Cutting device for steel packaging paper-plastic composite antirust material
Technical Field
The utility model relates to a tailor the device field, especially relate to a compound antirust material's device of tailorring is moulded to steel packaging paper.
Background
In the production process of enterprise, compound antirust material is moulded to a lot of steel packing paper is all the bundle from the delivery time, compound antirust material is moulded to the steel packing paper of bundle will do earlier and tailor the processing before using, mould compound antirust material and tailor the process to the steel packing paper of bundle and generally be through the manual pay-off of operator, extravagant manpower, in addition cut the phenomenon that the in-process takes place the material to curl easily, the material that leads to cutting out can not directly use and cause the waste, and the cutter generally is controlled by manpower or motor alone among the prior art, and the change-over roller is controlled by other motors, the supply with of waiting to cut out the material is two independent processes with tailorring, be difficult to control, the condition that supply speed and cutting speed mismatch lead to the material waste appears easily.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a compound antirust material's of steel packaging paper device of tailorring is moulded to solve the problem that above-mentioned prior art exists.
In order to achieve the above object, the utility model provides a following scheme: the utility model provides a cutting device for steel packaging paper-plastic composite antirust materials, which comprises a workbench, wherein two rotating rollers and a material roller are arranged on the workbench, the two rotating rollers and the material roller are arranged in parallel, a first transmission belt is connected between the two rotating rollers, a motor and a first rotating shaft are arranged below the workbench, a second transmission belt is connected between the output shaft of the motor and any one of the rotating rollers, a third transmission belt is arranged between the output shaft of the motor and the first rotating shaft, two conical wheels with adjustable intervals are respectively arranged on the output shaft of the first rotating shaft and the output shaft of the motor, the inclined planes of the two conical wheels are oppositely arranged, the third transmission belt is positioned between the two conical wheels, a cutting roller is arranged in parallel between the two rotating rollers, and a fourth transmission belt is connected between the cutting roller and the first rotating shaft, a plurality of cutters are fixedly arranged on the arc surface of the cutting roller along the axial direction, and the cutting edge directions of the cutters are parallel to the cutting roller.
Preferably, the conical wheel on the output shaft of the motor is divided into a second movable wheel and a second fixed wheel, the second movable wheel is arranged away from the motor, a movable support is arranged on one side, away from the motor, of the second movable wheel, a roller is connected onto the movable support in a shaft-coupling mode, the roller is abutted against the flat side face of the second movable wheel, and a telescopic ejector rod is arranged on one side, away from the roller, of the movable support; can adjust second removal wheel and second fixed wheel interval through the position that changes movable support, and then change the drive ratio.
Preferably, the last cone pulley of first axis of rotation divide into first removal wheel and first tight pulley, first removal wheel with the second removes the wheel setting and is in the different sides of third drive belt, the fixed disk that is provided with in one side that first tight pulley was kept away from to first removal wheel, be provided with the spring between fixed disk and the first removal wheel, can make first removal wheel automatic adjustment and the first tight pulley under the effect of spring and third drive belt apart from between, the cooperation second removes the change that wheel and second tight pulley accomplished the drive ratio.
Preferably, the inner walls of the first moving wheel and the second moving wheel are provided with sliding grooves, and the output shaft of the motor and the first rotating shaft are provided with protrusions matched with the sliding grooves along the axial direction, so that the first moving wheel and the second moving wheel can slide in the axial direction.
Preferably, the roller runs through with the cutting roller center and is provided with the second axis of rotation, second axis of rotation both sides are provided with the fixed bolster respectively, second axis of rotation and fixed bolster coupling, fixed bolster and workstation fixed connection utilize the fixed bolster to support the roller with the cutting roller, guarantee cutting device's normal operating.
Preferably, the material roller runs through along the axis and is provided with the third axis of rotation, third axis of rotation both ends are provided with the support column, the U-shaped logical groove has been seted up to the support column upper surface, the third axis of rotation sets up at the logical inslot of U-shaped, conveniently changes the material roller.
Preferably, the material roller is not in contact with the workbench, the distance between the rotary roller and the working face is not larger than the thickness of the material to be cut, the rotary roller is guaranteed to drive the material to be cut to feed when rotating, the distance between the cutting roller and the workbench is equal to the height of the cutter, the cutter is guaranteed to be capable of cutting right, and the workbench is not collided.
