Vertical laser marking machine workstation

By designing a vertical laser marking machine workstation and utilizing multiple sensing devices and an automated control system, the problems of efficiency, accuracy, and operational complexity of traditional marking equipment on long or irregularly shaped workpieces have been solved, achieving a high-precision and high-efficiency marking process.

CN223997560UActive Publication Date: 2026-03-17重庆华普精密机械有限责任公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Traditional marking equipment is inefficient, inaccurate, complex to operate, cumbersome to change shapes, and lacks an effective workpiece positioning system when processing long or irregularly shaped workpieces, resulting in unstable marking quality.

Method used

The vertical laser marking machine workstation is equipped with a marking head, workpiece fixture, lifting column, sensing device and integrated display control device. The workpiece position is accurately detected by multiple sensing devices, and the workpiece is fixed by pressing down and side clamping devices, so as to realize height adjustment and automatic control.

Benefits of technology

It improves workpiece positioning accuracy and stability, simplifies operation procedures, enhances marking efficiency and quality consistency, adapts to different workpiece sizes, and reduces operation complexity and changeover time.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223997560U_ABST
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Abstract

A vertical laser marking machine workstation comprises a marking machine head, an integrated display control device, a working table top and a workpiece clamp. The marking machine head, the integrated display control device and the workpiece clamp are arranged on the working table; the marking machine head comprises a lifting column, and the lifting column is used for adjusting the operation height of the marking machine head. A workpiece clamp is arranged below the marking machine head and used for fixing a workpiece, so that the marking area of the workpiece is located in the working range of the marking machine head. The workpiece clamp comprises a sensing device I, a bottom supporting seat, a pressing device, a side clamping device and a sensing device II; the sensing device I, the sensing device II and the sensing device III are fixed on the working table through a bracket; the downward pressing device is arranged on one side of the workpiece, the side clamping device is arranged on the other side of the workpiece, the downward pressing device and the marking machine head are arranged on the same side of the workpiece, the downward pressing device is used for abutting against the upper surface of the workpiece, and the side clamping device is used for abutting against the workpiece to limit and fix the workpiece.
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Description

Technical Field

[0001] This utility model belongs to the field of marking equipment technology, specifically relating to a vertical laser marking machine workstation. Background Technology

[0002] In industrial production, marking technology is a key link in achieving product identification, traceability, and quality control. Traditional marking equipment typically suffers from the following problems: low marking efficiency for long, irregularly shaped workpieces, making it difficult to meet the needs of large-scale production; insufficient marking accuracy, easily resulting in blurry or inaccurate markings; complex equipment operation, requiring high technical skills from operators; cumbersome changeover processes, leading to long production changeover times; and a lack of effective workpiece inspection and positioning systems, making it easy for inaccurate workpiece placement to affect marking quality. Utility Model Content

[0003] The purpose of this utility model is to provide a vertical laser marking machine workstation, including a marking head, an integrated display and control device, a worktable, and a workpiece fixture;

[0004] The marking head, integrated display control device, and workpiece fixture are set on the worktable;

[0005] The marking head includes a lifting column, which is used to adjust the working height of the marking head;

[0006] A workpiece clamp is installed below the marking head to fix the workpiece so that the marking area of ​​the workpiece is within the working range of the marking head.

[0007] The workpiece fixture includes sensing device I, bottom support base, pressing device, side clamping device, and sensing device II;

[0008] Diffuse reflection sensors are installed on sensing devices I, II, and III and fixed to the workbench by brackets.

[0009] Sensing device I is installed at both ends of the target position of the workpiece to determine the end position of the workpiece;

[0010] The marking head is equipped with sensing device II and sensing device III on both sides. Sensing device II is used to determine the position of the side wall of the workpiece, and sensing device III is used to determine the disassembly and assembly of the workpiece.

[0011] The pressing device is located on one side of the workpiece, and the side clamping device is located on the other side of the workpiece. The pressing device is used to abut against the upper surface of the workpiece, and the side clamping device is used to abut against the side wall of the workpiece to limit and fix it.

