Metal cutting device with orthotic devices
Technical Field
The utility model belongs to the technical field of metal cutting, and particularly relates to a metal cutting device with a correction device.
Background
The metal cutting is a material removing and shaping method in a metal forming process, and still occupies a large proportion in the current mechanical manufacturing, the metal cutting process is a process of interaction of a workpiece and a cutter, the cutter cuts redundant metal from the workpiece to be processed, and on the premise of controlling the productivity and the cost, the workpiece obtains geometric precision, dimensional precision and surface quality meeting the design and process requirements, and in order to realize the process, the workpiece and the cutter need to have relative motion, namely cutting motion, the relative motion is provided by a metal cutting machine tool, and the machine tool, the clamp, the cutter and the workpiece form a mechanical processing process system, and various phenomena and rules of the metal cutting process are studied in the motion state of the system.
The metal plate can appear bending in long-term heap pressure, and the metal plate also can lead to cutting precision inaccurate because of the dysmorphism of department of bending often in the cutting, and most is directly correcting through the mode that the hammer beaten when solving the metal plate of bending moreover, but this kind of correction mode not only can not make the metal plate accurately correct, can also lead to the metal plate surface to appear sunken or fall lacquer etc. moreover, consequently we propose a metal cutting device with orthotic devices.
Disclosure of utility model
Aiming at the problems existing in the prior art, the utility model aims to provide a metal cutting device with a correcting device, which corrects a bent metal plate through a correcting component, prevents poor correcting effect of the metal plate, prevents paint from falling on the surface of the metal plate, cuts the corrected metal plate through a cutting component, thereby cutting the metal plate to the required length, and finally collects scraps generated when the metal plate is cut through a cleaning component.
The utility model is realized in such a way, the metal cutting device with the correcting device comprises a bottom plate, the top of the right side of the bottom plate is fixedly provided with a connecting plate, the right side of the front side of the connecting plate is fixedly provided with a connecting block, the top of the connecting block is provided with an entering groove, both sides of the bottom of the connecting block are provided with correcting components for correcting metal, the top of the bottom plate is provided with a cutting component for cutting metal, the top of the bottom plate is provided with a placing groove, and the top of the bottom plate is provided with a collecting component for collecting metal scraps.
Optionally, the correction subassembly includes the correction board, the bottom fixedly connected with splint of correction board top, the front side fixedly connected with fixed block at fixed block top, the front side of fixed block bottom is provided with the screw rod, the right-hand member of screw rod runs through to one of them a set of the right side of fixed block, the left end of screw rod runs through to another set of the left side of fixed block, screw rod and two sets of fixed block threaded connection, the left end fixedly connected with first motor of screw rod, the top of first motor and the bottom fixed connection of connecting block.
Optionally, the front side and the rear side at correction board top all fixedly connected with stopper, the spacing groove with stopper sliding connection has all been seted up to the front side and the rear side of connecting block bottom.
Optionally, the cutting assembly is including placing the board, place the top fixed connection of the bottom of board and bottom plate, the left side fixedly connected with telescopic cylinder of board, telescopic cylinder telescopic end fixedly connected with U type frame, the inside of U type frame is connected with the cutting dish through the pivot rotation, the bottom fixedly connected with second motor of U type frame, the output of second motor and the bottom fixed connection of cutting dish.
Optionally, the left side fixedly connected with spacing of placing plate, spacing and U type frame sliding connection.
Optionally, the collection assembly includes air inlet fans, the quantity of air inlet fans is three, the air inlet fans is located the inside of standing groove, the air inlet fans is connected with the standing groove through pivot rotation.
Optionally, the both sides of standing groove inner wall are all fixedly connected with baffle, the inside of standing groove is provided with the filter screen, the bottom of filter screen and the top contact of baffle.
