Raw material mixing machine for whole grain food processing

By designing the main mixing barrel, secondary mixing barrel and drive assembly in the whole grain food processing raw material mixer, the problem of uneven mixing of complex raw materials is solved, and uniform mixing and efficient operation of complex raw materials is achieved.

CN223209337UActive Publication Date: 2025-08-12河北同福健康产业有限公司
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Patent Information

Application Number
CN202422511162.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-08-12
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

When existing raw material mixers deal with complex raw material combinations, especially when the particle size varies greatly, it is difficult to ensure uniform mixing effect.

Method used

A raw material mixer for whole grain food processing is designed, including the main mixing barrel, the secondary mixing barrel and the drive assembly. By installing rotatable equalizing components and mixing components in the secondary mixing barrel, pre-mixing and rapid mixing of raw materials are achieved, and the synchronous rotation of the drive assembly is used to drive mixing and uniform stirring.

Benefits of technology

The uniform mixing of complex raw materials is achieved, and the mixing effect is improved. Especially when the particle size varies greatly, ensuring the uniformity of mixing and the convenience of operation.

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Abstract

The utility model relates to a raw material mixing machine for whole grain food processing, and relates to the field of raw material mixing machines. The device comprises a base, a main mixing barrel is installed on the upper end face of the base, the main mixing barrel is fixedly connected with the base, a discharging shell is installed at the lower end of the main mixing barrel, a mixing assembly is rotationally installed in the main mixing barrel, a gathering shell is fixedly installed on the upper end face of the main mixing barrel, and an auxiliary mixing barrel is fixedly installed on the upper end face of the gathering shell; a material homogenizing assembly is installed in the auxiliary material mixing barrel and rotationally connected with the auxiliary material mixing barrel. The gathering shell is installed at the upper end of the main material mixing barrel, then the two auxiliary material mixing barrels are installed through the gathering shell, and the rotatable material homogenizing assemblies are installed in the auxiliary material mixing barrels, so that it is guaranteed that raw materials can be gathered and dispersed through the material homogenizing assemblies before being mixed; therefore, the complex combined raw materials are easy to pre-mix, and the follow-up better mixing processing in the main mixing barrel is ensured.
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Description

Technical Field

[0001] The present application relates to the technical field of raw material mixers, and in particular to a raw material mixer for processing whole grain foods. Background Art

[0002] As the concept of healthy eating becomes more popular, whole grain foods are favored by more and more consumers. During the processing of whole grain foods, uniform mixing of raw materials is crucial to product quality.

[0003] The existing Chinese patent with announcement number CN210332441U discloses a health food raw material mixer, including a metering storage bin, a mixing bin, a stirring screw, a discharge port, and a power device; the metering storage bin includes a storage chamber and a metering chamber, the storage chamber is located at the upper part of the metering chamber and is fixedly connected and communicated; the mixing bin is located at the lower part of the metering chamber and is fixedly connected and communicated; the stirring screw is located in the middle part of the mixing bin, the power end passes through the lower part of the mixing bin and is connected to the lower end of the mixing bin through a bearing, and the end opposite to the power end passes through the upper part of the mixing bin and is connected to the upper part of the mixing bin through a bearing.

[0004] Regarding the above-mentioned related technologies, the inventors found that the current common raw material mixers mainly include spiral stirring type, paddle type and vibration type, which can improve the dispersion of materials to a certain extent. However, due to the single structure, they have poor adaptability and often cannot guarantee good uniformity when dealing with complex raw material combinations, especially when the particle size differences are large. Utility Model Content

[0005] In order to achieve the purpose of uniform mixing of complex raw materials, the present application provides a raw material mixer for whole grain food processing.

[0006] The raw material mixer for whole grain food processing provided by this application adopts the following technical solution:

[0007] A raw material mixer for processing whole grain food includes a base, the upper end surface of the base is equipped with a main mixing barrel, the main mixing barrel is fixedly connected to the base, and a discharge shell is installed at the lower end of the main mixing barrel, a mixing assembly is rotatably installed in the main mixing barrel, and a gathering shell is fixedly installed on the upper end surface of the main mixing barrel, a secondary mixing barrel is fixedly installed on the upper end surface of the gathering shell, a material equalizing assembly is installed in the secondary mixing barrel, the material equalizing assembly is rotatably connected to the secondary mixing barrel, and a driving assembly for driving the mixing assembly and the material equalizing assembly to rotate synchronously is also installed on the gathering shell.

