CN218311098U - Section bar cutting device that uses on bridge cut-off aluminium flat-open window - Google Patents

Section bar cutting device that uses on bridge cut-off aluminium flat-open window Download PDF

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Publication number
CN218311098U
CN218311098U CN202023228326.XU CN202023228326U CN218311098U CN 218311098 U CN218311098 U CN 218311098U CN 202023228326 U CN202023228326 U CN 202023228326U CN 218311098 U CN218311098 U CN 218311098U
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fixed
bottom plate
cutting
section bar
conveying
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CN202023228326.XU
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Chinese (zh)
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谭和金
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Ganzhou Yihang Decoration Engineering Co ltd
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Ganzhou Yihang Decoration Engineering Co ltd
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Abstract

The utility model relates to a bridge cut-off aluminium processing equipment field especially relates to a section bar cutting device who uses on bridge cut-off aluminium flat-open window, contains the frame, be fixed with the bottom plate in the frame, the equal vertical slide bar that is fixed with in bottom plate top both sides, the slide bar is all fixed on the roof, still be provided with the slide between roof and the bottom plate, the slide bar pass the slide and with slide sliding connection, still be fixed with the rack on the slide, be fixed with elevator motor on the bottom plate, elevator motor is through pivot and gear fixed connection, gear and aforementioned rack toothing, be fixed with the cutting motor on the slide, the cutting motor is fixed through cutting axle and cutting wheel, the cutting wheel periphery side still is provided with the guard shield, be provided with the spacing hole that runs through the guard shield on the guard shield. Can cut off into appointed length with the back aluminium alloy of production through this device to the section bar cutting is gone on inside the guard shield, can effectively avoid the problem that the metal fillings splashed and lead to take place.

