Carton paging FRID electronic tag plane labeling machine

By using an adjustable timing belt and a flip-plate rejection structure in a carton paging FRID electronic label flat labeling machine, the problems of paging, labeling, and rejection of unformed cartons have been solved, improving production efficiency and product quality.

CN224211423UActive Publication Date: 2026-05-08XUANTE INTERNET OF THINGS TECH (SHANGHAI) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XUANTE INTERNET OF THINGS TECH (SHANGHAI) CO LTD
Filing Date
2025-04-29
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing technologies are insufficient for efficient paging and labeling and removal of substandard RFID tags on unformed cartons, and traditional equipment is not applicable.

Method used

The system uses multiple adjustable synchronous belts to transport cartons and is equipped with a flip-plate rejection structure to enable RFID tags to be affixed to the surface of the cartons and to reject defective products.

Benefits of technology

It enables efficient labeling of cartons of different sizes and timely removal of substandard labels, improving production efficiency and product quality, and meeting the real-time monitoring and traceability needs of enterprises.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a carton paging FRID (radio frequency identification) electronic tag plane labeling machine which mainly comprises a rack, a paging component, a label conveying device, a labeling device, an RFID reader-writer, a code reading detection component, a removing conveying component and a collecting conveying component. The paging part is located on the left side of the equipment, and the labeling conveying part is installed above the rack and connected with an outlet of the paging part. And the labeling device is mounted above the label conveying device. And the RFID reader-writer is fixedly mounted on the right side of the labeling device. The code reading detection assembly is fixedly installed below the labeling conveying assembly. An inlet of the removing conveying component is connected with a label conveying outlet, and the collecting conveying component is located on the right side of the removing conveying component. According to the labeling conveying device, the labeling conveying number can be increased or decreased according to requirements by labeling conveying users, so that the labeling device is suitable for labeling cartons with different areas. Through the swinging removing conveying component, defective products are removed accurately and timely, the production efficiency is improved, and real-time monitoring and tracking, safe anti-counterfeiting and traceability of packaged products are achieved.
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Description

Technical Field

[0001] This utility model relates to the field of automatic carton paging and labeling equipment, and in particular to a carton paging FRID electronic label flat labeling machine. Background Technology

[0002] With the rapid development of the daily chemical, apparel manufacturing, medical, and logistics industries, and the increasing awareness of environmental protection, attaching RFID electronic tags to the flat surface of cardboard boxes is becoming an increasingly common trend. By integrating advanced sensing technology and information processing systems, comprehensive monitoring and management of cardboard boxes and their contents can be achieved. These tags can automatically record the manufacturing information, storage environment, and transportation trajectory of the cardboard boxes, supporting precise management at each stage of the supply chain.

[0003] There are common belt-driven labeling machines on the market, but the carton conveying section usually uses a single flat belt to transport the cartons. With the increasing variety of packaging, it is often necessary to label unformed cartons. Since unformed cartons have a large area, using a traditional single-sheet belt for conveying is not suitable.

[0004] Furthermore, RFID tags require data reading and writing, which can sometimes result in errors. Therefore, it is also necessary to inspect the data of RFID tags, and unqualified tags need to be rejected promptly. Due to the large area of ​​unformed cardboard boxes, the traditional side-pushing rejection method is no longer applicable. Summary of the Invention

[0005] To solve the above-mentioned technical problems, this utility model provides a carton paging RFID electronic tag flat labeling machine, which uses multiple sets of synchronous belts with adjustable positions and the number of synchronous belts can be increased or decreased as needed to transport cartons, thereby solving the problem of difficulty in pasting RFID tags on the surface of large cartons.

[0006] In addition, this utility model also provides a flip-plate rejection structure to solve the problem that large-area cardboard boxes are not easy to reject.

[0007] The technical solution adopted by this utility model to solve its technical problem is:

[0008] A carton paging RFID electronic label flat labeling machine mainly includes a frame, paging component, labeling conveyor, labeling device, RFID reader / writer, code detection component, rejection conveyor component, and collection conveyor component.

[0009] The paging component is located on the left side of the equipment. The labeling conveyor is installed above the frame and connected to the outlet of the paging component. The labeling device is installed above the labeling conveyor. The RFID reader is fixedly installed on the right side of the labeling device. The code detection component is fixedly installed below the labeling conveyor. The inlet of the rejection conveyor is connected to the outlet of the labeling conveyor, and the collection conveyor is located to the right of the rejection conveyor.

