A machine foot plate stamping device
Patent Information
- Application Number
- CN202522125359.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-09
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-09
AI Technical Summary
[0003]传统的机脚板一般通过冲压设备进行冲压而成,冲压设备的成型头在对机脚板冲孔后,机脚板会产生形变,使得加工完成的机脚板附着在成型头上,此时,需要人工进行手动下料,工人在下料过程中,工人的肢体部位会伸入冲压设备内,若冲压设备启动,则会导致工人受伤,其操作风险较高,同时,采用人工的下料方式,其劳动强度大,下料效率较低,进而影响机脚板的加工效率
1、本实用新型结构简单、设计科学合理,使用方便,本实用新型通过推动机构、上模和下模进行配合,能够对待加工机脚板进行塑形和冲孔,使得待加工机脚板在一次装夹中能够进行塑形和冲孔,从而提高机脚板的加工效率。
Smart Images

Figure CN224749895U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of machine foot plate processing equipment, specifically relating to a machine foot plate stamping device. Background Technology
[0002] Machine feet are used to fix equipment to the frame or the ground to prevent the equipment from shifting or tipping over when it is running or subjected to external forces, and to ensure that the equipment is in the correct working position.
[0003] Traditional machine feet are typically stamped using stamping equipment. After the forming head of the stamping equipment punches holes in the machine feet, the machine feet deform, causing the finished machine feet to adhere to the forming head. At this point, manual unloading is required. During the unloading process, the worker's limbs may be inserted into the stamping equipment. If the stamping equipment is activated, it can lead to worker injury, posing a high operational risk. Furthermore, manual unloading is labor-intensive and inefficient, thus affecting the processing efficiency of the machine feet. Utility Model Content
[0004] This utility model provides a machine foot plate stamping device to at least solve some of the above-mentioned technical problems.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A machine foot plate stamping device includes a frame, a pushing mechanism mounted on the frame, an upper die mounted at the bottom of the pushing mechanism, a lower die mounted on the frame and located directly below the upper die, and a discharge mechanism slidably mounted on the frame and connected to the pushing mechanism; a discharge mechanism for ejecting the machine foot plate between the frame and the pushing mechanism; and a controller connected to the pushing mechanism, the upper die, and the discharge mechanism on the frame.
[0006] Furthermore, the upper die includes a first stamping seat on the pushing mechanism, a second stamping seat on the first stamping seat, two sliding connecting rods slidably disposed in the second stamping seat, and a forming head disposed on the sliding connecting rods and connected to the unloading mechanism. The second stamping seat is provided with a plurality of stamping heads that can pass through the forming head. Limiting mechanisms are provided on both sides of the second stamping seat between the second stamping seat and the forming head and connected to the controller.
[0007] Furthermore, the pushing mechanism is provided with a stamping relief groove, and the unloading mechanism includes a pushing rod that is slidably disposed in the stamping relief groove, and an unloading connecting frame that is slidably disposed in the second stamping seat, one end of which passes through the first stamping seat and the pushing mechanism and is connected to the pushing rod, and the other end of which slides through the second stamping seat and is connected to the forming head; the frame is provided with a limiting bolt for limiting the movement distance of the pushing rod.
[0008] Furthermore, a connecting clearance hole A is provided on the first stamping seat and the pushing mechanism respectively, and a connecting clearance groove A and a connecting clearance hole B are provided on the second stamping seat. The unloading connecting frame is slidably disposed in the connecting clearance groove A, one end of which passes through the two connecting clearance holes A and is connected to the pushing rod, and the other end passes through the connecting clearance hole B and is connected to the forming head.
[0009] Furthermore, the limiting mechanism includes a cylinder mounting base on the second stamping base, a cylinder A on the cylinder mounting base and connected to the controller, a limiting slider on the second stamping base, and a limiting plate on the output end of cylinder A and sliding along the limiting slider.
[0010] Furthermore, the pushing mechanism includes a hydraulic push rod mounted on the frame and connected to the controller, and a stamping support slidably mounted on the frame and connected to the output end of the hydraulic push rod; the upper die is mounted on the stamping support.
