CN223543838U - A profiled metal composite roofing processing and forming device - Google Patents
A profiled metal composite roofing processing and forming deviceInfo
- Publication number
- CN223543838U CN223543838U CN202422729534.XU CN202422729534U CN223543838U CN 223543838 U CN223543838 U CN 223543838U CN 202422729534 U CN202422729534 U CN 202422729534U CN 223543838 U CN223543838 U CN 223543838U
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- Prior art keywords
- fixedly connected
- shell
- gear
- sides
- shafts
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Abstract
The utility model relates to the field of processing and forming devices, in particular to a processing and forming device for a profiled metal sheet composite roof. When processing the profiled metal sheet of different specifications, need to change the mould according to the processing size and the appearance of profiled metal sheet, change the step loaded down with trivial details, it is long consuming time, work efficiency is low. Including the shell, shell bottom fixedly connected with fixed block, shell bottom just is located fixed block both sides symmetry sliding connection and has first movable block and second movable block, and two sliding blocks of side symmetry fixedly connected with on first movable block and the second movable block, spout has been seted up to the inside bottom surface of shell, and sliding block passes through spout sliding connection inside the shell, and the inside transmission system that is provided with of shell. The distance between the fixed block and the first moving block and the distance between the fixed block and the second moving block can be accurately and rapidly adjusted according to the specification and the size of the template and the profiling metal plate, the step of replacing an upper die is reduced, the working efficiency is improved, and the time required for adjustment is reduced.
Description
Technical Field
The utility model relates to the field of processing and forming devices, in particular to a processing and forming device for a profiled metal sheet composite roof.
Background
The profiled metal sheet composite roof is widely used as roof and wall surface enclosure structures of buildings due to the characteristics of light dead weight, high strength, good waterproof and anti-seismic properties, recycling property and the like, and the research and application of the vertical serging aluminum alloy profiled plates meets the requirements of various large-scale stadiums, exhibition centers, large theatres, terminal buildings, high-speed railway stations and other marked building roofs in more than ten years.
The profiling metal plate is generally processed and manufactured by a factory production line and then transported to site installation, the production mode greatly improves production efficiency and reduces cost, but metal plates with various specifications exist during processing, when the profiling metal plates with different specifications are processed, an upper die is required to be replaced according to the processing size and the appearance of the profiling metal plate, the replacement step is complex, the time consumption is long, and the working efficiency is low.
Disclosure of utility model
(1) Technical problem to be solved
The utility model aims to overcome the defects that when processing the profiled metal sheets with different specifications, an upper die is required to be replaced according to the processing size and the appearance of the profiled metal sheets, the replacement step is complicated, the time consumption is long and the working efficiency is low.
(2) Technical proposal
In order to solve the technical problems, the utility model provides a profiling metal plate composite roof processing and forming device which comprises a shell, wherein the bottom of the shell is fixedly connected with a first moving block and a second moving block, the bottom of the shell is symmetrically and slidingly connected with the two sides of the fixed block, the two ends of the upper side surfaces of the first moving block and the second moving block are symmetrically and fixedly connected with two sliding blocks, the bottom surface of the inner part of the shell is provided with a sliding groove, the sliding blocks are slidingly connected in the inner part of the shell through the sliding groove, the inner part of the shell is provided with a transmission system, the transmission system comprises six moving shafts, the bottom of the shell is provided with the sliding groove, the moving shafts are symmetrically and slidingly connected at the bottom of the shell, the lower ends of the two moving shafts close to the two sides of the shell are fixedly connected with the second moving block, the other four moving shafts are in two groups of sliding connection with the upper sides of the first moving block, the outer sides of the two upper ends of the two moving shafts are rotationally connected with two short rotating connecting rods, the other four moving shafts are rotationally connected with one long connecting rod and the middle part of the outer rotating connecting rod is fixedly connected with the long connecting rod.
Preferably, a side of the shell is fixedly connected with a motor through a bracket, the output end of the motor is fixedly connected with an output shaft, the output shaft is rotationally connected with a supporting sleeve on the outer side of the inside of the shell, the supporting sleeve is fixedly connected with the inside of the shell through a bracket, the output shaft is fixedly connected with a driving bevel gear on one end of the inside of the shell, the driving bevel gear is meshed with a driven bevel gear, the lower side of the driven bevel gear is fixedly connected with a rotary connecting rod, the lower end of the rotary connecting rod is fixedly connected with a driving gear, the driving gear is meshed with a driven gear, the driven gear is rotationally connected with a gear protection box through a rotating shaft, the gear protection box is fixedly connected with a connecting rod protection box on the inner side of the shell through a bracket, the inside of the connecting rod protection box is rotationally connected with a matched gear through a rotating shaft, the upper side of the matched gear is fixedly connected with the driven gear, the rotating shaft between the matched gear and the driven gear is rotationally connected with the inner side of the fixed sleeve, the side of the matched gear is symmetrically meshed with two sliding gears, and the two sliding ends of the rack shaft are far away from the end of the rack.
