Coated surface inspection training device

By designing a paint inspection training device, which uses existing car door panels to simulate the actual testing environment and uses a control box to control timing lights to form a paint inspection path, the problem of low efficiency in existing car paint inspection training is solved, and efficient and low-cost skills training is achieved.

CN223828135UActive Publication Date: 2026-01-23GAC TOYOTA MOTOR
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Patent Information

Application Number
CN202520171733.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-01-23
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

Current automotive paint inspection training relies on manual visual inspection, which requires experienced technicians, resulting in low training efficiency and high costs due to the large consumption of equipment for practical training.

Method used

Design a paint inspection training device that uses existing automotive door panels to simulate the actual inspection environment. The device uses a control box to control timing lights to form a paint inspection path, providing clear visual guidance and ensuring the standardization and consistency of the inspection process.

Benefits of technology

It improved the realism and efficiency of training, reduced the adaptation period for new employees, lowered training costs, reduced randomness and human error, and improved the level of quality control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a coat surface inspection training device, relates to technical worker skill training technical field, the coat surface inspection training device comprises a frame, an operating platform and a control box, the operating platform comprises a mounting rack and a detection plate, the mounting rack is connected with the frame, the detection plate is connected with the mounting rack, the detection plate is provided with a functional area, and the functional area is connected with the control box. The functional area comprises a lamplight area and a paint surface detection area which are sequentially arranged in the first direction, a plurality of timing lamps are arranged on the lamplight area, and the control box can sequentially turn off the timing lamps in the second direction to form a paint surface detection path. According to the technical scheme of the utility model, the existing automobile door panel is adopted as the detection plate, so that the panel paint surface detection environment is actually restored, an efficient skill training means is provided for new employees, the sense of reality of training is greatly enhanced, the adaptation period of the new employees after the new employees are on duty is reduced, the training is more effective, and the working efficiency is improved. Students can more quickly adapt to the requirements of actual working posts.
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Description

Technical Field

[0001] This utility model relates to the field of technical worker skills training technology, and in particular to a coating inspection training device. Background Technology

[0002] Automotive paint inspection is an important process for assessing the appearance and paint quality of a car. It is crucial for ensuring the vehicle's aesthetics and resale value. Good paint not only enhances the vehicle's visual appeal but also protects the body from environmental factors and extends its lifespan.

[0003] In factories, automotive paint inspection mainly relies on manual visual inspection. This method requires experienced technicians to identify defects such as particles and scratches through visual inspection. Visual inspection places high demands on the inspector's hand speed and eyesight. Untrained personnel find it difficult to complete this task. Current training methods mainly rely on hands-on operation. Although this training method is effective, the training efficiency is low. Utility Model Content

[0004] The main purpose of this invention is to propose a coating inspection training device, which aims to solve the problem of how to improve training efficiency.

[0005] To achieve the above objectives, this utility model proposes a coating inspection training device, which includes:

[0006] frame;

[0007] The operating table includes a mounting frame and a detection plate. The mounting frame is connected to the frame, and the detection plate is connected to the mounting frame. The detection plate is provided with a functional area, which includes a light area and a paint surface detection area arranged sequentially along a first direction. Multiple timing lights are provided on the light area, and the multiple timing lights are arranged sequentially along a second direction. The first direction and the second direction are perpendicular.

[0008] The control box is electrically connected to each of the timing lamps. The control box can sequentially turn off the timing lamps along the second direction to form a paint inspection path. The paint inspection area is in the same direction as the extension of the paint inspection path.

[0009] In one embodiment, the coating inspection training device further includes a start button, which is connected to the detection plate and electrically connected to the control box. The start button can sequentially extinguish the timing lights along the second direction via the control box.

[0010] And / or,

[0011] The coating inspection training device also includes an end button, which is connected to the detection plate and electrically connected to the control box. The end button can stop the timing lights from going out through the control box or can turn on all the timing lights through the control box.

[0012] In one embodiment, the mounting bracket is provided with a mounting groove, and the detection plate is detachably connected to the groove wall of the mounting groove.

