A high-efficiency drying and stirring device for lithium battery raw materials

Through the design of the linked drying mechanism and the deformable support mechanism, rapid and sufficient stirring and drying of lithium battery raw materials can be achieved, which solves the problem of poor stirring effect of traditional devices and improves processing efficiency.

CN119509151BActive Publication Date: 2025-10-28GUANGDONG YONGXIN NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411261800.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-10-28
Estimated Expiration
2044-09-10

AI Technical Summary

Technical Problem

Traditional lithium battery raw material drying and stirring devices have poor stirring effect, which affects subsequent processing.

Method used

The system employs a linkage drying mechanism and a deformable support mechanism. Through the cooperation of multiple structures, the raw materials can move laterally and vertically while rotating. Combined with an electrically heated mixing component and an exhaust mixing pipe, it achieves rapid and thorough mixing and drying.

Benefits of technology

The stirring and drying effects of lithium battery raw materials are improved, which is convenient for subsequent processing and has a simple structure and is easy to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a high-efficiency drying and stirring device for lithium battery raw materials, belonging to the field of lithium battery production and processing technology. It includes a first anti-tipping support base plate, above which a linkage drying mechanism is arranged. The upper surface of the first anti-tipping support base plate is provided with a deformable support mechanism for supplying air and adjusting the height of the linkage drying mechanism. The linkage drying mechanism includes a second anti-tipping support base plate, above which a hollow metal mounting cylinder is arranged. An inclined storage metal pipe is arranged inside the hollow metal mounting cylinder and is fixedly connected to the hollow metal mounting cylinder. Through the cooperation of multiple structures, the raw materials can move laterally and vertically while rotating, achieving sufficient changes in the position of the raw materials. Combined with the use of an electrically heated mixing component and an exhaust mixing pipe, rapid and thorough stirring and drying of the raw materials is achieved.
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Description

Technical Field

[0001] This invention belongs to the field of lithium battery production and processing technology, and specifically relates to a high-efficiency drying and stirring device for lithium battery raw materials. Background Art

[0002] Lithium batteries are a type of battery that uses lithium metal or lithium alloy as the positive / negative electrode material and a non-aqueous electrolyte solution. Due to the highly reactive chemical properties of lithium metal, the processing, storage, and use of lithium metal require very high environmental standards. With the development of science and technology, lithium batteries have become mainstream. In the production and processing of lithium batteries, drying and stirring equipment is required to process the raw materials.

[0003] Traditional drying and mixing devices include a feeding hopper, a drying and mixing box, a drying and mixing box shell, support legs, a fixing rod, a fixing block, a mixing box heating wire, mixing blades, a scraper, a mixing shaft, a first motor, a first discharge port, a discharge pipe, a drying and conveying box, and a conveying shaft. The advantage of this drying and mixing device is that it can dry and mix lithium battery raw materials.

[0004] However, traditional drying and mixing devices have relatively simple mixing structures, resulting in poor mixing effects on raw materials. This leads to unsatisfactory drying and mixing results, affecting users' subsequent processing of raw materials, and urgently requires improvement. Summary of the Invention

[0005] The purpose of this invention is to provide a high-efficiency drying and stirring device for lithium battery raw materials to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a high-efficiency drying and stirring device for lithium battery raw materials, comprising a first anti-tipping support base plate, a linkage drying mechanism disposed above the first anti-tipping support base plate, a deformable support mechanism disposed on the upper surface of the first anti-tipping support base plate for supplying air and adjusting the height of the linkage drying mechanism, the linkage drying mechanism comprising a second anti-tipping support base plate, a hollow metal mounting cylinder disposed above the second anti-tipping support base plate, an inclined storage metal pipe disposed inside the hollow metal mounting cylinder, the inclined storage metal pipe being fixedly connected to the hollow metal mounting cylinder, a pressure-relief seal disposed at one end of the inclined storage metal pipe, the pressure-relief seal being detachably connected to the hollow metal mounting cylinder, a hollow gas supply pipe disposed in the middle of the hollow metal mounting cylinder, the hollow gas supply pipe penetrating the hollow metal mounting cylinder, the hollow gas supply pipe being fixedly connected to the hollow metal mounting cylinder, and the hollow gas supply pipe... The device is equipped with several exhaust mixing pipes, which penetrate the side wall of the hollow gas conveying installation pipe and are fixedly connected to it. Hollow transmission metal cylinders, corresponding to the hollow gas conveying installation pipes, are located at both ends of the hollow metal installation cylinder and are fixedly connected to it. Anti-tipping support side plates, corresponding to the hollow transmission metal cylinders, are located at both ends of the second anti-tipping support base plate and are rotatably connected to the hollow transmission metal cylinders. The anti-tipping support side plates are fixedly connected to the second anti-tipping support base plate. A dual-shaft power output component is located on the upper surface of the second anti-tipping support base plate. A second transmission metal wheel is located at the output end of the dual-shaft power output component and is fixedly connected to it. A first transmission metal wheel is located at the end of the hollow transmission metal cylinder furthest from the hollow metal installation cylinder, and a rotatable transmission belt, corresponding to the first transmission metal wheel, is located on the second transmission metal wheel.