[0012] At least three bottom support bases are provided on the worktable to support the workpiece;

[0013] The technical solution of this application employs multiple sensing devices in its workpiece fixture, including sensing devices I, II, and III, which are used to detect the end position, side wall position, and disassembly / assembly actions of the workpiece, respectively. The sensing devices are also equipped with diffuse reflection sensors, which can accurately detect the actual position of the workpiece. These sensing devices ensure that the workpiece is accurately positioned during each marking operation, significantly improving workpiece positioning accuracy and reducing marking deviations caused by inaccurate workpiece placement in traditional equipment. Accurate workpiece positioning ensures high precision and consistency in marking, avoiding problems of blurry or unclear markings, thereby improving production quality and efficiency.

[0014] In the workpiece fixing process, the technical solution of this application combines a pressing device and a side clamping device to effectively fix the workpiece. The pressing device ensures that the workpiece will not shift in the vertical direction by contacting the upper surface of the workpiece. The side clamping device ensures the lateral stability of the workpiece by contacting the side wall of the workpiece. This design effectively prevents the workpiece from moving or tilting during the marking process by increasing the stability and reliability of the workpiece. The workpiece is more firmly fixed, avoiding marking errors caused by positional offset, and ensuring the consistency and accuracy of each marking.

[0015] The marking head of this application is height-adjustable via a lifting column, allowing the marking head to flexibly adjust its working range according to the height of different workpieces. This design enables the vertical laser marking machine workstation to adapt to various workpiece sizes, especially long or irregularly shaped workpieces. This lifting adjustment mechanism enhances the flexibility and adaptability of the equipment, enabling the workstation to quickly process workpieces of different sizes. Different specifications of workpieces can be switched without manually disassembling or adjusting the equipment, improving production efficiency and reducing changeover time.

[0016] The technical solution provided in this application also has the following technical features:

[0017] Preferably, in one embodiment of this application, a limit post is provided in the target position area of ​​the workpiece to limit the lateral limit position of the workpiece.

[0018] Preferably, in one embodiment of this application, there are two pressing devices, which are arranged on both sides of the working area of ​​the marking head.

[0019] Preferably, in one embodiment of this application, the pressing device and the marking head are disposed on the same side of the workpiece.

[0020] Preferably, in one embodiment of this application, an electrical control cabinet is provided below the workbench; an industrial air conditioner is provided on the side of the electrical control cabinet;

[0021] An electrical control cabinet is installed below the equipment, equipped with an industrial air conditioner to ensure that the equipment maintains good operating condition during long-term operation and avoids equipment failure or performance degradation due to high temperature environment; the design of the electrical control cabinet ensures that the electrical parts of the equipment are effectively protected, and the industrial air conditioner ensures the heat dissipation requirements of the equipment and avoids overheating or damage due to excessive temperature; this design improves the stability and durability of the equipment, and is especially suitable for long-term, high-intensity industrial production environments.

[0022] Preferably, in one embodiment of this application, a keyboard, mouse and button control box are provided on one side of the electrical control cabinet, and the keyboard, mouse and button control box are arranged side by side on the marking operation side.

[0023] Preferably, in one embodiment of this application, the side clamping device includes a driving device, a T-block, and an abutment post. The extension end of the driving device is provided with a T-block, which is a raised T-shape. The outer end of the T-block protrudes and is provided with an abutment post through a fixing plate. An elastic pad is provided on the abutment post, and the elastic pad is used to abut against the surface of the workpiece.

[0024] Preferably, in one embodiment of this application, the integrated display control device is provided with an operation button; the integrated display control device and the marking head are equipped with warning lights to indicate the working status; the integrated display control device and the marking head are arranged side by side, facing the working side;

[0025] This utility model integrates a display control device with intuitive operation buttons. The integrated display is positioned side-by-side with the marking head, facing the work side, allowing operators to directly monitor and adjust the marking process. Furthermore, the device is equipped with warning lights, a keyboard, mouse, and button control box, making operation simpler and more intuitive. The simplified operation process lowers the technical requirements for operators, making the equipment more convenient to use. The integrated display and warning light design improves operational safety and intuitiveness, helps to provide timely feedback on the working status, and reduces operational errors.

