An intelligent double-head hot pressing and forming device

By designing an intelligent dual-head hot-pressing forming device, the problem of inefficiency in the existing technology is solved, and automated production and efficient molding are achieved.

CN115923096BActive Publication Date: 2025-06-24TONGYOU INTELLIGENT EQUIP (JIANGSU) CO LTD
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Patent Information

Application Number
CN202211660214.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-23
Publication Date
2025-06-24
Estimated Expiration
2042-12-23

AI Technical Summary

Technical Problem

The existing hot press forming devices are inefficient when forming wire plates, and require manual placement and removal of molds one by one, which wastes manpower.

Method used

An intelligent double-head hot-pressing molding device is designed, including a base, a transmission component, a moving component and a hot-pressing component. Through automatic feeding and double-head design, two wire plates can be stamped at one time.

Benefits of technology

It realizes automated production, improves hot press forming efficiency, reduces labor waste, and can process two wire boards at the same time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent double - press - head hot - pressing forming device, which includes a base, a transmission component, a moving component, and a hot - pressing component. Among them: a workbench is fixed on the top of the base; two groups of transmission components are provided, which are respectively arranged on the left and right sides of the workbench for transporting circuit boards; two groups of moving components are provided, which are respectively arranged on the left and right sides of the workbench and respectively correspond to the transportation components on the left and right sides for pushing the circuit boards into the hot - pressing component; the hot - pressing component is arranged above the middle of the workbench for processing the circuit boards. The moving components on both the left and right sides each include a bracket, a support block, a threaded rod, a sliding plate, a fourth driver, a mounting plate, and a pushing plate. Among them: two groups of brackets are provided, and each group of brackets has two sets, both of which are fixed to the workbench. In the present invention, the function of improving the hot - pressing forming efficiency is conveniently and efficiently realized.
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Description

Technical Field

[0001] The present invention is applied to the background of hot pressing molding, and its name is an intelligent double-head hot pressing molding device. Background Art

[0002] The hot pressing molding method is to place the hot-pressed article in the mold cavity of the hot pressing mold. The hot pressing mold includes an upper template, and each upper template has a hot pressing forming block. After placing the material on the surface of the lower template, the hot pressing mold is closed. At this time, the upper template will form a closed mold cavity. The hot pressing mold can heat the material to a plastic state, and finally cool the object to be imprinted, so that the molded product can be taken out after the imprinting mold is opened.

[0003] This kind of hot pressing molding is often applied to the production of electrical components, especially the hot pressing molding of circuit boards. Generally, multiple square holes need to be hot pressed on the circuit board to facilitate its installation on the PCB board and heat dissipation during use.

[0004] However, when the existing hot pressing molding device performs hot pressing molding on a circuit board, it can only process one circuit board at a time, and it needs to be manually placed into the mold one by one and then taken out after hot pressing. This process wastes manpower and has low efficiency.

[0005] Therefore, it is necessary to provide an intelligent double-head hot pressing molding device that can achieve automatic feeding and can punch two circuit boards at a time to improve work efficiency. Summary of the Invention

[0006] The purpose of the present invention is to provide an intelligent double-head hot pressing molding device to solve the problems raised in the above background art.

[0007] To solve the above technical problems, the present invention provides the following technical solutions: An intelligent double-head hot pressing molding device includes a base, a transmission component, a moving component, and a hot pressing component, wherein:

[0008] A workbench is fixed on the top of the base. Two groups of transmission components are provided, which are respectively arranged on the left and right sides of the workbench for transporting circuit boards;

[0009] Two groups of moving components are provided, which are respectively arranged on the left and right sides of the workbench and correspond to the transportation components on the left and right sides respectively, for pushing the circuit boards into the hot pressing component;

[0010] The hot pressing component is arranged above the middle of the workbench for processing the circuit boards;

[0011] A push plate is fixed to the bottom of the left push plate, a first push column is fixed to the right side of the left push plate, and a first pressure sensor is fixed to the right side of the push plate;

[0012] A second push column is fixedly installed at the left top of the push plate on the right side;

[0013] A third drive is fixedly installed at the top of the support block. A transmission assembly is fixedly installed on the side of the third drive close to the outside. The output end of the transmission assembly is connected to a slide plate. The slide plate is located inside the support block and is slidably connected to the support block;

[0014] A camera is fixedly installed on the side of the support block close to the hot pressing assembly.

