Additive forging composite forming equipment and method for forge piece
By designing an additive forging composite forming equipment for forging, the problems of poor additive processing stability, poor stamping effect and low synthetic stamping stability are solved, and a more stable and efficient forging additive processing and stamping process is achieved.
Patent Information
- Application Number
- CN202510375443.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-05-30
AI Technical Summary
In the prior art, it is not convenient to perform additive processing on forging materials, resulting in poor processing stability, poor stamping effect, and low synthetic stamping stability.
A forging additive forging composite forming equipment is designed, including forging stamping base, processing frame, synthetic placement box, hot press seat and other components. Through the coordinated work of these components, stable additive processing, stable stamping and efficient synthetic stamping of forging materials are achieved.
It improves the stability of the additive processing of forgings, enhances the effect of additive fusion stamping for forgings, and improves the stability of synthetic stamping for forgings.
Smart Images

Figure CN120055185A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of forging composite forming of forgings, and specifically to an additive forging composite forming device and method for forgings. Background Art
[0002] Forging is a processing method that uses forging machinery to apply pressure to metal blanks, causing plastic deformation to obtain forgings with certain mechanical properties, certain shapes, and dimensions. It is one of the two major components of forging and pressing (forging and stamping). Through forging, defects such as as-cast porosity generated during the smelting process of metals can be eliminated. When forgings are forged, additive processing of the internal material is required. For this reason, an additive forging composite forming device and method for forgings are proposed. However, during the implementation of the present invention, the inventor found that at least the following problems in the prior art have not been solved: 1. It is not convenient to perform additive processing on forging materials. When performing various processing on forging materials, shaking will occur, thereby reducing the stability of additive processing of forgings; 2. It is not convenient to perform stable stamping on additive forgings. When stamping additive forgings, the combined hardness of the forgings is poor, thereby reducing the effect of fusion stamping on additive forgings; 3. It is not convenient to perform efficient combined stamping on forgings. When combining forging materials, the pressure is small, thereby reducing the stability of combined stamping on forgings. For this reason, the present invention designs an additive forging composite forming device and method for forgings. Summary of the Invention
[0003] The purpose of the present invention is to solve the disadvantages existing in the prior art, such as: it is not convenient to perform additive processing on forging materials. When performing various processing on forging materials, shaking will occur, thereby reducing the stability of additive processing of forgings. It is also not convenient to perform stable stamping on additive forgings. When stamping additive forgings, the combined hardness of the forgings is poor, thereby reducing the effect of fusion stamping on additive forgings. Moreover, it is not convenient to perform efficient combined stamping on forgings. When combining forging materials, the pressure is small, thereby reducing the stability of combined stamping on forgings. For this reason, the present invention designs an additive forging composite forming device and method for forgings.
[0004] To achieve the above purpose, the present invention adopts the following technical solution: An additive forging composite forming device for forgings, including a forging stamping base, on the top of which a forging processing frame is fixedly installed. Inside the forging processing frame, a forging processing inner layer is fixedly installed. The surface of the forging processing frame is movably installed with a forging positioning door through a hinge. Inside the forging positioning door, positioning door bolts are all installed through. On the surface of the forging positioning door, a door handle is fixedly installed. Inside the forging processing inner layer, a combined placement box is movably installed. On the top of the combined placement box, combined box handles are all fixedly installed;
[0005] A forging stamping frame is fixedly installed on the top of the forging stamping base. A stamping heat dissipation mesh plate is installed through the interior of the forging stamping frame. On both sides inside the forging stamping base, forging opening and closing doors are movably installed through hinges. At the top end inside the forging stamping frame, a forging stamping top plate is fixedly installed. At the bottom of the forging stamping top plate, a forging stamping electric column is fixedly installed. At the bottom of the telescopic end of the forging stamping electric column, a forging stamping block is fixedly installed.
