New energy lithium battery processing and conveying device
By designing the new energy lithium battery processing and conveying device of the S-shaped slide, cleaning and heat dissipation during the conveying process are achieved, the problem of single functions of the existing device is solved, and production efficiency and product quality are improved.
Patent Information
- Application Number
- CN202510590598.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-08-19
AI Technical Summary
The existing new energy lithium battery processing and conveying device has a single function and fails to effectively process the lithium battery raw materials during the transportation process, affecting production efficiency and product quality.
An S-shaped slide including alternating DC channel and bent channel is designed, and a transmission device, a cleaning device and a air supply device are provided. The linkage of multiple devices is achieved through the transmission shaft and the transmission belt, and cleaning and heat dissipation treatment are carried out.
Without increasing the equipment footprint, extend the conveying path, improve the cleanliness and working state of the lithium battery, reduce the investment in equipment resources, avoid overheating and damage to the lithium battery, and improve the conveying efficiency and cleaning convenience.
Smart Images

Figure CN120504085A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of new energy manufacturing equipment, and in particular to a new energy lithium battery processing and conveying device. Background Art
[0002] With the rise of new energy vehicles and related new energy equipment, the demand for new energy lithium batteries has also expanded. In order to meet the demand for new energy lithium batteries from new energy equipment, the production of new energy lithium batteries has gradually become intelligent and automated to provide lithium battery production needs for new energy equipment more quickly. Among them, the conveying device is one of the indispensable transfer devices in the new energy battery processing procedure, which improves the conveying capacity of product raw materials, thereby saving a lot of manpower and material resources.
[0003] Conveying devices in the prior art are mostly conventional linear conveying devices that do not process the conveyed materials during the conveying process and are directly put into production. For example, Chinese Patent Application No. CN202311731532.8 discloses a conveying device. The conveying device includes a frame, a driving roller, a driven roller, a conveyor belt, a drive mechanism, and a plurality of limiters. The frame extends along a first direction, the driving roller is rotatably disposed at one end of the frame along the first direction, and the driven roller is rotatably disposed at the other end of the frame along the first direction. The conveyor belt extends along the first direction and is used to convey products. One end of the conveyor belt is wound around the driving roller, and the other end of the conveyor belt is wound around the driven roller. The drive mechanism is used to drive the driving roller to rotate. Multiple limiters are spaced apart on the conveyor belt, and the limiters can abut against the products to position the products between any two adjacent limiters. During operation, the multiple rollers are provided to improve the product conveying capacity, but no processing of the product materials is performed during the production process, and the function is relatively simple. Summary of the Invention
[0004] In order to solve the above problems, the present invention provides a new energy lithium battery processing and conveying device to solve the technical problems raised in the above background technology.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] A new energy lithium battery processing and conveying device includes a support frame and a slide mounted on the upper end of the support frame, the slide includes multiple direct current channels and bending channels, and the multiple direct current channels and bending channels are alternately and connected end to end to form a continuous S-shaped slide, and transmission devices are symmetrically arranged on the inner and outer bends of each bending channel, and the multiple transmission devices are connected through transmission between the bottoms. A cleaning device is also provided in the middle of the upper end surface of the bending channel, and the cleaning device on each bending channel is transmission-connected to the transmission device on the corresponding bending channel. An air supply device is provided between every two adjacent direct current channels, and each air supply device is correspondingly transmission-connected to a transmission device.
[0007] Furthermore, the bending track is an arc-shaped cavity structure with openings at both ends and a hollow interior. An inner bend bin and an outer bend bin protrude from the middle of the inner bend and outer bend of the bending track respectively. The inner bend bin and the outer bend bin are both arc-shaped cavity structures conductively connected to the bending track cavity, and a transmission device is installed in the inner bend bin and the outer bend bin.
[0008] Furthermore, the transmission device includes a transmission shaft 1 and a transmission shaft 2 vertically arranged in the inner bending bin and the outer bending bin of the bending track. The transmission shaft 1 and the transmission shaft 2 are both sleeved with a transmission brush cylinder. The upper and lower ends of the transmission shaft 1 and the transmission shaft 2 extend out of the outside of the bin body, and a direct current channel is connected between every two adjacent bending tracks.
