Die-cutting precision fine-tuning mechanism for RFID (Radio Frequency Identification Device) electronic tag

By employing a lifting structure and multi-angle adjustment design, the shortcomings of existing RFID electronic tag die-cutting and fine-tuning precision mechanisms in positioning products of various shapes are solved, achieving higher processing accuracy.

CN223735049UActive Publication Date: 2025-12-30上海竹研电子科技有限公司
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Patent Information

Application Number
CN202520183902.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2025-12-30
Estimated Expiration
2035-02-06

AI Technical Summary

Technical Problem

Existing RFID electronic tag die-cutting and fine-tuning precision mechanisms struggle to achieve accurate positioning when dealing with products of diverse shapes, thus affecting the accuracy of positioning across various shapes.

Method used

The lifting base with a lifting structure is equipped with a second electric hinge seat at the bottom. It works in conjunction with the output power of the first electric hinge seat to enable the pneumatic telescopic arm and the second electric hinge seat to operate, realizing multi-angle adjustment of the slotted box and the hinge base. With the help of sliding blocks, folding plates and arc plates, it can adapt to the cutting and positioning of different processed products.

Benefits of technology

It improves the processing and positioning accuracy of diverse products, and adapts to the cutting and positioning needs of products with different shapes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an RFID electronic tag die cutting fine tuning precision mechanism, which comprises a bearing waste cleaning assembly and a cutting part, the top end of the periphery of the bearing waste cleaning assembly is provided with a positioning clamping mechanism, and the top end of the periphery of the positioning clamping mechanism is provided with the cutting part. The cutting part comprises a lifting frame, a top plate, an electric rotating frame, a driving gear, a driven gear ring, a hydraulic oil cylinder, a telescopic rod and a cutting knife; the lifting frame is arranged at the top end of the periphery of the positioning and clamping mechanism; according to the die cutting fine adjustment precision mechanism of the RFID electronic tag, a second electric hinge seat is arranged at the bottom end of a lifting base of a lifting structure; a pneumatic telescopic arm is matched with a second electric hinge seat to output and operate after the pneumatic telescopic arm is matched with the first electric hinge seat to output and operate, so that a folding plate and an arc-shaped plate can effectively adapt to cutting and positioning of different processed products after multi-angle adjustment of a grooving box, a hinge base and a connecting frame; and therefore, the machining and positioning accuracy of diversified products is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic label die cutting technical field, concretely is a kind of die cutting fine adjustment precision mechanism of RFID electronic label. BACKGROUND

[0002] Electronic label is also called radio frequency label, transponder, data carrier;Reader is also called reading device, scanner, read head, communicator, read-write device (depending on whether electronic label can wireless rewrite data), and energy transfer and data exchange are realized between electronic label and reader through the space (non-contact) coupling of coupling element of radio frequency signal;In coupling channel, according to time sequence relationship, energy transfer and data exchange are realized.

[0003] In the field of die cutting fine adjustment precision mechanism, like CN201620107314.6 discloses a kind of die cutting fine adjustment precision mechanism of RFID electronic label, including two racks, machine rack is set between one machine table, machine table upper end surface places RFID electronic label, the upper end of RFID electronic label is set to a top plate, the upper end surface of the top plate is respectively installed with one first motor on each side, one rotating shaft is installed between two first motors, motor shaft is connected with the rotating shaft respectively, more than one positioning block is arranged on the outer side of the rotating shaft, two shaft sleeves are sleeved on the rotating shaft, a shaft hole is arranged in the middle of the shaft sleeve, positioning groove is formed in the inner wall of shaft hole, rotating shaft is inserted into shaft hole and assembled by positioning block and positioning groove, a through slot is formed in the top plate on the lower end surface of rotating shaft, a metal spring is arranged through the through slot, and a left-right adjusting mechanism is arranged on the upper end of each shaft sleeve;However, die cutting fine adjustment precision mechanism is mainly straight-through type angle and is used for clamping and positioning product, is not convenient for adaptive positioning for products of various shapes, and affects the precision of diversity positioning. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of die cutting fine adjustment precision mechanism of RFID electronic label to solve the problems raised in the above background technology.

[0005] By adopting the above technical scheme, the second electric hinge seat is arranged at the bottom end of the lifting base of the lifting structure, and the power output of the first electric hinge seat is matched to make the pneumatic telescopic arm cooperate with the power output of the second electric hinge seat, so that the slotted box, the hinge base and the multi-angle adjustment of the connecting frame make the sliding block, the folding plate and the arc-shaped plate effectively adapt to the cutting positioning of different processing products, thereby improving the accuracy of the processing positioning of diverse products.