[0006] A forging cooling box is fixedly installed on one side of the forging stamping base. A synthetic melting seat is fixedly installed on one side of the forging cooling box. A hot pressing seat is fixedly installed on one side of the synthetic melting seat. At the bottom end inside the hot pressing seat, hot pressing bottom electric columns are fixedly installed. At the top of the telescopic end of the hot pressing bottom electric columns, a hot pressing base is fixedly installed. Inside the hot pressing base, a hot pressing inner layer is fixedly installed. At the top end inside the hot pressing seat, hot pressing top electric columns are fixedly installed. At the bottom of the telescopic end of the hot pressing top electric columns, a hot pressing top mounting plate is fixedly installed. At the bottom of the hot pressing top mounting plate, a hot pressing stamping block is fixedly installed.
[0007] Preferably, an additive melting seat is fixedly installed on the other side of the forging stamping base. An additive heater is fixedly installed inside the additive melting seat. An additive heating inner wall is fixedly installed inside the additive heater. An additive top cover is movably installed on the top of the additive melting seat. Top cover handles are fixedly installed on the top of the additive top cover.
[0008] Preferably, a control console is fixedly installed on the other side of the additive melting seat. A PLC controller is fixedly installed on the top of the control console. A power jack is installed through the interior of the PLC controller.
[0009] Preferably, a support base is fixedly installed at the bottom of the control console. A waterproof pad is fixedly installed at the bottom of the support base.
[0010] Preferably, a forging cooling drain pipe is installed through the surface of the forging cooling box. A cooling protective layer is fixedly installed inside the forging cooling box.
[0011] Preferably, the forging cooling drain pipe is made of a metal material. A forging cooling drain cover is installed with external threads on the forging cooling drain pipe.
[0012] Preferably, a synthetic heater is fixedly installed inside the synthetic melting seat. A synthetic heating inner wall is fixedly installed inside the synthetic heater.
[0013] Preferably, a hot pressing cooling box is fixedly installed on one side of the hot pressing seat. A hot pressing cooling drain pipe is installed through one side of the hot pressing cooling box. A hot pressing cooling drain cover is installed with external threads on the hot pressing cooling drain pipe.
[0014] Preferably, a cooling frame is movably installed inside the hot pressing and cooling box, and cooling handles are fixedly installed on the tops of the cooling frames.
[0015] A method for using a forging additive manufacturing composite forming device includes the following steps:
[0016] S1. Stably support the processing device through the support base, then use the waterproof pad to waterproof the device, then stably support the control device through the console, then use the plc controller to perform automated programming operation on the synthetic electrical equipment, then use the power jack to supply electrical energy to the electrical equipment, then use the additive heating inner wall to movably place the synthetic placement box with forging additive material, then use the additive heater to heat and melt the synthetic placement box inside the additive heating inner wall at a high temperature, then use the top cover handle to drive the additive top cover to movably close on the top of the additive melting seat, then use the synthetic placement box to place the forging material and the additive to be fused together, then use the forging processing inner layer inside the forging processing frame to movably place the synthetic placement box, then use the door handle to drive the forging positioning door to movably close on the surface of the forging processing frame, and then use the positioning door bolt to position and close the forging positioning door;
[0017] S2. Stably install the forging processing frame through the forging stamping base, then use the forging opening and closing door to open and close movably, then use the telescopic end inside the forging stamping electric column to drive the forging stamping block to stably stamp the forging additive inside the synthetic placement box, then inject water into the forging cooling box, then use the cooling protection layer to perform water cooling on the synthetic placement box after forging stamping, then use the forging cooling drain cover to threadedly close outside the forging cooling drain pipe when injecting water into the forging cooling box, and then use the forging cooling drain pipe to drain the cooling water inside the forging cooling box;
[0018] S3. Movably place the forging material cooled inside the synthetic placement box through the synthetic heating inner wall, then use the synthetic heater to perform synthetic heating on the forging collected inside the synthetic placement box after cooling, then use the telescopic ends inside multiple hot pressing bottom electric columns to drive the hot pressing base to move up and down, then use the hot pressing inner layer inside the hot pressing base to introduce and place the forged part after synthetic melting, then use the telescopic end inside the hot pressing top electric column to drive the hot pressing top mounting plate and the hot pressing stamping block to cooperate with the hot pressing base to perform up and down closing stamping, then use the cooling frame to movably place the forged material after hot pressing seat synthesis extrusion, then use the cooling handle to drive the cooling frame to movably cool and place inside the hot pressing and cooling box driving the cooling water source, then inject the cooling water source into the hot pressing and cooling box, then use the hot pressing cooling drain cover to threadedly install outside the hot pressing cooling drain pipe when the hot pressing and cooling box is cold, and then use the hot pressing cooling drain pipe to drain the cooled water source inside the hot pressing and cooling box.