[0009] Furthermore, multiple bending tracks are continuously alternated and arranged relative to each other, and a transmission belt 1 is provided between a lower end of the transmission shaft in the inner bending bin of one of the bending tracks and a lower end of the second transmission shaft in the outer bending bin of another adjacent bending track, and a transmission belt 2 is provided between a lower end of the second transmission shaft in the outer bending bin of the same bending track and a lower end of the transmission shaft in the inner bending bin of another adjacent bending track, and the lower ends of the transmission shaft 1 in the inner bending bin and the transmission shaft 2 in the outer bending bin of one of the bending tracks are coaxially connected to a drive motor 1 and a drive motor 2 respectively.
[0010] Furthermore, a cleaning device is provided in the middle of the upper end surface of the bending track, and the cleaning device includes a brush plate placed on the top of the bending track bin body, and the middle of the upper end of the brush plate has a transmission shaft three movably embedded in the middle of the upper end surface of the bending track bin body, and a transmission belt three is provided between the upper end of the transmission shaft three and the upper end of the transmission shaft two in the outer bending bin cavity of the same bending track.
[0011] Furthermore, an air supply device is provided between each two adjacent sides of the direct current channel, and the air supply device includes a ventilation bin, which is arranged between the two adjacent sides of the direct current channel and on the inner side of the bending bin cavity of the bending channel. A supply fan is vertically arranged inside the ventilation bin body, and a transmission shaft four protrudes from the upper end of the supply fan and extends to the outside of the ventilation bin body. A transmission belt four is sleeved between the upper end of the transmission shaft four and the upper end of the transmission shaft one in the bending bin of the adjacent bending channel.
[0012] Furthermore, a plurality of ventilation holes are provided on both side panels of the direct current channel, and the ventilation holes are conductively connected to the ventilation chamber cavity.
[0013] Furthermore, two mounting grooves are horizontally provided on the bottom plate of the DC channel cavity, and the two mounting grooves are respectively provided with a transmission shaft 5 and a transmission shaft 6 that are continuously connected between multiple DC channels. The transmission shaft 5 in one DC channel mounting groove is provided with a rubber tube sleeve, and the transmission shaft 6 in another DC channel mounting groove adjacent to the DC warehouse is provided with a rubber tube sleeve. The transmission shafts 5 and 5 in every two adjacent DC channel mounting grooves are alternately provided with rubber tube sleeves, and the rubber tube sleeves protrude from the notch plane at the upper end of the mounting groove. The transmission shaft 5 between two adjacent DC channels is provided with a transmission screw 1, and the transmission shaft 6 between another adjacent DC channel is provided with a transmission screw 2. The transmission shaft 5 is connected to the corresponding supply fan at the upper end through the transmission screw 1, and the transmission shaft 6 is connected to the corresponding supply fan at the upper end through the transmission screw 2.
[0014] Furthermore, a helical gear is protruding from the lower end of the supply fan. The helical gear at the lower end of one supply fan is in transmission meshing connection with the transmission screw 1 on the transmission shaft 5, and the helical gear at the lower end of the other supply fan is in transmission meshing connection with the transmission screw 2 on the corresponding transmission shaft 6 at the lower end.
[0015] Furthermore, the transmission screw 1 is a forward spiral structure, the transmission screw 2 is a reverse spiral structure, and the transmission screw 1 and the transmission screw 2 are arranged in opposite rotation directions.
[0016] The present invention has the following beneficial effects:
[0017] (1) The present invention extends the conveying path without expanding the equipment footprint by setting up a plurality of alternately connected bending lanes and straight lanes, thereby cleaning the surface of the lithium battery raw materials and cooling the equipment through the cleaning device and ventilation device set on the bending lane, making them neater and maintaining a normal temperature before entering the next stage of processing, thereby ensuring the cleanliness and optimal working state of the new energy lithium battery.
[0018] (2) The present invention provides a transmission device and a transmission brush drum on the transmission shaft 1 and the transmission shaft 2. When the transmission brush drum rotates, the transmission efficiency of the lithium battery in the transmission process is improved and the surface of the lithium battery is cleaned, thereby reducing the cleaning work of the staff before and after processing.
[0019] (3) The present invention provides a ventilation device, and accelerates the flow of air between the ventilation holes by rotating the air blower, thereby avoiding damage to the battery cells caused by overheating of the lithium battery device after production is completed.