[0011] Furthermore, the frame is provided with a stamping platform, and the discharge mechanism includes a first transmission mechanism disposed on the stamping platform and connected to the pushing mechanism, a second transmission mechanism disposed on the stamping platform and connected to the first transmission mechanism, a movable frame slidably disposed on the stamping platform and connected to the second transmission mechanism, and a discharge trough disposed on the movable frame.
[0012] Furthermore, the pushing mechanism is provided with a transmission seat. The first transmission mechanism includes a rotating mounting seat on the stamping platform, a first rotating shaft rotatably mounted on the rotating mounting seat and connected to the second transmission mechanism, a gear on the first rotating shaft, and a sliding rod on the transmission seat; the sliding rod is provided with a toothed section that meshes with the gear.
[0013] Furthermore, the stamping platform is provided with a transmission mounting box, on which a second rotating shaft is rotatably mounted. The second transmission mechanism includes a synchronous pulley A mounted on the first rotating shaft, two transmission frames mounted on the stamping platform, a synchronous pulley B rotatably mounted on the transmission frame, a synchronous pulley C mounted on the second rotating shaft, and a synchronous belt fitted between the synchronous pulley A, the synchronous pulley B, and the synchronous pulley C.
[0014] Furthermore, the lower die includes a stamping limit seat disposed on the stamping platform, and a stamping die disposed within the stamping limit seat; the stamping die is provided with stamping holes.
[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. This utility model has a simple structure, a scientific and reasonable design, and is easy to use. Through the cooperation of the pushing mechanism, the upper mold and the lower mold, this utility model can shape and punch the machine foot plate to be processed, so that the machine foot plate to be processed can be shaped and punched in one clamping, thereby improving the processing efficiency of the machine foot plate.
[0016] 2. This utility model uses a push mechanism, an upper mold, a feeding mechanism, and a discharge mechanism to work together so that the machine foot plate can be separated from the upper mold after the upper mold has finished processing. After separation, the machine foot plate falls into the discharge mechanism and is discharged from the machine frame through the discharge mechanism, thereby realizing the automatic feeding of the machine foot plate. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model.
[0018] Figure 2 This is a schematic diagram of the pushing mechanism and the upper mold of this utility model.
[0019] Figure 3 This is an exploded view of the upper mold of this utility model.
[0020] Figure 4 This is an exploded view of the second stamping seat of this utility model.
[0021] Figure 5 This is a top view of the second stamping seat of this utility model.
[0022] Figure 6 This is a schematic diagram of the material discharge mechanism of this utility model.
[0023] Figure 7 This is a top view of the material discharge mechanism of this utility model.
[0024] Figure 8 This is a schematic diagram showing the installation position of the transmission frame of this utility model.
[0025] Figure 9 This is a schematic diagram of the mobile frame of this utility model.
[0026] The names corresponding to the reference numerals in the attached figures are as follows: 1. Frame; 2. Upper die; 3. Controller; 4. First stamping seat; 5. Second stamping seat; 6. Sliding connecting rod; 7. Forming head; 8. Stamping head; 9. Stamping clearance groove; 10. Push rod; 11. Unloading connecting frame; 12. Limit bolt; 13. Connection clearance hole A; 14. Connection clearance groove A; 15. Connection clearance hole B; 16. Cylinder mounting seat; 17. Cylinder A; 18. Limit slider; 19. Limit plate; 20. Hydraulic push rod; 21. Stamping support; 22. Stamping platform; 23. Moving frame; 24. Discharge groove; 25. Transmission seat; 26. Rotating mounting seat; 27. First 28. Rotating shaft; 29. Gear; 30. Sliding rod; 31. Transmission mounting box; 32. Second rotating shaft; 33. Synchronous pulley A; 34. Transmission frame; 35. Synchronous pulley B; 36. Synchronous belt; 37. Stamping limit seat; 38. Stamping die; 39. Stamping hole; 40. Stamping mounting seat A; 41. Stamping mounting seat B; 42. Sliding clearance hole; 43. Guide wheel; 44. Guide column; 45. Guide sleeve; 46. Stamping receiving groove; 47. Stamping mounting groove; 48. Connecting hole; 49. Abutment rod; 50. Abutment plate; 51. Limiting rotating shaft; 52. Limiting groove. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0028] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0029] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; of course, they can also refer to a mechanical connection or an electrical connection; furthermore, they can refer to a direct connection, an indirect connection through an intermediate medium, or a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0030] Example 1. As... Figures 1-9 As shown, the present invention provides a machine foot plate stamping device, including a frame 1, a pushing mechanism disposed on the frame 1, an upper die 2 disposed at the bottom of the pushing mechanism, a lower die disposed on the frame 1 and located directly below the upper die 2, and a discharge mechanism slidably disposed on the frame 1 and connected to the pushing mechanism; a discharge mechanism for ejecting the machine foot plate between the frame 1 and the pushing mechanism; and a controller 3 disposed on the frame 1 and connected to the pushing mechanism, the upper die 2 and the discharge mechanism.
