Liquid cooling plate compression molding equipment
Through the combination of molding production structure, transmission and guidance structure and trimming processing structure, the problem of inconvenient connection and automatic trimming in liquid-cooled plate molding equipment is solved, and an efficient and automated liquid-cooled plate production line is realized.
Patent Information
- Application Number
- CN202411402784.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2044-10-09
AI Technical Summary
The existing liquid-cooled plate molding equipment has problems such as inconvenient connection of multiple steps, low production efficiency, and manual trimming after forming, making it difficult to achieve automated and efficient production.
A liquid-cooled plate molding equipment is designed, including a molding production structure, a transmission guide structure and a dressing treatment structure. Pressure casting is carried out through the molding production structure, and automatic transmission of the transmission guide structure is carried out through the dressing treatment structure to ensure smooth connection of multi-step production and product aesthetics.
The flow-through production is achieved, the production efficiency is improved, the multi-sided automatic dressing of liquid-cooled plates is ensured, and the aesthetics of molding and production efficiency are improved.
Smart Images

Figure CN119368700B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of compression molding, in particular to a liquid cooling plate compression molding device. Background Art
[0002] The cold plate is similar to the radiator in air cooling or natural heat dissipation. It is a relatively variable component in liquid cooling design. The liquid cooling plate is used inside the car to perform heat dissipation treatment. When the liquid cooling plate is produced, equipment is required for molding to realize the mechanized production and processing of the liquid cooling plate. Liquid cooling plates are mostly made of aluminum alloy materials.
[0003] Chinese patent publication number CN116037895A discloses a metal compression molding equipment and its molding process, wherein the compression molding equipment includes a base, a molding lower mold is installed on the upper side of the base; a lower press seat, the lower press seat is located above the base for lifting and lowering, and a molding upper mold corresponding to the molding lower mold is provided on the lower side of the lower press seat, and the lower press seat drives the molding upper mold and the molding lower mold to close the mold so that a molding mold cavity is formed between the molding upper mold and the molding lower mold; a storage cavity, the storage cavity is located on the molding lower mold, and is used to store the metal melt used for molding. The storage cavity is surrounded by a movable mold core provided on the molding lower mold, and the lower end of the movable mold core is provided with a movable part. When the molding upper mold and the molding lower mold are closed, the movable mold core actively or passively moves downward.
[0004] Currently, liquid cooling plate molding equipment and the above-mentioned cases mostly use mechanical structures to produce liquid cooling plates. However, due to the structural characteristics of liquid cooling plates, pressure casting is required to help the liquid cooling plates be molded and improve the degree of integration. In actual processing, it is often inconvenient to connect the multiple steps of production, which reduces production efficiency. At the same time, after molding, automated trimming is also required, which increases the size requirements of the product. Summary of the Invention
[0005] In view of the problems in the prior art, the present invention provides a liquid cooling plate compression molding device.
[0006] The technical solution adopted by the present invention to solve its technical problems is: a liquid cooling plate molding equipment, including a molding production structure, a transmission guide structure and a finishing processing structure, the front end of the molding production structure is connected to a transmission guide structure, the front end of the transmission guide structure is connected to a finishing processing structure, the transmission guide structure is used for the transmission guidance of the liquid cooling plate and simultaneously performs parameter scanning of the liquid cooling plate, the finishing processing structure performs finishing processing of the liquid cooling plate, the molding production structure is used for the molding processing of the liquid cooling plate, and the molding production structure adopts pressure casting to process the liquid cooling plate, through the overall arrangement of the molding production structure, the transmission guide structure and the finishing processing structure, it is possible to carry out streamlined production, so that multi-step production is conveniently connected, and production efficiency is improved, and at the same time the structural arrangement of the finishing processing structure facilitates automated finishing processing, performs multi-faceted finishing of the liquid cooling plate, and improves the aesthetics of the molding;
[0007] The molding production structure includes a liquid guiding mold base, a docking tube, a guiding heating pipe and a heat preservation seat. The lower end of the liquid guiding mold base is connected with a docking tube, the lower end of the docking tube is connected with a guiding heating pipe, the side end of the guiding heating pipe is connected with a docking tube, the bottom of the guiding heating pipe is supported by the heat preservation seat, the lower end of the heat preservation seat is fixedly connected with a protective base, the side end of the protective base is fixed to the molding production component, and the docking tube is connected with the molding production component, and the molding production component performs molding and cooling processing of the liquid cooling plate.
[0008] Specifically, the molding production components include a hydraulic control seat, an upper mold seat and a reinforcement base. The lower end of the hydraulic control seat controls the telescopic adjustment of the upper mold seat. The side end of the reinforcement base is fixedly connected to the reinforcement production seat. The upper end of the reinforcement production seat is limitedly connected to the lower mold seat. The upper end of the lower mold seat is provided with a sealing seat. The side end of the lower mold seat is connected with a liquid guide pipe. The lower end of the liquid guide pipe is connected with a cooling pipe through a docking connecting pipe. The cooling pipe, docking connecting pipe and liquid guide pipe are symmetrically arranged. The upper cooling pipe, docking connecting pipe and liquid guide pipe are connected with the upper mold seat to cool the upper mold seat. The lower cooling pipe, docking connecting pipe and liquid guide pipe are connected The guide tube and the liquid guide tube are used to cool down the inside of the lower die seat. The structural setting of the mold pressing production structure facilitates the forming process of the liquid cooling plate. The aluminum liquid can enter the docking tube and the guide heating tube through the liquid guide die seat, and then be transmitted to the inside of the lower die seat through the docking connecting pipe. At the same time, the hydraulic control seat controls the upper die seat, the lower die seat and the sealing seat to seal and close. At this time, liquid is injected into the sealed cavity. With the cooperation of the upper die seat and the lower die seat, molding can be achieved. At the same time, the cooling tube, the docking connecting tube and the liquid guide tube can cool down the upper die seat and the lower die seat, so that the internal aluminum liquid is cooled quickly, which helps to carry out the forming process of the liquid cooling plate, thereby achieving the purpose of preliminary forming processing.
[0009] Specifically, the transmission guide structure includes a guide arm component, a first visual scanner and a mounting frame. The front end of the guide arm component is fixedly connected to the mounting frame. The first visual scanner is installed on the upper end of the mounting frame. The side end of the mounting frame is provided with a transmission channel. The side end of the transmission channel is provided with a discharge matching component. The transmission channel is used for the transmission of the liquid cooling plate. The discharge matching component is used to take the liquid cooling plate, thereby taking the liquid cooling plate to the interior of the transmission guide structure through the molding production structure.
[0010] Specifically, the guiding arm component includes a first hydraulic lifting seat and a pad, the upper end of the pad is fixedly connected to the first hydraulic lifting seat, the upper end of the first hydraulic lifting seat is telescopically connected to the stepping motor seat, the stepping motor seat controls the rotation of the rotating disk, the upper center end of the rotating disk is fixedly connected to the connecting end frame, and the connecting end frame is hingedly provided with a rotation adjusting rod, the side end of the rotating disk is fixedly connected to the side frame, the side frame is hingedly provided with a hydraulic adjusting rod, the top of the hydraulic adjusting rod is hingedly provided with a connecting rod, and the connecting rod is fixedly connected to the rotation adjusting rod, the side end of the rotation adjusting rod is fixedly connected to the connecting shaft frame, the side end of the connecting shaft frame is fixedly connected to the supporting base frame, the front and rear ends of the supporting base frame are symmetrically provided with hydraulic telescopic adjusting seats, and the hydraulic telescopic adjusting seats are telescopically connected to the limiting frame.
