Intelligent green printing quality monitoring device

By setting ventilation holes and dust collection bins on the conveyor belt, and using a fan to adsorb printed materials and suck in dust, the problems of misalignment of printed materials and poor detection results during transmission are solved, and the cleaning of the detection bin and dust control are achieved.

CN223575305UActive Publication Date: 2025-11-21WUHAN KAIXIN PRINTING CO LTD
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Patent Information

Application Number
CN202423196364.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-21
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

During transport, printed materials expand unevenly due to stacking creep and transportation compression, affecting the detection effect and potentially causing them to rub against or fall off the detection machine components. Existing devices are unable to effectively solve this problem.

Method used

Ventilation holes and a dust collection bin are installed on the conveyor belt. The exhaust fan generates suction to adsorb the printed materials onto the conveyor belt and sucks in the dust through the ventilation holes. The dust collection bin is equipped with a water storage tank to prevent dust from splashing. The structural design allows for cleaning of the dust collection bin and release of water.

Benefits of technology

It effectively prevents printed materials from falling out of place, maintains the testing effect, keeps the testing chamber clean, avoids dust contamination, and prevents dust from being stirred up during the cleaning process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223575305U_ABST
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Abstract

The utility model belongs to the technical field of printing detection, and particularly relates to an intelligent green printing quality monitoring device which comprises a conveying belt assembled on the top of a conveying table in a transmission mode. A plurality of sliding frames are fixedly connected to the position, located in the middle hollow area of the conveying belt, in the conveying table at equal intervals, and a dust collecting bin is assembled between every two sliding frames in a sliding mode. When the detection bin detects printed matters on the conveying belt, suction force can be transmitted into the dust collection bin through the exhaust fan, the printed matters are adsorbed on the conveying belt and are prevented from being staggered and falling off, and the situation that the detection effect is affected due to the fact that the printed matters are too close to the detection bin is avoided; when the dust collection bin is taken out, water flow in the water storage bin can be released into the dust collection bin in advance, and dust is prevented from splashing.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to printing detection technical field, concretely relates to an intelligent green printing quality monitoring device. BACKGROUND

[0002] The intelligent green printing utilizes modern information technologies such as industrial internet, big data and cloud computing to optimize production processes, realizes efficient allocation of resources and economical use of energy, selects low-pollution or non-pollution materials such as water-based ink and plant-based ink in the printing process to reduce the burden on the environment, and the printing quality detection monitoring system is a system for real-time monitoring and analysis of quality problems in the printing process by using modern visual detection technology, which collects printed matter images in real time through online monitoring equipment such as CCD camera and image acquisition card, and transmits them to a computer for processing to quickly identify printing defects.

[0003] In the prior art, the intelligent green printing quality monitoring device is arranged above the conveying belt to scan and detect the printed matter on the conveying belt, but the printed matter may swell unevenly due to creep, transportation extrusion and other reasons, which may cause the printed matter to be too close to the camera during camera scanning, affect the detection effect, or cause scratches between the printed matter and other parts of the detection machine, and the printed matter is prone to falling out of position. UTILITARIAN CONTENT

[0004] The utility model aims at providing an intelligent green printing quality monitoring device, which can absorb the printed matter on the conveying belt by an air extractor to prevent the printed matter from falling out of position, avoid the printed matter being too close to the detection chamber to affect the detection effect, and simultaneously suck the dust in the detection chamber into the dust collection chamber due to the opening of the air-permeable hole to keep the detection chamber clean, and the water flow in the water storage chamber can be released into the dust collection chamber in advance when the dust collection chamber is taken out to prevent dust from splashing.

[0005] The technical scheme adopted by the utility model is as follows:

[0006] The utility model provides an intelligent green printing quality monitoring device, including the transmission belt of transmission assembly in the top of transmission platform, the whole body of transmission belt array formula is opened with the air hole through, the inside of transmission platform and located the middle hollow area of transmission belt equidistance fixedly connected with a plurality of slide frame, the dust collection bin is slidably assembled between every two slide frames, the one side of dust collection bin and located the outside of transmission platform is fixedly connected with the hose through, the transmission platform is fixedly assembled with the air pipe through the fixed frame of both sides, the air pipe is detachably connected with the hose, the inner wall of dust collection bin is fixedly connected with the water storage bin, the middle part of water storage bin is slidably connected with the sliding rod, the bottom of water storage bin is opened with a plurality of water -permeable holes equidistance, the one side of sliding rod is fixedly connected with a plurality of sealing plate for opening and closing water -permeable hole equidistance, the both ends of sliding rod and located the both sides of water storage bin are elastically connected with spring post, spring post is elastically connected with dust collection bin, one end of dust collection bin is symmetrically opened with recess, the middle part of recess is rotatably connected with the rotating rod, the one end of rotating rod is rotatably connected with sliding rod after passing through spring post, the outer wall of rotating rod and located the one side of dust collection bin is fixedly connected with the convex board.

