CN213634551U - General type three-layer RFID electronic tags compounding machine - Google Patents
General type three-layer RFID electronic tags compounding machine Download PDFInfo
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- CN213634551U CN213634551U CN202023152029.1U CN202023152029U CN213634551U CN 213634551 U CN213634551 U CN 213634551U CN 202023152029 U CN202023152029 U CN 202023152029U CN 213634551 U CN213634551 U CN 213634551U
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Abstract
The utility model provides a general type three-layer RFID electronic tags compounding machine, include the board and install the chip unwinding mechanism on the board, base stock unwinding mechanism, facial tissue unwinding mechanism, base stock gluing mechanism, facial tissue gluing mechanism, first combined mechanism, second combined mechanism, cross cutting mechanism and finished product winding mechanism, each drive mechanism all adopts the power roller structure, the power roller structure includes the bearing frame, with bearing frame releasable connection's supporting rack, install gapped adjustable rubber roll and drive roll on the supporting rack, each unwinding mechanism and winding mechanism and power roller structure adopt the cantilever mode to fix on the board, each unwinding mechanism and winding mechanism are driven by independent servo motor, each servo motor links to each other with electrical system, electrical system includes control panel and control servo motor's controller. The convenience of feeding operation is greatly improved by the aid of a single-side open structure mode. The RFID electronic tag has the advantages of compact structure, convenient operation and stable quality, and can adapt to the compounding of RFID electronic tags of different types.
Description
Technical Field
The utility model relates to a RFID electronic tags combined machining field specifically is a general type three-layer RFID electronic tags compounding machine.
Background
Electronic tags, also known as RFID tags, are tags made using radio frequency identification technology. Rfid is a wireless communication technology that can identify a specific target and read and write related data by radio signals without establishing mechanical or optical contact between the identification system and the specific target. The most important advantages of the rfid system are non-contact identification, penetration of the tag through harsh environments where snow, fog, ice, paint, dirt and bar codes cannot be used, and extremely fast reading speed. Based on this advantage, electronic tags have been increasingly used in various applications.
The RFID electronic tag composite processing is a new industry, most of the existing processing equipment is simple models with single composite process, and some processing equipment is super-large models with loose structures. The machine types are inconvenient to operate, poor in adaptability of a composite process, high in manufacturing cost and low in production efficiency, the linear speed of feeding of the machine types is low and is generally less than 25m/min, and the production rate is low.
SUMMERY OF THE UTILITY MODEL
In view of the problems in the prior art, the utility model aims at providing a compact structure, convenient operation, stable quality, can adapt to the general type three-layer RFID electronic tags compounding machine of different grade type.
In order to achieve the above object, the utility model adopts the technical means that a universal three-layer RFID electronic tag compound machine comprises a machine plate, and a chip unreeling mechanism, a bottom paper unreeling mechanism, a surface paper unreeling mechanism, a bottom paper gluing mechanism, a surface paper gluing mechanism, a first compound mechanism, a second compound mechanism, a die cutting mechanism and a finished product reeling mechanism which are arranged on the machine plate, wherein a chip traction mechanism and a chip cutting mechanism are arranged between the chip unreeling mechanism and the first compound mechanism, the bottom paper traction mechanism is arranged between the bottom paper unreeling mechanism and the first compound mechanism, the surface paper unreeling mechanism and the second compound mechanism are provided with a surface paper traction mechanism, and the second compound mechanism is a main traction mechanism; each traction mechanism adopts a power roller structure, each power roller structure comprises a bearing seat and a supporting frame detachably connected with the bearing seat, a rubber roller and a driving roller with adjustable gaps are arranged on the supporting frame, each unwinding mechanism, each winding mechanism and each power roller structure are fixed on a machine plate in a cantilever mode, a chip and base paper are compounded in a first compounding mechanism and then compounded with surface paper in a second compounding mechanism, and the compounded composite material enters a finished product winding mechanism or is subjected to die cutting molding by a die cutting structure; each unwinding mechanism and each winding mechanism are driven by an independent servo motor, each servo motor is connected with an electric control system, and the electric control system comprises a control screen and a controller for controlling the servo motors.
