Real-time online imaging device for high-definition printed matter

By introducing a conveyor and an adjustable support structure into the imaging device, the problems of inconvenient printing material transport and recording in existing devices are solved, enabling real-time guidance and high-definition imaging of printed materials.

CN223967917UActive Publication Date: 2026-03-03JINHUA XIN CAN ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing imaging devices are inconvenient for real-time guidance, transport, adjustment, and recording of printed materials according to usage needs, which affects operational efficiency.

Method used

A high-definition real-time online imaging device for printed materials was designed, comprising a conveyor frame, a guide plate, a camera component, and an adjustable support structure. The conveying path of the printed materials is adjusted by the guide plate, and the height and position of the camera component are adjusted by the support studs and the hanging studs to achieve precise guidance and clear recording of the printed materials.

Benefits of technology

It enables real-time guidance, transport, and recording adjustment of printed materials, improving the convenience and efficiency of operation and ensuring high-definition online imaging effects.

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Abstract

The utility model relates to the technical field of video recording and imaging, in particular to a high-definition printed matter real-time online imaging device which comprises a conveying frame, a conveying belt is assembled in the conveying frame, the side end of the conveying belt is driven by a motor, a guide plate is assembled on the right side of the conveying frame in a supporting mode, and assembling frames are assembled on the front side and the rear side of the conveying frame in a supporting mode. An assembling side plate is assembled on the inner side of the assembling frame, a supporting stud is inserted into the assembling side plate in a threaded mode, an inner barrier strip is supported at the inner end of the supporting stud, a hoisting stud is inserted into the inner barrier strip in a threaded mode, a hoisting barrier strip is hoisted at the bottom of the hoisting stud, and a video recording assembly is arranged above the conveying frame. A supporting top frame is supported at the bottom of the video recording assembly, and a supporting inner column is supported on the side edge of the supporting top frame and is supported on the surface of the assembling frame. According to the utility model, real-time guiding conveying and adjusting photographing can be conveniently carried out on printed matters according to use requirements, so that the operation is more convenient and efficient.
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Description

Technical Field

[0001] This utility model relates to the field of video imaging technology, specifically a high-definition online imaging device for printed materials in real time. Background Technology

[0002] Printed materials are finished products obtained by transferring graphic information onto various substrates such as paper, cardboard, plastic, fabric, and metal through printing technology. The production process generally includes three stages: pre-press processing, printing, and post-press processing. Online imaging devices are used to inspect and record printed materials after printing, in order to preserve, check, and monitor the quality of the printed materials.

[0003] In response, Chinese patent application number CN202220087401.5 discloses a high-definition real-time online imaging device for printed materials, including a device body. A partition is horizontally connected inside the device body. Buffer springs are symmetrically connected to both sides of the bottom of the partition. Limiting plates are connected to the bottom of each buffer spring. A connecting component is provided between the limiting plate and the partition. The limiting plate is engaged with a protrusion at the bottom port of the device body. An extension block is connected to the middle part of the bottom of the limiting plate. The extension block extends from the bottom port of the device body to the outside. A base plate is connected to the bottom of the extension block. Universal wheels are connected to the four corners of the bottom of the base plate.

[0004] However, existing imaging devices are inconvenient for guiding, transporting, adjusting, and recording printed materials in real time according to usage needs, which affects operational efficiency.

[0005] Therefore, in order to solve the above problems, a high-definition printed matter real-time online imaging device is proposed. Utility Model Content

[0006] The purpose of this invention is to provide a high-definition real-time online imaging device for printed materials, so as to solve the problem mentioned in the background art that the existing imaging devices are inconvenient to guide, transport and adjust the recording of printed materials in real time according to the needs of use, which affects the efficiency of use and operation.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a high-definition real-time online imaging device for printed materials, comprising a conveyor frame, a conveyor belt internally mounted on the conveyor frame, the conveyor belt being driven by a motor at its side end, support legs at the bottom of the conveyor frame, and a power distribution box mounted on the front center of the conveyor frame via a mounting base, with a control module electrically connected above the power distribution box. A guide plate is mounted on the right side of the conveyor frame, and mounting frames are mounted on the front and rear sides of the conveyor frame. A mounting side plate is mounted on the inner side of the mounting frame, a support stud is threaded into the mounting side plate, and an inner stop bar is supported at the inner end of the support stud. A lifting stud is threaded into the inner stop bar, and a lifting stop bar is suspended at the bottom of the lifting stud. A recording component is arranged above the conveyor frame, and a support top frame is supported at the bottom of the recording component. A support inner column is supported on the side of the support top frame, and the support inner column is supported on the surface of the mounting frame.

