Air cooling structure of pole piece carrying module
By introducing an air-cooling structure into the electrode handling module, the problem of heat accumulation in linear motors is solved by utilizing airflow and coolant for heat dissipation, thus achieving efficient heat dissipation and improved safety.
Patent Information
- Application Number
- CN202520430906.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-09-30
- Filing Date
- 2025-03-12
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-03-12
AI Technical Summary
During the production of stacked batteries, the linear motor experiences heat buildup due to the confined operating environment, which affects its normal operation and accuracy.
It adopts an air-cooled structure, which uses air passages and air holes in the slide to blow out hot air with high-speed airflow, and combines heat dissipation teeth and copper tube coolant to dissipate heat and reduce heat accumulation.
Effective heat dissipation maintains the normal working condition and accuracy of the linear motor, improving the heat dissipation performance and safety of the conveying device.
Smart Images

Figure CN223779457U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to mobile module technical field, specifically is a pole piece carries module air -cooled structure. BACKGROUND
[0002] In the process of laminated battery production, generally need to make into pole piece through pole piece loading manipulator and carry out, and carry pole piece to laminated platform, carry out laminated, form laminated battery, in order to reduce the volume of carrying device, and the precision of movement, mostly use linear motor as power, linear motor in the operation process will produce a large amount of heat, and the operation environment of linear motor is narrow, and the heat is difficult to release, always gathers in the same position and leads to linear motor heating seriously, can influence the normal work and precision of linear motor. UTILITARIAN CONTENT
[0003] The utility model is provided with a pole piece carrying module air-cooled structure to solve the problems in the above background technology.
[0004] To achieve the above object, the utility model provides the following technical scheme:
[0005] A pole piece carrying module air-cooled structure, comprising a base, a plurality of magnetic tracks are arranged on the base, a linear motor is installed in the magnetic track, the linear motor is connected with a sliding seat, a plurality of air holes are arranged near the installation position of the linear motor.
[0006] Further technical scheme, a plurality of air holes are inclined to the linear motor.
[0007] Further technical scheme, the installation position is an installation groove formed with the bottom of the sliding seat, a plurality of flanges are arranged at intervals on the groove bottom of the installation groove.
[0008] Further technical scheme, a heat dissipation tooth block is arranged on the side of the sliding seat away from the linear motor.
[0009] Further technical scheme, the two sides of the sliding seat are connected with the base through a sliding pair, the sliding pair comprises a sliding rail and a sliding block, an oil injection channel is arranged in the sliding block, a connector is arranged in communication with the oil injection channel, the connector is connected with a flow divider through a pipeline, and the flow divider is installed on the sliding seat.
[0010] Further technical scheme, a plurality of recesses extending to both ends are arranged on the two side surfaces of the base, a copper pipe is fixedly arranged in the recess, the copper pipe is used for injecting cooling liquid, and the linear motor is in contact with the side surface of the base.
[0011] Further technical scheme, a plurality of copper pipes are arranged in a straight line or are bent.
[0012] The utility model discloses beneficial effect has:
[0013] The utility model discloses a beneficial effect has:
[0014] The other features and advantages of the utility model will be described in detail in the subsequent specific embodiment part. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 The utility model discloses a three -dimensional structure diagram.
[0016] Figure 2 The utility model discloses a slide and linear motor dismounting structure Figure One .
[0017] Figure 3 The utility model discloses a slide and linear motor dismounting structure Figure Two .
[0018] Figure 4 The utility model discloses a copper pipe implementation mode one schematic drawing.
[0019] Figure 5 The utility model discloses a copper pipe implementation mode two schematic drawing.
[0020] Reference Signs: 11 - base, 12 - recess, 13 - copper pipe, 21 - magnetic track, 22 - linear motor, 31 - slide, 32 - air hole, 33 - installation site, 34 - flange, 35 - heat dissipation tooth block, 36 - shunt head, 4 - sliding pair, 41 - slide rail, 42 - sliding block, 43 - joint. DETAILED DESCRIPTION
[0021] The technical scheme in the utility model embodiment will be described clearly and completely in conjunction with the drawings in the utility model embodiment.
