A stage lamp metal piece rapid stamping forming device
Patent Information
- Application Number
- CN202611014992.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-09
- Publication Date
- 2026-09-29
AI Technical Summary
[0004]本发明的目的是为了解决现有技术中导致工序衔接慢导致设备利用率低的缺点的问题,而提出的一种舞台灯具用金属件快速冲压成型装置
1、本发明通过导向筒插入下模板导向孔完成对位,双顶杆伸出穿过滑动孔实现模具卡接,同步驱动齿轮齿条机构解除安装模板与安装基板的限位,可将冲压完成后的安装模板、下模板及成型金属件整体搬运至静置箱内自然冷却,解决了现有技术中冷却工序占用冲压工位导致工序衔接不畅、冲压产能被制约的问题。
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Figure CN122829128A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of metal stamping, and more particularly to a rapid stamping forming device for metal parts used in stage lighting. Background Technology
[0002] Stage lighting fixtures use a large number of aluminum alloy metal parts, such as lamp body brackets, heat sinks, and connectors. These metal parts usually need to have high dimensional accuracy, good surface quality, and a certain structural strength to meet the requirements of the lighting fixture in terms of installation, heat dissipation, and optical positioning.
[0003] Currently, the application of precision aluminum alloy forgings in stage lighting is becoming increasingly widespread. Their manufacturing process mostly adopts stamping technology. In existing technology, stamping equipment usually includes an upper die, a lower die, and a drive mechanism. It uses hydraulic or mechanical pressure to press metal sheets or billets into shape. However, after stamping, aluminum alloy forgings need to be naturally cooled to stabilize their microstructure and properties. However, existing equipment mostly relies on manual or external machinery for handling, lacking an integrated die handling structure, which leads to poor process connection and causes the cooling process to occupy the stamping station, affecting equipment utilization. Summary of the Invention
[0004] The purpose of this invention is to solve the problem of slow process connection and low equipment utilization in the prior art, and to propose a rapid stamping forming device for metal parts of stage lighting fixtures.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A rapid stamping forming device for metal parts of stage lighting fixtures includes a mounting base plate, an upper template and a lower template. A movable frame is provided on the mounting base plate, and an electric hydraulic rod is provided on the movable frame to drive the upper template to move towards the lower template. The forging of the metal parts of the stage lighting fixtures is completed by extruding the blank through the movement of the upper template towards the lower template. The mounting base plate is also provided with a transport component, and the bottom end of the lower template is provided with an installation template. The transport component is inserted into the installation template to transport the installation template. The transport component includes an installation cylinder and a guide cylinder. The guide cylinder is located at the bottom of the installation cylinder, and a first top rod and a second top rod are installed inside the guide cylinder. The first top rod is mounted on the second top rod, and the guide cylinder inserted into the installation template is engaged with the installation template by the reverse movement of the first top rod and the second top rod. The guide cylinder moves with the installation cylinder to transport the installation template.
[0006] Preferably, the installation template is provided with multiple fixed seats, and a bearing seat is provided on top of each of the multiple fixed seats. Multiple telescopic guide rods are provided at the bottom of the bearing seat. The fixed seats are arranged between the multiple telescopic guide rods. Sliding holes one and two are respectively opened on the bearing seat and the fixed seats.
[0007] Preferably, a connecting frame is provided between the plurality of bearing seats, and a sliding groove is provided at the bottom end of the connecting frame. A rack is slidably disposed in the sliding groove, and the end of the rack is disposed in a sliding hole and moves with the vertical movement of the connecting frame.
[0008] Preferably, the installation template is provided with a plurality of rotating gears, which are respectively meshed with a plurality of racks. The installation template is also provided with a plurality of guide platforms, on which racks are respectively slidably disposed, and the racks are respectively meshed with a plurality of rotating gears. The racks are respectively disposed at the bottom end of the racks.
