Manual detection platform for electronic paper
By setting up linear drive modules and suction modules on the electronic paper detection platform, combined with manual inspection, the defective product classification problem caused by excessive automatic detection speed is solved, and efficient manual inspection and quality control are achieved.
Patent Information
- Application Number
- CN202421365072.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-16
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-06-16
AI Technical Summary
When the existing power-on detection device automatically detects electronic paper, a small number of defective products may be classified as qualified due to the rapid detection speed, affecting product quality.
A manual detection platform for electronic paper is designed. By setting a linear drive module and a suction module on both sides of the support frame, manually observing the luminescence and discoloration of the electronic paper after power-on, it realizes manual detection, and performs simultaneous detection of multiple sheets of electronic paper with the automatic power-on device.
Improve the inspection efficiency and pass rate, reduce the error rate during inspection, and ensure product quality.
Smart Images

Figure CN223139749U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of product detection equipment, in particular to an artificial detection platform for electronic paper. Background Art
[0002] With the development of electronic technology, the concept of electronic paper has been put forward. Electronic paper, also called digital paper, is an ultra-thin and ultra-light display screen, that is, understood as "a display screen as thin, soft and rewritable as paper". Among them, after the electronic paper is cut and processed, a specific power-on detection device is required to detect whether the cut electronic paper is qualified. Existing power-on detection devices all automatically perform power-on detection processing on electronic paper. However, when the power-on detection device performs automatic detection, it may be due to too fast detection speed, resulting in products with a small amount of defects appearing in the products classified as qualified, thus affecting the quality of subsequent products. Therefore, an artificial detection device is needed to cooperate with the power-on detection device to reduce the error rate. Summary of the Utility Model
[0003] The purpose of the utility model is to provide an artificial detection platform for electronic paper aiming at the deficiencies of the prior art, so as to solve the technical problem that existing power-on detection devices may be too fast in detection speed, resulting in products with a small amount of defects appearing in the products classified as qualified.
[0004] To achieve the above purpose, the technical solution of the utility model is as follows:
[0005] An artificial detection platform for electronic paper includes a support frame and a support frame body fixedly arranged on the support frame. A plurality of power-on modules are arranged on both sides of the support frame in the length direction of the support frame. The power-on modules are used to perform power-on processing on the electronic paper for manual observation.
[0006] On both sides of the support frame body in the length direction, there are horizontally arranged linear drive modules, and the length direction of the linear drive modules is the same as the length direction of the support frame body. On each linear drive module, there is a first suction module for transporting the electronic paper to the power-on module, and there is also a second suction module for removing the detected electronic paper from the power-on module. The linear drive module is used to drive the first suction module and the second suction module to move horizontally.
[0007] Further, the power-on modules on the same side are arranged in an equidistant array along the length direction of the support frame.
[0008] Further, at one end of the support frame close to the first suction module, there is a first transfer component for transferring the electronic paper to be detected to the suction position; at one end of the support frame close to the second suction module, there is a second transfer component for transferring the detected electronic paper to the conveying position.
[0009] Further, the energization module includes an energization platform for supporting the electronic paper to be detected and a support plate fixedly arranged on the support frame. A support block is provided on the support plate, and the energization platform is rotatably arranged on the support block through a rotating shaft. The axial direction of the rotating shaft is consistent with the length direction of the linear drive module. A first stepping motor for driving the rotating shaft to rotate is installed on the support block. A pair of energization parts are provided on the energization platform and are arranged in a mirror image for energizing the electronic paper, and the energization parts can move in directions approaching or moving away from each other.
[0010] Further, the support block is horizontally slidably arranged on the support plate. The sliding direction of the support block is perpendicular to the length direction of the linear drive module. A slider is fixedly arranged on the support block, and a first drive assembly for driving the slider to move is also installed on the support plate.
[0011] Further, the energization part includes a first movable frame slidably arranged at the bottom of the energization platform. A support block for supporting the energization position of the electronic paper and passing through the energization platform is provided on the first movable frame. A second movable frame for pressing the electronic paper is slidably arranged on the first movable frame. One end of the second movable frame passes through the energization platform, and an energization terminal for making contact energization with the electronic paper is installed at this end. A cylinder for driving the second movable frame to move is provided on the first movable frame.
[0012] Further, a right-angle turner is installed at the bottom of the energization platform, and lead screws are provided on the symmetric output shafts of the right-angle turner. The lead screws on both sides are respectively threadedly connected to different first movable frames. A second stepping motor with an output shaft connected to the right-angle turner is also installed at the bottom of the energization platform.
