Self-adaptive material optical fiber marking machine
The adaptive material fiber laser marking machine detects material properties through sensors and automatically adjusts marking parameters, solving the problems of low efficiency and inconsistent quality of traditional fiber laser marking machines on various materials, and achieving efficient and stable laser marking effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-24
AI Technical Summary
Traditional fiber optic marking machines require frequent manual adjustments to marking parameters and machine positions when dealing with materials of various materials, hardness, and surface properties, resulting in low efficiency and difficulty in ensuring consistent marking quality.
An adaptive material fiber optic marking machine is used. Through fixed test components and sensor systems, the hardness and surface roughness of the material are detected in real time, and the marking parameters, including laser power, marking speed and depth, are automatically adjusted to adapt to the characteristics of different materials.
This improves the precision and stability of laser marking, ensuring consistency and efficiency in marking quality.
Smart Images

Figure CN224026733U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to optical fiber marking machine technical field especially relates to a kind of self-adapting material optical fiber marking machine. BACKGROUND
[0002] Optical fiber marking machine uses optical fiber laser as light source, permanent mark is marked on the surface of various substances by laser beam, its effect includes that surface material evaporates to expose deep material, light energy causes surface material physical change to carve trace, or burns part of material to show required pattern, character etc., to meet various production needs.
[0003] Through search, the case of announcement number "CN222492596U" mentioned "the utility model discloses a rotary mobile laser optical fiber marking machine, including cabinet assembly, cabinet main body, gyro wheel, table board, keyboard box, mounting bracket, display, control button, industrial computer cabinet, support foot, double-shaft marking mechanism, first screw rod module, field lens, galvanometer, optical path, first motor, second screw rod module, second motor, Z rotation mechanism, third motor, mounting bracket, chuck and center fixed support;The cabinet assembly includes table board, the upper surface of table board is fixedly connected with double-shaft marking mechanism and Z rotation mechanism, Z rotation mechanism includes mounting bracket", when using, through rotation mechanism, cylindrical product can be fixed and rotated, laser marking is carried out to the arc surface of cylindrical product, while cooperating double-shaft marking mechanism, the horizontal movement of laser marking mechanism is realized when focusing distance is adjusted, can cover entire arc surface, reach the purpose of multi-position arc surface laser marking.
[0004] However, traditional optical fiber marking machine often needs manual frequent adjustment marking parameter and mechanical position when facing multiple different materials, hardness, surface characteristics, efficiency is low and it is difficult to guarantee the consistency of marking quality.
[0005] Therefore, we provide a kind of self-adapting material optical fiber marking machine to solve the above problems. Utility model content
[0006] In order to make up for the above shortcomings, the utility model provides a kind of self-adapting material optical fiber marking machine, to solve the above problems.
[0007] To achieve the above purpose, the utility model provides the following technical scheme:
[0008] The utility model relates to an adaptive material fiber marking machine, including cabinet and operation platform, the top of cabinet is provided with operation platform, the top right side of operation platform is installed with control cabinet, the front side of control cabinet is installed with control panel, the left side of control cabinet is installed with laser marking head, the top of operation platform is provided with fixed test component, fixed test component includes the placement board of installation operation platform top left side, the left and right sides of placement board are provided with mounting bracket, the top of mounting bracket is provided with connecting slide rod, the inner side of connecting slide rod is movably connected with support cross bar, the lower side of support cross bar is provided with fixed pressing plate.
[0009] As a further description of the above technical solutions:
[0010] The mounting bracket is welded between the operation platform, and the electric control lifting rod is installed at both ends of the mounting bracket, the top end of the electric control lifting rod is fixedly connected with the connecting head, and the connecting slide rod and the connecting head are welded.
[0011] As a further description of the above technical solutions:
[0012] The support cross bar and the connecting slide rod are sleeved, and the support cross bar is provided with two groups.