[0015] In one embodiment, a push plate is fixedly installed at the bottom of the push plate on the left side. A first push column is fixedly installed on the right side of the push plate on the left side. A first pressure sensor is fixedly installed on the right side of the push plate;

[0016] A second push column is fixedly installed at the left top of the push plate on the right side;

[0017] A third drive is fixedly installed at the top of the support block. A transmission assembly is fixedly installed on the side of the third drive close to the outside. An active wheel and a driven wheel are arranged inside the transmission assembly. The active wheel is fixedly connected to the output end of the third drive. The driven wheel is fixedly connected to a threaded rod. The driven wheel is connected to the transmission assembly by a bearing.

[0018] In one embodiment, a connecting seat is fixedly installed on the left side of the workbench. A fifth drive is fixedly installed on one side of the connecting seat. A partition board is fixedly installed at the top end of the fifth drive;

[0019] An air duct is fixedly installed on one side of the support block. A first pump body is connected in the middle of the air duct. A round head is fixedly installed at the bottom of the air duct. A plurality of spray holes are formed on the surface of the round head.

[0020] In one embodiment, both the left and right transmission assemblies include a mounting seat and a support seat. The mounting seat is fixedly connected to the workbench. A second drive is fixedly installed on the left side of the mounting seat. The support seats are respectively fixedly installed on both sides of the workbench. Two groups of baffles are fixedly installed at the top of the support seats. Rotating shafts are connected by bearings on the front, back, left, and right sides of the two groups of baffles. The output end of the second drive is fixedly connected to the rotating shaft at the back. Transmission belts are fixedly installed on the surfaces of the front and back rotating shafts.

[0021] In one embodiment, support columns are evenly distributed and fixedly installed on the upper surface of the workbench. A central plate is slidably connected in the middle of the support columns. A drive box is fixedly installed at the top of the support columns. A first drive is fixedly installed inside the drive box. The output shaft of the first drive penetrates through the bottom of the drive box and is fixedly connected to the middle of the central plate.

[0022] In one embodiment, the hot pressing assembly includes a bearing table, an upper die base, a lower die base, elastic telescopic rods, positioning columns, and a plurality of forming blocks, where:

[0023] The bearing platform is fixed to the surface of the workbench, the upper die seat is fixed to the bottom of the central plate, the lower die seat is fixed to the top of the bearing platform, four groups of elastic telescopic rods are provided, and the four groups of elastic telescopic rods are fixed between the bearing platform and the central plate, four groups of positioning columns are provided, and the four groups of positioning columns are all fixed to the bottom of the upper die seat, and a plurality of forming blocks are all fixed in the middle of the bottom of the upper die seat;

[0024] Two groups of passages are fixed on both sides of the lower die base, and the passages are connected to the conveyor belt.

[0025] Compared with the prior art, the beneficial effect achieved by the present invention is that the present invention can improve the efficiency of hot pressing molding by providing two groups of hot pressing components and two passages. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] The technical solution and other beneficial effects of the present application will be made apparent by describing in detail the specific implementation methods of the present application in conjunction with the accompanying drawings.

[0027] In the attached picture:

[0028] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0029] Figure 2 It is a partial enlarged schematic diagram of the B area of ​​the present invention;

[0030] Figure 3 It is a partial enlarged schematic diagram of the C region of the present invention;

[0031] Figure 4 It is a partial enlarged schematic diagram of the A area of ​​the present invention;

[0032] In the figure: 1. base; 2. central plate; 3. first pump body; 4. bracket; 5. drive box; 6. support column; 7. second drive; 8. mounting seat; 9. first drive; 10. baffle; 11. elastic telescopic rod; 12. upper die seat; 13. shaping block; 14. passage; 15. lower die seat; 16. positioning column; 17. forming block; 18. air duct; 19. support block; 20. slide plate; 21. connecting plate; 22. mounting plate; 23. push plate; 24. fourth drive; 25. connecting seat; 26. fifth drive; 27. partition; 28. limit plate; 29. ​​first push column; 30. second push column; 31. third drive; 32. transmission assembly; 33. workbench; 34. bearing platform; 35. conveyor belt; 36. water pipe; 37. second pump body; 38. camera. DETAILED DESCRIPTION

[0033] The following disclosure provides many different embodiments or examples for implementing different structures of the present application. To simplify the disclosure of the present application, the components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the present application. In addition, the present application may repeat reference numerals and / or reference letters in different examples. This repetition is for the purpose of simplification and clarity and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present application provides examples of various specific processes and materials, but those of ordinary skill in the art can be aware of the application of other processes and / or the use of other materials.

