A color-coated aluminum plate cutting machine with automatic stacking function
By designing a color-coated aluminum plate cutting machine with automatic stacking function, the clamping and stacking components are used to realize automatic stacking of aluminum plates, which solves the problem of manual stacking required by traditional cutting machines and improves production efficiency and clamping capacity.
Patent Information
- Application Number
- CN202211626608.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-16
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2042-12-16
AI Technical Summary
Traditional color-coated aluminum plate cutting machines require manual stacking after cutting, which wastes manpower and is inconvenient to drive the clamping of both ends of the aluminum plate for cutting through the same structure.
A color-coated aluminum plate cutting machine with automatic stacking function is designed. Automatic stacking of aluminum plates is achieved through a clamping component and a stacking component. The clamping component clamps one end of the aluminum plate and moves it to the stacking component. The stacking component reduces the thickness of the aluminum plate to achieve automatic stacking.
It realizes automatic stacking of aluminum plates after cutting, reduces manual operations, improves production efficiency, and can clamp both ends of the aluminum plate for cutting at the same time, simplifying the operation process.
Smart Images

Figure CN116329661B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of color-coated aluminum plate cutting machine stacking, in particular to a color-coated aluminum plate cutting machine with an automatic stacking function. Background Art
[0002] Cutting machines are used in both metal and non-metal industries. Generally speaking, the non-metal industry is divided into more detailed categories, such as stone cutting machines for cutting stone, water cutting machines, sawtooth cutting machines, laser cutting machines for cutting cloth and plastic, chemical fiber products, and blade cutting machines. For cutting metal materials, there are flame cutting machines and plasma cutting machines. That is, when color-coated aluminum plates are being processed, cutting machines are also needed for cutting work, and finally the cut color-coated aluminum plates of equal length need to be stacked.
[0003] When traditional color-coated aluminum plate cutting machines cut color-coated aluminum plates after transportation, they need to be stacked manually, which wastes manpower and is inconvenient to lower the structure for holding the color-coated aluminum plates while transporting the cut color-coated aluminum plates to facilitate the stacking of the color-coated aluminum plates. In addition, traditional color-coated aluminum plate cutting machines are not convenient for simultaneously clamping both ends of the color-coated aluminum plates through the same structure drive to facilitate subsequent cutting work.
[0004] In view of the above problems, a color-coated aluminum plate cutting machine with automatic stacking function is proposed. Summary of the Invention
[0005] The purpose of the present invention is to provide a color-coated aluminum plate cutting machine with an automatic stacking function, which solves the problem that the traditional color-coated aluminum plate cutting machine in the background technology needs to manually stack the cut color-coated aluminum plates when cutting the color-coated aluminum plates after transportation, which wastes manpower and is inconvenient to lower the mechanism for holding the color-coated aluminum plates while transporting the cut color-coated aluminum plates to facilitate the stacking of the color-coated aluminum plates. In addition, the traditional color-coated aluminum plate cutting machine is not convenient for clamping both ends of the color-coated aluminum plates at the same time through the same structure drive to facilitate subsequent cutting work.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a color-coated aluminum plate cutting machine with an automatic stacking function, comprising a cutting machine table and a conveying frame arranged on one side of the cutting machine table, a pressing table being arranged at the upper end of the cutting machine table, a cutting slit being formed at the upper end of the cutting machine table, a movable cutting knife being movably arranged inside the cutting slit, a clamping table being arranged on the other side of the cutting machine table, a stacking assembly being arranged on one side of the clamping table, a first track being arranged at the lower end of the stacking assembly, and two sets of the first track being arranged, and a clamping assembly being arranged inside the clamping table;
[0007] The clamping assembly includes a first clamping block embedded in the upper end of the clamping platform and a second clamping block embedded in the lower end of the clamping platform. The upper end of the second clamping block is movably provided with a movable wheel, and multiple groups of movable wheels are provided. The lower end of the first clamping block is provided with a driving assembly, and multiple groups of driving assemblies are provided. The first clamping block and the second clamping block are arranged relative to each other. The conveying frame transports the color-coated aluminum plate to be cut to the cutting machine, and one end of the color-coated aluminum plate is embedded in the clamping assembly. The lower pressing platform presses down the color-coated aluminum plate, driving the clamping assembly to clamp one end of the color-coated aluminum plate, and the movable cutting knife moves in the cutting gap to cut the color-coated aluminum plate. The cut color-coated aluminum plate is driven by the clamping assembly to move to the upper end of the stacking assembly. When the clamping assembly drives the cut color-coated aluminum plate to move, the stacking assembly reduces the thickness of the color-coated aluminum plate.