[0011] Specifically, the discharging matching component includes a track block and a motor, the track block is equipped with a motor, and the first screw rod is connected to the first screw rod, the first screw rod is threadedly connected to the first displacement frame and the second displacement frame, the first displacement frame and the second displacement frame are fixedly connected, the upper end of the first displacement frame is hingedly provided with a hydraulic telescopic guide rod through a hinged guide seat, the upper end of the second displacement frame is hingedly provided with an adjusting hinge rod, and the adjusting hinge rod is hingedly arranged with the hydraulic telescopic guide rod, the top of the adjusting hinge rod is fixedly installed with a hydraulic control machine base, the side end of the hydraulic control machine base is telescopically connected with a telescopic adjustment block, and a mechanical clamping arm seat is installed on the telescopic adjustment block;
[0012] The lower end of the mechanical clamping arm seat is attached with a docking mechanical clamping arm, which clamps the liquid cooling plate through the mechanical clamping arm, thereby clamping the liquid cooling plate through the upper end of the lower mold seat, and then cooperates with the guide arm component to transfer the liquid cooling plate to the limit frame and the support base frame, and the guide arm component controls the liquid cooling plate to continue to move, so that the liquid cooling plate reaches the transmission channel and continues to be transmitted in cooperation with the transmission channel. Through the structural setting of the transmission guide structure, the liquid cooling plate can be automatically transmitted. When the liquid cooling plate is cooled to a suitable temperature, the discharge matching component at this time works, and the first screw rod is driven by the motor to rotate to change the position of the first displacement frame and the second displacement frame. At the same time, the combined frame block is extended to change the angle of the adjustment hinge rod. After reaching the appropriate position, The hydraulic control base controls the extension of the telescopic adjustment block, and a mechanical clamping arm is attached to the lower end of the mechanical clamping arm base, which can clamp the liquid cooling plate. Then the discharging matching component is reset. At this time, the guide arm component cooperates with the discharging matching component, and the first hydraulic lifting seat adjusts the height. At the same time, the control seat is pushed forward to drive the rotating disk to rotate. The hydraulic adjustment rod extends and changes the angle of the rotating adjustment rod, so that the hydraulic telescopic adjustment seat and the support base reach the lower end position of the liquid cooling plate. At this time, the support base controls the limit frame to open, and the support base supports the bottom of the liquid cooling plate. At the same time, the hydraulic telescopic adjustment seat controls the limit frame to move back to limit the liquid cooling plate. After that, the liquid cooling plate is placed on the transmission channel, and the liquid cooling plate is transmitted under the control of the transmission channel.
[0013] Specifically, the trimming processing structure includes a first trimming processing component and a second trimming processing component, the first trimming processing component and the second trimming processing component have the same structure, and the first trimming processing component and the second trimming processing component are fixedly connected;
[0014] The second trimming processing component includes a second hydraulic lifting seat and a stable support end frame, the second hydraulic lifting seat is telescopically connected to the stable support end frame, the side end of the stable support end frame is fixedly connected to a connecting arm, the side end of the connecting arm is telescopically connected to a telescopic adjustment control rod, the side end of the telescopic adjustment control rod is installed with a lifting hydraulic seat, and the lower end of the lifting hydraulic seat is telescopically connected to a docking head, the side end of the second hydraulic lifting seat is provided with a side trimming processing mechanism, the docking head is used for connecting the clamping arm, so that the liquid cooling plate is transmitted to the side trimming processing mechanism through the docking head, and the front end of the side trimming processing mechanism is connected with the front and rear trimming processing mechanisms.
[0015] Specifically, the side trimming and processing mechanism includes a combination frame block, a transmission channel and a propulsion control seat. The rear end of the transmission channel is equipped with a propulsion control seat, and the upper end of the transmission channel is fixedly connected to the combination frame block.
[0016] A first lifting and regulating support rod is installed on the combination frame block, which controls the height adjustment of the motor assembly, and the side end of the motor assembly is driven and connected to the first trimming and cutting disk. The side end of the combination frame block is fixedly installed with a second visual scanner. The central front end of the propulsion control seat is telescopically connected to a docking telescopic shaft, and the front end of the docking telescopic shaft is fixedly connected to an adjustment limit control block. The side end of the adjustment limit control block is telescopically connected to a limit adjustment side plate. The lower front end of the docking telescopic shaft is fixedly connected to a bottom support rod, and the front end of the bottom support rod is fixedly connected to a propulsion guide block.
[0017] Specifically, the front and rear edge trimming and processing mechanism includes a supporting and protective frame and a suspension rod, the lower end of the suspension rod is fixedly connected to the supporting and protective frame, the supporting and protective frame is rotatably connected to a second screw rod, and the second screw rod is driven by a motor, the second screw rod is threadedly connected to a translation frame, the front end of the translation frame controls the position of the second trimming and cutting disk through a second lifting and regulating support rod, and the second trimming and cutting disk is driven at the rear end by the motor;
[0018] A sliding platform is provided at the lower end of the supporting and protective frame, the front end of the sliding platform is fixedly connected to the front platform, a third visual scanner is installed at the center of the sliding platform, and a fourth visual scanner is installed at the side end of the sliding platform. The position of the movable propulsion guide rod is adjusted by a screw rod on the sliding platform, and an electro-hydraulic control seat is fixedly connected to the movable propulsion guide rod, and the electro-hydraulic control seat is telescopically controlled and connected to an extrusion limit block.
[0019] Specifically, the electrically controlled hydraulic control seat controls the liquid cooling plate to be fixed by squeezing the limit block, and drives the liquid cooling plate to be aligned in the center on the sliding table, and drives the liquid cooling plate to slide at the same time. The front end of the transmission channel is fixed to the sliding table, and the lifting hydraulic seat and the docking joint transmit the liquid cooling plate to the upper end of the transmission channel through the transmission channel. Through the structural setting of the trimming processing structure, the liquid cooling plate at this time passes through the transmission and reaches the lower end of the docking joint. At this time, the second hydraulic lifting seat adjusts the height, and the lifting hydraulic seat changes the height of the docking joint at the same time, so that the clamping arm attached to the lower end of the docking joint contacts and limits the liquid cooling plate, places the liquid cooling plate on the transmission channel, and pushes The feed control seat controls the extension of the docking telescopic shaft, and the adjustment limit control block controls the limit adjustment side plate to move toward the center position, so that the liquid cooling plate can be limited. The rear end of the liquid cooling plate contacts the advancement guide block, and the liquid cooling plate moves on the transmission channel under the push. At this time, the first lifting and regulating support rod controls the first trimming and cutting disk to change the height. At the same time, the motor assembly drives the first trimming and cutting disk to rotate to perform side trimming of the liquid cooling plate, and then reaches the interior of the front and rear trimming processing mechanism to perform trimming of the front and rear edges of the liquid cooling plate, so that the liquid cooling plate can be processed continuously, which is convenient for streamlined production.
