Vertical superfine flour mill

The integrated grinding and sieving mechanism in the ultra-fine grinding mill addresses the issue of post-grinding separation by using drive and servo motors to enhance milling efficiency and productivity.

CN223096929UActive Publication Date: 2025-07-15XIAN BEIKE ELECTRONICS MATERIAL TECH
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Patent Information

Application Number
CN202422177255.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-07-15
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

The existing vertical ultra-fine automatic grinder is difficult to effectively screen powder after grinding, resulting in difficulty in recycling large-particle materials and affecting production efficiency.

Method used

The combined structure of the grinder body and screening components is designed. Through the combination of the drive motor and the servo motor, the automatic operation of grinding and screening is realized. The movement of components such as transmission rod, connecting rod, rotating disc and linking rod are used to realize powder screening and intercepting.

Benefits of technology

Automatic screening after grinding is realized, reducing the mixing of large pieces of materials and powder, and improving grinding efficiency and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a vertical superfine pulverizer, relates to the field of pulverizers, and improves the operation of screening large particle materials which are not easy to recycle and are not pulverized, the vertical superfine pulverizer comprises a pulverizer body, screws are in threaded connection with the two sides of the pulverizer body, a support is in threaded connection with the surfaces of the screws, and a pulverizing mechanism is fixedly connected to the middle of the surface of the support. A cavity block is slidably connected to one side of the front face of the flour mill body, sliding groove blocks are fixedly connected to the two sides of the inner wall of the cavity block, a screening assembly and a flour milling mechanism are slidably connected to the surfaces of the sliding groove blocks, the two sides of a driving motor are fixedly connected to the surface of a support, and a transmission rod is fixedly installed at the output end of the driving motor. When materials need to be subjected to superfine grinding, the grinding mechanism and the support can be used in cooperation, a worker can place the materials in the hemispherical groove, then a power source of the driving motor can be switched on, and the grinding block drives the materials to be ground in the hemispherical groove.
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Description

Technical Field

[0001] The utility model relates to the technical field of flour mills, in particular to a vertical ultra-fine flour mill. Background Art

[0002] Flour mills are widely used in the powder processing of mineral products in the fields of metallurgy, building materials, chemical industry, mining, etc. The materials can be crushed to the required particle size.

[0003] For example, the utility model with the publication number CN214916971U discloses a vertical ultra-fine automatic flour mill, which includes a flour mill body, a drying mechanism, and a discharging mechanism. The flour mill body includes a discharging port. A receiving bin is arranged on one side corresponding to the flour mill body. The receiving bin is communicated with the discharging port. A vibrating screen is obliquely arranged in the receiving bin. A filter screen is arranged on the vibrating screen. An orifice is arranged on the receiving bin corresponding to one side of the vibrating screen. A cavity is arranged on the receiving bin. An elevator is arranged on the cavity. The cavity is communicated with the orifice. The elevator includes a feeding place communicated with the flour mill body. The utility model thus achieves an automatic packing process for materials, greatly improving the convenience of personnel work.

[0004] Although the vertical ultra-fine automatic flour mill improves the convenience of personnel work and increases production efficiency, when personnel grind materials into powder, it is not easy to further screen the ground powder, resulting in some large-particle materials being difficult to recycle for re-production, reducing the production efficiency of personnel grinding materials, affecting the flour milling efficiency, and being not easy to... Therefore, a vertical ultra-fine automatic flour mill is proposed for the above problems. Summary of the Utility Model

[0005] (I) Technical Problems to be Solved

[0006] In view of the above problems existing in the prior art, the utility model provides a vertical ultra-fine flour mill.

[0007] (II) Technical Solutions

[0008] To achieve the above object, the utility model is realized through the following technical solutions: A vertical ultra-fine flour mill includes a flour mill body. Screws are threadedly connected to both sides of the flour mill body. A bracket is threadedly connected to the surface of the screws. A flour milling mechanism is fixedly connected to the middle of the surface of the bracket. A cavity block is slidably connected to one side of the front surface of the flour mill body. Slide blocks are fixedly connected to both sides of the inner wall of the cavity block. A screening component is slidably connected to the surface of the slide blocks;

[0009] The flour milling mechanism includes that both sides of a driving motor are fixedly connected to the surface of the bracket. A transmission rod is fixedly installed at the output end of the driving motor. One end of the transmission rod is fixedly connected to an adapter rod. A flour milling block is threadedly connected to the bottom of the adapter rod;

[0010] The screening component includes that the bottom of the servo motor is threadedly connected to the middle of the top surface of the chute block. A rotating disk is fixedly installed at the output end of the servo motor. One side of the surface of the rotating disk is rotatably connected to a linkage rod, and one end of the linkage rod is rotatably connected to a connecting block.

[0011] As a preferred solution of the vertical ultrafine grinding mill of the present utility model, one side of the connecting block is fixedly connected to a screening plate, and a filter screen is embedded in the top surface of the screening plate.