[0020] (4) The present invention connects multiple transmission devices through transmission belt 1 and transmission belt 2, and drives the cleaning device and ventilation device to work simultaneously through transmission shaft 1 and transmission shaft 2, thereby reducing the investment in equipment resources and enhancing linkage. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 Schematic diagram of the overall structure of an embodiment of the present invention;
[0022] Figure 2 Schematic diagram of a top view of the structure of an embodiment of the present invention;
[0023] Figure 3 Schematic diagram of the bottom structure of an embodiment of the present invention;
[0024] Figure 4 for Figure 3 Schematic diagram of the local structure of A;
[0025] Figure 5 Schematic diagram of the internal structure of a slideway according to an embodiment of the present invention.
[0026] Note in the figure:
[0027] 1. Support frame; 2. DC channel; 201. Ventilation hole; 202. Mounting slot; 3. Bending channel; 301. Inner bending bin; 302. Outer bending bin; 4. Drive shaft one; 401. Drive shaft two; 402. Drive brush cylinder; 5. Drive shaft three; 501. Brush plate; 502. Drive belt three; 6. Ventilation bin; 601. Drive shaft four; 602. Supply fan; 603. Drive belt four; 604. Bevel gear; 7. Drive motor one; 701. Drive motor two; 702. Drive belt one; 703. Drive belt two; 8. Drive shaft five; 801. Drive shaft six; 802. Drive screw one; 803. Drive screw two; 804. Rubber tube sleeve. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present invention will be described clearly and completely below. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0029] To make the above-mentioned objects, features, and advantages of the present invention more readily apparent, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings. The following description sets forth numerous specific details to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways than those described herein, and those skilled in the art may make similar modifications without departing from the scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0030] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.
[0031] Example 1:
[0032] Combine Figure 1 The present invention discloses a new energy lithium battery processing and conveying device, comprising a support frame 1 and a slideway mounted on the upper end of the support frame 1, wherein the slideway comprises a plurality of direct current channels 2 and bending channels 3, wherein the plurality of direct current channels 2 and bending channels 3 are alternately and sequentially connected end to end to form a continuous S-shaped slideway, and a transmission device is symmetrically arranged on the inner bend and the outer bend of each bending channel 3, and the plurality of transmission devices are connected by transmission between the bottoms, and a cleaning device is further arranged in the middle of the upper end surface of the bending channel 3, and the cleaning device on each bending channel 3 is transmission-connected to the transmission device on the corresponding bending channel 3, and an air supply device is arranged between every two adjacent direct current channels 2, and each air supply device is correspondingly transmission-connected to a transmission device.
[0033] As a technical solution of this embodiment, further, combined with Figure 2The bending channel 3 is an arc-shaped cavity structure with openings at both ends and a hollow interior. The arc structure cooperates with the rectangular structure of the direct current channel 2 and is continuously connected to form an S-shaped slideway as the overall structure of the slideway. Without increasing its floor space, the flow length of the lithium battery raw materials is extended, thereby making it easier to add a structure that can clean and dissipate heat for them. The extended path can also provide more time for heat dissipation. The inner and outer bends of the bending channel 3 are respectively protruded with an inner bend bin 301 and an outer bend bin 302 in the middle. The inner bend bin 301 and the outer bend bin 302 are arranged correspondingly. The inner bend bin 301 and the outer bend bin 302 are both arc-shaped cavity structures that are conductively connected to the cavity of the bending channel 3. Transmission devices are installed in the inner bend bin 301 and the outer bend bin 302. By setting the inner bend bin 301 and the outer bend bin 302 as arc structures, half of the transmission device can be placed in the bending channel 3 to provide treatment for the lithium battery materials passing through the bending channel 3. The processing and acceleration effect, the transmission device includes a transmission shaft 1 4 and a transmission shaft 2 401 vertically arranged in the inner bending bin 301 and the outer bending bin 302 of the bending track 3, and the transmission shaft 1 4 and the transmission shaft 2 401 are both sleeved with a transmission brush cylinder 402 on the outside, and the transmission brush cylinder 402 is a cylindrical structure, and the outer surface of the transmission brush cylinder 402 is set as an anti-static brush head. When the lithium battery block passes through the path provided with the transmission brush cylinder 402 in the bending section, the transmission brush cylinder 402 correspondingly arranged in the inner bending bin 301 and the outer bending bin 302 cleans the two sides of the lithium battery block. At the same time, the rotating transmission brush cylinder 402 further provides friction force to accelerate the flow of the lithium battery block, thereby increasing the flow speed of the lithium battery block and the anti-static brush head is a soft structure, which reduces the collision of the lithium battery block during the turning process. The upper and lower ends of the transmission shaft 1 4 and the transmission shaft 2 401 extend out of the outside of the bin body, and the direct current channel 2 is connected between every two adjacent bending tracks 3.