Preferably, the hydraulic system is arranged on two sides of the shell, the hydraulic system comprises fixing elements, the fixing elements are symmetrically and fixedly connected on two sides of the shell, and the lower sides of the fixing elements are fixedly connected with hydraulic lifting columns.
Preferably, the hydraulic lifting column lower extreme is provided with braced system, braced system is including two support base, support base fixed connection is in hydraulic lifting column lower extreme, it is provided with the supporting box to support the base side, support base symmetry fixed connection and be in the supporting box both sides, the blind hole of symmetry has been seted up to one side of supporting box, and the blind hole corresponds the position side and rotates and be connected with the two-way door, supporting box upside fixedly connected with fixing screw, fixing screw threaded connection has the mould.
Preferably, four 冂 -shaped frames are symmetrically and fixedly connected to the two sides of the supporting box and positioned above the supporting base, and a fixing protective sleeve is fixedly connected between opposite side surfaces of the upper end of the 冂 -shaped frame.
Preferably, the inner side of the fixed protection sleeve is fixedly connected with a sliding rail, and the fixed protection sleeve is in sliding connection with the shell through the sliding rail.
(3) Advantageous effects
1. The output of the motor drives the output shaft to rotate, so that the helical gear is driven to rotate, the rotary connecting rod is driven to rotate anticlockwise, the driving gear and the driven gear are driven to rotate, the sliding racks are driven to move through meshing connection, the two sliding racks are displaced towards two ends, the distance between the movable shafts on two sides and the middle fixed shaft is changed, the distance between the fixed block and the first and second movable blocks can be accurately and rapidly adjusted according to the specification and the size of the template and the profiling metal plate, the step of replacing an upper die is reduced, the working efficiency is improved, and the time required for adjustment is shortened;
2. The hydraulic system is started, so that the hydraulic lifting column moves, the shell is driven to integrally move through the fixing element, the shell can slide on the sliding rail in the fixing protective sleeve at the moment, the forming process of the whole metal plate is realized, and the stability and safety in the integral forming process are improved.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a cross-sectional view of the housing of the present utility model;
FIG. 3 is a schematic diagram of a transmission system according to the present utility model;
FIG. 4 is a schematic diagram of a mobile module according to the present utility model;
FIG. 5 is a schematic view of a support system according to the present utility model;
fig. 6 is a schematic structural view of a fixing protective sleeve according to the present utility model.
The drawing is marked by 1-shell, 101-fixed sleeve, 102-fixed block, 103-first moving block, 104-second moving block, 105-sliding block, 106-gear protection box, 107-connecting rod protection box, 108-supporting frame, 109-supporting sleeve, 2-supporting system, 201-supporting box, 202-double door, 203-fixed screw, 204-mould, 205-supporting base, 206-fixed protective sleeve, 207- 冂 -shaped frame, 3-hydraulic system, 301-hydraulic lifting column, 302-fixed element, 4-transmission system, 401-motor, 402-output shaft, 403-driving helical gear, 404-driven helical gear, 405-rotating connecting rod, 406-driving gear, 407-driven gear, 408-matched gear, 409-sliding rack, 410-moving shaft, 411-fixed shaft, 412-long rotating connecting rod and 413-short rotating connecting rod.
Detailed Description
The utility model is further described below with reference to the drawings and examples.
