A new energy battery water cooling plate processing device and method
By designing a new energy battery water-cooled plate processing device including racks, brackets and processing components, the problems of poor fixing stability and low positioning accuracy of the water-cooled plate are solved, and high-precision water-cooled plate processing is realized, which is suitable for the mass production of water-cooled plates in new energy vehicles.
Patent Information
- Application Number
- CN202411430998.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2044-10-14
AI Technical Summary
In the prior art, the fixing firmness of the water-cooled plates is poor and the positioning accuracy is low, which cannot meet the high-precision processing needs of water-cooled plates of new energy vehicles.
A new energy battery water-cooled plate processing device is designed, including racks, brackets and processing components. The bracket realizes stable positioning and clamping of the water-cooled plate through structures such as T-blocks, through grooves and push blocks. The processing components use horizontal slide tables and vertical slide table driving tools for cutting and processing.
It improves the accuracy and stability of water-cooled plate processing, simplifies processing operations, and is suitable for automotive battery water-cooled plates of different specifications, and is suitable for mass production of new energy vehicle water-cooled plate components.
Smart Images

Figure CN119282723B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of battery water cooling plate processing, and in particular to a new energy battery water cooling plate processing device and a method thereof. Background Art
[0002] New energy vehicles are battery-driven, and the water cooling plate installed on the driving battery pack can cool and protect the battery and reduce the temperature difference between the battery cells.
[0003] In the prior art, the name disclosed in the application number: CN202220713131.4 is: a drilling device for processing a commercial vehicle water-cooling plate shell, which includes a base placed on the ground, a processing table is fixedly provided on the upper end of one side of the base, a fixing frame is installed on the upper end of the processing table, a positioning plate is installed on the upper end of one side of the fixing frame, a fixed splint is provided at one end of the positioning plate, a movable brace plate is slidably installed on the surface of the fixing frame, and a movable splint is provided on the side of the movable brace plate opposite to the fixed splint.
[0004] However, the drilling device mentioned in the prior art has poor fixing firmness of the water-cooling plate during water-cooling plate processing, and the hole cutting and processing operation at the end of the water-cooling plate is cumbersome and has low positioning accuracy, which cannot meet the high-precision processing requirements of new energy vehicle water-cooling plates. Therefore, it is necessary to design a new energy battery water-cooling plate processing device and method. Summary of the invention
[0005] The object of the present invention is to provide a new energy battery water cooling plate processing device and method thereof to solve the problems in the prior art.
[0006] The purpose of the present invention can be achieved through the following technical solutions:
[0007] A new energy battery water-cooling plate processing device comprises a frame on which a bracket for clamping the water-cooling plate is symmetrically slidably disposed.
[0008] The bracket includes a T-shaped block, one end of the T-shaped block is provided with a loading groove, one side of the T-shaped block is provided with a through groove, a push block is slidably arranged in the through groove, one end of the push block is fixedly connected to a right-angle block, one side of the push block is fixedly connected to a side plate, and the side plate is provided with an inclined groove surface for water-cooling plate processing and positioning at one end away from the push block.
[0009] A U-shaped groove is provided in the loading groove, and a claw for supporting the water cooling plate is rotated in the U-shaped groove, one end of the claw is abutted against the bottom of the right-angle block, and the other end is fixedly connected to a fan-shaped plate, an axle is fixed at the axis of the fan-shaped plate, and a moving rod is fixed on the side of the fan-shaped plate.
[0010] Furthermore, the frame is fixed with a positioning plate for fixing the side of the water-cooling plate, the frame is fixed with a dust cover, the frame is slid with a top plate for fixing the water-cooling plate, the frame is fixed with a bracket, the bracket is fixed with motor 2, the output end of motor 2 is fixedly connected with a swing arm, and the swing arm is rotatably provided with a driven rod connected to the top plate.
[0011] Furthermore, a straight groove is symmetrically provided on the frame and located on one side of the bracket, a movable frame for installing a T-shaped block slides in the straight groove, a rack is fixed to one side of the movable frame, and a sink groove connected to the straight groove is provided on the frame.