[0034] As a technical solution of this embodiment, further, combined with Figure 5, a plurality of the bending tracks 3 are continuously alternately and relatively arranged, and a transmission belt 1 702 is sleeved between the lower end of the transmission shaft 1 4 in the inner bending bin 301 of one of the bending tracks 3 and the lower end of the transmission shaft 2 401 in the outer bending bin 302 of another adjacent bending track 3, and a transmission belt 2 703 is sleeved between the lower end of the transmission shaft 2 401 in the outer bending bin 302 of the same bending track 3 and the lower end of the transmission shaft 1 4 in the inner bending bin 301 of another adjacent bending track 3. In this connection mode, the transmission belt 1 702 and the transmission belt 2 703 are continuously sleeved to connect the inner bending bin 301 and the outer bending bin 302 of the plurality of bending tracks 3. The internal transmission shaft 1 4 and the transmission shaft 2 401 are arranged in series and can make all the transmission shafts 1 4 and the transmission shaft 2 401 rotate synchronously. The lower ends of the transmission shaft 1 4 in the inner bending bin 301 and the transmission shaft 2 401 in the outer bending bin 302 of the bending track 3 are coaxially connected with the drive motor 1 7 and the drive motor 2 701 respectively. All the series-connected transmission shafts 1 4 and the transmission shaft 2 401 are driven by a drive motor 1 7 and a drive motor 2 701, which saves a lot of investment in driving equipment resources and greatly reduces the manufacturing cost of the equipment and the investment in electricity resources.
[0035] As a technical solution of this embodiment, further, combined with Figure 5 , a cleaning device is provided in the middle of the upper end surface of the bending track 3, and the cleaning device includes a brush plate 501 placed on the top of the bending track 3 bin body, the brush plate 501 faces downward, and the lower end surface of the brush plate 501 also has an anti-static brush head, which can clean the upper end surface of the lithium battery block passing through the path of the brush plate 501. The middle part of the upper end of the brush plate 501 has a transmission shaft three 5 movably embedded in the middle of the upper end surface of the bending track 3 bin body, and the transmission shaft three 5 is rotatably embedded in the middle of the upper end surface of the bending track 3, thereby improving the cleaning ability of the brush plate 501 A transmission belt three 502 is sleeved between the upper end of the transmission shaft three 5 and the upper end of the transmission shaft two 401 in the cavity of the outer bending bin 302 of the same bending track 3. Without the need to re-invest in the driving equipment, the transmission belt three 502 is sleeved between the transmission shaft two 401 and the transmission shaft three 5. The transmission shaft two 401 rotates under the driving state of the driving motor and drives the transmission shaft three 5 to rotate synchronously. Correspondingly, the transmission shaft three 5 in each outer bending bin 302 of the bending track 3 is correspondingly connected to the transmission shaft three 5 with the brush disc 501, thereby further improving the cleaning effect.
[0036] As a technical solution of this embodiment, further, combined with Figure 5, an air supply device is provided between each two adjacent sides of the direct current channel 2, and the air supply device includes a ventilation bin 6, the ventilation bin 6 is provided between the two adjacent sides of the direct current channel 2 and on the inside of the cavity of the inner bending bin 301 of the bending channel 3, and a supply fan 602 is vertically provided in the ventilation bin 6. The upper end of the supply fan 602 protrudes with a transmission shaft four 601 extending to the outside of the ventilation bin 6 body, and a transmission belt four 603 is sleeved between the upper end of the transmission shaft four 601 and the upper end of the transmission shaft one 4 in the inner bending bin 301 of the adjacent bending channel 3. Through the transmission belt four 603, when the transmission shaft one 4 is driven by the driving motor, It drives the transmission shaft 4 601 to rotate, thereby causing the supply fan 602 on the rotating shaft 4 to rotate synchronously, saving a large amount of driving resources and providing the device with a heat dissipation function with the supply fan 602 as the driving body. There are multiple ventilation holes 201 on the two side panels of the direct current channel 2, and the ventilation holes 201 are connected to the cavity of the ventilation bin 6. When the supply fan 602 is driven, the air is sucked in by the ventilation holes 201 on the side of the outermost direct current channel 2 and is further accelerated by the supply fan 602 between the multiple ventilation holes 201, thereby accelerating the flow rate of the air between the ventilation holes 201, and cooling the lithium battery block.