[0010] Furthermore, the labeling conveyor includes a worm gear reducer motor, a synchronous belt drive pair, a hexagonal drive shaft, a drive wheel, a tail wheel, a conveyor support beam, a synchronous belt linear guide, and a slider.

[0011] The worm gear reducer motor is fixedly mounted to the frame, and its power output shaft is connected to the right end of the hexagonal transmission shaft via a synchronous belt drive pair. A linear guide rail and a slider are slidably connected, and the linear guide rail is fixedly connected to the frame. A conveyor support beam is fixedly mounted on the slider. A drive pulley and a tail pulley are fixedly mounted at both ends of the conveyor support beam, and a synchronous belt connects the drive pulley and the tail pulley.

[0012] Furthermore, the rejection conveying component mainly includes a worm gear reducer motor, a synchronous belt drive pair, a drive shaft, a swing frame, a connecting plate, a swing shaft, bearings, a tension cylinder, a driven shaft, and a circular belt.

[0013] The swing frame is rotatably connected to the machine frame via a connecting plate, a swing shaft, and bearings. A drive shaft and a swing shaft are installed at both ends of the swing frame. A circular belt connects the drive shaft and the driven shaft. The cylinder of the tension cylinder is fixedly connected to the machine frame, and the piston rod end of the tension cylinder is connected to the swing frame.

[0014] The beneficial effects of this utility model are:

[0015] The labeling conveyor of this invention is mounted on a linear guide rail and driven by a hexagonal drive shaft. The labeling drive wheel is equipped with a transmission inner sleeve, which slides in conjunction with the hexagonal drive shaft. Therefore, users can increase or decrease the number of labeling conveyors according to their needs to accommodate labeling cartons of different sizes.

[0016] This invention also includes a swingable rejection conveyor component. When an RFID tag fails the inspection, the swing arm guides the defective product to the lower layer, enabling accurate and timely rejection of defective products and improving production efficiency.

[0017] This utility model fills a gap in the existing technical field, enabling enterprises to achieve real-time monitoring and tracking of packaged products, as well as security, anti-counterfeiting, and traceability functions. It contributes to reducing logistics costs and improving logistics efficiency for enterprises, and also brings more business opportunities and value to them. Attached Figure Description

[0018] Figure 1 This is a front view of the utility model.

[0019] Figure 2 It is a 3D model of the labeling and conveying process.

[0020] Figure 3 This is a front view of the labeling and conveying process.

[0021] Figure 4 yes Figure 3 A cross-sectional view along the MM line.

[0022] Figure 5 It is a 3D model of the conveyor components. Detailed Implementation

[0023] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0024] like Figure 1 As shown, the structure of this utility model includes: a frame (1), a paging component (2), a labeling conveyor (3), a labeling device (4), an RFID reader (5), a code detection component (6), a rejection conveyor (7), and a collection conveyor (8). The paging component (2) is located on the left side, and the labeling conveyor (3) is installed above the frame (1) and connected to the outlet of the paging component (2). The labeling device (4) is installed above the labeling conveyor (3). The RFID reader (5) is fixedly installed on the right side of the labeling device (4). The code detection component (6) is fixedly installed below the labeling conveyor (3). The inlet of the rejection conveyor (7) is connected to the outlet of the labeling conveyor (3), and the collection conveyor (8) is located on the right side of the rejection conveyor (7).

[0025] like Figure 2 Figure 3 Figure 4 As shown, the labeling conveyor (3) includes: a worm gear reducer motor (101), a synchronous belt drive pair (102), a hexagonal drive shaft (103), a transmission inner sleeve (104), a drive wheel (105), a tail wheel (106), left and right clamping plates at the drive end (107a, 107b), left and right clamping plates at the driven end (108a, 108b), a tail wheel shaft (109), a drive wheel bearing (110), a tail wheel bearing (111), a conveying support beam (112), a clamping plate bracket (113), a synchronous belt (114), a linear guide rail (115), and a slider (116).

