Etching equipment for wearable flexible electronic devices

By designing integrated etching equipment, the problems of long processing time and low integration of wearable flexible electronic devices were solved, and high-precision and efficient etching processing was achieved.

CN118577955BActive Publication Date: 2025-10-03JIANGSU XINGQIHANG NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202410558231.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-08
Publication Date
2025-10-03
Estimated Expiration
2044-05-08

AI Technical Summary

Technical Problem

The existing processing flow of wearable flexible electronic devices is time-consuming, has low integration, and lacks etching precision.

Method used

An etching equipment is designed, which includes a deoxidation component, a charging component, a glue coating component, an etching component, a glue removal component and a conveying component. These components are highly integrated through a bracket to realize an automated processing flow and improve etching accuracy and efficiency.

Benefits of technology

The etching accuracy and processing efficiency of wearable flexible electronic devices are improved, the processing flow is simplified, and the integration level is increased.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an etching device for wearable flexible electronic devices, comprising: a deoxidation component, a charging component, a gluing component, an etching component, a gluing removal component, a conveying component, and a bracket, wherein the deoxidation component, the charging component, the gluing component, the etching component, and the gluing removal component are respectively arranged on the bracket; the conveying component comprises: a frame, a first power source, a second power source, four track wheels, four gears, a tray, a sealing strip, multiple suction cups, and multiple fourth linear actuators; and the bracket comprises: two support legs, two racks, two guide rails, multiple fixed beams, and multiple pipe clamps. This can improve the etching accuracy and processing efficiency of wearable flexible electronic devices.
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Description

Technical Field

[0001] The present invention relates to the field of power electronics technology, and in particular to an etching device for wearable flexible electronic devices. Background Art

[0002] Wearable flexible electronic devices are wearable devices that combine flexible electronic technology. They can be bent or stretched without affecting their use or losing performance, thereby meeting the bending radius and curved surface shape required in actual use environments.

[0003] The core of wearable flexible electronic devices lies in the research and development of flexible substrate materials and flexible electronic devices, which generally requires multiple processing steps. However, this process has disadvantages such as long time consumption and low integration. Summary of the Invention

[0004] The present invention aims to solve one of the technical problems in the above-mentioned technology at least to a certain extent.

[0005] To this end, one object of the present invention is to provide an etching device for wearable flexible electronic devices, which can improve the etching accuracy and processing efficiency of wearable flexible electronic devices.

[0006] To achieve the above objectives, the first embodiment of the present invention provides an etching device for a wearable flexible electronic device, comprising: a deoxidation component, a charging component, a gluing component, an etching component, a gluing removal component, a conveying component, and a bracket, wherein the deoxidation component, the charging component, the gluing component, the etching component, and the gluing removal component are respectively arranged on the bracket;

[0007] The conveying assembly includes: a frame, a first power source, a second power source, four track wheels, four gears, a tray, a sealing strip, a plurality of suction cups and a plurality of fourth linear actuators, wherein,

[0008] Two of the four rail wheels are arranged on one side of the frame, and the other two of the four rail wheels are arranged on the other side of the frame; two of the four gears are arranged on one side of the frame, and the other two of the four gears are arranged on the other side of the frame;

[0009] The tray is arranged above the frame, the fourth linear actuator is arranged below the frame, the fixed portion of the fourth linear actuator is connected to the frame, and the movable end of the fourth linear actuator passes through the frame and is connected to the tray;

[0010] The suction cup is arranged on a side of the tray away from the frame, and the sealing strip is arranged at the edge of the tray;

[0011] The first power source and the second power source are respectively arranged on the vehicle frame, the power output end of the first power source is connected to the power input end of the second power source, and the power output end of the second power source is meshed with the rotating shaft of the gear;

[0012] The bracket includes two legs, two racks, two guide rails and a plurality of fixed beams, wherein:

[0013] The rack and the guide rail are arranged parallel to each other, and the rack, the guide rail and the two ends of the fixed beam are respectively connected to the two legs;

[0014] The track wheel is arranged on the guide rail, and the gear is arranged on the rack and meshes with the rack.