[0008] By adopting the above technical solution, the main mixing barrel is stably installed by setting the base, so that the main mixing barrel can be used as the main shell for mixing processing when needed. At the same time, a discharge shell is installed at the lower end of the main mixing barrel, so that the mixed raw materials can be stably discharged through the discharge shell. By fixedly installing a gathering shell on the upper end face of the main mixing barrel, and fixing the auxiliary mixing barrel on the gathering shell, it is ensured that the raw materials can be pre-mixed in the auxiliary mixing barrel before entering the main mixing barrel. By rotating the installation of the mixing assembly in the main mixing barrel, the raw materials in the auxiliary mixing barrel can be easily mixed after flowing into the main mixing barrel by rotating the mixing assembly. By rotating the installation of the equalizing assembly in the auxiliary mixing barrel, the raw materials can be quickly dispersed and mixed by the rotating equalizing assembly when it is easy to use, which makes it easier to fully mix different types of raw materials.

[0009] Optionally, the mixing assembly includes a mixing rod and a mixing paddle, the head of the mixing rod is rotatably mounted in the gathering shell, the mixing paddles are evenly mounted on the outer side of the mixing rod, and the mixing paddles are fixedly connected to the mixing rod.

[0010] By adopting the above technical solution, the structural setting of the mixing component ensures that the mixing blades can be installed through the mixing rod when in use, so that when mixing is required, all the mixing blades can be driven by the mixing rod to perform mixing processing in the main mixing barrel.

[0011] Optionally, the gathering shell includes a flat shell portion and a conical shell portion, the conical shell portion is arranged on the lower end surface of the flat shell portion, and the conical shell portion and the flat shell portion are integrally formed.

[0012] By adopting the above technical solution, the structure of the gathering shell is set to ensure that the conical shell part can be installed through the flat shell part when in use. In this way, when the auxiliary mixing barrel falls into the flat shell part, it can be gathered through the conical shell part, and then the raw materials can be stably flowed into the main mixing barrel at the lower end through the conical shell part.

[0013] Optionally, the auxiliary mixing barrel includes an auxiliary barrel shell and a positioning frame, the auxiliary barrel shell is fixedly mounted, the positioning frame is mounted at both ends of the flat shell portion, and the lower end of the positioning frame is connected to the conical shell portion, and the positioning frame is fixedly mounted on the head of the auxiliary barrel shell.

[0014] By adopting the above technical solution, the structural setting of the auxiliary mixing barrel is used to ensure that a positioning frame is installed on the auxiliary barrel shell when in use. In this way, after the material balancing component is installed in the auxiliary barrel shell, it can be stably limited by the positioning frame to ensure that the material balancing component can rotate stably during use.

[0015] Optionally, the positioning frame includes a ring frame, a cross bar and a limiting sleeve. The ring frame is snap-fitted and fixed in the secondary barrel shell, the cross bar is fixedly installed in the middle of the ring frame, and the limiting sleeve is integrally formed and arranged at the center of the cross bar.

[0016] By adopting the above technical solution, the structural setting of the positioning frame is used to ensure that the cross bar can be installed through the ring frame when in use. At the same time, a limit sleeve is set on the cross bar, so that the limit sleeve can be installed on the head of the material equalizing component to ensure that the material equalizing component can rotate on the limit sleeve.

[0017] Optionally, the material distribution assembly includes a central shaft, a material gathering plate and a material distribution plate. The material gathering plate is arranged directly above the material distribution plate, and the material gathering plate and the material distribution plate are both mounted and fixed on the central shaft. A connecting scraper is also fixedly installed between the material gathering plate and the material distribution plate.

