CN220806255U - Cutting device for trailer plate processing - Google Patents

Cutting device for trailer plate processing Download PDF

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Publication number
CN220806255U
CN220806255U CN202322689718.3U CN202322689718U CN220806255U CN 220806255 U CN220806255 U CN 220806255U CN 202322689718 U CN202322689718 U CN 202322689718U CN 220806255 U CN220806255 U CN 220806255U
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CN
China
Prior art keywords
moving platform
motor
linear sliding
trailer
cutting
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CN202322689718.3U
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Chinese (zh)
Inventor
王兆均
钟良
丁世海
丁世伟
靖俊卿
张思远
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Tanghe County Shenglong Automobile Transportation Equipment Co ltd
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Tanghe County Shenglong Automobile Transportation Equipment Co ltd
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Priority to CN202322689718.3U priority Critical patent/CN220806255U/en
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Abstract

The utility model provides a cutting device for processing a trailer plate, which belongs to the technical field of plate cutting and comprises an operation table, wherein support plates are symmetrically arranged on corners of the upper part of the operation table, a first moving platform is arranged on the upper part of the support plates, a second moving platform is arranged on the upper part of the first moving platform, a mounting plate is arranged on the upper part of the second moving platform, a second air cylinder is arranged on the lower part of the mounting plate, a second electromagnetic chuck is arranged at the output end part of the second air cylinder, a polishing assembly is arranged on the operation table under the second electromagnetic chuck, and the polishing assembly comprises a second motor arranged in the operation table and a polishing roller arranged on a rotating shaft of the second motor; the deburring device can remove burrs at the cutting position by matching the polishing assembly with the first moving platform and the second moving platform, so that potential safety hazards are eliminated.

