Smoke box surface defect detection device
By introducing pull-out protection, dust-proof and air-cooled structures and wrap-around detection into the smoke box detection device, the problems of incomplete detection around the smoke box and influence of external factors are solved, and all-round detection and extended electronic component life are achieved.
Patent Information
- Application Number
- CN202421484186.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-06-26
AI Technical Summary
When the existing defect detection device detects the surface of the cigarette box, it is difficult to conduct comprehensive inspections on all sides of the cigarette box, and the internal detection data analysis structure is easily affected by external factors, resulting in a decrease in detection effect and efficiency.
The pull-out protection structure, a dust-proof structure in the horizontal and vertical direction, an air-cooled heat dissipation structure and a wrap-around detection structure are adopted, and combined with the bearing components, access components, conveying components, frame components and detection components, it realizes the wrap-around photo detection around the smoke box, and provides collision protection and efficient heat dissipation of internal electronic components.
It improves the effect of surface defect detection of cigarette boxes, extends the service life of the detection structure and analytical structure, facilitates maintenance, and enhances the detection ability around cigarette boxes.
Smart Images

Figure CN223078205U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of cigarette case detection, and particularly relates to a cigarette case surface defect detection device. Background Art
[0002] A box surface defect detection device is a device used to detect and evaluate various box surface defects. This device can be used for on-line detection on a production line or sample detection in a laboratory. Common detection contents include surface defects such as cracks, dents, scratches, contamination, and deformation.
[0003] When the existing defect detection device is used to detect the surface of a cigarette case, the existing detection device often uses a detection structure to detect the surface of the cigarette case and feedback the detection data to the analysis and processing structure. However, its analysis and processing structure is often located outside the detection device and lacks corresponding protection, making it very vulnerable to external factors, thus affecting the detection effect and efficiency of the device. Moreover, the detection position of a single photographic detection structure is relatively fixed, making it difficult to comprehensively detect the four sides of the cigarette case, thus affecting the detection effect of the device on the appearance defects of the cigarette case.
[0004] Therefore, aiming at the problem that when the above-mentioned defect detection device is used to detect the surface of a cigarette case, it is often difficult to comprehensively detect the defects on the four sides of the cigarette case relying on a single photographic detection structure, and the mechanism for analyzing detection data inside is vulnerable to external factors, a cigarette case surface defect detection device is developed. By adding a pull-out protection structure, a dust-proof structure in the horizontal and vertical directions, an air-cooled heat dissipation structure, and a surrounding detection structure to the cultivation box, the detection effect of the device on the appearance defects of the four sides of the cigarette case can be greatly improved, the service life of the detection structure and the analysis structure of the device can be extended, and it is convenient for workers to quickly maintain the electronic components inside. Summary of the Utility Model
[0005] In order to overcome the problems that when the defect detection device is used to detect the surface of a cigarette case, the service life of its internal electronic components is relatively low, and the detection structure is difficult to comprehensively detect the four sides of the cigarette case.
[0006] The technical solution of the utility model is: a cigarette case surface defect detection device, which includes a display screen, and also includes a carrying component, a storage and access component, a conveying component, a frame component, a detection component, and a control component. The upper inner wall of the carrying component is provided with a conveying component with self-adhesive anti-slip patterns. The inner wall of the carrying component is provided with a storage and access component for air-cooling and dissipating heat of the control component. The control component electrically connected to the detection component and the display screen is installed in the storage and access component. The upper end of the carrying component is installed with a hollowed-out frame component. The inner wall of the frame component is installed with a detection component that can be rotated and adjusted. The display screen is installed at the right end of the frame component.
[0007] Preferably, the access component can provide better collision protection for the control component and can be efficiently air-cooled to increase the service life of the electronic components in the device. The detection component can be used to take surround photos of the surroundings of the cigarette box to perform a full visual inspection of the surroundings of the cigarette box.
