Nutriology food processing and grinding device

By combining crushing and grinding mechanisms, and utilizing an inverted conical structure and adjustment mechanism, the problem of existing devices being unable to adapt to different food particles and precision adjustments has been solved, achieving efficient and flexible food grinding to meet the processing needs of nutritious foods.

CN223915570UActive Publication Date: 2026-02-17SHAANXI NUCLEAR IND 215 HOSPITAL
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Patent Information

Application Number
CN202520393850.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-17
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

Existing food processing and grinding equipment cannot grind food particles of different sizes, cannot adjust the grinding precision according to needs, has poor grinding effect and adaptability, and low grinding efficiency, and cannot meet the processing and grinding needs of various nutritious foods.

Method used

It combines a crushing mechanism and a grinding mechanism, and adjusts the grinding precision through an adjustment mechanism. The design of the inverted conical grinding barrel and inverted conical grinding column enables pre-grinding and precise grinding of food particles. The use of buffer springs reduces wear and improves grinding efficiency and applicability.

Benefits of technology

It improves the efficiency and applicability of food processing and grinding, ensures grinding effect, extends the service life of the device, and allows the grinding precision to be adjusted according to needs to meet the processing requirements of different foods.

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Abstract

The utility model relates to the technical field of food processing devices, in particular to a nutriology food processing and grinding device which comprises a smashing mechanism and a grinding mechanism arranged below the smashing mechanism, the smashing mechanism is installed on the top of a supporting suspension, and the grinding mechanism is installed on the inner side of the supporting suspension. Adjusting mechanisms used for adjusting the grinding precision are arranged on the left side and the right side of the outer portion of the supporting suspension correspondingly and connected with the grinding mechanism, and the problems that in the prior art, a food processing and grinding device cannot grind food particles of different sizes in the grinding process, the grinding precision cannot be adjusted according to needs, and the grinding precision cannot be adjusted are solved. The grinding effect and adaptability are poor, the grinding efficiency is low, and the requirement for processing and grinding of various nutriology foods cannot be met.
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Description

Technical Field

[0001] This utility model relates to the field of food processing equipment technology, specifically to a nutritional food processing and grinding device. Background Technology

[0002] With the advancement of social technology, health and wellness have become a major focus for people. People are beginning to pursue whether food is rich in nutrients and whether it is easy for the body to absorb. Therefore, how to make the nutrients in food more easily absorbed by people has become a research project. Among the existing food nutrient extraction technologies, food grinding is widely used. Grinding can make food into fine powder, which makes it easier to obtain nutrients from food and for consumers to better absorb them.

[0003] Chinese Patent Publication No. CN214159740U discloses a food processing and grinding device for nutritional purposes, belonging to the field of food grinding technology. It includes a vertically arranged feed cylinder with a frustum-shaped grinding frame formed around the bottom periphery of the feed cylinder. The bottom diameter of the grinding frame is larger than its top diameter, and both the top and bottom ends of the grinding frame are open. A grinding body of the same shape and parallel to the grinding frame is located inside the grinding frame, with its bottom end also open. A drive mechanism for adjusting the height and rotation angle of the grinding body is located at the open bottom end of the grinding body. This invention uses a cylinder to adjust the gap between the grinding body and the grinding frame, preventing food particles from passing through. Simultaneously, the operator can adjust the gap distance between the grinding body and the grinding frame according to the grinding precision required for the food particles, ensuring the device's grinding effect.

[0004] Food processing and grinding devices like those mentioned above cannot grind food particles of different sizes during the grinding process, nor can they adjust the grinding precision according to needs. They have poor grinding effect and adaptability, and low grinding efficiency, which is insufficient to meet the processing and grinding needs of various nutritious foods. Utility Model Content

[0005] The purpose of this invention is to provide a nutritional food processing and grinding device that overcomes the problems of existing food processing and grinding devices being unable to grind food particles of different sizes, unable to adjust the grinding precision according to needs, having poor grinding effect and adaptability, and low grinding efficiency, which are insufficient to meet the needs of processing and grinding various nutritional foods.