[0018] By adopting the above technical solution, the structural setting of the material equalizing component can ensure that the gathering plate and the material dividing plate can be installed through the central axis during use, and the gathering plate and the material dividing plate can be driven to rotate synchronously by the central axis during the actual processing process. The setting of the gathering plate can ensure that various raw materials can be quickly gathered after falling into the gathering plate, and the gathered raw materials can flow downward from the middle of the gathering plate to the material dividing plate, and then enter the gathering shell at the lower end after being dispersed by the material dividing plate, and then the raw materials can be pre-mixed by gathering and dispersing. At the same time, the connecting scraper is fixedly installed between the gathering plate and the material dividing plate, so that the stable connection between the gathering plate and the material dividing plate can be guaranteed, and the connecting scraper is rotated in contact with the inner wall of the auxiliary mixing barrel to prevent the raw materials from sticking to the inner wall.

[0019] Optionally, a plurality of shifting plates are evenly installed on the inner side surface of the material gathering plate, the shifting plates and the material gathering plate are integrally formed, and a discharge groove is opened at the center of the material gathering plate.

[0020] By adopting the above technical solution, a number of paddles are evenly installed on the inner side of the gathering plate, so that the raw materials can be mixed by the paddles during the rotation of the gathering plate. When the rotation speed is reduced or stops, the raw materials can flow steadily into the discharge trough along the direction of the paddles, and then discharged onto the distribution plate at the lower end.

[0021] Optionally, the drive assembly includes a motor, a drive shaft and a pulley group, the motor is fixedly mounted on the upper end surface of the flat shell portion, the drive shaft is rotatably mounted on the flat shell portion, and the lower end of the drive shaft is connected to the mixing rod through a coupling, the pulley group is sleeved and fixed on the drive shaft, and the pulley group is connected to the central shaft through a linkage belt.

[0022] By adopting the above technical solution, the structure of the drive assembly is set to ensure that the motor can drive the drive shaft to rotate during use, and then the drive shaft drives the mixing rod at the lower end to rotate synchronously. At the same time, a fixed pulley group is set on the drive shaft, so that a linkage belt can be installed on the pulley group to connect with the central shaft, thereby driving the central shaft to rotate synchronously.

[0023] To sum up, the present application includes at least one of the following beneficial technical effects: the present application installs a gathering shell at the upper end of the main mixing barrel, and then installs two sets of auxiliary mixing barrels through the gathering shell, and installs a rotatable equalizing component in the auxiliary mixing barrel to ensure that the raw materials can be gathered and dispersed through the equalizing component before mixing. This makes it easy to pre-mix complex combination raw materials and ensure better subsequent mixing processing in the main mixing barrel. At the same time, through the setting of the driving component, it is ensured that during the processing process, the equalizing component can be driven to rotate, and the mixing component can also be driven to stably mix and stir in the main mixing barrel, which has the advantages of convenient operation and uniform mixing. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a three-dimensional diagram of the overall structure in the embodiment of the present application.

[0025] Figure 2 It is a three-dimensional diagram of the coordination of the mixing assembly, auxiliary mixing barrel and driving assembly in an embodiment of the present application.

[0026] Figure 3 yes Figure 2 Front view of the device shown.

[0027] Figure 4 yes Figure 2 Side view of the device shown.

[0028] Figure 5 It is a three-dimensional diagram of the coordination of the material distribution assembly, the pulley assembly and the linkage belt in the embodiment of the present application.

[0029] Figure 6 yes Figure 5 Front view of the device shown.

[0030] Explanation of the accompanying reference numerals: 1. Base; 2. Main mixing barrel; 21. Discharge shell; 3. Mixing assembly; 31. Mixing rod; 32. Mixing blade; 4. Gathering shell; 41. Flat shell portion; 42. Conical shell portion; 5. Auxiliary mixing barrel; 51. Auxiliary barrel shell; 52. Positioning frame; 521. Ring frame; 522. Cross bar; 523. Limiting sleeve; 6. Material distribution assembly; 61. Center shaft; 62. Gathering plate; 621. Dividing plate; 622. Discharge chute; 63. Dividing plate; 64. Connecting scraper; 7. Driving assembly; 71. Motor; 72. Driving shaft; 73. Pulley set; 731. Linking belt. DETAILED DESCRIPTION

[0031] The present application is further described in detail below with reference to the accompanying drawings.

