CN221621155U - Automatic cutting device for plates - Google Patents

Automatic cutting device for plates Download PDF

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Publication number
CN221621155U
CN221621155U CN202323226003.0U CN202323226003U CN221621155U CN 221621155 U CN221621155 U CN 221621155U CN 202323226003 U CN202323226003 U CN 202323226003U CN 221621155 U CN221621155 U CN 221621155U
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China
Prior art keywords
rotating
fixedly connected
plate
motor
motor shaft
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CN202323226003.0U
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Chinese (zh)
Inventor
卢成
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Linyi Huasheng Yongbin Wood Industry Co ltd
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Linyi Huasheng Yongbin Wood Industry Co ltd
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Priority to CN202323226003.0U priority Critical patent/CN221621155U/en
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Abstract

The utility model discloses an automatic plate cutting device, wherein the upper end of a cutting base is fixedly connected with a concave top plate, the side end of the cutting base is provided with a control panel, the two ends in the cutting base are provided with symmetrically distributed rectangular grooves, rectangular sliding blocks are slidingly connected in the rectangular grooves, a sliding plate is fixedly connected between the rectangular sliding blocks, the lower end of the sliding plate is provided with a plurality of uniformly distributed wheels, wheel shafts are inserted into the wheels and are rotationally connected, one end of each wheel shaft is provided with a wheel motor, and one end of each wheel motor, which is far away from the wheel shafts, is fixedly connected with the sliding plate.

