Powder mixer for mixing powder essence

By introducing staggered grinding tooth rollers and a vibrating sieving mechanism into the powder mixer, the problems of large particles and agglomerated raw materials are solved, achieving uniform mixing and efficient conveying of powdered flavorings and improving mixing efficiency.

CN223641742UActive Publication Date: 2025-12-09SHANGHAI HUABAO KONGQUE ESSENCE & SPICE CO LTD
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Patent Information

Application Number
CN202423265633.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-09
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing powder mixers cannot effectively grind large particles and break down agglomerated raw materials, resulting in uneven mixing of powdered flavorings and easy accumulation of raw materials, which affects mixing efficiency.

Method used

A powder mixer for mixing powdered flavorings was designed, comprising a first rotating roller and a second rotating roller. The raw materials are subjected to secondary processing through staggered crushing teeth, combined with a vibration mechanism and a mixing mechanism, to achieve uniform dispersion and mixing of the raw materials.

Benefits of technology

It enables the further crushing of large-particle raw materials and the decomposition of agglomerated raw materials, ensuring uniform delivery and mixing of raw materials, and improving mixing efficiency and uniformity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a powder mixer for mixing powder essence, which comprises a rack, a preparation barrel is arranged on the rack, a feed hopper is further arranged on the preparation barrel, and a secondary treatment mechanism for crushing and dispersing raw materials is arranged on the feed hopper; the secondary treatment mechanism comprises a first rotating roller and a second rotating roller, the first rotating roller and the second rotating roller are symmetrically and rotationally arranged on the lower portion in the feeding hopper, a driving structure used for controlling the first rotating roller and the second rotating roller to rotate oppositely is further arranged on one side of the feeding hopper, and multiple sets of first smashing teeth are arranged on the first rotating roller; a plurality of groups of second crushing teeth are arranged on the second rotating roller, and the first crushing teeth and the second crushing teeth are arranged in a staggered manner; a vibration mechanism for uniformly dispersing the raw materials is also arranged at the top in the preparation barrel; and a mixing mechanism is also arranged in the preparation barrel. The powder mixer disclosed by the utility model can be used for crushing large-particle raw materials in essence raw materials, scattering caked essence powder and uniformly conveying the raw material powder into a preparation barrel.
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Description

Technical Field

[0001] This utility model belongs to the field of powder flavor processing technology, specifically relating to a powder mixing machine for mixing powder flavors. Background Technology

[0002] Powdered flavorings are composed of materials such as salt, monosodium glutamate, starch, glucose, reactive flavor base, spices, and desiccants. The materials are fed into a vibrating pulverizer to be pulverized, and the pulverized materials are fed into a mixing tank. The mixing tank is used to stir the materials to form a flavoring material. In the production of powdered flavorings, a powder mixer is required to mix the raw materials.

[0003] Current powder mixers are unable to perform secondary grinding of large particles in raw materials, nor can they break down clumps, affecting subsequent mixing and blending. Furthermore, the inability to uniformly convey raw materials leads to accumulation, impacting the uniformity of powder mixing.

[0004] To solve the above-mentioned technical problems, those skilled in the art urgently need to study a powder mixing machine for mixing powdered flavorings. Utility Model Content

[0005] The purpose of this utility model is to provide a powder mixing machine for mixing powdered flavorings, so as to solve the problems mentioned in the background art. The current powder mixing machine cannot perform secondary grinding of large particles in the raw materials, nor can it decompose the clumps of raw materials, which affects the subsequent mixing of raw materials. Furthermore, it cannot transport the raw materials evenly, which easily causes the raw materials to accumulate and affects the uniformity of powder mixing.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A powder mixing machine for mixing powdered flavorings includes a frame, a mixing tank is provided on the frame, a feeding hopper is provided on the mixing tank, and a secondary processing mechanism for crushing and dispersing raw materials is provided on the feeding hopper.