[0008] Preferably, the supporting assembly includes a supporting platform, a first dustproof groove, a baffle, and a first groove body. The first groove body is penetrated at the front and rear ends of the supporting platform. The supporting platform is H-shaped, and the left and right ends of the supporting platform are penetrated by equidistantly distributed first dustproof grooves. Baffles are fixed on the left and right sides of the upper end of the supporting platform. When in use, the supporting platform and the baffle can assist in limiting the left and right ends of the cigarette box, thereby improving the effect of the conveyor belt on the cigarette box transportation.
[0009] Preferably, the storage and access component includes a storage box, a second dustproof groove, a handle, a first mounting groove, and a cooling fan. The storage box is arranged in the first groove body, and the front and rear ends of the storage box are fixedly connected with handles. The front and rear ends of the storage box are penetrated with a first mounting groove, and a cooling fan is installed in the first mounting groove. The left and right ends of the storage box are penetrated with a second dustproof groove. When in use, the storage box can be used to protect the code reading module and the control computer from collision to increase their service life, and the horizontal and vertical dustproof structures formed by the first dustproof groove and the second dustproof groove can better prevent external dust from entering the storage box and affecting the normal use of the code reading module and the control computer. The cooling fan can then be used to efficiently dissipate heat for the code reading module and the control computer in the storage box to greatly increase the service life of the code reading module and the control computer.
[0010] Preferably, the control component includes a code reading module and a control computer. The code reading modules are respectively installed at the front and rear ends of the inner wall of the storage box. The two code reading modules are equipped with control computers. When in use, the code reading module can record the cigarette box scanned by the intelligent code reader, and the first camera and the second camera can take all-round photos and detect the surroundings of the cigarette box to perform external light detection on the surroundings of the cigarette box.
[0011] Preferably, the conveying assembly includes a conveyor belt and friction patterns. The conveyor belt is installed on the inner wall of the upper end of the supporting platform. The belt of the conveyor belt is provided with friction patterns evenly distributed around the conveyor belt. When in use, the conveyor belt and the friction patterns can increase the conveyor belt's ability to transport cigarette boxes.
[0012] Preferably, the frame assembly includes a frame, a second mounting slot, and a card slot. Card slots are provided on the left and right sides of the lower end of the frame, and the card slot is installed on the upper end of the support platform. A second mounting slot is provided through the upper end of the frame, and a display screen is installed on the right end of the frame. When in use, the stepper motor can be fixed through the frame, and the camera structure and the code reading structure can be supported and installed.
[0013] Preferably, the detection component includes a stepper motor, a support frame, a first camera, an intelligent code reader, and a second camera. The stepper motor is installed in the second installation groove. The lower end of the output unit of the stepper motor is fixedly connected to the support frame. On the bracket at the lower end of the support frame, symmetrically arranged first cameras are installed on the left and right. The second camera is installed on the inner wall of the center at the lower end of the support frame. Intelligent code readers are respectively installed on the left and right sides at the lower end of the support frame. The intelligent code reader is electrically connected to the code reading module. The first camera and the second camera are electrically connected to the control computer. The control computer is also electrically connected to the code reading module. The control computer is electrically connected to the display screen. During use, the stepper motor can drive the support frame to rotate, so as to drive the first camera and the second camera to perform circumferential visual inspection along the four sides of the cigarette box, thereby fully inspecting the appearance of the four sides of the cigarette box.