[0032] The embodiment of the present application discloses a raw material mixer for processing whole grain food. Figure 1 、 Figure 2 and Figure 3 As shown, a raw material mixer for processing whole grain food includes a base 1, an upper end surface of the base 1 is installed with a main mixing barrel 2, the main mixing barrel 2 is fixedly connected to the base 1, and a discharge shell 21 is installed at the lower end of the main mixing barrel 2, a mixing component 3 is rotatably installed in the main mixing barrel 2, and a gathering shell 4 is fixedly installed on the upper end surface of the main mixing barrel 2, an auxiliary mixing barrel 5 is fixedly installed on the upper end surface of the gathering shell 4, a uniform material component 6 is installed in the auxiliary mixing barrel 5, the uniform material component 6 is rotatably connected to the auxiliary mixing barrel 5, and a driving component 7 for driving the mixing component 3 and the uniform material component 6 to rotate synchronously is also installed on the gathering shell 4. By setting the base 1, the main mixing barrel 2 can be stably installed, and the main mixing barrel 2 can be used as the main shell for mixing processing when needed. At the same time, by installing a discharge shell 21 at the lower end of the main mixing barrel 2, the mixed raw materials can be easily discharged stably through the discharge shell 21. By fixedly installing the gathering shell 4 on the upper end face of the main mixing barrel 2, and fixing the auxiliary mixing barrel 5 on the gathering shell 4, it is ensured that the raw materials can be pre-mixed in the auxiliary mixing barrel 5 before entering the main mixing barrel 2. By rotating the installation of the mixing component 3 in the main mixing barrel 2, the raw materials in the auxiliary mixing barrel 5 can flow into the main mixing barrel 2 and then the mixing operation can be achieved by rotating the mixing component 3. By rotating the installation of the equalizing component 6 in the auxiliary mixing barrel 5, the raw materials can be quickly dispersed and mixed when it is easy to use by rotating the equalizing component 6, which makes it easier to fully mix different types of raw materials.

[0033] Reference Figure 3As shown, the mixing assembly 3 includes a mixing rod 31 and mixing paddles 32. The head of the mixing rod 31 is rotatably mounted in the collecting shell 4. The mixing paddles 32 are evenly mounted on the outer surface of the mixing rod 31 and are fixedly connected to the mixing rod 31. The structural arrangement of the mixing assembly 3 ensures that the mixing paddles 32 can be installed through the mixing rod 31 during use. When mixing is required, the mixing rod 31 can be used to drive all the mixing paddles 32 to perform mixing in the main mixing barrel 2.

[0034] Reference Figure 3 As shown, the gathering shell 4 includes a flat shell portion 41 and a conical shell portion 42. The conical shell portion 42 is arranged on the lower end surface of the flat shell portion 41 and is integrally formed with the flat shell portion 41. The structural arrangement of the gathering shell 4 ensures that the conical shell portion 42 can be installed through the flat shell portion 41 during use. In this way, when the auxiliary mixing barrel 5 falls into the flat shell portion 41, it can be gathered through the conical shell portion 42, and then the raw materials can be stably flowed into the main mixing barrel 2 at the lower end through the conical shell portion 42.

[0035] Reference Figure 2 As shown, the auxiliary mixing barrel 5 includes an auxiliary barrel shell 51 and a positioning frame 52. The auxiliary barrel shell 51 is fixedly installed, and the positioning frame 52 is installed at both ends of the flat shell portion 41. The lower end of the positioning frame 52 is connected to the conical shell portion 42, and the positioning frame 52 is fixedly installed at the head of the auxiliary barrel shell 51. The structural setting of the auxiliary mixing barrel 5 ensures that the positioning frame 52 is installed on the auxiliary barrel shell 51 when in use. In this way, the material balancing assembly 6 can be stably limited by the positioning frame 52 after being installed in the auxiliary barrel shell 51, ensuring that the material balancing assembly 6 can rotate stably during use. The positioning frame 52 includes a ring frame 521, a cross bar 522 and a limiting sleeve 523. The ring frame 521 is fixed in the auxiliary barrel shell 51, the cross bar 522 is fixedly installed in the middle of the ring frame 521, and the limiting sleeve 523 is integrally formed and arranged at the center of the cross bar 522. By setting the structure of the positioning frame 52, it is ensured that the cross bar 522 can be installed through the ring frame 521 when in use. At the same time, by setting a limiting sleeve 523 on the cross bar 522, the limiting sleeve 523 can be sleeved on the head of the material equalizing component 6 to ensure that the material equalizing component 6 can rotate on the limiting sleeve 523.

