Cutting equipment for AG anti-dazzle glass
Technical Field
The utility model relates to the technical field of cutting equipment of anti-dazzle glass, in particular to cutting equipment for AG anti-dazzle glass.
Background
AG glass, also called anti-reflection glass and anti-glare glass, is a glass that performs special processing on the surface of glass.
At the beginning of AG glass production, when facing different market demands, the required size of cutting the glass that just produced will appear in the middle of the cutting process and put into cutting device's this link, in the production procedure of traditional meaning place glass in cutting device's upper end through glass ware and cut it again, this can undoubtedly waste a large amount of installation time, and the comparatively complicated required cost of process also can increase thereupon, can not accomplish efficient glass cutting work.
Thus, we provide a cutting apparatus for AG anti-glare glass.
Disclosure of utility model
The utility model aims at solving the technical problems and provides cutting equipment for AG anti-dazzle glass, which can improve the glass cutting efficiency.
In view of the above, the utility model provides a cutting device for AG anti-glare glass, comprising a storage plate and a roll-over stand, wherein a plurality of installation bars are fixedly installed on one side surface of the roll-over stand, a plurality of air extraction devices are fixedly installed on the installation bars, extraction rods are slidably installed in the air extraction devices, lifting blocks are fixedly installed at the upper ends of the extraction rods, telescopic rods are fixedly installed at the other ends of the extraction rods, which are far away from the lifting blocks, and assembling blocks are fixedly installed at the lower ends of the telescopic rods, and vacuum suckers are fixedly installed at the lower ends of the assembling blocks.
Preferably, the lower surface of the storage plate is fixedly provided with at least two rotating motors, the output end of each rotating motor is fixedly connected with a rotating rod, and one end of each rotating rod is fixedly provided with the roll-over stand.
Preferably, sliding grooves are formed in the surfaces of two sides of the storage plate, sliding blocks are slidably mounted in the sliding grooves, and a supporting frame is fixedly mounted on one side surface of each sliding block.
Preferably, the sliding guide rails are arranged on the surfaces of two sides of the support frame, the sliding guide rails are internally provided with sliding blocks in a sliding manner, and a laser cutting machine is fixedly arranged on one side surface of each sliding block.
Preferably, the lower surface fixed mounting of laser cutting machine has the dead lever, the lower extreme slidable mounting of dead lever has the depression bar, the lower extreme of depression bar has the laser cutting head, one side surface rotation of laser cutting machine installs the bulldozes the bull stick.
Preferably, the upper surface of the storage plate is provided with a plug hole.
Preferably, the lower surface of the object placing plate is fixedly provided with rear supporting legs, and the lower surface of the rotating motor is fixedly provided with front supporting legs.
Compared with the prior art, the utility model provides the cutting equipment for AG anti-dazzle glass, which has the following beneficial effects:
According to the utility model, the four corners of the glass aligned with the vacuum suction cups are sequentially lifted and pulled by the lifting blocks positioned above, the air in the air extraction device is compressed by the extraction rod under the lifting action of the lifting blocks, the vacuum suction cups positioned below are ensured to be adsorbed on the surface of the glass in vacuum, the mounting strip is fixedly arranged on one side of the turnover frame, the mounting strip is horizontally turned while the turnover frame is turned over, the vacuum suction cups positioned below are turned over to the upper side of the object placing plate, the subsequent cutting work can be performed, the step of placing the glass on the cutting device is omitted, the upper sheet cutting work can be directly performed after the glass production is completed, and the glass cutting efficiency is greatly improved.
According to the utility model, after the glass is adsorbed, the rotating motor is turned on to enable the rotating rod with the fixedly connected output end to rotate at a retarded speed, so that the turnover frame arranged at one end of the rotating rod is driven to turn over, a power source is provided for turning over the glass on the device, and the effect of automatically feeding the glass is realized.
According to the utility model, after the glass is turned over the object placing plate through the turning frame, the sliding track of the sliding block in the sliding groove is changed, so that the sliding guide rail and the sliding block arranged in the sliding groove can move transversely, the laser cutting machine arranged on one side surface can move longitudinally according to the moving track of the sliding block in the sliding guide rail, and the sliding block and the sliding groove arranged below realize transverse and longitudinal multi-directional movement, so that the overall flexibility of the laser cutting machine positioned above is ensured.