[0008] As a further step of this solution, a support outer cylinder is inserted and assembled inside the inner support column, and the upper end of the support outer cylinder is supported on the bottom of the side end of the support top frame. A locking pin is threaded into the upper side of the inner support column, and the inner end of the locking pin abuts against the outer wall of the support outer cylinder.

[0009] As a further step of this solution, the inner ends of the support stud and the hoisting stud are fixed with inner cards, and the outer card is covered with an outer sleeve. Two sets of outer sleeves are fitted on the outer walls of the support stud and the hoisting stud, and the two sets of outer sleeves are fitted on the outer walls of the inner stop strip and the hoisting stop strip. The outer ends of the support stud and the hoisting stud are respectively integrally fixed with a torsion block.

[0010] As a further step of this solution, the hoisting stop bar is arranged parallel to the bottom of the inner stop bar, and both the inner stop bar and the hoisting stop bar have an integrally fixed arc-shaped bend at the end near the guide plate.

[0011] As a further improvement to this solution, the bottom of the support leg and the mounting base are threaded with pads, the bottom of the pads are horizontal and the top of the pads are arc-shaped protrusions.

[0012] As a further step of this solution, the conveyor frame is supported above the side of the guide plate, and an assembly side seat is fixedly provided on the inner end of the guide plate. The assembly shaft is installed inside the assembly side seat through a bearing. An auxiliary throttle is installed at the rear end of the assembly shaft. A limit pin is fixed on the outer wall of the auxiliary throttle and is inserted inside the assembly side seat. A limit groove corresponding to the limit pin is opened inside the assembly side seat, and a limit nut is threaded on the outer end of the limit pin. The inner end of the limit nut abuts against the outer wall of the assembly side seat.

[0013] As a further step of this solution, the outer end of the auxiliary throttle is provided with an extension handle, the outer end of the extension handle is provided with a grip ring, and side baffles are integrally provided on both sides of the guide plate surface.

[0014] Compared with the prior art, the beneficial effects of this utility model are: this utility model facilitates real-time guidance, conveying, adjustment, and recording of printed materials according to usage needs, making the operation more convenient and efficient;

[0015] This utility model features a guide plate that, when transported by a conveyor frame, facilitates docking with the printing equipment's outlet, guiding the printed materials for unloading. This allows for real-time transport via the conveyor frame, enabling subsequent online recording and inspection, thus enhancing operational convenience. This design improves the ease of use and practicality of the high-definition printed material real-time online imaging device.

[0016] This utility model, by incorporating an assembly side plate, inner baffles, and lifting baffles, allows for the adjustment of the inner baffles via the assembly side plate and supporting studs during the guiding and conveying of printed materials. This facilitates the adjustment of the distance between the inner baffles on both sides, enabling the blocking and centering of passing printed materials. Similarly, the height of the lifting baffles can be adjusted according to their height using the lifting studs, making blocking more convenient. Subsequently, the camera height can be further adjusted with the assistance of the supporting top frame, supporting inner column, and supporting outer cylinder, resulting in clearer and more convenient imaging and operation. This design improves the convenience and practicality of the high-definition printed material real-time online imaging device. Attached Figure Description

[0017] Figure 1 This is a frontal perspective three-dimensional schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a side perspective three-dimensional schematic diagram of the overall structure of this utility model;

[0019] Figure 3 This is a three-dimensional side view sectional view of a partial structure of the guide plate of this utility model;

[0020] Figure 4 This is a side-view perspective view of a partial structure of the camera module of this utility model;

[0021] In the diagram: 100, conveyor frame; 101, conveyor belt; 102, motor; 110, support leg; 111, foot pad; 120, assembly base; 130, power distribution box; 131, control module; 140, guide plate; 141, assembly side seat; 142, assembly shaft; 143, side baffle; 144, auxiliary throttle; 145, limit pin; 146, limit groove; 147, limit nut; 148, extension. 149. Handle; 150. Assembly frame; 160. Assembly side plate; 161. Support stud; 162. Inner clip; 163. Outer clip; 164. Torque block; 170. Inner stop strip; 171. Lifting stud; 180. Lifting stop strip; 181. Arc-shaped bend; 190. Camera assembly; 191. Support top frame; 192. Support inner column; 193. Support outer cylinder; 194. Locking pin. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figures 1-4 One embodiment provided by this utility model:

[0024] A high-definition real-time online imaging device for printed materials includes a conveyor frame 100, inside which a conveyor belt 101 is installed, and the side end of the conveyor belt 101 is driven by a motor 102. Support legs 110 are mounted at the bottom of the conveyor frame 100, and a power distribution box 130 is mounted on the front center of the conveyor frame 100 via a mounting base 120. A control module 131 is electrically connected to the top of the power distribution box 130. A guide plate 140 is mounted on the right side of the conveyor frame 100, and mounting frames 150 are mounted on the front and rear sides of the conveyor frame 100. An assembly side plate 160 is installed inside the frame 150. A support stud 161 is threaded inside the assembly side plate 160. An inner stop strip 170 is supported at the inner end of the support stud 161. A lifting stud 171 is threaded inside the inner stop strip 170. A lifting stop strip 180 is suspended at the bottom of the lifting stud 171. A camera component 190 is set above the conveyor frame 100. A support top frame 191 is supported at the bottom of the camera component 190. A support inner column 192 is supported on the side of the support top frame 191. The support inner column 192 is supported on the surface of the assembly frame 150.

[0025] As described in more detail in this embodiment, a support outer cylinder 193 is inserted and assembled inside the support inner column 192, and the upper end of the support outer cylinder 193 is supported on the bottom side of the support top frame 191. A locking pin 194 is threaded into the upper side of the support inner column 192, and the inner end of the locking pin 194 abuts against the outer wall of the support outer cylinder 193. In this way, it is convenient to adjust the height of the camera component 190 during operation and use. Then, the locking pin 194 is tightened to limit the position, making the operation more convenient.

[0026] As described in more detail in this embodiment, the inner ends of the support stud 161 and the lifting stud 171 are fixed with inner clips 162, and the outer clips 162 are covered with outer clips 163. Two sets of outer clips 163 are fitted onto the outer walls of the support stud 161 and the lifting stud 171, and the two sets of outer clips 163 are assembled onto the outer walls of the inner stop strip 170 and the lifting stop strip 180. The outer ends of the support stud 161 and the lifting stud 171 are respectively integrally fixed with torsion blocks 164, so as to assist in the twisting and operation during use, making the twisting and adjustment more convenient. The lifting stop strip 180 is arranged parallel to the inner stop strip 170 below, and the inner stop strip 170 and the lifting stop strip 180 are both integrally fixed with arc-shaped bends 181 at the ends near the guide plate 140, so as to facilitate the guidance with the guide plate 140 during assembly and use, making the operation more convenient.

[0027] As more detailed in this embodiment, both the support leg 110 and the mounting base 120 are threadedly fitted with pads 111 at their bottom ends. The bottom of the pads 111 is horizontal, and the top of the pads 111 is an arc-shaped protrusion, so as to assist in adjusting and supporting the bottom end during use.

[0028] As described in more detail in this embodiment, the conveyor frame 100 is supported above the side of the guide plate 140 by an assembly seat 141, and an assembly shaft 142 is fixedly installed at the inner end of the guide plate 140. The assembly shaft 142 is installed inside the assembly seat 141 by a bearing. An auxiliary handle 144 is installed at the rear end of the assembly shaft 142. A limiting pin 145 is fixedly installed on the outer wall of the auxiliary handle 144, and the limiting pin 145 is inserted inside the assembly seat 141. A limiting groove 146 corresponding to the limiting pin 145 is opened inside the assembly seat 141, and a limiting groove 146 is threaded on the outer end of the limiting pin 145. Nut 147, the inner end of the limiting nut 147 abuts against the outer wall of the mounting seat 141, so that during assembly and use, it is convenient to limit and support the guide plate 140 and toggle it, so that the guide plate 140 can be easily adjusted and supported at the outlet of the printing equipment, making operation more convenient. The outer end of the auxiliary throttle 144 is fixedly provided with an extension handle 148, and the outer end of the extension handle 148 is fixedly provided with a grip ring 149. Both sides of the surface of the guide plate 140 are integrally fixed with side baffles 143, so that the sides can be blocked during use, so as to prevent material leakage during guidance and make operation more convenient.

[0029] Working principle: During assembly and use, place this device at the outlet of the printing equipment, then adjust the guide plate 140. With the cooperation of the limiting pin 145, the limiting groove 146, and the limiting nut 147, the angle of the guide plate 140 can be easily adjusted. Tightening then provides support for the guide plate 140, making subsequent material guidance and discharge more convenient. Further, it is guided by the side baffle 143. Further, based on the cooperation of the assembly side plate 160, inner baffle 170, and lifting baffle 180, the support stud 161 and the lifting... The engagement of stud 171 facilitates the extension and retraction adjustment of the inner baffle 170 and the lifting baffle 180, ensuring that the distance between the two inner baffles 170 is suitable for the passage of printed materials, allowing them to pass relatively centrally. Furthermore, with the cooperation of the supporting inner column 192 and the supporting outer cylinder 193, the locking pin 194 is tightened to facilitate the support of the recording component 190, making operation more convenient. This enables online forming and clearer and more convenient recording during adjustment, making operation and use more convenient. The operation is now complete.