[0020] Specifically, the first lifting and regulating support rod changes the position of the motor assembly and the first trimming and cutting disk through adjustment, so that the first trimming and cutting disk trims the side of the liquid cooling plate, and the second trimming and cutting disk trims the front and rear edges of the liquid cooling plate under the control of the second lifting and regulating support rod and the translation frame.
[0021] Beneficial effects of the present invention:
[0022] First, the present invention can carry out streamlined production through the overall setting of the molding production structure, the transmission guide structure, and the trimming and processing structure, so that multi-step production can be easily connected and the production efficiency can be improved. At the same time, the structural setting of the trimming and processing structure facilitates automated trimming and multi-surface trimming of the liquid cooling plate, thereby improving the aesthetics of the molding.
[0023] Second, the present invention facilitates the forming process of the liquid cooling plate through the structural setting of the mold pressing production structure. The aluminum liquid can enter the docking tube and the guide heating tube through the liquid guide mold base, and then be conducted to the inside of the lower mold base through the docking connecting tube. At the same time, the hydraulic control seat controls the upper mold base, the lower mold base and the sealing seat to seal and close. At this time, liquid is injected into the sealed cavity. With the cooperation of the upper mold base and the lower mold base, molding can be achieved. At the same time, the cooling duct, the docking connecting duct and the liquid guide tube can cool the upper mold base and the lower mold base, so that the internal aluminum liquid is quickly cooled, which helps to carry out the molding process of the liquid cooling plate, thereby achieving the purpose of preliminary molding processing.
[0024] Third, the present invention can automatically transport the liquid cooling plate through the structural setting of the transmission guide structure. When the liquid cooling plate is cooled to the appropriate temperature, the discharge coordination component starts to work. The motor drives the first screw to rotate, changing the position of the first displacement frame and the second displacement frame. At the same time, the combination frame block extends and changes the angle of the adjustment hinge rod. After reaching the appropriate position, the hydraulic control base controls the extension of the telescopic adjustment block, and a mechanical clamping arm is attached to the lower end of the mechanical clamping arm base to clamp the liquid cooling plate. Then, the discharge coordination component is reset. At this time, the guide arm component cooperates with the discharge coordination component. The first hydraulic lifting base adjusts the height. At the same time, the propulsion control base drives the rotating disk to rotate. The hydraulic adjustment rod extends, changing the angle of the rotating adjustment rod, so that the hydraulic telescopic adjustment base and the support base reach the lower end position of the liquid cooling plate. At this time, the support base controls the limit frame to open, and the support base supports the bottom of the liquid cooling plate. At the same time, the hydraulic telescopic adjustment base controls the limit frame to move back to limit the position of the liquid cooling plate. Then, the liquid cooling plate is placed on the transmission channel. Under the control of the transmission channel, the liquid cooling plate is transported.
[0025] Fourth, the present invention adopts the structural setting of the trimming processing structure. At this time, the liquid cooling plate reaches the lower end of the docking joint through transmission, and the second hydraulic lifting seat is used for height adjustment. At the same time, the lifting hydraulic seat changes the height of the docking joint, so that the clamping arm attached to the lower end of the docking joint contacts and limits the position, and the liquid cooling plate is placed on the transmission channel. At the same time, the propulsion control seat controls the extension of the docking telescopic shaft, and the adjustment limit control block controls the limit adjustment side plate to push toward the center position, so that the liquid cooling plate can be limited. The rear end of the liquid cooling plate contacts the propulsion guide block, and under the push, the liquid cooling plate moves on the transmission channel. At this time, the first lifting and regulating support rod controls the first trimming and cutting disk to change the height, and the motor assembly drives the first trimming and cutting disk to rotate to perform side trimming of the liquid cooling plate, and then reaches the interior of the front and rear edge trimming processing mechanism, which can perform trimming of the front and rear edges of the liquid cooling plate, so that the liquid cooling plate can be continuously processed, which is convenient for streamlined production. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] The present invention will be further described below with reference to the accompanying drawings and examples.
[0027] Figure 1 This is a schematic diagram of the three-dimensional structure of the main body of the present invention from the front perspective;
[0028] Figure 2 This is a schematic diagram of the three-dimensional structure of the main body of the present invention from a side perspective;
[0029] Figure 3 This is a schematic diagram of the three-dimensional structure of the main body of the present invention from a rear perspective;
[0030] Figure 4 This is a schematic diagram of the three-dimensional structure of the molded production structure of the present invention from a front perspective;
[0031] Figure 5 It is a schematic structural diagram of the molded production component of the present invention;
[0032] Figure 6 This is a schematic diagram of the three-dimensional structure of the transmission guide structure of the present invention from a front perspective;
[0033] Figure 7 Schematic diagram of the three-dimensional structure of the guide arm component from the front perspective in the present invention;
[0034] Figure 8 Schematic diagram of the three-dimensional structure of the discharge matching component from the front perspective in the present invention;
[0035] Figure 9 A schematic diagram of the three-dimensional structure of the trimming and processing structure of the present invention from a front perspective;
[0036] Figure 10 Schematic diagram of the front perspective three-dimensional structure of the second finishing component in the present invention;
[0037] Figure 11 Schematic diagram of the front perspective three-dimensional structure of the side trimming and processing mechanism of the present invention;
[0038] Figure 12 This is an exploded view of the side trimming processing mechanism of the present invention;
[0039] Figure 13 Schematic diagram of the front perspective three-dimensional structure of the front and rear edge trimming and processing mechanism of the present invention;
[0040] Figure 14 This is a disassembled view of the front and rear edge trimming and processing mechanism of the present invention.
[0041] In the figure: 1-molding production structure, 2-transmission guide structure, 3-trim processing structure, 4-liquid guide mold base, 5-docking pipe, 6-guide heating pipe, 7-insulation seat, 8-docking pipe, 9-protection base, 10-molding production parts, 11-hydraulic control seat, 12-upper mold base, 13-reinforcement base, 14-cooling pipe, 15-docking pipe, 16-reinforcement production seat, 17-liquid guide pipe, 18-lower mold base, 19-sealing seat, 20-guide arm component, 21-first visual scanner, 22-mounting frame, 23- Transmission channel, 24-discharging matching parts, 25-connecting rod, 26-rotation adjustment rod, 27-connecting end frame, 28-rotating disk, 29-stepping motor seat, 30-first hydraulic lifting seat, 31-pad, 32-side frame, 33-hydraulic adjustment rod, 34-limiting frame, 35-hydraulic telescopic adjustment seat, 36-support base, 37-connecting shaft frame, 38-mechanical clamping arm seat, 39-telescopic adjustment block, 40-hydraulic control machine base, 41-track block, 42-first displacement frame, 43-first screw rod, 44-motor, 45- Second displacement frame, 46-articulated guide seat, 47-hydraulic telescopic guide rod, 48-adjusting hinge rod, 49-connecting arm, 50-telescopic adjustment control rod, 51-lifting hydraulic seat, 52-joint, 53-side trimming and processing mechanism, 54-front and rear trimming and processing mechanism, 55-second hydraulic lifting seat, 56-stable support end frame, 57-combination frame block, 58-transmission channel, 59-propelling control seat, 60-first lifting and regulating support rod, 61-motor assembly, 62-first trimming and cutting disk, 63-second visual scanner, 64-push Feed guide block, 65-limit adjustment side plate, 66-adjustment limit control block, 67-bottom support rod, 68-docking telescopic shaft, 69-translation frame, 70-second lifting and regulating support rod, 71-second trimming and cutting disk, 72-second screw rod, 73-support and protective frame, 74-suspender rod, 75-front table, 76-sliding table, 77-third visual scanner, 78-fourth visual scanner, 79-movable propulsion guide rod, 80-extrusion limit block, 81-electrically controlled hydraulic control seat, 82-first trimming and processing component, 83-second trimming and processing component. DETAILED DESCRIPTION
[0042] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings 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 in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.