[0014] Advantages of the present utility model:
[0015] 1. The protection structure on the access component can provide good collision protection for the control component, and the air-cooling structure can also perform efficient air-cooling heat dissipation on the control component. The detection component that can be rotationally adjusted at a fixed point can perform circumferential photographing inspection on the four sides of the cigarette box to fully perform visual inspection on the four sides of the cigarette box and improve the service life of the electronic components in the device;
[0016] 2. The bearing platform and the baffle can cooperate to limit and assist the left and right ends of the cigarette box, thereby improving the conveying effect of the conveying belt on the cigarette box;
[0017] 3. The dust-proof structure in the horizontal and vertical directions formed by the first dust-proof groove and the second dust-proof groove can preferably prevent external dust from entering the storage box and affecting the normal use of the code reading module and the control computer;
[0018] 4. The conveying belt and the friction lines can increase the conveying capacity of the conveying belt for the cigarette box, thereby improving the conveying effect of the device. Description of the Drawings
[0019] Figure 1 Shown is a three-dimensional structural schematic diagram of a cigarette box surface defect detection device of the present utility model;
[0020] Figure 2 Shown is a three-dimensional structural exploded schematic diagram of a cigarette box surface defect detection device of the present utility model;
[0021] Figure 3 Shown is a three-dimensional structural schematic diagram of the bearing component and the conveying component of a cigarette box surface defect detection device of the present utility model;
[0022] Figure 4The figure shows a three-dimensional structural exploded view of the access component and the control component of a cigarette case surface defect detection device of the present utility model;
[0023] Figure 5 The figure shows a three-dimensional structural exploded view of the frame component and the display screen of a cigarette case surface defect detection device of the present utility model;
[0024] Figure 6 The figure shows a three-dimensional structural exploded view of the detection component of a cigarette case surface defect detection device of the present utility model.
[0025] Explanation of reference numerals: 101 - bearing table, 102 - first dust-proof groove, 103 - baffle, 104 - first groove body, 201 - storage box, 202 - second dust-proof groove, 203 - handle, 204 - first installation groove, 205 - cooling fan, 301 - conveyor belt, 302 - friction pattern, 401 - frame body, 402 - second installation groove, 403 - card slot, 501 - stepping motor, 502 - support frame, 503 - first camera, 504 - intelligent code reader, 505 - second camera, 601 - code reading module, 602 - control computer, 7 - display screen. Detailed implementation manners
[0026] The present utility model will be further described below with reference to the drawings and embodiments.
[0027] Please refer to Figure 1-2 , the present utility model provides an embodiment: a cigarette case surface defect detection device, including a display screen 7, and further including a bearing component, an access component, a conveying component, a frame component, a detection component, and a control component. An inner wall at the upper end of the bearing component is provided with a conveying component with self-adhesive anti-slip patterns, and an inner wall of the bearing component is provided with an access component for air-cooling and heat dissipation of the control component. A control component electrically connected to the detection component and the display screen 7 is installed in the access component. An upper end of the bearing component is installed with a hollowed-out frame component, an inner wall of the frame component is installed with a rotatably adjustable detection component, and a display screen 7 is installed at the right end of the frame component. The access component can provide good collision protection for the control component and perform efficient air-cooling and heat dissipation on it, so as to improve the service life of electronic components in the device. The detection component can perform circumferential photographing detection on the cigarette case to perform sufficient visual detection on the periphery of the cigarette case.
[0028] Please refer to Figure 3, in this embodiment, the bearing component includes a bearing table 101, a first dust-proof groove 102, a baffle 103, and a first groove body 104. The first groove body 104 runs through the front and rear ends of the bearing table 101. The bearing table 101 is in an H shape. The left and right ends of the bearing table 101 are provided with equidistantly distributed first dust-proof grooves 102. The left and right sides of the upper end of the bearing table 101 are fixedly connected with baffles 103. When in use, the bearing table 101 and the baffles 103 can be used to limit and assist the left and right ends of the cigarette box, thereby improving the conveying effect of the conveying belt conveyor 301 on the cigarette box. The conveying component includes a conveying belt conveyor 301 and friction lines 302. The conveying belt conveyor 301 is installed on the inner wall of the upper end of the bearing table 101. The belt of the conveying belt conveyor 301 is provided with friction lines 302 that are equidistantly distributed around the conveying belt conveyor 301. When in use, the conveying belt conveyor 301 and the friction lines 302 can increase the conveying capacity of the conveying belt conveyor 301 for the cigarette box.