[0031] This invention, through the cooperation of a pushing mechanism, an upper mold 2, and a lower mold, can shape and punch the machine foot plate to be processed, enabling the machine foot plate to be shaped and punched in a single clamping, thereby improving the processing efficiency of the machine foot plate.
[0032] This utility model uses a pushing mechanism, an upper mold 2, a feeding mechanism, and a discharging mechanism to work together so that the machine foot plate after processing by the upper mold 2 can be separated from the upper mold 2. After separation, the machine foot plate falls into the discharging mechanism and is discharged from the frame 1 through the discharging mechanism, thereby realizing the automatic feeding of the machine foot plate.
[0033] In some embodiments, a more detailed structure of the upper die 2 is provided. The upper die 2 includes a first stamping seat 4 disposed on the pushing mechanism, a second stamping seat 5 disposed on the first stamping seat 4, two sliding connecting rods 6 slidably disposed in the second stamping seat 5, and a forming head 7 disposed on the sliding connecting rods 6 and connected to the unloading mechanism. The second stamping seat 5 is provided with a plurality of stamping heads 8 that can pass through the forming head 7. Limiting mechanisms are provided on both sides of the second stamping seat 5 between the second stamping seat 5 and the forming head 7 and connected to the controller 3.
[0034] In use, the pushing mechanism drives the first stamping seat 4 to move, the first stamping seat 4 drives the second stamping seat 5 to move synchronously, and the second stamping seat 5 drives the forming head 7 to move synchronously through the sliding connecting rod 6. When the foot plate is being shaped, since the limiting mechanism is located between the second stamping seat 5 and the forming head 7, the limiting mechanism can limit the forming head 7 when it comes into contact with the foot plate, thus facilitating the forming head 7 to shape the foot plate. When punching, the controller 3 controls the operation of the limiting mechanism to move away from the forming head 7. When the forming head 7 comes into contact with the foot plate, the pushing mechanism continues to drive the first stamping seat 4, the second stamping seat 5 and the stamping head 8 to move downward, so that the stamping head 8 passes through the forming head 7 to punch the foot plate, thereby realizing the shaping and punching of the foot plate.
[0035] In some embodiments, a more detailed structure of the unloading mechanism is provided. The pushing mechanism is provided with a stamping relief groove 9. The unloading mechanism includes a pushing rod 10 that is slidably disposed in the stamping relief groove 9, and an unloading connecting frame 11 that is slidably disposed in the second stamping seat 5, one end of which passes through the first stamping seat 4 and the pushing mechanism and is connected to the pushing rod 10, and the other end of which slides through the second stamping seat 5 and is connected to the forming head 7. The frame 1 is provided with a limiting bolt 12 for limiting the movement distance of the pushing rod 10.