Description

Cutting device for trailer plate processing
Technical Field
The utility model relates to the technical field of trailer plate cutting, in particular to a cutting device for trailer plate processing.
Background
The trailer is divided into a plurality of types such as eleven-meter bin column semi-trailer, thirteen-meter bin column semi-trailer, low-flat plate semi-trailer and the like, and is a heavy transport vehicle connected with a semitrailer head through a traction pin.
Disclosure of utility model
In view of the above, the utility model provides a cutting device for processing a trailer plate, which removes burrs at a cutting position through the mutual matching of a polishing assembly, a first moving platform and a second moving platform, so that potential safety hazards are eliminated.
In order to solve the technical problems, the utility model provides a cutting device for processing a trailer plate, which comprises an operation table and support plates symmetrically arranged at corners of the upper part of the operation table, wherein a first moving platform is arranged in the front-back direction of the upper part of the support plates, a second moving platform is arranged in the left-right direction of the upper part of the first moving platform, a mounting plate is arranged on the upper part of the second moving platform, a second air cylinder is symmetrically arranged at the lower part of the mounting plate, a second electromagnetic chuck is arranged at the output end part of the second air cylinder, a polishing assembly is arranged on the operation table under the second electromagnetic chuck, the polishing assembly comprises a second motor arranged in the operation table, a polishing roller arranged on a rotating shaft of the second motor, the rotating shaft of the second motor is in threaded connection with the polishing roller, and the second motor is a stepping motor.
Be provided with cutting mechanism on the operation panel on the subassembly right side of polishing, cutting mechanism includes the cutting wheel and sets up the motor No. one in the cutting wheel below, and the cutting wheel passes through the pivot setting on the operation panel, and a motor axis of rotation tip is provided with a gear, and the one end is provided with in the pivot at cutting wheel place with a gear matched with No. two gears, is connected a gear and No. two gears through the drive chain.
The first moving platform is two symmetrical linear sliding tables which are arranged on the supporting plate and move the second moving platform, the two ends of the two linear sliding tables are respectively provided with a sliding block, the guide rod of the first linear sliding table is a bidirectional screw rod, and the sliding blocks of the first linear sliding table can synchronously move in opposite directions.
The second moving platform comprises two linear sliding tables arranged in the horizontal direction, two ends of the two linear sliding tables are respectively connected with sliding blocks arranged at the same end of the two linear sliding tables, and the two linear sliding tables move synchronously and in opposite directions along with the movement of the sliding blocks of the first linear sliding table.
The sliding blocks of the second linear sliding table are respectively provided with a connecting block, the lower parts of the connecting blocks are respectively provided with a first air cylinder, and the output ends of the first air cylinders are provided with a first electromagnetic chuck for holding a workpiece to be machined and fixing the workpiece to be machined.
Support columns are symmetrically arranged at corners of the lower portion of the operating platform, and connecting plates are arranged between the support columns, so that the support columns are more stable and are not easy to shake.
The motor is arranged on the connecting plate right below the cutting theory, the gear I and the gear II are positioned in the same plane, and a waste recycling groove is formed in the connecting plate on the right side of the motor I.
In summary, compared with the prior art, the application has at least one of the following beneficial technical effects:
1. The rear of cutting mechanism is added the process of polishing for the processing of polishing to the plate cutting position, because the position that the plate was cut through the cutting wheel can appear burr and sharp sideline, workman is very easy to be injured carelessly, causes the incident, polishes the processing of deburring through the roller of polishing to the cutting position, has avoided the emergence of incident, has ensured workman's human life safety.
2. The detachable connection mode of using the screw thread between the grinding roller and the motor axis of rotation No. two can come to carry out quick loading and unloading to the grinding roller through the positive and negative rotation of motor No. two, because the width of cutting panel is different, need dismantle the grinding roller according to the condition of difference, avoid because panel is too wide, lead to the panel under the condition of not cutting off completely because the baffle of grinding roller can't go on to lead to the condition emergence that can't cut off completely.
3. The guide rod of the first linear sliding table is a bidirectional screw rod, on one hand, the two second linear sliding tables arranged on the first linear sliding table sliding block can be guaranteed to synchronously move in opposite directions, on the other hand, the fixed holding of the plate to be processed with different lengths can be better met, and the condition that the plate shakes due to unstable clamping in the cutting process and the cutting position is deviated is avoided.
4. The waste recycling groove is arranged on the connecting plate and is used for recycling scraps cut off when the cutting wheel cuts the plate and leftover materials left on the plate, so that the environment is protected and the cost is saved while the recycling resource is utilized.
Drawings
FIG. 1 is a schematic view of a cutoff device for trailer panel processing according to the present utility model;
FIG. 2 is a front view of a cutoff device for trailer panel processing in accordance with the present utility model;
FIG. 3 is a cross-sectional view of a cutoff device for trailer panel processing in accordance with the present utility model;
fig. 4 is a partial cross-sectional view of a cutoff device for trailer panel processing in accordance with the present utility model.
Reference numerals illustrate: 100. an operation table; 200. a support plate; 300. a first linear sliding table; 400. a second linear sliding table; 500. a mounting plate; 501. a second cylinder; 502. a second electromagnetic chuck; 503. a grinding roller; 504. a motor II; 600. a motor I; 601. a first gear; 602. a second gear; 603. a drive chain; 604. a cutting wheel; 605. a rotating shaft; 700. a connecting block; 701. a first air cylinder; 702. a first electromagnetic chuck; 800. a support column; 801. a connecting plate; 900. a waste recovery tank.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present utility model more clear, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to fig. 1 to 4 of the embodiments of the present utility model. It will be apparent that the described embodiments are some, but not all, embodiments of the utility model. All other embodiments, which are obtained by a person skilled in the art based on the described embodiments of the utility model, fall within the scope of protection of the utility model.
As shown in fig. 1-4: the embodiment provides a cutting device for trailer plate processing, including two sets of backup pads 200 that operation panel 100 and operation panel 100 upper portion corner symmetry set up, connect two sets of backup pads 200 fore-and-aft direction respectively and be provided with first moving platform, first moving platform upper portion left and right sides direction is provided with the second moving platform, second moving platform upper portion is fixed to be provided with mounting panel 500, the lower part symmetry of mounting panel 500 is provided with No. two cylinders 501, no. two cylinders 501 output end is provided with No. two electromagnet 502 respectively, be provided with the subassembly of polishing under No. two electromagnet 502 on operation panel 100, the subassembly of polishing is including setting up No. two motor 504 in operation panel 100 inside, and No. two motor 504 are connected between rotation axis and the polishing roller 503 of polishing, threaded connection between No. two motor 504 axis of rotation, according to the difference of demand, can carry out quick loading and unloading to polishing roller 503.
