Transformer part laser marking device
By designing a laser marking device for transformer parts and utilizing the coordination of adjustment components and recognition blocks, the problems of accuracy and consistency in laser marking of transformer parts were solved, achieving efficient and precise laser marking results.
Patent Information
- Application Number
- CN202423148438.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing technologies for laser marking of transformer parts suffer from low efficiency, low accuracy, and a tendency for markings to be distorted or incomplete, mainly due to the inaccurate manual adjustment of the laser marker's position relative to the part.
A laser marking device for transformer parts was designed, comprising an adjustment component and a laser marking component. The processing plate can be moved flexibly through the cooperation of the horizontal slide rail, the vertical slide rail and the slider. Combined with the distance table of the center positioning point and the built-in recognition block, the accuracy and consistency of the laser marking are ensured.
This technology achieves precision and consistency in laser marking of transformer parts, avoiding distorted or incomplete markings and improving marking quality and efficiency.
Smart Images

Figure CN223557516U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to transformer processing technical field more specifically, it relates to a kind of transformer parts laser marking device. BACKGROUND
[0002] Transformer is a kind of electrical equipment for changing alternating voltage, is widely used in power system, electronic equipment and industrial field. It is transmitted to the other end by electromagnetic induction principle, while realizing the rise and fall of voltage.
[0003] Laser marking is mainly carried out on transformer to realize the permanence, clarity and anti-falsification of product identification. Laser marking can engrave accurate text, symbol or two-dimensional code on the surface of transformer, not only facilitate product traceability and management, but also improve the brand image and market competitiveness of product, so it is usually needed to carry out laser marking on some parts exposed outside before transformer leaves factory.
[0004] In prior art, there are some problems in marking transformer parts. Since the shape of transformer parts is various and the marking position is not fixed, traditional marking method usually relies on manual adjustment of the relative position between laser marker and parts and the placement angle of parts. This manual operation is not only inefficient, but also easily leads to problems such as marking distortion, incomplete marking or position deviation, which affects the precision and consistency of marking. In addition, manual operation may also introduce errors due to fatigue or negligence, further reducing the quality of marking.
[0005] Therefore, the utility model provides a kind of transformer parts laser marking device. UTILITY MODEL CONTENT
[0006] In view of the deficiencies in prior art, the purpose of the utility model is to provide a kind of transformer parts laser marking device which can adjust the placement position of transformer parts and avoid marking distortion or incomplete marking.
[0007] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0008] A kind of transformer parts laser marking device, including processing box, the processing box is used to provide stable processing environment for device, the processing box includes box body, the box body one end is hinged with box door, the box door can be rotated relative to box body;
[0009] Adjusting assembly is arranged in the box body, the adjusting assembly is used to adjust the position of transformer parts for processing, and the adjusting assembly includes side plate arranged on the side wall of the box body, vertical direction arranged stand plate and horizontal direction arranged processing plate.
[0010] The box body is provided with a laser marking assembly at one end away from the box door, and the laser marking assembly is used for emitting laser to mark the transformer parts.
[0011] The utility model further sets up: the box body roof bottom is provided with magnetic attraction piece, magnetic attraction piece is used to open the box door in the processing process with the magnetic force adsorption, avoid, the box door is opened, the magnetic attraction piece includes the installation block that is connected with the box body roof, the installation block is close to the box door one end installation and abuts the head, the abuts the head away from the installation block one end is provided with magnet.
[0012] The utility model further sets up: the side plate is along horizontal direction setting, be provided with two groups of horizontal slide rails on the side plate, two groups the horizontal slide rail interval one end distance setting, each group horizontal slide rail on sliding connection has a group of horizontal sliding block, the horizontal sliding block away from the horizontal slide rail one side is provided with vertical board.
[0013] The utility model further sets up: vertical board away from the horizontal sliding block one side is provided with two groups of longitudinal slide rails, two groups the longitudinal slide rail is along vertical direction, interval one end distance setting, each group the longitudinal slide rail on sliding connection has longitudinal sliding block, and the longitudinal sliding block is connected with the side wall of processing plate.
[0014] Through adopting above-mentioned technical scheme, through the cooperation of horizontal slide rail and horizontal sliding block, longitudinal slide rail and longitudinal sliding block, the flexible movement of processing plate in the range of box body can be realized, through the flexible movement of processing plate in the box body, different shapes of transformer parts can be adjusted flexibly, the processing position of transformer part can be ensured to be in the appropriate range of laser marking assembly, and the processing position is located directly below the laser marking assembly, the accuracy of laser marking is ensured, and the phenomenon of marking distortion or incomplete marking is avoided.