[0034] As Figure 1 shown, the present invention provides a technical solution: an intelligent double - punch hot - pressing forming device, which includes a base 1, a transmission component, a moving component, and a hot - pressing component. A workbench 33 is fixed on the top of the base 1. Support columns 6 are evenly distributed and fixed on the upper surface of the workbench 33. A central plate 2 is slidably connected in the middle of the support columns 6. A driving box 5 is fixed on the top of the support columns 6. A first drive 9 is fixed inside the driving box 5. The output shaft of the first drive 9 penetrates through the bottom of the driving box 5 and is fixed to the middle of the central plate 2, which facilitates the start of the first drive 9 and enables the central plate 2 to slide up and down on the support columns 6. The support columns 6 make the central plate 2 slide up and down more stably.

[0035] There are two groups of transmission components, which are respectively arranged on the left and right sides of the workbench 33. The left - hand transmission component is used to transport the wire board to the middle of the workbench 33, and the right - hand transmission component is used to move the formed wire board out. The transmission component includes a mounting seat 8 and a support seat. The mounting seat 8 is fixed to the workbench 33. A second drive 7 is fixed on the left side of the mounting seat 8. The support seats are respectively fixed on both sides of the workbench 33. Two groups of baffles 10 are fixed on the top of the support seats. Rotating shafts are connected by bearings on the front and back sides of the two groups of baffles 10. The output end of the second drive 7 is fixed to the rear rotating shaft. The front and back rotating shafts are fixed with a conveyor belt 35 on their surfaces. When the second drive 7 is started, it will drive the rotating shaft to operate, thereby driving the conveyor belt 35 to operate, which is convenient for transporting the wire board. The left - hand transmission component transports the wire board into the intelligent double - punch hot - pressing forming device, and the right - hand transmission component transports the wire board out of the intelligent double - punch hot - pressing forming device.

[0036] As Figure 1 and Figure 2As shown in the figure, there are two sets of moving components, which are respectively arranged on the left and right sides of the workbench 33, and respectively correspond to the transmission components on the left and right sides one by one. The moving components include two sets of brackets 4. Each set of brackets 4 has two, both of which are fixed to the workbench 33. At the top of each two sets of brackets 4, there is a support block 19 fixed. At the top of the support block 19, there is a third drive 31 fixed. The output end of the third drive 31 is connected to a transmission component 32. The output end of the transmission component 32 is connected to a slide plate 20. At the same time, the slide plate 20 is located inside the support block 19 and is slidably connected to the support block 19. The slide plate 20 can slide back and forth on the support block 19 under the drive of the third drive 31;

[0037] On one side of the support block 19 close to the hot pressing component, there is a camera 38 fixed, which is used to photograph the movement of the wire board moving in the passage 19. The camera 38 is electrically connected to the controller;

[0038] On the side of the slide plate 20 away from the support block 19, there is a fourth drive 24 fixed. When the slide plate 20 moves, it will drive the fourth drive 24 to move. On the side of the fourth drive 24 away from the support block 19, there is a connecting plate 21 slidably connected. The bottom end of the connecting plate 21 is fixed to the output end of the fourth drive 24. When the fourth drive 24 starts, it will drive the connecting plate 21 to slide on the surface of the fourth drive 24. On one side of the connecting plate 21, there is a mounting plate 22 fixed. At the bottom of the mounting plate 22, there is a pushing plate 23 fixed. At the bottom of the left pushing plate 23, there is a push plate fixed. When the fourth drive 24 moves, it will drive the pushing plate 23 to move, which is convenient for pushing the wire board to move. On the right side of the left pushing plate 23, there is a first push post 29 fixed;

[0039] At the bottom of the pushing plate 23, there is a position sensor fixed, which is used to sense whether the wire board is in place. On the right side of the push plate, there is a first pressure sensor fixed. On one side of the support block 19, there is an air duct 18 fixed. In the middle of the air duct 18, there is a first pump body 3 connected, which is used to pump the outside air to the upper part of the workbench 33. At the bottom of the air duct 18, there is a round head fixed. On the surface of the round head, there are several spray holes, which can disperse the air flow;