[0009] Preferably, a movable disk is slidably disposed inside the mounting cylinder, and multiple drive rods are disposed on the movable disk, with the multiple drive rods respectively disposed directly above multiple guide cylinders. The movable disk pushes the drive rods to move into the guide cylinders by extending and retracting the electric push rods.
[0010] Preferably, the guide cylinder is provided with a sliding rod one and a sliding rod two arranged opposite to each other. The sliding rod one and the sliding rod two are slidably arranged in the guide cylinder, and the bottom ends of the sliding rod one and the sliding rod two are respectively connected to the top rod one through a connecting rod and a top rod two. The upper ends of the sliding rod one and the sliding rod two are fixedly connected to the drive rod.
[0011] Preferably, a settling box is provided on the mounting base plate, a settling rack is provided inside the settling box, and a telescopic door is provided on the settling box. A second guide rail is provided on the mounting base plate and extends into the settling box. A second movable frame is slidably provided on the second guide rail. The installation template is transported into the settling box by moving the second movable frame on the second guide rail.
[0012] Preferably, a sliding column is slidably provided in both the mounting template and the lower template, a conical top block is provided at the upper end of the sliding column, and the conical top block is provided in the lower template, with a positioning cylinder provided at the upper end of the conical top block.
[0013] Preferably, the upper template is provided with a positioning rod that fits with the positioning cylinder, and the positioning rod can extend and retract along the moving direction of the upper template. The lower template is provided with multiple guide holes, and the upper template is provided with an insertion rod that is inserted into the guide holes.
[0014] Preferably, the mounting base plate is provided with a guide rail one, the movable frame one is slidably disposed on the guide rail one, and the guide rail two is disposed between the guide rails one and arranged parallel to each other.
[0015] Compared with the prior art, the present invention has the following advantages: 1. This invention completes the alignment by inserting a guide cylinder into the guide hole of the lower template, and the double push rods extend through the sliding hole to achieve mold engagement. The synchronously driven gear and rack mechanism releases the limit between the mounting template and the mounting base plate, and can transport the stamped mounting template, lower template and formed metal parts as a whole to the settling box for natural cooling. This solves the problem in the prior art that the cooling process occupies the stamping station, resulting in poor process connection and restricted stamping capacity.
[0016] 2. In this invention, after the guide tube of the transport component is inserted and pressed down on the bearing seat, the electric push rod drives the first and second push rods to push the first rack downward. Through gear meshing, the second rack moves horizontally, thereby automatically releasing the limit between the installation sleeve and the plug-in column. This achieves synchronous unlocking and locking during transport without the need for additional power or manual operation, avoiding the risk of mold falling off or being damaged.
[0017] 3. This invention simplifies the demolding operation and reduces the reliance on manual part removal by setting a sliding column, a conical top block and a positioning cylinder in the lower template. After cooling, the positioning cylinder can be automatically gripped by an automatic gripping device on the moving table via an electric guide rail, so that the conical top block ejects the formed metal part. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of a rapid stamping forming device for metal parts for stage lighting proposed in this invention; Figure 2 This is a schematic diagram of the structure of the movable frame and the guide rail. Figure 3 A schematic diagram of the electric guide rail and moving platform structure; Figure 4 This is a schematic diagram showing the connection between the electro-hydraulic rod and the upper template; Figure 5 This is a diagram showing the connection between the installation template and the lower template; Figure 6 A schematic diagram of the conical top block and positioning cylinder structure; Figure 7 A schematic diagram of the plug-in post and mounting sleeve structure; Figure 8 This is a schematic diagram showing the connection between the connecting frame and the support base; Figure 9 This is a schematic diagram showing the connection between the support seat and the telescopic guide rod. Figure 10 Here are schematic diagrams of sliding hole one and sliding hole two; Figure 11 This is a schematic diagram of the movable frame 2 and the guide cylinder structure; Figure 12 This is a schematic diagram of the moving disc and drive lever structure; Figure 13 This is a schematic diagram of the structure of push rod one and push rod two.
