CN221271297U - Bevel edge cutting machine - Google Patents

Bevel edge cutting machine Download PDF

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Publication number
CN221271297U
CN221271297U CN202323344928.5U CN202323344928U CN221271297U CN 221271297 U CN221271297 U CN 221271297U CN 202323344928 U CN202323344928 U CN 202323344928U CN 221271297 U CN221271297 U CN 221271297U
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CN
China
Prior art keywords
frame
cutter
roller
bevel edge
sides
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Active
Application number
CN202323344928.5U
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Chinese (zh)
Inventor
韩占虎
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Hebei Shengyate Building Materials Co ltd
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Hebei Shengyate Building Materials Co ltd
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Priority to CN202323344928.5U priority Critical patent/CN221271297U/en
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Abstract

The utility model discloses a bevel edge cutting machine which comprises a frame, wherein a conveying crawler belt is arranged on the frame, a supporting plate extending forwards is arranged at the front end of the frame, a synchronous belt linear module is transversely arranged on the extending frame, a mounting plate is arranged forwards on a sliding block of the synchronous belt linear module, inclined plates are symmetrically arranged at the lower end of the mounting plate, a servo motor is arranged on one side of each inclined plate, which is opposite to each other, a cutter is arranged on a rotating shaft of the servo motor, and the two cutters are arranged in a crossing mode. According to the utility model, the conveying crawler belt is arranged on the frame, the cutter capable of reciprocating is arranged at the front end of the frame, the coiled material is placed along the supporting plate, and the rotating cutter is controlled to move transversely along the frame, so that automatic cutting work of the edge bevel edge of the coiled material is realized, and the two groups of cutters with opposite directions work together, so that the cutting of the symmetrical bevel edge on two sides of the coiled material can be realized, excessive manual operation is not required in the whole process, the workload of workers is reduced, and the cutting quality of the coiled material can be ensured.