[0007] As a further aspect of the present invention: the first transmission metal wheel is fixedly connected to the hollow transmission metal cylinder, and the two ends of the second anti-tipping support base plate are provided with a plurality of arc-shaped anti-tilting support plates for limiting and supporting the hollow metal mounting cylinder. The arc-shaped anti-tilting support plates are fixedly connected to the second anti-tipping support base plate, and the arc-shaped anti-tilting support plates are rotatably connected to the output shaft of the dual-axis power output component.

[0008] As a further embodiment of the present invention: the arc-shaped anti-tilt support plate is provided with a plurality of limiting protective balls corresponding to the hollow metal mounting cylinder, and an anti-tilt metal box is provided on the side of the anti-tipping support side plate away from the hollow metal mounting cylinder. The anti-tilt metal box is fixedly connected to the anti-tilt support side plate and rotatably connected to the hollow transmission metal cylinder.

[0009] As a further embodiment of the present invention: the hollow transmission metal cylinder is provided with a number of air supply holes corresponding to the anti-tilt metal box, the anti-tilt metal box is provided with a number of dustproof electric heating elements, the dustproof electric heating elements are fixedly connected to the anti-tilt metal box, and a single-pass air supply hose is provided on one side of the anti-tilt support side plate for inflating the anti-tilt metal box.

[0010] As a further embodiment of the present invention: the single-pass gas delivery hose is installed through the bottom of the anti-tilt metal box, the single-pass gas delivery hose is fixedly connected to the anti-tilt metal box, and a number of electrically heated mixing components are provided on the inner wall of the inclined storage metal pipe, the electrically heated mixing components are fixedly connected to the inclined storage metal pipe.

[0011] As a further embodiment of the present invention: the anti-tipping support side plate is provided with a plurality of protective metal baffles for shielding the first transmission metal wheel, and the top of the protective metal baffles is fixedly connected to the anti-tipping support side plate.

[0012] As a further embodiment of the present invention: the protective metal baffle is provided with a number of detachable information display components for displaying information on its side, and the number of detachable information display components is provided at both ends of the protective metal baffle.

[0013] As a further embodiment of the present invention: the deformable support mechanism includes an anti-tipping support box, which is fixedly connected to a first anti-tipping support base plate. Several single-pass air pipes for air intake are provided at both ends of the anti-tipping support box. An adjustable sealing plug is provided at the top of the anti-tipping support box, and the adjustable sealing plug is slidably connected to the anti-tipping support box. Several metal transmission plates corresponding to the second anti-tipping support base plate are provided at both ends of the upper surface of the adjustable sealing plug. Several second attitude adjustment plates are provided on the lower surface of the adjustable sealing plug. Several first attitude adjustment plates are provided at the bottom of the anti-tipping support box to cooperate with the second attitude adjustment plates to drive the adjustable sealing plug to move away from the first anti-tipping support base plate.

[0014] As a further embodiment of the present invention: one end of the metal transmission plate is fixedly connected to the second anti-tipping support base plate, and the other end of the metal transmission plate is fixedly connected to the adjustable sealing plug. Several anti-collision metal blocks for protecting the second attitude adjustment plate are provided at both ends of the lower surface of the adjustable sealing plug. The anti-collision metal blocks are fixedly connected to the adjustable sealing plug.

