Graphite cathode material drying equipment

By designing a graphite anode material drying equipment that includes dispersing, drying, and stirring structures, the problems of graphite particle accumulation and moisture influence were solved, achieving uniform drying and effective degassing, thus improving the drying effect.

CN223623287UActive Publication Date: 2025-12-02QINGDAO LONGDI CARBON MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202422499787.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-12-02
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

In existing graphite anode material drying devices, graphite particles tend to accumulate, leading to uneven drying. Furthermore, moisture evaporates into the air during the drying process, resulting in excessive air moisture content and affecting the drying effect.

Method used

A graphite anode material drying device was designed, comprising a base, a fixing structure, a supporting structure, a load-bearing structure, a feeding and discharging structure, a dispersing structure, a drying structure, and a stirring structure. The dispersing structure prevents graphite particles from accumulating, the drying structure ensures uniform drying and discharges moisture through an exhaust pipe, and the stirring structure ensures uniformity.

Benefits of technology

It achieves uniform drying of graphite anode materials, prevents moisture from affecting the drying effect, and has a simple structure and is easy to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses graphite cathode material drying equipment which comprises a base. The fixing structure is mounted on the lower surface of the base, and the fixing structure is used for fixing; the supporting structure is mounted on the upper surface of the base, and the supporting structure is used for supporting; the bearing structure is installed on the upper surface of the supporting structure and used for supporting the upper surface of the supporting structure, the graphite cathode material drying device relates to the field of graphite cathode material production, the drying effect is prevented from being affected after water evaporation, and the graphite cathode material drying device is relatively simple in structure and convenient to use.
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Description

Technical Field

[0001] This utility model relates to the field of graphite anode material production, specifically to graphite anode material drying equipment. Background Technology

[0002] Graphite anode materials in batteries are generally fine powdery solids. They need to be kept dry in order to function properly. However, graphite is susceptible to moisture, so drying is an essential step.

[0003] In existing graphite anode material drying devices, graphite particles tend to clump together during drying, resulting in uneven drying. Furthermore, moisture evaporates into the air during the drying process, and the humid air cannot be effectively expelled, causing excessive moisture content in the air inside the drying device and affecting the drying effect. Therefore, it is essential to design a graphite anode material drying device to solve this problem. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a graphite anode material drying device, which solves the problems of graphite particles easily accumulating together and uneven drying when existing graphite anode material drying devices are used, and the moisture evaporating into the air during the drying process, which cannot be smoothly discharged, resulting in excessive moisture content in the air inside the drying device and affecting the drying effect.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a graphite anode material drying device, comprising:

[0006] Base;

[0007] A fixing structure is installed on the lower surface of the base and is used for fixing.

[0008] A support structure is mounted on the upper surface of the base and is used for support;

[0009] A load-bearing structure is mounted on the upper surface of a support structure, and the load-bearing structure is used to support the upper surface of the support structure;

[0010] An infeed / outfeed structure is mounted on a supporting structure and is used for feeding and discharging materials.

[0011] A dispersing structure is installed on a supporting structure and is used to disperse incoming materials.

[0012] A drying structure, which is mounted on a supporting structure and is used for drying;

[0013] A stirring structure is mounted on a supporting structure and is used for stirring.

[0014] Preferably, the fixing structure includes: four pairs of L-shaped fixing support plates;

[0015] The four pairs of L-shaped fixed support plates are installed on the lower end of the side surface of the base.

[0016] Preferably, the support structure includes: a support fixing frame;

[0017] The support frame is installed on the upper surface of the base.

[0018] Preferably, the load-bearing structure includes: a load-bearing housing and an exhaust pipe;

[0019] The bearing housing is mounted on the upper surface of the support frame, and the exhaust pipe is mounted on the upper surface of the bearing housing.

[0020] Preferably, the feeding and discharging structure includes: a feeding shell, a slow-fall plate, a cover, a discharging pipe, and an electrically controlled valve;

[0021] The upper surface of the bearing housing is provided with a first circular opening, the feeding housing is installed at the first circular opening, the slow-fall plate is installed inside the feeding housing, the cover is installed on the feeding housing, the lower end of the side surface of the bearing housing is provided with a second circular opening, the discharge pipe is installed at the second circular opening, and the electrically controlled valve is installed on the discharge pipe.