[0029] Please refer to Figure 4 , in this embodiment, the access component includes a storage box 201, a second dust-proof groove 202, a handle 203, a first installation groove 204, and a cooling fan 205. The storage box 201 is arranged in the first groove body 104. The front and rear ends of the storage box 201 are fixedly connected with handles 203. The front and rear ends of the storage box 201 are provided with first installation grooves 204, and cooling fans 205 are installed in the first installation grooves 204. The left and right ends of the storage box 201 are provided with second dust-proof grooves 202. When in use, the storage box 201 can provide collision protection for the code reading module 601 and the control computer 602 to improve their service life. The vertical and horizontal dust-proof structure formed by the first dust-proof groove 102 and the second dust-proof groove 202 can better prevent external dust from entering the storage box 201 and affecting the normal use of the code reading module 601 and the control computer 602. Then, the cooling fans 205 can efficiently cool the code reading module 601 and the control computer 602 in the storage box 201 to greatly improve the service life of the code reading module 601 and the control computer 602. The control component includes a code reading module 601 and a control computer 602. The code reading modules 601 are respectively installed at the front and rear ends of the inner wall of the storage box 201, and a control computer 602 is arranged in the two code reading modules 601. When in use, the code reading module 601 can record the cigarette boxes scanned by the intelligent code reader 504, and the first camera 503 and the second camera 505 can take all-round photos of the four sides of the cigarette box for detection to perform external light detection on the four sides of the cigarette box.
[0030] Please refer to Figure 5, in this embodiment, the frame component includes a frame body 401, a second installation groove 402, and a card slot 403. Card slots 403 are provided on the left and right sides of the lower end of the frame body 401, and the card slots 403 are installed on the upper end of the carrier table 101. A second installation groove 402 is provided through the upper end of the frame body 401. A display screen 7 is installed at the right end of the frame body 401. When in use, the frame body 401 can fix the stepping motor 501 and support the installation of the photographing structure and the code reading structure. The detection component includes a stepping motor 501, a support frame 502, a first camera 503, an intelligent code reader 504, and a second camera 505. The stepping motor 501 is installed in the second installation groove 402. The lower end of the output unit of the stepping motor 501 is fixedly connected to the support frame 502. Symmetrically arranged first cameras 503 are installed on the brackets at the lower end of the support frame 502. A second camera 505 is installed on the inner wall of the center at the lower end of the support frame 502. Intelligent code readers 504 are respectively installed on the left and right sides at the lower end of the support frame 502. The intelligent code readers 504 are electrically connected to the code reading module 601. The first camera 503 and the second camera 505 are electrically connected to the control computer 602. The control computer 602 is also electrically connected to the code reading module 601. The control computer 602 is electrically connected to the display screen 7. When in use, the stepping motor 501 can drive the support frame 502 to rotate, so as to drive the first camera 503 and the second camera 505 to perform circumferential visual inspection along the four sides of the cigarette case, so as to fully inspect the appearance of the four sides of the cigarette case.
[0031] When working, first, place the cigarette case on the conveyor belt 301, and the conveyor belt 301 drives the cigarette case to be conveyed along one end where the baffles 103 are close to each other;
[0032] Next, after the cigarette case is conveyed to directly below the frame body 401, it can stop. Then, by starting the stepping motor 501, the stepping motor 501 drives the first camera 503, the second camera 505, and the intelligent code reader 504 on the support frame 502 to rotate circumferentially along the perimeter of the cigarette case, so as to perform a comprehensive appearance inspection on the four sides of the cigarette case;
[0033] Then, the first camera 503 and the second camera 505 can feed back the photos of the four sides of the cigarette case to the control computer 602, and the intelligent code reader 504 feeds back the scanned code information to the code reading module 601. The control computer 602 analyzes the information on the code reading module 601 and the information fed back by the first camera 503 and the second camera 505, and feeds the analysis result back to the worker through the display screen 7.
[0034] Through the above steps, the storage box 201 and the cooling fan 205 can provide collision protection for the code reading module 601 and the control computer 602 and perform air cooling on them, so as to greatly improve the service life and working efficiency of the code reading module 601 and the control computer 602. The stepping motor 501 can drive the first camera 503 and the second camera 505 to perform circumferential appearance detection along the periphery of the cigarette box, solving the problems that when the defect detection device is used to detect the surface of the cigarette box, the service life of its internal electronic components is relatively low, and the detection structure is difficult to perform all-round detection on the periphery of the cigarette box.