[0036] The present invention has a stamping clearance groove 9 formed on the stamping support 21. During use, the foot plate will deform during punching, causing it to attach to the stamping head 8. When the pushing mechanism drives the first stamping seat 4, the second stamping seat 5, the stamping head 8, and the forming head 7 to rise, the unloading connecting frame 11 and the pushing rod 10 move synchronously with the pushing mechanism. When the pushing rod 10 contacts the limiting bolt 12, the pushing rod 10 stops the forming head 7 from moving through the unloading connecting frame 11. At this time, the first stamping seat 4, the second stamping seat 5, and the stamping head 8 continue to move with the pushing mechanism, so that the stamping head 8 can extend into the forming head 7, thereby realizing the reset of the forming head 7 and the stamping head 8. At the same time, when the stamping head 8 is inside the forming head 7, the foot plate on the stamping head 8 separates from the forming head. The separated foot plate falls onto the discharge mechanism and is discharged from the frame 1 through the discharge mechanism, thereby realizing the automatic unloading of the foot plate.
[0037] The stamped clearance groove 9 of this utility model can make way for the movement of the push rod 10, and at the same time facilitate the connection between the push rod 10 and the unloading connecting frame 11.
[0038] In some embodiments, a more detailed structure of the first stamping seat 4 and the second stamping seat 5 is provided. The first stamping seat 4 and the pushing mechanism are respectively provided with a connecting relief hole A13. The second stamping seat 5 is provided with a connecting relief groove A14 and a connecting relief hole B15. The unloading connecting frame 11 is slidably disposed in the connecting relief groove A14, one end passes through the two connecting relief holes A13 and is connected to the pushing rod 10, and the other end passes through the connecting relief hole B15 and is connected to the forming head 7.
[0039] The second stamping seat 5 of this utility model includes a stamping mounting seat A40 located at the bottom of the first stamping seat 4, and a stamping mounting seat B41 located at the bottom of the stamping mounting seat A40; a connecting relief groove A14 is located on the stamping mounting seat A40, and a connecting relief hole B15 is located on the stamping mounting seat B41 and communicates with the connecting relief groove A14; a blanking connecting frame 11 is slidably installed in the connecting relief groove A14, and one end of the blanking connecting frame 11 passes through the connecting relief hole A13 and is connected to the push rod 10, and the other end passes through the connecting relief hole B15 and is connected to the forming head 7; the connecting relief groove A14 can limit the moving distance of the blanking connecting frame 11; in addition, the connecting relief hole A13 and the connecting relief hole B15 can facilitate the guidance of the moving direction of the blanking connecting frame 11.
[0040] The present invention has a sliding clearance hole 42 on the stamping mounting base B41 and a connecting hole 48 on the forming head 7. The sliding connecting rod 6 is slidably installed in the sliding clearance hole 42 and passes through the sliding clearance hole 42 and is connected to the connecting hole 48. The sliding clearance hole 42 facilitates the installation of the sliding connecting rod 6, and the sliding distance of the sliding connecting rod 6 can be limited by the stamping mounting base A40 and the stamping mounting base B41.
[0041] The present invention has a stamping mounting base B41 with a stamping mounting groove 47, and a stamping head 8 is installed in the stamping mounting groove 47 and abuts against the bottom of the stamping mounting base A40, thereby realizing the installation of the stamping head 8.
[0042] The forming head 7 of this utility model is provided with a stamping receiving groove 46 for accommodating the stamping head 8. In some embodiments, a more detailed structure of the limiting mechanism is provided. The limiting mechanism includes a cylinder mounting base 16 disposed on the second stamping base 5, a cylinder A17 disposed on the cylinder mounting base 16 and connected to the controller 3, a limiting slider 18 disposed on the second stamping base 5, and a limiting plate 19 disposed on the output end of the cylinder A17 and sliding along the limiting slider 18.
[0043] When this utility model is in use, the controller 3 controls the cylinder A17 to run. The cylinder A17 drives the limiting plate 19 to slide within the limiting slider 18, so that the limiting plate 19 moves away from the forming head 7, thereby facilitating the punching head 8 to punch holes in the machine foot plate. Similarly, when the limiting plate 19 is located between the second punching seat 5 and the forming head 7, it can limit the forming head 7, thereby facilitating the forming head 7 to shape the machine foot plate.