Through the setting of correcting the subassembly, when placing the metal sheet that will need correct through getting into the groove and correcting the subassembly inside, can drive the screw rod and rotate when starting first motor this moment, can drive the fixed block and remove to one side that is close to each other when the screw rod rotates, the fixed block removes and can drive splint and correct the board simultaneously to one side that is close to each other along with this, when the inboard and the metal sheet contact of splint, can continue to let splint to remove to the inboard this moment, when the pressure of splint reaches the certain degree, can correct the metal sheet of bending this moment. Through the setting of cutting assembly, when needs cut the use to the metal sheet after correcting, at first mark the required length of metal sheet through the scale, then continue to be spacing to the metal sheet through the clamping force of splint, then can start the second motor and drive the cutting dish and rotate, then can start flexible cylinder, flexible end of flexible cylinder can drive U type frame, cutting dish and second motor and remove to can cut the metal sheet. Through the setting of collecting the subassembly, the metal sheet can produce more sweeps when cutting, and the accessible external power supply starts the air inlet fan before cutting the metal sheet, and air inlet fan can extract external air this moment, and the sweeps that the metal sheet produced when cutting also can enter into the standing groove inside under the effect of air inlet fan to can collect the clearance with the sweeps that produce when cutting.
Other features of the present utility model and its advantages will become apparent from the following detailed description of exemplary embodiments of the utility model, which proceeds with reference to the accompanying drawings.
Drawings
FIG. 1 is a schematic view of the top structure of a base plate provided by the present utility model;
FIG. 2 is a bottom exploded view of the present utility model providing a connection block;
FIG. 3 is an exploded view of a floor provided by the present utility model;
Fig. 4 is an enlarged view of fig. 2a in accordance with the present utility model.
The device comprises a base plate 1, a connecting plate 2, a connecting plate 3, a connecting block 4, an entering groove 5, a correcting component 51, a correcting plate 52, a clamping plate 53, a fixing block 54, a screw rod 55, a first motor 56, a limiting block 57, a limiting groove 6, a cutting component 61, a placing plate 62, a telescopic cylinder 63, a U-shaped frame 64, a cutting disc 65, a second motor 66, a limiting frame 7, a placing groove 8, a collecting component 81, an air inlet fan 82, a baffle plate 83 and a filter screen.
Detailed Description
For a further understanding of the utility model, its features and advantages, reference is now made to the following examples, which are illustrated in the accompanying drawings.
As shown in fig. 1 to 4, the metal cutting device with the correction device provided by the embodiment of the utility model comprises a bottom plate 1, wherein a connecting plate 2 is fixedly arranged at the top of the right side of the bottom plate 1, a connecting block 3 is fixedly arranged at the right side of the front side of the connecting plate 2, an entering groove 4 is formed at the top of the connecting block 3, correction components 5 for correcting metal are arranged at two sides of the bottom of the connecting block 3, a cutting component 6 for cutting metal is arranged at the top of the bottom plate 1, a placing groove 7 is formed at the top of the bottom plate 1, and a collecting component 8 for collecting metal scraps is formed at the top of the bottom plate 1.
Specifically, as shown in fig. 1 and fig. 4, the metal plate to be corrected can be put into the groove 4 through the groove, when the position of the metal plate to be corrected falls and moves into the correction component 5, the metal plate can be corrected through the correction component 5, the corrected metal plate can be in a vertical state, if the metal plate is required to be cut for use, the metal plate can be positioned through the clamping force of the correction component 5, then the metal plate is marked with the required length through the graduated scale, finally the metal plate is cut through the cutting component 6, and scraps generated by the metal plate can be collected intensively by the collecting component 8 for cleaning, so that the scraps are prevented from floating in the air.
Further, the correction assembly 5 comprises a correction plate 51, a clamping plate 52 is fixedly connected to the bottom of the correction plate 51, a fixing block 53 is fixedly connected to the front side of the top of the correction plate 51, a screw 54 is arranged on the front side of the bottom of the fixing block 53, the right end of the screw 54 penetrates through the right side of one group of fixing blocks 53, the left end of the screw 54 penetrates through the left side of the other group of fixing blocks 53, the screw 54 is in threaded connection with the two groups of fixing blocks 53, a first motor 55 is fixedly connected to the left end of the screw 54, and the top of the first motor 55 is fixedly connected with the bottom of the connecting block 3.