[0013] In one embodiment, the detection plate extends relative to the operating table in a direction away from the control box to form a protrusion, and the functional area is provided on the protrusion;

[0014] And / or,

[0015] Mounting holes are provided on the lighting area. The number of mounting holes is the same as the number of timing lights and they are set one-to-one. Each timing light is engaged with the wall of the corresponding mounting hole.

[0016] And / or,

[0017] The number of the functional areas is at least one.

[0018] In one embodiment, the coating inspection training device further includes a power button, which is electrically connected to the control box and can connect or disconnect the control box from the power source.

[0019] In one embodiment, the coating inspection training device further includes an adjustment knob electrically connected to the control box, defining the time interval between any two adjacent timing lights going out as the cycle time, and the adjustment knob is used to adjust the length of the cycle time.

[0020] In one embodiment, the mounting frame includes a frame body and a first telescopic mechanism. The detection plate is connected to the frame body, the first telescopic mechanism is connected to the frame, and the output end of the first telescopic mechanism is connected to the frame body, so that the first telescopic mechanism can drive the detection plate to move relative to the frame along the first direction through the frame body.

[0021] In one embodiment, the frame includes a support platform, a base plate, and a second telescopic mechanism. The second telescopic mechanism is located between the support platform and the base plate, and is connected to the base plate. The output end of the second telescopic mechanism is connected to the support platform, so that the second telescopic mechanism can drive the support platform to move relative to the base plate in the first direction.

[0022] In one embodiment, the coating inspection training device further includes a telescopic rod and a limiting mechanism. The telescopic rod includes an inner rod and an outer tube. The inner rod is slidably disposed in the outer tube. The inner rod is connected to the support platform, and the outer tube is connected to the base plate. The limiting mechanism is used to restrict the inner rod from sliding relative to the outer tube.

[0023] In one embodiment, there are multiple operating consoles, which form a receiving cavity, and the control box is located inside the receiving cavity;

[0024] And / or,

[0025] The coating inspection training device also includes casters, which are located at the bottom of the frame.

[0026] In this embodiment of the invention, the first direction is the up-down direction, and the second direction is the left-right direction. The frame is the basic support structure of the entire paint inspection training device. The mounting frame is connected to the frame and provides fixation and support for the inspection plate. The inspection plate uses an existing automotive door panel to realistically reproduce the paint inspection environment, greatly enhancing the realism of the training. The functional areas on the inspection plate include a lighting area and a paint inspection area arranged sequentially from top to bottom. Multiple timing lights are installed in the lighting area, arranged sequentially in the left-right direction. Each timing light is electrically connected to the control box and is turned off sequentially in the left-right direction by the control box, thus forming a paint inspection path and providing clear visual guidance for trainees. The paint inspection area is where trainees actually inspect for paint defects. The extension direction of the paint inspection area is the same as the extension direction of the paint inspection path, enabling trainees to move and inspect the paint inspection area along a specific paint inspection path. This ensures the standardization of the paint inspection process, helps trainees form fixed operating habits during the learning process, and improves the consistency and reliability of their skills. This utility model embodiment uses existing automotive door panels as inspection boards to realistically recreate the paint inspection environment, providing new employees with an efficient skills training method. This greatly enhances the realism of the training, allowing trainees to practice under conditions almost identical to the actual work environment, reducing the adaptation period for new employees, making training more effective, and enabling trainees to adapt to the requirements of their actual work positions more quickly. By using multiple timing lights that sequentially extinguish along the left and right directions to form a paint inspection path, clear visual guidance is provided to trainees, ensuring the standardization of the paint inspection process. This allows trainees to perform orderly inspection operations on the paint inspection area according to the light indicators, reducing the time spent figuring things out due to a lack of guidance, thereby improving training efficiency. It also cultivates a good sense of inspection rhythm. Furthermore, the paint inspection path formed by the sequential extinguishing of the timing lights along the left and right directions is preset and matches the extinguishing order of the timing lights, thus significantly reducing randomness and potential human error during the inspection process, improving the quality control level of the final product, and ensuring that each inspected area meets the established standards, thereby achieving higher training quality and efficiency. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0028] Figure 1 This is a schematic diagram of an embodiment of the coating inspection training device of this utility model.