[0015] As a further embodiment of the present invention: the two ends of the anti-tipping support box are provided with a plurality of retractable elastic driving members for driving the adjustable sealing plug to move toward the first anti-tipping support base plate. One end of the retractable elastic driving member is fixedly connected to the adjustable sealing plug, and the other end of the retractable elastic driving member is fixedly connected to the anti-tipping support box.

[0016] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a simple structure and is easy to use. During use, the material is moved laterally and vertically while rotating through the cooperation of multiple structures, so as to achieve full change of the material position. With the use of electric heating mixing component and exhaust mixing pipe, the material is quickly and fully stirred and dried, so that the drying and stirring device has a better processing effect on the material and is convenient for users to carry out subsequent processing of the material. It is worth promoting and using. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of a high-efficiency drying and stirring device for lithium battery raw materials.

[0018] Figure 2 This is a schematic diagram of the linkage drying mechanism in a high-efficiency drying and stirring device for lithium battery raw materials.

[0019] Figure 3 This is a schematic diagram of a deformable support mechanism in a high-efficiency drying and stirring device for lithium battery raw materials.

[0020] Figure 4 This is a schematic diagram of the adjustable sealing plug in a high-efficiency drying and stirring device for lithium battery raw materials.

[0021] In the diagram: 1-First anti-tipping support base plate, 2-Linked drying mechanism, 3-Deformable support mechanism, 20-Single-way air supply hose, 21-Second anti-tipping support base plate, 22-Dual-shaft power output component, 23-Limiting protective ball bearing, 24-Arc-shaped anti-tilt support plate, 25-Protective metal baffle, 26-Removable information display component, 27-First transmission metal wheel, 281-Hollow transmission metal cylinder, 282-Pressure-relief sealing plug, 283-Inclined storage metal pipe, 284-Electric heating mixing component, 285-Hollow 286-Exhaust mixing pipe, 287-Hollow gas supply installation pipe, 288-Anti-tipping support side plate, 289-Gas supply hole, 291-Anti-tilting metal box, 292-Dustproof electric heating element, 293-Second transmission metal wheel, 294-Rotizable transmission belt, 30-Extendable elastic drive element, 31-Anti-tipping support box, 32-First posture adjustment plate, 33-Metal transmission plate, 34-Anti-collision metal block, 35-Adjustable sealing plug, 36-Second posture adjustment plate, 37-Single-pass gas supply pipe. Detailed Implementation

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0023] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation", "connection", "linking", and "setting" should be interpreted broadly. For example, they can refer to fixed connection or setting, detachable connection or setting, or integral connection or setting.

[0024] Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0025] Please see Figure 1 This embodiment provides a high-efficiency drying and stirring device for lithium battery raw materials, including a first anti-tipping support base plate 1, a linkage drying mechanism 2 is provided above the first anti-tipping support base plate 1, and a deformable support mechanism 3 is provided on the upper surface of the first anti-tipping support base plate 1 for supplying air and adjusting the height of the linkage drying mechanism 2.

[0026] Please see Figure 1 and Figure 2In one embodiment, to make the use of the linkage drying mechanism 2 more reliable, preferably, the linkage drying mechanism 2 includes a second anti-tipping support base plate 21. A hollow metal mounting cylinder 285 is provided above the second anti-tipping support base plate 21. An inclined storage metal pipe 283 is provided inside the hollow metal mounting cylinder 285. The inclined storage metal pipe 283 is fixedly connected to the hollow metal mounting cylinder 285. One end of the inclined storage metal pipe 283 is provided with a pressure-relief sealing plug 282, which is detachably connected to the hollow metal mounting cylinder 285. During use, the pressure-relief sealing plug 282 plays a role in sealing and relieving pressure. A hollow gas transmission installation pipe 287 is provided in the middle of the hollow metal mounting cylinder 285, and the hollow gas transmission installation pipe 287 passes through the hollow metal mounting cylinder 285. Hollow gas supply pipe 287 is fixedly connected to hollow metal installation cylinder 285. Several exhaust mixing pipes 286 are provided on hollow gas supply pipe 287. The exhaust mixing pipes 286 penetrate the side wall of hollow gas supply pipe 287 and are fixedly connected to hollow gas supply pipe 287. Hollow transmission metal cylinders 281 corresponding to hollow gas supply pipe 287 are provided at both ends of hollow metal installation cylinder 285. Hollow transmission metal cylinders 281 are fixedly connected to hollow metal installation cylinder 285. Anti-tipping support side plates 288 corresponding to hollow transmission metal cylinders 281 are provided at both ends of the second anti-tipping support base plate 21. Anti-tipping support side plates 288 are rotatably connected to hollow transmission metal cylinders 281 and are fixedly connected to the second anti-tipping support base plate 21.