[0043] The present invention will be further described below with reference to the accompanying drawings.
[0044] Example
[0045] like Figures 1-14 As shown, a liquid cooling plate molding device of the present invention includes a molding production structure 1, a transmission guide structure 2 and a finishing processing structure 3. The front end of the molding production structure 1 is connected to the transmission guide structure 2, and the front end of the transmission guide structure 2 is connected to the finishing processing structure 3. The transmission guide structure 2 is used for guiding the transmission of the liquid cooling plate and performing parameter scanning of the liquid cooling plate. The finishing processing structure 3 performs finishing processing on the liquid cooling plate. The molding production structure 1 is used for molding the liquid cooling plate, and the molding production structure 1 adopts pressure casting to process the liquid cooling plate.
[0046] The molding production structure 1 includes a liquid guiding mold base 4, a docking tube 5, a guiding heating pipe 6 and an insulation seat 7. The lower end of the liquid guiding mold base 4 is connected with a docking tube 5, and the lower end of the docking tube 5 is connected with a guiding heating pipe 6. The side end of the guiding heating pipe 6 is connected with a docking connecting pipe 8. The bottom of the guiding heating pipe 6 is supported by the insulation seat 7. The lower end of the insulation seat 7 is fixedly connected with a protective base 9. The side end of the protective base 9 is fixed to the molding production component 10, and the docking connecting pipe 8 is connected to the molding production component 10. The molding production component 10 performs the forming and cooling processing of the liquid cooling plate. The liquid guiding mold base 4 in the molding production structure 1 is connected with the docking tube 5 and the guiding heating pipe 6, and can introduce molten aluminum. After that, the molten aluminum is conducted to the docking connecting pipe 8 through the guiding heating pipe 6, and finally guided to the lower mold base 18 to realize the injection processing. The insulation seat 7 and the protective base 9 provide bottom protection support for the guiding heating pipe 6. The setting of the molding production component 10 can perform the forming and casting work of the liquid cooling plate.
[0047] The molding production component 10 includes a hydraulic control seat 11, an upper mold seat 12 and a reinforcement base 13. The lower end of the hydraulic control seat 11 controls the telescopic adjustment of the upper mold seat 12. The side end of the reinforcement base 13 is fixedly connected to the reinforcement production seat 16. The upper end of the reinforcement production seat 16 is limitedly connected to the lower mold seat 18. The upper end of the lower mold seat 18 is provided with a sealing seat 19. The side end of the lower mold seat 18 is connected with a liquid guide tube 17. The lower end of the liquid guide tube 17 is connected with a cooling tube 14 through a docking connecting tube 15. The cooling tube 14, the docking connecting tube 15 and the liquid guide tube 17 are symmetrically arranged. The upper cooling tube 14, the docking connecting tube 15 and the liquid guide tube 17 are connected to the upper mold seat 12 to cool the upper mold seat 12. The lower cooling tube 14, the docking connecting tube 15 and the liquid guide tube 17 are connected to the upper mold seat 12 to cool the upper mold seat 12. The interior of the lower die base 18 is cooled, the hydraulic control seat 11 can control the telescopic adjustment of the upper die base 12, the reinforced production seat 16 provides bottom support for the lower die base 18, the upper die base 12 is sealed and connected to the lower die base 18 through the sealing seat 19, the reinforced base 13 provides reinforced support for the side end of the reinforced production seat 16, and at the same time the cooling duct 14 can introduce coolant, which is conducted to the docking connecting duct 15 through the cooling duct 14, and then conducted to the interior of the lower die base 18 through the liquid guide pipe 17 to cool the interior of the lower die base 18, and the liquid guide pipe 17 at the top is connected to the upper die base 12 to cool the upper die base 12, so that the liquid cooling plate can be cooled quickly, and the liquid cooling plate can be quickly formed under the pressure of the upper die base 12, the lower die base 18 and the sealing seat 19.
[0048] The transmission guide structure 2 includes a guide arm component 20, a first visual scanner 21 and a mounting frame 22. The front end of the guide arm component 20 is fixedly connected to the mounting frame 22, and the upper end of the mounting frame 22 is installed with the first visual scanner 21. The side end of the mounting frame 22 is provided with a transmission channel 23, and the side end of the transmission channel 23 is provided with a discharge matching component 24. The transmission channel 23 is used for the transmission of the liquid cooling plate, and the discharge matching component 24 is used to take the liquid cooling plate, so that the liquid cooling plate is taken to the interior of the transmission guide structure 2 through the molding production structure 1. The discharge matching component 24 in the transmission guide structure 2 can clamp the liquid cooling plate through the molding production structure 1, and cooperate with the guide arm component 20 to transfer the liquid cooling plate to the transmission channel 23. The liquid cooling plate cooperates with the transmission channel 23 for transmission. At the same time, the first visual scanner 21 is installed on the mounting frame 22, and the first visual scanner 21 can scan the size parameters of the liquid cooling plate.
[0049] The guiding arm component 20 includes a first hydraulic lifting seat 30 and a pad 31. The upper end of the pad 31 is fixedly connected to the first hydraulic lifting seat 30. The upper end of the first hydraulic lifting seat 30 is telescopically connected to the stepping motor seat 29. The stepping motor seat 29 controls the rotation of the rotating disk 28. The central upper end of the rotating disk 28 is fixedly connected to the connecting end frame 27, and the connecting end frame 27 is hingedly provided with a rotation adjustment rod 26. The side end of the rotating disk 28 is fixedly connected to the side frame 32. The side frame 32 is hingedly provided with a hydraulic adjustment rod 33. The top of the hydraulic adjustment rod 33 is hingedly provided with a connecting rod 25, and the connecting rod 25 is fixedly connected to the rotation adjustment rod 26. The side end of the rotation adjustment rod 26 is fixedly connected to the connecting shaft frame 37. The side end of the connecting shaft frame 37 is fixedly connected to the supporting base frame 36. The front and rear ends of the supporting base frame 36 are symmetrically provided with hydraulic telescopic adjustment seats 35. The hydraulic telescopic adjustment seat 35 is telescopically connected to the limit frame 34, and the pad 31 provides the bottom support of the first hydraulic lifting seat 30. The first hydraulic lifting seat 30 controls the height of the stepper motor seat 29. The stepper motor seat 29 can drive the rotating disk 28, the connecting end frame 27, and the side frame 32 to rotate, thereby changing the angle of the rotation adjustment rod 26. At the same time, the hydraulic adjustment rod 33 on the side frame 32 is hinged. The angle of the tilt position of the rotation adjustment rod 26 is changed by the extension of the hydraulic adjustment rod 33. The side end of the rotation adjustment rod 26 is supported by the supporting base 36 through the connecting shaft frame 37. The supporting base 36 can provide the bottom support of the liquid cooling plate. At the same time, the hydraulic telescopic adjustment seat 35 controls the telescopic adjustment of the limit frame 34, and the side of the liquid cooling plate is limited by the limit frame 34, thereby ensuring the stable transmission of the liquid cooling plate.