[0037] As a technical solution of this embodiment, further, combined with Figure 2, two mounting grooves 202 are horizontally provided on the bottom plate of the inner cavity of the direct current channel 2, and the two mounting grooves 202 are respectively provided with a transmission shaft 5 8 and a transmission shaft 6 801 which are continuously connected and arranged between multiple direct current channels 2. A rubber tube sleeve 804 is provided on the transmission shaft 5 8 in one of the direct current channel 2 mounting grooves 202. The rubber tube sleeve 804 provides an acceleration effect for the lithium battery block entering the slide without causing any collision to the lithium battery block, thereby making the lithium battery block smoother. A rubber tube sleeve 804 is provided on the transmission shaft 6 801 in the other direct current channel 2 mounting groove 202 adjacent to the direct current bin. The transmission shaft 5 8 and the transmission shaft 6 in each of the two adjacent direct current channel 2 mounting grooves 202 are provided. The six 801 are alternately provided with rubber tube sleeves 804, which protrude from the plane of the notch at the upper end of the installation slot 202. The rubber tube sleeves 804 protrude from the notch at the upper end of the installation slot 202 to provide transmission force. The transmission shaft without the rubber tube sleeve 804 is hidden in the installation slot 202 and does not move the flowing lithium battery blocks, and does not affect the lithium battery blocks. The transmission shaft 5 8 between two adjacent DC channels 2 has a transmission screw 1 802, and the transmission shaft 6 801 between another adjacent DC channel 2 has a transmission screw 2 803. The transmission shaft 5 8 is connected to the corresponding supply fan 602 at the upper end through the transmission screw 1 802, and the transmission shaft 6 801 is connected to the corresponding supply fan 602 at the upper end through the transmission screw 2 803. 03 is connected to the supply fan 602 corresponding to the upper end, and a bevel gear 604 is protruding from the lower end of the supply fan 602. The bevel gear 604 at the lower end of one supply fan 602 is engaged with the transmission screw 1 802 on the transmission shaft 5 8, and the bevel gear 604 at the lower end of the other supply fan 602 is engaged with the transmission screw 2 803 on the transmission shaft 6 801 corresponding to the lower end. The transmission screw 1 802 is a forward spiral structure, and the transmission screw 2 803 is a reverse spiral structure. The rotation directions of the transmission screw 1 802 and the transmission screw 2 803 are set relative to each other. Due to the continuous arrangement and the S-shaped structure of the slideway during the transportation process, different DC channels 2 are required. The passing lithium battery blocks are driven in different directions. The above-mentioned rubber tube sleeves 804 are alternately arranged on the transmission shaft 5 8 and the transmission shaft 6 801, so there are rubber tube sleeves 804 installed on different transmission shafts in different DC channels 2. The transmission screw 1 802 and the transmission screw 2 803 on the oppositely arranged transmission shaft 5 8 and the transmission shaft 6 801 are driven by the bevel gear 604 at the lower end of the supply fan 602, so that the transmission shaft 5 8 and the transmission shaft 6 801 are rotated in relative opposite directions, so that the rubber tube sleeves 804 alternately arranged on different transmission shafts in different DC channels 2 rotate in different directions, thereby meeting the provision of transmission forces in different directions of the S-shaped slide structure.