[0044] In some implementations, a more detailed structure of the pushing mechanism is given, which includes a hydraulic push rod 20 mounted on the frame 1 and connected to the controller 3, and a stamping support 21 slidably mounted on the frame 1 and connected to the output end of the hydraulic push rod 20; the upper die 2 is mounted on the stamping support 21.
[0045] The hydraulic push rod 20 of this utility model is fixedly installed on the frame 1. When in use, the controller 3 controls the operation of the hydraulic push rod 20. The hydraulic push rod 20 drives the stamping support 21 to move up and down. The stamping support 21 drives the first stamping seat 4 to move up and down. The first stamping seat 4 drives the forming head 7 to move synchronously through the second stamping seat 5 and the sliding connecting rod 6, thereby realizing the shaping and punching of the machine foot plate.
[0046] In some implementations, a more detailed structure of the discharge mechanism is given. The frame 1 is provided with a stamping platform 22. The discharge mechanism includes a first transmission mechanism provided on the stamping platform 22 and connected to the pushing mechanism, a second transmission mechanism provided on the stamping platform 22 and connected to the first transmission mechanism, a movable frame 23 slidably provided on the stamping platform 22 and connected to the second transmission mechanism, and a discharge trough 24 provided on the movable frame 23.
[0047] When this utility model is in use, when the hydraulic push rod 20 drives the stamping support 21 to move downward, the stamping support 21 drives the first transmission mechanism to run, the first transmission mechanism drives the second transmission mechanism to run, the second transmission mechanism drives the moving frame 23 to move backward, and the moving frame 23 drives the discharge groove 24 to move backward, so that the moving frame 23 and the discharge groove 24 will not interfere with the upper mold 2, which facilitates the upper mold 2 to perform shaping and punching. When the hydraulic push rod 20 drives the stamping support 21 to move upward, the stamping support 21 drives the first transmission mechanism to run, the first transmission mechanism drives the second transmission mechanism to run, the second transmission mechanism drives the moving frame 23 to move forward, and the moving frame 23 drives the discharge groove 24 to move forward, so that the discharge groove 24 is located below the upper mold 2, so that the machine foot plate falls into the discharge groove 24, thereby allowing the machine foot plate to be discharged from the machine frame 1 through the discharge groove 24 to realize the automatic unloading of the machine foot plate.
[0048] In some embodiments, a more detailed structure of the first transmission mechanism is provided. The push mechanism is provided with a transmission seat 25. The first transmission mechanism includes a rotating mounting seat 26 provided on the stamping platform 22, a first rotating shaft 27 rotatably provided on the rotating mounting seat 26 and connected to the second transmission mechanism, a gear 28 provided on the first rotating shaft 27, and a sliding rod 29 provided on the transmission seat 25. The sliding rod 29 is provided with a toothed section that meshes with the gear 28.
[0049] The transmission seat 25 of this utility model is installed on the stamping support 21. In use, when the hydraulic push rod 20 drives the stamping support 21 to descend or rise, the stamping support 21 drives the transmission seat 25 to move synchronously. The transmission seat 25 drives the sliding rod 29 to move. During the rising or falling process, the toothed section on the sliding rod 29 will mesh with the gear 28, thereby driving the gear 28 to rotate. The gear 28 drives the first rotating shaft 27 to rotate. The first rotating shaft 27 transmits power to the second transmission mechanism, thereby realizing the transmission of power, so that the moving frame 23 moves backward or forward.
[0050] The sliding rod 29 of this utility model has an abutment rod 49 on its side wall, and an abutment plate 50 connected to the gear 28 is provided on the first rotating shaft 27. When the stamping support 21 descends, the abutment rod 49 will contact the abutment plate 50, and the gear 28 will mesh with the toothed section on the sliding rod 29. At the same time, the abutment plate 50 will rotate synchronously with the gear 28, so that the abutment plate 50 will abut against the gear 28 after rotation, thereby limiting the rotation angle of the gear 28.
