Feeding mechanism for drying equipment for ternary precursor production

Through the design of the guide vertebral body and annular cutting trough, the problem of material piles is solved, the uniform dispersion and shaking of materials is achieved, and the drying effect of the drying equipment for the production of ternary precursors is improved.

CN223153969UActive Publication Date: 2025-07-25厦门紫京科技有限责任公司 +1
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Patent Information

Application Number
CN202422318744.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-25
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

In the production of ternary precursors, the materials are easily piled up, resulting in uneven cutting and shoveling processes, affecting the drying effect.

Method used

A feeding mechanism including a conductive vertebrae and an annular cutting trough is designed. The conductive vertebrae is connected to the lower hopper and distributed the cutting port. A bump is provided in the annular cutting trough, which drives the drive block to thrust to form shaking to ensure that the material is evenly dispersed.

Benefits of technology

Improve the uniformity of the material and ensure uniformity during subsequent shoveling, thereby improving the drying effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding mechanism for drying equipment for ternary precursor production, which comprises a fixed tank body, a corresponding blanking hopper is arranged at the top of the fixed tank body, a corresponding material guide cone is fixedly arranged in the middle of the blanking hopper, and a feeding hole is formed in the middle of the fixed tank body. A plurality of corresponding discharge ports are uniformly distributed in the fixed tank body between the guide cone and the discharge hopper; the annular discharging groove is movably installed on the bottom side of the top of the fixed tank body, and a plurality of corresponding protruding blocks are evenly distributed on the inner side wall of the annular discharging groove; the driving shaft is driven by a corresponding driving motor, a driving block matched with the protruding block is fixedly connected to the driving shaft, and in the rotating process of the driving shaft, the driving block gradually blocks and pushes the protruding block so as to drive the annular discharging groove to shake. The discharging uniformity of the materials can be effectively improved, so that the uniformity of the materials in the subsequent shoveling and pushing process is ensured, and the drying effect on the materials is improved in an auxiliary mode.
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Description

Technical Field

[0001] The utility model relates to an auxiliary mechanism for a drying device used in the production of ternary precursors, specifically referring to a feeding mechanism for a drying device used in the production of ternary precursors. Background Technique

[0002] During the processing of ternary precursors, corresponding drying equipment is required to further dry the separated materials. At present, most of the equipment used for drying ternary precursors adopts a disk dryer.

[0003] The existing disk dryer generally includes a fixed tank body and several heating disks arranged at different heights in the fixed tank body. The materials enter the heating disk at the top through a feeding hopper, and a corresponding driving mechanism is used to drive the scraper arranged above the heating disk. Under the rotation of the scraper, the materials on the heating disk are gradually shoveled alternately outward or inward, so that the materials can sequentially pass through the surfaces of each heating disk, thereby achieving a better drying effect. Such a disk dryer has the following defects in actual use: the materials are likely to enter the heating disk at the top in a pile, resulting in obvious non-uniformity problems in the subsequent shoveling process, thus affecting the drying effect of the materials.

[0004] Therefore, the research purpose of the present utility model is to design a feeding mechanism for a drying device used in the production of ternary precursors, which can effectively improve the uniformity of the material feeding, ensure the uniformity of the materials in the subsequent shoveling process, and thus assist in improving the drying effect of the materials. Summary of the Invention

[0005] In view of the above technical problems existing in the prior art, the present utility model provides a feeding mechanism for a drying device used in the production of ternary precursors, which can effectively solve the above technical problems existing in the prior art.

[0006] The technical solution of the present utility model is as follows:

[0007] A feeding mechanism for a drying device used in the production of ternary precursors, comprising:

[0008] A fixed tank body, on the top of which a corresponding feeding hopper is provided. In the middle of the feeding hopper, a corresponding guiding cone is fixedly arranged, and a plurality of corresponding feeding ports are evenly distributed on the fixed tank body between the guiding cone and the feeding hopper;

[0009] An annular feeding groove, which is movably installed on the bottom side of the top of the fixed tank body. The annular feeding groove is opposite to the feeding port. A plurality of corresponding feeding holes are evenly distributed on the bottom surface of the annular feeding groove, and a plurality of corresponding convex blocks are evenly distributed on the inner side wall of the annular feeding groove;

[0010] The driving shaft is driven by a corresponding driving motor, and a driving block adapted to the protrusion is fixedly connected to the driving shaft. When the driving motor drives the driving shaft to rotate, the driving block gradually pushes the protrusion to drive the annular material discharge chute to vibrate.