[0006] To achieve the purpose of the utility model, the utility model realizes the following technical scheme: a kind of die cutting fine adjustment precision mechanism of RFID electronic label, including bearing waste component and cutting part, the periphery top of bearing waste component is provided with positioning clamping mechanism, and the periphery top of positioning clamping mechanism is provided with cutting part;

[0007] The cutting component comprises a lifting frame, a top plate, an electric rotating frame, a driving gear, a driven gear ring, a hydraulic oil cylinder, an extension rod and a cutting knife, the lifting frame is arranged at the top of the four sides of the positioning and clamping mechanism, the top of the lifting frame is provided with the top plate, the top plate is provided with the electric rotating frame above one end, the output end of the electric rotating frame is provided with the driving gear, one side of the driving gear is provided with the driven gear ring, the inner side of the driven gear ring is provided with the hydraulic oil cylinder, and the output end of the hydraulic oil cylinder is provided with the extension rod, and the lower side of the extension rod is provided with the cutting knife.

[0008] As a preferred embodiment of the utility model, the driving gear and the driven gear ring are in meshing transmission output connection, and the driven gear ring has a ring structure.

[0009] As a preferred embodiment of the utility model, the bearing and waste removing assembly comprises a cushion block, a bearing plate, a pneumatic telescopic plate, a bolt base and an outer lifting frame, the top side of the cushion block is provided with the bearing plate, and the output end of the bearing plate is provided with the pneumatic telescopic plate.

[0010] As a preferred embodiment of the utility model, the top of the four sides of the bearing plate is provided with the bolt base connected by bolts, and the outer end side of the bolt base is provided with the outer lifting frame.

[0011] As a preferred embodiment of the utility model, the positioning and clamping mechanism comprises a first electric hinged seat, a pneumatic telescopic arm, a first air cylinder, a lifting base, a second electric hinged seat, a slotted box, a hinged base, a connecting frame, a driving motor, a screw rod set, a sliding block, a folded plate and an arc plate, the first electric hinged seat is arranged at the top side of the outer lifting frame, the output end of the first electric hinged seat is provided with the pneumatic telescopic arm, one end of the inner side of the pneumatic telescopic arm is provided with the first air cylinder, the output end of the first air cylinder is provided with the lifting base, the bottom end of the lifting base is provided with the second electric hinged seat, the output end of the second electric hinged seat is provided with the slotted box, the inner end of the outer side of the slotted box is provided with the hinged base, and the outer end of the hinged base is provided with the connecting frame.

[0012] As a preferred embodiment of the utility model, the outer end of the slotted box is provided with the driving motor, the output end of the driving motor is provided with the screw rod set, the output end of the screw rod set is provided with the sliding block connected by threads, the inner end of the sliding block is provided with the folded plate, one end side of the folded plate is provided with the arc plate.

[0013] Compared with the prior art, the die cutting fine adjustment precision mechanism of the RFID electronic tag has the advantages that the second electric hinged seat is arranged at the bottom end of the lifting base of the lifting structure, the first electric hinged seat is arranged at the bottom end of the lifting base of the lifting structure, the power output operation of the first electric hinged seat is matched, the power output operation of the second electric hinged seat is matched, the slotted box and the hinged base are adjusted at multiple angles, the sliding block, the folded plate and the arc-shaped plate can effectively adapt to the cutting positioning of different processing products, and therefore the accuracy of the processing positioning of diversified products is improved. BRIEF DESCRIPTION OF DRAWINGS

[0014] Fig. 1 It is a front view of the utility model;

[0015] Fig. 2 It is a front view of the utility model;

[0016] Fig. 3 It is a front view of the utility model;

[0017] In the drawing: 1, bearing waste assembly; 101, cushion block; 102, bearing plate; 103, pneumatic telescopic plate; 104, bolt base; 105, outer side lifting frame; 2, positioning clamping mechanism; 201, first electric hinged seat; 202, pneumatic telescopic arm; 203, first air cylinder; 204, lifting base; 205, second electric hinged seat; 206, slotted box; 207, hinged base; 208, connecting frame; 209, driving motor; 2010, screw rod group; 2011, sliding block; 2012, folded plate; 2013, arc-shaped plate; 3, cutting part; 301, lifting frame; 302, top plate; 303, electric rotating frame; 304, driving gear; 305, driven gear ring; 306, hydraulic oil cylinder; 307, telescopic rod; 308, cutting knife. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0019] Please refer to Figs. 1-3 The utility model provides a kind of technical solutions: a kind of die cutting fine adjustment precision mechanism of RFID electronic tag, including bearing waste assembly 1 and cutting part 3, the periphery top of bearing waste assembly 1 is provided with positioning clamping mechanism 2, and the periphery top of positioning clamping mechanism 2 is provided with cutting part 3;

[0020] The cutting component 3 comprises a lifting frame 301, a top plate 302, an electric rotating frame 303, a driving gear 304, a driven gear ring 305, a hydraulic cylinder 306, an extension rod 307 and a cutting knife 308. The lifting frame 301 is arranged at the top of the positioning and clamping mechanism 2. The top of the lifting frame 301 is provided with the top plate 302. The top plate 302 is provided with the electric rotating frame 303 at one end. The output end of the electric rotating frame 303 is provided with the driving gear 304. The driving gear 304 is provided with the driven gear ring 305 at one side. The inner side of the driven gear ring 305 is provided with the hydraulic cylinder 306. The output end of the hydraulic cylinder 306 is provided with the extension rod 307. The lower side of the extension rod 307 is provided with the cutting knife 308.