[0051] The rotating mounting base 26 of this utility model is provided with a limiting shaft 51, and the limiting shaft 51 is provided with a limiting groove 52. The sliding rod 29 is located in the limiting groove 52, and the limiting groove 52 can facilitate the limiting of the sliding rod 29.
[0052] The stamping platform 22 of this utility model is provided with two guide rails, and a slider connected to the movable frame 23 is provided on the guide rails. The sliding direction of the movable frame 23 can be guided by the guide rails and the slider, while reducing the friction force when the movable frame 23 slides.
[0053] In some embodiments, a more detailed structure of the second transmission mechanism is provided. A transmission mounting box 30 is provided on the stamping platform 22, and a second rotating shaft 31 is rotatably mounted on the transmission mounting box 30. The second transmission mechanism includes a synchronous pulley A32 mounted on the first rotating shaft 27, two transmission frames 33 mounted on the stamping platform 22, a synchronous pulley B34 rotatably mounted on the transmission frame 33, a synchronous pulley C35 mounted on the second rotating shaft 31, and a synchronous belt 36 fitted between the synchronous pulley A32, the synchronous pulley B34, and the synchronous pulley C35.
[0054] When this utility model is in use, when the first rotating shaft 27 rotates, the first rotating shaft 27 drives the synchronous pulley A32 to rotate synchronously. The synchronous pulley A32 drives the synchronous pulley B34 and the synchronous pulley C35 to rotate synchronously through the synchronous belt 36. At the same time, the synchronous belt 36 drives the moving frame 23 to move backward or forward on the frame 1, so that the machine foot plate can fall onto the discharge chute 24.
[0055] In this invention, one of the transmission frames 33 is rotatably equipped with two guide wheels 43 for guiding the synchronous belt 36.
[0056] In some embodiments, a more detailed structure of the lower die is provided, the lower die including a stamping limit seat 37 disposed on the stamping platform 22, and a stamping die 38 disposed within the stamping limit seat 37; the stamping die 38 is provided with a stamping hole 39.
[0057] In use, the stamping limiting seat 37 facilitates the installation of the stamping die 38, and the stamping die 38 facilitates the limiting of the machine foot plate to be processed, so that the machine foot plate to be processed can be shaped under the action of the stamping die 38 and the forming head 7. The stamping die 38 is provided with a stamping hole 39, which facilitates the clearance of the stamping head 8, so that the stamping head 8 can punch holes in the machine foot plate to be processed.
[0058] The present invention provides a guide post 44 on the stamping limit seat 37 and a guide sleeve 45 adapted to the guide post 44 on the first stamping seat 4. When the first stamping seat 4 moves, the guide sleeve 45 slides along the guide post 44, thereby guiding the first stamping seat 4.
[0059] Working principle.
[0060] When using this utility model, the foot plate to be processed is placed into the stamping die 38. The controller 3 controls the hydraulic push rod 20 to run. The hydraulic push rod 20 drives the stamping support 21 to move downward. The stamping support 21 drives the first stamping seat 4 and the transmission seat 25 to descend. The first stamping seat 4 drives the second stamping seat 5 to move synchronously. At this time, the transmission seat 25 drives the sliding rod 29 to move synchronously. During the movement, the toothed section on the sliding rod 29 will mesh with the gear 28, thereby driving the gear 28 to rotate. The gear 28 drives the first rotating shaft 27 to rotate. The first rotating shaft 27 drives the synchronous pulley A32 to rotate synchronously. The synchronous pulley A32 drives the synchronous pulley B34 and the synchronous pulley C35 to rotate synchronously through the synchronous belt 36. The synchronous belt 36 drives the moving frame 23 to move backward on the frame 1, thereby making room for the first stamping seat 4. During the shaping process, the second stamping seat 5 drives the forming head 7 to move synchronously through the sliding connecting rod 6. Since the limiting plate 19 is located between the second stamping seat 5 and the forming head 7, the stamping head 8 will not extend out of the forming head 7. At this time, the forming head 7 descends into the stamping die 38 and squeezes the machine foot plate, thereby achieving the shaping of the machine foot plate. When punching is required, controller 3 controls the hydraulic push rod 20 to operate. The