Be provided with cutting mechanism on the operation panel 100 on the subassembly right side of polishing, cutting mechanism includes cutting wheel 604 and sets up a motor 600 in cutting wheel 604 below, cutting wheel 604 sets up on operation panel 100 through pivot 605, a motor 600 axis of rotation tip is provided with a gear 601, one end is provided with the gear 602 No. two with a gear 601 matched with on the pivot 605 that cutting wheel 604 is located, connect a gear 601 and gear 602 No. two through drive chain 603, a gear 601 and gear 602 are in the coplanar, it is on the roller bearing to transmit the output power of a motor 600 through drive chain 603, thereby drive cutting wheel 604 and carry out fast rotation and realize the cutting.
The first moving platform is two symmetrical first linear sliding tables 300 which are arranged on the supporting plate 200 and move the second moving platform, sliding blocks are respectively arranged at two ends of the first linear sliding tables 300, guide rods of the first linear sliding tables 300 are bidirectional screw rods, the sliding blocks of the first linear sliding tables 300 can synchronously move in opposite directions, and therefore the second moving platform is driven to synchronously move, and the second moving platform can stably move and simultaneously can meet the requirement of fixed clamping when plates with different length shapes are cut off.
The second moving platform comprises two number two linear sliding tables 400 arranged in the horizontal direction, two ends of the number two linear sliding tables 400 are respectively connected with sliding blocks arranged at the same end of the number two linear sliding tables 300, the number two linear sliding tables 400 move synchronously and in opposite directions along with the movement of the number one linear sliding tables 300, and the sliding groove opening of the number two linear sliding tables 400 faces the operation table 100.
The slider of No. two straight line slip tables 400 is last all to be provided with connecting block 700, and the lower part of connecting block 700 is provided with No. one cylinder 701 respectively, and the output of No. one cylinder 701 is provided with and is used for holding No. one electromagnetic chuck 702 of waiting the machined part for will waiting the machined part to fix, thereby avoid the plate to take place to remove in the cutting process, thereby the plate that leads to the cutting position mistake to cut out can't the condition of using takes place.
The support columns 800 are symmetrically arranged at the corners of the lower part of the operation table 100, and the connecting plates 801 are arranged between the support columns 800, so that the support columns 800 are more stable and are not easy to shake, the stability of the plate during cutting is ensured, and the cutting precision is further ensured to meet the process requirements.
The first motor 600 is arranged on the connecting plate 801 right below the cutting theory, the first gear 601 and the second gear 602 are positioned in the same plane, power is transmitted to the rotating shaft 605 through the transmission chain 603 to drive the cutting wheel 604 to rotate, and the connecting plate 801 on the right side of the first motor 600 is provided with a waste recycling groove 900 for recycling scraps generated in the cutting process and leftover materials left after cutting.
According to one embodiment of the present utility model, as shown in figures 1-4,
The grinding assembly is arranged behind the cutting wheel, the cut plate cutting position can be ground, burrs are removed, sharp edges are ground, and the situation that a worker is injured due to carelessness or accidents is avoided when the worker contacts the cut plate is avoided.
According to another embodiment of the present utility model, as shown in fig. 1 and 2,
The second motor is connected with the polishing roller through threads, the rapid assembly and disassembly of the polishing roller are realized through the mutual matching among the second motor, the second electromagnetic chuck and the positive and negative rotation of the rotation shaft of the second motor, the rotation speed of the second motor and the output speed of the second cylinder are regulated through the screw pitch of the threads (for example, in the same time V, the rotation speed of the second motor is set as B, the connection characteristic of a bolt and a nut can know that the bolt rotates one circle of the nut to advance by one screw pitch, so that the result of the output distance of the second cylinder is calculated as A multiplied by B, the second motor and the polishing roller are locked through the threaded connection when the output value of the second cylinder is X, and the output speed N) of the cylinder is obtained by dividing the output value X by the time V.
In one embodiment of the present utility model, as shown in figure 1,
The waste recycling groove is formed in the lower right connecting plate of the cutting wheel, the cutting wheel rotates at high speed through centrifugal force in the cutting process, scraps and other materials generated in the plate cutting process are automatically collected, and meanwhile, leftover materials of the plate left after cutting can be collected, so that the cost is saved when workers are prevented from being injured due to scraps splashing, and the recycled waste can be remelted.
In another embodiment of the present utility model, as shown in figure 1,
Because the guide rod of the first linear sliding table is a bidirectional screw rod, the sliding blocks at the two ends of the first linear sliding table synchronously move in opposite directions, and the second linear sliding table arranged on the first linear sliding table sliding block is driven to synchronously move in opposite directions, the fixed clamping of plates with different lengths can be met by the first electromagnetic chuck arranged below the second linear sliding table, the advancing stability of the plates with different lengths in the cutting process is guaranteed, and the condition that the plates to be processed cannot be accurately cut or move in the cutting process due to unequal lengths of the plates is avoided.
The working principle of the utility model is as follows:
Placing a plate to be processed on an operation table, then starting a first linear sliding table to drive a second linear sliding table to move to a position to be clamped, starting a first air cylinder to drive a first electromagnetic chuck to move downwards through an output rod of the first air cylinder until the first electromagnetic chuck contacts the surface of the plate to be processed, electrifying the first electromagnetic chuck, then starting a second linear sliding table to drive a sliding block of the second linear sliding table to move with the first air cylinder so as to drive the plate to be processed to move towards a cutting wheel, starting a first motor at the moment, driving the cutting wheel to rotate through the cooperation of a transmission chain and two gears, cutting the plate, starting the second air cylinder to enable the second electromagnetic chuck to move downwards after cutting is completed, driving a polishing roller to move downwards, and when the lower part of the polishing roller contacts a rotating shaft of the second motor, calculating the value, starting a second motor, simultaneously enabling a second cylinder to continuously move downwards slowly until threads on a rotating shaft of the second motor and internal threads of a polishing roller are mutually matched and locked, then powering off a second electromagnetic chuck, simultaneously withdrawing an output rod of the second cylinder, then starting a first linear sliding table to enable a cutting surface of a plate to be positioned in the same plane with the polishing roller, starting the second linear sliding table to polish the cutting surface of the plate, preventing a worker from contacting the sharp cutting surface to cause injury, performing polishing and deburring treatment on the cutting surface of the plate through the mutual matching of a polishing assembly, the first linear sliding table and the second linear sliding table, reducing potential safety hazards, taking down the cut plate by the worker after deburring, starting the second cylinder, retrieving the polishing roller through the inversion of the second motor, simultaneously starting the first linear sliding table and the first air cylinder, and repeating the operation
Furthermore, it should be noted that, in the description of the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those skilled in the art according to the specific circumstances.
While the foregoing is directed to the preferred embodiments of the present utility model, it will be appreciated by those skilled in the art that various modifications and adaptations can be made without departing from the principles of the present utility model, and such modifications and adaptations are intended to be comprehended within the scope of the present utility model.