[0012] A gear rotates in the sink, a motor three is fixed on the frame, an output end of the motor three is fixedly connected to the gear, the gear is meshed between two racks, and the two racks slide in the sink.
[0013] Furthermore, a processing assembly is provided between the two brackets, and the processing assembly includes a horizontal slide and a vertical slide. The horizontal slide is a bidirectional slide, and sliders are symmetrically slid on the horizontal slide. The two vertical slides are respectively vertically slidably installed on the two sliders of the horizontal slide, and a support plate is provided on the vertical slide.
[0014] Furthermore, a mounting block is slidably mounted on the vertical slide, a spring 1 is fixedly connected to the mounting block, one end of the spring 1 is fixedly connected to the vertical slide, the mounting block is affixed to the support plate, a motor 4 is fixed to the mounting block, a motor 5 is symmetrically fixedly mounted to the output end of the motor 4, and the output ends of the two motors 5 are arranged in opposite directions.
[0015] The output ends of the two motors 5 are respectively fixedly connected with a drill and a cutting tool for cutting the water-cooled plate. A cross bar is fixed on one side of the vertical slide, and a groove is provided on the cross bar. A limit groove is provided at the end of the cross bar.
[0016] Furthermore, a guide groove is provided in the through groove, one end of the through groove is fixed with spring 2, and the other end is connected with the U-shaped groove, one end of the push block is fixedly connected with spring 2, the right-angle block is slidably connected with the guide groove, one end of the claw is slidably connected with the inclined surface on the right-angle block, and an arc groove is provided on one side of the T-shaped block, and the arc groove is located on one side of the loading slot.
[0017] The arc groove is connected with the U-shaped groove, the moving rod and the shaft rod are parallel and penetrated on the T-shaped block, the moving rod is slidably connected with the arc groove, the moving rod slides under the cross bar, and a spring three is fixed in the U-shaped groove and under the fan-shaped plate.
[0018] One end of the spring is fixedly connected to the supporting claw, the moving rod is matched with the groove, and the shaft rod is matched with the limiting groove.
[0019] Furthermore, a motor 1 is symmetrically fixed on the frame, a cylinder 1 is fixed to the output end of the motor 1, and a clamping plate for clamping a water-cooling plate is fixed to the output end of the cylinder 1.
[0020] Furthermore, a side frame is fixed on the frame, a cylinder 2 is fixed on the side frame, a slide groove is symmetrically provided on the side frame, a detection frame slides in the slide groove, a spring 4 is fixed in the slide groove, one end of the spring 4 is fixedly connected to the detection frame, a motor 6 is fixed on the detection frame, and a steering plate is fixedly connected to the output end of the motor 6.
[0021] A guide plate is fixed on the direction adjustment plate, open grooves are arranged at both ends of the guide plate, ejector pins are arranged in an array and slide on the direction adjustment plate, a detection rod is arranged and slides on the direction adjustment plate, the ejector pins and the detection rod are both slidably connected to the guide plate, and pressure sensors are fixed at the ends of the ejector pins and the detection rod.
[0022] Furthermore, a horizontal axis is fixed between the two ejectors, a spring five is fixed on the outside of the ejector, one end of the spring five is fixed on the adjustment plate, a rocker arm is rotatably arranged on the guide plate, through slots are arranged at both ends of the rocker arm, one through slot is slidably connected to the horizontal axis, and the other through slot is slidably connected to the top of the detection rod.
[0023] A method for using a new energy battery water cooling plate processing device, the method comprising the following steps:
[0024] S1. Load the water-cooling plate onto two brackets, the water-cooling plate is automatically positioned on the processing device, the brackets lock the ends of the water-cooling plate, and the water-cooling plate is vertically positioned on the rack.
[0025] S2. Use the clamping plate to clamp the side of the water-cooling plate, and at the same time push the top plate to fit the surface of the water-cooling plate to stably fix the water-cooling plate.