[0021] The driving gear 304 and the driven gear ring 305 are in meshing transmission connection. The driven gear ring 305 has a ring structure.

[0022] In this embodiment, when die cutting is needed, the electric rotating frame 303 at one end of the top plate 302 is used to drive the output end to run, so that the driving gear 304 is in meshing transmission, the driven gear ring 305 is in meshing transmission, the hydraulic cylinder 306 is adjusted to a suitable die cutting angle, the hydraulic cylinder 306 is used to drive the output end to run, so that the extension rod 307 and the cutting knife 308 cut and shape the product.

[0023] The bearing and waste cleaning assembly 1 comprises a cushion block 101, a bearing plate 102, a pneumatic extension plate 103, a bolt base 104 and an outer lifting frame 105. The top side of the cushion block 101 is provided with the bearing plate 102. The output end of the bearing plate 102 is provided with the pneumatic extension plate 103.

[0024] In this embodiment, the product to be processed is placed on the bearing plate 102. When cleaning is needed, the output end of the bearing plate 102 is run, so that the pneumatic extension plate 103 is extended and retracted, and the waste is removed in cooperation with the positioning and clamping mechanism 2.

[0025] The outer end side of the bolt base 104 is provided with the outer lifting frame 105.

[0026] In this embodiment, when in use, the equipment is placed on the cushion block 101 and the bearing plate 102, so that the bolt base 104 and the outer lifting frame 105 support the positioning and clamping mechanism 2 and the cutting component 3.

[0027] The positioning and clamping mechanism 2 comprises a first electric hinge base 201, a pneumatic telescopic arm 202, a first pneumatic cylinder 203, a lifting base 204, a second electric hinge base 205, a slotted box 206, a hinge base 207, a connecting frame 208, a driving motor 209, a screw rod set 2010, a sliding block 2011, a foldable plate 2012 and an arc-shaped plate 2013. The first electric hinge base 201 is arranged on the top side of the outer lifting frame 105. The output end of the first electric hinge base 201 is provided with the pneumatic telescopic arm 202. One end of the pneumatic telescopic arm 202 is provided with the first pneumatic cylinder 203. The output end of the first pneumatic cylinder 203 is provided with the lifting base 204. The bottom end of the lifting base 204 is provided with the second electric hinge base 205. The output end of the second electric hinge base 205 is provided with the slotted box 206. The inner end of the slotted box 206 is provided with the hinge base 207 on the outer side. The outer end of the hinge base 207 is provided with the connecting frame 208.

[0028] In this embodiment, when the bearing plate 102 places the product to be processed, the first electric hinge base 201 outputs power to drive the output end to operate, so that the pneumatic telescopic arm 202 outputs operation, and the first pneumatic cylinder 203 adjusts to a suitable angle interval. The first pneumatic cylinder 203 outputs power to operate, so that the lifting base 204 adjusts to a suitable height position. The second electric hinge base 205 outputs operation, so that the slotted box 206 adjusts to a suitable angle with the cooperation of the hinge base 207 and the connecting frame 208.

[0029] The outer end of the slotted box 206 is provided with the driving motor 209. The output end of the driving motor 209 is provided with the screw rod set 2010. The output end of the screw rod set 2010 is provided with the screw-connected sliding block 2011. The inner end of the sliding block 2011 is provided with the foldable plate 2012. One end side of the foldable plate 2012 is provided with the arc-shaped plate 2013.

[0030] In this embodiment, the driving motor 209 at the outer end of the slotted box 206 outputs power to drive the output end to operate, so that the driving motor 209 outputs power to operate, so that the screw rod set 2010 drives the sliding block 2011 to operate, so that the sliding block 2011, the foldable plate 2012 and the arc-shaped plate 2013 cooperate to position and clamp the product.