[0008] Furthermore, a lifting block is embedded inside the lower pressing table, and a lower pressing block is fixedly installed at the lower end of the lifting block. A matching groove is provided at the lower end of the lower pressing block, and the matching groove is located directly above the cutting gap. A first meshing wheel is meshed with the lifting block, and a fixed motor is provided at one end of the first meshing wheel through an axis. A multi-stage telescopic shaft is provided on one side of the fixed motor through an axis connection. The fixed motor is fixed inside the lower pressing table, and a roller is provided at part of the lower end of the lower pressing block.
[0009] Furthermore, the clamping table includes a clamping groove opened at the upper end of the clamping table, and the clamping assembly is located inside the clamping groove. A multi-stage telescopic rod is provided on one side of the clamping table, and four groups of multi-stage telescopic rods are provided. One end of the four groups of multi-stage telescopic rods is fixedly connected to the cutting machine table. A first linkage shaft is provided on the side of the clamping table, and a second track is provided at the lower end of the clamping table, and two groups of second tracks are provided.
[0010] Furthermore, a first pulley is movably provided inside the clamping table, the first pulley is connected to the multi-stage telescopic shaft through an axis, a second pulley is provided at the lower end of the first pulley through a belt transmission connection, the second pulley is connected to a second meshing wheel through an axis, the second meshing wheel is meshed with the first clamping block, and a drive motor is fixedly provided inside the clamping table.
[0011] Furthermore, a third pulley is provided at the lower end of the second pulley through a belt transmission connection, the third pulley is provided with a third meshing wheel through an axis connection, a fourth meshing wheel is meshed with one side of the third meshing wheel, a fifth meshing wheel is meshed with one side of the fourth meshing wheel, a sixth meshing wheel is provided on one side of the fifth meshing wheel through an axis connection, and the sixth meshing wheel is meshed with one side of the second clamping block.
[0012] Furthermore, a first telescopic shaft is provided at the output end of the driving motor through an axis connection, a fitting box is provided at the lower end of the first telescopic shaft, and the fitting box is movably fitted inside the clamping table, a second telescopic shaft is provided at the lower end of the fitting box, a first linkage wheel is movably provided inside the fitting box, and one side of the first linkage wheel is connected to the first telescopic shaft, and the other side of the first linkage wheel is connected to the second telescopic shaft, and the second linkage shaft is meshed with one side of the first linkage wheel.
[0013] Furthermore, the driving assembly includes a first driving wheel movably arranged inside the first clamping block, a connecting shaft is provided on one side of the first driving wheel, a second driving wheel is provided on one side of the connecting shaft, the second linkage shaft is connected to the first driving wheel through the shaft, and multiple groups of driving assemblies are provided, and the multiple groups of driving assemblies are connected by belt transmission.
[0014] Furthermore, the stacking assembly includes a movable platform movably connected to the two groups of the first rails, the upper end of the movable platform is provided with threaded columns, and four groups of threaded columns are provided, and the upper ends of the four groups of threaded columns are provided with L-shaped stacking racks.
[0015] Furthermore, a through pulley is provided inside the stacking assembly, and four groups of through pulleys are provided. The four groups of through pulleys correspond to the four groups of threaded columns. A rotating gear is provided at the lower end of the through pulley, and a first driven pulley is meshed with one side of the rotating gear. A third linkage shaft is provided on one side of the first driven wheel through an axis connection. One end of the third linkage shaft is located outside the moving platform, and a matching strip is provided at this end. A spare motor is also provided inside the moving platform. The spare motor is connected with a fixed telescopic shaft through an axis, and a spare gear is provided at the upper end of the fixed telescopic shaft. The spare gear is in meshing relationship with the lower end of the first driven wheel.
