CN213856351U - Lengthened aluminum profile cooling bed - Google Patents
Lengthened aluminum profile cooling bed Download PDFInfo
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- CN213856351U CN213856351U CN202022182455.3U CN202022182455U CN213856351U CN 213856351 U CN213856351 U CN 213856351U CN 202022182455 U CN202022182455 U CN 202022182455U CN 213856351 U CN213856351 U CN 213856351U
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Abstract
The utility model provides an elongated aluminum profile cooling bed, which comprises a supporting leg and a transmission mechanism, wherein the supporting leg is provided with an installation platform, a plurality of roll shafts are arranged in the installation platform, the transmission mechanism is arranged at the rear end of the installation platform, the transmission mechanism comprises a transmission frame, a driven wheel and a power wheel, one side of the supporting leg is provided with a support frame, the support frame is provided with an installation block, the installation block is provided with a rotating shaft, the power wheel is arranged on the rotating shaft, the driven wheel is arranged at the other side of the transmission frame, a belt is arranged between the power wheel and the driven wheel, the transmission frame is provided with a tensioning mechanism, the front end of the transmission frame is provided with a connecting block, the lower end of the connecting block is provided with a first gear shaft, a first gear shaft is arranged on the first gear shaft, a second gear shaft is arranged under the first gear shaft, a second gear is mounted on the second gear shaft, and a motor is mounted at one end of the second gear shaft.
Description
Technical Field
The utility model belongs to the technical field of the aluminium alloy processing, concretely relates to add elongated aluminium alloy cooling bed.
Background
The cooling bed is a working table for effectively cooling the rolled products such as deformed steel, round steel, steel pipes, aluminum products and the like in the metallurgical and steel rolling industry, the rolled products are conveyed into the cooling bed through a roller way, and then the workpieces arranged on the cooling bed are gradually moved to the top end of the cooling bed in the form of rack stepping type tooth pulling and the like, so that the cooling effect of the workpieces is achieved.
Like a NO. CN205966792U aluminium alloy cooling bed, constitute by a plurality of cooling benches that set up side by side, every cooling bench includes two fixed bolster, still include the aluminium roof beam of installing perpendicularly on this fixed bolster, a power wheel and a follow driving wheel are installed respectively to aluminium roof beam both ends, install the felt clitellum between power wheel and the follow driving wheel, this power wheel is fixed from aluminium roof beam side-mounting through a power wheel fixed plate, it is fixed from aluminium roof beam side-mounting through a follow driving wheel fixed plate from the driving wheel fixed plate, power wheel fixed plate locates aluminium roof beam same side with follow driving wheel fixed plate, an electric motor is installed to aluminium alloy cooling bed one end, the pivot is installed to the power wheel, the pivot on two cooling benches is connected through the connecting rod, the pivot is connected to the output of electric motor.
Among the prior art, do not have elongated cold bed, the aluminum product length of extruding is short, operating personnel cuts the frequency of piece high, every section of cutting can produce certain waste material, the waste material is many, the productivity is low, the horizontal conveying of cold bed comprises a plurality of conveyances, the aluminium alloy can be because of the inhomogeneous crooked phenomenon that takes place of atress on the cold bed in the transportation process, high in production cost, application range is not wide, use elongated cold bed, can convey longer aluminium part, reduce the frequency of cutting the piece, the waste material of production reduces thereupon, the productivity is improved.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problems existing in the prior art, the utility model provides an elongated aluminum profile cooling bed which has wide application range, simple structure and convenient operation.
The utility model provides a following technical scheme:
the utility model provides an elongated aluminium alloy cooling bed, includes supporting leg and transport mechanism, install the mount table on the supporting leg, install a plurality of rollers in the mount table, transport mechanism is installed to the rear end of mount table, transport mechanism includes the driving frame, from driving wheel and power wheel, the support frame is installed to one side of supporting leg, install the installation piece on the support frame, install the pivot on the installation piece, install the power wheel in the pivot, just one side at the driving frame is installed to the power wheel, the opposite side of driving frame is installed from the driving wheel, be located the rear end of mount table from the driving wheel, the power wheel with from being equipped with the belt between the driving wheel, install straining device on the driving frame, just straining device is located the middle part of driving frame.
Furthermore, a connecting block is installed at the front end of the transmission frame and located between the supporting leg and the tensioning mechanism, a first gear shaft is installed at the lower end of the connecting block, a first gear is installed on the first gear shaft, a second gear shaft is installed right below the first gear shaft, a second gear is installed on the second gear shaft and located right below the first gear shaft, and a motor is installed at one end of the second gear shaft.
Further, the highest point of the roll shaft in the mounting table is higher than the highest surface of the mounting table, the supporting frame is provided with a square groove, the mounting block is mounted in the square groove and slides up and down in the square groove, and a first stop block is arranged in the square groove.