Description

Section bar cutting device that uses on bridge cut-off aluminium flat-open window
[ technical field ] A method for producing a semiconductor device
The utility model relates to a bridge cut-off aluminium processing equipment field especially relates to a section bar cutting device that uses on bridge cut-off aluminium flat-open window.
[ background of the invention ]
Aluminum profiles have a density of about one-third that of steel, copper or brass, and aluminum can exhibit excellent corrosion resistance under most environmental conditions, including in air, water, petrochemistry, and many chemical systems. Aluminum profiles are often chosen for their excellent electrical conductivity. On a weight-equal basis, aluminum has a conductivity nearly twice that of copper. The aluminum has extremely high recoverability, and the characteristics of the secondary aluminum are hardly different from those of the primary aluminum. Therefore, the aluminum material is widely used in modern society and has extremely high environmental protection characteristic.
The section bar needs to be cut after the production of the section bar, and the cutting device can emit spark light when contacting the section bar in the cutting process of the section bar, and can arouse a large amount of fragments, thereby causing great hidden danger to the safety and health of people and serious pollution to the environment.
The utility model discloses it is not enough to solve prior art and research and propose.
[ Utility model ] content
The utility model aims at overcoming the shortcoming of above-mentioned prior art, provide a section bar cutting device that uses on bridge cut-off aluminium flat-open window.
The utility model discloses can realize through following technical scheme:
the utility model discloses a section bar cutting device used on a bridge cut-off aluminum casement window, which comprises a frame, a bottom plate is fixed on the frame, slide bars are vertically fixed on both sides above the bottom plate, the slide bars are fixed on a top plate, a slide plate is also arranged between the top plate and the bottom plate, the slide bars pass through the slide plate and are connected with the slide plate in a sliding way, a rack bar is also fixed on the slide plate, a lifting motor is fixed on the bottom plate, the lifting motor is fixedly connected with a gear through a rotating shaft, the gear is meshed with the rack bar, a cutting motor is fixed on the slide plate, the cutting motor is fixed with a cutting wheel through a cutting shaft, a shield is also arranged on the periphery side of the cutting wheel, a limit hole penetrating the shield is arranged on the shield, a connecting plate is also fixed above the slide plate, a plurality of connecting rods are fixed on the shield, the connecting rod passes the connecting plate and with connecting plate sliding connection, the connecting rod top all is fixed with the stopper, still be fixed with compression state's coupling spring between guard shield and the connecting plate, all be fixed with conveyor on the bottom plate of cutting wheel both sides, conveyor contains the strutting arrangement who evenly fixes on the bottom plate, be fixed with conveyor and positioning mechanism on the bottom plate of strutting arrangement both sides respectively, conveyor contains many and fixes on the bottom plate and rotate the transport axle of being connected with the bottom plate, all be fixed with the conveying roller on the transport axle, carry the axle and rotate by the drive of conveyor motor, still be fixed with stock stop on the bottom plate of one of them conveyor position, stock stop contains the striker cylinder of fixing on the bottom plate, stock stop cylinder passes through the piston rod fixed with the gauge block fixed.
Preferably, the output end of the conveying motor is fixed with one of the conveying shafts, driven wheels are fixed at corresponding positions on the conveying shafts, and the driven wheels are wound and connected through a synchronous belt.
Preferably, positioning mechanism contains the backup pad of fixing on the bottom plate, bottom plate top between backup pad and the conveying mechanism still is provided with the locating plate, evenly be fixed with many location axles on the locating plate, the epaxial location axle that all is fixed with of location passes and rotates the registration roller of being connected with the location axle, still be fixed with many locating levers on the locating plate, the locating lever all pass the backup pad and with backup pad sliding connection, still be fixed with a plurality of compression state's positioning spring between locating plate and the backup pad, the locating piece all is fixed with the locating piece at the locating lever end.
Preferably, the supporting device comprises a supporting shaft fixed above the bottom plate, and a roller which is penetrated by the supporting shaft and is rotatably connected with the supporting shaft is fixed on the supporting shaft.
The working principle is that after the section bar is produced, the section bar is transported by a transporting device, the bottom of the section bar is supported by a roller, one side of the section bar is fixed by a positioning roller, the positioning spring pushes a positioning plate, the positioning roller on the positioning plate extrudes the section bar, the section bar is fixed between the positioning roller and the transporting roller, the transporting roller is driven to rotate by a transporting motor, the section bar moves close to a cutting wheel when the transporting roller rotates, one end of the section bar passes below the cutting wheel, the section bar reaches the position of a material blocking block, the section bar stops moving, the cutting wheel is driven to rotate at high speed by the cutting motor, a lifting motor starts, the lifting motor drives a gear to rotate, the gear is meshed with a rack, the rack drives a sliding plate to descend along with the sliding plate, after a shield below the connecting plate is contacted with the section bar, the section bar passes through a limiting hole on the shield, and the shield is fixed on the connecting plate by a connecting rod, and the connecting rod passes through the connecting plate for sliding connection, after the top end of the limiting hole is contacted with the profile, the protective cover stops moving, the cutting wheel continues descending, the cutting wheel rotating at high speed is contacted with the profile to cut the profile, after the profile is cut off, the lifting motor drives the gear to rotate reversely, the sliding plate and the connecting plate both ascend, due to the action of the connecting spring, the protective cover is still fixed with the profile, after the cutting wheel is separated from the profile, the limiting block at the top end of the connecting rod is contacted with the connecting plate, the connecting rod drives the protective cover to ascend, after the protective cover is separated from the profile, the lifting motor stops, the material blocking cylinder starts, the piston rod on the material blocking cylinder shortens, the material blocking block descends, after the cut profile passes through the upper part of the material blocking block, the material blocking cylinder starts again, the piston rod on the material blocking cylinder extends, the material blocking block ascends, the material blocking block blocks the profile again, and cuts the profile through the cutting wheel descending again, circulation operation can cut off into appointed length with the back aluminium alloy of production through this device to because the cutting wheel sets up in the guard shield, the section bar cutting is gone on inside the guard shield, and the metal fillings that the cutting splashes are blockked by the guard shield, can effectively avoid the problem that the metal fillings splashes and lead to take place.
Compared with the prior art, the utility model has the advantages that:
can cut off into appointed length with the back aluminium alloy of production through this device to because the cutting wheel sets up in the guard shield, the section bar cutting is gone on inside the guard shield, and the metal fillings that the cutting splashes are blockked by the guard shield, can effectively avoid the problem that the metal fillings splashes and lead to take place.