[0016] Furthermore, a linkage groove is provided at one end of the first linkage shaft, and the other end of the first linkage shaft is connected to a third driven wheel, one side of the third driven wheel is meshed with a second driven wheel, and the upper end of the second driven wheel is connected to the second telescopic shaft.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. The present invention provides a color-coated aluminum plate cutting machine with an automatic stacking function. The present invention uses a conveyor frame to transport the color-coated aluminum plate to be cut to the cutting machine table, and one end of the color-coated aluminum plate is embedded in the clamping assembly. The lower pressing table presses down the color-coated aluminum plate, driving the clamping assembly to clamp one end of the color-coated aluminum plate. The movable cutting knife moves in the cutting gap to cut the color-coated aluminum plate. The cut color-coated aluminum plate is driven by the clamping assembly to move to the upper end of the stacking assembly. When the clamping assembly drives the cut color-coated aluminum plate to move, the stacking assembly reduces the thickness of the color-coated aluminum plate, that is, the clamping assembly moves When a group of color-coated aluminum plates are fed, the top of the stacking assembly will drop to a height equal to the thickness of the group of color-coated aluminum plates, thereby achieving the purpose of automatic stacking. This solves the problem that traditional color-coated aluminum plate cutting machines require manual stacking of the cut color-coated aluminum plates when cutting the color-coated aluminum plates after transportation, which wastes manpower and is inconvenient to lower the mechanism for holding the color-coated aluminum plates while transporting the cut color-coated aluminum plates to facilitate the stacking of the color-coated aluminum plates. In addition, traditional color-coated aluminum plate cutting machines are not convenient for simultaneously clamping the two ends of the color-coated aluminum plates through the same structure drive to facilitate subsequent cutting work. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0020] Figure 2 It is a structural schematic diagram of the lower pressing platform of the present invention;
[0021] Figure 3 It is a schematic diagram of the three-dimensional structure of the clamping platform and the clamping assembly of the present invention;
[0022] Figure 4 It is a schematic diagram of the planar structure of the clamping platform and the clamping assembly of the present invention;
[0023] Figure 5 For the present invention Figure 4 A in the middle is an enlarged structural diagram;
[0024] Figure 6 This is a schematic diagram of the structure of the drive assembly of the present invention;
[0025] Figure 7 This is a schematic diagram of the stacking assembly structure of the present invention;
[0026] Figure 8 It is a schematic diagram of the planar structure of the mobile station of the present invention.
[0027] In the figure: 1. Cutting machine table; 2. Cutting gap; 3. Clamping table; 31. Clamping groove; 32. Multi-stage telescopic rod; 33. First linkage shaft; 331. Linkage groove; 34. Second track; 35. First pulley; 351. Second pulley; 352. Second meshing wheel; 353. Third pulley; 354. Third meshing wheel; 355. Fourth meshing wheel; 356. Fifth meshing wheel; 357. Sixth meshing wheel; 36. Driving motor; 361. First telescopic shaft; 362. Engaging box; 3621. First linkage wheel; 3622. Second linkage shaft; 363. Second telescopic shaft; 3631. Second driven wheel; 3632. Third driven wheel; 4. Stacking assembly; 41. L-shaped stacking assembly Stacking rack; 42. Moving table; 43. Threaded column; 44. Through-pulley; 45. Rotating gear; 46. Spare motor; 461. Fixed telescopic shaft; 462. Spare gear; 47. First driven wheel; 48. Third linkage shaft; 49. Matching strip; 5. Pressing table; 51. Lifting block; 52. Pressing block; 53. Matching groove; 54. Fixed motor; 55. First meshing wheel; 56. Multi-stage telescopic shaft; 57. Roller; 6. Mobile cutting knife; 7. First track; 8. Transport frame; 9. Clamping assembly; 91. First clamping block; 92. Second clamping block; 93. Movable wheel; 94. Driving assembly; 941. First driving wheel; 942. Connecting shaft; 943. Second driving wheel. DETAILED DESCRIPTION
[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0029] In order to solve the technical problem that the traditional color-coated aluminum plate cutting machine is not convenient to clamp both ends of the color-coated aluminum plate at the same time through the same structure drive to facilitate subsequent cutting work, such as Figure 1-Figure 4 As shown, the following preferred technical solutions are provided:
[0030] A color-coated aluminum plate cutting machine with automatic stacking function, comprising a cutting machine table 1 and a conveying frame 8 arranged on one side of the cutting machine table 1, a pressing table 5 is arranged on the upper end of the cutting machine table 1, a cutting slit 2 is opened on the upper end of the cutting machine table 1, a movable cutting knife 6 is movably arranged inside the cutting slit 2, a clamping table 3 is arranged on the other side of the cutting machine table 1, a stacking assembly 4 is arranged on one side of the clamping table 3, a first track 7 is arranged at the lower end of the stacking assembly 4, and the first track 7 is provided in two groups, and the clamping table 3 is provided with a plurality of movable cutting blades. The clamping assembly 9 is provided at the bottom, and the clamping assembly 9 includes a first clamping block 91 embedded in the upper end of the clamping table 3 and a second clamping block 92 embedded in the lower end of the clamping table 3. The upper end of the second clamping block 92 is movably provided with a movable wheel 93, and the movable wheel 93 is provided with multiple groups. The lower end of the first clamping block 91 is provided with a driving assembly 94, and the driving assembly 94 is provided with multiple groups. The first clamping block 91 and the second clamping block 92 are arranged oppositely. The conveying frame 8 transports the color-coated aluminum plate to be cut to the cutting plate. On the machine 1, one end of the color-coated aluminum plate is embedded in the clamping component 9, the lower pressing platform 5 presses down the color-coated aluminum plate, drives the clamping component 9 to clamp one end of the color-coated aluminum plate, and the movable cutting knife 6 moves in the cutting gap 2 to cut the color-coated aluminum plate. The cut color-coated aluminum plate is driven by the clamping component 9 to move to the upper end of the stacking component 4. When the clamping component 9 drives the cut color-coated aluminum plate to move, the stacking component 4 reduces the thickness of the color-coated aluminum plate. A lifting block is embedded in the lower pressing platform 5. 51. A pressing block 52 is fixedly provided at the lower end of the lifting block 51. A matching groove 53 is provided at the lower end of the pressing block 52, and the matching groove 53 is located just above the cutting gap 2. A first meshing wheel 55 is meshed with one side of the lifting block 51. A fixed motor 54 is provided at one end of the first meshing wheel 55 through an axis. A multi-stage telescopic shaft 56 is provided at one side of the fixed motor 54 through an axis connection. The fixed motor 54 is fixedly provided inside the pressing platform 5, and a roller 57 is provided at part of the lower end of the pressing block 52.
[0031] The clamping platform 3 includes a clamping groove 31 provided at the upper end of the clamping platform 3, and the clamping assembly 9 is located inside the clamping groove 31. A multi-stage telescopic rod 32 is provided on one side of the clamping platform 3, and the multi-stage telescopic rod 32 is provided in four groups. One end of the four groups of multi-stage telescopic rods 32 is fixedly connected to the cutting machine 1. A first linkage shaft 33 is provided on the side of the clamping platform 3, and a second track 34 is provided at the lower end of the clamping platform 3, and the second track 34 is provided in two groups. A first pulley 35 is movably provided inside the clamping platform 3, and the first pulley 35 is connected to the multi-stage telescopic shaft 56 through an axis. The lower end of the first pulley 35 is connected to the second pulley 351 through a belt drive. The wheel 351 is connected to the second meshing wheel 352 through an axis, and the second meshing wheel 352 is meshed with the first clamping block 91. A driving motor 36 is fixedly provided inside the clamping platform 3. The lower end of the second pulley 351 is connected to the third pulley 353 through a belt transmission. The third pulley 353 is connected to the third meshing wheel 354 through an axis. The third meshing wheel 354 is meshed with the fourth meshing wheel 355 on one side, and the fourth meshing wheel 355 is meshed with the fifth meshing wheel 356 on one side. The fifth meshing wheel 356 is connected to the sixth meshing wheel 357 on one side through an axis, and the sixth meshing wheel 357 is meshed with one side of the second clamping block 92.