[0015] The utility model further sets up: the processing plate includes positioning point, and the positioning point is arranged at the center position of the processing plate, a group of positioning blocks are arranged at the four corner positions of the processing plate respectively, and the positioning blocks are arranged around the positioning point.
[0016] The utility model further sets up: the laser marking assembly includes main slide rail that is connected on the box body, and the main slide rail is arranged along the horizontal direction, and the main slide rail is slidably connected with main sliding block, and the main sliding block is provided with laser emitter at one end away from the main slide rail, and the laser emitter is provided with heat dissipation opening on one side, and the heat dissipation opening is used to reduce the temperature of laser emitter when working.
[0017] By adopting the technical scheme, the utility model discloses the positioning point is arranged in the processing board center position, and the laser marking assembly is internally built-in the identification block, and the distance table is built-in in the identification block, and the distance table specific information is the distance of the laser marking assembly and the processing board corresponding to the different positioning point size. The identification block can obtain information through visual identification, and the identification block is used to obtain the positional relationship between the current laser marking assembly and the processing board. When the laser marking assembly carries out laser processing, the identification block sets the positioning point position as the base point, and the identification block judges the distance between the processing board and the laser marking assembly through the obtained positioning point size. When the distance is far, the size of the positioning point obtained by the identification block is small. When the distance is near, the size of the positioning point obtained by the identification block is large. Through the built-in distance table of the identification block, the specific distance between the laser marking assembly and the processing board can be obtained, so that the accurate positioning of the laser marking assembly and the processing board in the vertical direction can be ensured. And since the positioning point is set as the base point, the center of the processing board can be found through the positioning point regardless of the adjustment mode of the processing board, so that the horizontal positioning effect of the laser marking assembly is accurate.
[0018] In summary, the present application includes at least one of the following beneficial technical effects:
[0019] 1、The utility model discloses the horizontal slide rail and longitudinal slide rail are set up, through the cooperation of horizontal slide rail and horizontal slide block, longitudinal slide rail and longitudinal slide block, the flexible movement of processing board in the box range can be realized, through the flexible movement of processing board in the box, different shape transformer parts can be adjusted flexibly, guarantee the processing position of transformer parts can be with laser marking assembly in the appropriate range, and the processing position is located in the right below laser marking assembly, guarantee the accuracy of laser marking, avoid the phenomenon that marking is distorted or marking is not complete.
[0020] 2, The utility model discloses a positioning point is established in the processing board center position, and laser marking assembly has built -in identification block inside, and identification block has built -in distance table, and the distance table concrete information is the distance of laser marking assembly and processing board corresponding to the different positioning point size. Wherein identification block can obtain information through visual identification, and the role of identification block is to obtain the positional relationship of current laser marking assembly and processing board. When laser marking assembly carries out laser processing, identification block sets the positioning point position as base point, and identification block will judge the distance of processing board and laser marking assembly through the positioning point size obtained, when the distance is far, the size of the positioning point obtained by identification block is small, and when the distance is near, the size of the positioning point obtained by identification block is big, through the built -in distance table of identification block, the specific distance of laser marking assembly and processing board can be obtained, therefore, the accurate positioning of laser marking assembly and processing board in vertical direction can be guaranteed. And because the positioning point is set as base point, no matter the processing board is adjusted in any mode, the center of processing board can be found through the positioning point, and the positioning effect of laser marking assembly in horizontal direction is accurate. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a structural schematic diagram of the transformer part laser marking device of the utility model.
[0022] Figure 2 It is a structural schematic diagram of the magnetic attraction piece in the utility model.
[0023] Figure 3 It is a structural schematic diagram of the adjusting assembly in the utility model.
[0024] Figure 4 It is a structural schematic diagram of the laser marking assembly in the utility model.
[0025] Explanation of attached drawing: 1, processing box;11, box body;12, box door;13, magnetic attraction piece;131, mounting block;132, abutment;133, magnet;
[0026] 2, adjusting assembly;21, side plate;22, horizontal slide rail;23, horizontal sliding block;24, vertical plate;25, vertical slide rail;26, vertical sliding block;27, processing board;271, positioning point;272, positioning block;
[0027] 3, laser marking assembly;31, main slide rail;32, main sliding block;33, laser emitter;331, heat dissipation port. DETAILED DESCRIPTION
[0028] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The utility model will be described in detail below with reference to the drawings and in combination with embodiments.