[0013] Further, the first suction module includes a movable seat movably arranged on the linear drive module. A lifting frame that can move up and down is provided on the movable seat, and a drive part for driving the lifting frame to move up and down is installed on the movable seat. A suction cup assembly for sucking the electronic paper is installed at the bottom end of the lifting frame.
[0014] Further, the first transfer assembly includes a slide rail horizontally arranged on the support frame. The length direction of the slide rail is perpendicular to the length direction of the linear drive module. A transfer platform for carrying the electronic paper to be detected is slidably arranged on the slide rail, and a second drive assembly for driving the transfer platform to slide on the slide rail is installed on the support frame.
[0015] Advantages of the present utility model: One energization module serves as one detection station. After placing the electronic paper on the energization module and applying power to it, the energized electronic paper will emit light and change color. The staff observes the degree of light emission and color change of the electronic paper after power-on at the detection station to determine whether the electronic paper is qualified, thereby realizing manual detection and reducing the error rate during detection.
[0016] During use, after transporting the electronic paper to be detected to the designated position, the linear drive module is operated to drive the first suction module to move horizontally. After moving above the electronic paper to be detected, the first suction module is operated to suck the electronic paper, and then the first suction module is driven to move horizontally, thereby transporting the electronic paper to the energization module for power-on processing. After the staff finishes the detection, the linear drive module is operated again to drive the second suction module to move horizontally. After moving above the detected electronic paper, the second suction module is operated to suck the detected electronic paper, thereby transporting the electronic paper to the designated position, and then the electronic paper is transported to the subsequent stacking process for sorting (separating qualified and unqualified electronic papers) and stacking. With the cooperation of the above-mentioned various mechanisms, the automatic handling of the electronic paper is realized. Moreover, by arranging a plurality of energization modules on both sides in the length direction of the support frame, multiple electronic papers can be simultaneously subjected to power-on detection, greatly improving the efficiency of manual detection. Manual detection and the power-on detection device operate simultaneously to improve the detection efficiency and qualification rate of the electronic paper. Description of the Drawings
[0017] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.
[0018] Figure 2 It is a structural schematic diagram of the first suction module of the present utility model.
[0019] Figure 3 It is a structural schematic diagram of the first transfer component of the present utility model.
[0020] Figure 4 It is a structural schematic diagram of the energization module of the present utility model.
[0021] Figure 5 It is a bottom structural schematic diagram of the energization platform of the present utility model.
[0022] The reference numerals include:
[0023] 3021. Support frame; 3022. Support frame body; 3023. Power-on module; 30231. Support plate; 30232. Support block; 30233. Power-on platform; 30234. First stepping motor; 30235. Slide block; 30236. First driving component; 30237. First movable frame; 30238. Support block; 30239. Second movable frame; 302310. Power-on terminal; 302311. Cylinder; 302312. Right-angle steering gear; 302313. Lead screw; 302314. Second stepping motor; 3024. Linear driving module; 3025. First suction module; 30251. Movable seat; 30252. Lifting frame; 30253. Driving part; 30254. Suction cup assembly; 3026. Second suction module; 3027. First transfer component; 30271. Slide rail; 30272. Transfer platform; 30273. Second driving component; 3028. Second transfer component. Detailed implementation manner
[0024] The following describes in detail an artificial detection platform for an electronic paper of the present utility model with reference to the accompanying drawings.
[0025] As Figure 1As shown in the figure, an embodiment of an artificial detection platform for an electronic paper of the present utility model includes a support frame 3021 and a support frame body 3022 fixedly arranged on the support frame 3021. A plurality of power-on modules 3023 are arranged on both sides of the support frame 3021 in the length direction of the support frame 3021. The power-on modules 3023 are used to perform power-on processing on the electronic paper, and the power-on modules 3023 on the same side are arranged in an equidistant array along the length direction of the support frame 3021; one power-on module 3023 is one detection station. After placing the electronic paper on the power-on module 3023 and performing power-on processing on it, the powered-on electronic paper will emit light and change color. The staff observes the degree of light emission and color change of the electronic paper after power-on at the detection station to determine whether the electronic paper is qualified, thereby realizing artificial detection processing. Among them, horizontal linear drive modules 3024 are provided on both sides of the support frame body 3022 in the length direction, and the length direction of the linear drive modules 3024 is the same as the length direction of the support frame body 3022. A first suction module 3025 for transporting the electronic paper onto the power-on module 3023 is provided on each linear drive module 3024, and a second suction module 3026 for removing the detected electronic paper from the power-on module 3023 is also provided. The linear drive module 3024 is used to drive the first suction module 3025 and the second suction module 3026 to move horizontally; after transporting the electronic paper to be detected to a designated position, the linear drive module 3024 is operated to drive the first suction module 3025 to move horizontally. After moving above the electronic paper to be detected, the first suction module 3025 is operated to suck the electronic paper, and then the first suction module 3025 is driven to move horizontally, so as to transport the electronic paper onto the power-on module 3023 for power-on processing. After the staff completes the detection, the linear drive module 3024 is operated again to drive the second suction module 3026 to move horizontally. After moving above the detected electronic paper, the second suction module 3026 is operated to suck the detected electronic paper, so as to transport the electronic paper to a designated position, and then the electronic paper is transported to the subsequent stacking process for sorting (separating qualified and unqualified electronic papers) and stacking processing. Moreover, by providing a plurality of power-on modules 3023 on both sides of the support frame body 3022 in the length direction, multiple electronic papers can be simultaneously subjected to power-on detection processing, greatly improving the efficiency of artificial detection.