[0012] As a preferred solution of the vertical ultrafine grinding mill of the present utility model, a hemispherical groove is opened on the top surface of the grinding mill body, and the size of the hemispherical groove is adapted to the size of the grinding block.

[0013] As a preferred solution of the vertical ultrafine grinding mill of the present utility model, an auxiliary chute is opened on one side of the grinding mill body, and a baffle is slidably connected inside the auxiliary chute.

[0014] As a preferred solution of the vertical ultrafine grinding mill of the present utility model, a concave-shaped handle is opened in the middle of the surface of the baffle, and a maintenance plate is threadedly connected at the adjacent position of the auxiliary chute.

[0015] As a preferred solution of the vertical ultrafine grinding mill of the present utility model, a connecting disk is fixedly connected to one side of the surface of the connecting rod, and bolts are threadedly penetrated through the surface of the connecting disk at equal intervals in a circumferential array.

[0016] (III) Beneficial effects

[0017] The present utility model provides a vertical ultrafine grinding mill, which has the following beneficial effects:

[0018] 1. When ultrafine grinding of materials is required, the grinding mechanism and the bracket can be used in cooperation. Personnel can place the materials inside the hemispherical groove, and then connect the power supply of the driving motor, so that the grinding block drives the materials to be ground inside the hemispherical groove, thus facilitating the personnel to quickly grind the materials.

[0019] 2. When screening after grinding is completed, the grinding mill body and the screening component can be used in cooperation. Personnel can pull out the baffle to convey the powder inside the hemispherical groove to the top of the screening plate, and then connect the power supply of the servo motor, so that the rotating disk drives the linkage rod to perform reciprocating motion. Then the screening plate reciprocates back and forth along the chute block, so that the powder on the top surface of the screening plate is screened, thus facilitating the personnel to screen the powder and reducing the occurrence of the situation where large pieces of materials are mixed with the processed powder. Description of the drawings

[0020] To more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the attached drawings required for description in the embodiments. Obviously, the attached drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other attached drawings can be obtained based on these drawings.

[0021] Figure 1 It is a schematic structural diagram of the whole of the present utility model.

[0022] Figure 2 It is a schematic structural diagram of the split of the present utility model.

[0023] Figure 3 It is a schematic structural diagram of the bracket of the present utility model.

[0024] Figure 4 It is the present utility model Figure 2 The enlarged schematic structural diagram at position A in it.

[0025] In the figure, 1 is the flour mill body; 2 is the screw; 3 is the bracket; 4 is the flour milling mechanism; 41 is the driving motor; 42 is the transmission rod; 43 is the connecting rod; 44 is the flour milling block; 5 is the cavity block; 6 is the chute block; 7 is the screening assembly; 71 is the servo motor; 72 is the rotating disk; 73 is the linkage rod; 74 is the connecting block; 8 is the screening plate; 9 is the baffle. Specific embodiments

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the attached drawings in the embodiments of the present utility model.

[0027] Embodiment 1

[0028] Refer to Figure 1 、 Figure 2 、 Figure 3 And Figure 4 , which is the first embodiment of the present utility model. This embodiment provides a vertical ultra-fine flour mill, including a flour mill body 1. Screws 2 are threadedly connected to both sides of the flour mill body 1. A bracket 3 is threadedly connected to the surface of the screw 2. A flour milling mechanism 4 is fixedly connected to the middle of the surface of the bracket 3.

[0029] Specifically, for the flour milling mechanism 4, both sides of the driving motor 41 are fixedly connected to the surface of the bracket 3. A transmission rod 42 is fixedly installed at the output end of the driving motor 41. One end of the transmission rod 42 is fixedly connected to a connecting rod 43. A flour milling block 44 is threadedly connected to the bottom of the connecting rod 43. A hemispherical groove is formed on the top surface of the flour mill body 1. The size of the hemispherical groove is adapted to the size of the flour milling block 44. A connecting disk is fixedly connected to one side of the surface of the connecting rod 43. Bolts are threadedly penetrated through the surface of the connecting disk at equal intervals in a circumferential array.

[0030] When further grinding materials, the materials can be placed inside the hemispherical groove. Then the operator can turn on the power supply of the driving motor 41, so that the transmission rod 42 drives the connecting rod 43 to rotate. Immediately, the grinding block 44 grinds the materials inside the hemispherical groove into powder. The operator can pull out the baffle 9 to open the hemispherical groove. Then the powder inside the hemispherical groove drops onto the surface of the filter screen on the top surface of the screening plate 8, thus facilitating the operator to grind the materials into powder.