[0050] The discharging matching component 24 includes a track block 41 and a motor 44. The track block 41 is equipped with a motor 44, and the first screw rod 43 is driven and connected to the first screw rod 43. The first displacement frame 42 and the second displacement frame 45 are threadedly connected to the first screw rod 43. The first displacement frame 42 and the second displacement frame 45 are fixedly connected. The upper end of the first displacement frame 42 is hingedly provided with a hydraulic telescopic guide rod 47 through a hinged guide seat 46. The upper end of the second displacement frame 45 is hingedly provided with an adjusting hinge rod 48, and the adjusting hinge rod 48 is hingedly provided with the hydraulic telescopic guide rod 47. The top of the adjusting hinge rod 48 is fixedly installed with a hydraulic control base 40. The side end of the hydraulic control base 40 is telescopically connected to the telescopic adjustment block 39. The telescopic adjustment block 39 is equipped with The motor 44 in the mechanical clamping arm seat 38 and the discharge matching component 24 can drive the first screw rod 43 to rotate, thereby changing the positions of the first displacement frame 42 and the second displacement frame 45 on the track block 41. At the same time, a hydraulic telescopic guide rod 47 is hingedly provided on the hinged guide seat 46. The angle of the adjustment hinge rod 48 on the second displacement frame 45 is changed by telescopic adjustment of the hydraulic telescopic guide rod 47, and a hydraulic control base 40 is fixedly installed on the adjustment hinge rod 48. The extension position of the mechanical clamping arm seat 38 and the telescopic adjustment block 39 is controlled by the hydraulic control base 40. The lower end of the mechanical clamping arm seat 38 passes through the hydraulic control base 40, and the mechanical clamping arm seat 38 can be docked with the mechanical clamping arm to perform a limit connection of the liquid cooling plate.
[0051] The lower end of the mechanical clamping arm seat 38 is attached with a docking mechanical clamping arm, which is used to clamp the liquid cooling plate, thereby clamping the liquid cooling plate through the upper end of the lower mold seat 18, and then cooperates with the guide arm component 20 to transfer the liquid cooling plate to the limit frame 34 and the support base 36, and the guide arm component 20 controls the liquid cooling plate to continue to move, so that the liquid cooling plate reaches the transmission channel 23 and cooperates with the transmission channel 23 to continue transmission.
[0052] The trimming structure 3 includes a first trimming component 82 and a second trimming component 83. The first trimming component 82 and the second trimming component 83 have the same structure and are fixedly connected.
[0053] The second trimming and processing component 83 includes a second hydraulic lifting seat 55 and a stable support end frame 56. The second hydraulic lifting seat 55 is telescopically connected to the stable support end frame 56. The side end of the stable support end frame 56 is fixedly connected to the connecting arm 49. The side end of the connecting arm 49 is telescopically connected to the telescopic adjustment control rod 50. The side end of the telescopic adjustment control rod 50 is installed with a lifting hydraulic seat 51, and the lower end of the lifting hydraulic seat 51 is telescopically connected to the docking head 52. The side end of the second hydraulic lifting seat 55 is provided with a side trimming and processing mechanism 53. The docking head 52 is used for connecting the clamping arm, so that the liquid cooling plate is transferred to the side trimming and processing mechanism through the docking head 52. 53, the front end of the side trimming and processing mechanism 53 is connected to the front and rear trimming and processing mechanisms 54, and the second hydraulic lifting seat 55 in the second trimming and processing component 83 can control the stable support end frame 56 to adjust the height. At the same time, the side end limit of the stable support end frame 56 is connected with a connecting arm 49, and the connecting arm 49 controls the telescopic adjustment control rod 50 to be telescopically connected. At the same time, the telescopic adjustment control rod 50 is installed with a lifting hydraulic seat 51, and the lifting hydraulic seat 51 controls the up and down adjustment of the docking joint 52. The docking joint 52 can be installed with a clamping arm, and the clamping arm clamps the liquid cooling plate, thereby transferring the liquid cooling plate to the side trimming and processing mechanism 53.
[0054] The side trimming mechanism 53 includes a combination frame 57, a transmission channel 58 and a propulsion control seat 59. The propulsion control seat 59 is installed at the rear end of the transmission channel 58, and the combination frame 57 is fixedly connected to the upper end of the transmission channel 58.
[0055] A first lifting and regulating support rod 60 is installed on the combination frame block 57. The first lifting and regulating support rod 60 controls the height adjustment of the motor assembly 61, and the side end of the motor assembly 61 is driven and connected to the first trimming and cutting disk 62. The side end of the combination frame block 57 is fixedly installed with a second visual scanner 63. The central front end of the propulsion control seat 59 is telescopically connected to the docking telescopic shaft 68. The front end of the docking telescopic shaft 68 is fixedly connected to the adjustment limit control block 66. The side end of the adjustment limit control block 66 is telescopically connected to the limit adjustment side plate 65. The lower front end of the docking telescopic shaft 68 is fixedly connected to the bottom support rod 67. The front end of the bottom support rod 67 is fixedly connected to the propulsion guide block 64. The propulsion control seat 59 in the side trimming processing mechanism 53 can control the extension of the docking telescopic shaft 68. The expansion and contraction adjustment is carried out, and the adjustment limit control block 66 on the telescopic shaft 68 controls the movement of the limit adjustment side plate 65, thereby helping the liquid cooling plate to limit the side end. At the same time, the lower end of the limit control block 66 is adjusted to fix the bottom support rod 67, and the bottom support rod 67 is fixed to the propulsion guide block 64. The propulsion guide block 64 can contact the liquid cooling plate, thereby pushing the liquid cooling plate to move on the transmission channel 58, and the second visual scanner 63 is set to check the parameters of the liquid cooling plate, thereby controlling the first lifting and regulating support rod 60 to work. The first lifting and regulating support rod 60 drives the motor assembly 61 and the first trimming and cutting disk 62 to adjust the height. At the same time, the motor assembly 61 drives the first trimming and cutting disk 62 to rotate to perform the side trimming work of the liquid cooling plate.
[0056] The second lifting and regulating support rod 70 controls the position of the second trimming and cutting disk 71 on the front and rear ends of the second trimming and cutting disk 71 on the rear end of the motor.
[0057] The lower end of the support and protection frame 73 is provided with a sliding platform 76, the front end of the sliding platform 76 is fixedly connected to the front platform 75, the center of the sliding platform 76 is installed with a third visual scanner 77, and the side end of the sliding platform 76 is installed with a fourth visual scanner 78. The position of the movable propulsion guide rod 79 is adjusted by a screw rod on the sliding platform 76, and the movable propulsion guide rod 79 is fixedly connected to an electro-hydraulic control seat 81. The electro-hydraulic control seat 81 is connected to an extrusion limit block 80 for telescopic control. When the liquid cooling plate reaches the movable propulsion guide rod 79, the electro-hydraulic control seat 81 controls the extrusion limit block 80 to squeeze and limit, and at the same time the screw rod rotates, and the movable propulsion guide rod 79 slides on the sliding platform 76. At this time, the third visual scanner 77 and the fourth visual scanner 78 perform visual inspection of the liquid cooling plate, thereby driving the liquid cooling plate to be transferred to the front platform 75.