[0013] As a further description of the above technical solutions:
[0014] The bottom end of the support cross bar is provided with an electric control telescopic pressing rod, the bottom end of the electric control telescopic pressing rod is provided with a fixed pressure sensor, the fixed pressing plate and the fixed pressure sensor are fixedly connected, the fixed pressure sensor and the electric control telescopic pressing rod are electrically connected, and the fixed pressing plate and the support cross bar constitute a lifting structure through the electric control telescopic pressing rod.
[0015] As a further description of the above technical solutions:
[0016] The bottom end of the fixed pressing plate is connected with a non-slip pad, and the non-slip pad is made of rubber material.
[0017] As a further description of the above technical solutions:
[0018] The bottom end of the fixed pressing plate is provided with a mounting groove, the inner side of the mounting groove is provided with a hardness pressure sensor, the bottom end of the hardness pressure sensor is connected with a hardness testing head through a spring, the hardness testing head protrudes from the bottom surface of the fixed pressing plate, and the hardness pressure sensor and the control panel are electrically connected.
[0019] As a further description of the above technical solutions:
[0020] The left end of the laser marking head is provided with a surface roughness sensor, which is a non-contact laser displacement sensor, and the surface roughness sensor is electrically connected with the control panel.
[0021] Compared with the prior art, the utility model has the beneficial effects that:
[0022] Through the setting fixed test component, the fixed pressing plate is driven to lift by the electric control lifting rod and the electric control telescopic pressing rod, the material surface is fixed, and the friction between the fixed pressing plate and the material is increased by the antiskid pad at the bottom end of the fixed pressing plate, so that the displacement of the material in the laser marking process is prevented, and the precision and stability of the laser marking are improved.
[0023] The hardness of the material is tested by the hardness pressure sensor and the hardness test head, and the roughness of the material surface is detected by the surface roughness sensor, and the test data is transmitted to the control panel, and the control panel automatically adjusts various parameters of the marking machine according to the hardness and roughness of the material, realizes self-adaptive marking of different materials, and improves the marking quality and efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is the overall appearance structure schematic diagram of the utility model;
[0025] Figure 2 It is the cooperation structure schematic diagram of the operation table, the placing plate and the mounting frame of the utility model;
[0026] Figure 3 It is the cooperation structure schematic diagram of the mounting frame, the connecting slide rod and the supporting cross rod of the utility model;
[0027] Figure 4 It is the cooperation structure schematic diagram of the supporting cross rod, the electric control telescopic pressing rod and the fixed pressing plate of the utility model;
[0028] Figure 5 It is the cooperation structure schematic diagram of the fixed pressing plate and the antiskid pad of the utility model;
[0029] Figure 6 It is the cooperation structure schematic diagram of the fixed pressing plate and the antiskid pad of the utility model; Figure 5 It is the cooperation structure schematic diagram of the fixed pressing plate and the antiskid pad of the utility model;
[0030] The labels in the figure: 1, cabinet; 2, operating table; 3, control console; 4, control panel; 5, laser marking head; 6, fixed test assembly; 601, placement plate; 602, mounting bracket; 603, electric control lifting rod; 604, connecting head; 605, connecting slide rod; 606, supporting cross bar; 607, electric control telescopic pressing rod; 608, fixed pressing plate; 609, non-slip pad; 610, mounting groove; 611, hardness test head; 612, hardness pressure sensor; 613, fixed pressure sensor; 614, surface roughness sensor. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0032] Please refer to Figures 1-6 The utility model provides a kind of technical solutions: a kind of self-adapting material fiber marking machine, including cabinet 1 and operating table 2, the top of cabinet 1 is provided with operating table 2, the top right side of operating table 2 is installed with control console 3, the front side of control console 3 is installed with control panel 4, the left side of control console 3 is installed with laser marking head 5, the top of operating table 2 is provided with fixed test assembly 6, fixed test assembly 6 includes the placement plate 601 installed in the top left side of operating table 2, the left and right sides of placement plate 601 are provided with mounting bracket 602, the top of mounting bracket 602 is provided with connecting slide rod 605, the inner side of connecting slide rod 605 is movably connected with supporting cross bar 606, the bottom of supporting cross bar 606 is provided with fixed pressing plate 608, the position and parameter of laser marking head 5 are controlled and adjusted by control panel 4, to accurately mark the material.