Examples
1-6, Including shell 1, shell 1 bottom fixedly connected with fixed block 102, shell 1 bottom and be located fixed block 102 both sides symmetry sliding connection have first movable block 103 and second movable block 104, first movable block 103 is located the both sides of fixed block 102, second movable block 104 is located the outside of two symmetrical first movable blocks 103 that set up, two sliding blocks 105 are symmetrically fixedly connected with both ends of first movable block 103 and second movable block 104 upside, the spout has been seted up to shell 1 inside bottom surface, sliding block 105 passes through spout sliding connection in shell 1 inside, shell 1 inside is provided with transmission system 4, transmission system 4 includes six movable shafts 410, the spout has been seted up to shell 1 bottom, movable shaft 410 sliding connection is in shell 1 bottom, the spout has been seted up to six movable shafts 410 in the corresponding position of shell 1 bottom, wherein two movable shafts 410 near two sides of the shell 1 slide in two sliding grooves perpendicular to the side surface of the shell 1, which are formed in the bottom of the shell 1, the other four movable shafts 410 slide in four sliding grooves in the bottom of the shell 1, the lower ends of the two movable shafts 410 near the two sides of the shell 1 are fixedly connected with the second movable block 104, the other four movable shafts 410 are equally divided into two groups and are slidingly connected with the upper side of the first movable block 103, the outer sides of the upper ends of the two movable shafts 410 near the two sides of the shell 1 are rotationally connected with two short rotating connecting rods 413, the outer sides of the upper ends of the other four movable shafts 410 are rotationally connected with one long rotating connecting rod 412 and one short rotating connecting rod 413, the middle parts of the two long rotating connecting rods 412 are rotationally connected with a fixed shaft 411, the two long rotating connecting rods 412 are alternately arranged, and rotate by taking the fixed shaft 411 as a circle center, the movable shafts 410 on both sides of the two long rotating connecting rods 412 are driven to move in an inclined direction, and the fixed shaft 411 is fixedly connected inside the housing 1.
One side of the shell 1 is fixedly connected with a motor 401 through a bracket, the output end of the motor 401 is fixedly connected with an output shaft 402, the output shaft 402 is rotationally connected with a supporting sleeve 109 outside the inside of the shell 1, the supporting sleeve 109 is fixedly connected inside the shell 1 through a bracket, one end of the output shaft 402 inside the shell 1 is fixedly connected with a driving bevel gear 403, the driving bevel gear 403 is in meshed connection with a driven bevel gear 404, the lower side of the driven bevel gear 404 is fixedly connected with a rotary connecting rod 405, the lower end of the rotary connecting rod 405 is fixedly connected with a driving gear 406, the driving gear 406 is in meshed connection with a driven gear 407, the driven gear 407 is rotationally connected with a gear protection box 106 through a rotating shaft, the gear protection box 106 is fixedly connected inside the shell 1 through a bracket, the lower side of the gear protection box 106 is fixedly connected with a fixed sleeve 101, the lower side of the fixed sleeve 101 is fixedly connected with a connecting rod protection box 107, the inside of the connecting rod protection box 107 is rotationally connected with a matched gear 408 through a rotating shaft, the upper side of the matched gear 408 is rotationally connected with the inner side of the fixed sleeve 101 through a rotating shaft, the rotating shaft between the matched gear 408 and the driven gear 407, the rotating shaft is symmetrically meshed with two sliding gears 409, and one end of the sliding 409 moves away from the end of the rack 410 of the matched gear 408.
The two sides of the shell 1 are provided with hydraulic systems 3, each hydraulic system 3 comprises a fixing element 302, the fixing elements 302 are symmetrically and fixedly connected to the two sides of the shell 1, and the lower sides of the fixing elements 302 are fixedly connected with hydraulic lifting columns 301.
The lower extreme of hydraulic lifting column 301 is provided with braced system 2, braced system 2 is including two support base 205, support base 205 fixed connection is at hydraulic lifting column 301 lower extreme, support base 205 side is provided with supporting box 201, support base 205 symmetry fixed connection is in supporting box 201 both sides, the blind hole of symmetry has been seted up to one side of supporting box 201, the blind hole corresponds the position side and rotates and be connected with two and open door 202, supporting box 201 upside fixedly connected with fixing screw 203, fixing screw 203 threaded connection has mould 204.
Four 冂 -shaped frames 207 are symmetrically and fixedly connected to the two sides of the supporting box 201 and above the supporting base 205, and a fixed protective sleeve 206 is fixedly connected between the opposite side surfaces of the upper ends of the 冂 -shaped frames 207.
The inner side of the fixed protection sleeve 206 is fixedly connected with a sliding rail, and the fixed protection sleeve 206 is in sliding connection with the shell 1 through the sliding rail.
Working principle is that when metal plate forming processing is needed, the mold 204 is removed by rotating the mold 204 anticlockwise according to metal plates with different specifications, so that the mold 204 is replaced.