[0026] S3. Use the vertical slide to drive the support plate to move up, so that the tool can advance, and cut the end of the water-cooling plate where the tool is located to quickly machine the required holes and grooves.
[0027] Beneficial effects of the present invention:
[0028] 1. The processing device of the present invention processes the holes and grooves on the side of the water-cooling plate by designing a vertical frame, thereby simplifying the processing operation. At the same time, the bracket supports and positions the water-cooling plate, thereby accelerating the efficiency of loading and unloading the water-cooling plate, thereby improving the accuracy of the water-cooling plate processing and ensuring the stability of the hole and groove processing on the side of the water-cooling plate;
[0029] 2. The processing device of the present invention has a simple structure and can perform cutting processing on automobile battery water cooling plates of different specifications. It is suitable for processing different types of new energy automobile water cooling plate accessories, has high processing precision, and the water cooling plate is firmly clamped during the processing;
[0030] 3. The method of the present invention has few operating procedures and a simple processing method. It can quickly position and clamp the automobile water-cooling plate and perform high-precision water-cooling plate hole and groove processing. It has a wide range of processing applications and is suitable for mass production of new energy automobile water-cooling plate components. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The present invention will be further described below in conjunction with the accompanying drawings.
[0032] Figure 1 It is a schematic diagram of the structure of the processing device of the present invention;
[0033] Figure 2 It is a schematic diagram of the structure of the processing device of the present invention;
[0034] Figure 3 It is a structural schematic diagram of the frame of the present invention;
[0035] Figure 4 It is a schematic diagram of the structure of the processing assembly of the present invention;
[0036] Figure 5 It is a partial structural schematic diagram of the processing assembly and the bracket of the present invention;
[0037] Figure 6 It is a structural schematic diagram of the bracket of the present invention;
[0038] Figure 7 is a schematic cross-sectional structure diagram of the bracket of the present invention;
[0039] Figure 8 It is a partial structural schematic diagram of the side frame of the present invention.
[0040] The accompanying drawings are as follows:
[0041] 1. Frame; 2. Bracket; 3. Processing assembly; 4. Motor 1; 5. Side frame; 6. Top plate; 10. Dust cover; 11. Positioning plate; 12. Bracket; 13. Motor 2; 14. Swing arm; 15. Follower rod; 16. Straight groove; 17. Sink groove; 18. Moving frame; 19. Rack; 21. T-shaped block; 22. Through groove; 23. Guide groove; 24. Spring 2; 25. Push block; 26. Right-angle block; 27. Side plate; 28. Bevel groove surface; 29. Fan plate; 30. Crossbar; 31. Horizontal slide; 32. Vertical slide; 33. Support plate; 34. Mounting block; 35. Spring 1; 36. Motor 4; 37. Motor 5; 38. Drill; 39. Cutting knife; 41. Cylinder one; 42. Clamp; 50. Horizontal axis; 51. Cylinder two; 52. Slide; 53. Spring four; 54. Detection frame; 55. Motor six; 56. Adjustment plate; 57. Guide plate; 58. Open slot; 59. Ejector; 100. Gear; 101. Motor three; 201. Loading slot; 202. Arc slot; 203. U-shaped slot; 204. Spring three; 291. Moving rod; 292. Shaft rod; 293. Claw; 301. Groove; 302. Limiting slot; 311. Slider; 500. Detection rod; 501. Spring five; 502. Rocker; 503. Through slot. DETAILED DESCRIPTION
[0042] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention.
[0043] A new energy battery water cooling plate processing device, wherein the water cooling plate is installed at the bottom of the new energy vehicle battery to support and protect the new energy vehicle battery. At the same time, the water cooling plate can cool the battery by water. It is a component of the new energy vehicle. The processing device is used to grind the water inlet and outlet of the water cooling plate.