[0027] Please see Figure 2In one embodiment, to enrich the functions of the linkage drying mechanism 2, preferably, the upper surface of the second anti-tipping support base plate 21 is provided with a dual-axis power output component 22, which is a dual-axis motor. The output end of the dual-axis power output component 22 is provided with a second transmission metal wheel 293, which is fixedly connected to the dual-axis power output component 22. A first transmission metal wheel 27 is provided at the end of the hollow transmission metal cylinder 281 away from the hollow metal mounting cylinder 285. A rotatable transmission belt 294 corresponding to the first transmission metal wheel 27 is provided on the second transmission metal wheel 293. The first transmission metal wheel 27 is fixedly connected to the hollow transmission metal cylinder 281. Both ends of the anti-tipping support base plate 21 are provided with several arc-shaped anti-tilt support plates 24 for limiting and supporting the hollow metal mounting cylinder 285. The arc-shaped anti-tilt support plates 24 are fixedly connected to the second anti-tipping support base plate 21 and are rotatably connected to the output shaft of the dual-shaft power output component 22. Several limiting and protective balls 23 corresponding to the hollow metal mounting cylinder 285 are provided on the arc-shaped anti-tilt support plates 24. An anti-tilt metal box 291 is provided on the side of the anti-tipping support side plate 288 away from the hollow metal mounting cylinder 285. The anti-tilt metal box 291 is fixedly connected to the anti-tipping support side plate 288 and is rotatably connected to the hollow transmission metal cylinder 281.

[0028] Please see Figure 2 In one embodiment, to enrich the functions of the linkage drying mechanism 2, preferably, the hollow transmission metal cylinder 281 is provided with a plurality of air supply holes 289 corresponding to the anti-tilt metal box 291. The interior of the anti-tilt metal box 291 is provided with a plurality of dustproof electric heating elements 292, which are electric heating meshes. The dustproof electric heating elements 292 are fixedly connected to the anti-tilt metal box 291. One side of the anti-tilt support side plate 288 is provided with a single-pass air supply hose 20 for inflating the anti-tilt metal box 291. The single-pass air supply hose 20 passes through the bottom of the anti-tilt metal box 291 and is fixedly connected to the anti-tilt metal box 291. The inner wall of the inclined storage metal pipe 283 is provided with a plurality of electric heating mixing elements 284, which are electric heating rods. The electric heating mixing elements 284 are fixedly connected to the inclined storage metal pipe 283.

[0029] Please see Figure 2In one embodiment, to enrich the functions of the linkage drying mechanism 2, preferably, the anti-tipping support side plate 288 is provided with a plurality of protective metal baffles 25 for shielding the first transmission metal wheel 27. The top of the protective metal baffles 25 is fixedly connected to the anti-tipping support side plate 288, and the side of the protective metal baffles 25 is provided with a plurality of detachable information display components 26 for information display. The detachable information display components 26 are LED light panels, and the plurality of detachable information display components 26 are provided at both ends of the protective metal baffles 25.