[0031] Embodiment 2

[0032] Refer to Figure 1 、 Figure 2 、 Figure 3 And Figure 4 , which is the second embodiment of the present utility model. Based on the previous embodiment, a cavity block 5 is slidably connected to one side of the front surface of the grinding machine body 1. Both sides of the inner wall of the cavity block 5 are fixedly connected with chute blocks 6. The surface of the chute blocks 6 is slidably connected with a screening assembly 7. A helping chute is opened on one side of the grinding machine body 1. The inside of the helping chute is slidably connected with a baffle 9. The middle part of the surface of the baffle 9 is provided with a concave handle. An inspection plate is threadedly connected to the adjacent part of the helping chute.

[0033] Specifically, the screening assembly 7 includes that the bottom of a servo motor 71 is threadedly connected to the middle part of the top surface of the chute block 6. The output end of the servo motor 71 is fixedly installed with a rotating disk 72. One side of the surface of the rotating disk 72 is rotatably connected with a linkage rod 73. One end of the linkage rod 73 is rotatably connected with a connecting block 74. One side of the connecting block 74 is fixedly connected with a screening plate 8. A filter screen is embedded on the top surface of the screening plate 8.

[0034] Furthermore, when the operator needs to screen the ground materials into powder, the power supply of the servo motor 71 can be turned on, so that the rotating disk 72 rotates, and the linkage rod 73 moves reciprocally along with the rotation of the rotating disk 72. The linkage rod 73 drives the connecting block 74 to move. Immediately, the screening plate 8 reciprocally moves along the chute block 6 under the action of the connecting block 74, so that the screening plate 8 intercepts the materials that have not been completely ground, thus facilitating the operator to screen the materials.

[0035] Working principle: when personnel need to grind materials, they can place the materials inside the hemispherical groove and then they can turn on the power of the driving motor 41, so that the transmission rod 42 drives the connecting rod 43 to rotate, and then the grinding block 44 grinds the materials inside the hemispherical groove into powder, and the personnel can pull the baffle 9 to open the hemispherical groove, and then the powder inside the hemispherical groove falls to the filter screen surface on the top surface of the screening plate 8. At the same time, when the ground materials need to be screened, the power of the servo motor 71 can be turned on to make the rotating disk 72 rotate, so that the linkage rod 73 rotates along the rotating disk 72 to form a reciprocating motion, and the linkage rod 73 drives the connecting block 74 to move, and then the screening plate 8 reciprocates along the slide block 6 under the action of the connecting block 74, so that the screening plate 8 intercepts the materials that have not been ground completely, thereby facilitating personnel to screen the materials.

[0036] It should be noted that, in this document, relational terms such as first and second, etc. are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations.

Claims

1. A vertical ultrafine powder mill, comprising a powder mill body (1), characterized in that: On both sides of the flour mill body (1), there are screws (2) threadedly connected. On the surface of the screw (2), there is a bracket (3) threadedly connected. In the middle of the surface of the bracket (3), there is a flour grinding mechanism (4) fixedly connected. On one side of the front of the flour mill body (1), there is a cavity block (5) slidably connected. On both sides of the inner wall of the cavity block (5), there are chute blocks (6) fixedly connected. On the surface of the chute block (6), there is a screening assembly (7) slidably connected; The flour grinding mechanism (4) includes that on both sides of the drive motor (41), it is fixedly connected to the surface of the bracket (3). At the output end of the drive motor (41), there is a transmission rod (42) fixedly installed. At one end of the transmission rod (42), there is an adapter rod (43) fixedly connected. At the bottom of the adapter rod (43), there is a flour grinding block (44) threadedly connected; The screening assembly (7) includes that at the bottom of the servo motor (71), it is threadedly connected to the middle of the top surface of the chute block (6). At the output end of the servo motor (71), there is a rotating disk (72) fixedly installed. On one side of the surface of the rotating disk (72), there is a linkage rod (73) rotatably connected. At one end of the linkage rod (73), there is a connecting block (74) rotatably connected.

2. The vertical ultrafine grinding mill according to claim 1, characterized in that: On one side of the connecting block (74), there is a screening plate (8) fixedly connected. On the top surface of the screening plate (8), there is a filter screen embedded.

3. The vertical ultrafine pulverizer according to claim 1, characterized in that: On the top surface of the flour mill body (1), there is a hemispherical groove. The size of the hemispherical groove is adapted to the size of the flour grinding block (44).

4. An upright ultrafine pulverizer according to claim 1, wherein: On one side of the flour mill body (1), there is an auxiliary chute. Inside the auxiliary chute, there is a baffle (9) slidably connected.

5. The vertical ultrafine pulverizer according to claim 4, characterized in that: In the middle of the surface of the baffle (9), there is an inwardly concave handle. Adjacent to the auxiliary chute, there is an inspection plate threadedly connected.

6. The vertical ultrafine grinding mill according to claim 1, wherein: On one side of the surface of the adapter rod (43), there is a connecting disk fixedly connected. On the surface of the connecting disk, bolts are threadedly penetrated at equal intervals in a circular array.