[0044] like Figure 1 As shown, the processing device includes a frame 1, on which a symmetrically distributed motor 4 is fixed, on which a symmetrically distributed bracket 2 is slidably provided, a processing assembly 3 is arranged between the two brackets 2, and on which a side frame 5 is fixed.
[0045] like Figure 2 As shown, a cylinder 41 is fixedly mounted on the output end of a motor 4, a clamping plate 42 is fixedly connected to the output end of a cylinder 41, a bracket 2 is located at the end of a water-cooled plate, a deep hole grinding process is performed on the end of the water-cooled plate vertically loaded on a rack 1, and the edge of the water-cooled plate is clamped by a clamping plate 42 located on the side of the water-cooled plate so that the water-cooled plate fits on the rack 1.
[0046] A positioning plate 11 is fixedly provided on the frame 1, and the positioning plate 11 is located on the side of the water-cooled plate to facilitate auxiliary positioning when the water-cooled plate is loaded. A dust cover 10 is fixedly provided on the frame 1, and a top plate 6 is slidably provided on the frame 1. The top plate 6 moves to fit the surface of the water-cooled plate to fix the middle part of the surface of the water-cooled plate. A bracket 12 is fixedly provided on the frame 1, and a motor 2 13 is fixedly provided on the bracket 12. The output end of the motor 2 13 is fixedly connected to a swing arm 14, and a driven rod 15 is rotatably connected to the swing arm 14.
[0047] One end of the driven rod 15 is rotatably connected to the swing arm 14, and the other end is rotatably connected to the top plate 6 to control the movement of the top plate 6 to fix the water-cooling plate. After the water-cooling plate is processed, in order to avoid the water-cooling plate from being adsorbed on the frame 1, the top plate 6 pushes the water-cooling plate to facilitate unloading.
[0048] A symmetrically distributed straight groove 16 is provided on the frame 1 and located on one side of the bracket 2, a moving frame 18 is slidably provided in the straight groove 16, the bracket 2 is fixedly installed on one side of the moving frame 18, and a rack 19 is fixedly connected to the other side of the moving frame 18. A sink groove 17 is provided on the frame 1, the sink groove 17 is connected to the two straight grooves 16, the two racks 19 are arranged opposite to each other, and the rack 19 is slidably installed in the sink groove 17.
[0049] A gear 100 is rotatably provided in the trough 17, and a motor 3 101 is fixedly provided on the frame 1. The output end of the motor 3 101 is fixedly connected to the axis of the gear 100 to control the gear 100 to rotate between the two racks 19. The gear 100 is engaged between the two racks 19 and simultaneously drives the two racks 19 to translate toward or in the opposite direction, thereby adjusting the spacing between the two brackets 2 to facilitate processing and supporting water-cooling plates of different widths.
[0050] like Figure 3 , Figure 4 , Figure 5 As shown, the processing assembly 3 includes a horizontal slide 31 and a vertical slide 32. The horizontal slide 31 is a bidirectional slide. The horizontal slide 31 is provided with symmetrically distributed sliders 311. The sliders 311 move horizontally under the drive of the horizontal slide 31 to adjust the distance between the two sliders 311.
[0051] The two vertical slides 32 are slidably mounted on the two sliders 311 on the horizontal slide 31, and the distance between the two vertical slides 32 is adjusted to match the different distances between the water inlet and outlet of the processing water cooling plate. Both the horizontal slide 31 and the vertical slide 32 adopt the model ECH22.
[0052] A support plate 33 is provided on the vertical slide 32. The support plate 33 moves vertically to adjust the height under the drive of the vertical slide 32. A mounting block 34 is slidably provided on the vertical slide 32. A spring 35 is fixedly connected to the upper side of the mounting block 34. The other end of the spring 35 is fixedly connected to the top of the vertical slide 32. The lower side of the mounting block 34 is attached to the support plate 33, and the support plate 33 supports the mounting block 34.
