Water cooling plate shaping machine
By designing a water-cooled plate shaping machine, the water-cooled plate is automatically shaped by using the placement platform and the shaping mechanism, the problem of shape deformation after cutting is solved, and the production efficiency and shaping quality are improved.
Patent Information
- Application Number
- CN202422358975.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-26
AI Technical Summary
In the prior art, the water-cooled plates are deformed at both ends after cutting, resulting in difficulty in assembling current collectors, low efficiency and poor quality of manual shaping.
A water-cooled plate shaping machine is designed, including a placement platform, a positioning mechanism and a plastic shaping mechanism. By placing the platform, the longitudinal direction of the plate body is positioned, the positioning mechanism is against both ends of the plate body, and the plastic shaping mechanism is inserted into the runner for flaring and shaping, realizing automatic operation.
Automatic shaping of water-cooled plates is realized, and production efficiency and shaping quality are improved.
Smart Images

Figure CN223128969U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to a water-cooling plate manufacturing device, in particular to a water-cooling plate shaping machine. Background Art
[0002] The description in this section only provides background information related to the present disclosure and does not constitute prior art. In the related art, the water-cooled plate is an important component of liquid cooling in the battery pack. The water-cooled plate mainly includes a plate body, a sealing plate, and a current collector disposed at both ends of the plate body. The plate body is in the shape of an elongated strip as a whole during molding, and is cut into a preset length by a cutting device. After the plate body is cut, the shapes of the two ends will be deformed, and the current collector cannot be assembled normally, so the two ends of the plate body need to be shaped to meet the assembly requirements. Manual shaping is inefficient and has poor shaping quality, so a device specifically for plate shaping is needed to replace manual operation. Summary of the invention
[0003] In view of this, the present application provides a water-cooling plate shaping machine, which can shape the end of the plate body of the water-cooling plate with high working efficiency.
[0004] In order to achieve the above objectives, this application is implemented through the following technical solutions:
[0005] A water-cooled plate shaping machine, characterized in that it comprises a machine platform, a placement mechanism fixedly arranged on the machine platform, two shaping mechanisms arranged on both sides of the placement mechanism in a relative manner, and two positioning mechanisms arranged on both sides of the placement mechanism in a relative manner;
[0006] The placing mechanism comprises a placing platform for placing the plate body, the placing platform is provided with a placing groove which is concave downward and passes through laterally, and the longitudinal sides of the placing groove correspond to the longitudinal width of the plate body, so as to limit the longitudinal displacement of the plate body; the positioning mechanism comprises a lower stop assembly which can be lifted and moved to support the end of the plate body, and a lower pressing assembly which can be lifted and moved to press the plate body, and the lower stop assemblies of the two positioning mechanisms can support the two ends of the plate body when they are lowered, so that the plate body is in a preset transverse position;
[0007] The shaping mechanism includes a shaping tool that can move laterally and telescopically, and a transverse driving device for driving the shaping tool to move laterally and telescopically; the shaping tool includes a mounting plate, an insert plate and an external pressure plate fixedly arranged on the mounting plate, the insert plate is provided with a spline for extending into the flow channel of the plate body and supporting the plate body from the inside, the external pressure plate is provided with an external pressure groove corresponding to the shape of the plate body, the spline is located in the external pressure groove, and when the two shaping tools are extended relative to each other, they are inserted into the two ends of the plate body from the two lateral sides, wherein the spline is inserted into the flow channel of the plate body, and the external pressure groove presses the outer periphery of the plate body, thereby shaping the two ends of the plate body.
[0008] The above-mentioned water-cooled plate shaping machine of the present application is used to place a plate body on a placement platform to position the plate body longitudinally, and two lower block assemblies are lowered to support the two ends of the plate body to position the plate body laterally, and the lower pressure assembly is lowered to press the plate body so that the plate body remains fixed in a preset position, and then the lower block assembly is reset. When the two shaping toolings are relatively extended, the inserting teeth are inserted into the flow channel of the plate body, and the external pressure groove presses the outer periphery of the plate body to expand and shape the end of the plate body. The water-cooled plate shaping machine can realize automated shaping action, has high production efficiency, and good shaping quality.