[0040] On the left side of the workbench 33, there is a connecting seat 25 fixed. On one side of the connecting seat 25, there is a fifth drive 26 fixed. At the top of the fifth drive 26, there is a partition 27 fixed, which is used to separate the two sets of wire boards on the conveyor belt 35 from the middle;

[0041] Inside the air duct 18, there is a water pipe 36 arranged. The diameter of the air duct 18 is larger than the diameter of the water pipe 36. Between the water pipe 36 and the air duct 18, there are several connecting columns connected, which is convenient for the air flow to pass through inside the air duct 18. In the middle of the water pipe 36, there is a second pump body 37 connected. The other end of the oil pipe 18 is connected to an external water tank;

[0042] As Figure 1 and Figure 3As shown, four groups of second push columns 30 are fixed to the left bottom of the right push plate 23;

[0043] As Figure 1 and Figure 4 shown, the hot pressing assembly is arranged above the middle of the workbench 33 for processing the wire board. The hot pressing assembly includes a bearing platform 34, an upper die base 12, and a lower die base 15. The bearing platform 34 is fixed to the surface of the workbench 33. The upper die base 12 is fixed to the bottom of the central board 2. The lower die base 15 is fixed to the top of the bearing platform 34. Two groups of passing channels 14 are fixed to both sides of the lower die base 15. The passing channels 14 are docked with the conveyor belt 35 so that each wire board corresponds to one passing channel 14. Elastic telescopic rods 11 are evenly fixed around the bearing platform 34. The top of the elastic telescopic rods 11 is fixed to the central board 2. Positioning columns 16 are fixed around the bottom of the upper die base 12. A plurality of forming blocks 17 are fixed to the middle of the bottom of the upper die base 12. A limiting plate 28 is slidably connected to the middle of the positioning column 16. The limiting plate 28 is slidably connected to the forming block 17. A shaping block 13 is arranged below the limiting plate 28. A plurality of square holes are formed in the shaping block 13 to facilitate the up and down movement of the forming block 17 in the square holes. A spring is connected between the upper die base 12 and the shaping block 13 to facilitate the reset of the shaping block 13 after work;

[0044] A controller is arranged on one side of the base 1. The controller is electrically connected to the first drive 9, the second drive 7, the third drive 31, the fourth drive 24, the position sensor, the first pressure sensor, the first pump body 3, and the second pump body 37; Embodiment 1

[0045] In this embodiment, the first drive 9 can be a hydraulic cylinder, the second drive 7 and the third drive 31 can be motors, the fourth drive 24 and the fifth drive 26 can be air cylinders. The staff sets the position where the position sensor detects the wire board in the controller. When the position sensor detects that the wire board reaches the position, the signal is transmitted to the controller;

[0046] Round holes are arranged on both the left and right sides of the wire board;

[0047] Specifically, when hot pressing and forming the wire board, the staff places the wire board on the conveyor belt 35. The second drive 7 can drive the conveyor belt 35 to move and move the wire board to the middle of the conveyor belt 35. At this time, the position sensor detects that the wire board reaches the set position, and the controller controls the second drive 7 to pause. At this time, the fifth drive 26 is controlled to start, driving the partition plate 27 to move downward so that the baffle 10 falls between two wire boards to separate the two wire boards;

[0048] The controller controls the fourth driver 24 to start again, causing the fourth driver 24 to extend and drive the push plate 23 to move downward. At this time, the push plate contacts the side surface of the wire board. Then, the controller starts the third driver 31 to rotate forward, thereby driving the fourth driver 24 to move to the right, causing the push plate to push the wire board from the conveyor belt 35 onto the passage 14. When the wire board moves close to the hot pressing assembly, the controller controls the fourth driver 24 to contract. Therefore, the connecting plate 21 will move upward, thereby driving the mounting plate 22 to move upward. Consequently, the push plate 23 also moves upward. The controller then controls the third driver 31 to rotate in the reverse direction, causing the push plate 23 to move to the left and insert the first push post 29 into the round hole on the left side of the wire board. Then, controlling the third driver 31 to rotate forward can better push the wire board into the hot pressing die;