[0029] It should be noted that all technical and scientific terms used in the present application have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs, unless otherwise specified.
[0030] Embodiment one, please refer to Figures 1-4 The utility model provides the following technical scheme: specifically is a kind of transformer parts laser marking device, processing box 1 is used to provide stable processing environment for device. Box 11 inside is provided with adjusting assembly 2, adjusting assembly 2 is used to adjust transformer parts position for processing, by the adjustment of adjusting assembly 2, the position of laser marking assembly 3 and transformer parts can be flexibly adjusted, ensure that the position of transformer parts that need to be marked is just below laser marking assembly 3, avoid the phenomenon that marking is distorted or not complete. Box 11 one end is provided with laser marking assembly 3, and laser marking assembly 3 is used to emit laser to carry out laser marking to transformer parts.
[0031] Refer to Figure 1 , Figure 2 Processing box 1 includes box 11, and the box 11 is provided as a hollow cuboid structure. The box 11 is hingedly connected with a box door 12 at one end. The box door 12 can be rotated relative to the box 11. When the device is used to perform laser marking on transformer parts, the box door 12 is closed to avoid the laser stimulating the glasses of the operator. The box 11 is provided with a magnetic block 13 at the bottom of the top plate. The magnetic block 13 is used to attract the box door 12 by magnetic force to avoid the box door 12 from being opened during the processing. The magnetic block 13 includes an installation block 131 connected with the top plate of the box 11. The installation block 131 is provided as a cuboid structure and can be stably connected with the top plate of the box 11. The installation block 131 is provided with an abutting head 132 at the end close to the box door 12. The abutting head 132 is provided with a magnet 133 at the end away from the installation block 131.
[0032] Refer to Figure 3 The adjusting assembly 2 includes a side plate 21 arranged on the side wall of the box 11, a vertical plate 24 arranged in the vertical direction, and a processing plate 27 arranged in the horizontal direction. The side plate 21 is arranged in the horizontal direction. Two groups of transverse sliding rails 22 are arranged on the side plate 21. The two groups of transverse sliding rails 22 are arranged at an interval. Each group of transverse sliding rails 22 is slidably connected with a group of transverse sliding blocks 23. The transverse sliding blocks 23 are provided with the vertical plate 24 at the side away from the transverse sliding rails 22. The transverse sliding blocks 23 can drive the vertical plate 24 to move in the horizontal direction relative to the transverse sliding rails 22. The vertical plate 24 is provided with two groups of longitudinal sliding rails 25 at the side away from the transverse sliding blocks 23. The two groups of longitudinal sliding rails 25 are arranged at an interval in the vertical direction. Each group of longitudinal sliding rails 25 is slidably connected with a longitudinal sliding block 26. The longitudinal sliding block 26 is connected with the side wall of the processing plate 27. The longitudinal sliding block 26 can drive the processing plate 27 to move in the vertical direction relative to the longitudinal sliding rails 25.
[0033] Through the cooperation of the transverse sliding rail 22 and the transverse sliding block 23, and the longitudinal sliding rail 25 and the longitudinal sliding block 26, the machining plate 27 can be flexibly moved within the range of the box body 11. Through the flexible movement of the machining plate 27 within the box body 11, different shapes of transformer parts can be flexibly adjusted, so that the machining position of the transformer parts can be within the appropriate range of the laser marking assembly 3 and located directly below the laser marking assembly 3, ensuring the accuracy of laser marking and avoiding the phenomenon of distorted marking or incomplete marking.
[0034] Specifically, the machining plate 27 comprises a positioning point 271 arranged at the center of the machining plate 27. The positioning point 271 is convenient for the operator to place the transformer parts, and at the same time, the positioning point 271 is convenient for the laser marking assembly 3 to position. A set of positioning blocks 272 are arranged at the four corners of the machining plate 27, and the positioning blocks 272 are arranged around the positioning point 271. The positioning blocks 272 can assist in positioning, and to some extent, the positioning blocks 272 also avoid the risk of the transformer parts falling off when the machining plate 27 is adjusted.