[0038] Example 2:
[0039] During the processing of lithium batteries, they need to be tested for capacitance and charged. After testing and charging, the lithium batteries will heat up. In the process of installing multiple battery blocks, the debris generated by the outer shell during packaging will affect the subsequent processing and sales. The heat of the lithium battery will also affect the use effect of the lithium battery. Therefore, when using this equipment, it can be used to clean dust and cool down the heat during processing and transportation. When using this equipment, the processed lithium battery block enters the slide from the port of the first DC channel 2, starts the drive motor 1 7 and the drive motor 2 701, and makes the transmission shaft 1 4 and the transmission shaft 2 4 coaxially connected to the drive motor 1 7 and the drive motor 2 701. 01 rotates, and at the same time, the transmission shaft 1 4 and the transmission shaft 2 401 are arranged in series with the transmission shaft 1 4 and the transmission shaft 2 401 in the inner bending bin 301 and the outer bending bin 302 of the adjacent bending track 3. When one transmission shaft 1 4 and the transmission shaft 2 401 are in the rotating state, the remaining transmission shafts 1 4 and the transmission shaft 2 401 in the equipment will rotate synchronously due to the transmission belt 1 702 and the transmission belt 2 703 set between them, thereby rotating the transmission brush cylinder 402. During the rotation of the transmission brush cylinder 402, a transmission belt 3 502 is set between the transmission shaft 2 401 and the upper end of the transmission shaft 3 5 in the cleaning device. The transmission shaft 2 401 rotates under the driving state of the driving motor and drives the transmission shaft 3 5 The brush plate 501 rotates synchronously, so that the ventilation bin 6 is arranged between the two adjacent sides of the direct current channel 2 and on the inside of the cavity of the bending bin 301 in the bending channel 3. A supply fan 602 is vertically arranged in the ventilation bin 6. The upper end of the supply fan 602 protrudes with a transmission shaft 4 601 extending to the outside of the ventilation bin 6 body. A transmission belt 4 603 is sleeved between the upper end of the transmission shaft 4 601 and the upper end of the transmission shaft 1 4 in the bending bin 301 in the adjacent bending channel 3. The transmission belt 4 603 makes the transmission shaft 4 601 rotate at the same time when the transmission shaft 1 4 is driven by the driving motor, so that the supply fan 602 on the rotating shaft 4 rotates synchronously, and the supply fan 602 rotates. The bevel gear 604 at the lower end of the supply fan 602 can drive the transmission screw 1 802 and the transmission screw 2 803 on the transmission shaft 5 8 and the transmission shaft 6 801 to rotate, thereby rotating the rubber tube sleeve 804 and pushing the lithium battery block entering the direct current channel 2. When the lithium battery block passes through the bending channel 3, the corresponding transmission brush cylinder 402 at the front and rear and the brush plate 501 at the upper end of the bending channel 3 clean the two sides and the upper end surface of the lithium battery block at the same time, and the supply fan 602 drives the air through the ventilation hole 201, thereby cooling the lithium battery block passing through the direct current channel 2, thereby achieving a variety of treatment effects, being simpler to use, and having more diverse effects than traditional conveying devices.
[0040] The basic principles, main features and advantages of the present invention are shown and described above. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is limited by the appended claims rather than the above description. Therefore, it is intended that all changes that fall within the meaning and scope of the equivalent elements of the claims are included in the present invention, and any figure signs in the claims should not be regarded as limiting the claims involved.
[0041] 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 new energy lithium battery processing and conveying device, comprising a support frame (1) and a slideway mounted on the upper end of the support frame (1), characterized in that: The slideway comprises a plurality of straight channels (2) and bending channels (3), wherein the plurality of straight channels (2) and bending channels (3) are alternately connected end to end to form a continuous S-shaped slideway, and transmission devices are symmetrically arranged on the inner bend and the outer bend of each bending channel (3), and the plurality of transmission devices are connected through transmission between the bottoms, and a cleaning device is also arranged in the middle of the upper end surface of the bending channel (3), and the cleaning device on each bending channel (3) is connected to the transmission device on the corresponding bending channel (3), and an air supply device is arranged between every two adjacent straight channels (2), and each air supply device is connected to a corresponding transmission device.
2. A new energy lithium battery processing and conveying device according to claim 1, characterized in that: The bending track (3) is an arc-shaped cavity structure with both ends open and an interior hollow. An inner bending chamber (301) and an outer bending chamber (302) are respectively protruded from the middle of the inner bend and the outer bend of the bending track (3). The inner bend chamber (301) and the outer bend chamber (302) are both arc-shaped cavity structures conductively connected to the cavity of the bending track (3). Transmission devices are installed in the inner bend chamber (301) and the outer bend chamber (302).
3. A new energy lithium battery processing and conveying device according to claim 2, characterized in that: The transmission device comprises a transmission shaft 1 (4) and a transmission shaft 2 (401) vertically arranged in an inner bending bin (301) and an outer bending bin (302) of a bending track (3); a transmission brush cylinder (402) is sleeved on the outside of the transmission shaft 1 (4) and the transmission shaft 2 (401); upper and lower ends of the transmission shaft 1 (4) and the transmission shaft 2 (401) extend outside the bin body; and a straight path (2) is connected between every two adjacent bending tracks (3).