After the replacement of the die 204 is completed, the distance between the first moving block 103 and the second moving block 104 above is determined according to different dies 204, when the distance between the fixed block 102 and the first moving block 103 and the distance between the fixed block 104 and the second moving block 104 are required to be increased, the motor 401 is started, the output end of the motor 401 drives the output shaft 402 to rotate anticlockwise, so that the driving bevel gear 403 is driven to rotate anticlockwise, the driven bevel gear 404 is driven to rotate anticlockwise through meshed connection, the rotary connecting rod 405 is driven to rotate anticlockwise, the driving gear 406 is driven to rotate anticlockwise, the driven gear 407 is driven to rotate clockwise through gear meshing, meanwhile, the matched gear 408 is driven to rotate clockwise through a rotating shaft between the driven gear 407 and the matched gear 408, the matched gear 408 drives the sliding racks 409 to slide through meshing, and therefore the two sliding racks 409 slide to two sides.
While the sliding rack 409 slides to two sides, the sliding rack 409 drives the movable shafts 410 fixed at two ends to displace, so that tension is applied to the long rotating connecting rod 412 and the short rotating connecting rod 413, and at this time, the long rotating connecting rod 412 and the short rotating connecting rod 413 rotate around the movable shafts 410 which are respectively connected in a rotating manner, so that the distance between the movable shafts 410 at two sides and the fixed shaft 411 in the middle is increased.
At this time, the two moving shafts 410 near two sides of the housing 1 will drive the second moving block 104 with the lower end fixedly connected to move in a direction away from the fixed block 102, and the sliding block 105 on the second moving block 104 and the sliding groove on the bottom surface inside the housing 1 will realize the sliding of the second moving block 104, in addition, when the long rotating connecting rod 412 and the short rotating connecting rod 413 rotate around the moving shafts 410 rotationally connected with each other, the moving shafts 410 between the long rotating connecting rod 412 and the short rotating connecting rod 413 will be driven to displace, at this time, the moving shafts 410 between the long rotating connecting rod 412 and the short rotating connecting rod 413 will move along the inclined sliding groove formed at the bottom of the housing 1, and the moving shafts 410 between the long rotating connecting rod 412 and the short rotating connecting rod 413 will slide in the sliding groove formed at the side surface on the first moving block 103, so as to drive the first moving block 103 to move in a direction away from the fixed block 102, so as to realize the increase of the distance between the first moving block 103 and the fixed block 102, and thus the distance between the fixed block 102 and the first moving block 103 and the second moving block 104 can be adjusted according to the size of the die 204, so as to finish pressing of metal profiling plates with different specifications.
Conversely, when the distance between the fixed block 102 and the first moving block 103 and the second moving block 104 is required to be reduced, the motor 401 can be reversely started, so that the mechanism is driven to move in the opposite direction, and the distance between the fixed block 102 and the first moving block 103 and the second moving block 104 is reduced.
After the distance between the die 204 and the upper part is adjusted, the hydraulic system 3 is started, so that the hydraulic lifting column 301 moves downwards, the fixing element 302 drives the shell 1 to move downwards integrally, at the moment, the shell 1 slides downwards on the sliding rail in the fixing protective sleeve 206, and after the shell 1 contacts with the die 204 below the shell 1, the hydraulic system 3 is reversely started, so that the shell 1 is driven to move upwards along the rail, and the whole metal plate forming process is realized.
The foregoing examples have shown only the preferred embodiments of the utility model, which are described in more detail and are not to be construed as limiting the scope of the utility model. It should be noted that modifications, improvements and substitutions can be made by those skilled in the art without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.
Claims (6)
1. The device is characterized by comprising a shell (1), wherein a fixed block (102) is fixedly connected to the bottom of the shell (1), a first moving block (103) and a second moving block (104) are symmetrically and slidingly connected to the bottom of the shell (1) and positioned at two sides of the fixed block (102), two sliding blocks (105) are symmetrically and fixedly connected to two ends of the upper side surfaces of the first moving block (103) and the second moving block (104), a sliding groove is formed in the bottom surface of the interior of the shell (1), the sliding blocks (105) are slidingly connected to the interior of the shell (1) through the sliding grooves, a transmission system (4) is arranged in the interior of the shell (1), the transmission system (4) comprises six moving shafts (410), the bottom of the shell (1) is provided with the sliding grooves, the moving shafts (410) are slidingly connected to the bottom of the shell (1), the lower ends of the two moving shafts (410) close to two sides of the shell (1) are fixedly connected with the two other moving blocks (104), the four moving shafts (410) are uniformly connected to the two moving shafts (410) close to the two sides of the two moving shafts (413) in a rotating mode, the two moving shafts (413) are connected to the two sides of the two rotating shafts (413), the outer sides of the upper ends of the other four movable shafts (410) are rotationally connected with a long rotating connecting rod (412) and a short rotating connecting rod (413), the middle parts of the two long rotating connecting rods (412) are rotationally connected with a fixed shaft (411), and the fixed shaft (411) is fixedly connected inside the shell (1).