[0030] In another embodiment, the linkage drying mechanism 2 includes a second anti-tipping support base plate 21. A hollow metal mounting cylinder 285 is disposed above the second anti-tipping support base plate 21. An inclined storage metal pipe 283 is disposed inside the hollow metal mounting cylinder 285. The inclined storage metal pipe 283 is fixedly connected to the hollow metal mounting cylinder 285. A pressure-relief sealing plug 282 is disposed at one end of the inclined storage metal pipe 283. The pressure-relief sealing plug 282 is detachably connected to the hollow metal mounting cylinder 285. A hollow gas supply mounting pipe 287 is disposed in the middle of the hollow metal mounting cylinder 285. The hollow gas supply mounting pipe 287 passes through the hollow metal mounting cylinder 285 and is fixedly connected to the hollow metal mounting cylinder 285. The hollow gas transmission installation pipe 287 is provided with several exhaust mixing pipes 286. The exhaust mixing pipes 286 are arranged through the side wall of the hollow gas transmission installation pipe 287 and are fixedly connected to the hollow gas transmission installation pipe 287. The hollow metal installation cylinder 285 is provided with hollow transmission metal cylinders 281 corresponding to the hollow gas transmission installation pipe 287 at both ends. The hollow transmission metal cylinders 281 are fixedly connected to the hollow metal installation cylinder 285. The second anti-tipping support base plate 21 is provided with anti-tipping support side plates 288 corresponding to the hollow transmission metal cylinders 281 at both ends. The anti-tipping support side plates 288 are rotatably connected to the hollow transmission metal cylinders 281 and are fixedly connected to the second anti-tipping support base plate 21.

[0031] In another embodiment, to enrich the functions of the linkage drying mechanism 2, preferably, the upper surface of the second anti-tipping support base plate 21 is provided with a dual-axis power output component 22, which is a dual-axis pneumatic motor. The output end of the dual-axis power output component 22 is provided with a second transmission metal wheel 293, which is fixedly connected to the dual-axis power output component 22. A first transmission metal wheel 27 is provided at the end of the hollow transmission metal cylinder 281 away from the hollow metal mounting cylinder 285. A rotatable transmission belt 294 corresponding to the first transmission metal wheel 27 is provided on the second transmission metal wheel 293. The first transmission metal wheel 27 is fixedly connected to the hollow transmission metal cylinder 281. Both ends of the second anti-tipping support base plate 21 are provided with several arc-shaped anti-tilt support plates 24 for limiting and supporting the hollow metal mounting cylinder 285. The arc-shaped anti-tilt support plates 24 are fixedly connected to the second anti-tipping support base plate 21 and are rotatably connected to the output shaft of the dual-shaft power output component 22. Several limiting and protective balls 23 corresponding to the hollow metal mounting cylinder 285 are provided on the arc-shaped anti-tilt support plates 24. An anti-tilt metal box 291 is provided on the side of the anti-tipping support side plate 288 away from the hollow metal mounting cylinder 285. The anti-tilt metal box 291 is fixedly connected to the anti-tipping support side plate 288 and is rotatably connected to the hollow transmission metal cylinder 281.

[0032] In another embodiment, to enrich the functions of the linkage drying mechanism 2, preferably, the hollow transmission metal cylinder 281 is provided with several air supply holes 289 corresponding to the anti-tilt metal box 291. The anti-tilt metal box 291 is provided with several dustproof electric heating elements 292, which are electric heating plates. The dustproof electric heating elements 292 are fixedly connected to the anti-tilt metal box 291. One side of the anti-tilt support side plate 288 is provided with a single-pass air supply hose 20 for inflating the anti-tilt metal box 291. The single-pass air supply hose 20 passes through the bottom of the anti-tilt metal box 291 and is fixedly connected to the anti-tilt metal box 291. The inner wall of the inclined storage metal pipe 283 is provided with several electric heating mixing elements 284, which are electric heating plates. The electric heating mixing elements 284 are fixedly connected to the inclined storage metal pipe 283.

[0033] In another embodiment, to enrich the functions of the linkage drying mechanism 2, preferably, the anti-tipping support side plate 288 is provided with a plurality of protective metal baffles 25 for shielding the first transmission metal wheel 27. The top of the protective metal baffles 25 is fixedly connected to the anti-tipping support side plate 288, and the side of the protective metal baffles 25 is provided with a plurality of detachable information display components 26 for displaying information. The detachable information display components 26 are handwritten fluorescent boards, and the plurality of detachable information display components 26 are provided at both ends of the protective metal baffles 25.