Furthermore, the transmission frame of the transmission mechanism is divided into two sections, the two sections of the transmission frame are fixed through bolts, and the tensioning mechanism is installed on the transmission frame through bolts.
Furthermore, a stop block is installed on the installation table, and a layer of rubber pad is wrapped on the outer ring of the stop block.
Further, the second gear shaft is arranged on a central shaft deviated from the second gear, and the second gear shaft and the second gear are not coaxial.
The utility model has the advantages that: the transmission frame is divided into two sections, the two sections are fixed through bolts, the length of the transmission mechanism can be adjusted, the aluminum profile is better cooled, the aluminum profile is prevented from being bent due to uneven stress in the transmission process, gear transmission is used, the gear shaft and the gear are not coaxial, intermittent lifting of the transmission mechanism can be achieved, automation is achieved through the motor driving the gear shaft, the structure is simple, operation is convenient, a groove is formed in the support frame, and the installation block is lifted and lowered integrally through the gear transmission in the groove.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic front view of the present invention;
fig. 2 is a schematic view of the front view structure of the conveying mechanism of the present invention;
fig. 3 is a square groove axonometric view of the utility model.
Labeled as: 1. mounting blocks; 2. a rotating shaft; 3. a transport mechanism; 301. a power wheel; 302. a belt; 303. a driven wheel; 304. a transfer frame; 4. a tensioning mechanism; 401. a bolt; 5. connecting blocks; 6. an installation table; 7. a roll shaft; 8. A stopper; 801. a rubber pad; 9. a support frame; 10. a first gear shaft; 11. a second gear shaft; 12. a first gear; 13. A second gear; 14. a motor; 15. supporting legs; 16. a square groove; 17. and a first stop block.
Detailed Description
As shown in fig. 1, 2 and 3, an elongated aluminum profile cooling bed comprises a supporting leg 15 and a conveying mechanism 3, wherein a mounting table 6 is mounted on the supporting leg 15, a plurality of roll shafts 7 are mounted in the mounting table 6, the roll shafts 7 convey the aluminum profile subjected to cooling to a designated position through an external driving device, the conveying mechanism 3 is mounted at the rear end of the mounting table 6, a high-temperature aluminum profile extruded from an extruder is cooled on a calculating and conveying mechanism 3 of the cooling bed through the conveying mechanism 3, the conveying mechanism 3 comprises a transmission frame 304, a driven wheel 303 and a power wheel 301, a supporting frame 9 is mounted on one side of the supporting leg 15, a mounting block 1 is mounted on the supporting frame 9, a rotating shaft 2 is mounted on the mounting block 1, the power wheel 301 is mounted on the rotating shaft 2, the power wheel 301 is mounted on one side of the transmission frame 304, the driven wheel 303 is mounted on the other side of the transmission frame 304, the driven wheel 303 is located at the rear end of the mounting table 6, a belt 302 is arranged between the power wheel 301 and the driven wheel 303, the tensioning mechanism 4 is mounted on the transmission frame 304, the tensioning mechanism 4 is located in the middle of the transmission frame 304, the diameter of the power wheel 301 is larger than that of the driven wheel 304, and the tensioning mechanism 4 tensions the power wheel 301 and the belt 302 on the driven wheel 304 to better transmit aluminum profiles.
The front end of the transmission frame 304 is provided with the connecting block 5, the connecting block 5 is located between the supporting leg 15 and the tensioning mechanism 4, the lower end of the connecting block 5 is provided with the first gear shaft 10, the first gear shaft 10 is provided with the first gear 12, the second gear shaft 11 is arranged under the first gear shaft 10, the second gear shaft 11 is provided with the second gear 13, the second gear 13 is located under the first gear 12, one end of the second gear shaft 11 is provided with the motor 14, the motor 14 drives the second gear shaft 11 to rotate, the second gear 13 arranged on the second gear shaft 11 rotates, due to the fact that the second gear shaft 11 and the second gear 13 are not coaxial, intermittent lifting motion is achieved in the rotating process, the first gear 12 meshed with the second gear 13 and driven is not coaxial with the first gear shaft 10, and the rotating motion of the first gear shaft 10 is converted into the linear motion of the connecting block 5.
The highest point of the roller shaft 7 in the mounting table 6 is higher than the highest surface of the mounting table 6, the initial position of the highest point of the conveying mechanism 3 is lower than the highest point of the roller shaft 7, when an aluminum profile is conveyed to one side of the mounting table 6, the connecting block 5 rises, the aluminum profile is conveyed to the position right above the roller shaft 7, the connecting block 5 descends, the aluminum profile is conveyed forwards continuously through the roller shaft 7, the supporting frame 9 is provided with a square groove 16, the mounting block 1 is mounted in the square groove 16, the mounting block 1 slides up and down in the square groove 16, a first stop block 17 is arranged in the square groove 16, the mounting block 1 is firstly placed in the square groove 16, then the stop block 17 is mounted, and the mounting block 1 is prevented from sliding out of the square groove 16.