hydraulic push rod 20 drives the stamping support 21 to move upward a certain distance. At this time, controller 3 controls the cylinder A17 to operate. The cylinder A17 drives the limiting plate 19 to slide within the limiting slider 18, so that the limiting plate 19 moves away from the forming head 7. At this time, controller 3 controls the hydraulic push rod 20 to operate again. The hydraulic push rod 20 drives the stamping support 21 to move downward. When the forming head 7 is located inside the stamping die 38 and contacts the machine foot plate, as the hydraulic push rod 20 descends, the hydraulic push rod 20 drives the stamping head 8 to continue to descend through the stamping support 21, the first stamping seat 4, and the second stamping seat 5 until the stamping head 8 passes through the forming head 7 and the machine foot plate, thereby realizing the punching of the machine foot plate. At this time, the punched machine foot plate is attached to the stamping head 8. After punching is completed, controller 3 controls hydraulic push rod 20 to reset. Hydraulic push rod 20 drives forming head 7 and punching head 8 to move upward through stamping support 21, first stamping seat 4, second stamping seat 5 and sliding connecting rod 6. At this time, unloading connecting frame 11 and push rod 10 move synchronously with forming head 7. When push rod 10 contacts limit bolt 12, push rod 10 stops forming head 7 and sliding connecting rod 6 through unloading connecting frame 11. At this time, first stamping seat 4, second stamping seat 5 and punching head 8 continue to move with push mechanism, so that punching head 8 can extend into forming head 7. When punching head 8 is in forming head 7, machine foot plate on punching head 8 separates from punching head 8, thereby realizing automatic unloading of machine foot plate. Simultaneously, when the hydraulic push rod 20 is reset, the stamping support 21 will drive the transmission seat 25 to move upward. At this time, the transmission seat 25 will drive the sliding rod 29 to move synchronously. During the movement, the toothed section on the sliding rod 29 will mesh with the gear 28, thereby driving the gear 28 to rotate. The gear 28 will drive the first rotating shaft 27 to rotate, and the first rotating shaft 27 will drive the synchronous pulley A32 to rotate synchronously. The synchronous pulley A32 will drive the synchronous pulley B34 and the synchronous pulley C35 to rotate synchronously through the synchronous belt 36. The synchronous belt 36 will drive the moving frame 23 to move forward on the frame 1. The discharge groove 24 on the moving frame 23 is located below the forming head 7, thereby receiving the processed machine foot plate, so that the processed machine foot plate is discharged from the frame 1 through the discharge groove 24, realizing the automatic discharge of the machine foot plate, thereby reducing the labor intensity of workers and improving the processing efficiency of the machine foot plate.
[0061] The controller 3, cylinder A17 and hydraulic push rod 20 used in this utility model are existing technologies. The structure, principle and circuit of the controller 3, cylinder A17 and hydraulic push rod 20 will not be described in detail here.
[0062] Finally, it should be noted that the above embodiments are merely preferred embodiments of this utility model used to illustrate the technical solutions of this utility model, and are not intended to limit it, nor are they intended to limit the patent scope of this utility model. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model. That is to say, any changes or refinements made to the main design concept and spirit of this utility model that are not of substantial significance, but whose technical problems are still consistent with those of this utility model, should be included within the protection scope of this utility model. In addition, the direct or indirect application of the technical solutions of this utility model to other related technical fields are similarly included within the patent protection scope of this utility model.
Claims
1. A foot plate stamping device, characterized in that, It includes a frame (1), a push mechanism on the frame (1), an upper mold (2) at the bottom of the push mechanism, a lower mold on the frame (1) and located directly below the upper mold (2), and a discharge mechanism slidably disposed on the frame (1) and connected to the push mechanism; a discharge mechanism between the frame (1) and the push mechanism for ejecting the machine foot plate, and the frame (1) is provided with a controller (3) connected to the push mechanism, the upper mold (2) and the discharge mechanism.
