Printing die cutting glue detection equipment
By introducing image acquisition and light source components into the non-woven fabric gluing equipment, automatic detection of gluing quality is achieved, which solves the problems of high cost and low efficiency of manual gluing inspection and improves production efficiency.
Patent Information
- Application Number
- CN202422673664.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-04
AI Technical Summary
The manual glue inspection after traditional non-woven fabric coating has high labor costs and low efficiency, which makes it difficult to meet the needs of efficient production.
The image acquisition mechanism and light source components are used to automatically detect the quality of non-woven fabric glue coating. The image is collected by the camera and transmitted to the visual inspection system for analysis to achieve automatic glue inspection.
It reduces labor costs, improves glue inspection efficiency, shortens the time consumption of glue coating process, and helps to improve production efficiency.
Smart Images

Figure CN223461485U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to printing die cutting glue inspection equipment technical field, and specifically is a kind of printing die cutting glue inspection equipment. BACKGROUND
[0002] In the processing of a kind of non-woven fabric product with adhesive effect, need to coat a layer of adhesive on the back of non-woven fabric evenly, and pass knife line printing, die cutting, peel off the excess part, traditional processing equipment needs to be checked by artificial after non-woven fabric coating and die cutting are completed, and unqualified products are screened out, but artificial glue detection, labor cost is high, and glue detection efficiency is low.
[0003] Based on this, a kind of printing die cutting glue inspection equipment is provided, which can eliminate the disadvantages of existing devices. UTILITY MODEL CONTENT
[0004] The utility model is to provide a kind of printing die cutting glue inspection equipment to solve the problems in the background art.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] Printing die cutting glue inspection equipment, including rack, the rack includes two mounting plates, the lower end of the mounting plate is equipped with fixed seat, two mounting plates are equipped with guiding mechanism for controlling non-woven fabric conveying path, light source assembly and image acquisition mechanism, the guiding mechanism is equipped in mounting plate lower end, the image acquisition mechanism is equipped in mounting plate upper end, the light source assembly is equipped between guiding mechanism and image acquisition mechanism.
[0007] On the basis of the above technical scheme, the utility model further provides the following optional technical scheme:
[0008] In an alternative scheme: the guiding mechanism includes two guide shafts, the guide shaft both ends are rotatably connected with mounting plate, the non-woven fabric side without adhesive is in contact with guide shaft.
[0009] In an alternative scheme: the light source assembly includes two lamp bars, the lamp bar both ends are fixed between two mounting plates by mounting seat, the light emitting side of the lamp bar is opposite to non-woven fabric side.
[0010] In an alternative scheme: the image acquisition mechanism includes adjusting assembly and camera, the camera is fixed in the lower end of connecting seat, the connecting seat and adjusting assembly are connected by bolt, the camera is electrically connected with external vision detection system and control system.
[0011] In an alternative: the adjusting assembly comprises a transverse adjusting assembly and an axial adjusting assembly, the transverse adjusting assembly comprises a first fixed shaft, a second fixed shaft and a first movable block, the first fixed shaft and the second fixed shaft are fixed at both ends of the mounting plate, the first fixed shaft and the second fixed shaft are sleeved with the first movable block, and the axial adjusting assembly is arranged at the lower end of the first movable block.
[0012] In an alternative: the lower end of the second fixed shaft is provided with a first rack, the first movable block is provided with a first gear connected with the first rack, the first gear is fixed at the output end of the first motor, and the first motor is fixed outside the first movable block.
[0013] In an alternative: the axial adjusting assembly comprises a third fixed shaft fixed at the lower end of the first movable block, the lower end of the third fixed shaft is provided with a second rack, the third fixed shaft is sleeved with a second movable block, the second movable block is provided with a second gear connected with the second rack, the second gear is fixed at the output end of the second motor, and the second motor is fixed outside the second movable block.
[0014] In an alternative: the lower end of the second movable block is fixed with a connecting plate, and the connecting plate is provided with a bolt hole for connecting the camera.
[0015] Compared with the prior art, the non-woven fabric glue coating picture is collected by the camera, the collected image is transmitted to the external visual detection system for analysis, and then the detection result is transmitted to the on-site control system, so that the problems of manual glue detection, high labor cost and low glue detection efficiency can be effectively solved, the time consumption of the whole glue coating process is shortened, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] The non-woven fabric glue coating picture is collected by the camera, the collected image is transmitted to the external visual detection system for analysis, and then the detection result is transmitted to the on-site control system, so that the problems of manual glue detection, high labor cost and low glue detection efficiency can be effectively solved, the time consumption of the whole glue coating process is shortened, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structural schematic view of one side of the utility model.