[0006] To achieve the above objectives, the technical solution adopted by this utility model to solve its technical problem is as follows:

[0007] A nutritional food processing and grinding device was designed, combining a pulverizing mechanism and a grinding mechanism to meet the processing and grinding needs of various foods. The grinding precision can be adjusted by a regulating mechanism, which also reduces wear on the grinding mechanism, thus ensuring its service life and grinding effect. The specific scheme is as follows:

[0008] A nutritional food processing and grinding device includes a crushing mechanism and a grinding mechanism disposed below the crushing mechanism. The crushing mechanism is mounted on top of a support suspension, and the grinding mechanism is mounted inside the support suspension.

[0009] The support suspension is provided with adjustment mechanisms on the left and right sides for adjusting the grinding precision, and the adjustment mechanisms are connected to the grinding mechanism.

[0010] Preferably, the crushing mechanism includes a crushing motor, a crushing box, a feeding hopper, a crushing shaft, crushing blades, and a feeding pipe, and the crushing box is mounted on the top of the support suspension via a fixing plate;

[0011] The pulverizing motor is installed on the rear side of the pulverizing box, and the pulverizing shaft is connected to the output end of the pulverizing motor and is rotatably connected inside the pulverizing box;

[0012] The number of the crushing blades is multiple, and the multiple crushing blades are equidistantly and staggeredly distributed on the crushing shaft;

[0013] The feeding hopper is located at the top of the crushing box, and the feeding pipe is located at the bottom front side of the crushing box, with the feeding pipe corresponding to the grinding mechanism.

[0014] Preferably, the grinding mechanism includes a grinding motor, an inverted conical grinding barrel, and an inverted conical grinding column, wherein the grinding motor is mounted on the top inner side of the support suspension via a mounting bracket;

[0015] The inverted conical grinding column is connected to the output end of the grinding motor via a rotating shaft, and the inverted conical grinding barrel is connected to the adjusting mechanism via a mounting column. The inverted conical grinding barrel is sleeved on the outside of the inverted conical grinding column.

[0016] Preferably, the support suspension is provided with vertically extending adjustment grooves on the left and right sides respectively, and there are two mounting columns, which are respectively fixedly connected to the outer side of the top of the inverted conical grinding barrel.

[0017] The mounting column is slidably connected within the adjustment groove, and the free end of the mounting column is connected to the adjustment mechanism.

[0018] Preferably, the adjustment mechanism includes a mounting shell, an adjustment screw, an adjustment turntable, a buffer spring, and an adjustment slider. The number of mounting shells is two, and the two mounting shells are respectively installed at the adjustment groove.

[0019] The adjusting screw is rotatably connected inside the mounting housing, and the upper end of the adjusting screw passes through the mounting housing and is connected to the adjusting turntable;

[0020] The adjusting slider is slidably connected inside the mounting housing and threadedly connected to the adjusting screw; the free end of the mounting post is slidably connected inside the mounting housing; and the adjusting screw passes through the mounting post.

[0021] The adjusting slider is located below the mounting post, and the buffer spring is disposed between the adjusting slider and the mounting post and is sleeved on the adjusting screw.

[0022] Preferably, the bottom of the inverted conical grinding barrel is provided with a discharge pipe, the discharge pipe is provided with a control valve, and grinding protrusions are provided on both the inner surface of the inverted conical grinding barrel and the outer surface of the inverted conical grinding column.

[0023] Preferably, the top edge of the inverted conical grinding column is provided with a pre-grinding rounded corner, and the pre-grinding rounded corner and the upper inside of the inverted conical grinding barrel form a pre-grinding area.

[0024] The beneficial effects of this utility model are:

[0025] 1. This utility model combines a crushing mechanism and a grinding mechanism, which can crush larger food particles first, and then grind the crushed food. This not only improves the efficiency of food processing and grinding, but also improves the applicability of the device. At the same time, by utilizing the pre-grinding rounded corner at the top of the inverted conical grinding column and the pre-grinding area formed between the top of the inverted conical grinding barrel, the food particles can be pre-grinded to ensure improved grinding efficiency.

[0026] 2. This utility model sets the grinding mechanism in the support suspension through an adjustment mechanism. The adjustment function of the adjustment mechanism can adjust the distance between the inverted conical grinding barrel and the inverted conical grinding column, thereby achieving control over the grinding accuracy. During the grinding process, a buffer spring can be used to reduce the wear between the inverted conical grinding barrel and the inverted conical grinding column, and ensure the normal operation of the grinding work, thereby improving the grinding effect.