[0026] In addition, first suction modules 3025 are provided on both sides in the length direction of the support frame body 3022. In order to transfer the electronic paper to be detected to a specified position for the first suction modules 3025 on both sides to suck, a first transfer assembly 3027 for transferring the electronic paper to be detected to the suction position is provided at one end of the support frame 3021 close to the first suction module 3025. After placing the electronic paper to be detected on the first transfer assembly 3027, the first transfer assembly 3027 is operated to transfer the electronic paper to the suction position of one of the first suction modules 3025, so as to realize the feeding process for the first suction modules 3025 on both sides simultaneously. A second transfer assembly 3028 for transferring the detected electronic paper to the conveying position is provided at one end of the support frame 3021 close to the second suction module 3026. The detected electronic paper is carried onto the second transfer assembly 3028 by the second suction module 3026, and the second transfer assembly 3028 is operated to transfer the detected electronic paper to the conveying position, so as to convey the electronic paper to the subsequent stacking process for sorting (separating qualified and unqualified electronic papers) and stacking processing.
[0027] As Figure 2 shown, the first suction module 3025 includes a movable seat 30251 movably arranged on the linear drive module 3024. By operating the linear drive module 3024 to drive the movable seat 30251 to move horizontally. Among them, a lifting frame 30252 capable of moving up and down is provided on the movable seat 30251, and a driving part 30253 for driving the lifting frame 30252 to move up and down is installed on the movable seat 30251. By operating the driving part 30253 to drive the lifting frame 30252, the lifting frame 30252 can automatically move up and down. A suction cup assembly 30254 for sucking the electronic paper is installed at the bottom end of the lifting frame 30252. When the driving part 30253 drives the lifting frame 30252 to move up and down, the lifting frame 30252 drives the suction cup assembly 30254 to move up and down together. Under the action of the linear drive module 3024 driving the movable seat 30251 to move horizontally and the driving part 30253 driving the lifting frame 30252 to move up and down, the electronic paper to be detected on the first transfer assembly 3027 is carried to the power-on module 3023 by the suction cup assembly 30254 for power-on detection processing. The first suction module 3025 and the second suction module 3026 have the same structure and the same operation mode.
[0028] As Figure 3As shown, the first transfer component 3027 includes a slide rail 30271 horizontally arranged on the support frame 3021, and the length direction of the slide rail 30271 is perpendicular to the length direction of the linear drive module 3024. A transfer platform 30272 for carrying the electronic paper to be detected is slidably arranged on the slide rail 30271, and a second drive component 30273 for driving the transfer platform 30272 to slide on the slide rail 30271 is installed on the support frame 3021. Place the electronic paper to be detected on the transfer platform 30272, and operate the second drive component 30273 to drive the transfer platform 30272 to slide on the support frame 3021, so as to transfer the electronic paper to be detected to the designated suction position (the end of the two linear drive modules 3024 close to the first transfer component 3027), which is convenient for the first suction module 3025 to carry the electronic paper onto the power-on module 3023.
[0029] As Figure 4 - 5 As shown, the power-on module 3023 includes a power-on platform 30233 for supporting the electronic paper to be detected and a support plate 30231 fixedly arranged on the support frame 3021. A support block 30232 is arranged on the support plate 30231, and the power-on platform 30233 is rotatably arranged on the support block 30232 through a rotating shaft, and the axial direction of the rotating shaft is consistent with the length direction of the linear drive module 3024. Through the rotating shaft, the staff can adjust the angle of the power-on platform 30233 according to their own situation, so that the staff can more conveniently observe the electronic paper placed on the power-on platform 30233. And when it is necessary to carry the electronic paper onto the power-on platform 30233 or carry the electronic paper on the power-on platform 30233 away, the power-on platform 30233 can be adjusted to a horizontal layout to stably carry the electronic paper onto the power-on platform 30233. In addition, in order to realize the automatic adjustment of the angle of the power-on platform 30233, a first stepping motor 30234 for driving the rotating shaft to rotate is installed on the support block 30232, and the first stepping motor 30234 is operated to drive the rotating shaft to rotate, so as to adjust the angle of the power-on platform 30233.