[0009] In some embodiments, the placement mechanism includes a middle bracket and two side brackets spaced apart and arranged on both sides of the middle bracket, and the placement platform includes a middle platform fixedly mounted on the middle bracket and two side platforms respectively fixedly mounted on two side brackets. The middle platform is mainly used to support the middle of the board body to prevent the middle of the board body from bending, and the two side platforms are used to support the two ends of the board body and cooperate with the pressing assembly to press the board body.
[0010] In some embodiments, a first guide rail extending transversely is fixedly mounted on the platform, the middle bracket and one of the side brackets are slidably connected to the first guide rail via a slider, and the other side bracket is fixedly mounted on the platform. The middle bracket and one of the side brackets are configured as a slidable and adjustable structure to accommodate the use of plates of different lengths. When adjusted in place, the middle bracket and the corresponding side bracket are fastened to the first guide rail via bolts.
[0011] In some embodiments, the positioning mechanism further includes a first bracket fixedly mounted on the side bracket, the lower baffle assembly includes a baffle located above the placement mechanism, a second guide rail fixedly mounted on the first bracket for vertically guiding the baffle, and a first cylinder fixedly mounted on the first bracket for driving the baffle to vertically lift and lower the baffle; the lower pressure assembly includes a pressure block located above the placement mechanism, and a second cylinder fixedly mounted on the first bracket for driving the pressure block to vertically lift and lower the pressure block. The lateral side of the baffle is a positioning surface, which can push the plate body to move horizontally when the baffle is lowered. In order to facilitate the insertion of the baffle into the plate body, the baffle can be set as a triangular structure with a sharp corner at the bottom. The guide of the pressure block can be a guide rail or a guide rail, etc.
[0012] In some embodiments, the shaping mechanism further includes a third guide rail fixedly mounted on the side bracket for lateral guidance of the shaping tooling, and the lateral driving device is a third cylinder fixedly mounted on the side bracket; a slot hole is provided in the middle of the mounting plate, the plug plate is detachably fixedly mounted on the inner layer of the mounting plate, the plugging teeth extend from the slot hole, the outer pressure plate is detachably fixedly mounted on the outer side of the mounting plate, the outer pressure groove corresponds to the slot hole, the shaping tooling further includes a seat plate connected to the third guide rail through a slider, and the mounting plate is detachably fixedly mounted on the seat plate. The detachable fixed installation method is mainly bolt connection.
[0013] In some embodiments, a buffer table for placing the board is also provided on the machine platform, located next to the placement mechanism. The buffer table is mainly used to store the board.
[0014] It can be seen from the above technical solution that the present application has at least the following advantages and positive effects:
[0015] The present application discloses a water-cooled plate shaping machine, which uses a placement platform to place a plate body and position the plate body in the longitudinal direction. Two lower stop assemblies are lowered to support the two ends of the plate body and position the plate body in the transverse direction. The lower pressure assembly is lowered to press the plate body so that the plate body is kept fixed in a preset position. The lower stop assembly is then reset. When the two shaping toolings are relatively extended, the inserting teeth are inserted into the flow channel of the plate body, and the external pressure groove presses the outer periphery of the plate body to expand and shape the end of the plate body. The water-cooled plate shaping machine can realize automated shaping action, has high production efficiency, and good shaping quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the structure of an embodiment of the present application;
[0017] Figure 2 It is a partial structural schematic diagram of an embodiment of the present application;
[0018] Figure 3 This is a schematic diagram of the structure of the positioning mechanism in the embodiment of the present application;
[0019] Figure 4 This is a schematic diagram of the structure of the lower block assembly in the embodiment of the present application;
[0020] Figure 5 This is a structural schematic diagram of the shaping mechanism in the embodiment of the present application;
[0021] Figure 6 This is a schematic diagram of the structure of the shaping tool in the embodiment of the present application;
[0022] Figure 7 An exploded view of the shaping tooling in the embodiment of the present application;
[0023] Figure 8It is a schematic diagram of the structure of the cache station in the embodiment of the present application.