[ description of the drawings ]
The following detailed description of embodiments of the present invention is provided with reference to the accompanying drawings, in which:
fig. 1 is a schematic structural view of the present invention;
fig. 2 is another angle structure diagram of the present invention;
fig. 3 is a schematic view of a third angle structure of the present invention;
fig. 4 is a top view of the present invention;
FIG. 5 isbase:Sub>A cross-sectional view taken at A-A of FIG. 4;
FIG. 6 is an enlarged view of FIG. 3 at B;
in the figure: 0. a section bar; 1. a frame; 2. a base plate; 3. a cutting wheel; 4. a shield; 5. a limiting hole; 6. cutting the shaft; 7. cutting the motor; 8. a slide plate; 9. a connecting rod; 10. a connecting plate; 11. a limiting block; 12. a connecting spring; 13. a conveying device; 14. a support device; 141. a support shaft; 142. a roller; 15. a delivery shaft; 16. a conveying roller; 17. a conveying motor; 18. a driven wheel; 19. a synchronous belt; 20. a support plate; 21. positioning a plate; 22. positioning the shaft; 23. a positioning roller; 24. positioning a rod; 25. a positioning spring; 26. positioning blocks; 27. a slide bar; 28. a material blocking cylinder; 29. a material blocking block; 30. a top plate; 31. a rack; 32. a lifting motor; 33. a gear;
[ detailed description ] embodiments
The following detailed description of embodiments of the present invention is made with reference to the accompanying drawings:
as shown in figures 1 to 6, the utility model discloses a section cutting device used on a bridge-cut-off aluminum casement window, which comprises a frame 1, a bottom plate 2 is fixed on the frame 1, slide rods 27 are vertically fixed on both sides above the bottom plate 2, the slide rods 27 are both fixed on a top plate 30, a slide plate 8 is further arranged between the top plate 30 and the bottom plate 2, the slide rods 27 pass through the slide plate 8 and are in sliding connection with the slide plate 8, a rack 31 is further fixed on the slide plate 8, a lifting motor 32 is fixed on the bottom plate 2, the lifting motor 32 is fixedly connected with a gear 33 through a rotating shaft, the gear 33 is meshed with the rack 31, a cutting motor 7 is fixed on the slide plate 8, the cutting motor 7 is fixed with a cutting wheel 3 through a cutting shaft 6, a shield 4 is further arranged on the periphery of the cutting wheel 3, a limiting hole 5 penetrating through the shield 4 is arranged on the shield 4, a connecting plate 10 is further fixed on the top of the slide plate 8, a plurality of connecting rods 9 are fixed on the shield 4, the connecting plates 10 and are in sliding connection with the connecting plate 10, the connecting rods 9 pass through the connecting plate 10, the connecting plate 14 are fixed on the bottom plate 2, a conveying mechanism 13 is fixed on the bottom plate 2, a conveying mechanism 14 is respectively fixed on the bottom plate 2, and a conveying mechanism, a conveying mechanism 14 is fixed on the bottom plate 2, and a conveying mechanism, a conveying mechanism is fixed on the conveying mechanism, a conveying mechanism is arranged on the conveying mechanism, a material blocking mechanism is further fixed on the bottom plate 2 at one of the conveying mechanism positions, the material blocking mechanism comprises a material blocking cylinder 28 fixed on the bottom plate 2, and the material blocking cylinder 28 is fixed with a material blocking block 29 through a piston rod.
Wherein, the output end of the conveying motor 17 is fixed with one of the conveying shafts 15, the driven wheels 18 are fixed at the corresponding positions on the conveying shafts 15, and the driven wheels 18 are wound and connected through a synchronous belt 19.
Wherein, positioning mechanism contains the backup pad 20 of fixing on bottom plate 2, 2 tops of bottom plate between backup pad 20 and the conveying mechanism still are provided with locating plate 21, evenly be fixed with many location axles 22 on locating plate 21, all be fixed with location axle 22 on the location axle 22 and pass and with location axle 22 rotation connection's registration roller 23, still be fixed with many locating levers 24 on locating plate 21, locating lever 24 all passes backup pad 20 and with backup pad 20 sliding connection, still be fixed with a plurality of compression state's positioning spring 25 between locating plate 21 and the backup pad 20, the terminal locating piece 26 that all is fixed with of locating lever 24.
The supporting device 14 includes a supporting shaft 141 fixed above the base plate 2, and a roller 142 passing through the supporting shaft 141 and rotatably connected to the supporting shaft 141 is fixed on the supporting shaft 141.
The working principle is that after the section bar 0 is produced, the section bar 0 is transported through the transporting device 13, the bottom of the section bar 0 is supported through the roller 142, one side of the section bar 0 is fixed through the positioning roller 23, the positioning spring 25 pushes the positioning plate 21, the positioning roller 23 on the positioning plate 21 extrudes the section bar 0, the section bar 0 is fixed between the positioning roller 23 and the transporting roller 16, the transporting roller 16 is driven to rotate through the transporting motor 17, when the transporting roller 16 rotates, the section bar 0 moves close to the cutting wheel 3, one end of the section bar 0 passes through the lower part of the cutting wheel 3, the section bar 0 reaches the position of the material blocking block 29, the section bar 0 stops moving, the cutting wheel 3 is driven to rotate at high speed through the cutting motor 7, the lifting motor 32 starts, the lifting motor 32 drives the gear 33 to rotate, the gear 33 is meshed with the rack 31, when the gear 33 rotates, the rack 31 drives the sliding plate 8 to descend, the connecting plate 10 descends along with the sliding plate 8, after a shield 4 below a connecting plate 10 contacts a section bar 0, the section bar 0 passes through a limiting hole 5 on the shield 4, the shield 4 is fixed on the connecting plate 10 through a connecting rod 9, the connecting rod 9 passes through the connecting plate 10 to be in sliding connection, after the top end of the limiting hole 5 contacts the section bar 0, the shield 4 stops moving, a cutting wheel 3 continues descending, the cutting wheel 3 rotating at a high speed contacts the section bar 0 to cut the section bar 0, after the section bar 0 is cut off, a lifting motor 32 drives a gear 33 to rotate reversely, a sliding plate 8 and the connecting plate 10 both ascend, due to the action of a connecting spring 12, the shield 4 is still fixed with the section bar 0, after the cutting wheel 3 is separated from the section bar 0, a limiting block 11 at the top end of the connecting rod 9 contacts the connecting plate 10, the connecting rod 9 drives the shield 4 to ascend, after the shield 4 is separated from the section bar 0, the lifting motor 32 stops, and a material blocking cylinder 28 starts, piston rod shortens on the material blocking cylinder 28, material blocking block 29 descends, section bar 0 after cutting off is behind material blocking block 29 top, material blocking cylinder 28 restarts again, piston rod extension on the material blocking cylinder 28, material blocking block 29 rises, material blocking block 29 blocks section bar 0 again, descend again through cutting wheel 3 and cut section bar 0, the circulation operation, can cut off production back section bar 0 into appointed length through this device, and because cutting wheel 3 sets up in guard shield 4, section bar 0 cutting is inside going on at guard shield 4, the metal fillings that the cutting splashes are blocked by guard shield 4, can effectively avoid the problem that the metal fillings splashed and lead to take place.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many changes, modifications, substitutions and variations can be made to the embodiments without departing from the technical principles of the present invention, and these changes, modifications, substitutions and variations should also be considered as the protection scope of the present invention.