The device has the advantages that the parts which are not involved in the device are the same as or can be realized by adopting the prior art, and the device has a simple structure and is convenient to operate.
Drawings
FIG. 1 is a schematic view showing the overall structure of a cutting apparatus for AG anti-glare glass according to the present utility model;
FIG. 2 is a schematic diagram of a laser cutter of a cutting device for AG anti-glare glass according to the present utility model;
FIG. 3 is a schematic diagram of a rotary motor of a cutting device for AG anti-glare glass according to the present utility model;
Fig. 4 is a schematic view of a mounting bar of a cutting device for AG anti-glare glass according to the present utility model.
The device comprises a storage plate 1, a plug hole 2, a pressing rod 3, a sliding block 4, a sliding block 5, a laser cutting machine 6, a fixed rod 8, an assembly block 9, a supporting frame 10, a sliding guide rail 11, a rear supporting leg 12, a roll-over stand 13, a rotating rod 14, an extraction rod 15, a rotating motor 16, a front supporting leg 17, an installation strip 18, an air extraction device 19, a lifting block 21, a sliding groove 22, a sliding block 23, a pushing rotating rod 24, a laser cutting head 25, a telescopic rod 26 and a vacuum chuck.
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.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Embodiment one: 1-4, a cutting device for AG anti-glare glass comprises a storage plate 1 and a roll-over stand 12, wherein a plurality of mounting bars 17 are fixedly arranged on one side surface of the roll-over stand 12, a plurality of air extraction devices 18 are fixedly arranged on the mounting bars 17, an extraction rod 14 is slidably arranged in the air extraction devices 18, a lifting block 19 is fixedly arranged at the upper end of the extraction rod 14, a telescopic rod 25 is fixedly arranged at the other end of the extraction rod 14 far away from the lifting block 19, an assembling block 8 is fixedly arranged at the lower end of the telescopic rod 25, a vacuum sucker 26 is fixedly arranged at the lower end of the assembling block 8, when the glass is required to be cut after the glass is initially produced, the glass is required to be cut, the four corners of the vacuum sucker 26 are aligned with the glass, under the lifting action of the lifting block 19 by sequentially lifting the plurality of lifting blocks 19 positioned above, the air in the air extraction device 18 can be compressed out by the extraction rod 14, the vacuum suction disc 26 positioned below is ensured to be adsorbed on the surface of glass in vacuum, the telescopic rod 25 positioned at the lower end can be stretched under the lifting of the extraction rod 14, the position of the assembly block 8 arranged at the lower end is ensured to be fixed, the extraction rod 14 is prevented from being extracted from the air extraction device 18, the vacuum suction disc 26 is ensured to realize better adsorption effect on the glass, the installation strip 17 is fixedly arranged at one side of the roll-over stand 12, the installation strip 17 can be horizontally turned over while the roll-over stand 12 is turned over, the vacuum suction disc 26 originally positioned below is turned over the object placing plate 1, the subsequent cutting work can be carried out, the link that the glass is placed on the cutting device is omitted, the upper cutting work can be directly carried out after the glass production is finished, greatly improves the efficiency of glass cutting.
As shown in fig. 1-4, the lower surface of the object placing plate 1 is fixedly provided with a rotating motor 15, at least two rotating motors 15 are fixedly connected with rotating rods 13 at the output ends of the rotating motors 15, one ends of the rotating rods 13 are fixedly provided with turnover frames 12, after the glass is adsorbed, the rotating rods 13 fixedly connected with the output ends are slowly rotated by opening the rotating motors 15, so that the turnover frames 12 arranged at one ends of the rotating rods 13 are driven to turn over, a power source is provided for turning over the upper sheets of the glass, and the effect of automatically feeding the sheets is achieved.