[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0020] 1. The present invention synthesizes a placement box to place the forging material and the additive to be fused, then uses the inner layer of the forging processing inside the forging processing frame to actively place the synthesis placement box, then uses the door handle to drive the forging positioning door to actively close on the surface of the forging processing frame, and then uses the positioning door bolt to position and close the forging positioning door, which can stably place and mix-process the forging that needs to fuse materials, and there will be no shaking during the processing of the forging material, thereby improving the stability of the additive processing of the forging.
[0021] 2. The present invention stably installs the forging processing frame through the forging stamping base, then actively opens and closes it using the forging opening and closing door, and then uses the telescopic end inside the forging stamping electric column to drive the forging stamping block to stably stamp the forging additive inside the synthesis placement box, which can stably stamp and process the forging material, and there will be no poor fusion during the forging additive stamping, thereby improving the effect of the forging additive fusion stamping.
[0022] 3. The present invention drives the hot pressing base to move up and down through the telescopic ends inside multiple hot pressing bottom electric columns, then uses the hot pressing inner layer inside the hot pressing base to introduce and place the forged parts after synthesis melting, and then uses the telescopic end inside the hot pressing top electric column to drive the hot pressing top mounting plate and the hot pressing stamping block to cooperate with the hot pressing base to perform up and down closing stamping, which can efficiently synthesize and stamp the forging, and perform high-pressure stamping during the synthesis of the forging material, thereby improving the stability of the forging synthesis stamping. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is an overall three-dimensional view of a forging additive forging composite forming device proposed by the present invention;
[0024] Figure 2 is an overall structural schematic diagram of a forging additive forging composite forming device proposed by the present invention;
[0025] Figure 3 is a partial structural schematic diagram of the forging stamping base of a forging additive forging composite forming device proposed by the present invention;
[0026] Figure 4 is a partial structural schematic diagram of the forging processing frame of a forging additive forging composite forming device proposed by the present invention;
[0027] Figure 5 is a partial three-dimensional view of the hot pressing seat of a forging additive forging composite forming device proposed by the present invention;
[0028] Figure 6Partial structural schematic diagram of the additive melting seat of a forging additive forging composite forming device proposed by the present invention;
[0029] Figure 7 Partial perspective view of the forging cooling box of a forging additive forging composite forming device proposed by the present invention;
[0030] Figure 8 Partial structural schematic diagram of the synthetic melting seat of a forging additive forging composite forming device proposed by the present invention;
[0031] Figure 9 Partial perspective view of the hot press cooling box of a forging additive forging composite forming device proposed by the present invention;
[0032] Figure 10 Partial perspective view of the control console of a forging additive forging composite forming device proposed by the present invention.
[0033] In the figure: 1, support base; 101, waterproof pad; 2, control console; 201, plc controller; 202, power jack; 3, additive melting seat; 301, additive heater; 302, additive heating inner wall; 303, additive top cover; 304, top cover handle; 4, forging stamping base; 401, forging stamping frame; 402, stamping heat dissipation mesh plate; 403, forging opening and closing door; 404, forging stamping top plate; 405, forging stamping electric column; 406, forging stamping block; 5, forging cooling box; 501, forging cooling drain pipe; 502, forging cooling drain cover; 503, cooling protection layer; 6, synthetic melting seat; 601, synthetic heater; 602, synthetic heating inner wall; 7, hot press seat; 701, hot press bottom electric column; 702, hot press base; 703, hot press inner layer; 704, hot press top electric column; 705, hot press top mounting plate; 706, hot press stamping block; 8, hot press cooling box; 801, hot press cooling drain pipe; 802, hot press cooling drain cover; 803, cooling handle; 804, cooling frame; 9, forging processing frame; 901, forging processing inner layer; 902, forging positioning door; 903, positioning bolt; 904, door handle; 10, synthetic placement box; 1001, synthetic box handle. Detailed implementation manners
[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the protection scope of the present invention.