[0032] Specifically, the conveyor frame 8 transports the color-coated aluminum plate to be cut until one end of the color-coated aluminum plate is located inside the clamping groove 31. At this time, the distance between the clamping table 3 and the cutting machine table 1 is adjusted by the extension and contraction of the multiple sets of multi-stage telescopic rods 32 and the sliding cooperation of the second track 34 to determine the cut length of the color-coated aluminum plate. At this time, the multi-stage telescopic shaft 56 is stretched. When cutting is required, the fixed motor 54 is first used to drive the first meshing wheel 55 and the multi-stage telescopic shaft 56 to rotate, and the lower pressing block 52 is pressed down. Pressure is applied to one end of the color-coated aluminum plate. At this time, the rotation of the multi-stage telescopic shaft 56 causes the first pulley 35, the second pulley 351, the second meshing wheel 352, the third pulley 353, the third meshing wheel 354, the fourth meshing wheel 355, the fifth meshing wheel 356 and the sixth meshing wheel 357 to rotate, so that the first clamping block 91 and the second clamping block 92 move toward each other to clamp one end of the color-coated aluminum plate. At this time, the color-coated aluminum plate is positioned, and the movable cutting knife 6 moves to cut the color-coated aluminum plate.
[0033] In order to solve the technical problem that the traditional color-coated aluminum plate cutting machine needs to manually stack the cut color-coated aluminum plates when cutting the color-coated aluminum plates after transportation, which wastes manpower and is inconvenient to lower the structure of the color-coated aluminum plates to facilitate the stacking of the color-coated aluminum plates while transporting the cut color-coated aluminum plates, such as Figure 5-Figure 8 As shown, the following preferred technical solutions are provided:
[0034] The output end of the driving motor 36 is connected with a first telescopic shaft 361 through an axis, and a fitting box 362 is provided at the lower end of the first telescopic shaft 361, and the fitting box 362 is movably fitted inside the clamping table 3, and a second telescopic shaft 363 is provided at the lower end of the fitting box 362. A first linkage wheel 3621 is movably provided inside the fitting box 362, and one side of the first linkage wheel 3621 is connected to the first telescopic shaft 361, and the other side of the first linkage wheel 3621 is connected to the second telescopic shaft 363, and one side of the first linkage wheel 3621 is meshed with the second linkage shaft 3622.
[0035] The driving assembly 94 includes a first driving wheel 941 movably arranged inside the first clamping block 91, a connecting shaft 942 is provided on one side of the first driving wheel 941, a second driving wheel 943 is provided on one side of the connecting shaft 942, and the second linkage shaft 3622 is connected to the first driving wheel 941 through an axis. The driving assembly 94 is provided in multiple groups, and the multiple groups of driving assemblies 94 are connected by belt transmission. The stacking assembly 4 includes a moving platform 42 movably connected to the two groups of first rails 7, a threaded column 43 is provided on the upper end of the moving platform 42, and four groups of threaded columns 43 are provided. The upper ends of the four groups of threaded columns 43 are provided with L-shaped stacking frames 41, a through pulley 44 is provided inside the stacking assembly 4, and four groups of through pulleys 44 are provided. The four groups of through pulleys 44 correspond to the four groups of threaded columns 43, and the lower ends of the through pulleys 44 are connected. A rotating gear 45 is provided, and a first driven wheel 47 is meshed with one side of the rotating gear 45. A third linkage shaft 48 is provided on one side of the first driven wheel 47 through an axis. One end of the third linkage shaft 48 is located outside the moving platform 42, and a matching bar 49 is provided at this end. A spare motor 46 is also provided inside the moving platform 42. The spare motor 46 is connected with a fixed telescopic shaft 461 through an axis. A spare gear 462 is provided on the upper end of the fixed telescopic shaft 461, and the spare gear 462 is meshed with the lower end of the first driven wheel 47. A linkage groove 331 is provided at one end of the first linkage shaft 33, and the other end of the first linkage shaft 33 is connected to the third driven wheel 3632. A second driven wheel 3631 is meshed with one side of the third driven wheel 3632, and the upper end of the second driven wheel 3631 is connected to the second telescopic shaft 363.