[0033] Further, mounting bracket 602 and operating table 2 are welded, both ends of mounting bracket 602 are provided with electric control lifting rod 603, the top of electric control lifting rod 603 is fixedly connected with connecting head 604, connecting slide rod 605 and connecting head 604 are welded, the driving of electric control lifting rod 603 makes connecting slide rod 605 drive supporting cross bar 606 and fixed pressing plate 608 to lift, to adapt to materials of different heights, increase the application range of equipment.
[0034] Further, supporting cross bar 606 and connecting slide rod 605 are sleeved, supporting cross bar 606 is provided with two groups, by adjusting the position of supporting cross bar 606 on connecting slide rod 605, the position of fixed pressing plate 608 is changed according to materials of different sizes, to ensure the accuracy of pressing and fixing.
[0035] Further, the bottom end of the support cross bar 606 is provided with an electrically controlled telescopic pressure bar 607 on both sides, and the bottom end of the electrically controlled telescopic pressure bar 607 is provided with a fixed pressure sensor 613. The fixed pressure plate 608 is fixedly connected between the fixed pressure sensor 613, and the fixed pressure sensor 613 is electrically connected with the electrically controlled telescopic pressure bar 607. The fixed pressure plate 608 forms a lifting structure with the support cross bar 606 through the electrically controlled telescopic pressure bar 607. By the telescopic movement of the electrically controlled telescopic pressure bar 607, the fixed pressure plate 608 is driven to press and fix the material, so that the material does not move or deform during the marking process, and the marking precision and stability are improved. At the same time, the fixed pressure sensor 613 can ensure that the pressing force on the material is the same each time.
[0036] Further, the bottom end of the fixed pressure plate 608 is connected with a non-slip pad 609. The non-slip pad 609 is made of rubber material. The non-slip pad 609 not only increases the friction between the fixed pressure plate 608 and the material to prevent the material from sliding during the pressing process, but also protects the surface of the material from being damaged by the fixed pressure plate 608.
[0037] Further, the bottom end of the fixed pressure plate 608 is provided with a mounting groove 610, and the inner side of the mounting groove 610 is provided with a hardness pressure sensor 612. The bottom end of the hardness pressure sensor 612 is connected with a hardness testing head 611 through a spring. The hardness testing head 611 protrudes from the bottom surface of the fixed pressure plate 608. The hardness pressure sensor 612 is electrically connected with the control panel 4. When the fixed pressure plate 608 is pressed and fixed, the hardness testing head 611 contacts the surface of the material, and the hardness pressure sensor 612 can sense and measure the pressure received by the material in real time. When the material is soft, the pressure transmitted by the hardness testing head 611 is relatively small, and when the material is hard, the pressure transmitted by the hardness testing head 611 is relatively large. At the same time, the detected pressure is transmitted to the control panel 4, so that the hardness of the material is analyzed through the control panel 4, and the marking parameters of the laser marking head 5, such as laser power, marking speed and marking depth, are automatically adjusted according to the hardness of the material, so as to ensure consistent marking effect on materials with different hardness.
[0038] Further, the left end of the laser marking head 5 is provided with a surface roughness sensor 614, which is a non-contact laser displacement sensor, and is electrically connected with the control panel 4. The surface roughness sensor 614 can quickly measure the surface roughness of the material before laser marking in a non-contact manner. The measured roughness data is transmitted to the control panel 4 in real time, and the control panel 4 automatically adjusts the marking strategy of the laser marking head 5 according to the surface roughness of the material, such as adjusting the focusing position, spot size and marking path of the laser beam, so as to adapt to the surface of materials with different roughness and ensure the clarity and consistency of the marked patterns or characters.
