Numerical control flame plasma cutting and marking all-in-one machine
By integrating a magnetic tray and marking mechanism into a CNC flame plasma cutting machine, automatic movement and precise positioning of workpieces are achieved, solving the problem of manual handling after cutting affecting efficiency and improving production efficiency and processing consistency.
Patent Information
- Application Number
- CN202520345614.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-03-03
AI Technical Summary
After the existing CNC flame plasma cutting machine finishes cutting, the workers need to manually move the workpiece to the marking machine for marking, which affects the cutting and marking efficiency.
A CNC flame plasma cutting and marking integrated machine was designed, which includes a cutting mechanism and a marking mechanism. The machine attracts iron workpieces through a magnetic tray and moves them to the marking table for automatic marking. Combined with lifting components and centering components, the machine achieves precise positioning and clamping of the workpieces.
This achieves seamless workpiece connection, avoids the time consumption of manual handling and repositioning, improves production efficiency, and ensures accurate marking and consistent processing.
Smart Images

Figure CN223776315U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to marking machine technical field especially relates to a numerical control flame plasma cutting marking all -in -one. BACKGROUND
[0002] Numerical control flame plasma cutting machine is used for cutting steel member, and obtains the part of specified size and shape, and after blanking of numerical control flame plasma cutting machine, the information such as model, purpose and other marks need to be marked on each part. So as to determine the installation position of the part during assembly.
[0003] The Chinese patent with publication number CN209867918U discloses a numerical control flame plasma cutting machine and marking machine comprehensive device, which comprises a marking machine body and a numerical control flame plasma cutting machine body. The numerical control flame plasma cutting machine body comprises a guide rail, a first sliding block and a second sliding block mounted on the guide rail, and a cutting torch mounted on the first sliding block. The first sliding block and the second sliding block are connected to a cutting machine controller. The marking machine body is provided with a marking movement mechanism, which comprises a back plate, linear guides mounted on both sides of the back plate, a stepper motor provided on the top of the back plate, a lead screw connected to the top end of the stepper motor through a connecting handle, and a sliding seat mounted on the lead screw and the linear guides. The marking machine body is mounted on the sliding seat. The back plate is fixedly installed on the second sliding block. A proximity sensor is arranged near the needle of the marking machine. The stepper motor and the proximity sensor are connected to a marking machine controller. The device can automatically mark and cut in one equipment, saving labor and time.
[0004] However, the above-mentioned disclosed scheme has the following disadvantages: after the existing numerical control flame plasma cutting machine completes cutting, the workers need to manually carry the cut workpiece to the marking machine for marking, which easily affects the cutting and marking efficiency of the workpiece. UTILITY MODEL CONTENTS
[0005] The utility model aims at the problem of automatic marking after workpiece cutting in the background art, and provides a numerical control flame plasma cutting marking all-in-one machine.
[0006] The technical scheme of the utility model: a numerical control flame plasma cutting marking all-in-one machine, which comprises a cutting table, a support column arranged at the bottom of the cutting table, and a marking table arranged at the bottom of the support column.
[0007] A cutting mechanism is arranged at the top of the cutting table and is used for accurately positioning and cutting the workpiece.
[0008] A marking mechanism is arranged at the top of the marking table and is used for marking the cut workpiece after centering and clamping.
[0009] And a magnetic tray is arranged on the marking mechanism, and the magnetic tray moves up and down under the driving of the marking mechanism; when the magnetic tray is on the cutting table, the magnetic tray is used for supporting the workpiece; after the cutting is completed, the magnetic stone on the magnetic tray is used for attracting the iron workpiece, and the workpiece is driven to move to the marking table with the magnetic tray for marking treatment.
[0010] Preferably, the bottom of the marking table is provided with a table leg, and the top of the marking table is provided with a marking machine.
[0011] Preferably, the cutting mechanism comprises an electric sliding rail one, an electric sliding rail two and a sliding plate.
[0012] The electric sliding rail one is arranged on the top of the cutting table, the electric sliding rail two is slidably arranged on the electric sliding rail one, and the sliding plate is slidably arranged on the electric sliding rail two. The side surface of the sliding plate is provided with a cutting machine, and the end portion of the electric sliding rail two is provided with a control panel.
[0013] Preferably, the marking mechanism comprises a lifting assembly and a centering assembly.
[0014] The lifting assembly is arranged on the marking table and is used for driving the magnetic tray to move up and down.
[0015] The centering assembly is arranged on the side surface of the lifting assembly and is used for centering the workpiece transported downward.