[0058] The electrically controlled hydraulic control seat 81 controls the liquid cooling plate to be fixed by squeezing the limit block 80, and drives the liquid cooling plate to be centered on the push platform 76, while driving the liquid cooling plate to slide. The front end of the transmission channel 58 is fixed to the push platform 76, and the lifting hydraulic seat 51 and the docking joint 52 transmit the liquid cooling plate to the upper end of the transmission channel 58 through the transmission channel 23.
[0059] The first lifting and regulating support rod 60 changes the position of the motor assembly 61 and the first trimming and cutting disk 62 by adjustment, so that the first trimming and cutting disk 62 trims the side of the liquid cooling plate, and the second trimming and cutting disk 71 trims the front and rear edges of the liquid cooling plate under the control of the second lifting and regulating support rod 70 and the translation frame 69.
[0060] Working Principle: When in use, the user assembles the molded production structure 1, the transmission and guide structure 2, and the trimming and processing structure 3. The molded production structure 1 can process and shape the liquid cooling plate, so that the liquid cooling plate is pressure-casted. Then, the liquid cooling plate is conducted through the transmission and guide structure 2, so that the liquid cooling plate reaches the interior of the trimming and processing structure 3, and the trimming and processing structure 3 processes the edges and corners of the liquid cooling plate.
[0061] Among them, the liquid guide mold base 4 in the mold production structure 1 is connected to the docking pipe 5 and the guide heating pipe 6, which can introduce molten aluminum. The molten aluminum is then conducted to the docking connecting pipe 8 through the guide heating pipe 6, and finally guided into the lower mold base 18 to realize the injection processing. The insulation seat 7 and the protective base 9 provide bottom protection support for the guide heating pipe 6. The setting of the mold production component 10 can perform the forming and casting work of the liquid cooling plate;
[0062] Among them, the hydraulic control seat 11 can control the telescopic adjustment of the upper die seat 12, the reinforced production seat 16 provides the bottom support of the lower die seat 18, the upper die seat 12 is sealed with the lower die seat 18 through the sealing seat 19, and the reinforced base 13 provides the reinforced support of the side end of the reinforced production seat 16. At the same time, the cooling duct 14 can introduce the coolant, which is conducted to the docking communication duct 15 through the cooling duct 14, and then conducted to the interior of the lower die seat 18 through the liquid guide pipe 17 to perform a cooling treatment inside the lower die seat 18. The liquid guide pipe 17 at the top is connected to the upper die seat 12 to perform a cooling treatment on the upper die seat 12, so that the liquid cooling plate can be cooled quickly. Under the pressure of the upper die seat 12, the lower die seat 18 and the sealing seat 19, the liquid cooling plate can be quickly formed.
[0063] Among them, the discharge matching component 24 in the transmission guide structure 2 can clamp the liquid cooling plate through the mold production structure 1, and cooperate with the guide arm component 20 to transfer the liquid cooling plate to the transmission channel 23. The liquid cooling plate is transferred in accordance with the transmission channel 23. At the same time, the first visual scanner 21 is installed on the mounting frame 22. The first visual scanner 21 can scan the dimensional parameters of the liquid cooling plate.
[0064] Among them, the pad 31 supports the bottom of the first hydraulic lifting seat 30, and the first hydraulic lifting seat 30 controls the height of the stepping motor seat 29. The stepping motor seat 29 can drive the rotating disk 28, the connecting end frame 27, and the side frame 32 to rotate, thereby changing the angle of the rotating adjustment rod 26. At the same time, the hydraulic adjustment rod 33 on the side frame 32 adopts a hinged setting. The angle of the tilt position of the rotating adjustment rod 26 is changed by extending the hydraulic adjustment rod 33. The side end of the rotating adjustment rod 26 supports the supporting base 36 through the connecting shaft frame 37. The supporting base 36 can support the bottom of the liquid cooling plate. At the same time, the hydraulic telescopic adjustment seat 35 controls the telescopic adjustment of the limit frame 34, and the side of the liquid cooling plate is limited by the limit frame 34, thereby ensuring the stable transmission of the liquid cooling plate.
[0065] Among them, the motor 44 in the discharge matching component 24 can drive the first screw 43 to rotate, change the position of the first displacement frame 42 and the second displacement frame 45 on the track block 41, and at the same time, a hydraulic telescopic guide rod 47 is hingedly provided on the hinged guide seat 46. Through the telescopic adjustment of the hydraulic telescopic guide rod 47, the angle of the adjustment hinge rod 48 on the second displacement frame 45 is changed, and a hydraulic control base 40 is fixedly installed on the adjustment hinge rod 48. The extension position of the mechanical clamping arm seat 38 and the telescopic adjustment block 39 is controlled by the hydraulic control base 40. The lower end of the mechanical clamping arm seat 38 passes through the hydraulic control base 40, and the mechanical clamping arm seat 38 can be docked with the mechanical clamping arm to perform the limit connection of the liquid cooling plate;
[0066] Among them, the second hydraulic lifting seat 55 in the second trimming and processing component 83 can control the height adjustment of the stable support end frame 56. At the same time, the side end of the stable support end frame 56 is limitedly connected to the connecting arm 49. The connecting arm 49 controls the telescopic adjustment control rod 50 to be telescopically connected. At the same time, the telescopic adjustment control rod 50 is installed with a lifting hydraulic seat 51. The lifting hydraulic seat 51 controls the up and down adjustment of the docking joint 52. The docking joint 52 can be installed with a clamping arm. At the same time, the clamping arm clamps the liquid cooling plate, thereby transferring the liquid cooling plate to the side trimming and processing mechanism 53;
[0067] Among them, the propulsion control seat 59 in the side trimming processing mechanism 53 can control the telescopic adjustment of the docking telescopic shaft 68, and the adjustment limit control block 66 on the docking telescopic shaft 68 controls the movement of the limit adjustment side plate 65, thereby helping the liquid cooling plate to limit the side end, and at the same time, the lower end of the adjustment limit control block 66 is fixed to the bottom support rod 67, and the propulsion guide block 64 is fixed on the bottom support rod 67. The propulsion guide block 64 can contact the liquid cooling plate, thereby pushing the liquid cooling plate to move on the transmission channel 58, and the second visual scanner 63 is set to check the parameters of the liquid cooling plate, thereby controlling the first lifting and regulating support rod 60 to work, and the first lifting and regulating support rod 60 drives the motor assembly 61 and the first trimming and cutting disk 62 to adjust the height. At the same time, the motor assembly 61 drives the first trimming and cutting disk 62 to rotate to perform the side trimming work of the liquid cooling plate;
[0068] Among them, the suspension rod 74 in the front and rear edge trimming processing mechanism 54 supports the support and protection frame 73, and the support and protection frame 73 is rotatably connected to the second screw rod 72. The rotation of the second screw rod 72 changes the position of the translation frame 69 on the support and protection frame 73. After reaching the appropriate position, the second lifting and regulating support rod 70 controls the second trimming and cutting disk 71 to descend. At the same time, the second trimming and cutting disk 71 rotates under the drive of the motor to perform the trimming processing work of the front and rear edges of the liquid cooling plate;
[0069] When the liquid cooling plate reaches the movable propulsion guide rod 79, the electric control hydraulic control seat 81 controls the extrusion limit block 80 to squeeze and limit, and at the same time the screw rotates, and the movable propulsion guide rod 79 slides on the push table 76. At this time, the third visual scanner 77 and the fourth visual scanner 78 perform visual inspection of the liquid cooling plate, thereby driving the liquid cooling plate to be transferred to the front table 75;