[0024] Explanation of reference numerals: 1. machine; 2. placement mechanism; 21. middle bracket; 22. side bracket; 231. middle platform; 232. side platform; 24. first guide rail; 3. shaping mechanism; 31. shaping tool; 311. mounting plate; 311. slot; 312. insert plate; 3121. inserting gear; 313. outer pressure plate; 3131. outer pressure groove; 314. seat plate; 32. transverse drive device; 33. third guide rail; 4. positioning mechanism; 41. lower block assembly; 411. baffle plate; 412. second guide rail; 413. first cylinder; 42. lower pressure assembly; 421. pressure block; 422. second cylinder; 43. first bracket; 5. buffer station; 6. plate body; 61. flow channel; DETAILED DESCRIPTION
[0025] In order to make the purpose, technical solution and advantages of the present application clearer, the present application will be further described in detail below in conjunction with the accompanying drawings. The terms used in the implementation method of the present application are only used to explain the specific embodiments of the present application, and are not intended to limit the present application.
[0026] The present application provides a water-cooled plate shaping machine, which is mainly used to shape the two ends of the plate body 6 of the water-cooled plate. Figure 1 In the shape shown, a plurality of flow channels 61 for the flow of cooling liquid are arranged inside the plate body 6 .
[0027] See also Figures 2 to 8 The shaping machine comprises a machine platform 1, a placing mechanism 2 fixedly arranged on the machine platform 1, two shaping mechanisms 3 arranged on both sides of the placing mechanism 2 in an opposite manner, and two positioning mechanisms 4 arranged on both sides of the placing mechanism 2 in an opposite manner;
[0028] The placement mechanism 2 includes a placement platform for placing the plate body 6, and a placement groove that is concave downward and horizontally penetrates is provided on the placement platform, and the longitudinal sides of the placement groove correspond to the longitudinal width of the plate body 6, so as to limit the longitudinal deviation of the plate body 6; the positioning mechanism 4 includes a lower stop assembly 41 that can be lifted and moved to support the end of the plate body 6, and a lower pressing assembly 42 that can be lifted and moved to press the plate body 6. When the lower stop assemblies 41 of the two positioning mechanisms 4 are lowered, they can support the two ends of the plate body 6, so that the plate body 6 is in a preset horizontal position;
[0029] The shaping mechanism 3 includes a shaping tool 31 capable of lateral telescopic movement, and a lateral driving device 32 for driving the shaping tool 31 to lateral telescopic movement; the shaping tool 31 includes a mounting plate 311 and a plug plate 312 and an outer pressure plate 313 fixedly arranged on the mounting plate 311, the plug plate 312 is provided with a tooth 3121 for extending into the flow channel 61 of the plate body 6 and supporting the plate body 6 from the inside, the outer pressure plate 313 is provided with an outer pressure groove 3131 corresponding to the shape of the plate body 6, the tooth 3121 is located in the outer pressure groove 3131, and when the two shaping tools 31 are extended relative to each other, they are inserted into the two ends of the plate body 6 from the two lateral sides, wherein the tooth 3121 is inserted into the flow channel 61 of the plate body 6, and the outer pressure groove 3131 presses the outer periphery of the plate body 6, thereby shaping the two ends of the plate body 6.
[0030] The water-cooled plate shaping machine uses a placement platform to place a plate body 6, and positions the plate body 6 in the longitudinal direction. The two lower block assemblies 41 descend to support the two ends of the plate body 6, and position the plate body 6 in the transverse direction. The lower pressing assembly 42 descends to press the plate body 6, so that the plate body 6 remains fixed in a preset position, and then the lower block assembly 41 is reset. When the two shaping toolings 31 extend relatively, the inserting teeth 3121 are inserted into the flow channel 61 of the plate body 6, and the outer pressure groove 3131 presses the outer periphery of the plate body 6 to expand and shape the end of the plate body 6. The water-cooled plate shaping machine can realize automatic shaping action, has high production efficiency, and good shaping quality.