[0027] 3. This utility model adopts an inverted conical grinding barrel and an inverted conical grinding column, which can ensure that the food powder can be smoothly discharged after grinding. In addition, during the adjustment of grinding precision, the distance between any position of the inner surface of the inverted conical grinding barrel and the outer surface of the inverted conical grinding column can always be the same, so as to ensure the grinding of food particles. Attached Figure Description

[0028] Figure 1 This is a front view of the present invention;

[0029] Figure 2 for Figure 1 Schematic diagram of the cross section at point AA;

[0030] Figure 3 This is a schematic diagram of the internal structure of the adjustment mechanism in this utility model;

[0031] Figure 4 This is a cross-sectional schematic diagram of the grinding mechanism in this utility model;

[0032] Figure 5 This is a top view of the grinding mechanism in this utility model.

[0033] In the diagram: 1-Crushing mechanism; 11-Crushing motor; 12-Crushing box; 13-Feeding hopper; 14-Crushing shaft; 15-Crushing blade; 16-Feeding pipe; 2-Support suspension; 21-Fixing plate; 22-Adjusting groove; 23-Mounting frame; 3-Inverted conical grinding barrel; 31-Mounting column; 32-Discharge pipe; 33-Control valve; 4-Inverted conical grinding column; 41-Pre-grinding rounded corner; 42-Pre-grinding area; 5-Adjusting mechanism; 51-Mounting shell; 52-Adjusting screw; 53-Adjusting turntable; 54-Buffer spring; 55-Adjusting slider; 6-Grinding motor; 61-Rotating shaft; 7-Grinding protrusion. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings. The illustrative embodiments and descriptions of this utility model are only used to explain this utility model and are not intended to limit this utility model.

[0035] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. However, it will be apparent to those skilled in the art that these specific details are not necessary to implement the present invention. In other embodiments, well-known structures, circuits, materials, or methods are not specifically described in order to avoid obscuring the present invention.

[0036] Throughout this specification, references to "an embodiment," "an example," or "an example" mean that a particular feature, structure, or characteristic described in connection with that embodiment or example is included in at least one embodiment of the present invention. Therefore, the phrases "an embodiment," "an example," "an example," or "an example" appearing in various places throughout the specification do not necessarily refer to the same embodiment or example. Furthermore, specific features, structures, or characteristics can be combined in one or more embodiments or examples in any suitable combination and / or sub-combination. Moreover, those skilled in the art will understand that the illustrations provided herein are for illustrative purposes and are not necessarily drawn to scale. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0037] In the description of this utility model, the terms "front", "rear", "left", "right", "up", "down", "vertical", "horizontal", "high", "low", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this utility model.

[0038] like Figure 1-5 As shown, this utility model provides a nutritional food processing and grinding device, including a crushing mechanism 1 and a grinding mechanism disposed below the crushing mechanism 1. During the food processing and grinding process, larger food particles can be crushed by the crushing mechanism 1 first, and then ground by the grinding mechanism to ensure the grinding effect and efficiency, making it suitable for processing and grinding various kinds of food. The crushing mechanism 1 is installed on the top of the support suspension 2, and the grinding mechanism is installed inside the support suspension 2. Adjustment mechanisms 5 for adjusting the grinding precision are respectively provided on the left and right sides of the outside of the support suspension 2. The adjustment mechanisms 5 are connected to the grinding mechanism, and the grinding precision of the grinding mechanism can be adjusted through the adjustment mechanisms 5, so that the ground food powder meets the needs of the consumer.

[0039] In the above scheme, the crushing mechanism 1 includes a crushing motor 11, a crushing box 12, a feeding hopper 13, a crushing shaft 14, crushing blades 15, and a feeding pipe 16. The crushing box 12 is mounted on the top of the support suspension 2 via a fixing plate 21. The crushing motor 11 is mounted on the rear side of the crushing box 12. The crushing shaft 14 is connected to the output end of the crushing motor 11 and is rotatably connected inside the crushing box 12. There are multiple crushing blades 15, which are equidistantly and staggeredly distributed on the crushing shaft 14. The feeding hopper 13 is located on the top of the crushing box 12, and the feeding pipe 16 is located on the front side of the bottom of the crushing box 12. The feeding pipe 16 corresponds to the grinding mechanism.