[0049] When pushing the wire board into the hot pressing assembly, the controller controls the first driver 9 to start, pushing the central plate 2 downward and pushing the upper die base 12 downward, causing the shaping block 13 to contact the upper surface of the wire board. The upper die base 12 continues to push downward to compress the spring. Since perforations are provided around the shaping block 3, at this time, the positioning post 16 passes through the perforations and then inserts into the positioning holes around the wire board, which can position the wire board and prevent the position of the wire board from shifting during hot pressing forming of the wire board, resulting in forming deviation;

[0050] The upper die base 12 continues to move downward, causing the forming block 17 to move downward in the limiting plate 28. The limiting plate 28 prevents the forming block 17 from deviating in position when moving downward. Then, the forming block 17 passes through the square hole on the shaping block 13 and contacts the surface of the wire board to process the surface of the wire board, and multiple square holes can be processed on the wire board;

[0051] Since there are two sets of moving components, two wire boards can be pushed to move under the hot pressing assembly at one time, enabling the hot pressing assembly to process two wire boards simultaneously, thereby improving the processing efficiency. A cross plate is provided in the middle of the two passages 14, and side plates are provided on the outer sides of the two passages 14 to prevent the position of the wire board from deviating when pushing the wire board;

[0052] When the hot pressing is completed, the controller controls the third drive 31 on the right side of the workbench 33 to rotate forward, driving the fourth drive 24 on the right side to move leftward, thereby driving the push plate 23 on the right side to move left and right. When the push plate 23 on the right side moves above the wire board, the controller controls the fourth drive 24 on the right side to extend, so that the second push post 30 under the push plate 23 is inserted into the round hole on the right side of the wire board. Then, the controller controls the third drive 31 to rotate reversely, pulling the wire board to the right in the passage 14 under the hot pressing assembly, and pulling it to the right side of the passage 14. At this time, the fourth drive 24 is controlled to contract, moving the push plate 23 upward. Then, the third drive 31 is controlled to rotate forward, driving the second push post 30 at the bottom of the push plate 23 to move to the round hole on the left side of the wire board, making the second push post 30 in the second row opposite to the round hole. Then, the fourth drive 24 is controlled to move downward and insert into the round hole on the left side. At this time, the controller controls the third drive 31 to rotate reversely, pushing the wire board onto the conveyor belt 35 on the right side;

[0053] Then, the second drive 7 on the right side of the workbench 33 is controlled to start, driving the conveyor belt 35 to move, moving the formed wire board outward, which is convenient for the staff to take;

[0054] Through the above steps, while realizing the one-time forming of two wire boards, it can also automatically load and unload materials without manual operation, which not only improves work efficiency but also saves manpower; Embodiment Two

[0055] In this embodiment, the first pump body 3 can be an air pump;

[0056] When loading materials, in order to ensure the quality of the formed wire board, it is necessary to detect the wire board during loading;

[0057] Specifically, when the push plate pushes the wire board, the first pressure sensor on the push plate will detect the pressure given by the wire board to the push plate on the side and transmit the pressure value to the controller. The staff sets the pressure value as a in the controller. When the pressure value of the push plate pushing the wire board is less than or equal to a, it means that the wire board can be smoothly pushed under the hot pressing assembly without obstruction in the middle;

[0058] When the pressure value of the push plate pushing the wire board is greater than a, it means that the resistance received by the push plate when pushing the wire board is relatively large. Therefore, it is proved that there are more impurities on the surface of the passage 14, which will affect the position of the wire board during subsequent hot pressing;

[0059] Therefore, when the resistance received by the push plate becomes larger, the signal is transmitted to the controller and recorded. The third drive 31 continues to control the push plate 23 to move, continuing to push the wire board to move rightward on the passage 14, so that the wire board enters under the hot pressing assembly and continues the subsequent hot pressing work;

[0060] When the online circuit board is hot-pressed, the controller will send the signal of increased resistance received to the first pump body 3, and blow the outside air through the air duct 18 and through the spray holes on the round head onto the passage 14 to blow off the impurities on its surface, ensuring the cleanliness of the surface of the passage 14; Embodiment III

[0061] In this embodiment, the second pump body 37 can be a liquid pump;

[0062] The detected circuit board is pushed by the first push post 29 on the push plate 23 into the hot-pressing assembly for hot-pressing processing. At this time, the circuit board has moved away from the push plate, so the push plate no longer detects the resistance suffered by the circuit board during movement;