[0026] Preferably, in one embodiment of this application, the keyboard and mouse are equipped with a pull-out panel.

[0027] Preferably, in one embodiment of this application, the electrical control cabinet is equipped with wheels.

[0028] Preferably, in one embodiment of this application, the driving device is a cylinder.

[0029] Preferably, in one embodiment of this application, the warning light is a tri-color light.

[0030] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0031] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0032] Figure 1 This utility model relates to a three-dimensional vertical laser marking machine workstation. Figure 1 ;

[0033] Figure 2 This utility model relates to a three-dimensional vertical laser marking machine workstation. Figure 2 ;

[0034] Figure 3 for Figure 2 A magnified view of a portion of the image;

[0035] Figure 4 This utility model relates to a working stand for a vertical laser marking machine. Figure 3 ;

[0036] Figure 5 for Figure 4 A partial view;

[0037] Figure 6 for Figure 4 Color images;

[0038] Figure 7 for Figure 5 Color images;

[0039] Components in the diagram:

[0040] 100. Marking machine head

[0041] 101. Rising bollard

[0042] 200. Warning lights

[0043] 300. Integrated display control device

[0044] 400. Workbench

[0045] 500. Industrial Air Conditioning

[0046] 600. Keyboard and mouse

[0047] 700. Electrical control cabinet

[0048] 800, Button Control Box

[0049] 900. Workpiece Fixture

[0050] 901. Sensing Device I

[0051] 902. Bottom support base

[0052] 903. Pressing device

[0053] 904. Side clamping device

[0054] 905. Sensing Device II

[0055] 906. Sensing Device III

[0056] 907, Limiting Post

[0057] 9041, Drive unit

[0058] 9042, T-block

[0059] 9043, Confrontation Column

[0060] 110. Workpiece. Detailed Implementation

[0061] The specific embodiments of this application will be further described in detail below with reference to the accompanying drawings. These embodiments are only for illustrating this application and are not intended to limit the scope of this utility model.

[0062] In the description of this utility model, it should be noted that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this utility model. In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0063] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0064] Furthermore, in the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0065] like Figure 1-7A vertical laser marking machine workstation includes a marking head 100, an integrated display and control device 300, a worktable 400, and a workpiece fixture 900.

[0066] The marking head 100, the integrated display control device 300, and the workpiece fixture 900 are set on the worktable 400;

[0067] The marking head 100 includes a lifting column 101, which is used to adjust the working height of the marking head 100;

[0068] A workpiece clamp 900 is provided below the marking head 100. The workpiece clamp 900 is used to fix the workpiece 110 so that the marking area of ​​the workpiece 110 is within the working range of the marking head 100.

[0069] The workpiece fixture 900 includes a sensing device I 901, a bottom support 902, a pressing device 903, a side clamping device 904, and a sensing device II 905;

[0070] Diffuse reflection sensors are installed on sensing devices I 901, II 905, and III 906 and fixed to the worktable 400 by brackets.

[0071] The sensing device I 901 is set at both ends of the target position of the workpiece 110 and is used to determine the end position of the workpiece 110.

[0072] The marking head 100 is equipped with sensing devices II 905 and III 906 on both sides. Sensing device II 905 is used to determine the position of the side wall of the workpiece 110, and sensing device III 906 is used to determine the disassembly and assembly actions of the workpiece 110.

[0073] The pressing device 903 is disposed on one side of the workpiece 110, and the side clamping device 904 is disposed on the other side of the workpiece 110. The pressing device 903 is used to abut against the upper surface of the workpiece 110, and the side clamping device 904 is used to abut against the side wall of the workpiece 110 to limit and fix it.