[0053] A motor 4 36 is fixedly mounted on the mounting block 34, and an output end of the motor 4 36 is fixedly connected to a symmetrically distributed motor 5 37, and the output ends of the two motors 5 37 are arranged in opposite directions, and a drill 38 and a cutting tool 39 are fixedly connected to the output ends of the two motors 5 37, respectively. The drill 38 is used for drilling holes at the end of the water-cooling plate, penetrating the end plate of the water-cooling plate, so that the processed water inlet and outlet are connected to the water channel inside the water-cooling plate.
[0054] Driven by motor four 36, motor five 37 is controlled to rotate 180 degrees, so that the positions of the two tools are interchanged. The cutter head of the cutting tool 39 is vertically upward, and the inner walls of the processed inlet and outlet are ground and the hole wall is cut to meet the subsequent welding and installation requirements of the inlet and outlet joints. At the same time, the outer end of the hole is chamfered, which is beneficial to the installation and positioning of the inlet and outlet joints.
[0055] The tool is arranged below the water-cooling plate so that the machining process is carried out in the dust cover 10 to avoid waste chips and splashing of coolant. At the same time, the main body of the water-cooling plate is fixed, and the water-cooling plate is placed on the bracket 2 due to gravity. The tool is then used to perform cutting processing on the end of the water-cooling plate from bottom to top, which can reduce the vibration of the water-cooling plate, reduce machining errors, and improve the machining accuracy of the water-cooling plate.
[0056] A cross bar 30 is fixedly provided on one side of the vertical slide 32 . A groove 301 is provided on the cross bar 30 . A limiting groove 302 is provided at the end of the cross bar 30 . The cross bar 30 moves vertically to make the vertical slide 32 slide vertically on the slider 311 .
[0057] like Figure 6 , Figure 7 As shown, the bracket 2 includes a T-shaped block 21, one end of the T-shaped block 21 is fixedly connected to the mobile frame 18, the other end of the T-shaped block 21 is provided with a loading slot 201, one side of the T-shaped block 21 is provided with a through slot 22, a guide slot 23 is provided in the through slot 22, a spring 24 is fixedly installed at one end of the through slot 22, and the other end is connected to a U-shaped slot 203, the guide slot 23 is connected to the U-shaped slot 203, and a push block 25 is slidably provided in the through slot 22.
[0058] One end of the push block 25 is fixedly connected to one end of the spring 24, and the other end of the push block 25 is fixedly connected to a right-angle block 26. The inclined surface of the right-angle block 26 is downward, and the right-angle block 26 is slidably connected to the guide groove 23. The side of the push block 25 away from the processing component 3 is fixedly connected to a side plate 27, and an end of the side plate 27 away from the push block 25 is provided with a bevel groove surface 28.
[0059] The U-shaped groove 203 is located in the loading groove 201, and a claw 293 is rotatably provided in the U-shaped groove 203. One end of the claw 293 abuts against the bottom of the right-angle block 26, and one end of the claw 293 is slidably connected to the inclined surface of the right-angle block 26. The other end of the claw 293 is fixedly connected to the fan-shaped plate 29. An arc groove 202 is opened on one side of the T-shaped block 21. The arc groove 202 is located on one side of the loading groove 201, and the arc groove 202 is connected to the U-shaped groove 203.
[0060] An axle rod 292 is fixed at the axis of the fan-shaped plate 29, and a moving rod 291 is fixed on the side of the fan-shaped plate 29. The moving rod 291 and the axle rod 292 are penetrated and arranged on the T-shaped block 21. The moving rod 291 is slidably connected to the arc groove 202, and the moving rod 291 is guided and supported by the arc groove 202. The moving rod 291 is arranged parallel to the axle rod 292, and the moving rod 291 is slidably connected to the bottom of the cross bar 30.
[0061] A horizontally arranged spring three 204 is fixedly provided in the U-shaped groove 203 and below the fan-shaped plate 29, and one end of the spring three 204 abuts against one side of the claw 293. When there is no pressure on the claw 293, the spring three 204 pushes the claw 293 to tilt up, and the end of the claw 293 slides on the inclined plane, pushing the right-angle block 26 to move horizontally, and the push block 25 compresses the spring two 24.