Preferably, the supporting frame is provided with a handle and a cylinder for adjusting the size of the gap between the rubber roller and the driving roller.
Preferably, the electronic control system comprises a color mark electric sensor which is respectively arranged at the composite position before, during gluing, during chip cutting and during composite.
Preferably, the material layer of the power roller structure contacted with the chip in operation is black silica gel material.
Preferably, one side of the first compound mechanism is provided with a waste collecting traction mechanism and a waste collecting winding mechanism for treating waste products.
The utility model has the advantages that: the utility model discloses design into the single-end support with each functional unit and fix on vertical quick-witted board with the cantilever mode, the open structural style of this kind of single face has improved the convenience of material loading operation greatly. The RFID electronic tag has the advantages of compact structure, convenient operation and stable quality, and can adapt to the compounding of RFID electronic tags of different types. Meanwhile, each functional component is a servo motor which is independent, flexible stopping and starting schemes can be made according to the composite requirements of user products, and the equipment adaptability is strong.
Drawings
Fig. 1 is a schematic structural view of a universal three-layer RFID electronic tag compound machine of the present invention;
FIG. 2 is a schematic view of a power roller configuration;
FIG. 3 is a left side view of FIG. 2;
in the figure: 1-chip unwinding mechanism, 2-chip material passing roller, 3-material receiving platform, 4-chip deviation rectifying mechanism, 5-first composite mechanism, 6-facial tissue gluing mechanism, 7-facial tissue traction mechanism, 8-facial tissue deviation rectifying mechanism, 9-facial tissue unwinding mechanism, 10-control screen, 11-discharge conveying platform, 12-second die cutting mechanism, 13-discharge traction mechanism, 14-first die cutting mechanism, 15-finished product winding mechanism, 16-second composite mechanism, 17-finished product deviation rectifying mechanism, 18-bottom paper deviation rectifying mechanism, 19-bottom paper gluing mechanism, 20-bottom paper traction mechanism, 21-bottom paper unwinding mechanism, 22-waste receiving traction mechanism, 23-waste receiving winding mechanism, 31-bearing seat, 32-bearing frame, 33-handle, 34-cylinder, 35-rubber roller, 36-drive roller.
Detailed Description
The technical solution of the present invention will be described in detail by the following specific examples.
As shown in fig. 1 to 3, the universal three-layer RFID electronic tag compound machine includes a vertical machine board, and a chip unwinding mechanism 1, a base paper unwinding mechanism 21, a facial tissue unwinding mechanism 9, a base paper gluing mechanism 19, a facial tissue gluing mechanism 6, a first compound mechanism 5, a second compound mechanism 16, a first die-cutting mechanism 14, a second die-cutting mechanism 12, and a finished product winding mechanism 15 mounted on the machine board.
The chip material belt on the chip unreeling mechanism 1 is sent into the chip cutting mechanism through the chip material passing roller 2, the material receiving platform 3 and the chip deviation correcting mechanism 4 under the traction power of the chip traction mechanism, and a single required chip is cut out and conveyed to the first compound mechanism 5.
The base paper material belt on the base paper unreeling mechanism 21 is coated with glue through the base paper deviation correcting mechanism 18 and the base paper gluing mechanism 19 under the traction power of the base paper traction mechanism 20, and reaches the first compound mechanism 5.
The first compounding mechanism 5 is used for compounding the chip and the base paper for the first time, and the compounded chip and the base paper are conveyed to a second compounding mechanism 16, wherein the second compounding mechanism 16 is also a main traction mechanism.
The facial tissue material belt on the facial tissue unwinding mechanism 9 is subjected to gluing through the facial tissue deviation rectifying mechanism 8 and the facial tissue gluing mechanism 6 under the traction power of the facial tissue traction mechanism 7 and reaches the second compound mechanism 16.