[0074] At least three bottom support seats 902 are provided on the worktable 400 to support the workpiece 110;

[0075] Figure 1 , 2 The purple dashed line in the image indicates the range of the working window and the recognition range of the diffuse reflection sensor.

[0076] This utility model's vertical laser marking machine workstation solves the problems of efficiency, accuracy, and operational complexity of traditional marking machines when handling long or irregularly shaped workpieces through its hardware structure and intelligent control system. Its key implementation points include the following aspects:

[0077] 1. Implementation of the workbench:

[0078] The marking head 100, integrated display control device 300, and workpiece fixture 900 are all mounted on the worktable 400, providing stable support and operating platform;

[0079] At least three bottom support seats 902 are provided on the worktable 400 to support and fix the workpiece 110, ensuring that the workpiece remains stable throughout the marking process;

[0080] 2. Implementation of the marking machine head and lifting column:

[0081] The marking head 100 achieves height adjustment through the lifting column 101, which can adjust the working range of the marking head according to the size of different workpieces and the marking operation height, and adapt to marking operations at different heights;

[0082] The flexible adjustment function of the lifting column 101 makes the equipment more adaptable, enabling it to quickly process various workpieces and reduce changeover time.

[0083] 3. Implementation of workpiece fixture:

[0084] The workpiece fixture 900 is composed of multiple components, including sensing device I 901, sensing device II 905, sensing device III 906, bottom support 902, pressing device 903, and side clamping device 904.

[0085] Sensing device I 901: Located at both ends of workpiece 110, used to accurately measure the end position of workpiece to ensure accurate alignment of workpiece;

[0086] Sensing device II 905 and sensing device III 906: respectively used to determine the side wall position and disassembly / assembly actions of the workpiece, further enhancing the accuracy of workpiece positioning;

[0087] The pressing device 903 and the side clamping device 904 of the workpiece fixture work together to press the upper surface of the workpiece by pressing the pressing device and the side clamping device abutting against the side wall of the workpiece, so as to ensure the stability and accurate positioning of the workpiece during the marking process.

[0088] 4. Implementation of diffuse reflection sensors in sensing devices:

[0089] The workpiece fixture is equipped with diffuse reflection sensors for sensing devices I, II, and III, which are fixed to the worktable 400 by brackets to ensure that the sensing devices can accurately detect the various positions of the workpiece.

[0090] The purple dashed line in the figure represents the working window range and the recognition range of the diffuse reflection sensor. These sensing devices detect the accurate position of the workpiece through sensors, thereby ensuring that the marking area of ​​the marking head is precisely aligned with the position of the workpiece.

[0091] 5. Implement supporting settings for automated and intelligent control:

[0092] The marking head, sensing device, and control system are connected to the electrical control cabinet through an integrated display control device, which facilitates real-time control and monitoring by operators. The integrated display simplifies the operation process, reduces human error, and improves production efficiency.

[0093] The working process for this application is as follows:

[0094] 1. Workpiece placement and positioning:

[0095] Workpiece 110 is placed on worktable 400, and bottom support 902 supports the workpiece to ensure that the workpiece does not tilt.

[0096] The sensing device I901 detects the position of both ends of the workpiece in real time to ensure that the ends of the workpiece are aligned.

[0097] Sensing device II 905 and sensing device III 906 respectively position and detect the side wall and disassembly / assembly actions of workpiece 110 to ensure that workpiece 110 is stable and within the correct marking area.

[0098] 2. Workpiece clamping:

[0099] The pressing device 903 and the side clamping device 904 apply pressure to the workpiece 110. The pressing device presses the upper surface of the workpiece, and the side clamping device presses the side wall of the workpiece 110 to ensure that the workpiece 110 does not shift or tilt.

[0100] 3. Marking operation:

[0101] Once the workpiece 110 is accurately positioned and firmly clamped, the marking head 100 adjusts its working height according to the adjustment of the lifting column 101 to ensure that the laser beam can accurately mark the designated area of ​​the workpiece.

[0102] The sensing device provides real-time feedback to ensure that the marking area is always aligned with the positioning of the workpiece 110.

