixed seat; 5. First return spring; 6. Mounting rod; 701. Transmission rack; 702. Transmission gear set; 703. Drive gear; 704. Spoiler; 801. Mounting seat; 802. Limiting post; 803. Second return spring; 804. Connecting plate; 9. First connecting gear; 10. Second connecting gear; 11. Servo motor; 12. Roller. Detailed Implementation
[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0033] Please see Figure 1-5 This utility model provides a technical solution: a compound aroma mixing device, including a mixing cylinder 1 and a stirring frame 2 rotatably connected inside the mixing cylinder 1. The stirring frame 2 has multiple stirring blades integrally formed inside, including...
[0034] The telescopic component 301 is slidably disposed inside the stirring blade, and one end of the telescopic component 301 extends to the outside of the stirring blade and is connected to the cleaning component 302.
[0035] A transmission block 303 is connected to the other end of the telescopic member 301. One end of the transmission block 303 extends into the mixing frame 2. A connecting rod 304 is slidably provided inside the mixing frame 2 along its axial direction. Multiple abutment blocks 305 arranged along the axial direction are connected to the connecting rod 304.
[0036] During the sliding process of the connecting rod 304, it can drive the contact block 305 and the transmission block 303 to abut against each other, driving the cleaning component 302 to slide away from the stirring blade.
[0037] It should be noted that the mixing drum 1 has a feed inlet at the top and a discharge valve at the bottom. The bottom of the mixing drum 1 is hinged with a sealing cover, which makes it easy to open and clean from the bottom. For easy cleaning, telescopic support legs can be installed at the bottom of the mixing drum 1.
[0038] In practice, the stirring rack 2 rotates inside the mixing cylinder 1, and multiple integrally formed stirring blades inside the stirring rack 2 rotate together with the stirring rack 2. During the rotation, these stirring blades stir and mix the various aroma components inside the mixing cylinder 1, so that the different aroma components can fully contact and blend to achieve a uniform mixing effect. At this time, the cleaning component 302 is in a retracted state and will not interfere with the stirring process.
[0039] When the mixing process is complete and the inner wall of the mixing cylinder 1 needs cleaning, the connecting rod 304 is slid, and the multiple contact blocks 305 connected to it move synchronously. When the contact blocks 305 move to the position where they contact the transmission block 303, the contact blocks 305 and the transmission block 303 abut against each other. As the contact blocks 305 continue to move with the connecting rod 304, they generate a pushing force on the transmission block 303. After being pushed by the contact blocks 305, the transmission block 303 drives the telescopic member 301 connected to it to slide away from the inside of the stirring blades. One end of the telescopic member 301 extends to the outside of the stirring blades and is connected to the cleaning member 302. The sliding of the telescopic member 301 pushes the cleaning member 302 to also slide away from the stirring blades. Finally, the cleaning member 302 extends to a suitable position so that it can contact the inner wall of the mixing cylinder 1, thereby facilitating the cleaning of the inner wall of the stirring frame 2.
[0040] Correspondingly, during the mixing process, users can also adjust the length of the telescopic component 301 by pushing the connecting rod 304 in advance, thereby adjusting the mixing range according to different types of fragrances or gases, thus improving the adaptability of the equipment.
[0041] See Figure 3 A fixed seat 4 is connected inside the stirring blade. An installation rod 6 is slidably provided inside the fixed seat 4. The other end of the installation rod 6 is connected to the telescopic member 301. A first return spring 5 is sleeved on the installation rod 6. One end of the first return spring 5 is connected to the telescopic member 301, and the other end is connected to the fixed seat 4.
[0042] In practice, during the extension movement of the telescopic component 301, the first return spring 5 is also in a stretched state. Subsequently, after the abutment block 305 stops contacting the transmission block 303, the telescopic component 301 can be pulled by the first return spring 5 to help it return to its original position. The mounting rod 6 is provided to improve the stability of the telescopic component 301 during the sliding process.
[0043] See Figure 3 The transmission block 303 is rotatably connected to a roller 12 at the end away from the telescopic member 301. The side of the contact block 305 that is in contact with the roller 12 has a groove. The width and depth of the groove match the roller 12, so that the roller 12 can slide in the groove.
[0044] In practice, this design reduces the coefficient of friction between the transmission block 303 and the contact block 305, thereby reducing wear and tear on the equipment during operation and extending its service life.