[0031] join Figure 2 The placement mechanism 2 includes a middle bracket 21 and two side brackets 22 spaced apart and arranged on both sides of the middle bracket 21, and the placement platform includes a middle platform 231 fixedly mounted on the middle bracket 21 and two side platforms 232 respectively fixedly mounted on the two side brackets 22. The middle platform 231 is mainly used to support the middle of the plate body 6 to prevent the middle of the plate body 6 from bending, and the two side platforms 232 are used to support the two ends of the plate body 6 and cooperate with the pressing assembly 42 to press the plate body 6.
[0032] See also Figure 2 The machine 1 is also fixedly mounted with a first guide rail 24 extending transversely, the middle bracket 21 and one of the side brackets 22 are slidably connected to the first guide rail 24 through a slider, and the other side bracket 22 is fixedly mounted on the platform. The middle bracket 21 and one of the side brackets 22 are configured as a slidable and adjustable structure to accommodate the use of plates 6 of different lengths. When adjusted in place, the middle bracket 21 and the corresponding side bracket 22 are fastened to the first guide rail 24 by bolts.
[0033] See also Figure 3 and Figure 4, the positioning mechanism 4 further includes a first bracket 43 fixedly arranged on the side bracket 22. The lower baffle assembly 41 includes a baffle 411 located above the placing mechanism 2, a second guide rail 412 fixedly installed on the first bracket 43 for vertically guiding the baffle 411, and a first cylinder 413 fixedly installed on the first bracket 43 for driving the baffle 411 to move vertically up and down; the pressing-down assembly 42 includes a pressing block 421 located above the placing mechanism 2, and a second cylinder 422 fixedly installed on the first bracket 43 for driving the pressing block 421 to move vertically up and down. One lateral side of the baffle 411 is a positioning surface. When the baffle 411 descends, it can push the plate body 6 to move horizontally for adjustment. In order to facilitate the insertion of the baffle 411 into the plate body 6, the baffle 411 can be set as a triangular structure with a pointed lower part. The guiding of the pressing block 421 can be a guide rail or the like.
[0034] See Figures 5 to 7 , the shaping mechanism 3 further includes a third guide rail 33 fixedly installed on the side bracket 22 for horizontally guiding the shaping tooling 31. The lateral driving device 32 is a third cylinder fixedly installed on the side bracket 22; a slot hole 3111 is provided in the middle of the mounting plate 311. The inserting plate 312 is detachably and fixedly installed on the inner layer of the mounting plate 311. The inserting teeth 3121 extend out from the slot hole 3111. The outer pressing plate 313 is detachably and fixedly installed on the outside of the mounting plate 311. The outer pressing groove 3131 corresponds to the slot hole 3111. The shaping tooling 31 further includes a seat plate 314 connected to the third guide rail 33 through a slider. The mounting plate 311 is detachably and fixedly installed on the seat plate 314. The detachably and fixedly installed manner is mainly bolt connection. The inserting plate 312, the outer pressing plate 313 and the mounting plate 311 are set as detachable structures mainly for facilitating the replacement of different specifications of inserting teeth 3121 and outer pressing grooves 3131 to adapt to plate bodies 6 with different parameter specifications.
[0035] See Figure 1 and Figure 8 , a buffer table 5 for placing the plate body 6 is further arranged on the machine table 1 beside the placing mechanism 2. The buffer table 5 is mainly used for storing the plate body 6.
[0036] The working process and usage method of the above-mentioned water-cooled plate shaping machine in the embodiment are briefly described as follows:
[0037] Place the plate body 6 on the middle platform 231 and the side platform 232. The first cylinder 413 of the lower baffle assembly 41 drives the baffle 411 to descend, block the two ends of the plate body 6, and laterally position the plate body 6. The second cylinder 422 drives the pressing plate to descend and press the plate body 6. The first cylinder 413 drives the baffle 411 to reset upward. The third cylinder drives the shaping tooling 31 to extend. During the extension of the shaping tooling 31, the pinion 3121 is inserted into the flow channel 61 of the plate body 6, and the outer pressing groove 3131 presses the outer periphery of the end of the plate body 6, so as to shape the end of the plate body 6. After shaping, the third cylinder drives the shaping tooling 31 to retract, the second cylinder 422 drives the pressing plate to reset upward, and the plate body 6 is taken out to complete the shaping process of one plate body 6.