[0019] In the diagram: 1. Mounting base plate; 2. Settling box; 201. Telescopic gate; 202. Settling frame; 203. Electric guide rail; 204. Moving platform; 3. Moving frame one; 301. Electric hydraulic rod; 302. Upper template; 303. Guide rail one; 4. Moving frame two; 401. Mounting cylinder; 402. Electric push rod; 403. Moving plate; 404. Drive rod; 405. Guide cylinder; 406. Sliding rod one; 407. Sliding rod two; 408. Top rod one; 409. Top rod two; 410. Guide rail 2; 5. Installation template; 501. Lower template; 502. Sliding column; 503. Conical top block; 504. Positioning cylinder; 505. Guide hole; 506. Insertion column; 507. Installation sleeve; 6. Connecting frame; 601. Bearing seat; 602. Telescopic guide rod; 603. Sliding hole 1; 604. Fixed seat; 605. Sliding hole 2; 606. Sliding groove; 607. Rack 1; 608. Rotary gear; 609. Rack 2; 610. Guide table. Detailed Implementation
[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0021] Reference Figures 1-13 A rapid stamping forming device for metal parts of stage lighting fixtures includes a mounting base plate 1, an upper template 302 and a lower template 501. A movable frame 3 is provided on the mounting base plate 1. An electric hydraulic rod 301 is provided on the movable frame 3 to drive the upper template 302 to move towards the lower template 501. By moving the upper template 302 towards the lower template 501, the blank is extruded to complete the forging of the metal parts of the stage lighting fixtures.
[0022] The mounting base plate 1 is also provided with a transport component. The bottom end of the lower template 501 is provided with a mounting template 5. The transport component is inserted into the mounting template 5 to transport the mounting template 5.
[0023] Reference Figure 11 and Figure 13The transport component includes an installation cylinder 401 and a guide cylinder 405. The guide cylinder 405 is located at the bottom end of the installation cylinder 401, and a first push rod 408 and a second push rod 409 are provided inside the guide cylinder 405. The first push rod 408 is sleeved on the second push rod 409. By moving the first push rod 408 and the second push rod 409 in opposite directions, the guide cylinder 405 inserted into the installation template 5 is engaged with the installation template 5. As the installation cylinder 401 moves, it drives the guide cylinder 405 to move, thus transporting the installation template 5 as a whole.
[0024] Reference Figure 1 and Figure 2 The mounting base plate 1 is a rectangular steel plate or cast iron platform with vibration damping pads on its lower surface to support the entire equipment. A guide rail 303 is provided on the mounting base plate 1. The guide rail 303 is a linear guide rail and is arranged along the length of the mounting base plate 1. The moving frame 3 is an inverted U-shaped or gantry frame with a slider at its bottom that slides with the guide rail 303 and can move horizontally along the guide rail 303. The movement of the moving frame 3 can be driven by an independent electric screw or cylinder. An electric hydraulic rod 301 is vertically fixed on the top crossbeam of the moving frame 3. The piston rod of the electric hydraulic rod 301 extends vertically downward and its end is fixedly connected to the upper template 302. The upper template 302 is driven to move up and down by the extension and retraction of the electric hydraulic rod 301.
[0025] The mounting base plate 1 is also provided with a second guide rail 410. The second guide rail 410 is also a linear guide rail, which is set between the first guide rail 303 and is parallel to each other. One end of the second guide rail 410 extends into the interior of the stationary box 2, and the other end extends to the vicinity of the stamping station.
[0026] Reference Figure 6 The lower template 501 is fixedly installed on the upper surface of the mounting template 5. The upper surface of the lower template 501 has a cavity that matches the shape of the metal parts of the stage lighting fixture. The lower template 501 has multiple guide holes 505 for guiding the insertion rods on the upper template 302. The lower surface of the upper template 302 has corresponding insertion rods. During stamping, the insertion rods are inserted into the guide holes 505 to ensure the mold closing accuracy.