[0070] During use, the user guides the molten aluminum into the interior of the docking tube 5 through the liquid guide mold base 4, and then transmits it through the guide heating tube 6 and the docking connecting tube 8. At this time, the hydraulic control seat 11 controls the upper mold base 12 to descend. At this time, the upper mold base 12 is sealed and closed with the lower mold base 18 through the sealing seat 19. At the same time, the docking connecting tube 8 conducts the molten aluminum to the interior of the upper mold base 12 and the lower mold base 18. Under the extrusion of the upper mold base 12 and the lower mold base 18, the molding process is carried out. At the same time, the cooling duct 14 dissipates heat from the lower mold base 18 through the docking connecting duct 15 and the liquid guide tube 17. The cooling duct 14 at the upper end dissipates heat from the upper mold base 12 through the docking connecting duct 15 and the liquid guide tube 17, so that the liquid cooling plate can be quickly molded and cooled. After that, the upper mold base 12 and the lower mold base 18 are separated. At this time, the motor 44 is driven to drive the first screw rod 43 to rotate, changing the position of the first displacement frame 42 and the second displacement frame 45. At the same time, the hydraulic telescopic guide rod 47 is extended to change the angle of the adjustment hinge rod 48 on the second displacement frame 45. Then the hydraulic control machine base 40 controls the telescopic adjustment block 39 to extend, so that the mechanical clamping arm at the lower end of the mechanical clamping arm seat 38 contacts the liquid cooling plate to limit the position. Then the discharge matching component 24 is reset. At the same time, the first hydraulic lifting seat 30 changes the height of the stepping motor seat 29. The stepping motor seat 29 also controls the rotation of the rotating disk 28 to change the horizontal angle of the rotating adjustment rod 26. At the same time, the hydraulic adjustment rod 33 is extended to change the inclination angle of the rotating adjustment rod 26, so that the support base 36 reaches the lower end position of the liquid cooling plate. At the same time, the hydraulic telescopic adjustment seat 35 controls the limit frame 34 to pull back to limit the liquid cooling plate, and then guides the liquid cooling plate to the transmission channel 23. At this time, the first visual scanner 21 performs parameter statistics of the transmission channel 23, and then the liquid cooling plate reaches the lower end of the docking joint 52. At this time, the second hydraulic lifting seat 55 controls the height of the stable support end frame 56. At the same time, the connecting arm 49 controls the length of the telescopic adjustment control rod 50, so that the docking joint 52 is at the upper end of the liquid cooling plate. A clamping arm is set at the lower end of the docking joint 52, which can limit the liquid cooling plate and conduct the liquid cooling plate to the front end of the advancement guide block 64. At this time, the adjustment limit control block 66 controls the limit adjustment side plate 65 to extend, so that the limit adjustment side plate 65 limits the side end of the liquid cooling plate, and at the same time, the advancement control The control seat 59 controls the extension of the docking telescopic shaft 68, so that the propulsion guide block 64 pushes the liquid cooling plate to move. When the liquid cooling plate reaches the lower end of the second visual scanner 63, the first lifting and regulating support rod 60 controls the motor assembly 61 and the first trimming and cutting disk 62 to descend. At this time, the motor assembly 61 drives the first trimming and cutting disk 62 to rotate to perform trimming of the liquid cooling plate. After that, the liquid cooling plate reaches the lower end of the second trimming and cutting disk 71. At this time, the second screw rod 72 rotates to change the position of the translation frame 69. At the same time, the second lifting and regulating support rod 70 changes the height of the second trimming and cutting disk 71. At this time, the second trimming and cutting disk 71 rotates to perform the front and rear trimming of the liquid cooling plate, and finally reaches the front table 75 for subsequent unified collection to complete the work.
[0071] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A liquid cooling plate compression molding device, characterized in that: The invention comprises a molded production structure (1), a transmission guide structure (2) and a finishing processing structure (3), wherein the front end of the molded production structure (1) is connected to the transmission guide structure (2), and the front end of the transmission guide structure (2) is connected to the finishing processing structure (3), the transmission guide structure (2) is used for transmission guidance of the liquid cooling plate and simultaneously performs parameter scanning of the liquid cooling plate, the finishing processing structure (3) performs finishing processing of the liquid cooling plate, the molded production structure (1) is used for molding processing of the liquid cooling plate, and the molded production structure (1) adopts pressure casting to process the liquid cooling plate; The molding production structure (1) includes a liquid guide mold base (4), a docking pipe (5), a guide heating pipe (6) and a heat preservation seat (7); the lower end of the liquid guide mold base (4) is connected to a docking pipe (5); the lower end of the docking pipe (5) is connected to a guide heating pipe (6); the side end of the guide heating pipe (6) is connected to a docking pipe (8); the bottom of the guide heating pipe (6) is supported by the heat preservation seat (7); the lower end of the heat preservation seat (7) is fixedly connected to a protective base (9); the side end of the protective base (9) is fixed to a molding production component (10), and the docking pipe (8) is connected to the molding production component (10); the molding production component (10) performs molding and cooling processing of the liquid cooling plate; The trimming processing structure (3) includes a first trimming processing part (82) and a second trimming processing part (83), the first trimming processing part (82) and the second trimming processing part (83) have the same structure, and the first trimming processing part (82) and the second trimming processing part (83) are fixedly connected; The second trimming and processing component (83) includes a second hydraulic lifting seat (55) and a stable support end frame (56), the second hydraulic lifting seat (55) is telescopically connected to the stable support end frame (56), the side end of the stable support end frame (56) is fixedly connected to a connecting arm (49), the side end of the connecting arm (49) is telescopically connected to a telescopic adjustment control rod (50), the side end of the telescopic adjustment control rod (50) is installed with a lifting hydraulic seat (51), and the lower end of the lifting hydraulic seat (51) is telescopically connected to a docking head (52), the side end of the second hydraulic lifting seat (55) is provided with a side trimming and processing mechanism (53), the docking head (52) is used for connecting the clamping arm, so that the liquid cooling plate is transferred to the side trimming and processing mechanism (53) through the docking head (52), and the front end of the side trimming and processing mechanism (53) is connected to the front and rear trimming and processing mechanisms (54); The side trimming and processing mechanism (53) comprises a combined frame block (57), a transmission channel (58) and a propulsion control seat (59), wherein the rear end of the transmission channel (58) is provided with the propulsion control seat (59), and the upper end of the transmission channel (58) is fixedly connected with the combined frame block (57); A first lifting and regulating support rod (60) is installed on the combination frame block (57), and the first lifting and regulating support rod (60) controls the height adjustment of the motor assembly (61), and the side end of the motor assembly (61) is driven and connected to the first trimming and cutting disk (62). A second visual scanner (63) is fixedly installed on the side end of the combination frame block (57). The central front end of the propulsion control seat (59) is telescopically connected to the docking telescopic shaft (68), and the front end of the docking telescopic shaft (68) is fixedly connected to the adjustment limit control block (66). The side end of the adjustment limit control block (66) is telescopically connected to the limit adjustment side plate (65). The lower front end of the docking telescopic shaft (68) is fixedly connected to the bottom support rod (67), and the front end of the bottom support rod (67) is fixedly connected to the propulsion guide block (64). The front and rear edge trimming and processing mechanism (54) includes a supporting and protective frame (73) and a suspension rod (74), the lower end of the suspension rod (74) is fixedly connected to the supporting and protective frame (73), the supporting and protective frame (73) is rotatably connected to a second screw rod (72), and the second screw rod (72) is driven by a motor, the second screw rod (72) is threadedly connected to a translation frame (69), the front end of the translation frame (69) controls the position of the second trimming and cutting disk (71) through a second lifting and regulating support rod (70), and the rear end of the second trimming and cutting disk (71) is driven by the motor; A sliding platform (76) is provided at the lower end of the support and protection frame (73), and the front end of the sliding platform (76) is fixedly connected to the front platform (75). A third visual scanner (77) is installed at the center of the sliding platform (76), and a fourth visual scanner (78) is installed at the side end of the sliding platform (76). The position of the movable propulsion guide rod (79) is adjusted on the sliding platform (76) by a screw rod, and the movable propulsion guide rod (79) is fixedly connected to an electric-controlled hydraulic control seat (81), and the electric-controlled hydraulic control seat (81) is telescopically controlled and connected to an extrusion limit block (80).