[0040] As an optimized technical solution of this utility model, in order to ensure that the grinding mechanism can grind food more efficiently, the food with larger particles can be put into the crushing box 12 from the feeding hopper 13 first, and then the crushing motor 11 can be started. The crushing shaft 14 drives the crushing blade 15 to crush the food. After crushing, it can be released into the grinding mechanism through the feeding pipe 16 to be ground into powder.

[0041] In the above scheme, the grinding mechanism includes a grinding motor 6, an inverted conical grinding barrel 3, and an inverted conical grinding column 4. The grinding motor 6 is mounted on the top of the inner side of the support suspension 2 via a mounting bracket 23. The inverted conical grinding column 4 is connected to the output end of the grinding motor 6 via a rotating shaft 61. The inverted conical grinding barrel 3 is connected to the adjustment mechanism 5 via a mounting column 31. The inverted conical grinding barrel 3 is sleeved on the outside of the inverted conical grinding column 4.

[0042] As an optimized technical solution of this utility model, the grinding motor 6 is installed on the top of the inner side of the support suspension through the mounting bracket 23, and the inverted conical grinding column 4 is installed at the bottom of the mounting bracket 23 through the rotating shaft 61 and drives it to rotate. The inverted conical grinding column 4 is sleeved on the inner side of the inverted conical grinding barrel 3. By rotating the inverted conical grinding column 4 in the inverted conical grinding barrel 3, the grinding of food particles can be realized, so as to grind the food particles into food powder for consumers to eat.

[0043] In the above scheme, the left and right sides of the support suspension 2 are respectively provided with vertically extending adjustment grooves 22, and there are two mounting columns 31. The two mounting columns 31 are respectively fixedly connected to the outer side of the top of the inverted conical grinding barrel 3. The mounting columns 31 are slidably connected in the adjustment grooves 22, and the free end of the mounting column 31 is connected to the adjustment mechanism 5.

[0044] As an optimized technical solution of this utility model, during the grinding precision adjustment process, the inverted conical grinding barrel 3 can be moved up and down along the adjustment groove 22 in the support suspension 2 by the adjustment mechanism 5, thereby changing the distance between the inner surface of the inverted conical grinding barrel 3 and the outer surface of the inverted conical grinding column 4, so as to adjust the grinding precision of the grinding mechanism and grind food powders of different precision.

[0045] In the above scheme, the adjustment mechanism 5 includes a mounting shell 51, an adjustment screw 52, ​​an adjustment turntable 53, a buffer spring 54, and an adjustment slider 55. There are two mounting shells 51, which are respectively installed at the adjustment groove 22. The adjustment screw 52 is rotatably connected inside the mounting shell 51. The upper end of the adjustment screw 52 passes through the mounting shell 51 and is connected to the adjustment turntable 53. The adjustment slider 55 is slidably connected inside the mounting shell 51 and is threadedly connected to the adjustment screw 52. The free end of the mounting post 31 is slidably connected inside the mounting shell 51. The adjustment screw 52 passes through the mounting post 31. The adjustment slider 55 is located on the lower side of the mounting post 31. The buffer spring 54 is disposed between the adjustment slider 55 and the mounting post 31 and is sleeved on the adjustment screw 52.

[0046] As an optimized technical solution of this utility model, in the process of adjusting the precision of the grinding mechanism, the adjusting turntable 53 can be rotated, thereby driving the adjusting screw 52 to rotate. During the rotation of the adjusting screw 52, ​​the threaded connection between it and the adjusting slider 55, combined with the sliding connection between the adjusting slider 55 and the mounting shell 51, can be used to make the adjusting slider 55 slide up and down in the mounting shell 51. By adjusting the sliding up and down of the adjusting slider 55, the mounting column 31 can move up and down in the adjusting groove 22, thereby making the inverted conical grinding barrel 3 move up and down to adjust the grinding precision of the grinding mechanism. The buffer spring 54 can provide a certain amount of movement space for the inverted conical grinding barrel 3 during the grinding process. The elastic force of the buffer spring 54 can ensure the grinding effect of the grinding mechanism during the grinding process and reduce the wear caused by the grinding process.

