CN117816818B - Building unit door makes with panel stamping forming production line - Google Patents

Building unit door makes with panel stamping forming production line Download PDF

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Publication number
CN117816818B
CN117816818B CN202410239006.8A CN202410239006A CN117816818B CN 117816818 B CN117816818 B CN 117816818B CN 202410239006 A CN202410239006 A CN 202410239006A CN 117816818 B CN117816818 B CN 117816818B
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China
Prior art keywords
clamping
plate
frame
stamping
seat body
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CN202410239006.8A
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Chinese (zh)
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CN117816818A (en
Inventor
朱帮雷
徐勤军
张振山
姜继荣
周亮
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Jiangsu Yubang Electronic Technology Co ltd
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Jiangsu Yubang Electronic Technology Co ltd
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Priority to CN202410239006.8A priority Critical patent/CN117816818B/en
Publication of CN117816818A publication Critical patent/CN117816818A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D22/00Shaping without cutting, by stamping, spinning, or deep-drawing
    • B21D22/02Stamping using rigid devices or tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/003Positioning devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/02Advancing work in relation to the stroke of the die or tool
    • B21D43/04Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work
    • B21D43/08Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work by rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D45/00Ejecting or stripping-off devices arranged in machines or tools dealt with in this subclass

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Press Drives And Press Lines (AREA)

Abstract

The application discloses a plate stamping forming production line for building unit door manufacture, which belongs to the field of plate stamping equipment and is used for stamping plates, and comprises a feeding frame body, a discharging frame body, a feeding roller body, a discharging roller body, a side frame and a frame base, wherein a plurality of bottom stamping dies and frame bottom sliding rails are distributed on the frame base, and a base bottom plate is arranged on the frame bottom sliding rails in a sliding manner; the clamping installation plates are provided with clamping units which slide relatively on the base bottom plate, and the clamping units are positioned on two sides of the bottom stamping die; the top stamping die corresponding to the bottom stamping die is arranged above the bottom stamping die, the top stamping die is connected with the stamping oil cylinder, the stamping oil cylinder is located on the stamping base, the stamping base is located on the hydraulic base, and the hydraulic base slides and is fixed on the side frame. In view of the technical scheme, the application can improve the stamping flexibility of the plate and is suitable for the requirements of stamping flexibility of different types and different positions.