2. The liquid cooling plate compression molding equipment according to claim 1, characterized in that: The molding production component (10) includes a hydraulic control seat (11), an upper die seat (12) and a reinforcement base (13), wherein the lower end of the hydraulic control seat (11) controls the telescopic adjustment of the upper die seat (12), the side end of the reinforcement base (13) is fixedly connected to the reinforcement production seat (16), the upper end of the reinforcement production seat (16) is limitedly connected to the lower die seat (18), the upper end of the lower die seat (18) is provided with a sealing seat (19), the side end of the lower die seat (18) is connected to a liquid guide tube (17), and the The lower end of the liquid guide tube (17) is connected to a cooling tube (14) via a docking connecting tube (15). The cooling tube (14), the docking connecting tube (15), and the liquid guide tube (17) are symmetrically arranged. The upper cooling tube (14), the docking connecting tube (15), and the liquid guide tube (17) are connected to the upper mold base (12) to cool the upper mold base (12). The lower cooling tube (14), the docking connecting tube (15), and the liquid guide tube (17) cool the interior of the lower mold base (18).
3. The liquid cooling plate compression molding equipment according to claim 2, characterized in that: The transmission guide structure (2) includes a guide arm component (20), a first visual scanner (21) and a mounting frame (22), wherein the front end of the guide arm component (20) is fixedly connected to the mounting frame (22), the upper end of the mounting frame (22) is mounted with the first visual scanner (21), the side end of the mounting frame (22) is provided with a transmission channel (23), the side end of the transmission channel (23) is provided with a discharge matching component (24), the transmission channel (23) is used for the transmission of the liquid cooling plate, and the discharge matching component (24) is used for taking the liquid cooling plate, thereby taking the liquid cooling plate into the interior of the transmission guide structure (2) through the molded production structure (1).
4. The liquid cooling plate compression molding equipment according to claim 3, characterized in that: The guide arm component (20) includes a first hydraulic lift seat (30) and a pad (31), the upper end of the pad (31) is fixedly connected to the first hydraulic lift seat (30), the upper end of the first hydraulic lift seat (30) is telescopically connected to a stepper motor seat (29), the stepper motor seat (29) controls the rotation of the rotating disk (28), the central upper end of the rotating disk (28) is fixedly connected to a connecting end frame (27), and a rotation adjustment rod (26) is hingedly provided on the connecting end frame (27), and the side end of the rotating disk (28) is fixedly connected to a side frame ( 32), a hydraulic adjustment rod (33) is hingedly provided on the side frame (32), a connecting rod (25) is hingedly provided on the top of the hydraulic adjustment rod (33), and the connecting rod (25) is fixedly connected to the rotation adjustment rod (26), the side end of the rotation adjustment rod (26) is fixedly connected to a connecting shaft frame (37), the side end of the connecting shaft frame (37) is fixedly connected to a supporting base frame (36), and hydraulic telescopic adjustment seats (35) are symmetrically provided at the front and rear ends of the supporting base frame (36), and the hydraulic telescopic adjustment seat (35) is telescopically connected to a limit frame (34).
5. The liquid cooling plate compression molding equipment according to claim 4, characterized in that: The discharging matching component (24) includes a track block (41) and a motor (44), the track block (41) is equipped with a motor (44), and the first screw rod (43) is drivably connected to the first screw rod (43), the first screw rod (43) is threadedly connected to the first displacement frame (42) and the second displacement frame (45), the first displacement frame (42) and the second displacement frame (45) are fixedly connected, the upper end of the first displacement frame (42) is hingedly provided with a hydraulic telescopic guide rod (47) through a hinged guide seat (46), the upper end of the second displacement frame (45) is hingedly provided with an adjusting hinge rod (48), and the adjusting hinge rod (48) is hingedly provided with the hydraulic telescopic guide rod (47), the top of the adjusting hinge rod (48) is fixedly equipped with a hydraulic control base (40), the side end of the hydraulic control base (40) is telescopically connected to the telescopic adjustment block (39), and the telescopic adjustment block (39) is equipped with a mechanical clamping arm seat (38); The lower end of the mechanical clamping arm seat (38) is attached with a docking mechanical clamping arm, and the liquid cooling plate is clamped by the mechanical clamping arm, so that the liquid cooling plate is clamped through the upper end of the lower mold seat (18), and then cooperates with the guide arm component (20) to transfer the liquid cooling plate to the limit frame (34) and the support base (36), and the guide arm component (20) controls the liquid cooling plate to continue to move, so that the liquid cooling plate reaches the transmission channel (23) and cooperates with the transmission channel (23) to continue transmission.
6. The liquid cooling plate compression molding equipment according to claim 5, characterized in that: The electric-controlled hydraulic control seat (81) controls the liquid cooling plate to be fixed by squeezing the limit block (80), and drives the liquid cooling plate to be aligned in the center on the push platform (76), and drives the liquid cooling plate to slide at the same time. The front end of the transmission channel (58) is fixed to the push platform (76), and the lifting hydraulic seat (51) and the docking head (52) transmit the liquid cooling plate to the upper end of the transmission channel (58) through the transmission channel (23).
7. The liquid cooling plate compression molding equipment according to claim 6, characterized in that: The first lifting and regulating support rod (60) changes the positions of the motor assembly (61) and the first trimming and cutting disk (62) by adjustment, so that the first trimming and cutting disk (62) trims the side of the liquid cooling plate, and the second trimming and cutting disk (71) trims the front and rear edges of the liquid cooling plate under the control of the second lifting and regulating support rod (70) and the translation frame (69).
Citation Information
Patent Citations
Metal compression molding equipment and molding process thereof
CN116037895A
Automatic band saw cutting machine tool for cutting casting head of flat-bottomed container and machining method thereof
CN106825524A
Aluminum product casting process and aluminum product trimming equipment
CN111014627A