[0029] Explanation of icon numbers:

[0030] 100. Coating Inspection Training Device; 1. Frame; 11. Support Platform; 12. Base Plate; 13. Second Telescopic Mechanism; 2. Operating Table; 21. Mounting Frame; 211. Frame Body; 212. First Telescopic Mechanism; 22. Inspection Plate; 221. Protrusion; 2211. Functional Area; 22111. Lighting Area; 22111a. Timing Light; 22112. Coating Inspection Area; 3. Control Box; 4. Start Button; 5. End Button; 6. Telescopic Rod; 61. Inner Rod; 62. Outer Tube; 7. Receiving Cavity; 8. Casters.

[0031] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0033] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, and back), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0034] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0035] Automotive paint inspection is an important process for assessing the appearance and paint quality of a car. It is crucial for ensuring the vehicle's aesthetics and resale value. Good paint not only enhances the vehicle's visual appeal but also protects the body from environmental factors and extends its lifespan.

[0036] In factories, automotive paint inspection mainly relies on manual visual inspection. This method requires experienced technicians to identify defects such as particles and scratches through visual inspection. Visual inspection places high demands on the inspector's hand speed and eyesight. Untrained personnel find it difficult to complete this task. Current training methods mainly rely on hands-on operation. Although this training method is effective, the training efficiency is low.

[0037] After careful research, the applicant found that in practical training, due to the different learning progress of each trainee, relying entirely on practical operation may lead to a longer overall training cycle. This is especially true when facing a large number of new employees, where the efficiency problem of this training model becomes more prominent. In addition, practical training requires a large amount of equipment and materials, resulting in a higher overall training cost.

[0038] The main purpose of this invention is to propose a coating inspection training device to solve the problem of how to improve training efficiency.

[0039] Please see Figure 1 In one embodiment of this utility model, the paint inspection training device 100 includes a frame 1, an operating table 2, and a control box 3. The operating table 2 includes a mounting frame 21 and a detection plate 22. The mounting frame 21 is connected to the frame 1, and the detection plate 22 is connected to the mounting frame 21. The detection plate 22 is provided with a functional area 2211. The functional area 2211 includes a light area 22111 and a paint inspection area 22112 arranged sequentially along a first direction. The light area 22111 is provided with a plurality of timing lights 22111a, which are arranged sequentially along a second direction. The first direction and the second direction are perpendicular. Each timing light 22111a is electrically connected to the control box 3. The control box 3 can turn off the timing lights 22111a sequentially along the second direction to form a paint inspection path (not shown in the figure). The paint inspection area 22112 extends in the same direction as the paint inspection path.

[0040] In this embodiment of the utility model, the first direction is the up-down direction, and the second direction is the left-right direction. The frame 1 is the basic support structure of the entire paint inspection training device 100. The mounting frame 21 is connected to the frame 1 and provides fixation and support for the detection plate 22. The detection plate 22 adopts an existing automobile door panel, which actually restores the panel paint inspection environment, greatly enhancing the realism of the training. The functional area 2211 on the detection plate 22 includes a lighting area 22111 and a paint inspection area 22112 arranged sequentially from top to bottom. Multiple timing lights 22111a are provided on the lighting area 22111, and the multiple timing lights 22111a are arranged sequentially in the left-right direction. All lamps 22111a are electrically connected to the control box 3 and controlled by the microcontroller circuit inside the control box 3. This causes each timing lamp 22111a to turn off sequentially in the left-right direction, thus forming a paint inspection path and providing clear visual guidance for trainees. The paint inspection area 22112 is where trainees actually inspect for paint defects. The extension direction of the paint inspection area 22112 is the same as the extension direction of the paint inspection path, allowing trainees to move and inspect the paint inspection area 22112 along a specific paint inspection path. This ensures the standardization of the paint inspection process, helps trainees form fixed operating habits during the learning process, and improves the consistency and reliability of their skills.