[0063] Since some impurities may adhere to the side plates on both sides of the passage 14, it is difficult to blow away the adhered impurities through the steps in Embodiment II. Therefore, during the process of the first push post 29 continuing to push the circuit board into the hot-pressing assembly, too much impurities will accumulate on the two side edges of the flawless circuit board, resulting in the impurities on both sides of the circuit board squeezing and deforming the circuit board when it enters the inside of the hot-pressing assembly. Therefore, it is necessary to judge again whether there are impurities on the two side edges of the circuit board during hot-pressing;

[0064] Specifically, when the hot-pressing assembly works, the positioning post 16 presses downward and inserts it into the positioning holes around the circuit board. Since a second pressure sensor is fixed at the bottom end of the positioning post 16, when the positioning post 16 presses downward and passes through the positioning holes of the circuit board, if the second pressure sensor does not detect pressure, it means that the positioning post 16 is inserted into the positioning hole without obstruction, so there are no adhered impurities on the side plates of the passage 14, and it also means that the circuit board has not deformed. Therefore, the hot-pressing forming work can continue;

[0065] If the second pressure sensor detects pressure when the positioning post 16 presses downward, it indicates that the circuit board has deformed. Therefore, the positions of the positioning holes around the circuit board and the positioning post 16 do not match. Therefore, the positioning post 16 will press on the upper surface of the circuit board and will not be inserted into the positioning hole. Therefore, it is known that there are impurities adhered to the side plates of the passage 14. The second pressure sensor transmits the signal to the controller, and the controller transmits the signal to the second pump body 37. The cleaning agent in the external water tank is pumped into the round head through the water pipe 36, and then the first pump body 3 is started. At the same time, gas is pumped into the round head, and through the action of the air flow, the cleaning agent can be pumped out from the round head together, so that the cleaning agent can be sprayed more widely, and thus can be sprayed onto the surface and side plates of the passage 14, so that the strongly adhered impurities fall off and are easily blown away by the air flow in the air duct 18;

[0066] Through the above steps, the quality of hot-pressing forming is improved, and the adhesiveness can also be cleaned up, further ensuring the cleanliness of the device Embodiment IV

[0067] In this embodiment, the following steps are added based on Embodiment 3;

[0068] Specifically, when the wire board is pushed by the first push post 29 to move on the passage 14, the movement of the wire board is monitored in real time by the camera 38 on the support block 19. If the movement of the wire board pauses on the passage 14, it means that the accumulated adhesion impurities on the side plate of the passage 14 are too much, which affects the movement of the wire board and will affect the subsequent hot pressing work. At this time, the camera 38 transmits a signal to the controller. Since there is an alarm in the controller, the alarm will sound at this time to inform the staff, and the staff will come to deal with it in time. Through this step, the impurity situation on the passage 14 can be intelligently detected and appropriately processed to improve the hot pressing efficiency.

[0069] In the description of the present application, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a connection that can communicate with each other; it can be directly connected, the communication inside two components, or the interaction relationship between two components. For those of ordinary skill in the art, the meanings of the above terms in the present application can be understood according to specific situations.

[0070] The above has introduced in detail an intelligent double-head hot pressing and forming device provided by the embodiments of the present application. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the technical solution and its core idea of the present application; those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. An intelligent double - punch hot - pressing forming device, comprising a base (1), a transmission component, a moving component, and a hot - pressing component. Among them: A workbench (33) is fixed on the top of the base (1). There are two groups of the transmission components, which are respectively arranged on the left and right sides of the workbench (33) for transporting the circuit boards. There are two groups of the moving components, which are respectively arranged on the left and right sides of the workbench (33) and correspond to the transportation components on the left and right sides one by one, for pushing the circuit boards into the hot - pressing component. The hot - pressing component is arranged above the middle of the workbench (33) for processing the circuit boards. The moving components on the left and right sides both include brackets (4), support blocks (19), threaded rods, sliding plates (20), fourth drivers (24), mounting plates (22), and pushing plates (23). Among them: There are two groups of the brackets (4). Each group of the brackets (4) has two, which are both fixed to the workbench (33). The support block (19) is fixed to the top of the bracket (4). The threaded rod is arranged inside the support block (19). The threaded rod is connected to the inside of the support block (19) by bearings. The sliding plate (20) is slidably connected to one side of the support block (19). One side of the sliding plate (20) is arranged inside the support block (19) and is threadedly connected to the threaded rod. The fourth driver (24) is fixed to the side of the sliding plate (20) away from the support block (19). A connecting plate (21) is slidably connected to the side of the fourth driver (24) away from the support block (19). The mounting plate (22) is fixed to one side of the connecting plate (21). The pushing plate (23) is fixed to the bottom of the mounting plate (22). A position sensor is fixed to the bottom of the pushing plate (23).