[0030] Furthermore, a pair of energizing parts which are arranged in a mirror image and used for energizing the electronic paper are provided on the energizing platform 30233, and the energizing parts can move in directions approaching or moving away from each other; after running the first suction module 3025 to carry the electronic paper to be detected onto the energizing platform 30233, the energizing parts are driven to move in the direction approaching each other so that the energizing parts are aligned with the energizing positions on the electronic paper. Subsequently, the energizing parts on both sides are run simultaneously, so that the energizing parts are in contact with the energizing positions on the electronic paper to perform energizing treatment on the electronic paper. The energized and qualified electronic paper will emit light and change color for the staff to observe. In addition, when it is necessary to carry the electronic paper to be detected onto the energizing platform 30233 or carry the detected electronic paper away from the energizing platform 30233, in order to enable the energizing platform 30233 to accurately align with the first suction module 3025 or the second suction module 3026, the support block 30232 is horizontally slidably arranged on the support plate 30231. The sliding direction of the support block 30232 is perpendicular to the length direction of the linear driving module 3024. A slider 30235 is fixedly arranged on the support block 30232, and a first driving component 30236 for driving the slider 30235 to move is further installed on the support plate 30231; by running the first driving component 30236, the slider 30235 is driven to drive the support block 30232 to move, thereby adjusting the position of the energizing platform 30233 so that the energizing platform 30233 can accurately align with the first suction module 3025 sucking the electronic paper or the second suction module 3026 to facilitate carrying away the detected electronic paper, ensuring that the position of the electronic paper does not shift during the carrying process and greatly improving the detection efficiency.
[0031] Preferably, the energizing part includes a first movable frame 30237 slidably arranged at the bottom of the energizing platform 30233. A number of supporting blocks 30238 are provided on the first movable frame 30237, which pass through the energizing platform 30233 and are used to support the energizing position of the electronic paper. A second movable frame 30239 for pressing the electronic paper is slidably arranged on the first movable frame 30237. One end of the second movable frame 30239 passes through the energizing platform 30233, and an energizing terminal 302310 for making contact energization with the electronic paper is installed at this end. After the electronic paper is transported to the energizing platform 30233, the first movable frames 30237 on both sides are driven to move towards each other, so that the energizing terminal 302310 is aligned with the energizing position of the electronic paper. Then, the second movable frame 30239 is driven to press the electronic paper, so that the energizing terminal 302310 contacts the energizing position of the electronic paper, thereby automatically energizing the electronic paper. Additionally, a cylinder 302311 is provided on the first movable frame 30237, and the end of the telescopic rod of the cylinder 302311 is fixedly arranged with the second movable frame 30239. By operating the cylinder 302311, the second movable frame 30239 is driven to move, so that the energizing terminal 302310 automatically contacts the charging position of the electronic paper.
[0032] In addition, in order to drive the first movable frames 30237 on both sides to move towards each other or away from each other, a right-angle turner 302312 is installed at the bottom of the energizing platform 30233. Lead screws 302313 are provided on the symmetric output shafts of the right-angle turner 302312, and the lead screws 302313 on both sides are respectively threadedly connected to different first movable frames 30237. A second stepping motor 302314 with an output shaft connected to the right-angle turner 302312 is also installed at the bottom of the energizing platform 30233. By operating the second stepping motor 302314, under the action of the right-angle turner 302312, the lead screws 302313 on both sides are driven to rotate simultaneously, so that the first movable frames 30237 on both sides move towards each other or away from each other, and the energizing position of the electronic paper is placed between the supporting block 30238 and the energizing terminal 302310.
[0033] In summary, it can be seen that the present utility model has the excellent characteristics described above, so that in use, it can enhance the efficiency that has never existed in the prior art and has practicability, becoming a product with extremely high practical value.
[0034] The above content is only the preferred embodiment of the present utility model. For those of ordinary skill in the art, according to the idea of the present utility model, there will be changes in the specific implementation manner and application scope. The content of this specification should not be construed as a limitation to the present utility model.