Preferably, the workbench working surface is a smooth and flat surface, so that the friction between the material to be cut and the workbench is reduced, and the material to be cut is conveniently driven to move by the rotary roller.
The utility model discloses a following technological effect: the utility model flattens the material by arranging two rotating rollers, and prevents the material to be cut from tilting and bending; the motor drives the two rotary rollers to rotate so as to enable the material to be cut on the material roller to move, and simultaneously the motor drives the cutting roller to rotate so as to drive the cutter to rotate to cut the material; the conical wheels are arranged on the first rotating shaft and the motor shaft, the position of the second moving wheel is changed by adjusting the position of the moving support, so that the moving arc of the third conveyor belt is changed, the first moving wheel is also adjusted under the action of the spring and the third conveyor belt, the transmission ratio is changed, and the cutting speed of the cutter is changed; the utility model can simultaneously control the movement of the rotary roller and the cutter by the same motor, so that the problem of different material sizes caused by unmatched material feeding and cutting can be avoided, the sizes of the cut materials are the same no matter the rotating speed of the motor is high or low, the speed of the cutter is convenient to change, and the cutting length is further changed; the utility model discloses novel structure, the simple operation.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive labor.
FIG. 1 is a schematic structural view of the cutting device of the present invention;
FIG. 2 is a schematic view of the structure of the cone-shaped wheel of the present invention;
fig. 3 is a rear view of the movable support of the present invention;
fig. 4 is a side view of the movable support of the present invention;
wherein: 1-workbench, 2-rotating roller, 3-material roller, 4-first transmission belt, 5-motor, 6-second transmission belt, 7-first rotating shaft, 8-third transmission belt, 9-conical wheel, 10-cutting roller, 11-cutter, 12-second fixed wheel, 13-second movable wheel, 14-movable support, 15-roller, 16-telescopic ejector rod, 17-fixed disk, 18-spring, 19-second rotating shaft, 20-fixed support, 21-fourth transmission belt, 22-first movable wheel, 23-first fixed wheel, 24-third rotating shaft and 25-supporting column.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In order to make the above objects, features and advantages of the present invention more comprehensible, the present invention is described in detail with reference to the accompanying drawings and the detailed description.
Referring to fig. 1-4, the utility model provides a cutting device for steel packaging paper-plastic composite antirust material, which comprises a workbench 1, wherein the workbench 1 is provided with two rotating rollers 2 and a material roller 3, the two rotating rollers 2 and the material roller 3 are arranged in parallel, a first transmission belt 4 is connected between the two rotating rollers 2, a motor 5 and a first rotating shaft 7 are arranged below the workbench 1, a second transmission belt 6 is connected between an output shaft of the motor 5 and any one rotating roller 2, a third transmission belt 8 is arranged between the output shaft of the motor 5 and the first rotating shaft 7, two conical wheels 9 with adjustable intervals are respectively arranged on the first rotating shaft 7 and the output shaft of the motor 5, inclined planes of the two conical wheels 9 are oppositely arranged, the third transmission belt 8 is positioned between the two conical wheels 9, a cutting roller 10 is arranged in parallel between the two rotating rollers 2, a fourth transmission belt 21 is connected between the cutting roller 10 and the first rotating shaft 7, a plurality of cutters 11 are axially and fixedly arranged on the arc surface of the cutting roller 10; drive two change roller 2 through motor 5 and rotate, and then drive the feed motion of waiting to cut out the material, drive the rotation of first axis of rotation 7 through motor 5 and then drive cutting roller 10 and rotate to realize cutting out work, through setting up cutter 11 on cutting roller 10, prevent that cutter 11 from producing the interference with waiting to cut out the material in the cutting process.
According to the further optimization scheme, the conical wheel 9 on the output shaft of the motor 5 is divided into a second movable wheel 13 and a second fixed wheel 12, the second movable wheel 13 is arranged far away from the motor 5, a movable support 14 is arranged on one side, far away from the motor 5, of the second movable wheel 13, a roller 15 is connected onto the movable support 14 in a shaft coupling mode, the roller 15 abuts against the flat side face of the second movable wheel 13, and a telescopic ejector rod 16 is arranged on one side, far away from the roller 15, of the movable support 14; under the effect of movable support 14, can adjust the distance between second movable wheel 13 and second fixed wheel 12, make the position of third drive belt 8 adjust, the setting of gyro wheel 15 has guaranteed that second movable wheel 13 can not produce great friction with movable support 14 in the rotation process, reduce wearing and tearing.