[0018] Figure 2 It is a structural schematic view of the other side of the utility model.
[0019] Figure 3 It is a structural schematic view of the image collection mechanism in the utility model.
[0020] 100, rack; 101, mounting plate; 102, fixing seat; 200, guide mechanism; 201, non-woven fabric; 202, guide shaft; 300, light source assembly; 301, lamp rod; 302, mounting seat; 400, image acquisition mechanism; 401, first fixed shaft; 402, second fixed shaft; 403, first rack; 404, first gear; 405, first motor; 406, first movable block; 407, third fixed shaft; 408, second rack; 409, second gear; 410, second motor; 411, second movable block; 412, connecting plate; 413, connecting seat; 414, camera. DETAILED DESCRIPTION
[0021] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail in combination with the drawings and examples.
[0022] In one embodiment, as shown in Figure 1 and Figure 2 , the printing die cutting glue detection equipment comprises a rack 100, a guide mechanism 200, a light source assembly 300 and an image acquisition mechanism 400, the rack 100 comprises two mounting plates 101, the lower end of the mounting plate 101 is provided with a fixing seat 102, the guide mechanism 200, the light source assembly 300 and the image acquisition mechanism 400 for controlling the conveying path of the non-woven fabric 201 are installed between the two mounting plates 101, the guide mechanism 200 is arranged at the lower end of the mounting plate 101, the image acquisition mechanism 400 is arranged at the upper end of the mounting plate 101, and the light source assembly 300 is arranged between the guide mechanism 200 and the image acquisition mechanism 400, in use, the non-woven fabric 201 passes through the coverage range of the light source assembly 300 and the image acquisition mechanism 400 by controlling the guide mechanism 200, then the non-woven fabric 201 after being coated with glue is photographed by the image acquisition mechanism 400, and the collected image can be clearer by the light source assembly 300.
[0023] In one embodiment, as shown in Figure 1 and Figure 2 , the guide mechanism 200 comprises two guide shafts 202, the two ends of the guide shaft 202 are rotationally connected with the mounting plate 101, and the non-glued side of the non-woven fabric 201 is in contact with the guide shaft 202, in use, the non-woven fabric 201 moves at a constant speed along the guide shaft 202 after being coated with glue, and the coated surface faces the image acquisition mechanism 400, so that the image acquisition mechanism 400 can collect the image.
[0024] In one embodiment, as shown in Figure 1 and Figure 2As shown, the light source assembly 300 includes two lamp rods 301, the two ends of the lamp rods 301 are fixed between the two mounting plates 101 through the mounting seats 302, the light emitting side of the lamp rods 301 is opposite to the side of the non-woven fabric 201, and when in use, the non-woven fabric 201 is lighted through the lamp rods 301, so that the image collected by the image collection mechanism 400 is clearer.
[0025] In one embodiment, as shown in the figure, Figure 3 As shown, the image collection mechanism 400 includes an adjusting assembly and a camera 414, the camera 414 is fixed at the lower end of the connecting seat 413, the connecting seat 413 and the adjusting assembly are connected by bolts, the camera 414 is electrically connected with an external visual detection system and a control system, and when in use, the image collected by the camera 414 is transmitted to the external visual detection system for analysis, and then the analysis result is transmitted to the control system.
[0026] In one embodiment, as shown in the figure, Figure 3 As shown, the adjusting assembly includes a transverse adjusting assembly and an axial adjusting assembly, the transverse adjusting assembly includes a first fixed shaft 401, a second fixed shaft 402 and a first movable block 406, the two ends of the first fixed shaft 401 and the second fixed shaft 402 are fixed on the mounting plate 101, the first movable block 406 is sleeved on the first fixed shaft 401 and the second fixed shaft 402, and the axial adjusting assembly is arranged at the lower end of the first movable block 406, and when in use, the installation position of the camera 414 is adjusted through the transverse adjusting assembly and the axial adjusting assembly, so that the image collected by the camera 414 can cover the entire width range of the non-woven fabric 201.
[0027] In one embodiment, as shown in the figure, Figure 3 As shown, the lower end of the second fixed shaft 402 is provided with a first rack 403, the first movable block 406 is provided with a first gear 404 which is in meshing connection with the first rack 403, the first gear 404 is fixed at the output end of the first motor 405, and the first motor 405 is fixed outside the first movable block 406, and when in use, the first motor 405 drives the first gear 404 to rotate, so as to drive the first movable block 406 to move along the first fixed shaft 401 and the second fixed shaft 402.