[0007] The inside of transmission platform and located below the transmission belt is fixedly assembled with the air draught fan, and the air draught fan is fixedly connected with the air pipe.

[0008] The top of transmission belt is fixedly assembled with the detection bin, and one end of the dust collection bin and located outside the transmission platform is fixedly connected with the pull plate.

[0009] The middle part of pull plate is throughly opened with the embedding slot, and the outer wall of transmission platform and located below the pull plate is fixedly connected with the side plate.

[0010] The side plate is slidably connected with the link plate through the limiting rod of both ends, and the top of water storage bin is movably buckled with the buckle plate.

[0011] The top of link plate is fixedly connected with the embedded plate for movably embedding the embedding slot.

[0012] The bottom of link plate is rotatably connected with the screw rod, and the screw rod is threadedly connected with the side plate.

[0013] The utility model discloses obtain technical effect for: when detecting the printing product on the transmission belt in detection bin, the transmission of suction force in dust collection bin is carried out through air draught fan, and the printing product is adsorbed on the transmission belt, prevents its misplacement drop, avoids the printing product too close detection bin and influences detection effect, and because the air hole is opened, the dust of detection bin can be inhaled into dust collection bin simultaneously, keeps the neatness of detection bin, when taking out dust collection bin, the water flow in water storage bin can be released into dust collection bin in advance, prevents dust splashing. ACCURACY OF DRAWINGS

[0014] Figure 1 is the overall appearance of the printing quality monitoring device provided by the embodiment of the utility model;

[0015] Figure 2 is the structural exploded view of the transmission table provided by the embodiment of the utility model;

[0016] Figure 3 is Figure 2 the partial enlarged view of A in the middle;

[0017] Figure 4 is the structural display view of the dust collecting bin provided by the embodiment of the utility model;

[0018] Figure 5 is Figure 4 the partial enlarged view of B in the middle;

[0019] Figure 6 is Figure 4 the partial enlarged view of C in the middle;

[0020] Figure 7 is the structural exploded view of the water storage bin provided by the embodiment of the utility model.

[0021] In the drawings, the components represented by each reference numeral are listed as follows:

[0022] 1, transmission table;101, detection bin;102, conveying belt;103, air-permeable hole;104, dust collecting bin;105, air pipe;106, fixing frame;107, hose;108, air extractor;109, sliding frame;110, side plate;111, limiting rod;112, connecting plate;113, panel;114, screw;115, pull plate;116, embedding groove;117, rotating rod;118, groove;119, convex plate;120, spring column;121, water storage bin;122, buckle plate;123, water-permeable hole;124, sliding rod;125, sealing plate. DETAILED DESCRIPTION

[0023] In order to make the purpose and advantages of the utility model more clear and obvious, the utility model is specifically explained below by combining with the embodiment. It should be understood that the following text is only used to describe one or several specific implementation manners of the utility model, and does not strictly limit the protection scope of the specific request of the utility model.

[0024] As Figures 1-5As shown, an intelligent green printing quality monitoring device, including transmission assembly on the top of the transmission table 1 conveying belt 102, conveying belt 102 is fixedly assembled with detection bin 101 above, the whole body of conveying belt 102 array type through opening has a through hole 103, the inside of transmission table 1 and located in the middle hollow area of conveying belt 102 is fixedly connected with several sliding frame 109, each two sliding frame 109 between slidingly assembled with dust collection bin 104, one side of dust collection bin 104 and located on the outside of transmission table 1 through type fixedly connected with hose 107, transmission table 1 is fixedly assembled with air pipe 105 through both sides of fixed frame 106, air pipe 105 and hose 107 can be detachably connected, the inside of transmission table 1 and located below the fixedly assembled with dust collector 108 of conveying belt 102, dust collector 108 and air pipe 105 are fixedly connected, one end of dust collection bin 104 and located on the outside of transmission table 1 is fixedly connected with pull plate 115, the middle part of pull plate 115 is through type opening has the recess 116, the outer wall of transmission table 1 and located below the fixedly connected with side plate 110 of pull plate 115, the side plate 110 is slidably connected with the link plate 112 through both ends of limiting rod 111, the top of link plate 112 is fixedly connected with the embedded plate 113 for movable embedded recess 116, the bottom of link plate 112 is rotatably connected with screw 114, screw 114 is threadedly connected with side plate 110.