[0016] Preferably, the lifting assembly comprises a connecting frame, a cylinder and a push rod.
[0017] The connecting frame is arranged on the bottom of the marking table, the cylinder is arranged on the inner side of the connecting frame, the push rod is arranged on the output end of the cylinder, and the side surface of the magnetic tray is slidably provided with a straight sliding rail one.
[0018] Preferably, the centering assembly comprises a switch, a controller, a sensing line, a motor and a fixed frame one.
[0019] The controller is arranged on the bottom of the marking table, the switch is arranged on the controller, the sensing line is arranged on the side surface of the controller, the motor is arranged on the end of the sensing line away from the controller, the fixed frame one is arranged on the outer side of the motor, the outer side of the fixed frame one is connected with the top of the marking table, the output end of the motor is provided with a rotating pipe, the inner side of the rotating pipe is slidably provided with a threaded rod, the outer side of the threaded rod is threadedly provided with a fixed frame two, the end of the threaded rod away from the rotating pipe is provided with a mounting plate, the side surface of the mounting plate is rotatably provided with a rotating rod, the end of the rotating rod away from the mounting plate is rotatably provided with a centering plate, the bottom of the centering plate is provided with a sliding shaft, and the bottom of the sliding shaft is slidably provided with a straight sliding rail two.
[0020] Compared with the prior art, the utility model have following beneficial technical effect: through the setting of marking mechanism, the magnetic tray is removed with the cylinder drive and the workpiece is transferred to the marking table, and then the motor is controlled to center and clamp the workpiece to facilitate marking, so that seamless connection can be realized, manual handling and time consumption of repositioning workpiece are avoided, thereby production efficiency is improved obviously, meanwhile, accurate positioning of workpiece before marking is ensured, marking deviation caused by inaccurate manual positioning is avoided, and it is ensured that each workpiece is processed by same processing step, thereby consistency and accuracy of processing are improved. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is structural schematic view of an embodiment of the utility model;
[0022] Figure 2 It is structural schematic view of cutting mechanism;
[0023] Figure 3 It is structural schematic view of marking mechanism;
[0024] Figure 4 It is local structural schematic view of table mechanism.
[0025] Sign significance: 1, cutting table, 2, support column, 3, marking table, 4, table leg, 501, electric sliding rail one, 502, electric sliding rail two, 503, sliding plate, 504, cutting machine, 505, control panel, 601, cylinder, 602, connecting frame, 603, push rod, 604, magnetic tray, 605, straight sliding rail one, 606, switch, 607, controller, 608, sensing line, 609, motor, 610, fixed frame one, 611, rotating tube, 612, threaded rod, 613, mounting plate, 614, fixed frame two, 615, rotating rod, 616, sliding shaft, 617, straight sliding rail two, 618, centering plate, 7, marking machine. DETAILED DESCRIPTION
[0026] Embodiment one
[0027] As Figures 1-2 shown, the utility model provides a numerical control flame plasma cutting and marking integrated machine, including cutting table 1, support column 2 of setting in the bottom of cutting table 1, marking table 3 of setting in the bottom of support column 2, cutting machine 504, marking machine 7 and magnetic tray 604:
[0028] Cutting machine 504 is set up in the top of cutting table 1, is used for accurate positioning cutting to workpiece;
[0029] Marking machine 7 is set up in the top of marking table 3, is used for marking processing after centering and clamping to the workpiece of cutting completion;
[0030] The magnetic tray 604 is arranged on the marking machine 7, and the magnetic tray 604 moves up and down under the driving of the marking machine 7, and when located on the cutting table 1, the magnetic tray 604 is used for supporting the workpiece, and after cutting is completed, the magnetic stone on the magnetic tray 604 attracts the iron workpiece, and drives the workpiece to move to the marking table 3 along with the magnetic tray 604 to perform marking processing.
[0031] The bottom of the marking table 3 is provided with the table leg 4 for supporting the whole device, and the top of the marking table 3 is provided with the marking machine 7.
[0032] The cutting machine 504 structure includes the electric sliding rail one 501, the electric sliding rail two 502 and the sliding plate 503; the electric sliding rail one 501 is arranged on the top of the cutting table 1, the electric sliding rail two 502 is slidably arranged on the electric sliding rail one 501, and the sliding plate 503 is slidably arranged on the electric sliding rail two 502; the side surface of the sliding plate 503 is provided with the cutting machine 504, and the end of the electric sliding rail two 502 is provided with the control panel 505; the movement path of the electric sliding rail one 501 and the electric sliding rail two 502 can be preset through the control panel 505, and the opening and closing of the cutting machine 504 can be controlled; after starting, the electric sliding rail two 502 slides on the electric sliding rail one 501, the sliding plate 503 slides on the electric sliding rail two 502, so as to drive the cutting machine 504 to cut the workpiece on the bottom.