[0035] Such as Figures 1 - 10As shown in the figure, the present invention provides a forging additive forging composite forming device and method, including a forging stamping base 4. A forging processing frame 9 is fixedly installed on the top of the forging stamping base 4. A forging processing inner layer 901 is fixedly installed inside the forging processing frame 9. A forging positioning door 902 is movably installed on the surface of the forging processing frame 9 through a hinge. Positioning bolts 903 are installed through the inside of the forging positioning door 902. A door handle 904 is fixedly installed on the surface of the forging positioning door 902. A synthetic placement box 10 is movably installed inside the forging processing inner layer 901. Synthetic box handles 1001 are fixedly installed on the top of the synthetic placement box 10;
[0036] A forging stamping frame 401 is fixedly installed on the top of the forging stamping base 4. Stamping heat dissipation mesh plates 402 are installed through the inside of the forging stamping frame 401. Forging opening and closing doors 403 are movably installed on both sides inside the forging stamping base 4 through hinges. A forging stamping top plate 404 is fixedly installed at the top inside the forging stamping frame 401. A forging stamping electric column 405 is fixedly installed at the bottom of the forging stamping top plate 404. A forging stamping block 406 is fixedly installed at the bottom of the telescopic end of the forging stamping electric column 405;
[0037] A forging cooling box 5 is fixedly installed on one side of the forging stamping base 4. A synthetic melting seat 6 is fixedly installed on one side of the forging cooling box 5. A hot pressing seat 7 is fixedly installed on one side of the synthetic melting seat 6. Hot pressing bottom electric columns 701 are fixedly installed at the bottom ends inside the hot pressing seat 7. A hot pressing base 702 is fixedly installed at the top of the telescopic end of the hot pressing bottom electric column 701. A hot pressing inner layer 703 is fixedly installed inside the hot pressing base 702. Hot pressing top electric columns 704 are fixedly installed at the top ends inside the hot pressing seat 7. A hot pressing top mounting plate 705 is fixedly installed at the bottom of the telescopic end of the hot pressing top electric column 704. A hot pressing stamping block 706 is fixedly installed at the bottom of the hot pressing top mounting plate 705.
[0038] When the device works, the forging material and the additive to be fused are placed in the synthetic placement box 10 for fusion. Then, the synthetic placement box 10 is placed movably by using the forging processing inner layer 901 inside the forging processing frame 9. Then, the door handle 904 is used to drive the forging positioning door 902 to close movably on the surface of the forging processing frame 9. Then, the positioning bolt 903 is used to position and close the forging positioning door 902, so as to stably place and mix-process the forging that needs to fuse materials, and there will be no shaking during the processing of the forging material, thereby improving the stability of the forging additive processing.