Description

Building unit door makes with panel stamping forming production line
Technical Field
The application belongs to the field of plate stamping equipment, and particularly relates to a plate stamping forming production line for building unit door manufacturing.
Background
The plate is subjected to stamping treatment, so that the building unit door plate can be rapidly manufactured, for example, a plate stamping machine disclosed in the patent document with the Chinese patent publication number CN109013806A, and the following technical scheme is specifically disclosed: the hydraulic press comprises a workbench, wherein the workbench comprises a lower substrate and an upper substrate, a supporting rod is fixedly connected between the lower substrate and the upper substrate, a hydraulic rod is fixedly connected below the upper substrate, a lower die holder and a lower die are fixedly connected above the lower substrate, the hydraulic press is simple in structure and convenient to operate, the product is formed by arranging the matched motion of a female die and a male die, the separation of the product and the male die can be realized by arranging a cam driving structure and a push rod, the workpiece taking by workers is facilitated, the working efficiency is improved, and the hydraulic press is convenient to maintain.
Meanwhile, the patent document with the Chinese patent publication number of CN106825309A can be continuously referred to, and the device comprises a base and a mounting seat, wherein a stamping die is arranged in the mounting seat, a support is arranged on one side of the base, a mounting frame is connected to the support, a cylinder is arranged at the lower part of the mounting frame, a stamping head is connected to the cylinder, an air inlet pipe is connected to an air inlet of the cylinder, a valve core is slidably connected to the air inlet pipe, a mounting hole is formed in the mounting frame, the valve core stretches into the mounting hole, an electromagnetic block is further arranged in the mounting hole, an exciting coil is arranged on the electromagnetic block, a plurality of air collecting grooves are formed in the stamping head, a piston is arranged in the piston cavity, the tail of the piston stretches out of the stamping head and is connected with a first rack rotating shaft to be connected with a generator, and a photoelectric switch which is further arranged on the base further comprises two storage batteries and a light source.
However, in the above prior art, the disclosed plate stamping device only improves the rest structures, but does not improve the stamping head and the die thereof, and has low adaptability to requirements of plates of different types and stamping positions, and if the plates to be stamped and the stamping positions of the plates change, more changes are needed to adapt, so that the flexibility is low.
Disclosure of Invention
In order to solve the problems in the prior art, the application discloses a plate stamping forming production line for building unit door manufacturing, which can improve the stamping flexibility of plates and is suitable for the requirements of stamping flexibility of different types and different positions.
In order to achieve the technical purpose of the application, the application is realized by the following technical scheme:
the application discloses a plate stamping forming production line for building unit door manufacture, which comprises a feeding frame body and a discharging frame body, wherein a plurality of feeding roller bodies are arranged on the feeding frame body, a plurality of discharging roller bodies are arranged on the discharging frame body, a side frame is arranged between the feeding frame body and the discharging frame body, a frame base is arranged between adjacent side frames, a plurality of bottom stamping dies are distributed on the frame base in the plate conveying direction, a plurality of frame bottom sliding rails are distributed on the frame base, two ends of each frame bottom sliding rail are connected with the side frame at corresponding positions, a base bottom plate is arranged on each frame bottom sliding rail in a sliding manner, and extends in the plate conveying direction; the base comprises a base bottom plate, wherein a clamping mounting plate capable of sliding relatively is arranged in the length direction of the base bottom plate, a plurality of uniformly distributed clamping units are arranged on the clamping mounting plate, each clamping unit comprises a clamping horizontal oil cylinder connected with the clamping