[0103] 4. Real-time monitoring and operation:

[0104] The integrated display control device 300 displays the working status of the marking machine in real time, and provides operation buttons and warning lights to facilitate operators to monitor the work process;

[0105] After the workpiece is marked, the operator can perform disassembly or changeover operations through the control system. The whole process is highly automated, reducing the need for manual intervention.

[0106] Specifically, in one embodiment of this application, a limiting post 907 is provided in the target position area of ​​the workpiece 110 to limit the lateral limit position of the workpiece 110. The design of the limiting post 907, by being set on both sides of the workpiece fixture 900, provides a precise positioning boundary, ensuring that the workpiece 110 will not shift laterally during the marking process. Through precision machining and installation, the limiting post 907 ensures that it is firmly fixed in the workpiece fixture and can make precise contact with the side of the workpiece when it is placed. Thus, when the workpiece is clamped and fixed, the side wall position can be effectively limited, avoiding possible slippage or misalignment of the workpiece during the marking process. In this way, the limiting post 907 ensures the stability of the workpiece, improves the marking accuracy, and reduces marking errors caused by workpiece offset, thereby improving production efficiency and the consistency of finished products.

[0107] The material used to manufacture the limiting post 907 must be a high-strength, wear-resistant, and corrosion-resistant material, such as hardened steel or alloy material, to ensure that it does not wear or deform during long-term use and to ensure long-term stability of accuracy. The limiting post has high dimensional accuracy requirements and must be processed strictly according to the design requirements to avoid inaccurate workpiece positioning due to dimensional errors. During the manufacturing process, the limiting post 907 needs to be closely matched with other parts of the workpiece fixture 900. Therefore, the accuracy of its installation position should be ensured during assembly to avoid workpiece misalignment or unstable clamping due to installation errors.

[0108] Specifically, in one embodiment of this application, there are two pressing devices 903, which are arranged on both sides of the working area of ​​the marking head 100; the pressing devices 903 and the marking head 100 are arranged on the same side of the workpiece 110.

[0109] The pressing device 903 is equipped with a telescopic drive device;

[0110] By arranging two pressing devices 903 on both sides of the workpiece 110, the pressure applied to the workpiece is made more uniform and stable, thereby improving the stability of the workpiece during the marking process. The function of the pressing device 903 is to ensure that the workpiece does not move up and down during the marking process, and to ensure that the workpiece remains in the predetermined position under the marking head. With this arrangement, the marking head 100 can accurately mark the target position of the workpiece with laser, while avoiding the workpiece from floating up and down or shifting during the marking process, thereby improving the accuracy and consistency of the marking. The advantage of this design is that it can effectively reduce the marking error caused by workpiece instability, ensuring the high efficiency and high quality of the marking process.

[0111] In this embodiment, the two devices of the pressing device 903 should apply uniform pressure simultaneously to ensure that the workpiece 110 will not cause marking errors due to offset or uneven force. Therefore, the installation position and mechanical properties of the pressing device 903 need to be strictly controlled during the design so that it can press the upper surface of the workpiece smoothly and accurately.

[0112] Specifically, in one embodiment of this application, the side clamping device 904 includes a driving device 9041, a T-shaped block 9042, and an abutment post 9043. The extension end of the driving device 9041 is provided with the T-shaped block 9042, which is a protruding T-shape. The outer end of the T-shaped block 9042 protrudes and is provided with the abutment post 9043 through a fixing plate. An elastic pad is provided on the abutment post 9043, which is used to abut against the surface of the workpiece 110.

[0113] The T-block 9042 can extend and retract horizontally through the telescopic action of the drive device 9041, thereby pushing the abutment post 9043 to clamp the side of the workpiece 110. The elastic pad effectively avoids scratches or damage to the workpiece surface that may be caused by direct metal contact. The side clamping device 904 can provide a stable and uniform clamping force during workpiece clamping, keeping the workpiece in the correct position and ensuring that it will not shift during marking. The presence of the elastic pad can adaptively adjust to the slight unevenness of the workpiece surface, thereby improving the clamping accuracy and the stability of the marking process.