[0039] Working principle: install the device to the working position, turn on the power, start the equipment, place the material to be marked on the placing plate 601, operate the electric control lifting rod 603 through the control panel 4, so that the connecting slide rod 605 drives the supporting cross rod 606 and the fixed pressing plate 608 to descend to the appropriate position, then the electric control telescopic pressing rod 607 is started to drive the fixed pressing plate 608 to press and fix the material, at this time the fixed pressing force sensor 613 monitors and records the pressing force in real time, so as to ensure the consistency of the pressing force each time, at the same time when the fixed pressing plate 608 is pressed and fixed, the hardness testing head 611 contacts with the surface of the material, the hardness pressure sensor 612 senses and measures the pressure of the material, and transmits the data to the control panel 4 for analysis, and the control panel 4 automatically adjusts the marking parameters of the laser marking head 5 according to the hardness of the material, so as to adapt to materials with different hardness, at the same time, the surface roughness sensor 614 quickly measures the surface roughness of the material in a non-contact manner, and transmits the measured roughness data to the control panel 4 in real time, and the control panel 4 automatically adjusts the marking strategy of the laser marking head 5 according to the surface roughness of the material, so as to ensure the clarity and consistency of the marked patterns or characters, so that the use process of the self-adaptive material fiber marking machine is completed.
[0040] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An adaptive material fiber optic marking machine, comprising a cabinet (1) and an operating table (2), characterized in that: The top of the cabinet (1) is provided with an operating table (2), the right side of the top of the operating table (2) is provided with a control console (3), the front side of the control console (3) is provided with a control panel (4), the left side of the control console (3) is provided with a laser marking head (5), the top of the operating table (2) is provided with a fixed test assembly (6), the fixed test assembly (6) includes a placement plate (601) installed on the left side of the top of the operating table (2), the left and right sides of the placement plate (601) are provided with mounting brackets (602), the top of the mounting brackets (602) is provided with a connecting slide rod (605), the inner side of the connecting slide rod (605) is movably connected with a support crossbar (606), and the bottom of the support crossbar (606) is provided with a fixed pressure plate (608).
2. The adaptive material fiber optic marking machine according to claim 1, characterized in that, The mounting bracket (602) is welded to the operating table (2). Both ends of the mounting bracket (602) are equipped with electrically controlled lifting rods (603). The top of the electrically controlled lifting rods (603) is fixedly connected to a connector (604). The connecting slide rod (605) is welded to the connector (604).
3. The adaptive material fiber optic marking machine according to claim 1, characterized in that, The supporting crossbar (606) and the connecting slide bar (605) are sleeved together, and two sets of the supporting crossbar (606) are provided.
4. The adaptive material fiber optic marking machine according to claim 1, characterized in that, Electrically controlled telescopic pressure rods (607) are installed on both sides of the bottom end of the support crossbar (606). A fixed pressure sensor (613) is installed at the bottom end of the electrically controlled telescopic pressure rod (607). The fixed pressure plate (608) and the fixed pressure sensor (613) are fixedly connected. The fixed pressure sensor (613) and the electrically controlled telescopic pressure rod (607) are electrically connected. The fixed pressure plate (608) forms a lifting structure with the support crossbar (606) through the electrically controlled telescopic pressure rod (607).
5. The adaptive material fiber optic marking machine according to claim 1, characterized in that, The bottom end of the fixed pressure plate (608) is bonded with an anti-slip pad (609), which is made of rubber.
6. The adaptive material fiber optic marking machine according to claim 1, characterized in that, The bottom center of the fixed pressure plate (608) is provided with an installation groove (610). A hardness pressure sensor (612) is installed inside the installation groove (610). The bottom end of the hardness pressure sensor (612) is connected to a hardness test head (611) by a spring. The hardness test head (611) protrudes from the bottom surface of the fixed pressure plate (608). The hardness pressure sensor (612) is electrically connected to the control panel (4).
7. The adaptive material fiber optic marking machine according to claim 1, characterized in that, A surface roughness sensor (614) is installed on the left end of the laser marking head (5). The surface roughness sensor (614) is a non-contact laser displacement sensor. The surface roughness sensor (614) is electrically connected to the control panel (4).
Citation Information
Patent Citations
Rotary moving laser optical fiber marking machine
CN222492596U