2. The profiled sheet metal composite roof processing and shaping device as claimed in claim 1, wherein one side surface of the housing (1) is fixedly connected with a motor (401) through a bracket, an output shaft (402) is fixedly connected with an output end of the motor (401), the output shaft (402) is rotatably connected with a support sleeve (109) on the outer side inside the housing (1), the support sleeve (109) is fixedly connected inside the housing (1) through a bracket, one end of the output shaft (402) inside the housing (1) is fixedly connected with a driving bevel gear (403), the driving bevel gear (403) is in meshed connection with a driven bevel gear (404), the lower side of the driven bevel gear (404) is fixedly connected with a rotary connecting rod (405), the lower end of the rotary connecting rod (405) is fixedly connected with a driving gear (406), the driving gear (406) is in meshed connection with a driven gear (407), the driven gear (407) is rotatably connected with a gear protection box (106) through a rotating shaft, the gear protection box (106) is fixedly connected with the inner side of the housing (1) through a bracket, the lower side of the gear protection box (106) is fixedly connected with a connecting rod (101), the connecting rod protection box (107) is internally connected with a matching gear (408) through rotating shafts in a rotating mode, the upper side of the matching gear (408) is fixedly connected with a driven gear (407) through rotating shafts, the rotating shafts between the matching gear (408) and the driven gear (407) are rotationally connected with the inner side faces of the fixed sleeve (101), two sliding racks (409) are symmetrically meshed and connected on the side faces of the matching gear (408), and the sliding racks (409) are far away from one end of the matching gear (408) and are fixedly connected with the end portions of the movable shafts (410).
3. The profiled metal sheet composite roof processing and forming device according to claim 2, wherein hydraulic systems (3) are arranged on two sides of the shell (1), the hydraulic systems (3) comprise fixing elements (302), the fixing elements (302) are symmetrically and fixedly connected to two sides of the shell (1), and hydraulic lifting columns (301) are fixedly connected to the lower sides of the fixing elements (302).
4. The profiled metal sheet composite roof processing and forming device according to claim 3, wherein a supporting system (2) is arranged at the lower end of the hydraulic lifting column (301), the supporting system (2) comprises two supporting bases (205), the supporting bases (205) are fixedly connected with the lower end of the hydraulic lifting column (301), supporting boxes (201) are arranged on the side surfaces of the supporting bases (205), the supporting bases (205) are symmetrically and fixedly connected with the two sides of the supporting boxes (201), symmetrical blind holes are formed in one side of the supporting boxes (201), double doors (202) are rotatably connected to the side surfaces of the positions corresponding to the blind holes, fixing screws (203) are fixedly connected to the upper sides of the supporting boxes (201), and dies (204) are in threaded connection with the fixing screws (203).
5. The profiled sheet metal composite roof processing and forming device according to claim 4, wherein four 冂 -shaped frames (207) are symmetrically and fixedly connected to two sides of the supporting box (201) and above the supporting base (205), and a fixing protective sleeve (206) is fixedly connected between opposite sides of the upper end of each 冂 -shaped frame (207).
6. The profiled sheet metal composite roof processing and forming device according to claim 5, wherein a slide rail is fixedly connected to the inner side of the fixing protection sleeve (206), and the fixing protection sleeve (206) is slidably connected to the housing (1) through the slide rail.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422729534.XU CN223543838U (en) | 2024-11-10 | 2024-11-10 | A profiled metal composite roofing processing and forming device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422729534.XU CN223543838U (en) | 2024-11-10 | 2024-11-10 | A profiled metal composite roofing processing and forming device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223543838U true CN223543838U (en) | 2025-11-14 |
Family
ID=97631623
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422729534.XU Active CN223543838U (en) | 2024-11-10 | 2024-11-10 | A profiled metal composite roofing processing and forming device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223543838U (en) |
-
2024
- 2024-11-10 CN CN202422729534.XU patent/CN223543838U/en active Active
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