[0022] Please refer to Figures 1-5 ;
[0023] The pole piece carrying module adopts the air cooling heat dissipation mode, is safer and more efficient than the water cooling mode, aims at providing the improved heat dissipation performance, reducing the influence on the linear motor 22 to enable the linear motor 22 to maintain a good working state for a long time, and specifically comprises a base 11, a plurality of magnetic rails 21 are arranged on the base 11, the linear motor 22 is installed in the magnetic rail 21, the linear motor 22 is connected with the sliding seat 31, the linear motor 22 in the embodiment is higher than the magnetic rail 21, therefore, there is a gap between the sliding seat 31 and the linear motor 22 after the sliding seat 31 is connected with the linear motor 22, and a large amount of heat is accumulated in the track during long-time operation of the linear motor 22 and cannot be dissipated, a plurality of air channels are arranged in the sliding seat 31 in the utility model, a plurality of air holes 32 are arranged close to the linear motor 22 installation position 33, preferably, the air channel is arranged at the end of the sliding seat 31, and a gas nozzle is arranged at the end of the sliding seat 31 and connected with an external gas supply device, under normal circumstances, no part is installed at the end of the sliding seat 31, therefore, the interface is arranged at the end of the sliding seat 31 and does not hinder the installation of other components, high-speed gas enters the air channel from the outside, and then high-speed airflow is sprayed from the air hole 32, so that the heat accumulated in the magnetic rail 21 can be blown out of the outside, when the high-speed airflow passes through the linear motor 22, the heat dissipated from the linear motor 22 can be taken away, and the heat dissipation effect is achieved.
[0024] In the embodiment of the utility model, the sliding seat 31 forms the installation position 33 corresponding to the position of the linear motor 22, the installation position 33 is formed with the inclined plane on both sides, the air hole 32 is arranged on the inclined plane, so that the output airflow can be directed to the linear motor 22, that is, the output airflow first contacts the linear motor 22 to dissipate heat, and then diffuses to both sides to blow away the accumulated heat.
[0025] Further, the installation position 33 is formed with the installation groove at the bottom of the sliding seat 31, under normal circumstances, the linear motor 22 is embedded in the installation groove to be fixed, at this time, the installation groove is in contact with the linear motor 22 on three sides, so that the heat at this position of the linear motor 22 increases, in the embodiment, a plurality of flanges 34 are arranged at intervals at the groove bottom of the installation groove, the shape of the heat dissipation fin is formed, the contact area with the linear motor 22 is reduced, and the airflow can also pass through the gap between the flanges 34, so that the heat dissipation effect is achieved.
[0026] In addition, the sliding seat 31 also absorbs part of the heat of the linear motor 22 to form a large heat collector, that is, the sliding seat 31 is cooled, and the linear motor 22 is indirectly cooled, therefore, the heat dissipation tooth block 35 is arranged on the side of the sliding seat 31 away from the linear motor 22, and the heat dissipation effect is improved by arranging the heat dissipation tooth block 35.
[0027] In the embodiment of the utility model, the two sides of the sliding seat 31 are connected with the base 11 through the sliding pair 4, the sliding pair 4 includes the slide rail 41 and the sliding block 42, and the sliding block 42 is usually periodically injected with lubricating oil to maintain smooth operation, if the sliding block 42 is connected with the external oil supply equipment, the pipeline will be pulled, and one pipeline is needed for each sliding block 42, if there are many sliding blocks 42, many pipelines are needed, the pipelines are more messy, the sliding seat 31 and the sliding block 42 are relatively stationary in the working process, and the sliding seat 31 is located outside, so more installation space can be provided, the sliding block 42 is provided with an oil injection channel, and the sliding block 42 is provided with the joint 43 in communication with the oil injection channel, the joint 43 is connected with the flow divider 36 through the pipeline, and the flow divider 36 is installed on the sliding seat 31, in addition to reducing the use of the pipeline, the friction between the pipeline and the components can be reduced in the operation process, and the damage caused by excessive wear is avoided to cause oil leakage.