[0033] Embodiment two
[0034] As Figures 3-4 shown, the utility model discloses a numerical control flame plasma cutting marking all -in -one, compared to embodiment one, this embodiment introduces the structure of marking machine 7 in detail.
[0035] The marking machine 7 comprises a lifting assembly and a centering assembly; the lifting assembly is arranged on the marking table 3 and is used to drive the magnetic tray 604 to move up and down; the centering assembly is arranged on the side of the lifting assembly and is used to center the workpiece transported downward. The lifting assembly comprises a connecting frame 602, a gas cylinder 601 and a push rod 603; the connecting frame 602 is arranged at the bottom of the marking table 3, the gas cylinder 601 is arranged on the inner side of the connecting frame 602, and the push rod 603 is arranged at the output end of the gas cylinder 601; the side of the magnetic tray 604 is slidably provided with a straight slide rail one 605; the gas cylinder 601 is started, the gas cylinder 601 drives the push rod 603 to move, the push rod 603 drives the magnetic tray 604 to move on the straight slide rail one 605; the gas cylinder 601 has two strokes, one drives the magnetic tray 604 to push to be flush with the cutting table 1, and one drives the magnetic tray 604 to push to be flush with the marking table 3. The centering assembly comprises a switch 606, a controller 607, a sensing line 608, a motor 609 and a fixed frame one 610; the controller 607 is arranged at the bottom of the marking table 3, the switch 606 is arranged on the controller 607, the switch 606 is located directly below the magnetic tray 604, and when the magnetic tray 604 moves to be flush with the marking table 3, the switch 606 can be pressed to turn on the controller 607, the sensing line 608 is arranged on the side of the controller 607, the motor 609 is arranged at the end of the sensing line 608 away from the controller 607, the fixed frame one 610 is arranged on the outer side of the motor 609, the outer side of the fixed frame one 610 is connected with the top of the marking table 3, the output end of the motor 609 is provided with a rotating pipe 611, the inner side of the rotating pipe 611 is slidably provided with a threaded rod 612, the end of the threaded rod 612 is provided with a connecting block, the side of the rotating pipe 611 is provided with a hollow groove, the connecting block can slide in the hollow groove, the rotating pipe 611 can drive the threaded rod 612 to rotate through the connecting block when the rotating pipe 611 rotates, the outer side of the threaded rod 612 is threadedly provided with a fixed frame two 614, the end of the threaded rod 612 away from the rotating pipe 611 is provided with a mounting plate 613, the side of the mounting plate 613 is rotatably provided with a rotating rod 615, the end of the rotating rod 615 away from the mounting plate 613 is rotatably provided with a centering plate 618, the bottom of the centering plate 618 is provided with a sliding shaft 616, the bottom of the sliding shaft 616 is slidably provided with a straight slide rail two 617, the bottom of the straight slide rail two 617 is connected with the top of the marking table 3, the controller 607 drives the motor 609 to start through the sensing line 608, the motor 609 drives the rotating pipe 611 to rotate, the rotating pipe 611 drives the threaded rod 612 to rotate on the fixed frame two 614, and the threaded rod 612 moves at the same time, the threaded rod 612 drives the rotating rod 615 to rotate, thereby driving the two centering plates 618 to move synchronously on the straight slide rail two 617, and then clamping and releasing the workpiece.
[0036] In summary, when the utility model is used, the workpiece is placed on the cutting table 1, the moving path of the electric slide rail one 501 and the electric slide rail two 502 is preset through the control panel 505, and the cutting machine 504 is controlled to be turned on, after starting, the electric slide rail two 502 slides on the electric slide rail one 501, the sliding plate 503 slides on the electric slide rail two 502, thereby driving the cutting machine 504 to cut the workpiece at the bottom, after cutting, the cutting machine 504 is turned off, the magnetic tray 604 adsorbs the cut workpiece, the cylinder 601 is started, the cylinder 601 drives the push rod 603 to move, the push rod 603 drives the magnetic tray 604 to move on the straight slide rail one 605, when the magnetic tray 604 leaves the cutting table 1, the remaining unprocessed workpiece stays in the original position under the blocking of the cutting table 1, the cut workpiece moves to the marking table 3 together with the magnetic tray 604, at this time, the switch 606 can be pressed to open the controller 607, the controller 607 drives the motor 609 to start through the sensing wire 608, the motor 609 drives the rotating pipe 611 to rotate, the rotating pipe 611 drives the threaded rod 612 to rotate on the fixed frame two 614, and moves at the same time, the threaded rod 612 drives the rotating rod 615 to rotate, thereby driving the two centering plates 618 to move on the straight slide rail two 617 at the same time, and the workpiece is clamped, then the controller 607 starts the marking machine 7 to mark the workpiece, after marking, the motor 609 is reversed to loosen the workpiece.