[0031] The working principle of the die cutting fine adjustment precision mechanism of the RFID electronic tag is as follows: when in use, the positioning clamping mechanism 2 and the cutting component 3 are supported by the bolt base 104 and the outer lifting frame 105 after the device is placed by the cushion block 101 and the bearing plate 102, and the product to be processed is placed by the bearing plate 102; when cleaning is needed, the waste is removed by cooperating the positioning clamping mechanism 2 after the pneumatic telescopic plate 103 is extended and retracted after the output end of the bearing plate 102 is operated; after the product to be processed is placed by the bearing plate 102, the first pneumatic cylinder 203 is adjusted to a suitable angle interval after the first electric hinge base 201 is operated by the output power to drive the output end, the lifting base 204 is adjusted to a suitable height position after the first pneumatic cylinder 203 is operated by the output power, the slotted box 206, the hinge base 207 and the connecting frame 208 are adjusted to a suitable angle for clamping after the second electric hinge base 205 is operated, then the product is positioned and clamped by the slotted box 206, the drive motor 209, the screw rod group 2010, the sliding block 2011, the fold plate 2012 and the arc plate 2013, the product is cut and formed by the top plate 302, the electric rotating frame 303, the driving gear 304, the driven gear ring 305, the hydraulic oil cylinder 306, the telescopic rod 307 and the cutting knife 308 after the die cutting is needed.

[0032] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

Claims

1. A die-cutting micro-adjustment mechanism for RFID electronic labels, comprising a support waste-removal assembly (1) and a cutting member (3), characterized in that: The periphery top of the bearing waste cleaning assembly (1) is provided with a positioning and clamping mechanism (2), and the periphery top of the positioning and clamping mechanism (2) is provided with a cutting component (3); The cutting component (3) comprises a lifting frame (301), a top plate (302), an electric rotating frame (303), a driving gear (304), a driven gear ring (305), a hydraulic oil cylinder (306), an extension rod (307) and a cutting knife (308), the lifting frame (301) is arranged at the periphery top of the positioning and clamping mechanism (2), the top of the lifting frame (301) is provided with the top plate (302), one end of the top plate (302) is provided with the electric rotating frame (303), the output end of the electric rotating frame (303) is provided with the driving gear (304), one side of the driving gear (304) is provided with the driven gear ring (305), the inner side of the driven gear ring (305) is provided with the hydraulic oil cylinder (306), and the output end of the hydraulic oil cylinder (306) is provided with the extension rod (307), and the lower side of the extension rod (307) is provided with the cutting knife (308).

2. The die-cutting micro-adjustment mechanism for an RFID electronic tag according to claim 1, characterized in that: The driving gear (304) and the driven gear ring (305) are in meshing transmission output connection, and the driven gear ring (305) has a ring structure.

3. The micro-adjustment mechanism for die cutting of an RFID electronic tag of claim 1, wherein: The bearing waste cleaning assembly (1) comprises a cushion block (101), a bearing plate (102), a pneumatic telescopic plate (103), a bolt base (104) and an outer lifting frame (105), the top side of the cushion block (101) is provided with the bearing plate (102), and the output end of the bearing plate (102) is provided with the pneumatic telescopic plate (103).

4. The die-cutting micro-adjustment mechanism for an RFID electronic tag of claim 3, wherein: The upper side of the periphery of the bearing plate (102) is provided with the bolt base (104) connected by bolts, and the outer end side of the bolt base (104) is provided with the outer lifting frame (105).

5. The die-cutting micro-adjustment mechanism for an RFID electronic tag of claim 3, wherein: The positioning and clamping mechanism (2) comprises a first electric hinge base (201), a pneumatic telescopic arm (202), a first air cylinder (203), a lifting base (204), a second electric hinge base (205), a slotted box (206), a hinge base (207), a connecting frame (208), a driving motor (209), a screw rod group (2010), a sliding block (2011), a foldable plate (2012) and an arc-shaped plate (2013), the first electric hinge base (201) is arranged at the top side of the outer lifting frame (105), the output end of the first electric hinge base (201) is provided with the pneumatic telescopic arm (202), one end of the inner side of the pneumatic telescopic arm (202) is provided with the first air cylinder (203), the output end of the first air cylinder (203) is provided with the lifting base (204), the bottom end of the lifting base (204) is provided with the second electric hinge base (205), the output end of the second electric hinge base (205) is provided with the slotted box (206), the inner end of the outer side of the slotted box (206) is provided with the hinge base (207), and the outer end of the hinge base (207) is provided with the connecting frame (208).

6. The die-cutting micro-adjustment mechanism for an RFID electronic tag of claim 5, wherein: The outer end of the slotted box (206) is provided with a driving motor (209), the output end of the driving motor (209) is provided with a screw rod group (2010), the output end of the screw rod group (2010) is provided with a sliding block (2011) in threaded connection, and the inner end of the sliding block (2011) is provided with a folded plate (2012), one end side of the folded plate (2012) is provided with an arc-shaped plate (2013).

Citation Information

Patent Citations

  • RFID electronic tags's cross cutting fine setting precision mechanism

    CN205466510U