Specifically, as shown in fig. 1 and fig. 4, when the metal plate to be corrected is placed into the correction assembly 5 through the inlet groove 4, the screw 54 can be driven to rotate when the first motor 55 is started, the fixing block 53 can be driven to move to the side close to each other when the screw 54 rotates, the fixing block 53 moves to drive the clamping plate 52 and the correction plate 51 to move to the side close to each other at the same time, when the inner side of the clamping plate 52 is contacted with the metal plate, the clamping plate 52 can be continuously moved inwards at this time, and when the pressure of the clamping plate 52 reaches a certain degree, the bent metal plate can be corrected at this time.
Further, the front side and the rear side at the top of the correcting plate 51 are fixedly connected with limiting blocks 56, and limiting grooves 57 which are in sliding connection with the limiting blocks 56 are formed in the front side and the rear side at the bottom of the connecting block 3.
Specifically, as shown in fig. 1 and fig. 4, the correction plate 51 may also rotate under the influence of the screw 54, and at this time, by means of the cooperation of the limiting block 56 and the limiting groove 57, the correction plate 51 may be effectively moved in a straight line, so as to prevent the correction plate 51 and the clamping plate 52 from being unable to correct the bent metal plate.
Further, the cutting assembly 6 comprises a placing plate 61, the bottom of the placing plate 61 is fixedly connected with the top of the bottom plate 1, the left side of the placing plate 61 is fixedly connected with a telescopic cylinder 62, the telescopic end of the telescopic cylinder 62 is fixedly connected with a U-shaped frame 63, the inside of the U-shaped frame 63 is rotatably connected with a cutting disc 64 through a shaft pin, the bottom of the U-shaped frame 63 is fixedly connected with a second motor 65, and the output end of the second motor 65 is fixedly connected with the bottom of the cutting disc 64.
Specifically, as shown in fig. 1 and fig. 4, when the corrected metal plate needs to be cut, the length required by the metal plate is marked by the graduated scale, then the clamping force of the clamping plate 52 is continuously used for limiting the metal plate, then the second motor 65 can be started to drive the cutting disc 64 to rotate, then the telescopic cylinder 62 can be started, and the telescopic end of the telescopic cylinder 62 can drive the U-shaped frame 63, the cutting disc 64 and the second motor 65 to move, so that the metal plate can be cut.
Further, a limiting frame 66 is fixedly connected to the left side of the placement plate 61, and the limiting frame 66 is slidably connected with the U-shaped frame 63.
Specifically, as shown in fig. 1 and 4, when the cutting disc 64 cuts the metal plate, a large force is generated, and the U-shaped frame 63 is limited only by the telescopic cylinder 62, so that the telescopic cylinder 62 and the placement plate 61 may be separated after long-term use, and the cutting disc 64 cannot cut the metal plate.
Further, the collection assembly 8 includes three air inlet fans 81, the air inlet fans 81 are located in the placement groove 7, and the air inlet fans 81 are rotatably connected with the placement groove 7 through shaft pins.
Specifically, as shown in fig. 1 and fig. 4, more scraps are generated when the metal plate is cut, the air inlet fan 81 is started by the external power supply before the metal plate is cut, at this time, the air inlet fan 81 can extract outside air, and scraps and the like generated when the metal plate is cut can enter the placing groove 7 under the action of the air inlet fan 81, so that the scraps generated when the metal plate is cut can be collected and cleaned.
Further, baffle 82 is fixedly connected to both sides of the inner wall of the placing groove 7, a filter screen 83 is arranged in the placing groove 7, and the bottom of the filter screen 83 is in contact with the top of the baffle 82.
Specifically, as shown in fig. 1 and fig. 4, the filter screen 83 is placed on top of the baffle 82, and at this time, when external scraps enter the placing groove 7, all the scraps fall on top of the filter screen 83, so that the scraps can be prevented from entering the air inlet fan 81, the air inlet fan 81 is damaged, and after the metal plate is cut, the filter screen 83 can be pulled to the top to pour out the scraps, so that the scraps are prevented from being blocked.
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.