[0027] Reference Figure 8The installation template 5 is provided with multiple fixed seats 604. The fixed seats 604 are annular or cylindrical seats and are fixed inside the installation template 5. A bearing seat 601 is provided directly above each fixed seat 604. The bearing seat 601 is cylindrical or rectangular and can slide up and down inside the installation template 5. Multiple telescopic guide rods 602 are provided at the bottom of the bearing seat 601. The telescopic guide rods 602 are sleeve structures and are fixed inside the installation template 5. They are used to guide the vertical movement of the bearing seat 601 and provide a reset elastic force (with an internal spring). The fixed seats 604 are arranged between the multiple telescopic guide rods 602. The bearing seat 601 and the fixed seat 604 are respectively provided with a sliding hole 603 and a sliding hole 605.
[0028] Multiple support seats 601 are interconnected by a connecting frame 6. The connecting frame 6 is an L-shaped frame with a sliding groove 606 at its bottom. The sliding groove 606 is a horizontal T-shaped groove. A rack 607 is slidably arranged in the sliding groove 606. The rack 607 is a long straight rack with one end set in a sliding hole 603. A spring is set at the other end of the rack 607 and is set in the sliding groove 606 to provide thrust to the rack 607, so that the rack 607 is always located in the sliding hole 603 when it is not pushed by the push rod.
[0029] Reference Figure 7 and Figure 10 The installation template 5 also contains multiple rotating gears 608, which are installed inside the installation template 5 via rotating shafts. The multiple rotating gears 608 are respectively meshed with multiple racks 607. The installation template 5 also contains multiple guide platforms 610, each with a horizontal guide groove. Each guide platform 610 has a rack 609 slidably mounted on it. The racks 609 are horizontally arranged straight racks. The multiple racks 609 are respectively meshed with multiple rotating gears 608, and the racks 609 are respectively located at the bottom of multiple racks 607 (i.e., the meshing point between the racks 609 and the rotating gears 608 is located below the racks 607). When the racks 607 move, they drive the rotating gears 608 to rotate, thereby driving the racks 609 to move horizontally.
[0030] The transport component includes a mounting cylinder 401 and a guide cylinder 405. The mounting cylinder 401 is a cylindrical component. The second movable frame 4 is an L-shaped or gate-shaped support with a slider at its bottom that slides and engages with the second guide rail 410, allowing it to move horizontally along the second guide rail 410. The mounting cylinder 401 is hollow inside, and a movable disk 403 is slidably arranged inside it. The movable disk 403 is a circular plate. An electric push rod 402 is fixedly installed on the top of the mounting cylinder 401. The piston rod of the electric push rod 402 extends into the mounting cylinder 401 and is fixedly connected to the movable disk 403. Multiple drive rods 404 are fixedly arranged on the lower surface of the movable disk 403. The drive rods 404 are slender round rods, and the number is the same as that of the guide cylinders 405. The multiple drive rods 404 are respectively arranged directly above the multiple guide cylinders 405. An electric hydraulic cylinder is arranged between the second movable frame 4 and the mounting cylinder 401 to drive the mounting cylinder 401 to move up and down.
[0031] Reference Figure 11 The guide cylinder 405 is a cylindrical component fixed to the bottom end of the mounting cylinder 401. Inside the guide cylinder 405 are two opposing sliding rods, a first sliding rod 406 and a second sliding rod 407. Both sliding rods 406 and 407 are long rods slidably disposed within the guide cylinder 405 and can slide along the axial direction of the guide cylinder 405. The upper ends of both sliding rods 406 and 407 are fixedly connected to the drive rod 404, and the lower ends of both sliding rods 406 and 407 are connected to the top rod via connecting rods. The second sliding rod 409 and the first sliding rod 408 are connected. Specifically, the bottom end of the first sliding rod 406 is rotatably connected to the second sliding rod 409 through a connecting rod, and the bottom end of the second sliding rod 407 is rotatably connected to the first sliding rod 408 through a connecting rod. The first sliding rod 408 is sleeve-shaped and is slidably sleeved on the outside of the second sliding rod 409. When the driving rod 404 pushes the first sliding rod 406 and the second sliding rod 407 to move downward, the first sliding rod 408 and the second sliding rod 409 extend from the bottom of the guide cylinder 405 to achieve the snap-fit of the internal structure of the installation template 5.