[0036] Specifically, when the color-coated aluminum plate is cut, the driving motor 36 drives the first telescopic shaft 361, the second telescopic shaft 363, the first linkage wheel 3621, the second linkage shaft 3622, the first driving wheel 941, the connecting shaft 942 and the second driving wheel 943 to rotate, so that the multiple groups of first driving wheels 941 and the second driving wheels 943 rotate, that is, the color-coated aluminum plate squeezed by the two is moved. Due to the setting of the first telescopic shaft 361 and the second telescopic shaft 363, it does not affect the lifting of the first clamping block 91. While the color-coated aluminum plate moves, the second telescopic shaft 363 drives the second driven wheel 3631, the third driven wheel 3632, the linkage groove 331, the matching strip 49, the third linkage shaft 48, the rotating gear 45 and the through pulley 44 to rotate, that is, the rotation of the four groups of through pulleys 44 causes the four groups of threaded columns 43 in the thread to collectively descend. At this time, the L-shaped stacking rack 41 descends to a height of the thickness of one group of color-coated aluminum plates. The stacking assembly 4 is moved to the side of the cutting machine 1 by the first rail 7 until the matching bar 49 is engaged with the linkage groove 331, and then the next stacking is completed.
[0037] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0038] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A color-coated aluminum plate cutting machine with an automatic stacking function, comprising a cutting machine table (1) and a conveying frame (8) arranged on one side of the cutting machine table (1), a pressing table (5) being arranged on the upper end of the cutting machine table (1), a cutting slit (2) being opened on the upper end of the cutting machine table (1), a movable cutting knife (6) being movably arranged inside the cutting slit (2), and characterized in that: A clamping platform (3) is provided on the other side of the cutting machine (1), a stacking assembly (4) is provided on one side of the clamping platform (3), a first track (7) is provided at the lower end of the stacking assembly (4), and two groups of the first track (7) are provided, and a clamping assembly (9) is provided inside the clamping platform (3); The clamping assembly (9) includes a first clamping block (91) embedded in the upper end of the clamping platform (3) and a second clamping block (92) embedded in the lower end of the clamping platform (3). The upper end of the second clamping block (92) is movably provided with a movable wheel (93), and the movable wheel (93) is provided in multiple groups. The lower end of the first clamping block (91) is provided with a driving assembly (94), and the driving assembly (94) is provided in multiple groups. The first clamping block (91) and the second clamping block (92) are arranged relative to each other. The conveying frame (8) moves the color-coated aluminum to be cut. The plate is transported to the cutting machine (1), and one end of the color-coated aluminum plate is embedded in the clamping component (9). The pressing table (5) presses down the color-coated aluminum plate, driving the clamping component (9) to clamp one end of the color-coated aluminum plate. The movable cutting knife (6) moves in the cutting gap (2) to cut the color-coated aluminum plate. The cut color-coated aluminum plate is driven by the clamping component (9) to move to the upper end of the stacking component (4). When the clamping component (9) drives the cut color-coated aluminum plate to move, the stacking component (4) decreases the thickness of the color-coated aluminum plate. The clamping platform (3) includes a clamping groove (31) provided at the upper end of the clamping platform (3), and the clamping assembly (9) is located inside the clamping groove (31). A multi-stage telescopic rod (32) is provided on one side of the clamping platform (3), and the multi-stage telescopic rod (32) is provided in four groups. One end of the four groups of multi-stage telescopic rods (32) is fixedly connected to the cutting machine (1). A first linkage shaft (33) is provided on the side of the clamping platform (3), and a second track (34) is provided at the lower end of the clamping platform (3), and the second track (34) is provided in two groups. A first pulley (35) is movably provided inside the clamping platform (3), the lower pressing platform (5) includes a multi-stage telescopic shaft (56), the first pulley (35) is connected to the multi-stage telescopic shaft (56) through a shaft, a second pulley (351) is provided at the lower end of the first pulley (35) through a belt transmission connection, the second pulley (351) is provided with a second meshing wheel (352) through a shaft connection, the second meshing wheel (352) is meshed with the first clamping block (91), and a driving motor (36) is fixedly provided inside the clamping platform (3); The lower end of the second pulley (351) is connected to a third pulley (353) via a belt transmission, the third pulley (353) is connected to a third meshing wheel (354) via a shaft, one side of the third meshing wheel (354) is meshed with a fourth meshing wheel (355), one side of the fourth meshing wheel (355) is meshed with a fifth meshing wheel (356), one side of the fifth meshing wheel (356) is connected to a sixth meshing wheel (357) via a shaft, and the sixth meshing wheel (357) is meshed with one side of the second clamping block (92).