mounting plate, a telescopic end of each clamping horizontal oil cylinder is connected with a clamping sliding plate body, and the clamping sliding plate bodies slide along bottom plate sliding rails on the clamping mounting plate through sliding plate sliding blocks; one end of the clamping sliding plate body, which faces the bottom stamping die, is provided with a clamping fixing seat, a space for accommodating a clamping plate is formed between the clamping fixing seat and the clamping sliding plate body, and the clamping plate is matched with the clamping sliding plate body to clamp the edge of the plate; the clamping fixing seat is provided with a clamping vertical oil cylinder, and the telescopic end of the clamping vertical oil cylinder penetrates through the clamping fixing seat and then is connected with the clamping plate; the top stamping die corresponding to the bottom stamping die is arranged above the bottom stamping die, the top stamping die is connected with the stamping oil cylinder, the stamping oil cylinder is located on the stamping base, the stamping base is located on the hydraulic base, and the hydraulic base slides and is fixed on the side frame.
As one of the preferable technical schemes of the application, the hydraulic seat body is an inverted U-shaped structure frame body, seat body sliding sleeves are arranged on two sides of the hydraulic seat body, and the hydraulic seat body slides along a frame ejector rod at the top end of the side frame through the seat body sliding sleeves; two ends of the frame ejector rod are fixedly connected with the side frame through an ejector rod seat body; the hydraulic seat body is characterized in that seat body driving motors are arranged at the bottoms of two ends of the hydraulic seat body, seat body driving wheels are driven by the seat body driving motors and are matched with wheel body guide plates on the outer sides of the side frames.
As one of the preferable technical schemes of the application, the seat body driving wheel is of a gear structure, the wheel body guide plate is of a toothed plate structure, and the seat body driving wheel is meshed with the gear teeth on the wheel body guide plate and moves along the length direction of the wheel body guide plate; the outside of side frame is provided with a plurality of frame muscle bodies, wheel body deflector and frame muscle body fixed connection.
As one of the preferable technical schemes of the application, the top of the hydraulic seat is provided with a seat through hole, a punching seat is arranged above the seat through hole, two sides of the punching seat are integrally provided with seat side sliding grooves, and the seat side sliding grooves are clamped and slide with seat side sliding rails on the hydraulic seat; the two sides of the stamping base are connected with the telescopic ends of the horizontal oil cylinders of the frame body, and the bottom ends of the horizontal oil cylinders of the frame body are fixed on the hydraulic base.
As one of the preferable technical schemes of the application, the bottom stamping die is positioned on the frame base between the adjacent frame bottom sliding rails; the base bottom plate is connected with the side frame through a bottom plate horizontal driving oil cylinder and slides along a frame bottom sliding rail; a plurality of auxiliary roller seat bodies are distributed on the base bottom plate, and the auxiliary roller seat bodies are positioned between the adjacent clamping units.
As one of the preferable technical schemes of the application, a plurality of driving gear sets are distributed on the length direction of the base bottom plate, all gears on the driving gear sets are connected through synchronous belts, the synchronous belts are connected with a driving device, the driving gear sets are meshed with a clamping driving plate for transmission, and the clamping driving plate is positioned at the bottom of the clamping mounting plate and is fixedly connected with the clamping mounting plate into a whole.
As one of the preferable technical schemes of the application, the clamping mounting plates at the two sides of the clamping driving plate are provided with linear bearings which slide along the frame guide shaft, and the frame guide shaft is positioned above the base bottom plate and fixedly connected with the base bottom plate; the linear bearing is located on the mounting plate sliding block, the mounting plate sliding block slides along the mounting plate longitudinal sliding rail, and the mounting plate longitudinal sliding rail is located on the clamping driving plate.