[0032] Reference Figure 1 and Figure 2 A settling box 2 is provided on the mounting base plate 1. The settling box 2 is a rectangular box with a settling rack 202 inside for placing the stamped mounting template 5 and metal parts. A telescopic door 201 is provided on the side of the settling box 2, which can be automatically opened and closed to isolate the cooling environment. The second guide rail 410 extends into the interior of the settling box 2. A second movable frame 4 is slidably provided on the second guide rail 410. By moving the second movable frame 4 on the second guide rail 410, the entire mounting template 5 is transported into the settling box 2.
[0033] The interior of the settling box 2 is also equipped with an electric guide rail 203, which is arranged horizontally. A moving table 204 is slidably mounted on the electric guide rail 203. A mechanical gripper can be installed on the moving table 204 to grab the positioning cylinder 504 and the sliding column 502 after cooling is completed, so that the conical top block 503 pushes out the stamped metal part, thus completing the separation of the metal part from the mold.
[0034] Reference Figure 6 A sliding column 502 is slidably provided in both the mounting template 5 and the lower template 501. The sliding column 502 is a vertical round rod, with its lower end located in the mounting template 5 and its upper end extending into the lower template 501. A conical top block 503 is fixedly provided at the upper end of the sliding column 502. The conical top block 503 is located at the bottom of the cavity of the lower template 501 and is used to eject the formed metal part. A positioning cylinder 504 is fixedly provided at the upper end of the conical top block 503. The positioning cylinder 504 is cylindrical, and its inner hole is used to cooperate with the positioning rod on the upper template 302. The upper template 302 is provided with a positioning rod that fits into the positioning cylinder 504, and the positioning rod can extend and retract along the moving direction of the upper template 302. When closing the mold, the positioning cylinder 504 is inserted first to prevent the blank from entering the positioning cylinder 504. Multiple guide holes 505 are opened on the lower template 501, and corresponding insertion rods are provided on the upper template 302 to be inserted into the guide holes 505 for mold closing guidance.
[0035] The mounting template 5 is also provided with multiple mounting sleeves 507. Multiple plug-in posts 506 are fixedly installed on the lower template 501. The plug-in posts 506 are inserted into the mounting sleeves 507 to fix the mounting template 5 on the mounting base plate 1. Both the mounting sleeves 507 and the mounting template 5 are provided with through holes to accommodate the end of the rack 609. The end of the rack 609 can extend into the through hole in the plug-in post 506 to limit the mounting sleeves 507 on the plug-in post 506 and prevent the two from separating.
[0036] The outer diameter of the guide cylinder 405 matches the inner diameter of the guide hole 505 on the lower template 501. During transport, the guide cylinder 405 first passes through the guide hole 505 and then enters the installation template 5. During insertion, the bottom of the guide cylinder 405 contacts and presses down on the support seat 601, pressing the support seat 601 against the fixed seat 604. At this time, the electric push rod 402 drives the moving disk 403 and the drive rod 404 to move downward, pushing the sliding rod 1 406 and the sliding rod 2 407, so that the top rod 1 408 and the top rod 2 409 extend from the bottom of the guide cylinder 405. After passing through sliding hole 1 603 and sliding hole 2 605, rack 1 607 is pushed downwards. The movement of rack 1 607 drives the rotating gear 608 to rotate. The rotating gear 608 then drives rack 2 609 to move horizontally, causing the end of rack 2 609 to exit from the through hole of the insertion post 506, thus releasing the restriction on the mounting sleeve 507. Subsequently, the moving frame 2 4 lifts the mounting cylinder 401 upwards. Since top rod 1 408 and top rod 2 409 are still stuck in sliding hole 1 603 and sliding hole 2 605, the mounting template 5 is lifted as a whole, realizing the transportation.