Description

Automatic cutting device for plates
Technical Field
The utility model relates to the technical field of plate cutting, in particular to an automatic plate cutting device.
Background
The plate is a flat rectangular building material plate made into standard size, and is applied to the building industry and used as a member of a wall, a ceiling or a floor. And also to a metal plate that is forged, rolled or cast.
The plates are divided into thin plates, middle plates, thick plates, extra thick plates and flat rectangular building material plates which are usually made into standard sizes, however, the plates can be used by people only by cutting the plates into different shapes.
However, the common cutting device cannot clamp the plate, so that the defective rate is increased due to the movement of the plate when the laser cutter cuts the plate, and the pushing plate cannot be put down after the plate is clamped, so that the pushing plate is damaged when the laser cutter works, and the service life of equipment is reduced; the existing cutting device cannot move the plate, cannot realize the functions of cutting the plate in straight lines, circular rings and other cutting shapes, cannot adjust the cutting distance of the plate, and has low practicability; some cutting devices cannot perform circular cutting on the plate, and the diameter of the annular cutting device cannot be adjusted, so that the replacement cost is increased, and the expenditure cost is increased; the cutting device needs manual operation, so that the degree of automation can be reduced, the labor force of workers can be increased, and the working efficiency can be reduced.
Therefore, there is a need to design an automated cutting device for board materials that solves the above-mentioned problems.
Disclosure of utility model
The utility model aims to provide an automatic plate cutting device which is used for solving the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides an automatic cutting device of panel, includes the cutting base, the upper end fixed connection spill roof of cutting base, the side of cutting base is equipped with control panel, the both ends in the cutting base are equipped with the rectangular channel of symmetric distribution, sliding connection rectangular slider in the rectangular channel, fixed connection sliding plate between the rectangular slider, the lower extreme of sliding plate is equipped with a plurality of evenly distributed's wheel, the inside interlude of wheel has the axletree and rotates to be connected, the one end of axletree is equipped with the wheel motor, the one end fixed connection sliding plate of axletree of wheel, the both ends fixed connection sliding plate of axletree, the lower extreme contact connection wheel groove of wheel, the both ends at the cutting base are established to the wheel groove symmetry, be equipped with clamping support mechanism in the sliding plate, clamping support mechanism's upper end contact connection panel, be equipped with annular cutting mechanism in the spill roof, the lower extreme fixed connection connecting rod of annular cutting mechanism, the lower extreme fixed connection fixed plate of connecting rod, the lower extreme fixed connection of fixed plate promotes the motor, the lower extreme that promotes the motor shaft is equipped with the laser cutting device of motor, the lower extreme that promotes the motor shaft is fixed connection at the laser cutting device.
Preferably, the clamping support mechanism comprises a clamping motor, one end of the clamping motor is fixedly connected with the other end of the sliding plate, a clamping motor shaft is arranged at the other end of the clamping motor, a connecting gear is regulated at the outer side of the clamping motor shaft, the upper end and the lower end of the gear are respectively connected with a first L-shaped rack and a second L-shaped rack in a meshed mode, the first L-shaped rack and the second L-shaped rack are both in sliding connection with the sliding plate, one ends, far away from the gear, of the first L-shaped rack and the second L-shaped rack are both fixedly connected with the clamping plate, rubber blocks are arranged at the inner sides of the upper ends of the clamping plate, plates are connected in a contact mode, and the lower ends of the plates are connected with the connecting support mechanism in a contact mode.