Claims (4)

1. The utility model provides a section bar cutting device that uses on bridge cut-off aluminium flat-open window, contains the frame, its characterized in that: the cutting machine is characterized in that a bottom plate is fixed on the frame, sliding rods are vertically fixed on two sides above the bottom plate and fixed on the top plate, sliding plates are further arranged between the top plate and the bottom plate and penetrate through the sliding plates and are connected with the sliding plates in a sliding mode, racks are further fixed on the sliding plates, lifting motors are fixed on the bottom plate and are fixedly connected with gears through rotating shafts, gears are meshed with the racks, cutting motors are fixed on the sliding plates and are fixed with cutting wheels through cutting shafts, shield covers are further arranged on the outer peripheral sides of the cutting wheels, limiting holes penetrating through the shield covers are formed in the shield covers, connecting rods penetrate through the connecting plates and are connected with the connecting plates in a sliding mode, limiting blocks are further fixed on the tops of the connecting rods, connecting springs in a compression state are further fixed between the shield covers and the connecting plates, conveying devices are further fixed on the bottom plates on two sides of the cutting wheels and comprise supporting devices which are uniformly fixed on the bottom plate, conveying mechanisms and positioning mechanisms are respectively fixed on the bottom plate and are fixed with conveying shafts, and conveying cylinders are further fixed on the bottom plate, and conveying shafts, and stop blocks are further comprising conveying cylinders, and stop blocks are fixed on the conveying shafts, and conveying cylinders.
2. The section bar cutting device used on the bridge-cut-off aluminum casement window according to claim 1, characterized in that: the output end of the conveying motor is fixed with one of the conveying shafts, driven wheels are fixed at corresponding positions on the conveying shafts, and the driven wheels are connected in a winding mode through synchronous belts.
3. The section bar cutting device used on the bridge-cut-off aluminum casement window according to claim 1, characterized in that: positioning mechanism contains the backup pad of fixing on the bottom plate, bottom plate top between backup pad and the conveying mechanism still is provided with the locating plate, evenly be fixed with many location axles on the locating plate, the epaxial locating roller that all is fixed with the location axle and passes and rotate to be connected with the location axle of location, still be fixed with many locating levers on the locating plate, the locating lever all pass the backup pad and with backup pad sliding connection, still be fixed with a plurality of compression state's location spring between locating plate and the backup pad, the locating piece all is fixed with at the locating lever end.
4. The section bar cutting device used on the bridge-cut-off aluminum casement window according to claim 1, characterized in that: the supporting device comprises a supporting shaft fixed above the bottom plate, and a roller which is used for allowing the supporting shaft to penetrate through and is rotatably connected with the supporting shaft is fixed on the supporting shaft.
CN202023228326.XU 2020-12-29 2020-12-29 Section bar cutting device that uses on bridge cut-off aluminium flat-open window Active CN218311098U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023228326.XU CN218311098U (en) 2020-12-29 2020-12-29 Section bar cutting device that uses on bridge cut-off aluminium flat-open window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023228326.XU CN218311098U (en) 2020-12-29 2020-12-29 Section bar cutting device that uses on bridge cut-off aluminium flat-open window

Publications (1)

Publication Number Publication Date
CN218311098U true CN218311098U (en) 2023-01-17

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117697023A (en) * 2023-12-07 2024-03-15 徐州和天下建材科技有限公司 Processing equipment for doors and windows

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117697023A (en) * 2023-12-07 2024-03-15 徐州和天下建材科技有限公司 Processing equipment for doors and windows

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