[0114] The drive device 9041 can be a cylinder, electric push rod, or other linear drive method, which drives the T-block 9042 to perform telescopic movement through a precise control system. The outer end protrusion of the T-block 9042 is connected to the abutment post 9043 through a fixed plate to form a robust clamping mechanism. The size, shape, and telescopic range of the T-block need to be optimized according to the size and shape of the workpiece to ensure that it can adapt to different types of workpieces. The design of the abutment post 9043 needs to ensure that it does not generate excessive or insufficient clamping force on the workpiece during the clamping process to prevent the workpiece from deforming or loosening. The elastic pad can be made of rubber or polyurethane material with moderate elasticity and wear resistance, which can effectively reduce damage to the workpiece surface caused by uneven clamping. During manufacturing, the elastic pad should fit tightly with the abutment post and ensure that it can distribute pressure evenly.

[0115] Specifically, in one embodiment of this application, an electrical control cabinet 700 is provided below the workbench 400; an industrial air conditioner 500 is provided on the side of the electrical control cabinet 700; a keyboard and mouse 600 and a button control box 800 are provided on one side of the electrical control cabinet 700, and the keyboard and mouse 600 and the button control box 800 are arranged side by side on the marking operation side.

[0116] The integrated display control device 300 is equipped with operation buttons; the integrated display control device 300 and the marking head 100 are equipped with warning lights 200 to indicate the working status; the integrated display control device 300 and the marking head 100 are arranged side by side, facing the working side; the keyboard and mouse 600 are equipped with pull-out panels; the electrical control cabinet 700 is equipped with wheels; the drive device 9041 is a cylinder; the warning light 200 is a tri-color light.

[0117] The electrical control cabinet 700 integrates various electrical components and control modules to ensure the stable operation of the marking machine. To guarantee the normal operation of the electrical equipment, the industrial air conditioner 500 effectively regulates the internal temperature of the electrical control cabinet, preventing overheating or damage to electrical components. The electrical control cabinet 700 also features a keyboard and mouse 600 and a button control box 800 on its side, arranged side-by-side on the marking operation side for convenient real-time operation and adjustments. The integrated display control device 300 is equipped with operation buttons, making operation more convenient and efficient. To provide real-time indication of the working status, the integrated display control device 300 and the marking head 100 are equipped with warning lights 200. The warning lights 200 adopt a three-color light design, using different colors to display the operating status of the equipment (e.g., red indicates a fault, green indicates normal operation, and yellow indicates standby), improving the operator's timely understanding of the equipment status. The keyboard and mouse 600 are equipped with a pull-out panel for convenient storage when not in use, ensuring the cleanliness of the work surface. The electrical control cabinet 700 is equipped with casters, facilitating the movement of the equipment between different working positions and providing high flexibility.

[0118] The pull-out panel design allows for easy concealment of the keyboard and mouse 600, saving space and keeping the work surface tidy. The casters on the electrical control cabinet 700 enhance the equipment's flexibility, enabling easy movement to different work or maintenance positions for convenient operation and maintenance. The warning light 200 uses a three-color design to indicate the equipment's operating status in real time, preventing errors or safety accidents caused by operators misjudging the equipment's status. During manufacturing, special attention must be paid to the structural space of the electrical control cabinet 700 to ensure it can accommodate and protect all electrical components, preventing external interference or damage during operation.

[0119] In summary, this invention aims to solve the problems of inaccurate workpiece positioning, unstable clamping, complex operation, and poor equipment stability in existing laser marking machine workstations during production. By adopting a vertical laser marking machine workstation design, this invention effectively improves workpiece positioning accuracy and clamping stability by configuring key components such as the marking head, workpiece clamp, pressing device, side clamping device, and sensing device, thereby ensuring high precision and efficiency in the marking process. In addition, this invention innovates in equipment control by setting up an integrated display control device, operation buttons, warning lights, and other functions, simplifying the operation process and improving the safety and convenience of equipment use. By optimizing the layout of the electrical control cabinet and equipping it with industrial air conditioning and wheels, this invention enhances the flexibility and operability of the equipment while ensuring its stability, thereby meeting the high-efficiency and precision marking requirements in large-scale production.