[0047] In the above scheme, the bottom of the inverted conical grinding barrel 3 is provided with a discharge pipe 32, and a control valve 33 is provided on the discharge pipe 32. Grinding protrusions 7 are provided on both the inner surface of the inverted conical grinding barrel 3 and the outer surface of the inverted conical grinding column 4.

[0048] As an optimized technical solution of this utility model, the discharge pipe 32 is set at the lowest point of the bottom of the inverted conical grinding barrel 3 so that the ground food powder can be smoothly discharged through the discharge pipe 32. The control valve 33 is used to control the opening and closing of the discharge pipe 32 to prevent the ground food powder from falling outside. The grinding protrusions 7 set on the inner surface of the inverted conical grinding barrel 3 and the outer surface of the inverted conical grinding column 4 can assist the grinding mechanism to improve the grinding effect.

[0049] In the above scheme, a pre-grinding fillet 41 is provided at the top edge of the inverted conical grinding column 4, and a pre-grinding area 42 is formed between the pre-grinding fillet 41 and the upper side of the inside of the inverted conical grinding barrel 3.

[0050] As an optimized technical solution of this utility model, the pre-grinding rounded corner 41 set at the top edge of the inverted conical grinding column 4 can form a pre-grinding area 42 with the upper side of the inside of the inverted conical grinding barrel 3. In the pre-grinding area 42, food particles with relatively large particles can be pre-grinded, so that the food particles after pre-grinding can enter the lower side more smoothly for further grinding, thus ensuring the grinding effect while improving grinding efficiency.

[0051] Specific implementation examples:

[0052] When using this food processing and grinding device, food particles can be put into the grinding box 12 from the feeding hopper 13. Start the grinding motor 11 to drive the grinding shaft 14 to rotate. Then the grinding shaft 14 drives the grinding blades 15 on it to grind the food particles put into the grinding box 12. The ground food will flow out through the discharge pipe 16 and fall into the inverted cone-shaped grinding barrel 3.

[0053] When the food particles to be crushed fall into the inverted conical grinding barrel 3, the grinding motor 6 can be started. The rotating shaft 61 drives the inverted conical grinding column 4 to rotate inside the inverted conical grinding barrel 3. The rotation of the inverted conical grinding column 4 inside the inverted conical grinding barrel 3 can achieve the grinding of food particles. During the grinding process, the food particles will be pre-ground in the pre-grinding area 42. The pre-grinding rounded corner 41 cooperates with the upper side of the inverted conical grinding barrel 3 for preliminary pre-grinding treatment. The food particles pre-ground in the pre-grinding area 42 will enter the grinding area between the lower inverted conical grinding column 4 and the inverted conical grinding barrel 3 for further grinding treatment to ensure the grinding effect of the grinding mechanism and improve the grinding efficiency. After grinding into the required food powder, the control valve 33 can be opened to discharge from the discharge pipe 32.

[0054] During the grinding process, in order to adjust the grinding precision of the grinding mechanism, the adjusting turntable 53 can be rotated, which in turn drives the adjusting screw 52 to rotate within the mounting housing 51. During the rotation of the adjusting screw 52 within the mounting housing 51, the threaded connection between it and the adjusting slider 55 is utilized, causing the adjusting slider 55 to slide up and down within the mounting housing 51. This, in turn, drives the mounting column 31 to move up and down within the adjusting groove 22. Through the mounting column 31, the inverted conical grinding barrel 3 can be moved up and down, thereby changing the distance between the inverted conical grinding barrel 3 and the inverted conical grinding column 4. This is done to adjust the grinding precision of the grinding mechanism, ensuring that it can meet the grinding needs of consumers and improve its applicability.

[0055] Finally, during the grinding process of the inverted conical grinding column 4 rotating inside the inverted conical grinding barrel 3, the elastic force of the buffer spring 54 can be used to give the inverted conical grinding barrel 3 a certain amount of room to move, so that food particles can enter the grinding area more smoothly during the grinding process and ensure its grinding effect.

[0056] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. It should be understood that the above description is only a specific embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.