Claims (7)

1. The utility model provides a cutting device of trailer plate processing, includes operation panel (100), its characterized in that: the utility model discloses a polishing device for the electric motor of the operation panel, including operation panel (100), support board (200), first moving platform, second moving platform, mounting panel (500), no. two cylinder (501) are provided with on the upper portion turning of operation panel (100), symmetry is provided with backup pad (200) on backup pad (200) upper portion, first moving platform upper portion is provided with the second moving platform, the lower part of mounting panel (500) is provided with No. two cylinder (501), no. two cylinder (501) output is provided with No. two electromagnet (502), just be provided with the subassembly of polishing under No. two electromagnet (502) and on being located operation panel (100), the subassembly of polishing is including setting up No. two motor (504) inside operation panel (100), and No. two motor (504) are polished roller (503) that set up in the axis of rotation.
2. The cutoff device for trailer panel processing as in claim 1 wherein: a cutting mechanism is arranged on the operating platform (100) on the right side of the polishing assembly, and comprises a cutting wheel (604) and a motor number one (600) arranged below the cutting wheel (604).
3. The cutoff device for trailer panel processing as in claim 1 wherein: the first moving platform is a first linear sliding table (300) which is symmetrically arranged on the supporting plate (200) and moves the second moving platform, two sliding blocks are respectively arranged in sliding rails of the first linear sliding table (300), and guide rods of the first linear sliding table (300) are bidirectional screw rods.
4. The cutoff device for trailer panel processing as in claim 1 wherein: the second moving platform comprises two second linear sliding tables (400) which are arranged in the horizontal direction, and two ends of each second linear sliding table (400) are respectively connected with sliding blocks in the same horizontal plane of the two first linear sliding tables (300).
5. The cutoff device for trailer panel processing as in claim 4 wherein: the sliding block of the second linear sliding table (400) is provided with a connecting block (700), the lower part of the connecting block (700) is provided with a first air cylinder (701), and the output end of the first air cylinder (701) is provided with a first electromagnetic chuck (702) for holding a workpiece to be machined.
6. The cutoff device for trailer panel processing as in claim 1 wherein: support columns (800) are symmetrically arranged at corners of the lower portion of the operating platform (100), and connecting plates (801) are arranged between the support columns (800).
7. The cutoff device for trailer panel processing as in claim 2 wherein: the first motor (600) is arranged on the connecting plate (801), and a waste recycling groove (900) is formed in the connecting plate (801) on the right side of the first motor (600).
CN202322689718.3U 2023-10-08 2023-10-08 Cutting device for trailer plate processing Active CN220806255U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322689718.3U CN220806255U (en) 2023-10-08 2023-10-08 Cutting device for trailer plate processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322689718.3U CN220806255U (en) 2023-10-08 2023-10-08 Cutting device for trailer plate processing

Publications (1)

Publication Number Publication Date
CN220806255U true CN220806255U (en) 2024-04-19

Family

ID=90706369

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322689718.3U Active CN220806255U (en) 2023-10-08 2023-10-08 Cutting device for trailer plate processing

Country Status (1)

Country Link
CN (1) CN220806255U (en)

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