Preferably, the supporting mechanism comprises a pushing plate, the upper end of pushing plate contacts the connection panel, the lower extreme fixed connection screw thread section of thick bamboo of pushing plate, screw thread section of thick bamboo internal thread connection screw thread post, the lower extreme of screw thread post is stipulated and is connected rotatory chassis, the lower extreme of rotating disk is connected in the one end meshing of rotatory chassis, the inside interlude of rotating disk has rotating disk axle and rotation to be connected, the equal fixed connection sliding plate of upper and lower extreme of rotating disk axle, the upper end meshing of rotating disk is connected the worm, the inside interlude of worm has first belt pulley axle and fixed connection, the both ends rotation of first belt pulley axle are connected the sliding plate, the one end fixed connection first belt pulley of keeping away from the worm of first belt pulley, the one end meshing connection second belt pulley of keeping away from first belt pulley of belt, the inside interlude of second belt pulley has clamp motor shaft and fixed connection.
Preferably, the annular cutting mechanism comprises a rotating motor, the lower extreme fixed connection spill roof of rotating motor just is equipped with the rotating motor shaft, the rotating motor shaft rotates and connects the spill roof, the lower extreme fixed connection rotatory disc of rotating motor shaft, the one end fixed connection rotating motor of the inside of rotatory disc, the one end of rotating motor is equipped with the rotating motor shaft, the rotating motor shaft rotates and connects rotatory disc, the one end fixed connection rotary disk of keeping away from of rotating motor shaft, the one end fixed connection fixed pin of keeping away from center department of rotary disk, the outside of fixed pin rotates and connects the second connecting rod, the one end of keeping away from the fixed pin of second connecting rod is equipped with first connecting rod, first connecting rod is articulated with the second connecting rod through the rotating pin, the one end of keeping away from the second connecting rod of first connecting rod is equipped with the lug, all alternate in lug and the first connecting rod and rotate and be connected, the lower extreme fixed connection slider of lug, the inside of slider alternate the optical axis, both ends fixed connection rotatory disc, slider sliding connection's lower extreme fixed connection, rotary disc adjustment mechanism.
Preferably, the adjusting mechanism comprises a rotating rod, the upper end of the rotating rod is fixedly connected with a rotating disc, the lower end of the rotating rod is rotationally connected with a ball nut, a ball screw pair in the ball nut is connected with a screw rod, one end of the screw rod is rotationally connected with a concave top plate, the other end of the screw rod is fixedly connected with a movable motor shaft, one end, far away from the screw rod, of the movable motor shaft is provided with a movable motor, and one end, far away from the movable motor shaft, of the movable motor shaft is fixedly connected with the concave top plate.
Preferably, the engagement part of the upper end of the rotating disc and the worm is provided with a worm gear tooth, and the engagement part of the lower end of the rotating disc and the rotating chassis is provided with a half gear.
Preferably, teeth are arranged on the outer side of the rotary chassis.
Preferably, the start and stop of the rotating motor, the wheel motor, the laser cutter and the pushing motor are controlled by a remote controller.
Preferably, the optical axis is provided at a position of the rotary disk away from the center.
Compared with the prior art, the utility model has the beneficial effects that: the automatic cutting device for the plates has the advantages compared with other utility models that:
1. The device is equipped with clamping supporting mechanism and supporting mechanism, the workman can put panel on the push plate earlier, then the workman can open clamping motor through control panel and rotate with second belt pulley respectively, gear rotation drives two symmetrical distribution's clamping plate and draws close to the centre thereby press from both sides tight panel, and simultaneously second belt pulley can drive the half tooth in the outside of rolling disc and rotate, half tooth and the rotatory chassis meshing of rolling disc can drive screw thread section of thick bamboo and be in the state of being pressed from both sides tight this moment, screw thread section of thick bamboo moves down and drives the push plate and move down and thereby break away from the panel, prevent that the push plate from being damaged by laser cutter, accomplish the supporting mechanism function, realize clamping supporting mechanism function, can press from both sides tight panel, prevent that laser cutter from causing the increase of defective percentage because of the removal of panel when cutting, but also can put down the push plate after pressing from both sides tight panel, prevent laser cutter from damaging the push plate at the during operation, the life of extension equipment.