[0041] This utility model's technical solution utilizes existing automotive door panels as inspection boards 22, effectively replicating the paint inspection environment. This provides new employees with an efficient skills training method, greatly enhancing the realism of the training. Trainees can practice under conditions almost identical to the actual work environment, reducing the adaptation period for new employees and making training more effective. Trainees can adapt to the requirements of their actual job positions more quickly. By employing multiple timing lights 22111a that sequentially extinguish along the left and right directions to form a paint inspection path, clear visual guidance is provided to trainees, ensuring the standardization of the paint inspection process. This allows trainees to perform orderly inspections of the paint inspection area 22112 according to the light indicators, reducing the time spent figuring things out due to a lack of guidance, thereby improving training efficiency. It also cultivates a good sense of inspection rhythm. Furthermore, the paint inspection path formed by the sequential extinguishing of each timing light 22111a along the left and right directions is pre-set, significantly reducing randomness and potential human error during the inspection process, improving the quality control level of the final product, and ensuring that each inspected area meets predetermined standards, thus achieving higher training quality and efficiency.

[0042] Please see Figure 1In one embodiment, the paint inspection training device 100 further includes a start button 4, which is connected to the detection plate 22 and electrically connected to the control box 3. The start button 4 can sequentially extinguish the timing lights 22111a along the second direction via the control box 3. And / or, the paint inspection training device 100 further includes an end button 5, which is connected to the detection plate 22 and electrically connected to the control box 3. The end button 5 can either stop the timing lights 22111a from extinguishing or illuminate all timing lights 22111a via the control box 3. Specifically, by setting the start button 4, the trainee can explicitly initiate a simulation process of a paint inspection path. When the start button 4 is pressed, the control box 3 sequentially extinguishes the timing lights 22111a in a preset order, forming a paint inspection path, making the operation process clearer and more orderly, ensuring that each training session starts from a consistent starting point. The end button 5 has two functions: firstly, after the trainee completes the inspection, pressing the end button 5 will... The process of stopping the timing lights 22111a from turning off ensures that each timing light 22111a within the light area 22111 remains either lit or off upon completion of the test, facilitating the assessment of the trainee's performance. When all timing lights 22111a are off, it indicates that the trainee has performed the inspection operation in an orderly manner according to the paint inspection path, and the trainee is deemed to have passed. When not all timing lights 22111a are off, it indicates that the trainee has not performed the inspection operation in an orderly manner according to the paint inspection path, and the trainee is deemed to have failed. On the other hand, the end button 5 can also illuminate all timing lights 22111a via the control box 3, which helps to quickly reset and prepare for the next round of training. By setting the start button 4 and the end button 5, the trainee's operation is simplified, making the entire training process more intuitive and user-friendly. Both new employees and experienced technicians can easily get started, reducing the learning cost. In this embodiment, for ease of operation, the start button 4 can be located at the upper left of the detection plate 22, and the end button 5 can be located at the lower right of the detection plate 22.

[0043] In one embodiment, the mounting bracket 21 is provided with a mounting groove (not shown), and the inspection plate 22 is detachably connected to the groove wall. Specifically, the detachable connection allows the inspection plate 22 to be easily removed from the mounting groove when needed. This is highly advantageous for the replacement or routine maintenance of the inspection plate 22, reducing maintenance time and training costs. Different types of inspection plates 22 can be quickly replaced according to different training needs or paint inspection tasks, allowing for multiple types of paint inspection practice on the same training device. This improves the versatility and efficiency of the paint inspection training device 100. By quickly replacing the inspection plate 22, inspection plates 22 with different defect patterns or difficulty levels can be prepared to meet training requirements at different stages or levels. In this embodiment, the inspection plate 22 and the groove wall can be detachably connected by bolts or by snap-fit; this embodiment does not limit the connection.