[0022] Preferably, the disintegration structure includes: a first fixed frame, a first rotary motor, a first connecting block, a first rotating rod, and a first rotating disk;

[0023] The first fixed frame is installed on the upper surface of the bearing housing, the first rotary motor is installed on the first fixed frame and the rotating end of the first rotary motor extends into the bearing housing, the first connecting block is installed on the rotating end of the first rotary motor, the first rotating rod is installed on the first connecting block, and the first rotating disk is installed on the first rotating rod.

[0024] Preferably, the drying structure includes: a pair of second fixed frames, a pair of baffle nets, a pair of dryers, and a temperature sensor;

[0025] The inner surface of the bearing housing is provided with a pair of strip grooves, each of the second fixing frames is installed at the corresponding strip groove, each of the barrier nets is installed on the corresponding second fixing frame, each of the dryers is installed on the corresponding second fixing frame, and the temperature sensor is installed inside the bearing housing.

[0026] Preferably, the stirring structure includes: a third fixed frame, a second rotary motor, a second connecting block, a stirring rod, and several stirring plates;

[0027] The third fixing frame is installed on the side surface of the bearing housing, the second rotary motor is installed on the third fixing frame and the rotating end of the second rotary motor extends into the bearing housing, the second connecting block is installed on the rotating end of the second rotary motor, the stirring rod is installed on the second connecting block, and a plurality of the stirring plates are installed on the stirring rod.

[0028] Preferably, the base is equipped with a controller and a mains power interface. Beneficial effects

[0029] This utility model provides a graphite anode material drying device. It has the following advantages: This graphite anode material drying device can better dry the graphite anode material, which is very convenient and reduces unnecessary trouble. The device prevents graphite particle accumulation through a slow-fall plate, a dispersing structure, and a stirring structure, resulting in more uniform drying. Gas is discharged through the exhaust pipe on the supporting shell, preventing moisture evaporation from affecting the drying effect. The structure is relatively simple and easy to use. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the structure of the graphite anode material drying equipment described in this utility model.

[0031] Figure 2 This is a front view structural diagram of the graphite anode material drying equipment described in this utility model.

[0032] Figure 3 This is a front view of the graphite anode material drying equipment described in this utility model.

[0033] Figure 4 This is a top view of the graphite anode material drying equipment described in this utility model.

[0034] Figure 5 This is a partial schematic diagram of the graphite anode material drying equipment described in this utility model.

[0035] In the picture:

[0036] Base 10, fixing structure 20, supporting structure 30, bearing structure 40, feeding and discharging structure 50, dispersing structure 60, drying structure 70, stirring structure 80, controller 90, mains power interface 100.

[0037] L-shaped fixed support plate 21;

[0038] Support bracket 31;

[0039] Support housing 41, exhaust pipe 42;

[0040] 51. Feed housing; 52. Flow plate; 53. Cover; 54. Discharge pipe; 55. Electrically controlled valve.

[0041] First fixed frame 61, first rotary motor 62, first connecting block 63, first rotating rod 64, first rotating disk 65;

[0042] Second fixed frame 71, barrier net 72, dryer 73, temperature sensor 74;

[0043] The components include a third fixed frame 81, a second rotary motor 82, a second connecting block 83, a stirring rod 84, and a stirring plate 85. Detailed Implementation

[0044] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0045] Please see Figure 1-5 This utility model provides a technical solution: a graphite negative electrode material drying device, comprising: a base 10, a fixing structure 20, the fixing structure 20 being installed on the lower surface of the base 10 and used for fixing, a supporting structure 30, the supporting structure 30 being installed on the upper surface of the base 10 and used for supporting, a bearing structure 40, the bearing structure 40 being installed on the upper surface of the supporting structure 30 and used for supporting the upper surface of the supporting structure 30, a feeding / discharging structure 50, the feeding / discharging structure 50 being installed on the bearing structure 40 and used for feeding and discharging materials, a dispersing structure 60, the dispersing structure 60 being installed on the bearing structure 40 and used for dispersing the incoming materials, a drying structure 70, the drying structure 70 being installed on the bearing structure 40 and used for drying, and a stirring structure 80, the stirring structure 80 being installed on the bearing structure 40 and used for stirring.