2. The device is equipped with wheel motor and adjustment mechanism, the workman can open the wheel motor through control panel and drive the axletree rotation, the axletree rotates and drives the wheel and rotate, thereby the wheel rotates and drives the sliding plate and move to the direction of laser cutter, workman's rethread control panel opens laser cutter this moment, when the panel passes through laser cutter, by two panels of cutting, still can open the mobile motor through control panel and drive the mobile motor axle rotation, the mobile motor axle rotates and drives ball nut and remove, ball nut removes and drives rotatory disc and remove, thereby rotatory disc removes and drive the laser cutter and remove and can adjust the distance that the panel was cut, accomplish adjustment mechanism function, realize the function of sharp cutting panel, can remove and can realize the cutting panel of sharp, ring and other cutting shape's function, but also can adjust the distance of panel cutting, increase the practicality.
3. The device is equipped with annular cutting mechanism and pushing motor, the workman is to driving panel through control panel and stopping under the spill roof, then the workman can open the rotating electrical machines through control panel and drive rotatory motor shaft and rotate, thereby rotatory motor shaft rotates and drives rotatory disc and rotate and drive laser cutter and rotate, thereby accomplish the annular cutting to panel, the workman can also open the rotating electrical machines through control panel and drive the slider and remove, the slider removes and drive laser cutter and remove, thereby can adjust annular cutting's size, and the workman can open pushing motor through control panel and drive the motor shaft and remove down so can drive laser cutter and remove down, thereby can satisfy the cutting to panel that thickness is different, accomplish annular cutting mechanism function, can carry out circular cutting to panel, still can adjust annular cutting's diameter size, the replacement cost is reduced, and the cost of expenditure is reduced.
4. The device is provided with the rubber block, thereby being more beneficial to clamping the plate.
5. The rotating motor, the wheel motor, the laser cutter and the pushing motor of the device are controlled by the remote controller, so that the degree of automation is increased, the labor force of workers is reduced, and the working efficiency is increased.
Drawings
FIG. 1 is a schematic diagram of the main structure of an automatic cutting device for a plate material according to the present utility model;
FIG. 2 is a top view of an automated cutting apparatus for sheet material according to the present utility model;
FIG. 3 is a cross-sectional view taken at A-A of FIG. 2;
FIG. 4 is a cross-sectional view taken at B-B of FIG. 2;
FIG. 5 is an enlarged view of a portion of FIG. 3 at C;
FIG. 6 is a partial enlarged view at D of FIG. 3;
FIG. 7 is an enlarged view of a portion of FIG. 3 at E;
FIG. 8 is an enlarged view of a portion of FIG. 4 at F;
FIG. 9 is an enlarged view of a portion of FIG. 4 at G;
FIG. 10 is an enlarged view of a portion of FIG. 4 at H;
FIG. 11 is an enlarged view of a portion of FIG. 4 at I;
fig. 12 is a partial enlarged view at J of fig. 4.
In the figure: 1. cutting base, 2, control panel, 3, rotating motor, 4, concave top plate, 5, roller groove, 6, rectangular groove, 7, slide plate, 8, clamping plate, 9, rubber block, 10, plate, 11, rotating disk, 12, rotating motor shaft, 13, rotating disk, 14, rotating motor shaft, 15, rotating motor, 16, optical axis, 17, laser cutter, 18, push motor shaft, 19, push motor, 20, fixed plate, 21, connecting rod, 22, screw, 23, ball nut, 24, rotating rod, 25, rectangular slider, 26, first L-shaped rack, 27, second L-shaped rack, 28, push plate, 29, screw barrel, 30, screw post, 31, rotating chassis, 32, rotating disk, 33, rotating disk shaft, 34, belt, 35, worm, 36, first pulley, 37, first pulley shaft, 38, gear, 39, second pulley, 40, clamping motor shaft, 41, clamping motor, 42, slider, 43, 44, first link, 45, rotating motor, 46, second pulley, 47, second pulley, 49, wheel shaft, 52, wheel axle, fixed axle, wheel axle, and moving.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-12, the present utility model provides a technical solution:
The utility model provides an automatic cutting device of panel, including cutting base 1, the upper end fixed connection spill roof 4 of cutting base 1, the side of cutting base 1 is equipped with control panel 2, the both ends in cutting base 1 are equipped with symmetrical distribution's rectangle groove 6, sliding connection rectangle slider 25 in the rectangle groove 6, fixed connection sliding plate 7 between the rectangle slider 25, the lower extreme of sliding plate 7 is equipped with a plurality of evenly distributed's wheel 51, the inside of wheel 51 alternates there is axletree 52 and rotates the connection, the one end of axletree 52 is equipped with wheel motor 53, the one end fixed connection sliding plate 7 of wheel motor 53 that is kept away from axletree 52, the both ends fixed connection sliding plate 7 of axletree 52, the lower extreme contact connection wheel groove 5 of wheel 51, the both ends of wheel groove 5 symmetry are established at cutting base 1 are equipped with the clamp support mechanism in the sliding plate 7, the upper end contact connection panel 10 of clamp support mechanism, be equipped with annular cutting mechanism in the spill roof 4, the lower extreme fixed connection connecting rod 21 of annular cutting mechanism, the lower extreme fixed connection fixed plate 20 of connecting rod 21, the lower extreme fixed connection of fixed plate 20 promotes motor 19, the lower extreme fixed connection of motor shaft 19 is equipped with 18, the lower extreme fixed connection 18 of laser 17 that promotes motor shaft 19, the lower extreme fixed connection 17 of laser 17 is fixed connection of laser 17 on the panel.
The clamping support mechanism comprises a clamping motor 41, one end of the clamping motor 41 is fixedly connected with the other end of the sliding plate 7, a clamping motor shaft 40 is arranged at the outer side of the clamping motor shaft 40, a connecting gear 38 is regulated at the outer side of the clamping motor shaft, the upper end and the lower end of the gear 38 are respectively connected with a first L-shaped rack 26 and a second L-shaped rack 27 in a meshed mode, the first L-shaped rack 26 and the second L-shaped rack 27 are both connected with the sliding plate 7 in a sliding mode, one ends, far away from the gear 38, of the first L-shaped rack 26 and the second L-shaped rack 27 are both fixedly connected with the clamping plate 8, rubber blocks 9 are arranged at the inner sides of the upper ends of the clamping plate 8, contact connection plates 10 are arranged between the rubber blocks 9, the lower ends of the plates 10 contact the connection support mechanism, the support mechanism comprises a pushing plate 28, the upper ends of the pushing plate 28 contact connection plates 10 are fixedly connected with a threaded cylinder 29, the lower ends of the pushing plate 28 are connected with a threaded cylinder 29, the inner threads of the threaded cylinder 29 are connected with a threaded cylinder 30, the lower end of the threaded cylinder 30 is regulated and connected with a rotary chassis 31, one end of the rotary chassis 31 is meshed with the lower end of the rotary disc 32, a rotary disc shaft 33 is inserted in the rotary disc 32 and is rotationally connected, the upper end and the lower end of the rotary disc shaft 33 are fixedly connected with the sliding plate 7, the upper end of the rotary disc 32 is meshed with the connecting worm 35, the interior of the worm 35 is inserted with a first belt pulley shaft 37 and is fixedly connected, two ends of the first belt pulley shaft 37 are rotationally connected with the sliding plate 7, one end of the first belt pulley shaft 37 far away from the worm 35 is fixedly connected with a first belt pulley 36, the outer side of the first belt pulley 36 is meshed with a connecting belt 34, one end of the belt 34 far away from the first belt pulley 36 is meshed with a second belt pulley 39, the interior of the second belt pulley 39 is inserted with a clamping motor shaft 40 and is fixedly connected, the clamping motor 41 drives the clamping motor shaft 40 to rotate, the clamping motor shaft 40 rotates to respectively drive the gear 38 and the second belt pulley 39 to rotate, the gear 38 drives the first L-shaped rack 26 and the second L-shaped rack 27 to move towards the middle respectively, the first L-shaped rack 26 and the second L-shaped rack 27 move towards the middle to drive the clamping plate 8 to move towards the middle and clamp the plate 10, the second belt pulley 39 rotates to drive the belt 34 to move, the belt 34 moves to drive the first belt pulley 36 to rotate, the first belt pulley 36 rotates to drive the worm 35 to rotate, the worm 35 rotates to drive the rotating disc 32 to rotate, the rotating disc 32 rotates at intervals to drive the rotating chassis 31 to rotate to drive the threaded column 30 to rotate, the threaded column 30 rotates to drive the threaded cylinder 29 to move downwards, the threaded cylinder 29 moves downwards to drive the pushing plate 28 to move downwards so as to separate from the plate 10, the function of the supporting mechanism is completed, and the function of the clamping supporting mechanism is realized.