[0062] The claw 293 is retracted into the U-shaped groove 203 due to the pressure from the water cooling plate above. When the moving rod 291 and the shaft rod 292 are located in the same horizontal plane, the spring three 204 is compressed, the moving rod 291 cooperates with the groove 301, and the shaft rod 292 cooperates with the limiting groove 302.
[0063] Correspondingly, the vertical slide 32 slides upward on the surface of the slider 311 under the pull of the cross bar 30 until the tool head of the processing tool is lifted to the end of the water-cooling plate, automatically completing the positioning processing position, and then the vertical slide 32 is used to drive the support plate 33 to move upward, pushing the mounting block 34 to approach the end of the water-cooling plate, and feeding the tool to perform cutting processing on the water-cooling plate.
[0064] When the claw 293 is retracted into the U-shaped groove 203, the spring 24 pushes the push block 25 to approach the loading groove 201, and the inclined groove surface 28 slides over the side of the water-cooling plate, squeezing the water-cooling plate to move horizontally until the water-cooling plate is located between the two side plates 27, ensuring that the water-cooling plate is accurately located on the processing station.
[0065] like Figure 8 As shown, a cylinder 2 51 is fixedly provided on the side frame 5, symmetrically distributed slide grooves 52 are opened on the side frame 5, a detection frame 54 is slidably provided on the side frame 5, the detection frame 54 slides in the slide groove 52, a spring 4 53 is fixedly installed in the slide groove 52, and one end of the spring 4 53 is fixedly connected to the detection frame 54 to support the detection frame 54.
[0066] A motor 55 is fixedly mounted on the detection frame 54, and an adjustment plate 56 is fixedly connected to the output end of the motor 55. A guide plate 57 is fixedly mounted on the adjustment plate 56. Open grooves 58 are provided at both ends of the guide plate 57. An array of ejector pins 59 are slidably mounted on the adjustment plate 56. A detection rod 500 is slidably mounted on the adjustment plate 56. Both the ejector pin 59 and the detection rod 500 are slidably connected to the guide plate 57.
[0067] A horizontal axis 50 is fixedly connected between the two ejector pins 59, and a spring 501 is sleeved on the outer side of the ejector pin 59. One end of the spring 501 is fixed on the adjustment plate 56, and the other end is fixedly connected to the ejector pin 59. A rocker rod 502 is rotatably provided on the guide plate 57, and through grooves 503 are provided at both ends of the rocker rod 502. The through groove 503 at one end of the rocker rod 502 is slidably connected to the horizontal axis 50, and the through groove 503 at the other end is slidably connected to the top of the detection rod 500.
[0068] Pressure sensors (not shown in the figure) are fixed to the ends of the ejector pin 59 and the detection rod 500. The pressure sensor is of model FSR-A406.
[0069] After the motor six 55 is started, the guide plate 57 is adjusted to be parallel to the water-cooling plate, and the ejector pin 59 contacts the surface of the water-cooling plate. At this time, the spring five 501 is in a stretched state, and then the cylinder two 51 pushes the detection frame 54 to move, and the spring four 53 pulls the detection frame 54 to reset. The ejector pin 59 impacts the water-cooling plate to generate pressure. The pressure sensor detects the pressure. The ejector pin 59 pulls the spring five 501 and pushes the horizontal axis 50 to move at the same time, which can drive the swing rod 502 to rotate. The other end of the swing rod 502 presses down the detection rod 500 to move.
[0070] The end of the detection rod 500 is fitted into the water-cooling plate. When the rocker arm 502 is horizontal with the guide plate 57, if the pressures detected by the pressure sensors on the detection rod 500 and the ejector pin 59 are the same, the strength of the water-cooling plate meets the product standards for new energy vehicles. If the pressures detected by the pressure sensors on the detection rod 500 and the ejector pin 59 are different, the material of the water-cooling plate product is weak, and its pressure and impact resistance are low, and defective water-cooling plates can be screened out.