[0028] In an embodiment of the utility model, the two side surfaces of the base 11 are provided with a plurality of grooves 12 extending to both ends, the copper pipes 13 are fixed in the grooves 12, the copper pipes 13 are used for injecting cooling liquid, the linear motor 22 is in contact with the side surface of the base 11, preferably, the depth of the groove 12 is greater than the diameter of the copper pipe 13, so that the copper pipe 13 can be embedded and will not protrude from the end surface of the base 11 to affect the installation of other components, in addition, the groove 12 extends to both ends of the base 11 and forms a gap, the copper pipe 13 can pass out of the gap, or a joint is arranged at the gap and connected with both ends of the copper pipe 13.
[0029] The bottom surface of the linear motor 22 is in contact with the side surface of the base 11, and the heat generated by the linear motor 22 can be directly transmitted to the base 11 in use, at this time, the base 11 is equivalent to a large heat collector, and the heat in the narrow space can be transferred to a larger object, so that more heat dissipation means can be provided, and the operation is more convenient, in the embodiment, the cooling liquid or cold water is introduced into the copper pipe 13 through the external equipment, the heat in the base 11 is absorbed by the copper pipe 13 to maintain the temperature at an appropriate temperature, so that the excessive heat accumulation does not affect the operation of the linear motor 22, and further, the copper pipes 13 are arranged in a straight line or are bent.
[0030] For those skilled in the art, it is obvious that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims.
[0031] Furthermore, it should be understood that although the description is made on the basis of embodiments, not every embodiment contains only one independent technical solution, and the description is made in this way only for the sake of clarity, and those skilled in the art should understand the description as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementations that those skilled in the art can understand.
Claims
1. An electrode piece handling module air cooling structure, characterized by: The base (11) is provided with a plurality of magnetic tracks (21), the linear motor (22) is installed in the magnetic track (21), the linear motor (22) is connected with the sliding seat (31), the sliding seat (31) is provided with a plurality of air paths, and a plurality of air holes (32) are arranged near the installation position (33) of the linear motor (22).
2. The pole piece handling module air cooling structure of claim 1, wherein: A plurality of air holes (32) are inclined towards the linear motor (22).
3. The pole piece handling module air cooling structure of claim 1, wherein: The installation position (33) is an installation groove formed at the bottom of the sliding seat (31), and the groove bottom is provided with a plurality of flanges (34) arranged at intervals.
4. The pole piece handling module air cooling structure of claim 1, wherein: The side, away from the linear motor (22), of the sliding seat (31) is provided with a heat dissipation tooth block (35).
5. The pole piece handling module air cooling structure of claim 1, wherein: The two sides of the sliding seat (31) are connected with the base (11) through sliding pairs (4), the sliding pair (4) comprises a sliding rail (41) and a sliding block (42), the sliding block (42) is provided with an oil injection channel, and is provided with a joint (43) in communication with the oil injection channel, the joint (43) is connected with a shunt head (36) through a pipeline, and the shunt head (36) is installed on the sliding seat (31).
6. The pole piece handling module air cooling structure of claim 1, wherein: The two side surfaces of the base (11) are provided with a plurality of grooves (12) extending to both ends, the copper pipes (13) are fixedly arranged in the grooves (12), the copper pipes (13) are used for injecting cooling liquid, and the linear motor (22) is in contact with the side surface of the base (11).
7. The pole piece handling module air cooling structure of claim 6, wherein: A plurality of copper pipes (13) are distributed in a straight line or are bent.