[0011] A corresponding fixed ring plate is fixedly connected to the bottom side of the top of the fixed tank body, and the annular material discharge chute is movably mounted on the inner side of the fixed ring plate through a plurality of evenly distributed elastic members.

[0012] The elastic member is a coil spring, and two ends of the coil spring are respectively fixed to the outer side wall of the annular material discharge trough and the inner side wall of the fixed ring plate.

[0013] The material guiding cone is fixedly connected to the fixed tank body by a plurality of connecting rods arranged in a circular array, and the interval between two adjacent connecting rods forms the material discharge port.

[0014] The material guiding cone is hollow.

[0015] The bottom of the material guiding cone extends to the bottom side of the fixed tank body and is sleeved on the upper side of the inner side wall of the annular material discharge trough.

[0016] Advantages of the utility model:

[0017] 1) A material guide cone is fixedly arranged in the middle of the material hopper of the utility model, and a plurality of corresponding material discharge ports are evenly distributed on the fixed tank body between the material guide cone and the material hopper. Under the action of the material guide cone, the material entering the material hopper is dispersed and discharged, thereby effectively ensuring the uniformity of material discharge, improving the uniformity of the material in the subsequent shoveling process, and effectively assisting in improving the drying effect of the material.

[0018] 2) The top and bottom sides of the fixed tank of the utility model are movably equipped with an annular feeding trough, which receives the materials passing through the feeding port, so that the materials fall into the annular feeding trough relatively evenly; during the rotation of the driving shaft, the driving block arranged on the driving shaft gradually pushes the convex block connected to the annular feeding trough to drive the annular feeding trough to vibrate. In this way, the materials falling evenly into the annular feeding trough can be further shaken and dispersed to further ensure the uniformity of material feeding.

[0019] 3) The material guide cone of the utility model is hollow, and the bottom of the material guide cone extends to the bottom side of the fixed tank body and is sleeved on the upper side of the inner wall of the annular material discharge chute, so that the material can be effectively and accurately introduced into the annular material discharge chute to ensure that the subsequent shaking and dispersing material discharge process can proceed smoothly. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic structural view of the present utility model.

[0021] Figure 2 This is a cross-sectional view of the present utility model.

[0022] Figure 3 This is a schematic structural view of the annular blanking groove installed on the fixed ring plate.

[0023] In the attached drawings: fixed tank body 1, blanking hopper 2, material guiding cone 3, blanking port 4, annular blanking groove 5, blanking hole 6, convex block 7, driving shaft 8, driving motor 9, driving block 10, fixed ring plate 11, elastic member 12, connecting rod member 13. Specific implementation mode

[0024] For the convenience of those skilled in the art to understand, the embodiments will be combined with the attached drawings to further describe the structure of the present utility model in detail:

[0025] Reference Figures 1-3 , a feeding mechanism for a drying device used in the production of ternary precursors, comprising:

[0026] Fixed tank body 1, a corresponding blanking hopper 2 is arranged at the top of the fixed tank body 1, a corresponding material guiding cone 3 is fixedly arranged in the middle of the blanking hopper 2, and a plurality of corresponding blanking ports 4 are uniformly distributed on the fixed tank body 1 between the material guiding cone 3 and the blanking hopper 2;

[0027] Annular blanking groove 5, movably installed on the bottom side of the top of the fixed tank body 1, the annular blanking groove 5 is opposite to the blanking port 4, a plurality of corresponding blanking holes 6 are uniformly distributed on the bottom surface of the annular blanking groove 5, and a plurality of corresponding convex blocks 7 are uniformly distributed on the inner side wall of the annular blanking groove 5;

[0028] Driving shaft 8, driven by a corresponding driving motor 9, a driving block 10 adapted to the convex block 7 is fixedly connected to the driving shaft 8, and during the process of the driving motor 9 driving the driving shaft 8 to rotate, the driving block 10 gradually forms a blocking and pushing force on the convex block 7 to drive the annular blanking groove 5 to vibrate.