[0044] Please see Figure 1In one embodiment, the detection plate 22 extends relative to the operating table 2 in a direction away from the control box 3 to form a protrusion 221, and a functional area 2211 is provided on the protrusion 221; and / or, mounting holes (not shown) are provided on the light area 22111, the number of mounting holes being consistent with the number of timing lamps 22111a and corresponding one-to-one, and each timing lamp 22111a engaging with the wall of the corresponding mounting hole; and / or, the number of functional areas 2211 is at least one; specifically, the detection plate 22 extends relative to the operating table 2 in a direction away from the control box 3 to form a protrusion 221, and a functional area 2211 is provided on the protrusion 221. This design makes the paint surface detection area 22112 more prominent, simulating the spatial position and shape of the part that needs to be inspected in the actual working environment, more closely resembling the shape of the actual workpiece, improving the authenticity and effectiveness of training, and also helping to better utilize the space of the operating table 2, making the entire device structure more compact and reasonable; each timing lamp 22111a engaging with the wall of the corresponding mounting hole The snap-fit ​​design simplifies the installation and removal of the timing lights 22111a, facilitating daily maintenance and replacement. It also ensures that each timing light 22111a is accurately installed in its corresponding mounting hole, guaranteeing the consistency and accuracy of the paint inspection path. The specific number of functional areas 2211 can be flexibly adjusted according to different training needs, adapting to diverse training objectives and improving overall training efficiency. Multiple functional areas 2211 are arranged sequentially along the vertical direction, resulting in an array arrangement of all timing lights 22111a. In this embodiment, the timing lights 22111a are extinguished as follows: each lighting area 22111 is extinguished sequentially along the vertical direction, and each timing light 22111a in each lighting unit is extinguished sequentially along the horizontal direction. Furthermore, the extinguishing directions of the timing lights 22111a in adjacent lighting areas 22111 are opposite, thus forming an overall S-shaped paint inspection path. Trainees move and inspect the paint inspection area 22112 according to this S-shaped path.

[0045] In one embodiment, the coating inspection training device 100 further includes a power button (not shown), which is electrically connected to the control box 3. The power button can connect or disconnect the control box 3 from the power supply. Specifically, the power button provides a simple and intuitive way to start and stop the device, making operation more convenient for frequently used training environments. The clearly defined power switch reduces the risk of accidental device activation. In case of emergency or equipment malfunction, trainees can quickly press the power button to immediately cut off the power, avoiding potential safety risks. The power button not only improves the safety and ease of use of the coating inspection training device 100 but also facilitates daily operation, maintenance, and energy management, providing trainees with a more reliable and efficient training environment. In this embodiment, the power supply can be the internal power supply of the control box 3 or an external power supply; this embodiment does not limit the choice.

[0046] In one embodiment, the paint inspection training device 100 further includes an adjustment knob (not shown in the figure). The adjustment knob is electrically connected to the control box 3 and defines the time interval between the extinguishing of any two adjacent timing lights 22111a as the cycle time (not shown in the figure). The adjustment knob is used to adjust the length of the cycle time. Specifically, the adjustment knob can be used to flexibly adjust the length of the cycle time according to the specific training objectives or paint inspection tasks to adapt to the skill levels of different trainees. For beginners, a longer cycle time can be set to give trainees more time to understand and master each step, while for more experienced trainees, the cycle time can be shortened to increase the training difficulty, thereby providing diverse training scenarios and ensuring the richness and relevance of the training content. The paint inspection training device 100 can be adjusted according to the trainee's proficiency, making the training process orderly and progressively in-depth, promoting the steady improvement of skills, and further improving the training effect. Moreover, the adjustment knob provides an intuitive and simple operation method, allowing trainees to quickly adjust parameters without complicated operations, thus improving the trainee's operating experience.