[0030] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any way. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description. However, any modifications, alterations, or equivalent variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are considered equivalent embodiments of this utility model. Furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model are still within the protection scope of this utility model's technical solution.

Claims

1. A high-definition printed matter real-time online imaging device, comprising a conveyor frame (100), wherein a conveyor belt (101) is assembled inside the conveyor frame (100), and the side end of the conveyor belt (101) is driven by a motor (102), a support leg (110) is supported at the bottom of the conveyor frame (100), and a power distribution box (130) is mounted on the front middle of the conveyor frame (100) via a mounting base (120), and a control module (131) is electrically connected above the power distribution box (130), characterized in that: The right side support of the conveying frame (100) is provided with a guide plate (140), the front and rear sides of the conveying frame (100) are provided with an assembly frame (150), the inner side of the assembly frame (150) is provided with an assembly side plate (160), the inside of the assembly side plate (160) is provided with a support stud (161) threaded, and the inner end of the support stud (161) is provided with an inner blocking strip (170), the inside of the inner blocking strip (170) is provided with a lifting stud (171) threaded, and the bottom of the lifting stud (171) is provided with a lifting blocking strip (180), the top of the conveying frame (100) is provided with a recording assembly (190), and the bottom of the recording assembly (190) is provided with a support top frame (191), and the side of the support top frame (191) is provided with a support inner column (192), and the support inner column (192) is supported on the surface of the assembly frame (150).

2. A device for real-time online imaging of high definition printed matter according to claim 1, characterized in that: The inside of the support inner column (192) is provided with a support outer cylinder (193), and the upper end of the support outer cylinder (193) is supported on the side end bottom of the support top frame (191), the upper part of the side of the support inner column (192) is provided with a lock pin (194) threaded, and the inner end of the lock pin (194) abuts against the outer wall of the support outer cylinder (193).

3. A device for real-time online imaging of high definition printed matter according to claim 1, characterized in that: The inner end of the support stud (161) and the lifting stud (171) is provided with an inner card (162), and the outer part of the inner card (162) is covered with an outer card sleeve (163), and the outer card sleeve (163) is sleeved on the outer wall of the support stud (161) and the lifting stud (171), and the outer card sleeve (163) is assembled on the outer wall of the inner blocking strip (170) and the outer wall of the lifting blocking strip (180), and the outer end of the support stud (161) and the lifting stud (171) is integrally provided with a torsion block (164) respectively.

4. A device for real-time online imaging of high definition printed matter according to claim 1, characterized in that: The lifting blocking strip (180) is arranged in parallel below the inner blocking strip (170), and the inner blocking strip (170) and the lifting blocking strip (180) are integrally provided with an arc-shaped elbow (181) at one end close to the guide plate (140).

5. A device for real-time online imaging of high definition printed matter according to claim 1, characterized in that: The bottom end of the support leg (110) and the assembly seat (120) is provided with a foot pad (111) threaded, the bottom of the foot pad (111) is horizontal, and the top of the foot pad (111) is arc-shaped and protruding.

6. A device for real-time online imaging of high definition printed matter according to claim 1, characterized in that: The side of the conveying frame (100) close to the guide plate (140) is provided with an assembly side seat (141) above, and the inner end of the guide plate (140) is provided with an assembly shaft (142), the assembly shaft (142) is inserted and assembled in the inner part of the assembly side seat (141) through a bearing, the rear end of the assembly shaft (142) is provided with an auxiliary handle (144), the outer wall of the auxiliary handle (144) is provided with a limiting pin (145), and the limiting pin (145) is inserted in the inner part of the assembly side seat (141), the inner part of the assembly side seat (141) is provided with a limiting groove (146) corresponding to the limiting pin (145), and the outer end of the limiting pin (145) is threaded with a limiting nut (147), and the inner end of the limiting nut (147) abuts against the outer wall of the assembly side seat (141).

7. A device for real-time online imaging of a high definition printed product according to claim 6, characterized in that: The outer end of the auxiliary handle (144) is provided with an extension handle (148), and the outer end of the extension handle (148) is provided with a holding ring (149). The guide plate (140) is integrally provided with a side baffle (143) on both sides of the surface.

Citation Information

Patent Citations

  • Real-time online imaging device for high-definition printed matter

    CN217237759U