Description

Bevel edge cutting machine
Technical Field
The utility model relates to the technical field of coiled material processing equipment, in particular to a bevel cutting machine.
Background
The waterproof coiled material is mainly used for building walls, roofs, tunnels, roads, refuse landfill sites, pipelines and the like, plays a role in resisting external rainwater and groundwater leakage, is a coiled flexible building material product, is used for wrapping coiled materials outside the pipelines according to different use requirements, needs to cut two sides of the coiled materials into bevel edges, is placed on a cutting table in the past when the coiled materials are deeply processed, and then is manually cut by using a cutting tool, so that the whole process is not only manually operated by workers, but also is difficult to grasp the cutting regularity, and the whole production quality of the coiled materials is affected.
Disclosure of utility model
The utility model aims to avoid the defects of the prior art and provides a bevel cutting machine, thereby effectively solving the defects in the prior art.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows: the oblique limit guillootine, including the house body, which comprises a frame, be provided with the conveyor track in the frame, the front end of frame is provided with the extension frame, be provided with the layer board that extends forward on the extension frame, the layer board with the up end parallel and level of conveyor track, transversely there is hold-in range straight line module on the extension frame, hold-in range straight line module erects the upper end of layer board, be provided with the mounting panel forward on the slider of hold-in range straight line module, the bilateral symmetry of mounting panel lower extreme is provided with the hang plate, and the orientation of both sides hang plate is opposite, is provided with servo motor on the hang plate in one side of being on the back of each other, be provided with the cutter in servo motor's the axis of rotation, two the cutter cross arrangement each other is provided with along transversely dodging the mouth in the position of corresponding the cutter lower edge on the layer board.
Further, the extension frame with the left side of layer board is provided with respectively to the fixed plate that the cutter below extends, be provided with the nozzle tip that is used for spraying isolation oil on the fixed plate, the nozzle of nozzle tip is towards the lower edge of cutter, and the lower extreme of nozzle tip is provided with oil pipe.
Further, the lifting air cylinders are arranged at positions on the extending frames, corresponding to the two sides of the supporting plate, the piston rods of the lifting air cylinders are vertically upwards arranged, the pressing plates are arranged at the upper ends of the piston rods of the lifting air cylinders, and are located at the rear sides of the cutters and transversely arranged above the supporting plate.
Further, a first press roller is further arranged at the front end of the frame at a position corresponding to the upper part of the conveying track, and the first press roller is installed on the frame in a lifting manner.
Further, the both sides of frame front end are provided with the installing frame, be provided with the movable block that can slide from top to bottom in the installing frame, first compression roller is installed between the movable block of both sides, and the top of installing frame is provided with adjusting screw, adjusting screw's lower extreme and the top swing joint of movable block.
Further, a driving roller is arranged between the lower ends of the mounting frames, a driven roller is arranged at the rear end of the frame, the conveying crawler belt surrounds the outer sides of the driving roller and the driven roller, a transmission motor is arranged on the frame at a position below the mounting frame on the corresponding side, driving wheels are arranged on rotating shafts of the transmission motor and the roller shafts of the driving roller, and the two driving wheels are connected through a driving belt.
Further, a second press roller is arranged above the driven roller, and the second press roller is installed on the installation frame in a turnover mode.
Further, the upper end of installing frame at its rear side is provided with the turnover rod, the one end and the installing frame of turnover rod are articulated, and the other end slope of turnover rod is downwards and towards the rear end extension of carrying the track, the second compression roller is installed between the tip of two turnover rod downward inclinations, still is provided with the gangbar between the turnover rod of both sides.
Further, the frame is provided with a guide roller at a position corresponding to the rear side of the conveying track.
The technical scheme of the utility model has the following beneficial effects: according to the utility model, the conveying crawler belt is arranged on the frame, the cutter capable of reciprocating is arranged at the front end of the frame, the coiled material is placed along the supporting plate, and the rotating cutter is controlled to move transversely along the frame, so that automatic cutting work of the edge bevel edge of the coiled material is realized, and the two groups of cutters with opposite directions work together, so that the cutting of the symmetrical bevel edge on two sides of the coiled material can be realized, excessive manual operation is not required in the whole process, the workload of workers is reduced, and the cutting quality of the coiled material can be ensured.
Drawings
FIG. 1 is a schematic perspective view of a front view of an embodiment of the present utility model;
FIG. 2 is a schematic perspective view of a rear view of an embodiment of the present utility model;
FIG. 3 is a schematic view of a partial structure of a pallet according to an embodiment of the present utility model;
FIG. 4 is a schematic plan view of a web cut in accordance with an embodiment of the present utility model;
FIG. 5 is a schematic cross-sectional view of a cut web of an embodiment of the present utility model.
Detailed Description
In order that the above-recited objects, features and advantages of the present utility model can be more clearly understood, a more particular description of the utility model will be rendered by reference to specific embodiments thereof which are illustrated in the appended drawings, it being understood that embodiments of the utility model and features of the embodiments may be combined with each other without departing from the scope of the appended claims.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model, but the present utility model may be practiced otherwise than as described herein, and therefore the scope of the present utility model is not limited to the specific embodiments disclosed below.
As shown in fig. 1-3, the bevel cutting machine of this embodiment includes a frame 1, a conveying crawler 2 is disposed on the frame 1, an extension frame 3 is disposed at the front end of the frame 1, a supporting plate 4 extending forward is disposed on the extension frame 3, the supporting plate 4 is flush with the upper end surface of the conveying crawler 2, a synchronous belt linear module 5 is transversely disposed on the extension frame 3, the synchronous belt linear module 5 is a linear motion mechanism, which mainly includes a casing, a guide wheel and a synchronous belt are disposed in the casing, a motor is disposed outside the casing, the motor drives the guide wheel to rotate, and then the synchronous belt rotates, a slide block is disposed on the synchronous belt, the forward and backward rotation of the synchronous belt is realized through the forward and backward rotation of the motor, and then the slide block reciprocates, this structure is the prior art of maturity, specific structure is not repeated here, the hold-in range straight line module 5 erects the upper end at layer board 4, be provided with mounting panel 6 forward on the slider of hold-in range straight line module 5, the bilateral symmetry of mounting panel 6 lower extreme is provided with inclined plate 7, the orientation of both sides inclined plate 7 is opposite, be provided with servo motor 8 on one side that is on the back of each other on the inclined plate 7, be provided with cutter 9 in servo motor 8's the axis of rotation, two cutters 9 cross each other set up, the position along transversely being provided with on layer board 4 in correspondence cutter 9 lower edge dodges mouthful 4a, dodge mouthful 4 a's setting for cutter 9 can dodge mouthful 4a department and carry out reciprocating motion, and then realize the cutting work of coiled material.