[0045] See Figure 4 It also includes,
[0046] A transmission rack 701 is connected to the bottom of the connecting rod 304, and a transmission gear set 702 is meshed on one side of the transmission rack 701;
[0047] There are at least two drive gears 703 arranged symmetrically, both of which are rotatably connected to the stirring frame 2 and mesh with each other. One of the drive gears 703 meshes with the transmission gear set 702.
[0048] A spoiler 704 is connected to the drive gear 703, and the spoiler 704 rotates synchronously with the drive gear 703.
[0049] In practice, when the user adjusts the length of the telescopic component 301 by pushing the connecting rod 304 to adapt to different types of gas stirring, the transmission rack 701 can move synchronously and mesh with the transmission gear set 702 to drive the transmission gear set 702 to rotate. Subsequently, the driving force of the transmission gear set 702 can act on the drive gear 703, causing the drive gear 703 to rotate and thus adjust the distance between the two baffles 704. The baffles 704, which are then rotated by the stirring frame 2, can generate a turbulence effect in the mixing cylinder 1. The rotation of the baffles 704 changes the flow state of the fluid in the mixing cylinder 1, making the originally relatively regular fluid flow more complex and turbulent, and promoting faster mixing of aroma components.
[0050] refer to Figure 4 The transmission gear set 702 includes,
[0051] At least three mounting gears are arranged in a linear array along the axial direction of the stirring frame 2, and the three mounting gears mesh with each other.
[0052] In practice, the three mounting gears facilitate the transmission of driving force, and the three mounting gears can distribute the force, reducing the load on individual gears and lowering the risk of gear damage.
[0053] refer to Figure 5 The top of the connecting rod 304 extends to the outside of the stirring rack 2;
[0054] The top of the stirring rack 2 extends to the outside of the mixing cylinder 1 and is connected to a mounting base 801. A limiting post 802 is slidably connected to the mounting base 801, and a connecting plate 804 is connected to one end of the limiting post 802.
[0055] The second return spring 803 is connected at one end to the mounting base 801 and at the other end to the connecting plate 804.
[0056] In practice, before pulling the connecting rod 304 to adjust the length of the telescopic member 301, the limiting post 802 can be pulled in advance so that the limiting post 802 does not come into contact with the connecting rod 304. Then, after the connecting rod 304 is adjusted, the pulled limiting post 802 is released, so that the limiting post 802 is inserted into the connecting rod 304 by the elastic force of the second return spring 803 to limit the connecting rod 304.
[0057] refer to Figure 5 The connecting rod 304 has multiple limiting holes, and the end of the limiting post 802 away from the connecting plate 804 is inserted into the limiting hole.
[0058] In practice, the limiting holes facilitate the insertion of the limiting post 802, and the multiple holes allow for multiple adjustments.
[0059] refer to Figure 1 A second connecting gear 10 is connected to the stirring rack 2, and a first connecting gear 9 is meshed on one side of the second connecting gear 10. A servo motor 11 that drives the first connecting gear 9 to rotate is connected to the mixing cylinder 1.
[0060] It should be noted that a support frame is connected to the mixing cylinder 1 for mounting the servo motor 11.
[0061] In practice, the servo motor 11 can drive the first connecting gear 9 to rotate, and then the first connecting gear 9 can drive the second connecting gear 10 to rotate, and the second connecting gear 10 can drive the stirring frame 2 to perform stirring operations.
[0062] Working principle: The stirring rack 2 rotates inside the mixing drum 1, and multiple integrally formed stirring blades inside the stirring rack 2 rotate together with the stirring rack 2. During the rotation, these stirring blades stir and mix the various aroma components in the mixing drum 1, so that the different aroma components can fully contact and blend to achieve a uniform mixing effect. At this time, the cleaning part 302 is in a retracted state and will not interfere with the stirring process.
[0063] When the mixing process is complete and the inner wall of the mixing cylinder 1 needs cleaning, the connecting rod 304 is slid, and the multiple contact blocks 305 connected to it move synchronously. When the contact blocks 305 move to the position where they contact the transmission block 303, the contact blocks 305 and the transmission block 303 abut against each other. As the contact blocks 305 continue to move with the connecting rod 304, they generate a pushing force on the transmission block 303. After being pushed by the contact blocks 305, the transmission block 303 drives the telescopic member 301 connected to it to slide away from the inside of the stirring blades. One end of the telescopic member 301 extends to the outside of the stirring blades and is connected to the cleaning member 302. The sliding of the telescopic member 301 pushes the cleaning member 302 to also slide away from the stirring blades. Finally, the cleaning member 302 extends to a suitable position so that it can contact the inner wall of the mixing cylinder 1, thereby facilitating the cleaning of the inner wall of the stirring frame 2.