[0039] The forging processing frame 9 is stably installed through the forging stamping base 4, and then the forging opening and closing door 403 is used for movable opening and closing. Then, the telescopic end inside the forging stamping electric column 405 drives the forging stamping block 406 to stably stamp the forging additive inside the synthetic placement box 10, which can stably stamp and process the material of the forging. When stamping the forging additive, the situation of poor fusion will not occur, thus improving the effect of fusion stamping of the forging additive. The forging stamping electric column 405 is electrically connected to the plc controller 201 through a wire;
[0040] The telescopic ends inside multiple hot pressing bottom electric columns 701 drive the hot pressing base 702 to move up and down. Then, the hot pressing inner layer 703 inside the hot pressing base 702 is used to import and place the forged parts after synthetic melting. Then, the telescopic end inside the hot pressing top electric column 704 drives the hot pressing top mounting plate 705 and the hot pressing stamping block 706 to cooperate with the hot pressing base 702 for up and down closing stamping, which can perform efficient synthetic stamping on the forging and perform high-pressure stamping during the synthesis of the forging material, thus improving the stability of the synthetic stamping of the forging;
[0041] Wherein, on the other side of the forging stamping base 4, an additive melting seat 3 is fixedly installed. Inside the additive melting seat 3, an additive heater 301 is fixedly installed. Inside the additive heater 301, an additive heating inner wall 302 is fixedly installed. On the top of the additive melting seat 3, an additive top cover 303 is movably installed. On the top of the additive top cover 303, top cover handles 304 are fixedly installed;
[0042] It should be noted that when the device works, the additive heating inner wall 302 can be used to movably place the synthetic placement box 10 with the forging additive material. Then, the additive heater 301 is used to heat and melt the synthetic placement box 10 inside the additive heating inner wall 302 at a high temperature. Then, the top cover handle 304 is used to drive the additive top cover 303 to movably close on the top of the additive melting seat 3, thus improving the heating efficiency of the forging material. The additive heater 301 is electrically connected to the plc controller 201 through a wire;
[0043] Wherein, on the other side of the additive melting seat 3, a control console 2 is fixedly installed. On the top of the control console 2, a plc controller 201 is fixedly installed. Inside the plc controller 201, a power jack 202 is installed through;
[0044] It should be noted that the control equipment is stably supported through the control console 2, and then the plc controller 201 is used to perform automated programming operation on the synthetic electrical equipment. Then, the power jack 202 is used to provide electrical energy for the electrical equipment, thus improving the stability of the operation of the electrical equipment. The plc controller 201 is electrically connected to the power jack 202 through a wire, and the power jack 202 is electrically connected to an external power supply through a wire;
[0045] Among them, a support base 1 is fixedly installed at the bottom of the control console 2, and a waterproof pad 101 is fixedly installed at the bottom of the support base 1;
[0046] It should be noted that the processing equipment is stably supported by the support base 1, and then the waterproof pad 101 is used to waterproof the equipment, thereby improving the stability of the processing equipment during use;
[0047] Among them, a forging cooling drain pipe 501 is installed through the surface of the forging cooling box 5, and a cooling protection layer 503 is fixedly installed inside the forging cooling box 5;
[0048] It should be noted that by filling water inside the forging cooling box 5, and then using the cooling protection layer 503 to perform water cooling on the synthetic placement box 10 after forging stamping, the forging can be cooled after additive manufacturing, thereby improving the hardness of the forging after additive manufacturing;
[0049] Among them, the forging cooling drain pipe 501 is made of metal material, and a forging cooling drain cover 502 is installed on the external thread of the forging cooling drain pipe 501;
[0050] It should be noted that when filling water inside the forging cooling box 5, the forging cooling drain cover 502 is screwed and closed on the outside of the forging cooling drain pipe 501, and then the forging cooling drain pipe 501 is used to drain the cooling water inside the forging cooling box 5, thereby improving the convenience of discharging the cooling water source.
[0051] Among them, a synthetic heater 601 is fixedly installed inside the synthetic melting seat 6, and a synthetic heating inner wall 602 is fixedly installed inside the synthetic heater 601;
[0052] It should be noted that the synthetic heating inner wall 602 is used to actively place the cooled forging materials inside the synthetic placement box 10, and then the synthetic heater 601 is used to perform synthetic heating on the collected cooled forgings inside the synthetic placement box 10, thereby improving the stability of forging heating. The synthetic heater 601 is electrically connected to the plc controller 201 through a wire.
[0053] Among them, a hot pressing cooling box 8 is fixedly installed on one side of the hot pressing seat 7, a hot pressing cooling drain pipe 801 is installed through one side of the hot pressing cooling box 8, and a hot pressing cooling drain cover 802 is installed on the external thread of the hot pressing cooling drain pipe 801.
[0054] It should be noted that by injecting a cooling water source into the hot press cooling box 8, then using the hot press cooling drain cover 802 to install it externally threaded on the hot press cooling drain pipe 801 when the inside of the hot press cooling box 8 is cold, and then using the hot press cooling drain pipe 801 to discharge the cooled water source inside the hot press cooling box 8, thereby improving the stability of the discharge of the cooling water source.