[0008] The secondary processing mechanism includes a first rotating roller and a second rotating roller. The first rotating roller and the second rotating roller are symmetrically rotated in the lower part of the feed hopper. A drive structure for controlling the opposing rotation of the first rotating roller and the second rotating roller is also provided on one side of the feed hopper. Multiple sets of first crushing teeth are provided on the first rotating roller, and multiple sets of second crushing teeth are provided on the second rotating roller. The first crushing teeth and the second crushing teeth are arranged alternately.

[0009] The top of the configuration barrel is also equipped with a vibration mechanism for uniformly dispersing the raw materials. The configuration barrel is also equipped with a mixing mechanism, and a discharge channel is provided on one side of the configuration barrel.

[0010] In one embodiment, the drive structure includes a first transmission gear disposed on one side of the first rotating roller. The first transmission gear meshes with a second transmission gear disposed on one side of the second rotating roller. The first rotating roller is also connected to the drive shaft of a first drive motor located on one side of the transmission box. The transmission box is disposed on one side surface of the feed hopper. Through the transmission of the first transmission gear and the second transmission gear, the first rotating roller and the second rotating roller can rotate in opposite directions.

[0011] In one embodiment, symmetrical guide plates are arranged on both sides of the feed hopper. The guide plates extend to the gap between the first and second rollers, which can accurately guide the flavoring raw materials to the gap between the first and second rollers.

[0012] In one embodiment, the vibration mechanism includes a transfer box, which is disposed at the top of a configuration barrel below the feed hopper. A spring connecting rod is disposed at the top of the configuration barrel, one end of which is connected to the transfer box. A sieve is disposed at the bottom of the transfer box, and a vibration motor is disposed on the side of the transfer box, which can uniformly disperse and convey the crushed and dispersed flavoring raw materials.

[0013] In one embodiment, the mixing mechanism includes a stirring shaft, which is rotatably disposed inside the configuration tank, and one end of the stirring shaft is connected to the drive shaft of a second drive motor located inside the frame. The stirring shaft is provided with stirring blades arranged in a figure-eight shape, which can perform large-scale stirring and mixing of flavoring raw materials and improve the mixing efficiency of flavoring raw materials.

[0014] In one embodiment, a flow guide ramp is provided at the bottom of the configuration barrel, and one end of the flow guide ramp abuts against the discharge channel to facilitate the flow of the mixed flavoring raw materials into the discharge channel.

[0015] In one embodiment, a scraper is also provided at the bottom of the stirring shaft. The scraper is arranged parallel to the upper inclined surface of the guide ramp, which can scrape off the flavoring raw materials adhering to the inclined surface of the guide ramp, thereby improving the utilization rate of the flavoring raw materials.

[0016] Compared with the prior art, the beneficial effects of this utility model are:

[0017] (1) In the process of transporting fragrance raw materials, this application crushes large particles of fragrance raw materials and breaks up agglomerated fragrance powder, which facilitates the subsequent mixing of multiple raw materials.

[0018] (2) In the process of conveying flavor raw materials, the present application can uniformly convey the raw material powder into the mixing tank by vibrating sieve, thereby improving the uniformity of flavor raw material mixing and thus improving the mixing efficiency. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present utility model.

[0020] Figure 2 This is a half-sectional structural diagram of an embodiment of the present invention.

[0021] Figure 3 This is a top view cross-sectional structural diagram of the secondary processing mechanism in one embodiment of the present invention.

[0022] Figure 4 This is a half-sectional structural diagram of the vibration mechanism in one embodiment of the present invention.

[0023] Figure 5 for Figure 4 A magnified structural diagram of point A in the middle.

[0024] Figure 6 for Figure 1 A magnified structural diagram at point B in the middle. 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. 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.

[0026] Please see Figures 1-3 This utility model provides a powder mixing machine for mixing powdered flavorings, including a frame 4, a configuration tank 3 on the frame 4, a feeding hopper 2 on the configuration tank 3, and a secondary processing mechanism 1 for crushing and dispersing raw materials on the feeding hopper 2.