[0036] Reference Figure 5 and Figure 6As shown, the material distribution assembly 6 includes a central shaft 61, a material gathering plate 62 and a material distribution plate 63. The material gathering plate 62 is arranged directly above the material distribution plate 63, and the material gathering plate 62 and the material distribution plate 63 are both sleeved and fixed on the central shaft 61. A connecting scraper 64 is also fixedly installed between the material gathering plate 62 and the material distribution plate 63. The structural setting of the material equalizing component 6 ensures that the gathering plate 62 and the distribution plate 63 can be installed through the central axis 61 during use. During the actual processing process, the gathering plate 62 and the distribution plate 63 can be driven to rotate synchronously by the central axis 61. The setting of the gathering plate 62 ensures that various raw materials can be quickly gathered after falling into the gathering plate 62. The gathered raw materials can flow downward from the middle of the gathering plate 62 to the distribution plate 63, and then enter the gathering shell 4 at the lower end after being dispersed by the distribution plate 63, and then the raw materials can be pre-mixed by gathering and dispersing. At the same time, the connecting scraper 64 is fixedly installed between the gathering plate 62 and the distribution plate 63, so that the stable connection between the gathering plate 62 and the distribution plate 63 can be guaranteed. At the same time, the connecting scraper 64 is fitted on the inner wall of the auxiliary mixing barrel 5 and rotated to prevent the raw materials from sticking to the inner wall. Several paddles 621 are evenly mounted on the inner side of the gathering plate 62. The paddles 621 are integrally formed with the gathering plate 62, and a discharge trough 622 is provided at the center of the gathering plate 62. The even mounting of the paddles 621 on the inner side of the gathering plate 62 ensures that the paddles 621 can drive the mixing of the raw materials during the rotation of the gathering plate 62. When the rotation speed is reduced or stopped, the raw materials can flow steadily along the paddles 621 into the discharge trough 622 and then be discharged onto the lower distribution plate 63.

[0037] Reference Figure 2 、 Figure 4 and Figure 6 As shown, the drive assembly 7 includes a motor 71, a drive shaft 72 and a pulley group 73. The motor 71 is fixedly mounted on the upper end surface of the flat shell portion 41. The drive shaft 72 is rotatably mounted on the flat shell portion 41. The lower end of the drive shaft 72 is connected to the mixing rod 31 through a coupling. The pulley group 73 is sleeved and fixed on the drive shaft 72, and the pulley group 73 is connected to the central shaft 61 through a linkage belt 731. The structural setting of the drive assembly 7 ensures that the drive shaft 72 can be driven to rotate by the motor 71 when in use, and then the mixing rod 31 at the lower end is driven to rotate synchronously by the drive shaft 72. At the same time, by sleeve-mounting the fixed pulley group 73 on the drive shaft 72, the pulley group 73 can be connected to the central shaft 61 by installing a linkage belt 731 on the pulley group 73, so as to achieve the synchronous rotation processing of the central shaft 61.

[0038] The implementation principle of the raw material mixer for whole grain food processing in the embodiment of the present application is: during actual processing, the operator can start the motor 71 to rotate at a low speed, thereby driving the material equalization component 6 in the auxiliary mixing barrel 5 to rotate. In this way, after the raw materials are added to the auxiliary mixing barrel 5, the raw materials can be gathered by the gathering plate 62, and then the raw materials can be dispersed by the dividing plate 63. The dispersed raw materials can pass through the gathering shell 4 and fall stably into the main mixing barrel 2 at the lower end. When the raw materials are added, the motor 71 can be started to rotate at a high speed, and then the raw materials in the main mixing barrel 2 can be quickly mixed by the high-speed rotating mixing component 3. After the mixing is completed, the discharge shell 21 is opened to discharge the raw materials.