[0064] Correspondingly, during the mixing process, users can also adjust the length of the telescopic component 301 by pushing the connecting rod 304 in advance, thereby adjusting the mixing range according to different types of flavorings or gases, thus improving the adaptability of the equipment.
[0065] When the user adjusts the length of the telescopic component 301 by pushing the connecting rod 304 to adapt to different types of gas mixing, the transmission rack 701 can move synchronously and mesh with the transmission gear set 702 to drive the transmission gear set 702 to rotate. Subsequently, the driving force of the transmission gear set 702 can act on the drive gear 703, causing the drive gear 703 to rotate and thereby adjust the distance between the two baffles 704. The baffles 704, which are then rotated by the stirring frame 2, can generate a turbulence effect in the mixing cylinder 1. The rotation of the baffles 704 changes the flow state of the fluid in the mixing cylinder 1, making the originally relatively regular fluid flow more complex and turbulent, and promoting faster mixing of aroma components.
Claims
1. A compound aroma mixing device, comprising a mixing cylinder (1) and a stirring frame (2) rotatably connected within the mixing cylinder (1), wherein the stirring frame (2) has a plurality of stirring blades integrally formed therein, characterized in that, include, The telescopic component (301) is slidably disposed inside the stirring blade, and one end of the telescopic component (301) extends to the outside of the stirring blade and is connected to the cleaning component (302); A transmission block (303) is connected to the other end of the telescopic member (301). One end of the transmission block (303) extends into the stirring frame (2). A connecting rod (304) is slidably provided inside the stirring frame (2) along its axial direction. Multiple abutment blocks (305) arranged along the axial direction are connected to the connecting rod (304). During the sliding process of the connecting rod (304), it can drive the abutment block (305) and the transmission block (303) to abut against each other, driving the cleaning component (302) to slide away from the direction of the stirring blade.
2. The compound aroma mixing device as described in claim 1, characterized in that: A fixed seat (4) is connected inside the stirring blade. An installation rod (6) is slidably provided inside the fixed seat (4). The other end of the installation rod (6) is connected to the telescopic member (301). A first return spring (5) is sleeved on the installation rod (6). One end of the first return spring (5) is connected to the telescopic member (301), and the other end is connected to the fixed seat (4).
3. The compound aroma mixing device as described in claim 1, characterized in that: The transmission block (303) is rotatably connected to a roller (12) at one end away from the telescopic member (301). The side of the abutment block (305) that is in contact with the roller (12) has a groove. The width and depth of the groove match the roller (12) so that the roller (12) can slide in the groove.
4. The compound aroma mixing device as described in claim 1, characterized in that: It also includes, A transmission rack (701) is connected to the bottom of the connecting rod (304), and a transmission gear set (702) is meshed on one side of the transmission rack (701); At least two drive gears (703) are arranged symmetrically and are rotatably connected in the stirring frame (2) and mesh with each other. One of the drive gears (703) meshes with the transmission gear set (702). A spoiler (704) is connected to the drive gear (703), and the spoiler (704) rotates synchronously with the drive gear (703).
5. The compound aroma mixing device as described in claim 4, characterized in that: The transmission gear set (702) includes, At least three mounting gears are arranged in a linear array along the axis of the stirring frame (2), and the three mounting gears mesh with each other.
6. The compound aroma mixing device as described in claim 1, characterized in that: The top of the connecting rod (304) extends to the outside of the stirring rack (2); The top of the stirring rack (2) extends to the outside of the mixing cylinder (1) and is connected to a mounting base (801). A limiting post (802) is slidably connected to the mounting base (801), and one end of the limiting post (802) is connected to a connecting plate (804). The second return spring (803) is connected at one end to the mounting base (801) and at the other end to the connecting plate (804).
7. The compound aroma mixing device as described in claim 6, characterized in that: The connecting rod (304) has multiple limiting holes, and the end of the limiting post (802) away from the connecting plate (804) is inserted into the limiting hole.
8. The compound aroma mixing device as described in claim 1, characterized in that: The stirring rack (2) is connected to a second connecting gear (10), and a first connecting gear (9) is meshed on one side of the second connecting gear (10). The mixing cylinder (1) is connected to a servo motor (11) that drives the first connecting gear (9) to rotate.
Citation Information
Patent Citations
Perilla essence mixing equipment with screen shoe
CN221359482U