4. A new energy lithium battery processing and conveying device according to claim 3, characterized in that: A plurality of the bending tracks (3) are arranged alternately and relative to each other in succession. A transmission belt 1 (702) is sleeved between the lower end of the transmission shaft 1 (4) in the inner bending bin (301) of one of the bending tracks (3) and the lower end of the transmission shaft 2 (401) in the outer bending bin (302) of another adjacent bending track (3). A transmission belt 2 (703) is sleeved between the lower end of the transmission shaft 2 (401) in the outer bending bin (302) of the same bending track (3) and the lower end of the transmission shaft 1 (4) in the inner bending bin (301) of another adjacent bending track (3). The lower ends of the transmission shaft 1 (4) in the inner bending bin (301) and the transmission shaft 2 (401) in the outer bending bin (302) of one of the bending tracks (3) are coaxially connected to a drive motor 1 (7) and a drive motor 2 (701), respectively.
5. The new energy lithium battery processing and conveying device according to claim 3, characterized in that: A cleaning device is provided at the middle of the upper end surface of the bending track (3), and the cleaning device comprises a brush plate (501) placed at the top of the bending track (3) bin body, and a transmission shaft (5) is provided at the middle of the upper end of the brush plate (501) and is movably embedded in the middle of the upper end surface of the bending track (3) bin body, and a transmission belt (502) is provided between the upper end of the transmission shaft (5) and the upper end of the transmission shaft (401) in the cavity of the outer bending bin (302) of the same bending track (3).
6. The new energy lithium battery processing and conveying device according to claim 3, characterized in that: An air supply device is provided between each two adjacent sides of the direct current channel (2), and the air supply device comprises a ventilation bin (6). The ventilation bin (6) is provided between the two adjacent sides of the direct current channel (2) and on the inner side of the cavity of the inner bending bin (301) of the bending channel (3). A supply fan (602) is vertically provided in the bin body of the ventilation bin (6). A transmission shaft (601) extending to the outer side of the bin body of the ventilation bin (6) protrudes from the upper end of the supply fan (602), and a transmission belt (603) is provided between the upper end of the transmission shaft (601) and the upper end of the transmission shaft (4) in the inner bending bin (301) of the adjacent bending channel (3).
7. The new energy lithium battery processing and conveying device according to claim 6, characterized in that: A plurality of ventilation holes (201) are provided on both side panels of the direct current channel (2), and the ventilation holes (201) are conductively connected to the cavity of the ventilation bin (6).
8. The new energy lithium battery processing and conveying device according to claim 6, characterized in that: Two installation slots (202) are transversely provided on the bottom plate of the cavity of the direct current channel (2), and a transmission shaft five (8) and a transmission shaft six (801) which are continuously connected and arranged between a plurality of direct current channels (2) are respectively provided in the two installation slots (202). A rubber tube sleeve (804) is provided on the transmission shaft five (8) in the installation slot (202) of one direct current channel (2), and a rubber tube sleeve (804) is provided on the transmission shaft six (801) in the installation slot (202) of another direct current channel (2) adjacent to the direct current bin. The transmission shaft five (8) in each of the two adjacent direct current channel (2) installation slots (202) is provided with a rubber tube sleeve (804). Rubber tube sleeves (804) are alternately arranged with the transmission shaft six (801), and the rubber tube sleeves (804) protrude from the notch plane of the upper end of the installation groove (202). The transmission shaft five (8) between two adjacent DC channels (2) has a transmission screw one (802), and the transmission shaft six (801) between another adjacent DC channel (2) has a transmission screw two (803). The transmission shaft five (8) is connected to the corresponding supply fan (602) at the upper end through the transmission screw one (802), and the transmission shaft six (801) is connected to the corresponding supply fan (602) at the upper end through the transmission screw two (803).
9. The new energy lithium battery processing and conveying device according to claim 8, characterized in that: The lower end of the supply fan (602) is provided with a helical gear (604) protruding therefrom. The helical gear (604) at the lower end of one supply fan (602) is in transmission meshing connection with the transmission screw 1 (802) on the transmission shaft 5 (8), and the helical gear (604) at the lower end of the other supply fan (602) is in transmission meshing connection with the transmission screw 2 (803) on the corresponding transmission shaft 6 (801) at the lower end.
10. The new energy lithium battery processing and conveying device according to claim 9, characterized in that: The transmission screw 1 (802) is a forward spiral structure, and the transmission screw 2 (803) is a reverse spiral structure. The transmission screw 1 (802) and the transmission screw 2 (803) are arranged in opposite directions of rotation.
Citation Information
Patent Citations
Conveying device
CN117923074A