Compared with the prior art, the application has the following beneficial effects:
The application realizes the improvement of flexibility in the plate stamping process by redesigning the stamping assembly line, and the flexibility is mainly embodied in the flexible adjustment of adapting to different stamping parts, thereby improving the stamping flexibility of the stamping assembly line and ensuring the stamping quality of the plate.
Drawings
Fig. 1 is a perspective view of the present application.
Fig. 2 is a partial enlarged view of the portion I in fig. 1.
Fig. 3 is a partial enlarged view of the portion II in fig. 1.
In the figure: 1. feeding a frame body; 2. a feeding roller body; 3. a side frame; 4. a push rod seat body; 5. a frame ejector rod; 6. a hydraulic seat; 7. a frame horizontal cylinder; 8. stamping the base body; 9. punching an oil cylinder; 10. a seat body through hole; 11. a base side chute; 12. a seat side slide rail; 13. a seat sliding sleeve; 14. a seat body driving motor; 15. a base driving wheel; 16. wheel body guide plate; 17. a frame rib; 18. a drive gear set; 19. a rack bottom slide rail; 20. a bottom stamping die; 21. the bottom plate horizontally drives the oil cylinder; 22. a clamping unit; 23. a plate auxiliary roller; 24. a bottom plate slide rail; 25. clamping a horizontal oil cylinder; 26. clamping the sliding plate body; 27. clamping a vertical oil cylinder; 28. clamping the fixing seat; 29. a clamping plate; 30. an auxiliary roller seat; 31. a sliding plate slider; 32. clamping the mounting plate; 33. a linear bearing; 34. a frame guide shaft; 35. a mounting plate longitudinal slide rail; 36. a mounting plate slide block; 37. a discharging frame body; 38. a discharging roller body; 39. a frame base; 40. a base bottom plate; 41. a top stamping die; 42. clamping the driving plate.
Detailed Description
The application of the technical scheme is further described and illustrated below by referring to the attached drawings and embodiments.
As one of the embodiments of the application, a building unit door manufacturing board stamping forming production line comprises a frame base 39 arranged on a horizontal plane, wherein two sides of the frame base 39 are fixedly provided with side frames 3 which are arranged vertically, the side frames 3 are provided with frame ejector rods 5 in the processing and conveying direction of boards, the frame ejector rods 5 are positioned at the top ends of the side frames 3, and two ends of the frame ejector rods 5 are fixedly connected with ejector rod bases 4 respectively. The inlet of the frame base 39 is provided with a feeding frame body 1, a plurality of feeding roller bodies 2 are distributed on the feeding frame body 1, the outlet of the frame base 39 is provided with a discharging frame body 37, and a plurality of discharging roller bodies 38 are distributed on the discharging frame body 37. The feeding roller bodies 2 are driven by a transmission chain, the transmission chain is connected with a roller body driving speed change mechanism, and the roller body driving speed change mechanism is connected with a roller body driving motor. The plurality of discharging roller bodies 38 are driven by a transmission chain, the transmission chain is connected with a roller body driving speed change mechanism, and the roller body driving speed change mechanism is connected with a roller body driving motor.
The frame ejector rod 5 and the seat sliding sleeve 13 are arranged in a sliding manner, and the seat sliding sleeve 13 is positioned on two sides of the hydraulic seat 6 and fixedly connected with the hydraulic seat 6. The hydraulic seat body 6 is an inverted U-shaped structure frame body, the hydraulic seat body 6 is provided with a stamping seat body 8 at a position above the frame base 39, the stamping seat body 8 is fixedly provided with a stamping cylinder 9, and the telescopic end of the stamping cylinder 9 is connected with a top stamping die 41.
The two sides of the hydraulic seat body 6 are provided with seat body driving motors 14, the seat body driving motors 14 are driven by seat body driving wheels 15, and the seat body driving wheels 15 are positioned in the hydraulic seat body 6. The seat body driving wheel 15 is a driving gear, the seat body driving wheel 15 is meshed with the wheel body guide plate 16 for transmission, the wheel body guide plate 16 is a tooth-shaped plate body, and the wheel body guide plate 16 is fixedly connected with the outer wall of the side frame 3.