Claims

1. A nutritional food processing and grinding device comprising a comminution mechanism (1) and a grinding mechanism disposed below the comminution mechanism (1), characterized in that: The crushing mechanism (1) is installed on the top of the support suspension (2), and the grinding mechanism is installed on the inner side of the support suspension (2); The left and right sides of the support suspension (2) are respectively provided with adjusting mechanisms (5) for adjusting the grinding precision, and the adjusting mechanisms (5) are connected with the grinding mechanism.

2. A nutritional food processing and grinding device according to claim 1, characterized in that: The crushing mechanism (1) comprises a crushing motor (11), a crushing box (12), a feeding hopper (13), a crushing shaft (14), a crushing blade (15) and a discharging pipe (16), and the crushing box (12) is installed on the top of the support suspension (2) through a fixing plate (21); The crushing motor (11) is installed on the rear side of the crushing box (12), the crushing shaft (14) is connected with the output end of the crushing motor (11), and the crushing shaft (14) is rotatably connected in the crushing box (12); The number of the crushing blades (15) is multiple, and the multiple crushing blades (15) are equidistantly and staggeredly distributed on the crushing shaft (14); The feeding hopper (13) is arranged on the top of the crushing box (12), the discharging pipe (16) is arranged on the bottom front side of the crushing box (12), and the discharging pipe (16) corresponds to the grinding mechanism.

3. A nutritional food processing and grinding device as defined in claim 1, wherein: The grinding mechanism comprises a grinding motor (6), an inverted cone type grinding barrel (3) and an inverted cone type grinding column (4), and the grinding motor (6) is installed on the inner top side of the support suspension (2) through a mounting frame (23); The inverted cone type grinding column (4) is connected with the output end of the grinding motor (6) through a rotating shaft (61), the inverted cone type grinding barrel (3) is connected with the adjusting mechanism (5) through a mounting column (31), and the inverted cone type grinding barrel (3) is sleeved on the outer side of the inverted cone type grinding column (4).

4. A nutritional food processing and grinding device according to claim 3, characterized in that: The support suspension (2) is respectively provided with adjusting grooves (22) extending upward and downward on the left and right sides, and the number of the mounting columns (31) is two, and the two mounting columns (31) are respectively fixedly connected on the top outer side of the inverted cone type grinding barrel (3); The mounting column (31) is slidably connected in the adjusting groove (22), and the free end of the mounting column (31) is connected with the adjusting mechanism (5).

5. A nutritional food processing and grinding device according to claim 4, characterized in that: The adjusting mechanism (5) comprises a mounting shell (51), an adjusting screw rod (52), an adjusting turntable (53), a buffer spring (54) and an adjusting sliding block (55), and the number of the mounting shells (51) is two, and the two mounting shells (51) are respectively installed at the adjusting grooves (22); The adjusting screw rod (52) is rotatably connected in the mounting shell (51), and the upper end of the adjusting screw rod (52) penetrates the mounting shell (51) and is connected with the adjusting turntable (53); The adjusting sliding block (55) is slidably connected in the mounting shell (51) and is threadedly connected with the adjusting screw rod (52), the free end of the mounting column (31) is slidably connected in the mounting shell (51), and the adjusting screw rod (52) penetrates the mounting column (31). The adjusting slider (55) is located at the lower side of the mounting column (31), the buffer spring (54) is arranged between the adjusting slider (55) and the mounting column (31), and is sleeved on the adjusting screw rod (52).

6. A nutritional food processing and grinding device as defined in claim 3, wherein: The bottom of the inverted-cone-shaped grinding barrel (3) is provided with a discharge pipe (32), the discharge pipe (32) is provided with a control valve (33), and the inner surface of the inverted-cone-shaped grinding barrel (3) and the outer surface of the inverted-cone-shaped grinding column (4) are both provided with grinding protrusions (7).

7. A nutritional food processing and grinding device as defined in claim 3, wherein: The top edge of the inverted-cone-shaped grinding column (4) is provided with a pre-grinding round corner (41), and the pre-grinding round corner (41) and the upper side of the inner part of the inverted-cone-shaped grinding barrel (3) form a pre-grinding area (42).

Citation Information

Patent Citations

  • Food processing and grinding device for nutriology

    CN214159740U