[0046] The fixing structure 20 includes four pairs of L-shaped fixing support plates 21, which are installed on the lower end of the side surface of the base 10.

[0047] The support structure 30 includes a support bracket 31, which is mounted on the upper surface of the base 10.

[0048] The load-bearing structure 40 includes a load-bearing housing 41 and an exhaust pipe 42. The load-bearing housing 41 is mounted on the upper surface of the support frame 31, and the exhaust pipe 42 is mounted on the upper surface of the load-bearing housing 41.

[0049] The feeding and discharging structure 50 includes: a feeding shell 51, a slow-fall plate 52, a cover 53, a discharge pipe 54, and an electrically controlled valve 55. The upper surface of the bearing shell 41 is provided with a first circular opening, the feeding shell 51 is installed at the first circular opening, the slow-fall plate 52 is installed inside the feeding shell 51, the cover 53 is installed on the feeding shell 51, the lower end of the side surface of the bearing shell 41 is provided with a second circular opening, the discharge pipe 54 is installed at the second circular opening, and the electrically controlled valve 55 is installed on the discharge pipe 54.

[0050] The disassembly structure 60 includes: a first fixed frame 61, a first rotary motor 62, a first connecting block 63, a first rotating rod 64, and a first rotating disk 65. The first fixed frame 61 is mounted on the upper surface of the bearing housing 41, the first rotary motor 62 is mounted on the first fixed frame 61, and the rotating end of the first rotary motor 62 extends into the bearing housing 41. The first connecting block 63 is mounted on the rotating end of the first rotary motor 62, the first rotating rod 64 is mounted on the first connecting block 63, and the first rotating disk 65 is mounted on the first rotating rod 64.

[0051] The drying structure 70 includes: a pair of second fixing frames 71, a pair of baffle nets 72, a pair of dryers 73, and a temperature sensor 74. The inner surface of the bearing housing 41 is provided with a pair of strip grooves. Each second fixing frame 71 is installed in the corresponding strip groove, each baffle net 72 is installed on the corresponding second fixing frame 71, each dryer 73 is installed on the corresponding second fixing frame 71, and the temperature sensor 74 is installed inside the bearing housing 41.

[0052] The stirring structure 80 includes: a third fixed frame 81, a second rotary motor 82, a second connecting block 83, a stirring rod 84, and a plurality of stirring plates 85. The third fixed frame 81 is installed on the side surface of the bearing housing 41. The second rotary motor 82 is installed on the third fixed frame 81, and the rotating end of the second rotary motor 82 extends into the bearing housing 41. The second connecting block 83 is installed on the rotating end of the second rotary motor 82. The stirring rod 84 is installed on the second connecting block 83, and the plurality of stirring plates 85 are installed on the stirring rod 84.

[0053] The base 10 is equipped with a controller 90 and a mains power interface 100.

[0054] Example: The fixing structure 20 on the lower surface of the base 10 is used for fixing, the support structure 30 on the upper surface of the base 10 is used for support, the bearing structure 40 on the upper surface of the support structure 30 is used for supporting the upper surface of the support structure 30, the feeding and discharging structure 50 on the bearing structure 40 is used for feeding and discharging materials, the dispersing structure 60 on the bearing structure 40 is used for dispersing the incoming materials, the drying structure 70 on the bearing structure 40 is used for drying, and the stirring structure 80 on the bearing structure 40 is used for stirring. First, move the drying equipment to a suitable position. The L-shaped fixed support plate 21 can effectively prevent the drying equipment from tipping over. Connect the power supply through the mains interface 100 on the base 10, turn on the controller 90 on the base 10, and fasten the buckle on the feeding housing 51. When the cover 53 is opened, the material is fed into the bearing housing 41 through the feeding housing 51. At the same time, the first rotary motor 62 on the first fixed frame 61, the dryer 73 on the second fixed frame 71, the temperature sensor 74, and the second rotary motor 82 on the third fixed frame 81 are started. The first rotary motor 62 on the first fixed frame 61 drives the first rotating disk 65 to rotate, thereby breaking up the material. The dryer 73 on the second fixed frame 71 dries the material, and the temperature sensor 74 is responsible for sensing the drying temperature. The second rotary motor 82 on the third fixed frame 81 drives the stirring plate 85 on the stirring rod 84 to stir the material for uniform drying. Then, the electrically controlled valve 55 on the discharge pipe 54 is opened to discharge the material, which is very convenient.