[0055] Among them, a cooling frame 804 is movably installed inside the hot press cooling box 8, and cooling handles 803 are fixedly installed on the tops of the cooling frames 804.
[0056] It should be noted that the forged materials after the hot press seat 7 is synthetically extruded are movably placed through the cooling frame 804, and then the cooling handle 803 is used to drive the cooling frame 804 to be movably cooled and placed inside the hot press cooling box 8 that drives the cooling water source, thereby improving the cooling effect on the synthetic forged materials.
[0057] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A forging additive forging composite forming device, comprising a forging stamping base (4), characterized in that: A forging processing frame (9) is fixedly installed on the top of the forging stamping base (4), a forging processing inner layer (901) is fixedly installed inside the forging processing frame (9), a forging positioning door (902) is movably installed on the surface of the forging processing frame (9) through a hinge, a positioning bolt (903) is installed through the inside of the forging positioning door (902), a door handle (904) is fixedly installed on the surface of the forging positioning door (902), a synthetic placement box (10) is movably installed inside the forging processing inner layer (901), and a synthetic box handle (1001) is fixedly installed on the top of the synthetic placement box (10); A forging stamping frame (401) is fixedly installed on the top of the forging stamping base (4), a stamping heat dissipation mesh plate (402) is installed throughout the interior of the forging stamping frame (401), forging opening and closing doors (403) are movably installed on both sides of the interior of the forging stamping base (4) through hinges, a forging stamping top plate (404) is fixedly installed on the top of the interior of the forging stamping frame (401), a forging stamping electric column (405) is fixedly installed on the bottom of the forging stamping top plate (404), and a forging stamping block (406) is fixedly installed on the bottom of the telescopic end of the forging stamping electric column (405); A forging cooling box (5) is fixedly installed on one side of the forging stamping base (4), a synthetic smelting base (6) is fixedly installed on one side of the forging cooling box (5), a hot pressing base (7) is fixedly installed on one side of the synthetic smelting base (6), a hot pressing bottom electric column (701) is fixedly installed at the bottom end of the hot pressing base (7), a hot pressing base (702) is fixedly installed at the top of the telescopic end of the hot pressing bottom electric column (701), a hot pressing inner layer (703) is fixedly installed inside the hot pressing base (702), a hot pressing top electric column (704) is fixedly installed at the top end of the hot pressing base (7), a hot pressing top mounting plate (705) is fixedly installed at the bottom of the telescopic end of the hot pressing top electric column (704), and a hot pressing stamping block (706) is fixedly installed at the bottom of the hot pressing top mounting plate (705).
2. The forging additive forging composite forming equipment according to claim 1, characterized in that: An additive smelting seat (3) is fixedly installed on the other side of the forging stamping base (4), an additive heater (301) is fixedly installed inside the additive smelting seat (3), an additive heating inner wall (302) is fixedly installed inside the additive heater (301), an additive top cover (303) is movably installed on the top of the additive smelting seat (3), and a top cover handle (304) is fixedly installed on the top of the additive top cover (303).
3. The forging additive forging composite forming equipment according to claim 2, characterized in that: A control console (2) is fixedly mounted on the other side of the additive melting seat (3), a plc controller (201) is fixedly mounted on the top of the control console (2), and a power socket (202) is installed through the inside of the plc controller (201).
4. The forging additive forging composite forming equipment according to claim 3, characterized in that: A support base (1) is fixedly mounted on the bottom of the console (2), and a waterproof pad (101) is fixedly mounted on the bottom of the support base (1).
5. The forging additive forging composite forming equipment according to claim 1, characterized in that: A forging cooling drain pipe (501) is installed through the surface of the forging cooling box (5), and a cooling protective layer (503) is fixedly installed inside the forging cooling box (5).
6. The forging additive forging composite forming equipment according to claim 5, characterized in that: The forging cooling drain pipe (501) is made of metal material, and a forging cooling drain cover (502) is installed on the external thread of the forging cooling drain pipe (501).