Claims
1. An artificial detection platform for electronic paper, characterized in that: It includes a support frame (3021) and a support frame body (3022) fixedly arranged on the support frame (3021). A number of power-on modules (3023) are arranged on both sides of the support frame (3021) in the length direction of the support frame (3021). The power-on modules (3023) are used to power on the electronic paper for manual observation. Horizontal linear drive modules (3024) are arranged on both sides of the support frame body (3022) in the length direction. The length direction of the linear drive modules (3024) is consistent with the length direction of the support frame body (3022). A first suction module (3025) for transporting the electronic paper to the power-on module (3023) is arranged on each linear drive module (3024). A second suction module (3026) for removing the detected electronic paper from the power-on module (3023) is also provided. The linear drive modules (3024) are used to drive the first suction module (3025) and the second suction module (3026) to move horizontally.
2. The manual detection platform for an electronic paper according to claim 1, wherein: The power-on modules (3023) placed on the same side are arranged in an equidistant array along the length direction of the support frame (3021).
3. The manual detection platform for an electronic paper according to claim 1, wherein: A first transfer component (3027) for transferring the electronic paper to be detected to the suction position is arranged at one end of the support frame (3021) close to the first suction module (3025); a second transfer component (3028) for transferring the detected electronic paper to the conveying position is arranged at one end of the support frame (3021) close to the second suction module (3026).
4. An artificial detection platform for an electronic paper according to claim 1, characterized in that: The power-on module (3023) includes a power-on platform (30233) for supporting the electronic paper to be detected and a support plate (30231) fixedly arranged on the support frame (3021). A support block (30232) is arranged on the support plate (30231). The power-on platform (30233) is rotatably arranged on the support block (30232) through a rotating shaft. The axial direction of the rotating shaft is consistent with the length direction of the linear drive module (3024). A first stepping motor (30234) for driving the rotating shaft to rotate is arranged on the support block (30232). A pair of power-on parts arranged in a mirror image and used for powering on the electronic paper are arranged on the power-on platform (30233), and the power-on parts can move in the direction of approaching or separating from each other.
5. An artificial detection platform for an electronic paper according to claim 4, characterized in that: The support block (30232) is horizontally slidably arranged on the support plate (30231). The sliding direction of the support block (30232) is perpendicular to the length direction of the linear drive module (3024). A slider (30235) is fixedly arranged on the support block (30232). A first drive component (30236) for driving the slider (30235) to move is also arranged on the support plate (30231).
6. An artificial detection platform for an electronic paper according to claim 4, characterized in that: The energizing part includes a first movable frame (30237) slidably arranged at the bottom of the energizing platform (30233). A supporting block (30238) is arranged on the first movable frame (30237), which passes through the energizing platform (30233) and is used to support the energizing position of the electronic paper. A second movable frame (30239) for pressing the electronic paper is slidably arranged on the first movable frame (30237). One end of the second movable frame (30239) passes through the energizing platform (30233), and an energizing terminal (302310) for making contact energization with the electronic paper is arranged at the end of the second movable frame (30239) passing through the energizing platform (30233). A cylinder (302311) for driving the second movable frame (30239) to move is arranged on the first movable frame (30237).
7. An artificial detection platform for an electronic paper according to claim 6, characterized in that: A right-angle deflector (302312) is arranged at the bottom of the energizing platform (30233), and lead screws (302313) are arranged on the symmetric output shafts of the right-angle deflector (302312). The lead screws (302313) on both sides are respectively threadedly connected to different first movable frames (30237). A second stepping motor (302314) with an output shaft connected to the right-angle deflector (302312) is also arranged at the bottom of the energizing platform (30233).
8. An artificial detection platform for an electronic paper according to claim 1, characterized in that: The first suction module (3025) includes a movable seat (30251) movably arranged on the linear driving module (3024). A lifting frame (30252) capable of moving up and down is arranged on the movable seat (30251), and a driving part (30253) for driving the lifting frame (30252) to move up and down is arranged on the movable seat (30251). A suction cup assembly (30254) for sucking the electronic paper is arranged at the bottom end of the lifting frame (30252).
9. An artificial detection platform for an electronic paper according to claim 1, characterized in that: The first transfer assembly (3027) includes a slide rail (30271) horizontally arranged on the support frame (3021), and the length direction of the slide rail (30271) is perpendicular to the length direction of the linear driving module (3024). A transfer platform (30272) for carrying the electronic paper to be detected is slidably arranged on the slide rail (30271), and a second driving assembly (30273) for driving the transfer platform (30272) to slide on the slide rail (30271) is arranged on the support frame (3021).
Citation Information
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