[0037] It should be noted that the specific models, strokes, pressures, and control parameters of the electrical components such as the electro-hydraulic rod 301, electric push rod 402, electric guide rail 203, and telescopic gate 201 in this embodiment need to be conventionally selected based on the material, size, and stamping process requirements of the metal parts of the stage lighting fixtures. Specific selection and calculation methods utilize existing technology in this field and will not be elaborated upon.
[0038] The functional principle of this invention can be explained through the following operational methods: The blank is placed in the lower template 501 by the external clamping component. The upper template 302 is positioned directly above the lower template 501 by the sliding frame 3 on the guide rail 303. The electric hydraulic rod 301 pushes the upper template 302 to move vertically towards the lower template 501. When the upper template 302 moves, the positioning rod will first come into contact with the positioning cylinder 504 to prevent the blank from entering the positioning cylinder 504 when the blank is stamped. When the electric hydraulic rod 301 pushes the upper template 302 to complete the precision forging of the blank, the moving frame 1 3 moves out with the upper template 302, and the moving frame 2 4 moves on the guide rail 2 410 to the top of the mounting template 5, and moves towards the lower template 501 through the mounting cylinder 401, inserting the guide cylinder 405 into the mounting template 5 through the guide hole 505. The guide cylinder 405 enters the installation template 5 and presses down on the support seat 601, pressing the support seat 601 completely into the fixed seat 604. The electric push rod 402 pushes the moving disk 403 down, pushing the drive rod 404 into the guide cylinder 405. At the same time, the sliding rod 1 406 and the sliding rod 2 407 move down in the guide cylinder 405, pushing the top rod 1 408 and the top rod 2 409 out of the guide cylinder 405 and through the sliding hole 1 603 and the sliding hole 2 605 to apply a pushing force to the rack 1 607. When the rack 1 607 slides in the sliding groove 606, it drives the rotating gear 608 to rotate, causing the rotating gear 608 to push the rack 2 609 to move. The end of the rack 2 609 moves out from the insertion post 506 and the installation sleeve 507, releasing the limitation on the installation sleeve 507. As the mounting cylinder 401 moves upward, it synchronously drives the mounting template 5 to move, and in conjunction with the movement of the second moving frame 4 on the second guide rail 410, the mounting template 5 is transported into the stationary box 2 to allow the stamped metal parts to cool naturally.
[0039] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A rapid stamping forming device for metal parts used in stage lighting fixtures, characterized in that, The device includes a mounting base plate (1), an upper template (302), and a lower template (501). A movable frame (3) is provided on the mounting base plate (1). An electric hydraulic rod (301) is provided on the movable frame (3) to drive the upper template (302) to move towards the lower template (501). The forging die for the metal parts of the stage lighting fixture is completed by extruding the blank through the movement of the upper template (302) towards the lower template (501). The mounting base plate (1) is also provided with a transport component, and the bottom end of the lower template (501) is provided with an mounting template (5). The transport component is inserted into the mounting template (5) to transport the mounting template (5). The transport component includes an installation cylinder (401) and a guide cylinder (405). The guide cylinder (405) is located at the bottom of the installation cylinder (401), and a first top rod (408) and a second top rod (409) are provided inside the guide cylinder (405). The first top rod (408) is sleeved on the second top rod (409), and the guide cylinder (405) inserted in the installation template (5) is engaged with the installation template (5) by the reverse movement of the first top rod (408) and the second top rod (409). The guide cylinder (405) moves with the installation cylinder (401) to transport the installation template (5).