[0037] The utility model has been described in detail in combination with the drawings, but the utility model is not limited to this, within the knowledge range of the technical personnel in the technical field, various changes can be made without departing from the purpose of the utility model.
Claims
1. A CNC flame plasma cutting and marking integrated machine, comprising a cutting table (1), a support column (2) disposed at the bottom of the cutting table (1), and a marking table (3) disposed at the bottom of the support column (2); characterized in that, Also includes: The cutting mechanism (504) is set on the top of the cutting table (1) and is used to precisely position and cut the workpiece. The marking machine (7) is located on the top of the marking table (3) and is used to mark the workpiece after it has been cut and clamped. And a magnetic tray (604), which is set on the marking machine (7) mechanism. The magnetic tray (604) moves up and down under the drive of the marking machine (7) mechanism. When it is on the cutting table (1), the magnetic tray (604) is used to support the workpiece. After the cutting is completed, the iron workpiece is attracted by the magnet on the magnetic tray (604), and the workpiece is moved with the magnetic tray (604) to the marking table (3) for marking.
2. The CNC flame plasma cutting and marking integrated machine according to claim 1, characterized in that, The bottom of the marking table (3) is provided with table legs (4), and the top of the marking table (3) is provided with a marking machine (7).
3. The CNC flame plasma cutting and marking integrated machine according to claim 1, characterized in that, The cutting machine (504) includes an electric slide rail one (501), an electric slide rail two (502), and a sliding plate (503); Electric slide rail one (501) is set on the top of the cutting table (1), electric slide rail two (502) is slidably set on electric slide rail one (501), sliding plate (503) is slidably set on electric slide rail two (502), cutting machine (504) is set on the side of sliding plate (503), and control plate (505) is set at the end of electric slide rail two (502).
4. The CNC flame plasma cutting and marking integrated machine according to claim 1, characterized in that, The marking machine (7) includes a lifting assembly and a centering assembly; The lifting assembly is installed on the marking table (3) and is used to drive the magnetic tray (604) to move up and down; The centering component is located on the side of the lifting component and is used to center the transported workpiece.
5. The CNC flame plasma cutting and marking integrated machine according to claim 4, characterized in that, The lifting assembly includes a connecting frame (602), a cylinder (601), and a push rod (603); The connecting frame (602) is located at the bottom of the marking table (3), the cylinder (601) is located inside the connecting frame (602), the push rod (603) is located at the output end of the cylinder (601), and the magnetic tray (604) is slidably provided with a straight slide rail (605).
6. The CNC flame plasma cutting and marking integrated machine according to claim 5, characterized in that, The centering components include a switch (606), a controller (607), a sensor wire (608), a motor (609), and a mounting bracket (610); The controller (607) is located at the bottom of the marking table (3), the switch (606) is located on the controller (607), the sensor wire (608) is located on the side of the controller (607), the motor (609) is located at the end of the sensor wire (608) away from the controller (607), the first fixing bracket (610) is located on the outside of the motor (609), the outside of the first fixing bracket (610) is connected to the top of the marking table (3), the output end of the motor (609) is provided with a rotating tube (611), and the inner side of the rotating tube (611) slides. A threaded rod (612) is provided, and a fixing bracket (614) is provided on the outer thread of the threaded rod (612). A mounting plate (613) is provided at the end of the threaded rod (612) away from the rotating tube (611). A rotating rod (615) is rotatably provided on the side of the mounting plate (613). A centering plate (618) is rotatably provided at the end of the rotating rod (615) away from the mounting plate (613). A sliding shaft (616) is provided at the bottom of the centering plate (618). A straight slide rail (617) is slidably provided at the bottom of the sliding shaft (616).
Citation Information
Patent Citations
Numerical control flame plasma cutting machine and marking machine integrated device
CN209867918U