[0034] Please see Figure 1 , Figure 3 and Figure 4 In one embodiment, to make the deformable support mechanism 3 more reliable, preferably, the deformable support mechanism 3 includes an anti-tipping support box 31, which is fixedly connected to the first anti-tipping support base plate 1. Both ends of the anti-tipping support box 31 are provided with several single-pass air pipes 37 for air intake, and single-pass air hoses 20 for venting the anti-tipping support box 31. The single-pass air hoses 20 penetrate the side wall of the anti-tipping support box 31 and are fixedly connected to it. The top of the anti-tipping support box 31 is provided with an adjustable... The adjustable sealing plug 35 is slidably connected to the anti-tipping support box 31. Several metal transmission plates 33 corresponding to the second anti-tipping support base plate 21 are provided at both ends of the upper surface of the adjustable sealing plug 35. Several second attitude adjustment plates 36 are provided on the lower surface of the adjustable sealing plug 35. The second attitude adjustment plates 36 are neodymium iron boron magnetic plates. Several first attitude adjustment plates 32 are provided at the bottom of the anti-tipping support box 31 to cooperate with the second attitude adjustment plates 36 to drive the adjustable sealing plug 35 to move away from the first anti-tipping support base plate 1. The first attitude adjustment plates 32 are electromagnetic plates.

[0035] Please see Figure 3 and Figure 4In one embodiment, to enrich the functionality of the deformable support mechanism 3, preferably, one end of the metal transmission plate 33 is fixedly connected to the second anti-tipping support base plate 21, and the other end of the metal transmission plate 33 is fixedly connected to the adjustable sealing plug 35. The lower surface of the adjustable sealing plug 35 has several anti-collision metal blocks 34 at both ends to protect the second posture adjustment plate 36. The anti-collision metal blocks 34 are stainless steel blocks and are fixedly connected to the adjustable sealing plug 35. The anti-tipping support box 31 has several retractable elastic driving members 30 at both ends to drive the adjustable sealing plug 35 towards the first anti-tipping support base plate 1. The retractable elastic driving members 30 are springs. One end of the retractable elastic driving member 30 is fixedly connected to the adjustable sealing plug 35, and the other end is fixedly connected to the anti-tipping support box 31. The retractable elastic driving members 30 are used to drive the adjustable sealing plug 35 and prevent the adjustable sealing plug 35 from accidentally falling off.

[0036] In another embodiment, the deformable support mechanism 3 includes an anti-tipping support box 31, which is fixedly connected to the first anti-tipping support base plate 1. Several single-pass air pipes 37 for air intake are provided at both ends of the anti-tipping support box 31. Single-pass air hoses 20 are used to vent air from the anti-tipping support box 31. The single-pass air hoses 20 penetrate the side wall of the anti-tipping support box 31 and are fixedly connected to it. An adjustable sealing plug 35 is provided on the top of the anti-tipping support box 31. The adjustable sealing plug 35 is slidably connected to the anti-tipping support box 31. Several metal transmission plates 33 corresponding to the second anti-tipping support base plate 21 are provided at both ends of the upper surface of the adjustable sealing plug 35. Several second attitude adjustment plates 36 are provided on the lower surface of the adjustable sealing plug 35. The second attitude adjustment plates 36 are electromagnetic plates. Several first attitude adjustment plates 32 are provided at the bottom of the anti-tipping support box 31 to cooperate with the second attitude adjustment plates 36 to drive the adjustable sealing plug 35 to move away from the first anti-tipping support base plate 1. The first attitude adjustment plates 32 are neodymium iron boron magnetic plates.

[0037] Please see Figure 3 and Figure 4In one embodiment, to enrich the functionality of the deformable support mechanism 3, preferably, one end of the metal transmission plate 33 is fixedly connected to the second anti-tipping support base plate 21, and the other end of the metal transmission plate 33 is fixedly connected to the adjustable sealing plug 35. The lower surface of the adjustable sealing plug 35 has several anti-collision metal blocks 34 at both ends to protect the second attitude adjustment plate 36. The anti-collision metal blocks 34 are iron blocks and are fixedly connected to the adjustable sealing plug 35. The anti-tipping support box 31 has several retractable elastic driving members 30 at both ends to drive the adjustable sealing plug 35 towards the first anti-tipping support base plate 1. The retractable elastic driving members 30 are metal springs. One end of the retractable elastic driving member 30 is fixedly connected to the adjustable sealing plug 35, and the other end is fixedly connected to the anti-tipping support box 31. The retractable elastic driving members 30 are used to drive the adjustable sealing plug 35 and prevent the adjustable sealing plug 35 from accidentally falling off.