The extension frame 3 is provided with the fixed plate 10 that extends to cutter 9 below respectively with the left side of layer board 4, be provided with the nozzle tip 11 that is used for spraying isolation oil on the fixed plate 10, the nozzle of nozzle tip 11 is towards the lower edge of cutter 9, the lower extreme of nozzle tip 11 is provided with oil pipe 12, be provided with the filter head on the oil pipe, this filter head is placed in the oil drum, still be provided with the oil pump on the oil pipe 11, the oil pump takes out the isolation oil in the oil drum and spouts through nozzle tip 11, nozzle tip 11 sprays the isolation oil on the pivoted cutter 9, the isolation oil can cool down cutter 9, and the coiled material piece that the isolation oil still can avoid cutting down bonds on the cutter 9.
The lifting air cylinders 13 are arranged at positions on the extending frame 3 corresponding to two sides of the supporting plate 4, piston rods of the lifting air cylinders 13 are vertically upwards arranged, pressing plates 14 are arranged at the upper ends of the piston rods of the lifting air cylinders 13, the pressing plates 14 are located on the rear sides of the cutters 9, the pressing plates 14 are transversely arranged above the supporting plate 4, when a whole coiled material is placed into the cutting machine along the supporting plate 4 and then subjected to cutting operation, the piston rods of the lifting air cylinders 13 move downwards and press the coiled material with the pressing plates 14, and therefore stability of the coiled material during cutting is guaranteed.
The front end of the frame 1 is also provided with a first press roller 15 at a position corresponding to the upper part of the conveying crawler belt 2, and the first press roller 15 is installed on the frame 1 in a lifting manner.
The both sides of frame 1 front end are provided with installing frame 16, are provided with the movable block 17 that can slide from top to bottom in the installing frame 16, and first compression roller 15 is installed between the movable block 17 of both sides, and the top of installing frame 16 is provided with adjusting screw 18, and adjusting screw 18's lower extreme and the top swing joint of movable block 17 through rotating adjusting screw 18 for movable block 17 can reciprocate in installing frame 16, and then makes first compression roller 15 can carry out the altitude mixture control according to the thickness of coiled material.
A driving roller is arranged between the lower ends of the mounting frames 16, a driven roller is arranged at the rear end of the frame 1, the conveying crawler belt 2 surrounds the outer sides of the driving roller and the driven roller, a transmission motor is arranged on the frame 1 at a position below the mounting frame 16 on the corresponding side, driving wheels 19 are arranged on the rotating shaft of the transmission motor and the roller shaft of the driving roller, and the two driving wheels 19 are connected through a driving belt 20.
The transmission motor drives the transmission wheel 19 at the end part of the transmission motor to rotate, and the transmission belt 20 is used for transmitting the transmission, so that the active roller rotates, and the rotation of the conveying crawler belt 2 is realized.
A second press roller 21 is arranged above the driven roller, and the second press roller 21 is arranged on the mounting frame 16 in a reversible manner.
The mounting frame 16 is provided with a turn bar 22 at an upper end of a rear side thereof, one end of the turn bar 22 is hinged with the mounting frame 16, the other end of the turn bar 22 is inclined downward and extends toward a rear end of the conveying track 2, the second press roller 21 is mounted between the inclined end portions of the two turn bars 22, a linkage bar 23 is further provided between the turn bars 22, the linkage bar 23 enables the turn bars 22 on both sides to perform synchronous movement, and one end with the second press roller 21 can be lifted by rotating the turn bars 22.
The frame 1 is provided with guide rollers 24 at positions corresponding to the rear sides of the conveyor tracks 2.
The working principle of the utility model is as follows: the whole coiled material is conveyed at the position of the supporting plate 4, the size to be cut is selected, after the coiled material is tiled on the supporting plate 4, the synchronous belt linear module 5 drives the sliding block on the synchronous belt linear module 5 to perform one-time transverse motion, meanwhile, the servo motor 8 on the mounting plate can drive the cutter 9 to rotate, the cutter 9 is horizontally moved, the coiled material can be cut at the position of the avoidance port 4a, thereby the coiled material is cut off and the section of the coiled material is formed into an inclined tangential surface, as shown in fig. 4, after the cutter 9 passes through the surface of the coiled material, as the cutters 9 on two sides are in a cross arrangement, the cutter 9 can cut a waste strip 26 on the coiled material of the whole piece, the end face of the broken coiled material 25 can form an inclined tangential surface, the tangential directions of the two cutters 9 are opposite, so that the tangential surfaces on two sides of the cut coiled material 25 are in a symmetrical state, the coiled material 25 after the cutting is formed is symmetrically provided with the inclined tangential surface as shown in fig. 5, the coiled material 25 after the cutting is conveyed through the conveying crawler 2, the first and the second pressing roller can be pressed on the surface of the coiled material to be covered by the cutting roller, the cut surface of the coiled material can be controlled, the cut on the continuous linear module 5 can be controlled to perform one-time, the reciprocating movement of the cut coil 25 can be carried out along the cutting roller 9, the continuous linear module 6 can be controlled to realize the reciprocating movement, the continuous movement of the coiled material is realized, the continuous cutting plate is in the cut on the surface is in the surface on the surface of the coil 9, and the cut mounting plate is subjected to the cut is subjected to the opposite a reciprocating movement 5 to the cut on the cutting surface is subjected to the cutting a reciprocating side 5 to a reciprocating cutting surface 5 to be cut can be subjected to a cut a cutting cut a cutting cut can and a cutting cutter 5 and then subjected to a long can, and (3) the function of preventing sticking materials.
The timing belt linear module 5 may be replaced by a linear driving mechanism such as a motor or a screw.
The mounting plate 6 can be arranged into a structure which is adjusted up and down, namely, a long strip-shaped mounting hole is formed in the surface of the mounting plate, the mounting plate 6 passes through the mounting hole through a bolt and is fixed on a sliding block of the synchronous belt linear module 5, so that the height of the cutter 9 can be adjusted, and after the height of the cutter 9 is adjusted, the surface of a coiled sheet can be cut without cutting the coiled sheet, and a notch of a channel can be cut on the surface of the coiled sheet.
The embodiments of the utility model have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the utility model in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments were chosen and described in order to best explain the principles of the utility model and the practical application, and to enable others of ordinary skill in the art to understand the utility model for various embodiments with various modifications as are suited to the particular use contemplated.