The annular cutting mechanism comprises a rotating motor 3, the lower end of the rotating motor 3 is fixedly connected with a concave top plate 4 and is provided with a rotating motor shaft 12, the rotating motor shaft 12 is rotationally connected with the concave top plate 4, the lower end of the rotating motor shaft 12 is fixedly connected with a rotating disc 11, one end of the rotating motor 15 is fixedly connected with a rotating motor shaft 14, the rotating motor shaft 14 is rotationally connected with the rotating disc 11, one end of the rotating motor shaft 14 far away from the rotating motor 15 is fixedly connected with a rotating disc 13, one end of the rotating disc 13 far away from the center is fixedly connected with a fixed pin 48, the outer side of the fixed pin 48 is rotationally connected with a second connecting rod 46, one end of the second connecting rod 46 far away from the fixed pin 48 is provided with a first connecting rod 44, the first connecting rod 44 is hinged with the second connecting rod 46 through the rotating pin 47, one end of the first connecting rod 44 far away from the second connecting rod 46 is provided with a lifting lug 43, the rotating pin 45 is rotationally connected with the first connecting rod 44, the lower end of the lifting lug 43 is fixedly connected with the rotating disc 11, the inside of the sliding block 42 is penetrated with an optical axis 16, the two ends of the sliding block 16 are fixedly connected with the rotating disc 11, the sliding block 11 is fixedly connected with the rotating disc 11, the rotating shaft 11 is rotationally connected with the rotating disc is rotationally, the rotating disc is driven to rotate the rotating disc 14 to rotate, one end of the rotating rod is driven by the rotating rod 14 to rotate the rotating rod to rotate, the rotating rod is driven by the rotating rod to rotate the rotating rod 14, the rotating rod is driven by the rotating rod to rotate, the rotating rod is driven by the rotating rod to rotate, and the rotating rod is driven by the rotating rod 14, and the rotating rod is driven by the rotating rod, and the rotating rod is, the outward movement of the slider 42 may drive the laser cutter 17 to move toward one end, completing the function of the annular cutting mechanism.
The adjusting mechanism comprises a rotating rod 24, the upper end of the rotating rod 24 is fixedly connected with a rotating disc 11, the lower end of the rotating rod 24 is rotationally connected with a ball nut 23, a ball screw pair in the ball nut 23 is connected with a screw 22, one end of the screw 22 is rotationally connected with the other end of the concave top plate 4 and is fixedly connected with a moving motor shaft 50, one end, far away from the screw 22, of the moving motor shaft 50 is provided with a moving motor 49, one end, far away from the moving motor shaft 50, of the moving motor shaft 50 is fixedly connected with the concave top plate 4, the moving motor shaft 49 is started by a control panel 3 to drive the moving motor shaft 50 to rotate, the ball nut 23 is rotated to drive the rotating disc 11 to move, and the rotating disc 11 is moved to drive a laser cutter 17 to move so as to adjust the cut distance of the plate 10, so that the adjusting mechanism function is completed.
The upper end of the rotating disk 32 is provided with turbine teeth at the engagement position with the worm, the lower end is provided with half teeth at the engagement position with the rotating chassis 31, and the outer side of the rotating chassis 31 is provided with teeth, thereby being beneficial to completing the function of clamping and supporting mechanism.
The starting and stopping of the rotating motor 3, the rotating motor 15, the wheel motor 53, the laser cutter 17 and the pushing motor 19 are controlled by a remote controller, so that the degree of automation is increased, the labor force of workers is reduced, and the working efficiency is accelerated.
The optical axis 16 is provided at a position of the rotary disk 11 away from the center, and can perform the function of an adjusting mechanism.