[0038] The working principle and usage process of this invention are as follows: When using, remove the pressure relief seal 282, then pour an appropriate amount of the lithium battery raw material (hereinafter referred to as material) to be processed into the interior of the inclined storage metal tube 283, then install the pressure relief seal 282, and then connect the power supply to the electric heating mixing component 284 and the dustproof electric heating component 292. At this time, the electric heating mixing component 284 is powered on and heats up, thereby heating the material through the electric heating mixing component 284.

[0039] Then, the hollow transmission metal cylinder 281 is driven to rotate by the dual-shaft power output component 22. At this time, the inclined storage metal tube 283 rotates. Through the rotation of the inclined storage metal tube 283, the material inside moves laterally back and forth, so that the material moves laterally back and forth while rotating, and the material continuously changes position, thereby improving the contact effect between the material and the electric heating mixing component 284.

[0040] Secondly, the first attitude adjustment plate 32 and the second attitude adjustment plate 36 are controlled to intermittently repel each other. At this time, the adjustable sealing plug 35 moves vertically back and forth, thereby causing the inclined storage metal tube 283 to move vertically back and forth. This allows the material to move vertically back and forth while rotating and moving horizontally back and forth, thereby further improving the material's position change effect.

[0041] Furthermore, when the adjustable sealing plug 35 moves upward, external air enters the interior of the anti-tipping support box 31 through the single-pass air supply pipe 37. When the adjustable sealing plug 35 moves downward, the air inside the anti-tipping support box 31 is transported to the interior of the anti-tilt metal box 291 through the single-pass air supply hose 20. At this time, the air inside the anti-tilt metal box 291 is heated by the dustproof electric heating element 292. The heated air passes through the air supply hole 289 and enters the interior of the hollow transmission metal cylinder 281. Then, the air inside the hollow transmission metal cylinder 281 is transported by the hollow air supply installation pipe 287 and sprayed to the outside through the exhaust mixing pipe 286. The high-temperature air sprayed further heats the material and further changes the position of the material, improving the mixing and drying effect of the device on the material. Moreover, the intermittent inflation of the single-pass air supply hose 20 allows the air to stay briefly inside the anti-tilt metal box 291, significantly improving the heating effect of the dustproof electric heating element 292 on the air.

[0042] Thus, through the cooperation of multiple structures, the raw material can move laterally and vertically while rotating, achieving a full change in the position of the raw material. Combined with the heating and stirring effects of the electric heating mixing component 284 and the exhaust mixing pipe 286, the raw material can be quickly and fully stirred and dried, making the drying and stirring device have a better processing effect on the raw material and facilitating subsequent processing by the user. Furthermore, the invention has a simple structure and is easy to use, making it worthy of promotion and application.