The surface paper, the chip and the bottom paper are compounded for the second time, and the compounded composite material enters a finished product winding mechanism 15 through a finished product deviation rectifying mechanism 17 or is cut into finished product labels, cards and the like through a first die cutting mechanism 14 and a second die cutting mechanism 12 and is sent out from a discharging and conveying platform 11. A discharging traction mechanism 13 is arranged between the first die-cutting mechanism 14 and the second die-cutting mechanism 12.
One side of the first compound mechanism 5 is provided with a waste collecting traction mechanism 22 and a waste collecting winding mechanism 23 for treating waste products.
The chip traction mechanism, the surface paper traction mechanism 7, the discharging traction mechanism 13, the bottom paper traction mechanism 20, the waste collecting traction mechanism 22 and the main traction mechanism all adopt a power roller structure and are important components for finishing the material belt conveying and compounding functions of the machine.
The power roller structure comprises a bearing seat 31, a bearing support 32 detachably connected with the bearing seat 31, a handle 33 and a cylinder 34 are installed on the top surface of the bearing support 32, a rubber roller 35 and a driving roller 36 are installed on the bearing support 32, the driving roller 36 is connected onto the bearing support 31, the rubber roller 35 is installed on the bearing support 32 through an installing support capable of moving up and down, the top surface of the installing support is parallel to the top surface of the bearing support 32, the rubber roller 35 is driven by the cylinder 34 to move up and down, the handle 33 can be finely adjusted, a gap between the rubber roller 35 and the driving roller 36 can be adjusted according to the thickness of a material, and the conveying and composite precision performance is. The power roller structure is mounted on the machine plate through a bearing seat 31, and the connection between the bearing frame 32 and the bearing seat 31 is realized throughThe positioning and the fastening of 4 screws can lead the supporting frame 32 to rotate 360 degrees around the axial lead of the bearing seat for fixing, lead the power roller structure to be arranged on the machine plate in various angle modes according to the actual use requirement and be suitable for designing different machine types.
The material receiving and releasing rollers and the power roller in the unwinding mechanism and the winding mechanism are designed into a single-head support, and are fixed on a vertical machine plate in a cantilever mode, and the convenience of feeding operation is greatly improved due to the single-side open structural mode.
The base paper gluing mechanism 19 and the face paper gluing mechanism 6 are identical in structure and respectively comprise a gluing cylinder, a gluing base and a gluing cutting die arranged on the gluing base, the gluing base can move back and forth under the pushing of the gluing cylinder, and a sliding rail is arranged below the gluing base and can be finely adjusted back and forth.
Each unwinding mechanism and each winding mechanism are driven by an independent servo motor, torque values are set through a controller of the motor, and the motor operates at constant torque according to the set values, so that the tension of the winding and unwinding material belt is effectively controlled. In addition, each functional component can make a flexible stop and start scheme according to the composite requirements of user products, so that the equipment has strong adaptability.
The electric control system adopts a digital full-automatic control system and comprises a control screen 10 of a motion control system and a color code electric sensor, wherein the control screen 10 is a touch screen, and the color code electric sensor is arranged at the position before compounding, gluing, cutting and compounding. Convenient operation and accurate operation. The automatic correction device can realize gluing, asynchronous laminating, automatic correction, material breakage alarm and air pressure monitoring, realize cutting and transfer laminating processes of dry and wet INLAY, and realize composite die cutting processes of double-layer printed matters and the like. And a negative pressure shaft is adopted in the first compound mechanism to transfer and paste the chip so as to realize high-speed production.
All tension control is completed by a servo motor, and the material layer of the power roller contacted with all the chips in operation is black silica gel.
The traction cylinder in each traction mechanism is an adjustable cylinder.
The utility model discloses general type three-layer RFID electronic tags compounding machine beneficial effect is: 1. the production efficiency is high, and the feeding linear velocity can reach 60 (m/min); 2. the composite precision is 0.3 mm; 3. the operation and the control are convenient, and the occupied area is small; 4. the configuration is flexible and has strong adaptability; 5, the material guide rollers for the chips are all made of silica gel, so that the chips are prevented from being damaged in the operation process; 6. automatic deviation rectification is carried out on chip conveying, bottom paper conveying and surface paper conveying, and the material fitting sleeve position is ensured; 7. the composite traction cylinder and the gluing cylinder are adjustable cylinders, so that the composite gluing cylinder has compact structure, simple process and stable quality. The market is popular with the users, and the economic benefit is better.