The working principle is as follows:
The plate 10 is supported and clamped, the plate 10 can be placed on the pushing plate 28 by a worker firstly, then the worker can start the clamping motor 41 through the control panel 3 to respectively rotate the gear 38 and the second belt pulley 39, the gear 38 rotates to drive the two symmetrically distributed clamping plates 8 to approach towards the middle to clamp the plate 10, meanwhile, the second belt pulley 39 can drive the outer half teeth of the rotating disc 32 to rotate, when the half teeth of the rotating disc 32 are meshed with the rotating chassis 31, the thread cylinder 29 can be driven to move downwards, and the plate 10 is in a clamped state at the moment, the thread cylinder 29 moves downwards to drive the pushing plate 28 to move downwards so as to separate from the plate 10, the pushing plate 28 is prevented from being damaged by the laser cutter 17, the clamping motor 41 drives the clamping motor shaft 40 to rotate, the clamping motor shaft 40 rotates to respectively drive the gear 38 and the second belt pulley 39 to rotate, the gear 38 drives the first L-shaped rack 26 and the second L-shaped rack 27 to move towards the middle respectively, the first L-shaped rack 26 and the second L-shaped rack 27 move towards the middle to drive the clamping plate 8 to move towards the middle and clamp the plate 10, the second belt pulley 39 rotates to drive the belt 34 to move, the belt 34 moves to drive the first belt pulley 36 to rotate, the first belt pulley 36 rotates to drive the worm 35 to rotate, the worm 35 rotates to drive the rotating disc 32 to rotate, the rotating disc 32 rotates at intervals to drive the rotating chassis 31 to rotate, the rotating chassis 31 rotates to drive the threaded column 30 to rotate, the threaded column 30 rotates to drive the threaded cylinder 29 to move downwards, the threaded cylinder 29 moves downwards to drive the pushing plate 28 to move downwards so as to separate from the plate 10, the function of a supporting mechanism is completed, and the function of a clamping supporting mechanism is realized;
For the sheet material 10 to be cut linearly, a worker can start a wheel motor 53 through a control panel 3 to drive a wheel shaft 52 to rotate, the wheel shaft 52 rotates to drive a wheel 51 to rotate, the wheel 51 rotates to drive a sliding plate 7 to move so as to drive the sheet material 10 to move towards a laser cutter 17, at the moment, the worker starts the laser cutter 17 through the control panel 3, the sheet material 10 is cut into two sheet materials when passing through the laser cutter 17, a moving motor 49 can be started through the control panel 3 to drive a moving motor shaft 50 to rotate, the moving motor shaft 50 rotates to drive a ball nut 23 to move, the ball nut 23 moves to drive a rotating disc 11 to move, and the rotating disc 11 moves to drive the laser cutter 17 to move so as to adjust the cut distance of the sheet material 10, so that the function of an adjusting mechanism is completed, and the function of cutting the sheet material linearly is realized;
For annular cutting of panel 10, the workman is to opening wheel motor 53 through control panel 3 and driving panel 10 to stop under the spill roof 4, then the workman can be through control panel 3 opening rotating electrical machines 3 and drive rotating electrical machines 12 and rotate, rotating electrical machines 12 rotate and drive rotatory disc 11 and rotate and drive laser cutter 17 and rotate, thereby accomplish annular cutting of panel 10, the workman can also open rotating electrical machines 15 through control panel 3 and drive slider 42 and remove, slider 42 moves and drive laser cutter 17 and remove, thereby can adjust annular cutting's size, and the workman can open through control panel 3 and promote motor 19 and drive motor shaft 18 and remove and thereby can drive laser cutter 17 and remove downwards, thereby can satisfy the cutting of panel 10 different thickness, rotating electrical machines 15 drive rotating electrical machines 14 and rotate, rotating electrical machines 14 rotate and drive rotary disk 13 and rotate, rotary disk 13 rotates and drive second connecting rod 46, second connecting rod 46 rotates and drive first connecting rod 44 to one end and remove, first connecting rod 44 moves and drives slider 43 to one end and remove, slider 42 moves to one end, slider 42 moves to the outside, slider 42 moves and can drive laser cutter 17 to remove to outside, thereby realize annular cutting mechanism, the automatic function of cutting of panel cutting device is realized.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (9)