[0043] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0044] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A high-efficiency drying and stirring device for lithium battery raw materials, comprising a first anti-tipping support base plate, characterized in that: A linkage drying mechanism is provided above the first anti-tipping support base plate. A deformable support mechanism for supplying air and adjusting the height of the linkage drying mechanism is provided on the upper surface of the first anti-tipping support base plate. The linkage drying mechanism includes a second anti-tipping support base plate. A hollow metal mounting cylinder is provided above the second anti-tipping support base plate. An inclined storage metal pipe is provided inside the hollow metal mounting cylinder, and the inclined storage metal pipe is fixedly connected to the hollow metal mounting cylinder. A pressure-relief seal is provided at one end of the inclined storage metal pipe, and the pressure-relief seal is detachably connected to the hollow metal mounting cylinder. A hollow gas supply pipe is provided in the middle of the hollow metal mounting cylinder, penetrating the hollow metal mounting cylinder. A metal mounting cylinder is fixedly connected to a hollow gas transmission installation pipe, which is equipped with several exhaust mixing pipes. These exhaust mixing pipes penetrate the side wall of the hollow gas transmission installation pipe and are fixedly connected to it. Hollow transmission metal cylinders, corresponding to the hollow gas transmission installation pipe, are located at both ends of the hollow metal mounting cylinder and are fixedly connected to it. Anti-tipping support side plates, corresponding to the hollow transmission metal cylinders, are located at both ends of the second anti-tipping support base plate and are rotatably connected to the hollow transmission metal cylinders. The anti-tipping support side plates are fixedly connected to the second anti-tipping support base plate. A dual-shaft power output component is located on the upper surface of the second anti-tipping support base plate, and a second transmission metal... The first transmission metal wheel is fixedly connected to the second transmission metal wheel and the dual-shaft power output component. A first transmission metal wheel is located at the end of the hollow transmission metal cylinder away from the hollow metal mounting cylinder. A rotatable transmission belt corresponding to the first transmission metal wheel is located on the second transmission metal wheel. An anti-tilting metal box is located on the side of the anti-tipping support side plate away from the hollow metal mounting cylinder. The anti-tilting metal box is fixedly connected to the anti-tipping support side plate and rotatably connected to the hollow transmission metal cylinder. Several air inlets corresponding to the anti-tilting metal box are opened on the hollow transmission metal cylinder. Several dustproof electric heating elements are installed inside the anti-tilting metal box, and these elements are fixedly connected to the anti-tilting metal box. One side of the anti-tipping support side plate is provided with a device for controlling the anti-tilting metal... The box has a single-way air supply hose for inflation, which penetrates the bottom of the anti-tilt metal box and is fixedly connected to it. Several electrically heated mixing components are installed on the inner wall of the inclined storage metal pipe, and these components are fixedly connected to the pipe. The deformable support mechanism includes an anti-tipping support box, which is fixedly connected to a first anti-tipping support base plate. The single-way air supply hose penetrates the side wall of the anti-tipping support box for venting air. Several single-way air supply pipes for air intake are installed at both ends of the anti-tipping support box. An adjustable sealing plug is installed on the top of the box, and it is slidably connected to the box.The adjustable sealing plug has several metal transmission plates at both ends of its upper surface, corresponding to the second anti-tipping support base plate. The lower surface of the adjustable sealing plug has several second attitude adjustment plates. The bottom of the anti-tipping support box has several first attitude adjustment plates for cooperating with the second attitude adjustment plates to drive the adjustable sealing plug to move away from the first anti-tipping support base plate. The second attitude adjustment plates are neodymium iron boron magnetic plates and the first attitude adjustment plates are electromagnetic plates, or the second attitude adjustment plates are electromagnetic plates and the first attitude adjustment plates are neodymium iron boron magnetic plates. One end of each metal transmission plate is connected to the second anti-tipping support base plate. The anti-tipping support base plate is fixedly connected, and the other end of the metal transmission plate is fixedly connected to the adjustable sealing plug. Several anti-collision metal blocks are provided at both ends of the lower surface of the adjustable sealing plug to protect the second attitude adjustment plate. The anti-collision metal blocks are fixedly connected to the adjustable sealing plug. Several retractable elastic driving components are provided at both ends of the anti-tipping support box to drive the adjustable sealing plug towards the first anti-tipping support base plate. One end of each retractable elastic driving component is fixedly connected to the adjustable sealing plug, and the other end is fixedly connected to the anti-tipping support box.

2. The high-efficiency drying and stirring device for lithium battery raw materials according to claim 1, characterized in that: The first transmission metal wheel is fixedly connected to the hollow transmission metal cylinder. The two ends of the second anti-tipping support base plate are provided with a number of arc-shaped anti-tilt support plates for limiting and supporting the hollow metal mounting cylinder. The arc-shaped anti-tilt support plates are fixedly connected to the second anti-tipping support base plate and are rotatably connected to the output shaft of the dual-axis power output component. The arc-shaped anti-tilt support plates are provided with a number of limiting and protective balls corresponding to the hollow metal mounting cylinder.

3. The high-efficiency drying and stirring device for lithium battery raw materials according to claim 2, characterized in that: The anti-tipping support side plate is provided with several protective metal baffles for shielding the first transmission metal wheel, and the top of the protective metal baffles is fixedly connected to the anti-tipping support side plate.

4. The high-efficiency drying and stirring device for lithium battery raw materials according to claim 3, characterized in that: The protective metal baffle has several detachable information display components on its sides for displaying information, and these detachable information display components are located at both ends of the protective metal baffle.

Citation Information

Patent Citations

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