[0035] It should be noted that the laser marking assembly 3 is internally provided with an identification block, and the identification block is internally provided with a distance table. The distance table contains specific information that the distance between the laser marking assembly 3 and the machining plate 27 corresponds to the size of different positioning points. The identification block can obtain information through visual recognition. The function of the identification block is to obtain the positional relationship between the laser marking assembly 3 and the machining plate 27. When the laser marking assembly 3 performs laser processing, the identification block sets the positioning point 271 as the base point. The identification block can determine the distance between the machining plate and the laser marking assembly 3 by obtaining the size of the positioning point 271. When the distance is far, the size of the positioning point 271 obtained by the identification block is small. Correspondingly, when the distance is close, the size of the positioning point 271 obtained by the identification block is large. Through the distance table internally provided in the identification block, the specific distance between the laser marking assembly 3 and the machining plate 27 can be obtained. Therefore, the accurate positioning of the laser marking assembly 3 and the machining plate 27 in the vertical direction can be ensured. Moreover, since the positioning point 271 is set as the base point, no matter how the machining plate 27 is adjusted, the center of the machining plate 27 can be found through the positioning point 271, so that the horizontal positioning effect of the laser marking assembly 3 is accurate.
[0036] Reference Figure 4The laser marking assembly 3 comprises a main slide rail 31 connected to the box body 11, the main slide rail 31 is arranged in a horizontal direction, a main slide block 32 is slidably connected to the main slide rail 31, a laser emitter 33 is installed at one end of the main slide block 32 away from the main slide rail 31, and the main slide block 32 can drive the laser emitter 33 to be adjusted in displacement in a horizontal direction relative to the main slide rail 31, so that the laser marking assembly 3 can process different positions of the transformer parts, and a heat dissipation opening 331 is formed on one side of the laser emitter 33 and is used for reducing the temperature of the laser emitter 33 when the laser emitter 33 works.
[0037] Obviously, the above-described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should belong to the protection scope of the present application.
Claims
1. A laser marking device for transformer parts, characterized in that: The device includes a processing box (1) which provides a stable processing environment for the device. The processing box (1) includes a box body (11) with a door (12) hinged to one end of the box body (11). The door (12) can rotate relative to the box body (11). The housing (11) is provided with an adjustment assembly (2). The adjustment assembly (2) is used to adjust the position of the transformer parts during processing. The adjustment assembly (2) includes a side plate (21) that fits against the side wall of the housing (11), a vertical plate (24) that is set in the vertical direction, and a processing plate (27) that is set in the horizontal direction. A laser marking component (3) is provided at the end of the enclosure (11) away from the door (12). The laser marking component (3) is used to emit laser to mark the transformer parts.
2. The laser marking device for transformer parts according to claim 1, characterized in that: A magnetic block (13) is provided at the bottom of the top plate of the box (11). The magnetic block (13) is used to attract the box door (12) by magnetic force to prevent the box door (12) from opening during processing. The magnetic block (13) includes a mounting block (131) connected to the top plate of the box (11). An abutment (132) is installed on the end of the mounting block (131) near the box door (12). A magnet (133) is provided on the end of the abutment (132) away from the mounting block (131).
3. The laser marking device for transformer parts according to claim 1, characterized in that: The side plate (21) is arranged in a horizontal direction. Two sets of transverse slide rails (22) are provided on the side plate (21). The two sets of transverse slide rails (22) are spaced apart by one end. A set of transverse sliders (23) is slidably connected on each set of transverse slide rails (22). A vertical plate (24) is provided on the side of the transverse sliders (23) away from the transverse slide rails (22).
4. The laser marking device for transformer parts according to claim 3, characterized in that: The vertical plate (24) is provided with two sets of longitudinal slide rails (25) on the side away from the horizontal slider (23). The two sets of longitudinal slide rails (25) are arranged in the vertical direction and spaced apart by one end. Each set of longitudinal slide rails (25) is slidably connected to a longitudinal slider (26), and the longitudinal slider (26) is connected to the side wall of the processing plate (27).
5. The laser marking device for transformer parts according to claim 1, characterized in that: The processing plate (27) includes a positioning point (271), which is located at the center of the processing plate (27). A set of positioning blocks (272) are respectively provided at the four corners of the processing plate (27). The positioning blocks (272) are arranged around the positioning point (271). The positioning point (271) facilitates the positioning of the laser marking component (3).
6. The laser marking device for transformer parts according to claim 1, characterized in that: The laser marking assembly (3) includes a main slide rail (31) connected to the housing (11). The main slide rail (31) is arranged in a horizontal direction. A main slider (32) is slidably connected on the main slide rail (31). A laser emitter (33) is installed at the end of the main slider (32) away from the main slide rail (31). A heat dissipation vent (331) is provided on one side of the laser emitter (33). The heat dissipation vent (331) is used to reduce the temperature of the laser emitter (33) when it is working.