2. The intelligent double-head hot pressing and forming device according to claim 1, wherein: A push plate is fixed to the bottom of the left - hand pushing plate (23). A first push post (29) is fixed to the right side of the left - hand pushing plate (23). A first pressure sensor is fixed to the right side of the push plate. A second push post (30) is fixed to the left - hand top of the right - hand pushing plate (23). A third driver (31) is fixed to the top of the support block (19). A transmission component (32) is fixed to the side of the third driver (31) close to the outside. The output end of the transmission component (32) is connected to the sliding plate (20). The sliding plate (20) is located inside the support block (19) and is slidably connected to the support block (19). A camera (38) is fixed to the side of the support block (19) close to the hot - pressing component.

3. An intelligent double-headed hot pressing and forming device according to claim 2, characterized in that: A connecting seat (25) is fixed to the left side of the workbench (33). A fifth driver (26) is fixed to one side of the connecting seat (25). A partition (27) is fixed to the top of the fifth driver (26). An air duct (18) is fixed to one side of the support block (19). A first pump body (3) is connected to the middle of the air duct (18). A round head is fixed to the bottom of the air duct (18). A number of spray holes are opened on the surface of the round head.

4. The intelligent double - punch hot - pressing forming device according to claim 3, characterized in that: The transmission components on the left and right sides include a mounting seat (8) and a support seat, the mounting seat (8) is fixed to the workbench (33), a second drive (7) is fixed on the left side of the mounting seat (8), the support seat is respectively fixed on the two sides of the workbench (33), two groups of baffles (10) are fixed on the top of the support seat, the front and rear sides of the two groups of baffles (10) are both bearing-connected with a rotating shaft, the output end of the second drive (7) is fixed to the rear rotating shaft, and a conveyor belt (35) is fixed on the surface of the rotating shaft on the front and rear sides.

5. An intelligent double-head hot pressing and forming device according to claim 4, characterized in that: The upper surface of the workbench (33) is evenly distributed with support columns (6), the middle of the support columns (6) is slidably connected with a central plate (2), the top of the support columns (6) is fixed with a drive box (5), the interior of the drive box (5) is fixed with a first drive (9), the output shaft of the first drive (9) passes through the bottom of the drive box (5) and is fixed to the middle of the central plate (2).

6. The intelligent double-head hot pressing and forming device according to claim 5, wherein: The hot pressing assembly comprises a bearing platform (34), an upper die base (12), a lower die base (15), an elastic telescopic rod (11), a positioning column (16), and a plurality of forming blocks (17), wherein: The bearing platform (34) is fixed to the surface of the workbench (33), the upper die seat (12) is fixed to the bottom of the central plate (2), the lower die seat (15) is fixed to the top of the bearing platform (34), four groups of elastic telescopic rods (11) are provided, and the four groups of elastic telescopic rods (11) are fixed between the bearing platform (34) and the central plate (2), four groups of positioning columns (16) are provided, and the four groups of positioning columns (16) are all fixed to the bottom of the upper die seat (12), and a plurality of forming blocks (17) are all fixed in the middle of the bottom of the upper die seat (12); Two groups of passages (14) are fixed on both sides of the lower die base (15), and the passages (14) are connected to the conveyor belt (35).

7. An intelligent double - punch hot - pressing forming device according to claim 6, characterized in that: The middle of the positioning column (16) is slidably connected to a limiting plate (28), and the limiting plate (28) is slidably connected to the forming block (17). A shaping block (13) is arranged below the limiting plate (28), and a plurality of square holes are provided on the shaping block (13). A spring is connected between the upper die seat (12) and the shaping block (13), and the shaping block (13) is provided with through holes around it.

8. An intelligent double-head hot pressing and forming device according to claim 7, characterized in that: A controller is provided on one side of the base (1), and the controller is electrically connected to the first drive (9), the second drive (7), the third drive (31), the fourth drive (24), the position sensor, the first pressure sensor, the first pump body (3), and the camera (38).

Citation Information

Patent Citations

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