[0038] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of the present application, rather than to limit them; although the embodiments of the present application have been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A water-cooled plate shaping machine, characterized in that: It includes a machine platform, a placement mechanism fixedly arranged on the machine platform, two shaping mechanisms arranged on both sides of the placement mechanism in a relative manner, and two positioning mechanisms arranged on both sides of the placement mechanism in a relative manner; The placing mechanism comprises a placing platform for placing the plate body, the placing platform is provided with a placing groove which is concave downward and passes through laterally, and the longitudinal sides of the placing groove correspond to the longitudinal width of the plate body, so as to limit the longitudinal displacement of the plate body; the positioning mechanism comprises a lower stop assembly which can be lifted and moved to support the end of the plate body, and a lower pressing assembly which can be lifted and moved to press the plate body, and the lower stop assemblies of the two positioning mechanisms can support the two ends of the plate body when they are lowered, so that the plate body is in a preset transverse position; The shaping mechanism comprises a shaping tool capable of lateral telescopic movement, and a lateral driving device for driving the shaping tool to lateral telescopic movement; The shaping tooling includes a mounting plate, an insert plate and an external pressure plate fixedly arranged on the mounting plate, the insert plate is provided with a pinion used to extend into the flow channel of the plate body and support the plate body from the inside, the external pressure plate is provided with an external pressure groove corresponding to the shape of the plate body, the pinion is located in the external pressure groove, and the two shaping toolings are inserted into the two ends of the plate body from the lateral sides when the two shaping toolings are extended relative to each other, wherein the pinion is inserted into the flow channel of the plate body, and the external pressure groove presses the outer periphery of the plate body, thereby shaping the two ends of the plate body.
2. The shaping machine for a water cooling plate according to claim 1, wherein: The placement mechanism includes a central support and two side supports spaced apart on both sides of the central support. The placement platform includes a central platform fixedly mounted on the central support and two side platforms respectively fixedly mounted on two side supports.
3. The shaping machine for a water-cooled plate according to claim 2, characterized in that: The platform is also fixedly mounted with a first guide rail extending transversely, the middle bracket and one of the side brackets are slidably connected to the first guide rail via a slider, and the other side bracket is fixedly mounted on the platform.
4. A water-cooled plate shaping machine according to any one of claims 2-3, characterized in that: The positioning mechanism also includes a first bracket fixedly mounted on the side bracket, the lower baffle assembly includes a baffle located above the placement mechanism, a second guide rail fixedly mounted on the first bracket for vertically guiding the baffle, and a first cylinder fixedly mounted on the first bracket for driving the baffle to vertically lift and lower the movement; the lower pressure assembly includes a pressure block located above the placement mechanism, and a second cylinder fixedly mounted on the first bracket for driving the pressure block to vertically lift and lower the movement.
5. The water-cooled plate shaping machine according to claim 2, wherein: The shaping mechanism also includes a third guide rail fixedly mounted on the side bracket for laterally guiding the shaping tooling, and the lateral driving device is a third cylinder fixedly mounted on the side bracket; a slot hole is provided in the middle of the mounting plate, the plug plate is detachably fixedly mounted on the inner layer of the mounting plate, the plug teeth extend from the slot hole, the outer pressure plate is detachably fixedly mounted on the outer side of the mounting plate, the outer pressure groove corresponds to the slot hole, and the shaping tooling also includes a seat plate connected to the third guide rail through a slider, and the mounting plate is detachably fixedly mounted on the seat plate.
6. The shaping machine for a water-cooled plate according to claim 1, wherein: A buffer table for placing the plate body is also arranged on the machine platform and is located next to the placing mechanism.