[0055] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, the phrase "comprising an element defined as..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0056] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A graphite anode material drying equipment, characterized in that, include: Base (10); A fixing structure (20) is installed on the lower surface of the base (10) and is used for fixing; A support structure (30) is mounted on the upper surface of the base (10) and is used for support; A load-bearing structure (40) is mounted on the upper surface of a support structure (30), and the load-bearing structure (40) is used to support the upper surface of the support structure (30); An infeed / outfeed structure (50) is mounted on a support structure (40) and is used for feeding and discharging materials. A dispersing structure (60) is mounted on a supporting structure (40) and is used to disperse incoming material; A drying structure (70) is mounted on a supporting structure (40) and is used for drying. A stirring structure (80) is mounted on a supporting structure (40) and is used for stirring.

2. The graphite anode material drying equipment according to claim 1, characterized in that, The fixing structure (20) includes: four pairs of L-shaped fixing support plates (21); The four pairs of L-shaped fixed support plates (21) are installed on the lower end of the side surface of the base (10).

3. The graphite anode material drying equipment according to claim 1, characterized in that, The support structure (30) includes: a support fixing frame (31); The support frame (31) is installed on the upper surface of the base (10).

4. The graphite anode material drying equipment according to claim 3, characterized in that, The load-bearing structure (40) includes: a load-bearing housing (41) and an exhaust pipe (42). The bearing housing (41) is installed on the upper surface of the support frame (31), and the exhaust pipe (42) is installed on the upper surface of the bearing housing (41).

5. The graphite anode material drying equipment according to claim 4, characterized in that, The feeding and discharging structure (50) includes: a feeding shell (51), a slow drop plate (52), a cover (53), a discharge pipe (54), and an electrically controlled valve (55); The upper surface of the bearing housing (41) is provided with a first circular opening, the feeding housing (51) is installed at the first circular opening, the slow drop plate (52) is installed inside the feeding housing (51), the cover (53) is installed on the feeding housing (51), the lower end of the side surface of the bearing housing (41) is provided with a second circular opening, the discharge pipe (54) is installed at the second circular opening, and the electrically controlled valve (55) is installed on the discharge pipe (54).

6. The graphite anode material drying equipment according to claim 4, characterized in that, The disintegration structure (60) includes: a first fixed frame (61), a first rotary motor (62), a first connecting block (63), a first rotating rod (64), and a first rotating disk (65); The first fixing frame (61) is installed on the upper surface of the bearing housing (41), the first rotary motor (62) is installed on the first fixing frame (61), and the rotating end of the first rotary motor (62) extends into the bearing housing (41), the first connecting block (63) is installed on the rotating end of the first rotary motor (62), the first rotating rod (64) is installed on the first connecting block (63), and the first rotating disk (65) is installed on the first rotating rod (64).

7. The graphite anode material drying equipment according to claim 4, characterized in that, The drying structure (70) includes: a pair of second fixed frames (71), a pair of baffle nets (72), a pair of dryers (73), and a temperature sensor (74). The inner surface of the bearing housing (41) is provided with a pair of strip grooves. Each second fixing frame (71) is installed at the corresponding strip groove. Each barrier net (72) is installed on the corresponding second fixing frame (71). Each dryer (73) is installed on the corresponding second fixing frame (71). The temperature sensor (74) is installed inside the bearing housing (41).

8. The graphite anode material drying equipment according to claim 4, characterized in that, The stirring structure (80) includes: a third fixed frame (81), a second rotary motor (82), a second connecting block (83), a stirring rod (84), and several stirring plates (85); The third fixing frame (81) is installed on the side surface of the bearing housing (41), the second rotary motor (82) is installed on the third fixing frame (81), and the rotating end of the second rotary motor (82) extends into the bearing housing (41), the second connecting block (83) is installed on the rotating end of the second rotary motor (82), the stirring rod (84) is installed on the second connecting block (83), and a plurality of stirring plates (85) are installed on the stirring rod (84).

9. The graphite anode material drying equipment according to claim 1, characterized in that, The base (10) is provided with a controller (90) and a mains power interface (100).