A plurality of bottom stamping dies 20 are distributed at the middle position of the frame base 39, base bottom plates 40 are arranged on the frame bases 39 on two sides of the bottom stamping dies 20, the base bottom plates 40 are slidably arranged on the frame bottom sliding rails 19, and the frame bottom sliding rails 19 are distributed on the frame bases 39 on two sides of the bottom stamping dies 20.
The frame bottom rail 19 extends in the width direction of the frame base 39, and both ends of the frame bottom rail 19 are connected with the side frames 3 at the corresponding positions.
A bottom plate horizontal driving oil cylinder 21 is arranged between the base bottom plate 40 and the side frame 3, the telescopic end of the bottom plate horizontal driving oil cylinder 21 is connected with the base bottom plate 40, and the tail end of the bottom plate horizontal driving oil cylinder 21 is fixed on the side frame 3.
The base bottom plate 40 is provided with a clamping mounting plate 32, and the clamping mounting plate 32 is provided with a plurality of clamping units 22.
As a second embodiment of the present application, in a building unit door manufacturing board stamping and forming production line, the bottom end of a clamping horizontal cylinder 25 is mounted on the clamping unit 22, the telescopic end of the clamping horizontal cylinder 25 is connected with a clamping sliding board body 26, the bottom end of the clamping sliding board body 26 is connected with a sliding board sliding block 31, the sliding board sliding block 31 slides along a bottom board sliding rail 24, the bottom board sliding rail 24 is fixedly connected to a clamping mounting board 32, the bottom end of the clamping mounting board 32 is provided with a linear bearing 33, the linear bearing 33 slides along a frame guiding shaft 34, and two ends of the frame guiding shaft 34 are located on a base bottom board 40 and fixedly connected with the base bottom board 40; a plurality of driving gear sets 18 are distributed on the base bottom plate 40 between the adjacent frame guide shafts 34, and the driving gear sets 18 realize synchronous transmission of a plurality of driving gears through synchronous belts and driving mechanisms; the driving gear set 18 is meshed with the clamping driving plate 42, the clamping driving plate 42 is fixedly arranged at the bottom end of the clamping mounting plate 32, two sides of the clamping mounting plate 32 are fixedly connected with the linear bearing 33 through the mounting plate sliding block 36, the mounting plate sliding block 36 slides along the mounting plate longitudinal sliding rail 35, and the mounting plate longitudinal sliding rail 35 is positioned on the base bottom plate 40.
The clamping and sliding plate body 26 is integrally provided with a clamping and fixing seat 28 at the end part facing the bottom stamping die 20, the clamping and fixing seat 28 and the end part of the clamping and sliding plate body 26 form a U-shaped opening, a clamping plate 29 is arranged in the U-shaped opening, and the clamping plate 29 and the end part of the clamping and sliding plate body 26 are arranged in parallel; the clamping plate 29 is connected with the telescopic end of the clamping vertical oil cylinder 27, and the clamping vertical oil cylinder 27 is connected to the clamping fixing seat 28.
As a third embodiment of the present application, in a building unit door manufacturing sheet stamping forming production line, a plurality of auxiliary plate body rollers 23 are distributed on a clamping mounting plate 32 between the clamping units 22, one end of each auxiliary plate body roller 23 is connected with the clamping mounting plate 32, the other end of each auxiliary plate body roller 23 is connected with an auxiliary roller seat 30, and the auxiliary roller seat 30 is fixedly arranged on the clamping mounting plate 32.
The hydraulic seat body 6 is provided with a seat body through hole 10, the seat body through hole 10 is a rectangular through hole, the stamping seat body 8 is positioned at the seat body through hole 10, both sides of the stamping seat body 8 are integrally provided with seat body side sliding grooves 11, and the seat body side sliding grooves 11 are clamped on a seat body side sliding rail 12 and slide along the seat body side sliding rail 12; the seat side sliding rails 12 are respectively arranged at two sides of the hydraulic seat 6 and are integrally arranged with the hydraulic seat 6; the hydraulic base 6 is provided with a frame body horizontal oil cylinder 7 at the positions of two sides of the stamping base 8, the bottom end of the frame body horizontal oil cylinder 7 is connected with the hydraulic base 6, and the telescopic end of the frame body horizontal oil cylinder 7 is connected with the stamping base 8.