[0025] According to the above structure, the printed matter is conveyed to the detection bin 101 below by the conveying belt 102 for detection, the dust collector 108 is started, the wind force enters the hose 107, the dust collection bin 104 and passes through the through hole 103 to adsorb the printed matter on the conveying belt 102, when there is no printed matter on the conveying belt 102, the dust adhered in the detection bin 101 can also be adsorbed, and because the side plate 110 is threadedly connected with the screw 114, the link plate 112 can be moved up by rotating the screw 114, the limiting rod 111 is angularly limited when the side plate 110 moves, the link plate 112 moves up to make the embedded plate 113 embedded in the recess 116, so that the dust collection bin 104 is clamped and fixed.

[0026] Refer to the attached drawings Figures 4-7The inner wall of the dust collecting bin 104 is symmetrically and fixedly connected with a water storage bin 121, the top of the water storage bin 121 is movably buckled with a buckle plate 122, the middle of the water storage bin 121 is slidably connected with a sliding rod 124, the bottom of the water storage bin 121 is equidistantly and penetratively provided with a plurality of water permeable holes 123, one side of the sliding rod 124 is equidistantly and fixedly connected with a plurality of sealing plates 125 for opening and closing the water permeable holes 123, both ends of the sliding rod 124 and located at both sides of the water storage bin 121 are elastically connected with spring columns 120, the spring columns 120 are elastically connected with the dust collecting bin 104, one end of the dust collecting bin 104 is symmetrically provided with a groove 118, the middle of the groove 118 is rotatably connected with a rotating rod 117, one end of the rotating rod 117 penetrates through the spring column 120 and is rotatably connected with the sliding rod 124, the outer wall of the rotating rod 117 and located at one side of the dust collecting bin 104 is fixedly connected with a convex plate 119.

[0027] According to the above structure, when the dust collecting bin 104 needs to be taken out for cleaning, one end of the hose 107 is rotated to separate from the air pipe 105, and the rotating rod 117 is rotated in advance, so that the convex plate 119 is embedded in the groove 118, the sliding rod 124 moves under the rebounding tension of the spring column 120, the rotating rod 117 moves accordingly, the sliding rod 124 moves to drive the sealing plate 125 to move, the water permeable hole 123 is no longer closed, the water in the water storage bin 121 flows into the dust collecting bin 104 through the sliding rod 124, and the dust in the dust collecting bin 104 is soaked, so that the dust is not lifted by vibration when the dust collecting bin 104 is pulled out, and the buckle plate 122 is used to supplement water in the water storage bin 121; the utility model can detect the printed matter on the conveying belt 102 through the detection bin 101, and the suction force is transmitted to the dust collecting bin 104 through the air extractor 108 to adsorb the printed matter on the conveying belt 102, so that the printed matter is prevented from being misaligned and falling off, and the detection effect is avoided from being affected by the printed matter being too close to the detection bin 101, and because the air permeable hole 103 is provided, the dust in the detection bin 101 can be sucked into the dust collecting bin 104 at the same time, the detection bin 101 is kept clean, and when the dust collecting bin 104 is taken out, the water in the water storage bin 121 can be released into the dust collecting bin 104 in advance, so that the dust is prevented from splashing.