[0035] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the gist of the present invention.
Claims
1. A cigarette case surface defect detection device, comprising a display screen (7), characterized in that: It also includes a bearing assembly, a storage and access assembly, a conveying assembly, a frame assembly, a detection assembly, and a control assembly. The inner wall of the upper end of the bearing assembly is provided with a conveying assembly with anti-slip grooves. The inner wall of the bearing assembly is provided with a storage and access assembly for air-cooling the control assembly. The control assembly for electrically connecting the detection assembly and the display screen (7) is installed in the storage and access assembly. The upper end of the bearing assembly is provided with a hollow frame assembly. The inner wall of the frame assembly is provided with a rotationally adjustable detection assembly. The right end of the frame assembly is provided with a display screen (7).
2. The surface defect detection device for a cigarette case according to claim 1, characterized in that: The bearing assembly comprises a bearing platform (101), a first dustproof groove (102), a baffle (103), and a first groove body (104); the first groove body (104) is provided through the front and rear ends of the bearing platform (101); the bearing platform (101) is H-shaped; the first dustproof grooves (102) are provided through the left and right ends of the bearing platform (101) and are equidistantly distributed; and the baffles (103) are fixedly connected to the left and right sides of the upper end of the bearing platform (101).
3. The surface defect detection device for a cigarette box according to claim 2, wherein: The storage and access assembly comprises a storage box (201), a second dustproof groove (202), a handle (203), a first installation groove (204), and a cooling fan (205); the storage box (201) is arranged in the first groove body (104); the front and rear ends of the storage box (201) are fixedly connected with the handle (203); the front and rear ends of the storage box (201) are provided with a first installation groove (204); the first installation groove (204) is provided with a cooling fan (205); the left and right ends of the storage box (201) are provided with a second dustproof groove (202).
4. The surface defect detection device for cigarette boxes according to claim 3, characterized in that: The control component comprises a code reading module (601) and a control computer (602). The code reading modules (601) are respectively installed at the front and rear ends of the inner wall of the storage box (201), and the control computer (602) is arranged in the two code reading modules (601).
5. The surface defect detection device for a cigarette box according to claim 4, characterized in that: The conveying assembly comprises a conveying belt machine (301) and friction patterns (302). The conveying belt machine (301) is installed on the inner wall of the upper end of the carrier platform (101). The belt of the conveying belt machine (301) is provided with friction patterns (302) which are evenly distributed around the conveying belt machine (301).
6. The surface defect detection device for a cigarette case according to claim 5, wherein: The frame assembly comprises a frame body (401), a second mounting groove (402), and a card groove (403). The card grooves (403) are provided on the left and right sides of the lower end of the frame body (401). The card grooves (403) are installed on the upper end of the supporting platform (101). The second mounting groove (402) is provided through the upper end of the frame body (401). A display screen (7) is installed on the right end of the frame body (401).
7. The surface defect detection device for cigarette boxes according to claim 6, wherein: The detection component includes a stepper motor (501), a support frame (502), a first camera (503), an intelligent code reader (504), and a second camera (505). The stepper motor (501) is installed in the second installation groove (402). The lower end of the output unit of the stepper motor (501) is fixedly connected to the support frame (502). Symmetrically arranged first cameras (503) are installed on the brackets at the lower end of the support frame (502). The second camera (505) is installed on the inner wall of the center at the lower end of the support frame (502). Intelligent code readers (504) are respectively installed on the left and right sides at the lower end of the support frame (502). The intelligent code readers (504) are electrically connected to the code reading module (601). The first camera (503) and the second camera (505) are electrically connected to the control computer (602). The control computer (602) is also electrically connected to the code reading module (601). The control computer (602) is electrically connected to the display screen (7).