The transmission frame 304 of the conveying mechanism 3 is divided into two sections, the two sections of the transmission frame 304 are fixed through bolts 401, the length of the transmission frame 304 can be adjusted as required, the tensioning mechanism 4 is installed on the transmission frame 304 through the bolts 401, the stop block 8 is installed on the installation table 6, the outer ring of the stop block 8 is wrapped by the rubber pad 801, the aluminum profile is prevented from being collided and abraded, the second gear shaft 11 is installed on the central shaft of the second eccentric gear 13, the second gear shaft 11 and the second gear 13 are not coaxial, and intermittent rising and falling are achieved.
When the utility model is used, firstly, the processed aluminum profile is longitudinally conveyed by the extruder through the conveying device and transversely conveyed when conveyed to a certain position, the aluminum profile is gradually cooled in the conveying process on the cooling bed, the rotating shaft 2 is rotated through external drive, the power wheel 301 arranged on the rotating shaft 2 is rotated, the driven wheel 303 is rotated through the belt 302, at the moment, the tensioning mechanism 4 tensions the belt, when the aluminum profile is conveyed to one side of the mounting table 6 through the conveying mechanism 3, the motor 14 drives the second transmission shaft 11 to rotate, the gear II 13 arranged on the second transmission shaft 11 rotates, the gear I12 meshed with the gear II 3 rotates, the first gear shaft 10 rotates along with the gear I12, the first gear shaft 10 converts the rotary motion into the intermittent ascending and descending of the connecting block 5, when the connecting block 5 ascends, when the aluminum profile is conveyed to the position right above the roller shaft 7, the connecting block 5 descends, the aluminum profile is dropped onto the roller 7 and conveyed to a designated position through the roller 7.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. The utility model provides an elongated aluminium alloy cooling bed, includes supporting leg (15) and transport mechanism (3), its characterized in that, install mount table (6) on supporting leg (15), install a plurality of roller (7) in mount table (6), transport mechanism (3) are installed to the rear end of mount table (6), transport mechanism (3) include driving frame (304), follow driving wheel (303) and power wheel (301), support frame (9) are installed to one side of supporting leg (15), install installation piece (1) on support frame (9), install pivot (2) on installation piece (1), install power wheel (301) on pivot (2), just power wheel (301) are installed in one side of driving frame (304), driving wheel (303) are installed to the opposite side of driving frame (304), follow the rear end that driving wheel (303) are located mount table (6), a belt (302) is arranged between the power wheel (301) and the driven wheel (303), a tensioning mechanism (4) is mounted on the transmission frame (304), and the tensioning mechanism (4) is positioned in the middle of the transmission frame (304);
connecting block (5) are installed to the front end of driving frame (304), connecting block (5) are located the centre of supporting leg (15) and straining device (4), first gear shaft (10) are installed to the lower extreme of connecting block (5), install gear (12) on first gear shaft (10), install second gear shaft (11) under first gear shaft (10), install gear two (13) on second gear shaft (11), gear two (13) are located gear (12) under, motor (14) are installed to the one end of second gear shaft (11).
2. The elongated aluminum profile cooling bed according to claim 1, characterized in that the highest point of the roll shafts (7) in the mounting table (6) is higher than the highest surface of the mounting table (6).
3. The elongated aluminum profile cooling bed as claimed in claim 1, wherein the supporting frame (9) is provided with a square groove (16), the mounting block (1) is mounted in the square groove (16), the mounting block (1) slides up and down in the square groove (16), and a first stop block (17) is arranged in the square groove (16).
4. The elongated aluminum profile cooling bed according to claim 1, wherein the transmission frame (304) of the transmission mechanism (3) is divided into two sections, the two sections of the transmission frame (304) are fixed through bolts (401), and the tensioning mechanism (4) is installed on the transmission frame (304) through the bolts (401).
5. The elongated aluminum profile cooling bed as claimed in claim 1, wherein a stop block (8) is mounted on the mounting table (6), and a rubber pad (801) is wrapped on the outer ring of the stop block (8).
6. The elongated aluminum profile cooling bed according to claim 1, wherein the second gear shaft (11) is installed at a center axis offset from the second gear (13), and the second gear shaft (11) and the second gear (13) are not coaxial.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022182455.3U CN213856351U (en) | 2020-09-28 | 2020-09-28 | Lengthened aluminum profile cooling bed |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022182455.3U CN213856351U (en) | 2020-09-28 | 2020-09-28 | Lengthened aluminum profile cooling bed |
Publications (1)
Publication Number | Publication Date |
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CN213856351U true CN213856351U (en) | 2021-08-03 |
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CN202022182455.3U Active CN213856351U (en) | 2020-09-28 | 2020-09-28 | Lengthened aluminum profile cooling bed |
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- 2020-09-28 CN CN202022182455.3U patent/CN213856351U/en active Active
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