2. The rapid stamping and forming device for metal parts for stage lighting fixtures according to claim 1, characterized in that, The installation template (5) is provided with multiple fixed seats (604), and a bearing seat (601) is provided on the top of each of the multiple fixed seats (604). Multiple telescopic guide rods (602) are provided at the bottom of the bearing seat (601). The fixed seat (604) is located between the multiple telescopic guide rods (602). The bearing seat (601) and the fixed seat (604) are respectively provided with sliding hole one (603) and sliding hole two (605).
3. The rapid stamping and forming device for metal parts for stage lighting fixtures according to claim 2, characterized in that, A connecting frame (6) is provided between the multiple bearing seats (601). A sliding groove (606) is provided at the bottom of the connecting frame (6). A rack (607) is slidably provided in the sliding groove (606), and the end of the rack (607) is provided in the sliding hole (603) and moves with the vertical movement of the connecting frame (6).
4. The rapid stamping and forming device for metal parts for stage lighting fixtures according to claim 3, characterized in that, The installation template (5) is provided with a plurality of rotating gears (608), which are respectively meshed with a plurality of racks (607). The installation template (5) is also provided with a plurality of guide platforms (610), on which racks (609) are respectively slidably arranged. The racks (609) are respectively meshed with a plurality of rotating gears (608), and the racks (609) are respectively located at the bottom of the racks (607).
5. The rapid stamping and forming device for metal parts for stage lighting fixtures according to claim 1, characterized in that, A movable disk (403) is slidably disposed inside the mounting cylinder (401). Multiple drive rods (404) are disposed on the movable disk (403), and the multiple drive rods (404) are respectively disposed directly above multiple guide cylinders (405). The movable disk (403) pushes the drive rods (404) to move into the guide cylinder (405) by the extension and retraction of the electric push rod (402).
6. The rapid stamping and forming device for metal parts for stage lighting fixtures according to claim 5, characterized in that, The guide cylinder (405) is provided with a sliding rod one (406) and a sliding rod two (407) arranged opposite to each other. The sliding rod one (406) and the sliding rod two (407) are slidably arranged in the guide cylinder (405), and the bottom ends of the sliding rod one (406) and the sliding rod two (407) are connected by a connecting rod and a top rod two (409) and a top rod one (408), respectively. The upper ends of the sliding rod one (406) and the sliding rod two (407) are fixedly connected to the drive rod (404).
7. The rapid stamping and forming device for metal parts for stage lighting fixtures according to claim 1, characterized in that, A settling box (2) is provided on the mounting base plate (1), a settling rack (202) is provided inside the settling box (2), and a telescopic door (201) is provided on the settling box (2). A guide rail (410) is provided on the mounting base plate (1), and the guide rail (410) extends into the settling box (2). A movable frame (4) is slidably provided on the guide rail (410). The installation template (5) is transported into the settling box (2) by moving the movable frame (4) on the guide rail (410).
8. The rapid stamping and forming device for metal parts for stage lighting fixtures according to claim 1, characterized in that, The installation template (5) and the lower template (501) are slidably provided with sliding columns (502), the upper end of the sliding column (502) is provided with a conical top block (503), and the conical top block (503) is provided in the lower template (501). The upper end of the conical top block (503) is provided with a positioning cylinder (504).
9. A rapid stamping forming device for metal parts for stage lighting fixtures according to claim 8, characterized in that, The upper template (302) is provided with a positioning rod that matches the positioning cylinder (504), and the positioning rod can extend and retract along the moving direction of the upper template (302). The lower template (501) is provided with multiple guide holes (505), and the upper template (302) is provided with a plug rod that is inserted into the guide hole (505).
10. A rapid stamping forming device for metal parts for stage lighting fixtures according to claim 7, characterized in that, The mounting base plate (1) is provided with a guide rail (303), the movable frame (3) is slidably disposed on the guide rail (303), and the guide rail (410) is disposed between the guide rails (303) and is parallel to each other.