[0028] The working principle of the utility model is: the printed matter is transported to the detection bin 101 below by the conveyer belt 102 to be detected, the air fan 108 is started, the air force enters the hose 107 and the dust collection bin 104 through the air pipe 105, and the printed matter is adsorbed on the conveyer belt 102 through the air hole 103, when there is no printed matter on the conveyer belt 102, the dust adhered in the detection bin 101 can also be adsorbed, and because the side plate 110 is threadedly connected with the screw rod 114, the connecting plate 112 can be moved up by rotating the screw rod 114, the limiting rod 111 limits the angle of the side plate 110 when it moves, the connecting plate 112 moves up to make the panel 113 embedded in the embedded groove 116, thereby clamping and fixing the dust collection bin 104, when the dust collection bin 104 needs to be taken out to be cleaned, one end of the hose 107 can be rotated to separate it from the air pipe 105, and the rotating rod 117 is rotated in advance, the convex plate 119 is embedded in the groove 118, the sliding rod 124 moves under the rebounding pulling force of the spring column 120, the rotating rod 117 moves with it, the sliding rod 124 moves to drive the sealing plate 125 to move, the water hole 123 is no longer closed, the water in the water storage bin 121 flows into the dust collection bin 104 through the sliding rod 124, and the dust in the dust collection bin 104 is soaked, so that the dust is not raised when the dust collection bin 104 is pulled, and the buckle plate 122 is used to supplement water in the water storage bin 121.

[0029] The above is only the preferred embodiment of the utility model, and it should be pointed out that for the ordinary skilled in the art, without departing from the principle of the utility model, some improvements and decorations can be made, and these improvements and decorations should be regarded as the protection scope of the utility model. The structures, devices and operation methods not specifically described and explained in the utility model are implemented according to the conventional means in the art, and no special description and limitation is made.

Claims

1. An intelligent green printing quality monitoring device, comprising a conveyor belt (102) mounted on top of a transmission platform (1), characterized in that: The conveyor belt (102) has ventilation holes (103) arranged in an array around its perimeter. Several sliding frames (109) are fixedly connected at equal intervals inside the transmission platform (1) and in the hollow area in the middle of the conveyor belt (102). A dust collection bin (104) is slidably assembled between every two sliding frames (109). A flexible hose (107) is fixedly connected through one side of the dust collection bin (104) and on the outside of the transmission platform (1). Air ducts (105) are fixedly assembled on the transmission platform (1) via fixed frames (106) on both sides. The air ducts (105) are detachably connected to the flexible hoses (107). A water storage bin (121) is symmetrically fixedly connected to the inner wall of the dust collection bin (104). A sliding rod (124) is slidably connected to the middle of the water storage bin (121). 21) has several permeable holes (123) evenly spaced through the bottom. Several sealing plates (125) for opening and closing the permeable holes (123) are fixedly connected at equal distances on one side of the sliding rod (124). Spring columns (120) are elastically connected to both ends of the sliding rod (124) and located on both sides of the water storage tank (121). The spring columns (120) are elastically connected to the dust collection tank (104). A groove (118) is symmetrically opened at one end of the dust collection tank (104). A rotating rod (117) is rotatably connected to the middle of the groove (118). One end of the rotating rod (117) passes through the spring column (120) and is rotatably connected to the sliding rod (124). A protruding plate (119) is fixedly connected to the outer wall of the rotating rod (117) and located on one side of the dust collection tank (104).

2. The intelligent green printing quality monitoring device according to claim 1, characterized in that: An exhaust fan (108) is fixedly assembled inside the transmission platform (1) and below the conveyor belt (102), and the exhaust fan (108) is fixedly connected to the air duct (105).

3. The intelligent green printing quality monitoring device according to claim 1, characterized in that: A detection chamber (101) is fixedly assembled above the conveyor belt (102), and a pull plate (115) is fixedly connected to one end of the dust collection chamber (104) and located outside the transmission table (1).

4. The intelligent green printing quality monitoring device according to claim 3, characterized in that: The pull plate (115) has a through groove (116) in the middle, and a side plate (110) is fixedly connected to the outer wall of the transmission table (1) and below the pull plate (115).

5. The intelligent green printing quality monitoring device according to claim 4, characterized in that: The side plate (110) is slidably connected to the connecting plate (112) by the limiting rods (111) at both ends, and the top of the water storage tank (121) is movably fastened with the buckle plate (122).

6. The intelligent green printing quality monitoring device according to claim 5, characterized in that: The top of the connecting plate (112) is fixedly connected at equal intervals to a plate (113) for movably embedding into the groove (116).

7. The intelligent green printing quality monitoring device according to claim 5, characterized in that: The bottom of the connecting plate (112) is rotatably connected to a screw (114), and the screw (114) is threadedly connected to the side plate (110).