[0028] In one embodiment, as shown in the figure, Figure 3 As shown, the axial adjusting assembly includes a third fixed shaft 407 fixed at the lower end of the first movable block 406, the lower end of the third fixed shaft 407 is provided with a second rack 408, the third fixed shaft 407 is sleeved with a second movable block 411, the second movable block 411 is provided with a second gear 409 which is in meshing connection with the second rack 408, the second gear 409 is fixed at the output end of the second motor 410, and the second motor 410 is fixed outside the second movable block 411, and when in use, the second motor 410 drives the second gear 409 to rotate, so as to drive the second movable block 411 to move along the third fixed shaft 407.
[0029] In one embodiment, as shown in Figure 3 The lower end of the second movable block 411 is fixed with a connecting plate 412, and the connecting plate 412 is provided with bolt holes for connecting the camera 414. During installation, the camera 414 is fixed at the lower end of the adjusting assembly through the bolt connection between the connecting plate 412 and the connecting seat 413.
[0030] The above embodiment discloses a printing die cutting glue detection equipment. During use, the camera 414 is installed at the lower end of the connecting seat 413 of the adjusting assembly through the connecting plate 412, and then the position of the camera 414 is adjusted through the transverse adjusting assembly and the axial adjusting assembly, so that the camera 414 can cover the entire width range of the non-woven fabric 201. Then, the coated non-woven fabric 201 is moved along the two guide shafts 202, so that the non-woven fabric 201 uniformly passes through the shooting area of the camera 414, and the light source assembly 300 is used to supplement light for the non-woven fabric 201, thereby improving the definition of the image collected by the camera 414. Then, the image collected by the camera 414 is automatically transmitted to an external visual detection system for analysis, and the analysis result is transmitted to a control system.
[0031] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A printing die-cutting glue inspection equipment, comprising a rack (100), the rack (100) comprising two mounting plates (101), the lower end of the mounting plate (101) being provided with a fixing seat (102), characterized in that, Two said installation plate (101) between the installation of the non-woven fabric (201) for the control of the delivery path of the guide mechanism (200), light source assembly (300) and image acquisition mechanism (400), the guide mechanism (200) is arranged in the lower end of the installation plate (101), the image acquisition mechanism (400) is arranged in the upper end of the installation plate (101), the light source assembly (300) is arranged between the guide mechanism (200) and the image acquisition mechanism (400).
2. The print die gummy inspection apparatus of claim 1, wherein, The guide mechanism (200) comprises two guide shafts (202), both ends of the guide shaft (202) are rotatably connected with the installation plate (101), and the non-woven fabric (201) is in contact with the guide shaft (202) on the side without glue.
3. The print die gummy inspection apparatus of claim 1, wherein, The light source assembly (300) comprises two lamp rods (301), both ends of the lamp rod (301) are fixed between the two installation plates (101) through the mounting seat (302), and the light emitting side of the lamp rod (301) is opposite to the side of the non-woven fabric (201).
4. The print die gummy inspection apparatus of claim 1, wherein, The image acquisition mechanism (400) comprises an adjusting assembly and a camera (414), the camera (414) is fixed at the lower end of the connecting seat (413), the connecting seat (413) and the adjusting assembly are connected by bolts, and the camera (414) is electrically connected with an external visual detection system and a control system.
5. The print die gummy inspection apparatus of claim 4, wherein, The adjusting assembly comprises a transverse adjusting assembly and an axial adjusting assembly, the transverse adjusting assembly comprises a first fixed shaft (401), a second fixed shaft (402) and a first movable block (406), both ends of the first fixed shaft (401) and the second fixed shaft (402) are fixed on the installation plate (101), the first fixed shaft (401) and the second fixed shaft (402) are sleeved with the first movable block (406), and the axial adjusting assembly is arranged at the lower end of the first movable block (406).
6. The print die gummy inspection apparatus of claim 5, wherein, The lower end of the second fixed shaft (402) is provided with a first rack (403), the first movable block (406) is provided with a first gear (404) which is in meshing connection with the first rack (403), the first gear (404) is fixed on the output end of the first motor (405), and the first motor (405) is fixed outside the first movable block (406).
7. The print die gummy inspection apparatus of claim 5, wherein, The axial adjusting assembly comprises a third fixed shaft (407) fixed at the lower end of the first movable block (406), the lower end of the third fixed shaft (407) is provided with a second rack (408), the third fixed shaft (407) is sleeved with a second movable block (411), the second movable block (411) is provided with a second gear (409) which is in meshing connection with the second rack (408), the second gear (409) is fixed on the output end of the second motor (410), and the second motor (410) is fixed outside the second movable block (411).
8. The print die gummy inspection apparatus of claim 7, wherein, The lower end of the second movable block (411) is fixed with a connecting plate (412), and the connecting plate (412) is provided with a bolt hole for connecting the camera (414).