In a further optimization scheme, the conical wheel 9 on the first rotating shaft 7 is divided into a first moving wheel 22 and a first fixed wheel 23, the first moving wheel 22 and the second moving wheel 13 are arranged on different sides of the third transmission belt 8, a fixed disc 17 is fixedly arranged on one side of the first moving wheel 22, which is far away from the first fixed wheel 23, and a spring 18 is arranged between the fixed disc 17 and the first moving wheel 22; after the position of the third transmission belt 8 is changed, the first moving wheel 22 automatically adjusts under the combined action of the third transmission belt 8 and the spring 18, and the change of the transmission ratio is completed by matching the second moving wheel 13 and the second fixed wheel 12, so that the relative rotating speed of the cutting roller 10 and the rotating roller 2 is changed, and the cutting length is changed.
Further optimize the scheme, seted up the spout on first removal wheel 22 and the second removes the wheel 13 inner wall, be provided with the arch with spout looks adaptation along the axial direction on the output shaft of motor 5 and the first axis of rotation 7, make first removal wheel 22 and second remove wheel 13 and can remove along the axial to influence the drive ratio.
Further optimize the scheme, change roller 2 and cutting roller 10 center and run through and be provided with second axis of rotation 19, the 19 both sides of second axis of rotation are provided with fixed bolster 20 respectively, and second axis of rotation 19 and fixed bolster 20 coupling, fixed bolster 20 and workstation 1 fixed connection play the supporting role to changeing roller 2 and cutting roller 10, guarantee to tailor the normal operating of device.
Further optimize the scheme, material roller 3 runs through along the axis and is provided with third axis of rotation 24, and third axis of rotation 24 both ends are provided with support column 25, and the U-shaped logical groove has been seted up to support column 25 upper surface, and third axis of rotation 24 sets up at the logical inslot of U-shaped, makes things convenient for material roller 3 to dismantle and change after the use finishes.
Further optimize the scheme, material roller 3 and workstation 1 contactless, change the distance between roller 2 and the working face and be not more than waiting to cut out material thickness, guaranteed to wait to cut out the material and realize the slip on workstation 1 under the effect of changeing roller 2, the distance between cutting roller 10 and the workstation 1 is highly equal with cutter 11, has guaranteed that cutter 11 can not collide with workstation 1 and cause the damage in the cutting process.
Further optimizing the scheme, the working surface of the workbench 1 is a smooth and flat surface, so that the friction force between the material to be cut and the workbench 1 is reduced, and the material to be cut can conveniently move under the action of the rotating roller 2.
The utility model discloses a working process: the motor 5 is started, the motor 5 drives the two rotating rollers 2 to rotate through the first transmission belt 4, the rotating rollers 2 flatten the material to be cut and convey the material forward, meanwhile, the motor 5 drives the first rotating shaft 7 to rotate through the third transmission belt 8 so as to drive the cutting roller 10 to rotate, and the cutting knife 11 on the cutting roller 10 cuts the material to be cut; when the material on the material roller 3 is insufficient, the material roller 3 is taken down and replaced by a new material roller 3 to continue working; when the cutting length needs to be changed, the position of the movable support 14 is adjusted, so that the second movable wheel 13 moves, the position of the third transmission belt 8 also changes, the length of the third transmission belt 8 is fixed, the position of the first movable wheel 22 is automatically adjusted under the action of the third transmission belt 8 and the spring 18, the moving arc of the third transmission belt 8 changes, the transmission ratio changes, the relative rotating speed between the first rotating shaft 7 and the output shaft of the motor 5 is changed, the rotating speed of the cutting roller 10 is adjusted, the change of the cutting speed is realized, and the cutting length is further changed.
In the description of the present invention, it is to be understood that the terms "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are merely for convenience of description of the present invention, and do not indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
The above-mentioned embodiments are only intended to describe the preferred embodiments of the present invention, but not to limit the scope of the present invention, and those skilled in the art should also be able to make various modifications and improvements to the technical solution of the present invention without departing from the spirit of the present invention, and all such modifications and improvements are intended to fall within the scope of the present invention as defined in the appended claims.