[0047] Please see Figure 1In one embodiment, the mounting frame 21 includes a frame body 211 and a first telescopic mechanism 212. The detection plate 22 is connected to the frame body 211, and the first telescopic mechanism 212 is connected to the frame 1. The output end of the first telescopic mechanism 212 is connected to the frame body 211, so that the first telescopic mechanism 212 can drive the detection plate 22 to move relative to the frame 1 in a first direction through the frame body 211. Specifically, by setting the first telescopic mechanism 212, the position of the detection plate 22 in the vertical direction can be quickly adjusted according to different training needs. Thus, according to the specific situation of the trainee or specific training objectives, the position of the detection plate 22 can be accurately set to realize personalized training programs, provide diverse training scenarios, make the training content richer and more targeted, significantly enhance the functionality and flexibility of the coating inspection training device 100, and can also adjust the height or position of the detection plate 22 according to the height or preference of different trainees to conform to ergonomic principles, reduce fatigue, and improve work efficiency. Moreover, the design of the first telescopic mechanism 212 allows the detection plate 22 to be retracted when not in use, saving the space of the operating table 2, improving the overall compactness and safety of the equipment, and facilitating storage and transportation. In this embodiment, the first telescopic mechanism 212 can be an electric push rod, a cylinder or a screw rod. This embodiment does not limit the specific selection of the first telescopic mechanism 212.

[0048] Please see Figure 1 In one embodiment, the frame 1 includes a support platform 11, a base plate 12, and a second telescopic mechanism 13. The second telescopic mechanism 13 is located between the support platform 11 and the base plate 12, and is connected to the base plate 12. The output end of the second telescopic mechanism 13 is connected to the support platform 11, so that the second telescopic mechanism 13 can drive the support platform 11 to move relative to the base plate 12 in a first direction. Specifically, different actual working scenarios may have different operating height requirements. By setting the second telescopic mechanism 13, the height of the support platform 11 can be flexibly adjusted according to the specific training task or paint inspection requirements, thereby better simulating these changing working environments, providing more diverse training scenarios, making the training content richer and more targeted, significantly enhancing the functionality and flexibility of the paint inspection training device 100, and providing trainees with a more efficient, convenient, and professional training platform. When a higher position is not needed, the support platform 11 can be lowered to reduce the space occupied by the entire device, improve space utilization and safety, and facilitate storage and transportation. In this embodiment, the second telescopic mechanism 13 can be an electric push rod, a cylinder or a screw rod. This embodiment does not limit the specific selection of the second telescopic mechanism 13.

[0049] In one embodiment, the coating inspection training device 100 further includes a telescopic rod 6 and a limiting mechanism (not shown). The telescopic rod 6 includes an inner rod 61 and an outer tube 62. The inner rod 61 is slidably disposed in the outer tube 62. The inner rod 61 is connected to the support platform 11, and the outer tube 62 is connected to the base plate 12. The limiting mechanism is used to restrict the sliding of the inner rod 61 relative to the outer tube 62. Specifically, by setting the relatively sliding inner rod 61 and outer tube 62, precise guidance can be provided for the lifting and lowering of the support platform 11. By setting the limiting mechanism to restrict the relative position of the inner rod 61 and outer tube 62, a safety protection mechanism is provided for the coating inspection training device 100, ensuring the stability of the support platform 11 at a set height, preventing shaking or instability caused by external factors, and ensuring the safety and reliability of the coating inspection training device 100.

[0050] In this embodiment, the limiting mechanism includes a bolt, and the outer tube 62 is provided with a threaded hole. The bolt and the threaded hole are threadedly engaged so that the bolt can abut against the inner rod 61, thereby restricting the inner rod 61 from sliding relative to the outer tube 62. The structure is simple, easy to operate, and easy to manufacture and maintain.

[0051] According to one embodiment of the present invention, the limiting mechanism includes a positioning pin, a first through hole on the outer tube 62, and a plurality of second through holes arranged at intervals along the vertical direction on the inner tube. The positioning pin passes through the first through hole and the second through hole to limit the sliding of the inner rod 61 relative to the outer tube 62. The structure is simple, the operation is convenient, and it can achieve rapid positioning.