[0071] A method for using a new energy battery water cooling plate processing device, the method comprising the following steps:
[0072] S1. Load the water-cooling plate onto two brackets 2. The water-cooling plate is automatically positioned on the processing device. The brackets 2 lock the ends of the water-cooling plate. The water-cooling plate is vertically positioned on the rack 1.
[0073] S2. The side of the water-cooling plate is clamped by the clamping plate 42, and the top plate 6 is pushed to fit with the surface of the water-cooling plate to stably fix the water-cooling plate.
[0074] S3, using the vertical slide 32 to drive the support plate 33 to move upward, so that the tool advances, and cuts the end of the water-cooling plate where the tool is located, and quickly processes the required hole groove.
[0075] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments, and the above embodiments and descriptions are only for explaining the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, and these changes and improvements all fall within the scope of the present invention to be protected.
Claims
1. A new energy battery water cooling plate processing device, comprising a frame (1), characterized in that: A bracket (2) for clamping a water cooling plate is symmetrically slidably disposed on the frame (1); The bracket (2) comprises a T-shaped block (21), one end of the T-shaped block (21) is provided with a loading groove (201), one side of the T-shaped block (21) is provided with a through groove (22), a push block (25) is slidably provided in the through groove (22), one end of the push block (25) is fixedly connected to a right-angle block (26), one side of the push block (25) is fixedly connected to a side plate (27), and an end of the side plate (27) away from the push block (25) is provided with an inclined groove surface (28) for positioning the water-cooling plate during processing; The loading groove (201) is provided with a U-shaped groove (203), a supporting claw (293) for supporting the water cooling plate is rotatably provided in the U-shaped groove (203), one end of the supporting claw (293) is abutted against the bottom of the right-angle block (26), and the other end is fixedly connected to the fan-shaped plate (29), a shaft (292) is fixed at the axis of the fan-shaped plate (29), and a moving rod (291) is fixed to the side of the fan-shaped plate (29); The frame (1) is fixed with a positioning plate (11) for fixing the side of the water-cooling plate, the frame (1) is fixed with a dust cover (10), the frame (1) is slidably provided with a top plate (6) for fixing the water-cooling plate, the frame (1) is fixed with a bracket (12), a second motor (13) is fixed with the bracket (12), an output end of the second motor (13) is fixedly connected with a swing arm (14), and a driven rod (15) rotatably connected with the top plate (6) is rotatably provided on the swing arm (14); A straight groove (16) is symmetrically provided on the frame (1) and located on one side of the bracket (2); a movable frame (18) for mounting a T-shaped block (21) is slidably disposed in the straight groove (16); a rack (19) is fixedly connected to one side of the movable frame (18); and a sink groove (17) is provided on the frame (1) and is communicated with the straight groove (16); A gear (100) rotates in the sink (17), a motor (101) is fixed on the frame (1), an output end of the motor (101) is fixedly connected to the gear (100), the gear (100) is meshed between two racks (19), and the two racks (19) slide in the sink (17); A processing assembly (3) is provided between the two brackets (2), the processing assembly (3) comprising a horizontal slide (31) and a vertical slide (32), the horizontal slide (31) being a bidirectional slide, a slider (311) symmetrically sliding on the horizontal slide (31), two vertical slides (32) respectively vertically slidingly mounted on the two sliders (311) of the horizontal slide (31), and a support plate (33) being provided on the vertical slide (32); A mounting block (34) is slidably mounted on the vertical slide (32), a spring (35) is fixedly mounted on the mounting block (34), one end of the spring (35) is fixedly connected to the vertical slide (32), the mounting block (34) is fitted on the support plate (33), a motor (36) is fixedly mounted on the mounting block (34), a motor (37) is symmetrically fixedly mounted on the output end of the motor (36), and the output ends of the two motors (37) are arranged in opposite directions; The output ends of the two motors (37) are respectively fixedly connected with a drill (38) and a cutting tool (39) for cutting the water-cooled plate. A crossbar (30) is fixed on one side of the vertical slide (32). A groove (301) is provided on the crossbar (30). A limit groove (302) is provided at the end of the crossbar (30).