The working process of the present application is further explained on the basis of the above embodiments to assist those skilled in the art in fully understanding the technical scheme of the present application and to enable reproduction.
As shown in fig. 1 to 3, the feeding structure formed by the feeding frame body 1 and the feeding roller body 2 in the application can enable a plate to be processed to enter a processing station, and the plate can enter a clamping position of the clamping unit 22, specifically, a clamping position formed by the clamping fixing seat 28 and the clamping sliding plate body 26 with the aid of the auxiliary roller seat body 30.
After the plate is conveyed to the clamping position, the clamping vertical oil cylinder 27 starts to act, so that the clamping vertical oil cylinder 27 drives the clamping plate 29 to move downwards to the end part of the clamping plate 29 and the clamping sliding plate 26 to clamp the plate body for later fixation.
In the above process, in order to adapt to the boards of different types, the work of the clamping horizontal cylinder 25 can be controlled, so that the clamping sliding plate 26 moves relative to the clamping mounting plate 32 through the sliding plate sliding block 31 and the bottom plate sliding rail 24, and the clamping sliding plate 26 can move relative to the bottom stamping die 20 under the action of the clamping horizontal cylinder 25, so that the clamping of the edge positions is provided for the processing of different boards.
The bottom stamping dies 20 are distributed on the frame base 39 and flexibly arranged according to the stamping positions of the plates.
The seat body driving motor 14 is started, the seat body driving motor 14 drives the seat body driving wheel 15 to rotate, and the seat body driving wheel 15 can move along the wheel body guide plate 16 when rotating. The hydraulic seat 6 and the side frame 3 move relatively under the cooperation of the seat driving wheel 15 and the wheel body guide plate 16. In order to ensure the stability of the movement, a seat sliding sleeve 13 and a frame ejector rod 5 are arranged at the connecting position of the hydraulic seat 6 and the side frame 3.
The hydraulic base 6 is provided with a base through hole 10, a punching base 8 with an adjustable position is arranged at the base through hole 10, a punching oil cylinder 9 is arranged on the punching base 8, a top punching die 41 is connected to the telescopic end of the punching oil cylinder 9, and the top punching die 41 and the bottom punching die 20 are matched to realize the punching of the plate. Because the setting positions of the bottom stamping dies 20 are different, the top stamping dies 41 can be matched with the bottom stamping dies 20 at different positions after position adjustment is realized.
The position of the stamping seat body 8 is adjusted through the horizontal oil cylinder 7 of the frame body, and the horizontal oil cylinder 7 of the frame body is positioned at two sides of the stamping seat body 8.
Meanwhile, in cooperation with the above structure, in order to realize stamping of different positions of the plate, the stamping needs to be realized through adjustment of the bottom plate horizontal driving oil cylinder 21, the bottom plate horizontal driving oil cylinder 21 drives the base bottom plate 40 to move along the rack bottom sliding rail 19, and the base bottom plates 40 on two sides of the bottom stamping die 20 move in a matched manner, so that the plate can adjust the horizontal transverse position of the plate between the bottom stamping die 20 and the top stamping die 41, and the clamping mounting plate 32 realizes adjustment of the horizontal vertical position of the movable plate body under the action of the driving gear set 18 and the clamping driving plate 42.
In the present application, the bottom stamping die 20 can set different stamping dies according to stamping requirements of different positions of the plate, and the top stamping die 41 can be matched with the dies of the bottom stamping die 20 to stamp different positions of the plate, so as to improve the stamping flexibility of the plate.
Finally, although the description has been described in terms of embodiments, not every embodiment is intended to include only a single embodiment, and such description is for clarity only, as one skilled in the art will recognize that the embodiments of the disclosure may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.