2. The machine foot plate stamping device according to claim 1, characterized in that, The upper die (2) includes a first stamping seat (4) on the pushing mechanism, a second stamping seat (5) on the first stamping seat (4), two sliding connecting rods (6) slidably disposed in the second stamping seat (5), and a forming head (7) disposed on the sliding connecting rods (6) and connected to the unloading mechanism. The second stamping seat (5) is provided with a plurality of stamping heads (8) that can pass through the forming head (7). Limiting mechanisms are provided on both sides of the second stamping seat (5) between the second stamping seat (5) and the forming head (7) and connected to the controller (3).
3. The machine foot plate stamping device according to claim 2, characterized in that, The push mechanism is provided with a stamping relief groove (9), and the unloading mechanism includes a push rod (10) that is slidably disposed in the stamping relief groove (9), and an unloading connecting frame (11) that is slidably disposed in the second stamping seat (5), one end of which passes through the first stamping seat (4) and the push mechanism and is connected to the push rod (10), and the other end of which slides through the second stamping seat (5) and is connected to the forming head (7); the frame (1) is provided with a limiting bolt (12) for limiting the movement distance of the push rod (10).
4. The machine foot plate stamping device according to claim 3, characterized in that, The first stamping seat (4) and the push mechanism are respectively provided with a connecting relief hole A (13), and the second stamping seat (5) is provided with a connecting relief groove A (14) and a connecting relief hole B (15). The unloading connecting frame (11) is slidably disposed in the connecting relief groove A (14), one end passes through the two connecting relief holes A (13) and is connected to the push rod (10), and the other end passes through the connecting relief hole B (15) and is connected to the forming head (7).
5. The machine foot plate stamping device according to claim 2, characterized in that, The limiting mechanism includes a cylinder mounting seat (16) on the second stamping seat (5), a cylinder A (17) on the cylinder mounting seat (16) and connected to the controller (3), a limiting slider (18) on the second stamping seat (5), and a limiting plate (19) on the output end of the cylinder A (17) and sliding along the limiting slider (18).
6. The machine foot plate stamping device according to claim 2, characterized in that, The pushing mechanism includes a hydraulic push rod (20) mounted on the frame (1) and connected to the controller (3), and a stamping support (21) slidably mounted on the frame (1) and connected to the output end of the hydraulic push rod (20); the upper die (2) is mounted on the stamping support (21).
7. The machine foot plate stamping device according to claim 1, characterized in that, The frame (1) is provided with a stamping platform (22). The material discharge mechanism includes a first transmission mechanism provided on the stamping platform (22) and connected to the pushing mechanism, a second transmission mechanism provided on the stamping platform (22) and connected to the first transmission mechanism, a movable frame (23) slidably provided on the stamping platform (22) and connected to the second transmission mechanism, and a material discharge trough (24) provided on the movable frame (23).
8. The machine foot plate stamping device according to claim 7, characterized in that, The push mechanism is provided with a transmission seat (25). The first transmission mechanism includes a rotating mounting seat (26) on the stamping platform (22), a first rotating shaft (27) rotatably mounted on the rotating mounting seat (26) and connected to the second transmission mechanism, a gear (28) on the first rotating shaft (27), and a sliding rod (29) on the transmission seat (25). The sliding rod (29) is provided with a toothed section that meshes with the gear (28).
9. A foot plate stamping device according to claim 8, characterized in that, The stamping platform (22) is provided with a transmission mounting box (30), and a second rotating shaft (31) is rotatably provided on the transmission mounting box (30). The second transmission mechanism includes a synchronous pulley A (32) provided on the first rotating shaft (27), two transmission frames (33) provided on the stamping platform (22), a synchronous pulley B (34) rotatably provided on the transmission frame (33), a synchronous pulley C (35) provided on the second rotating shaft (31), and a synchronous belt (36) fitted between the synchronous pulley A (32), the synchronous pulley B (34), and the synchronous pulley C (35).
10. A foot plate stamping device according to claim 7, characterized in that, The lower die includes a stamping limit seat (37) on the stamping platform (22) and a stamping die (38) inside the stamping limit seat (37); the stamping die (38) is provided with a stamping hole (39).