2. A new energy battery water cooling plate processing device according to claim 1, characterized in that: A guide groove (23) is provided in the through groove (22), a spring 2 (24) is fixed at one end of the through groove (22), and the other end is communicated with the U-shaped groove (203), one end of the push block (25) is fixedly connected to the spring 2 (24), the right-angle block (26) is slidably connected to the guide groove (23), one end of the claw (293) is slidably connected to the inclined surface on the right-angle block (26), and an arc groove (202) is provided on one side of the T-shaped block (21), and the arc groove (202) is located on one side of the object loading groove (201); The arc groove (202) is connected to the U-shaped groove (203), the moving rod (291) and the shaft rod (292) are arranged on the T-shaped block (21) in parallel, the moving rod (291) is slidably connected to the arc groove (202), the moving rod (291) slides under the cross bar (30), and a spring three (204) is fixed in the U-shaped groove (203) and below the fan-shaped plate (29); One end of the spring three (204) is fixedly connected to the supporting claw (293), the moving rod (291) cooperates with the groove (301), and the shaft rod (292) cooperates with the limiting groove (302).
3. A new energy battery water cooling plate processing device according to claim 1, characterized in that: A motor 1 (4) is symmetrically fixed on the frame (1); a cylinder 1 (41) is fixed to the output end of the motor 1 (4); and a clamping plate (42) for clamping a water cooling plate is fixed to the output end of the cylinder 1 (41).
4. A new energy battery water cooling plate processing device according to claim 1, characterized in that: The frame (1) is fixed with a side frame (5), a cylinder 2 (51) is fixed on the side frame (5), a slide groove (52) is symmetrically provided on the side frame (5), a detection frame (54) slides in the slide groove (52), a spring 4 (53) is fixed in the slide groove (52), one end of the spring 4 (53) is fixedly connected to the detection frame (54), a motor 6 (55) is fixed on the detection frame (54), and an output end of the motor 6 (55) is fixedly connected to a steering plate (56); A guide plate (57) is fixed on the direction adjustment plate (56), and opening grooves (58) are provided at both ends of the guide plate (57). An array of ejector pins (59) are slidably arranged on the direction adjustment plate (56), and a detection rod (500) is slidably arranged on the direction adjustment plate (56). The ejector pins (59) and the detection rod (500) are both slidably connected to the guide plate (57), and pressure sensors are fixed to the ends of the ejector pins (59) and the detection rod (500).
5. A new energy battery water cooling plate processing device according to claim 4, characterized in that: A transverse axis (50) is fixedly connected between the two ejector pins (59), a spring five (501) is fixed on the outer side of the ejector pin (59), one end of the spring five (501) is fixed on the direction adjustment plate (56), a swing rod (502) is rotatably arranged on the guide plate (57), through grooves (503) are arranged at both ends of the swing rod (502), one through groove (503) is slidably connected to the transverse axis (50), and the other through groove (503) is slidably connected to the top of the detection rod (500).
6. A method for using a new energy battery water cooling plate processing device according to any one of claims 1 to 5, characterized in that: The method of use comprises the following steps: S1. Load the water-cooling plate onto two brackets (2), the water-cooling plate is automatically positioned on the processing device, the brackets (2) lock the ends of the water-cooling plate, and the water-cooling plate is vertically positioned on the rack (1); S2, using the clamping plate (42) to clamp the side of the water-cooling plate, and at the same time, the top plate (6) is pushed to fit the surface of the water-cooling plate, so as to stably fix the water-cooling plate; S3, using the vertical slide (32) to drive the support plate (33) to move upward, so that the tool advances, and the end of the water-cooling plate where the tool is positioned is cut to quickly machine the required hole groove.
Citation Information
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