[0029] The utility model has a material guide cone 3 fixedly arranged in the middle of the material hopper 2, and a plurality of corresponding material discharge ports 4 are evenly distributed on the fixed tank body 1 between the material guide cone 3 and the material hopper 2. Under the action of the material guide cone 3, the material entering the material hopper 2 is dispersed and discharged, so as to effectively ensure the uniformity of the material discharge, so as to improve the uniformity of the material in the subsequent shoveling process, so as to effectively assist in improving the drying effect of the material. On this basis, the utility model further has an annular material discharge trough 5 movably installed on the top and bottom side of the fixed tank body 1, and the annular material discharge trough 5 is used to receive the material flowing through the material discharge port 4, so that the material falls into the annular material discharge trough 5 relatively evenly; during the rotation of the drive shaft 8, the drive block 10 arranged on the drive shaft 8 gradually forms a blocking push on the protrusion 7 connected to the annular material discharge trough 5, so as to drive the annular material discharge trough 5 to form a shaking. In this way, the material that falls evenly into the annular material discharge trough 5 can be further shaken and dispersed to further ensure the uniformity of the material discharge.

[0030] A corresponding fixed ring plate 11 is fixedly connected to the bottom side of the top of the fixed tank body 1 , and the annular material discharge chute 5 is movably mounted on the inner side of the fixed ring plate 11 through a plurality of evenly distributed elastic members 12 .

[0031] The elastic member 12 is a coil spring, and two ends of the coil spring are respectively fixed to the outer wall of the annular material discharge chute 5 and the inner wall of the fixed ring plate 11 .

[0032] The material guiding cone 3 is fixed to the fixed tank body 1 by a plurality of connecting rods 13 arranged in a circular array, and the interval between two adjacent connecting rods 13 forms the material discharge port 4.

[0033] The material guide cone 3 is hollow, and the bottom of the material guide cone 3 extends to the bottom side of the fixed tank body 1 and is sleeved on the upper side of the inner wall of the annular material discharge trough 5, so that the material can be effectively and accurately introduced into the annular material discharge trough 5 to ensure that the subsequent shaking and dispersing material discharge process can proceed smoothly.

[0034] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention.

Claims

1. A feeding mechanism for a drying device used in the production of ternary precursors, characterized in that, Comprising: A fixed tank body (1), at the top of the fixed tank body (1) is provided with a corresponding feeding hopper (2), in the middle of the feeding hopper (2) is fixedly provided with a corresponding material guiding cone (3), and on the fixed tank body (1) between the material guiding cone (3) and the feeding hopper (2) are evenly distributed with a plurality of corresponding material discharging openings (4); An annular material discharging groove (5), movably installed on the bottom side of the top of the fixed tank body (1), the annular material discharging groove (5) is opposite to the material discharging openings (4), on the bottom surface of the annular material discharging groove (5) are evenly distributed with a plurality of corresponding material discharging holes (6), and on the inner side wall of the annular material discharging groove (5) are evenly distributed with a plurality of corresponding convex blocks (7); A driving shaft (8), driven by a corresponding driving motor (9), on the driving shaft (8) is fixedly connected with a driving block (10) adapted to the convex blocks (7), during the process that the driving motor (9) drives the driving shaft (8) to rotate, the driving block (10) gradually forms a blocking and pushing force on the convex blocks (7) to drive the annular material discharging groove (5) to vibrate.

2. The feeding mechanism for a drying device used in the production of ternary precursors according to claim 1, characterized in that, On the bottom side of the top of the fixed tank body (1) is fixedly connected with a corresponding fixed ring plate (11), and the annular material discharging groove (5) is movably installed inside the fixed ring plate (11) through a plurality of evenly distributed elastic members (12).

3. The feeding mechanism for a drying device used in the production of ternary precursors according to claim 2, characterized in that, The elastic member (12) adopts a spiral spring, and the two ends of the spiral spring are respectively fixedly connected to the outer side wall of the annular material discharging groove (5) and the inner side wall of the fixed ring plate (11).

4. The feeding mechanism for a drying device used in the production of ternary precursors according to claim 1, characterized in that, The material guiding cone (3) is fixedly connected to the fixed tank body (1) through a plurality of connecting rods (13) arranged in an annular array, and the interval between two adjacent connecting rods (13) forms the material discharging opening (4).

5. The feeding mechanism for a drying device used in the production of ternary precursors according to claim 1, characterized in that, The material guiding cone (3) is hollow.

6. The feeding mechanism for the drying equipment used in the production of ternary precursors according to claim 5, characterized in that, The bottom of the material guiding cone (3) extends to the bottom side of the fixed tank body (1) and is sleeved on the upper side of the inner side wall of the annular material discharging groove (5).