[0039] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A raw material mixer for whole grain food processing, comprising a base (1), characterized in that: A main mixing barrel (2) is mounted on the upper end surface of the base (1), the main mixing barrel (2) is fixedly connected to the base (1), and a discharge shell (21) is mounted on the lower end of the main mixing barrel (2), a mixing assembly (3) is rotatably mounted in the main mixing barrel (2), and a gathering shell (4) is fixedly mounted on the upper end surface of the main mixing barrel (2), an auxiliary mixing barrel (5) is fixedly mounted on the upper end surface of the gathering shell (4), a material equalizing assembly (6) is mounted in the auxiliary mixing barrel (5), the material equalizing assembly (6) is rotatably connected to the auxiliary mixing barrel (5), and a driving assembly (7) for driving the mixing assembly (3) and the material equalizing assembly (6) to rotate synchronously is also mounted on the gathering shell (4).

2. The raw material mixer for whole grain food processing according to claim 1, characterized in that: The mixing assembly (3) comprises a mixing rod (31) and a mixing blade (32). The head of the mixing rod (31) is rotatably mounted in the gathering shell (4). The mixing blade (32) is evenly mounted on the outer surface of the mixing rod (31), and the mixing blade (32) is fixedly connected to the mixing rod (31).

3. The raw material mixer for whole grain food processing according to claim 2, characterized in that: The gathering shell (4) comprises a flat shell portion (41) and a conical shell portion (42); the conical shell portion (42) is arranged on the lower end surface of the flat shell portion (41), and the conical shell portion (42) and the flat shell portion (41) are integrally formed.

4. The raw material mixer for whole grain food processing according to claim 3, characterized in that: The auxiliary mixing barrel (5) comprises an auxiliary barrel shell (51) and a positioning frame (52), wherein the auxiliary barrel shell (51) is fixedly mounted, the positioning frame (52) is mounted at both ends of the flat shell portion (41), and the lower end of the positioning frame (52) is connected to the conical shell portion (42), and the positioning frame (52) is fixedly mounted at the head of the auxiliary barrel shell (51).

5. The raw material mixer for whole grain food processing according to claim 4, characterized in that: The positioning frame (52) comprises a ring frame (521), a cross bar (522) and a limiting sleeve (523); the ring frame (521) is fixedly engaged in the auxiliary barrel shell (51); the cross bar (522) is fixedly mounted in the middle of the ring frame (521); and the limiting sleeve (523) is integrally formed and arranged at the center of the cross bar (522).

6. The raw material mixer for whole grain food processing according to claim 5, characterized in that: The material distribution assembly (6) comprises a central shaft (61), a material gathering plate (62) and a material distribution plate (63); the material gathering plate (62) is arranged directly above the material distribution plate (63), and the material gathering plate (62) and the material distribution plate (63) are both sleeved and fixed on the central shaft (61); a connecting scraper (64) is also fixedly installed between the material gathering plate (62) and the material distribution plate (63).

7. The raw material mixer for processing whole grain food according to claim 6, characterized in that: A plurality of shifting plates (621) are evenly mounted on the inner side surface of the material gathering plate (62). The shifting plates (621) and the material gathering plate (62) are integrally formed, and a material discharge groove (622) is provided at the center of the material gathering plate (62).

8. The raw material mixer for processing whole grain food according to claim 7, characterized in that: The driving assembly (7) comprises a motor (71), a driving shaft (72) and a pulley assembly (73), wherein the motor (71) is fixedly mounted on the upper end surface of the flat shell portion (41), the driving shaft (72) is rotatably mounted on the flat shell portion (41), and the lower end of the driving shaft (72) is connected to the mixing rod (31) via a coupling, and the pulley assembly (73) is sleeved and fixed on the driving shaft (72), and the pulley assembly (73) is connected to the central shaft (61) via a linkage belt (731).

Citation Information

Patent Citations

  • Health-care food raw material mixing machine

    CN210332441U