As shown in fig. 1-4, the sliding grooves 21 are formed on two side surfaces of the object placing plate 1, the sliding blocks 22 are slidably mounted in the sliding grooves 21, the supporting frame 9 is fixedly mounted on one side surface of the sliding blocks 22, the sliding guide rail 10 is formed on two side surfaces of the supporting frame 9, the sliding block 4 is slidably mounted in the sliding guide rail 10, the laser cutting machine 5 is fixedly mounted on one side surface of the sliding block 4, after the glass is overturned to the upper side of the object placing plate 1 by the roll-over frame 12, the sliding track of the sliding blocks 22 in the sliding grooves 21 can be changed, the sliding guide rail 10 and the sliding block 4 formed in the supporting frame 9 can move transversely, the laser cutting machine 5 mounted on one side surface can move longitudinally according to the running track of the sliding block 4 in the sliding guide rail 10, the transverse and longitudinal multi-directional movement is realized by the sliding blocks 22 and the sliding grooves 21 arranged below, and the overall flexibility of the laser cutting machine 5 positioned above is ensured.
In the second embodiment, as shown in fig. 1-4, a fixed rod 6 is fixedly installed on the lower surface of a laser cutter 5, a pressing rod 3 is slidably installed at the lower end of the fixed rod 6, a laser cutting head 24 is fixedly installed at the lower end of the pressing rod 3, a pushing and pressing rod 23 is rotatably installed on one side surface of the laser cutter 5, after the glass is placed at the upper end of a storage plate 1, the laser cutter 5 is adjusted to a proper position, the pressing rod 3 inside the fixed rod 6 is pushed out downwards by twisting the pushing and pressing rod 23, and the laser cutting head 24 at the bottommost part is contacted with the surface of the glass while the pressing rod 3 is pushed out downwards, so that the cutting effect of the glass is realized.
As shown in fig. 1-4, the upper surface of the object placing plate 1 is provided with a plugging hole 2, the lower surface of the object placing plate 1 is fixedly provided with a rear supporting leg 11, the lower surface of the rotating motor 15 is fixedly provided with a front supporting leg 16, the plugging hole 2 can be plugged with the air extraction device 18, a stable plugging structure can be formed with the overturning frame 12 while the overturning frame is overturned, the glass is ensured not to deviate in position in the cutting process, the front supporting leg 16 is arranged, the rear supporting leg 11 can form a stable supporting structure, and the flatness of the whole cutting device is ensured.
Working principle: when the glass is required to be cut after the primary production is finished, the glass to be cut is placed at the lower end of the vacuum chuck 26, the four corners of the vacuum chuck 26, which are aligned with the glass, are sequentially lifted to form a plurality of lifting blocks 19 positioned above, under the lifting action of the lifting blocks 19, the air in the air extraction device 18 is compressed by the extraction rod 14, the vacuum chuck 26 positioned below is ensured to be adsorbed on the surface of the glass in vacuum, the telescopic rod 25 positioned at the lower end is telescopic under the lifting action of the extraction rod 14, the position of the assembly block 8 arranged at the lower end is ensured to be fixed, the extraction rod 14 is prevented from being extracted from the air extraction device 18, the vacuum chuck 26 is ensured to realize better adsorption action on the glass, the installation strip 17 is fixedly arranged at one side of the turnover frame 12, the installation bar 17 can also horizontally turn over the turnover frame 12 to turn over the vacuum suction disc 26 originally positioned below to the upper part of the object placing plate 1, so that the subsequent cutting work can be carried out, the step of placing glass on the cutting device is omitted, the cutting work of the upper piece can be directly carried out after the glass is produced, the efficiency of glass cutting is greatly improved, the turnover frame 12 installed at one end of the turnover frame 13 is driven to turn over by opening the rotating motor 15 to provide a power source for the turnover of the upper piece of the glass, the effect of automatic upper piece is realized, after the glass is turned over to the upper part of the object placing plate 1 through the turnover frame 12, the sliding track of the sliding block 22 in the sliding groove 21 is changed, the position change of the supporting frame 9 is changed, the sliding guide rail 10 and the sliding block 4 which are arranged in the supporting frame 9 can be transversely moved, the laser cutting machine 5 that can make its install in a side surface carries out longitudinal movement according to the inside moving track of slider 4 at the slip guided way 10, this has realized violently indulging multi-direction motion with slider 22 and the sliding tray 21 that the below set up, the whole flexibility of laser cutting machine 5 that has ensured to be located the top, place the upper end of putting thing board 1 at glass, after the laser cutting machine 5 adjusts suitable position, push out the depression bar 3 of dead lever 6 inside downwards through twisting bulldozing bull stick 23, the laser cutting head 24 that is located the bottommost can contact the surface of glass when depression bar 3 pushes out downwards, and then realize the effect to its cutting.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.