2. The color-coated aluminum plate cutting machine with automatic stacking function according to claim 1, characterized in that: A lifting block (51) is embedded in the lower pressing table (5), and a lower pressing block (52) is fixedly provided at the lower end of the lifting block (51). A matching groove (53) is provided at the lower end of the lower pressing block (52), and the matching groove (53) is located just above the cutting gap (2). A first meshing wheel (55) is meshed on one side of the lifting block (51), and a fixed motor (54) is provided at one end of the first meshing wheel (55) through an axis. A multi-stage telescopic shaft (56) is provided on one side of the fixed motor (54) through an axis connection. The fixed motor (54) is fixedly provided inside the lower pressing table (5), and a roller (57) is provided at a portion of the lower end of the lower pressing block (52).
3. The color-coated aluminum plate cutting machine with automatic stacking function according to claim 2, characterized in that: The output end of the driving motor (36) is provided with a first telescopic shaft (361) through a shaft connection, a fitting box (362) is provided at the lower end of the first telescopic shaft (361), and the fitting box (362) is movably fitted inside the clamping table (3), a second telescopic shaft (363) is provided at the lower end of the fitting box (362), a first linkage wheel (3621) is movably provided inside the fitting box (362), and one side of the first linkage wheel (3621) is connected to the first telescopic shaft (361), and the other side of the first linkage wheel (3621) is connected to the second telescopic shaft (363), and one side of the first linkage wheel (3621) is meshed with the second linkage shaft (3622).
4. The color-coated aluminum plate cutting machine with automatic stacking function according to claim 3, characterized in that: The driving assembly (94) includes a first driving wheel (941) movably arranged inside the first clamping block (91), a connecting shaft (942) is provided on one side of the first driving wheel (941), a second driving wheel (943) is provided on one side of the connecting shaft (942), and a second linkage shaft (3622) is connected to the first driving wheel (941) via a shaft. The driving assembly (94) is provided in multiple groups, and the multiple groups of driving assemblies (94) are connected to each other via a belt transmission.
5. The color-coated aluminum plate cutting machine with automatic stacking function according to claim 1, characterized in that: The stacking assembly (4) includes a movable platform (42) movably connected to the two groups of the first rails (7), the upper end of the movable platform (42) is provided with a threaded column (43), and the threaded column (43) is provided in four groups. The upper ends of the four groups of the threaded columns (43) are provided with an L-shaped stacking frame (41).
6. The color-coated aluminum plate cutting machine with automatic stacking function according to claim 5, characterized in that: A through pulley (44) is provided inside the stacking assembly (4), and four groups of through pulleys (44) are provided. The four groups of through pulleys (44) correspond to the four groups of threaded columns (43). A rotating gear (45) is provided at the lower end of the through pulley (44). A first driven wheel (47) is meshed with one side of the rotating gear (45). A third linkage shaft (48) is provided on one side of the first driven wheel (47) through an axis connection. One end of the third linkage shaft (48) is located outside the moving platform (42), and a matching strip (49) is provided at this end. A spare motor (46) is also provided inside the moving platform (42). The spare motor (46) is provided with a fixed telescopic shaft (461) through an axis connection. A spare gear (462) is provided at the upper end of the fixed telescopic shaft (461). The spare gear (462) is in meshing relationship with the lower end of the first driven wheel (47).
7. The color-coated aluminum plate cutting machine with automatic stacking function according to claim 6, characterized in that: A linkage groove (331) is provided at one end of the first linkage shaft (33), and a third driven wheel (3632) is connected to the other end of the first linkage shaft (33). A second driven wheel (3631) is meshed with one side of the third driven wheel (3632), and the upper end of the second driven wheel (3631) is connected to the second telescopic shaft (363).
Citation Information
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