[0026] The worm gear reducer motor (101) is fixedly connected to the frame (1). The power output shaft of the worm gear reducer motor (101) and the right end of the hexagonal transmission shaft (103) are connected by a synchronous belt transmission pair (102). The linear guide rail (115) and the slider (116) are slidably connected, and the linear guide rail (115) is fixedly connected to the frame (1). The conveying support beam (112) is fixedly installed to the slider (116) through the clamp bracket (113). The right end of the conveying support beam (112) is fixedly installed with the left and right active end clamp plates (107a and 107b), and the transmission inner sleeve (104) is fitted on the hexagonal transmission shaft (103). The drive wheel (105) is rotatably connected to the drive wheel (105) through the drive wheel bearing (110). The transmission inner sleeve (104) is fixedly installed to the left and right active end clamp plates (107a and 107b). The tail wheel (106) is rotatably connected to the tail wheel shaft (109) via the tail wheel bearing (111), and the tail wheel shaft (109) is fixedly installed with the passive end left and right clamping plates (108a and 108b). The conveying support beam (112) is fixedly connected to the active end clamping plates (107a and 107b) and the passive end clamping plates (108a and 108b), and the synchronous belt (114) connects the active wheel (105) and the tail wheel (106).

[0027] like Figure 5 As shown, the above-mentioned rejection conveying component (7) mainly includes: a worm gear reducer motor (201), a synchronous belt drive pair (202), a connecting plate (203), a drive shaft (204), a bushing (205), a swing frame (206), a connecting plate (209), a swing shaft (207), a bearing (208), a tension cylinder (210), a driven shaft (211), a round belt (212), and a round belt support plate (213). The swing frame (206) is fixedly connected to the frame (1) through the connecting plate (209). The swing frame (206) is rotatably connected to the connecting plate through the swing shaft (207) and the bearing (208). The worm gear reducer motor (201) is fixedly installed to the swing frame (206) through the connecting plate (203). The output shaft of the worm gear reducer motor (201) is connected to the shaft end of the drive shaft (204) through the synchronous belt drive pair (202). The drive shaft (204) and the driven shaft (211) are mounted at both ends of the swing frame (206). The cylinder of the tension cylinder (210) is fixedly connected to the frame (1), and the piston rod end of the tension cylinder (210) is connected to the swing frame (206). The bushing (205) is fixedly mounted on the drive shaft (204) and the driven shaft (211), and the circular belt (212) connects the drive shaft (204) and the driven shaft (211). The circular belt support plate (213) is fixedly mounted to the frame (1) and is located below the circular belt (212).

[0028] All structures listed in this utility model are within the scope of protection, as are structures not described but similar to those in this utility model.

[0029] Various modifications and alterations can be made to this invention by those skilled in the art. Therefore, this invention covers various modifications and alterations that fall within the scope of the appended claims and their equivalents.

Claims

1. A carton paging RFID electronic label flat labeling machine, mainly comprising a frame, paging components, labeling conveyor, labeling device, RFID reader / writer, code detection component, rejection conveyor, and collection conveyor, characterized in that: The paging component is located on the left side of the equipment. The labeling conveyor is installed above the frame and connected to the outlet of the paging component. The labeling device is installed above the labeling conveyor. The RFID reader is fixedly installed on the right side of the labeling device. The code detection component is fixedly installed below the labeling conveyor. The inlet of the rejection conveyor is connected to the outlet of the labeling conveyor, and the collection conveyor is located on the right side of the rejection conveyor.

2. The carton paging FRID electronic label flat labeling machine according to claim 1, characterized in that: The labeling conveyor includes a worm gear reducer motor, a synchronous belt drive pair, a hexagonal drive shaft, a drive pulley, a tail pulley, a conveyor support beam, a synchronous belt linear guide, and a slider. The worm gear reducer motor is fixedly installed on the frame, and the power output shaft of the worm gear reducer motor and the right end of the hexagonal drive shaft are connected by the synchronous belt drive pair. The linear guide and the slider are slidably connected, and the linear guide is fixedly connected to the frame. The conveyor support beam is fixedly installed on the slider. The drive pulley and tail pulley are fixedly installed at both ends of the conveyor support beam, and the synchronous belt connects the drive pulley and the tail pulley.

3. A carton paging FRID electronic label flat labeling machine according to claim 1, characterized in that: The rejection conveying component mainly includes a worm gear reducer motor, a synchronous belt drive pair, a drive shaft, a swing frame, a connecting plate, a swing shaft, bearings, a tension cylinder, a driven shaft, and a circular belt. The swing frame is rotatably connected to the frame via the connecting plate, the swing shaft, and the bearings. The drive shaft and the swing shaft are installed at both ends of the swing frame. The circular belt connects the drive shaft and the driven shaft. The cylinder of the tension cylinder is fixedly connected to the frame, and the piston rod end of the tension cylinder is connected to the swing frame.