1. Automatic cutting device of panel, including cutting base (1), its characterized in that: the upper end of the cutting base (1) is fixedly connected with a concave top plate (4), the side end of the cutting base (1) is provided with a control panel (2), two ends in the cutting base (1) are provided with symmetrically distributed rectangular grooves (6), the rectangular grooves (6) are internally and slidably connected with rectangular sliding blocks (25), a plurality of evenly distributed wheels (51) are fixedly connected between the rectangular sliding blocks (25), the lower ends of the sliding blocks (7) are internally and alternately provided with wheel shafts (52) and are in rotary connection, one end of each wheel shaft (52) is provided with a wheel motor (53), one end, far away from each wheel shaft (52), of each wheel motor (53) is fixedly connected with the corresponding sliding plate (7), the lower ends of each wheel shaft (52) are connected with a wheel groove (5), the lower ends of each wheel groove (5) are symmetrically arranged at the two ends of the cutting base (1), the sliding plates (7) are internally and fixedly provided with clamping supporting mechanisms, the upper ends of the clamping supporting mechanisms are fixedly connected with a connecting rod (21), the lower ends of the connecting rod (21) are fixedly connected with the connecting rod (21), the lower extreme fixed connection of fixed plate (20) promotes motor (19), the lower extreme of promoting motor (19) is equipped with promotes motor shaft (18), the lower extreme fixed connection laser cutter (17) of promoting motor shaft (18), laser cutter (17) establish in the top of panel (10).
2. An automated sheet cutting apparatus according to claim 1, wherein: the clamping and supporting mechanism comprises a clamping motor (41), one end of the clamping motor (41) is fixedly connected with the other end of the sliding plate (7) and is provided with a clamping motor shaft (40), a connecting gear (38) is regulated on the outer side of the clamping motor shaft (40), the upper end and the lower end of the gear (38) are respectively connected with a first L-shaped rack (26) and a second L-shaped rack (27) in a meshed mode, the first L-shaped rack (26) and the second L-shaped rack (27) are both connected with the sliding plate (7) in a sliding mode, one ends, far away from the gear (38), of the first L-shaped rack (26) and the second L-shaped rack (27) are both fixedly connected with the clamping plate (8), rubber blocks (9) are arranged on the inner side of the upper end of the clamping plate (8), the rubber blocks (9) are connected with a plate (10) in a contact mode, and the lower end of the plate (10) is connected with the connecting and supporting mechanism in a contact mode.
3. An automated sheet cutting apparatus according to claim 2, wherein: the supporting mechanism comprises a pushing plate (28), the upper end of the pushing plate (28) is in contact with a connecting plate (10), a threaded cylinder (29) is fixedly connected to the lower end of the pushing plate (28), a threaded column (30) is connected to the threaded cylinder (29) in a threaded manner, the lower end of the threaded column (30) is fixedly connected with a rotary chassis (31), one end of the rotary chassis (31) is meshed with the lower end of a rotary disc (32), a rotary disc shaft (33) is penetrated in the rotary disc (32) and is in rotary connection, the upper end and the lower end of the rotary disc shaft (33) are fixedly connected with a sliding plate (7), the upper end of the rotary disc (32) is meshed with a connecting worm (35), two ends of the worm (35) are rotatably connected with a sliding plate (7), one end, far away from the worm (35), of the first pulley (36) is fixedly connected with one end, far away from the first pulley (36), of the outer side of the first pulley (36) is connected with a motor shaft (34), and the other end, far from the second pulley (39), of the first pulley (34) is meshed with the motor shaft (39), and the second pulley (39) is fixedly connected with the other end, and the other end, which is meshed with the second pulley (39).
4. A panel automated cutting apparatus according to claim 3, wherein: the annular cutting mechanism comprises a rotating motor (3), the lower end of the rotating motor (3) is fixedly connected with a concave top plate (4) and is provided with a rotating motor shaft (12), the rotating motor shaft (12) is rotationally connected with the concave top plate (4), the lower end of the rotating motor shaft (12) is fixedly connected with a rotating disc (11), one end of the inside of the rotating disc (11) is fixedly connected with a rotating motor (15), one end of the rotating motor (15) is provided with a rotating motor shaft (14), one end of the rotating motor shaft (14) far away from the rotating motor (15) is fixedly connected with a rotating disc (13), one end of the rotating disc (13) far away from the center is fixedly connected with a fixed pin (48), the outer side of the fixed pin (48) is rotationally connected with a second connecting rod (46), one end of the second connecting rod (46) far away from the fixed pin (48) is provided with a first connecting rod (44), the inner parts of the first connecting rod (44) and the second connecting rod (46) are respectively and alternately provided with a rotating pin (47), one end of the first connecting rod (44) is connected with the first connecting rod (46) through the rotating pin (47), the utility model discloses a rotary device, including lug (43), rotary disc (11), slider (42) sliding connection, slider (42), rotary pin (45) and rotation connection are all interlude in lug (43) and first connecting rod (44), lower extreme fixed connection slider (42) of lug (43), the inside interlude of slider (42) has optical axis (16), the both ends fixed connection rotary disc (11) of optical axis (16), lower extreme fixed connection connecting rod (21) of slider (42), the lower extreme fixed connection adjustment mechanism of rotary disc (11).
5. An automated sheet cutting apparatus according to claim 4, wherein: the adjusting mechanism comprises a rotating rod (24), the upper end of the rotating rod (24) is fixedly connected with a rotating disc (11), the lower end of the rotating rod (24) is rotationally connected with a ball nut (23), a ball screw pair is connected with a screw rod (22) in the ball nut (23), one end of the screw rod (22) is rotationally connected with a concave top plate (4) and the other end of the screw rod is fixedly connected with a movable motor shaft (50), one end, far away from the screw rod (22), of the movable motor shaft (50) is provided with a movable motor (49), and one end, far away from the movable motor shaft (50), of the movable motor (49) is fixedly connected with the concave top plate (4).
6. A panel automated cutting apparatus according to claim 3, wherein: the engagement part of the upper end of the rotating disc (32) and the worm is provided with a turbine tooth, and the engagement part of the lower end of the rotating disc and the rotating chassis (31) is provided with a half tooth.
7. A panel automated cutting apparatus according to claim 3, wherein: the outer side of the rotary chassis (31) is provided with teeth.
8. An automated sheet cutting apparatus according to claim 5, wherein: the start and stop of the rotating motor (3), the rotating motor (15), the wheel motor (53), the laser cutter (17) and the pushing motor (19) are controlled by a remote controller.
9. An automated sheet cutting apparatus according to claim 4, wherein: the optical axis (16) is provided at a position far from the center of the rotary disk (11).
CN202323226003.0U 2023-11-26 2023-11-26 Automatic cutting device for plates Active CN221621155U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323226003.0U CN221621155U (en) 2023-11-26 2023-11-26 Automatic cutting device for plates

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323226003.0U CN221621155U (en) 2023-11-26 2023-11-26 Automatic cutting device for plates

Publications (1)

Publication Number Publication Date
CN221621155U true CN221621155U (en) 2024-08-30

Family

ID=92496276

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323226003.0U Active CN221621155U (en) 2023-11-26 2023-11-26 Automatic cutting device for plates

Country Status (1)

Country Link
CN (1) CN221621155U (en)

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