[0027] The secondary processing mechanism 1 includes a first rotating roller 11 and a second rotating roller 12. The first rotating roller 11 and the second rotating roller 12 are symmetrically arranged in the lower part of the feed hopper 2. A drive structure is also provided on one side of the feed hopper 2. Through the drive structure, the first rotating roller 11 and the second rotating roller 12 can be controlled to rotate in opposite directions at the same time. Multiple sets of first crushing teeth 13 are provided on the first rotating roller 11, and multiple sets of second crushing teeth 14 are provided on the second rotating roller 12. The first crushing teeth 13 and the second crushing teeth 14 are arranged alternately. A discharge channel 6 is also provided on one side of the mixing tank 3, which can discharge the mixed powdered flavoring raw materials.

[0028] The drive structure includes a first transmission gear 15, which is disposed on one side of the first rotating roller 11. The first transmission gear 15 meshes with a second transmission gear 18, which is disposed on one side of the second rotating roller 12. The first rotating roller 11 is also connected to the drive shaft of a first drive motor 16 located on one side of a transmission box 17. The transmission box 17 is disposed on one side surface of the feed hopper 2. Through the transmission of the first transmission gear 15 and the second transmission gear 18, the first rotating roller 11 and the second rotating roller 12 can rotate in opposite directions.

[0029] The first drive motor 16 drives the first roller 11 to rotate, the first roller 11 drives the first transmission gear 15 to rotate, the first transmission gear 15 drives the second transmission gear 18 to rotate, and the second transmission gear 18 drives the second roller 12 to rotate. Thus, the first roller 11 and the second roller 12 rotate in opposite directions. The rotation of the first roller 11 and the second roller 12 in opposite directions drives the first crushing tooth 13 and the second crushing tooth 14 to rotate in opposite directions. The raw material of powdered flavoring is conveyed through the feed hopper 2 into the gap between the first roller 11 and the second roller 12. The first crushing tooth 13 and the second crushing tooth 14 crush the large particles of raw material of powdered flavoring again, and at the same time, the clumps of raw material can be broken up.

[0030] In one embodiment, guide plates 19 are symmetrically arranged on both sides inside the feed hopper 2. The guide plates 19 extend to the gap between the first roller 11 and the second roller 12. After the powdered flavoring raw material is transported into the feed hopper 2, the guide plates 19 precisely guide the powdered flavoring raw material to the gap between the first roller 11 and the second roller 12.

[0031] Please see Figure 4 as well as Figure 5 The top of the configuration barrel 3 is also equipped with a vibration mechanism 7, which includes a transfer box 71. The transfer box 71 is located at the top of the configuration barrel 3 below the feed hopper 2. A spring connection is provided at the top of the configuration barrel 3. One end of the spring connecting rod 73 is connected to the transfer box 71. A sieve 72 is provided at the bottom of the transfer box 71. A vibration motor 74 is also provided on the side of the transfer box 71, which can evenly disperse and transport the crushed and dispersed flavor raw materials.

[0032] When the crushed and dispersed powdered flavoring raw materials are transported to the transfer box 71, the vibration motor 74 drives the transfer box 71 to vibrate on the spring connecting rod 73. The vibration of the transfer box 71 drives the sieve 72 to vibrate, and the vibration of the sieve 72 drives the powdered flavoring raw materials to vibrate. The powdered flavoring raw materials are then evenly transported to the preparation tank 3 through the mesh opening of the sieve 72. The powdered flavoring raw materials are then mixed by the mixing mechanism 5.

[0033] Please see Figure 2The mixing mechanism 5 is also provided inside the mixing tank 3. The mixing mechanism 5 includes a stirring shaft 51, which is rotatably installed inside the mixing tank 3. One end of the stirring shaft 51 is connected to the drive shaft of the second drive motor 52 located in the frame 4. The stirring shaft 51 is provided with stirring blades 55 arranged in a figure-eight shape, which can mix the flavor raw materials over a wide range and improve the mixing efficiency of the flavor raw materials.