[0052] Please see Figure 1 In one embodiment, the number of operating tables 2 is multiple, forming a receiving cavity 7, and the control box 3 is located within the receiving cavity 7; and / or, the coating inspection training device 100 also includes casters 8, which are located at the bottom of the frame 1; specifically, the specific number of operating tables 2 can be selected according to actual training needs. In this embodiment, the number of operating tables 2 is four, forming a receiving cavity 7. This layout makes the entire coating inspection training device 100 more compact, reducing the floor space occupied, while also ensuring the reasonable distribution and connection between the various components. The control box 3 Located within the receiving cavity 7, away from the trainees, it reduces the electrical risks caused by misoperation or accidental contact, and also allows trainees at different operating positions 2 to operate the control box 3. By installing casters 8 at the bottom of the frame 1, the entire coating inspection training device 100 can be easily moved between different locations, greatly improving the mobility and flexibility of the coating inspection training device 100. The position of the coating inspection training device 100 can be quickly adjusted according to actual site conditions or training needs to achieve the best training effect. In this embodiment, the casters 8 can be universal wheels.

[0053] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A coating inspection training device, characterized in that, The coating inspection training device includes: frame; The operating table includes a mounting frame and a detection plate. The mounting frame is connected to the frame, and the detection plate is connected to the mounting frame. The detection plate is provided with a functional area, which includes a light area and a paint surface detection area arranged sequentially along a first direction. Multiple timing lights are provided on the light area, and the multiple timing lights are arranged sequentially along a second direction. The first direction and the second direction are perpendicular. The control box is electrically connected to each of the timing lamps. The control box can sequentially turn off the timing lamps along the second direction to form a paint inspection path. The paint inspection area is in the same direction as the extension of the paint inspection path.

2. The coating inspection training device according to claim 1, characterized in that, The coating inspection training device also includes a start button, which is connected to the detection plate and electrically connected to the control box. The start button can sequentially extinguish the timing lights along the second direction via the control box. And / or, The coating inspection training device also includes an end button, which is connected to the detection plate and electrically connected to the control box. The end button can stop the timing lights from going out through the control box or can turn on all the timing lights through the control box.

3. The coating inspection training device according to claim 1, characterized in that, The mounting bracket is provided with a mounting groove, and the detection plate is detachably connected to the groove wall.

4. The coating inspection training device according to claim 3, characterized in that, The detection plate extends relative to the operating table in a direction away from the control box to form a protrusion, and the functional area is provided on the protrusion; And / or, Mounting holes are provided on the lighting area. The number of mounting holes is the same as the number of timing lights and they are set one-to-one. Each timing light is engaged with the wall of the corresponding mounting hole. And / or, The number of the functional areas is at least one.

5. The coating inspection training apparatus according to any one of claims 1 to 4, characterized in that, The coating inspection training device also includes a power button, which is electrically connected to the control box and can connect or disconnect the control box from the power source.

6. The coating inspection training device according to claim 5, characterized in that, The coating inspection training device also includes an adjustment knob, which is electrically connected to the control box. The time interval between any two adjacent timing lights going out is defined as the cycle time, and the adjustment knob is used to adjust the length of the cycle time.

7. The coating inspection training apparatus according to any one of claims 1 to 4, characterized in that, The mounting frame includes a frame body and a first telescopic mechanism. The detection plate is connected to the frame body, and the first telescopic mechanism is connected to the frame. The output end of the first telescopic mechanism is connected to the frame body, so that the first telescopic mechanism can drive the detection plate to move relative to the frame along the first direction through the frame body.

8. The coating inspection training apparatus according to any one of claims 1 to 4, characterized in that, The frame includes a support platform, a base plate, and a second telescopic mechanism. The second telescopic mechanism is located between the support platform and the base plate and is connected to the base plate. The output end of the second telescopic mechanism is connected to the support platform so that the second telescopic mechanism can drive the support platform to move relative to the base plate in the first direction.

9. The coating inspection training device according to claim 8, characterized in that, The coating inspection training device further includes a telescopic rod and a limiting mechanism. The telescopic rod includes an inner rod and an outer tube. The inner rod is slidably disposed in the outer tube. The inner rod is connected to the support platform, and the outer tube is connected to the base plate. The limiting mechanism is used to restrict the inner rod from sliding relative to the outer tube.

10. The coating inspection training apparatus according to any one of claims 1 to 4, characterized in that, There are multiple operating consoles, which form a receiving cavity, and the control box is located inside the receiving cavity; And / or, The coating inspection training device also includes casters, which are located at the bottom of the frame.