Claims (3)

1. The utility model provides a building unit door makes with panel stamping forming production line, includes pan feeding support body (1), ejection of compact support body (37), installs a plurality of pan feeding roll bodies (2) on pan feeding support body (1), installs a plurality of ejection of compact roll bodies (38) on ejection of compact support body (37), is provided with side frame (3) between pan feeding support body (1) and ejection of compact support body (37), is frame base (39) between adjacent side frame (3), it has a plurality of end stamping die (20) to distribute on frame base (39), and end stamping die (20) distribute in panel direction of delivery, its characterized in that: a plurality of frame bottom sliding rails (19) are distributed on the frame base (39), two ends of each frame bottom sliding rail (19) are connected with the corresponding side frame (3), a base bottom plate (40) is arranged on each frame bottom sliding rail (19) in a sliding manner, and the base bottom plates (40) extend in the conveying direction of the plates; the base bottom plate (40) is provided with a clamping mounting plate (32) which slides relatively in the length direction, the clamping mounting plate (32) is provided with a plurality of uniformly distributed clamping units (22), each clamping unit (22) comprises a clamping horizontal oil cylinder (25) connected with the clamping mounting plate (32), the telescopic end of each clamping horizontal oil cylinder (25) is connected with a clamping sliding plate body (26), and the clamping sliding plate body (26) slides along a bottom plate sliding rail (24) on the clamping mounting plate (32) through a sliding plate sliding block (31); one end of the clamping sliding plate body (26) facing the bottom stamping die (20) is provided with a clamping fixing seat (28), a space for accommodating a clamping plate (29) is formed between the clamping fixing seat (28) and the clamping sliding plate body (26), and the clamping plate (29) is matched with the clamping sliding plate body (26) to clamp the edges of the plates; the clamping fixing seat (28) is provided with a clamping vertical oil cylinder (27), and the telescopic end of the clamping vertical oil cylinder (27) passes through the clamping fixing seat (28) and is connected with the clamping plate (29); a top stamping die (41) corresponding to the bottom stamping die is arranged above the bottom stamping die (20), the top stamping die (41) is connected with a stamping oil cylinder (9), the stamping oil cylinder (9) is positioned on a stamping seat body (8), the stamping seat body (8) is positioned on a hydraulic seat body (6), and the hydraulic seat body (6) slides and is fixed on the side frame (3); the hydraulic seat body (6) is an inverted U-shaped structure frame body, seat body sliding sleeves (13) are arranged on two sides of the hydraulic seat body (6), and the hydraulic seat body (6) slides along a frame ejector rod (5) at the top end of the side frame (3) through the seat body sliding sleeves (13); two ends of the frame ejector rod (5) are fixedly connected with the side frame (3) through an ejector rod seat body (4); the bottoms of two ends of the hydraulic seat body (6) are provided with seat body driving motors (14), the seat body driving motors (14) are connected with seat body driving wheels (15) in a driving mode, and the seat body driving wheels (15) are matched with wheel body guide plates (16) on the outer sides of the side frames (3); the seat body driving wheel (15) is of a gear structure, the wheel body guide plate (16) is of a toothed plate structure, and the seat body driving wheel (15) is meshed with teeth on the wheel body guide plate (16) and moves along the length direction of the wheel body guide plate (16); a plurality of frame ribs (17) are arranged outside the side frame (3), and the wheel body guide plate (16) is fixedly connected with the frame ribs (17); the hydraulic pressure seat body (6) is characterized in that a seat body through hole (10) is formed in the top of the hydraulic pressure seat body (6), a punching seat body (8) is arranged above the seat body through hole (10), seat body side sliding grooves (11) are integrally formed in two sides of the punching seat body (8), and the seat body side sliding grooves (11) are clamped and slide with seat body side sliding rails (12) on the hydraulic pressure seat body (6); two sides of the stamping base body (8) are connected with the telescopic ends of the frame body horizontal oil cylinders (7), and the bottom ends of the frame body horizontal oil cylinders (7) are fixed on the hydraulic base body (6); the bottom stamping die (20) is positioned on a frame base (39) between adjacent frame bottom sliding rails (19); the base bottom plate (40) is connected with the side frame (3) through a bottom plate horizontal driving oil cylinder (21) and slides along a frame bottom sliding rail (19); a plurality of auxiliary roller seat bodies (30) are distributed on the base bottom plate (40), and the auxiliary roller seat bodies (30) are positioned between the adjacent clamping units (22).
2. A building unit door manufacturing sheet material stamping forming production line as claimed in claim 1, wherein: a plurality of driving gear sets (18) are distributed on the length direction of the base bottom plate (40), all gears on the driving gear sets (18) are connected through synchronous belts, the synchronous belts are connected with a driving device, the driving gear sets (18) are in meshed transmission with a clamping driving plate (42), and the clamping driving plate (42) is located at the bottom of the clamping mounting plate (32) and is fixedly connected with the clamping mounting plate (32) into a whole.
3. A building unit door manufacturing sheet material stamping forming production line as claimed in claim 2, wherein: the clamping mounting plates (32) on two sides of the clamping driving plate (42) are provided with linear bearings (33), the linear bearings (33) slide along the frame guide shafts (34), and the frame guide shafts (34) are positioned above the base bottom plate (40) and fixedly connected with the base bottom plate (40); the linear bearing (33) is positioned on the mounting plate sliding block (36), the mounting plate sliding block (36) slides along the mounting plate longitudinal sliding rail (35), and the mounting plate longitudinal sliding rail (35) is positioned on the base bottom plate (40).
CN202410239006.8A 2024-03-04 2024-03-04 Building unit door makes with panel stamping forming production line Active CN117816818B (en)

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CN202410239006.8A CN117816818B (en) 2024-03-04 2024-03-04 Building unit door makes with panel stamping forming production line

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Application Number Priority Date Filing Date Title
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CN117816818B true CN117816818B (en) 2024-05-10

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WO2023088170A1 (en) * 2020-11-16 2023-05-25 拉普拉斯(无锡)半导体科技有限公司 Clamping jaw mechanism
CN219766589U (en) * 2023-07-20 2023-09-29 英联金属科技(扬州)有限公司 Clamping mechanism of punch press

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