Although the present invention has been described in detail with reference to the specific embodiments, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge range of those skilled in the art, and modifications or variations without creative efforts are still within the scope of the present invention.
Claims (5)
1. The utility model provides a three-layer RFID electronic tags compounding machine of general type which characterized in that: the automatic paper cutting machine comprises a machine plate, and a chip unreeling mechanism, a bottom paper unreeling mechanism, a surface paper unreeling mechanism, a bottom paper gluing mechanism, a surface paper gluing mechanism, a first compound mechanism, a second compound mechanism, a die cutting mechanism and a finished product reeling mechanism which are arranged on the machine plate, wherein a chip traction mechanism and a chip cutting mechanism are arranged between the chip unreeling mechanism and the first compound mechanism, a bottom paper traction mechanism is arranged between the bottom paper unreeling mechanism and the first compound mechanism, the surface paper unreeling mechanism and the second compound mechanism are provided with surface paper traction mechanisms, and the second compound mechanism is a main traction mechanism; each traction mechanism adopts a power roller structure, each power roller structure comprises a bearing seat and a supporting frame detachably connected with the bearing seat, a rubber roller and a driving roller with adjustable gaps are arranged on the supporting frame, each unwinding mechanism, each winding mechanism and each power roller structure are fixed on a machine plate in a cantilever mode, a chip and base paper are compounded in a first compounding mechanism and then compounded with surface paper in a second compounding mechanism, and the compounded composite material enters a finished product winding mechanism or is subjected to die cutting molding by a die cutting structure; each unwinding mechanism and each winding mechanism are driven by an independent servo motor, each servo motor is connected with an electric control system, and the electric control system comprises a control screen and a controller for controlling the servo motors.
2. The universal three-layer RFID electronic label combination machine according to claim 1, characterized in that: and a handle and a cylinder for adjusting the gap between the rubber roller and the driving roller are arranged on the supporting frame.
3. The universal three-layer RFID electronic label combination machine according to claim 1, characterized in that: the electric control system comprises color code electric sensors which are respectively arranged at the composite front position, the gluing position, the chip cutting position and the composite position.
4. The universal three-layer RFID electronic label combination machine according to claim 1, characterized in that: the material layer of the power roller structure contacted with the chip in operation is a black silica gel material.
5. The universal three-layer RFID electronic label combination machine according to claim 1, characterized in that: one side of the first compound mechanism is provided with a waste collecting traction mechanism and a waste collecting winding mechanism for treating waste products.
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CN202023152029.1U CN213634551U (en) | 2020-12-24 | 2020-12-24 | General type three-layer RFID electronic tags compounding machine |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113511530A (en) * | 2021-09-14 | 2021-10-19 | 山东华滋自动化技术股份有限公司 | Electronic tags production facility |
CN114291380A (en) * | 2021-12-27 | 2022-04-08 | 江苏倍川自动化设备有限公司 | Roll type full-automatic label transferring machine |
CN114559705A (en) * | 2022-01-13 | 2022-05-31 | 深圳市哈德胜精密科技股份有限公司 | Single-sheet mounting process for RFID (radio frequency identification) tag chips |
-
2020
- 2020-12-24 CN CN202023152029.1U patent/CN213634551U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113511530A (en) * | 2021-09-14 | 2021-10-19 | 山东华滋自动化技术股份有限公司 | Electronic tags production facility |
CN114291380A (en) * | 2021-12-27 | 2022-04-08 | 江苏倍川自动化设备有限公司 | Roll type full-automatic label transferring machine |
CN114559705A (en) * | 2022-01-13 | 2022-05-31 | 深圳市哈德胜精密科技股份有限公司 | Single-sheet mounting process for RFID (radio frequency identification) tag chips |
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