7. The forging additive forging composite forming equipment according to claim 1, characterized in that: A synthesis heater (601) is fixedly installed inside the synthesis smelting seat (6), and a synthesis heating inner wall (602) is fixedly installed inside the synthesis heater (601).
8. The forging additive forging composite forming equipment according to claim 1, characterized in that: A hot pressing cooling box (8) is fixedly mounted on one side of the hot pressing seat (7), a hot pressing cooling drainage pipe (801) is installed through one side of the hot pressing cooling box (8), and a hot pressing cooling drainage cover (802) is installed on the external thread of the hot pressing cooling drainage pipe (801).
9. The forging additive forging composite forming equipment according to claim 8, characterized in that: A cooling frame (804) is movably installed inside the hot-pressing cooling box (8), and a cooling handle (803) is fixedly installed on the top of the cooling frame (804).
10. A method for using a forging additive forging composite forming device, based on the forging additive forging composite forming device according to any one of claims 1 to 9, characterized in that: The following steps are involved: S1. The processing equipment is stably supported by a support base (1), and then the equipment is waterproofed by a waterproof pad (101). Then, the control device is stably supported by a control console (2), and then the composite electrical equipment is automatically programmed and operated by a PLC controller (201). Then, the electrical equipment is provided with electric energy by a power socket (202), and then, a composite placement box (10) with a forging additive material is placed movably by using an additive heating inner wall (302), and then, the composite placement box (10) inside the additive heating inner wall (302) is heated by an additive heater (301). The forging material and the additive material to be fused are then melted by heating at high temperature, and then the top cover handle (304) is used to drive the additive cover (303) to move and close on the top of the additive melting seat (3), and then the forging material and the additive material to be fused are placed by the synthesis placement box (10), and then the forging processing inner layer (901) inside the forging processing frame (9) is used to move the synthesis placement box (10), and then the door handle (904) is used to drive the forging positioning door (902) to move and close on the surface of the forging processing frame (9), and then the positioning door bolt (903) is used to position and close the forging positioning door (902); S2, stably installing the forging processing frame (9) through the forging stamping base (4), then using the forging opening and closing door (403) to movably open and close it, then using the telescopic end inside the forging stamping electric column (405) to drive the forging stamping block (406) to stably stamp the forging material inside the synthetic placement box (10), then using the forging cooling box (5) to inject water inside, then using the cooling protective layer (503) to water-cool the synthetic placement box (10) after the forging is stamped, then using the forging cooling drainage cover (502) to thread the outside of the forging cooling drainage pipe (501) when injecting water inside the forging cooling box (5), and then using the forging cooling drainage pipe (501) to discharge the cooling water inside the forging cooling box (5); S3, the forging material after internal cooling is placed in the synthetic placement box (10) by means of the synthetic heating inner wall (602), and then the synthetic heater (601) is used to collect the forging material after internal cooling in the synthetic placement box (10) for synthetic heating, and then the internal telescopic ends of the multiple hot pressing bottom electric columns (701) are used to drive the hot pressing base (702) to move up and down, and then the hot pressing inner layer (703) inside the hot pressing base (702) is used to introduce and place the forging material after synthetic smelting, and then the telescopic ends inside the hot pressing top electric column (704) are used to drive the hot pressing top mounting plate (705) and the hot pressing stamping block (706) to move upward and downward. The hot pressing base (702) is closed and stamped up and down, and then the cooling frame (804) is used to movably place the forged material after the hot pressing base (7) is extruded, and then the cooling handle (803) is used to drive the cooling frame (804) to movably cool and place it inside the hot pressing cooling box (8) that drives the cooling water source, and then the cooling water source is injected into the hot pressing cooling box (8), and then the hot pressing cooling drainage cover (802) is installed on the external thread of the hot pressing cooling drainage pipe (801) when the hot pressing cooling box (8) is cold, and then the hot pressing cooling drainage pipe (801) is used to discharge the water source after cooling inside the hot pressing cooling box (8).