[0034] The second drive motor 52 drives the stirring shaft 51 to rotate, the stirring shaft 51 drives the stirring blades 55 to rotate, and the stirring blades 55 stir the powdered flavoring raw materials over a wide range and mix the powdered flavoring raw materials.

[0035] In one embodiment, please refer to Figure 2 A flow guide ramp 53 is provided at the bottom of the container 3. One end of the flow guide ramp 53 abuts against the discharge channel 6. The flow guide ramp 53 guides the fragrance raw materials, making it easier to guide the mixed fragrance raw materials into the discharge channel 6.

[0036] In one embodiment, see Figure 2 A scraper 54 is also provided at the bottom of the stirring shaft 51. The scraper 54 is arranged parallel to the upper inclined surface of the guide slope 53. The stirring shaft 51 drives the scraper 54 to rotate. When the scraper 54 rotates to the upper inclined surface of the guide slope 53, the fragrance raw materials adhering to the upper inclined surface can be scraped off, thereby improving the utilization rate of the fragrance raw materials.

[0037] Please see Figure 2 as well as Figure 6 An adjustment port 62 is provided at the upper part of the discharge channel 6. A baffle plate 61 is movably installed at the adjustment port 62. By pulling the baffle plate 61, the opening and closing of the discharge channel 6 can be controlled, and the discharge flow rate can also be controlled.

[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A powder mixing machine for mixing powdered flavorings, characterized in that, The device includes a frame, on which a configuration barrel is mounted, and on which a feed hopper is mounted, and on which a secondary processing mechanism for raw material crushing and dispersion is mounted; The secondary processing mechanism includes a first rotating roller and a second rotating roller. The first rotating roller and the second rotating roller are symmetrically and rotatably arranged in the lower part of the feed hopper. A drive structure for controlling the first rotating roller and the second rotating roller to rotate in opposite directions is also provided on one side of the feed hopper. Multiple sets of first crushing teeth are provided on the first rotating roller, and multiple sets of second crushing teeth are provided on the second rotating roller. The first crushing teeth and the second crushing teeth are arranged alternately. The top of the configuration barrel is also equipped with a vibration mechanism for uniformly dispersing the raw materials. The configuration barrel is also equipped with a mixing mechanism, and a discharge channel is provided on one side of the configuration barrel.

2. The powder mixing machine for mixing powdered flavorings according to claim 1, characterized in that, The drive structure includes a first transmission gear, which is disposed on one side of the first rotating roller. The first transmission gear meshes with a second transmission gear, which is disposed on one side of the second rotating roller. The first rotating roller is also connected to the drive shaft of a first drive motor located on one side of the transmission box. The transmission box is disposed on one side of the feed hopper.

3. The powder mixing machine for mixing powdered flavorings according to claim 1 or 2, characterized in that, The feed hopper is symmetrically equipped with guide plates on both sides, and the guide plates extend to the gap between the first roller and the second roller.

4. The powder mixing machine for mixing powdered flavorings according to claim 1, characterized in that, The vibration mechanism includes a transfer box, which is located at the top of a configuration barrel below the feed hopper. A spring connecting rod is installed at the top of the configuration barrel, with one end of the spring connecting rod connected to the transfer box. A screening screen is installed at the bottom of the transfer box, and a vibration motor is installed on the side of the transfer box.

5. The powder mixing machine for mixing powdered flavorings according to claim 1, characterized in that, The mixing mechanism includes a stirring shaft, which is rotatably mounted inside the configuration tank. One end of the stirring shaft is connected to the drive shaft of a second drive motor located inside the frame. The stirring shaft is equipped with stirring blades arranged in a figure-eight pattern.

6. The powder mixing machine for mixing powdered flavorings according to claim 5, characterized in that, The bottom of the configuration barrel is provided with a flow guide ramp, one end of which abuts against the discharge channel.

7. The powder mixing machine for mixing powdered flavorings according to claim 5, characterized in that, A scraper is also provided at the bottom of the stirring shaft, and the scraper is arranged parallel to the upper inclined surface of the guide ramp.