Claims (9)

1. Bevel cutting machine, its characterized in that: including the frame, be provided with the conveyor track in the frame, the front end of frame is provided with the extension frame, be provided with the layer board that extends forward on the extension frame, the layer board with the up end parallel and level of conveyor track, the last hold-in range straight line module that transversely has placed of extension frame, hold-in range straight line module erects the upper end of layer board, be provided with the mounting panel forward on the slider of hold-in range straight line module, the bilateral symmetry of mounting panel lower extreme is provided with the hang plate, and the orientation of both sides hang plate is opposite, is provided with servo motor on the hang plate in one side of being on the back of each other, be provided with the cutter in servo motor's the axis of rotation, two the cutter is alternately set up each other, is corresponding on the layer board the position along transversely being provided with of cutter lower edge dodges the mouth.
2. The bevel edge cutter of claim 1 wherein: the extension frame with the left side of layer board is provided with respectively to the fixed plate that the cutter below extends, be provided with the nozzle tip that is used for spraying isolation oil on the fixed plate, the nozzle of nozzle tip is towards the lower edge of cutter, and the lower extreme of nozzle tip is provided with oil pipe.
3. The bevel edge cutter of claim 2 wherein: the lifting air cylinders are arranged at positions on the extending frames, corresponding to the two sides of the supporting plate, the piston rods of the lifting air cylinders are vertically upwards arranged, the pressing plates are arranged at the upper ends of the piston rods of the lifting air cylinders, and are located at the rear sides of the cutters and transversely arranged above the supporting plate.
4. The bevel edge cutter of claim 1 wherein: the front end of the frame is also provided with a first press roller at a position corresponding to the upper part of the conveying track, and the first press roller is installed on the frame in a lifting manner.
5. The bevel edge cutter of claim 4 wherein: the two sides of the front end of the frame are provided with mounting frames, movable blocks capable of sliding up and down are arranged in the mounting frames, the first press roller is arranged between the movable blocks on the two sides, the top of the mounting frames is provided with adjusting screws, and the lower ends of the adjusting screws are movably connected with the tops of the movable blocks.
6. The bevel edge cutter of claim 5 wherein: a driving roller is arranged between the lower ends of the mounting frames, a driven roller is arranged at the rear end of the frame, the conveying crawler belt surrounds the outer sides of the driving roller and the driven roller, a transmission motor is arranged on the frame at a position below the mounting frame at the corresponding side, driving wheels are arranged on rotating shafts of the transmission motor and the roller shafts of the driving roller, and the two driving wheels are connected through a driving belt.
7. The bevel edge cutter of claim 6 wherein: the upper part of the driven roller is also provided with a second press roller, and the second press roller is installed on the installation frame in a turnover way.
8. The bevel edge cutter of claim 7 wherein: the installation frame is provided with the turnover rod in the upper end of its rear side, the one end and the installation frame of turnover rod are articulated, and the other end slope of turnover rod is downwards and towards the rear end extension of carrying the track, the second compression roller is installed between the tip of two turnover rod downward inclinations, still is provided with the gangbar between the turnover rod of both sides.
9. The bevel edge cutter of claim 8 wherein: the frame is provided with a guide roller at a position corresponding to the rear side of the conveying track.
CN202323344928.5U 2023-12-08 2023-12-08 Bevel edge cutting machine Active CN221271297U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323344928.5U CN221271297U (en) 2023-12-08 2023-12-08 Bevel edge cutting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323344928.5U CN221271297U (en) 2023-12-08 2023-12-08 Bevel edge cutting machine

Publications (1)

Publication Number Publication Date
CN221271297U true CN221271297U (en) 2024-07-05

Family

ID=91694611

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323344928.5U Active CN221271297U (en) 2023-12-08 2023-12-08 Bevel edge cutting machine

Country Status (1)

Country Link
CN (1) CN221271297U (en)

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