[0120] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.

Claims

1. A vertical, upright laser marking machine work station characterized by, The marking machine head (100), the integrated display control device (300), the workbench surface (400), and the workpiece clamp (900) are provided on the workbench surface (400). The marking machine head (100), the integrated display control device (300), and the workpiece clamp (900) are provided on the workbench surface (400). The marking machine head (100) comprises a lifting column (101) for adjusting the working height of the marking machine head (100). The workpiece clamp (900) is provided below the marking machine head (100) and is used for fixing the workpiece (110) so that the marking area of the workpiece (110) is within the working range of the marking machine head (100). The workpiece clamp (900) comprises an induction device I (901), a bottom support seat (902), a pressing device (903), a side clamping device (904), and an induction device II (905). The induction device I (901), the induction device II (905), and the induction device III (906) are provided with diffuse reflection sensors and are fixed on the workbench surface (400) through supports. The induction device I (901) is arranged at both ends of the target position of the workpiece (110) and is used for measuring the end position of the workpiece (110). The induction device II (905) and the induction device III (906) are arranged on both sides of the marking machine head (100), the induction device II (905) is used for measuring the side wall position of the workpiece (110), and the induction device III (906) is used for measuring the disassembly and assembly action of the workpiece (110).

2. A vertical vertical laser marking machine work station as claimed in claim 1, characterized in that, The pressing device (903) is arranged on one side of the workpiece (110), the side clamping device (904) is arranged on the other side of the workpiece (110), the pressing device (903) is used for abutting against the upper surface of the workpiece (110), and the side clamping device (904) is used for abutting against the side wall of the workpiece (110) to limit and fix the workpiece (110).

3. A vertical vertical laser marking machine work station as claimed in claim 1, characterized in that, The workpiece (110) target position region is provided with a limiting column (907) for limiting the side limit position of the workpiece (110).

4. A vertical vertical laser marking machine work station as claimed in claim 3, characterized in that, The pressing device (903) is arranged on one side of the workpiece (110), the side clamping device (904) is arranged on the other side of the workpiece (110), the pressing device (903) is used for abutting against the upper surface of the workpiece (110), and the side clamping device (904) is used for abutting against the side wall of the workpiece (110) to limit and fix the workpiece (110).

5. A vertical vertical laser marking machine work station as claimed in claim 1, characterized in that, The pressing device (903) is arranged on one side of the workpiece (110), the side clamping device (904) is arranged on the other side of the workpiece (110), the pressing device (903) is used for abutting against the upper surface of the workpiece (110), and the side clamping device (904) is used for abutting against the side wall of the workpiece (110) to limit and fix the workpiece (110).

6. A vertical vertical laser marking machine work station as claimed in claim 1, characterized in that, The workbench surface (400) is provided with at least three bottom support seats (902) for supporting the workpiece (110).

7. A vertical vertical laser marking machine work station as defined in claim 1, wherein, The workbench surface (400) is provided with an electrical control cabinet (700) below.

8. A vertical vertical laser marking machine work station as claimed in claim 1, characterized in that, The workbench surface (400) is provided with an electrical control cabinet (700) below. The side of the electrical control cabinet (700) is provided with an industrial air conditioner (500); The integrated display control device (300) is provided with an operation button; The integrated display control device (300) and the marking machine head (100) are provided with a warning light (200) for indicating the working state.

9. A vertical vertical laser marking machine work station as defined in claim 1, wherein, The integrated display control device (300) and the marking machine head (100) are arranged side by side and face the working side; The keyboard and mouse (600) are provided with a pull-out plate; the electrical control cabinet (700) is provided with a walking wheel; the driving device (9041) is a pneumatic cylinder; and the warning light (200) is a three-color light.