[0015] The etching equipment for wearable flexible electronic devices disclosed in the present invention can improve the etching accuracy and processing efficiency of wearable flexible electronic devices.

[0016] In addition, the etching device for the wearable flexible electronic device disclosed above may also have the following additional technical features:

[0017] In one embodiment of the present invention, the deoxidation component includes: a first housing, a first fan, a first negative pressure machine, a first air duct, a second air duct, a first linear actuator and a first laser generator, wherein:

[0018] The first housing is connected to the fixed beam, the first fan and the first negative pressure machine are respectively arranged on the first housing, the first air duct, the first fan and the first housing are connected, and the second air duct, the first negative pressure machine and the first housing are connected;

[0019] The first linear actuator and the first laser generator are respectively arranged in the first shell, the two ends of the first linear actuator are respectively connected to the inner wall of the first shell, and the first laser generator is connected to the movable part of the first linear actuator.

[0020] In one embodiment of the present invention, the charging assembly includes: a second housing, a first voltage-stabilized power supply, a first electrode, a second linear actuator, and a charging roller, wherein:

[0021] The second housing and the first regulated power supply are respectively connected to the fixed beam, and the first electrode is provided on the second housing;

[0022] The second linear actuator and the charging roller are respectively arranged in the second housing, the two ends of the second linear actuator are respectively connected to the inner wall of the second housing, and the charging roller is arranged on the movable part of the second linear actuator;

[0023] The first voltage-stabilized power supply, the first electrode and the charging roller are connected in sequence.

[0024] In one embodiment of the present invention, the glue coating assembly includes: a third shell, a delivery pipe, a third air duct and an atomizing nozzle, wherein:

[0025] The third shell is connected to the fixed beam, and the atomizing nozzle is arranged in the third shell and connected to the inner wall of the third shell;

[0026] The delivery pipe and the third air duct are respectively arranged in the third shell. The delivery pipe is communicated with the atomizing nozzle, and the third air duct is communicated with the inside of the third shell.

[0027] In one embodiment of the present invention, the etching assembly includes: a fourth housing, a second electrode, a second fan, a second negative pressure machine, a fourth air duct, a fifth air duct, a second stabilized power supply, a fifth linear actuator, and a second laser generator, wherein:

[0028] The fourth housing and the second voltage-regulated power supply are both connected to the fixed beam;

[0029] The second electrode, the second fan and the second negative pressure machine are respectively arranged on the fourth housing, the fourth air duct, the second fan and the interior of the fourth housing are connected, and the fifth air duct, the second negative pressure machine and the interior of the fourth housing are connected;

[0030] The fifth linear actuator and the second laser generator are respectively disposed in the fourth housing, both ends of the fifth linear actuator are respectively connected to the inner wall of the fourth housing, and the second laser generator is connected to the movable portion of the fifth linear actuator;

[0031] The second regulated power supply is connected to the second electrode.

[0032] In one embodiment of the present invention, the adhesive removal assembly includes: a fifth housing, a third fan, a third negative pressure machine, a sixth air duct, a seventh air duct, a third linear actuator and a third laser generator, wherein:

[0033] The fifth housing is connected to the fixed beam, the third fan and the third negative pressure machine are respectively arranged on the fifth housing, the sixth air duct, the third fan and the fifth housing are connected, and the seventh air duct, the third negative pressure machine and the fifth housing are connected;

[0034] The third linear actuator and the third laser generator are respectively arranged in the fifth shell, the two ends of the third linear actuator are respectively connected to the inner wall of the fifth shell, and the third laser generator is connected to the movable part of the third linear actuator.

[0035] In one embodiment of the present invention, the conveying assembly further comprises: a rotary actuator, wherein:

[0036] The fixed part of the rotary actuator is connected to the movable end of the fourth linear actuator, and the movable end of the rotary actuator is connected to the tray.

[0037] In one embodiment of the present invention, the first power source includes an electric motor, and the second power source includes a speed reducer.

[0038] In one embodiment of the present invention, an electrically controlled valve is provided in the middle of the delivery pipe, and the number of the third air ducts is two, and the two third air ducts are symmetrically provided on both sides of the delivery pipe.

[0039] In one embodiment of the present invention, the diameter of the gear is smaller than the diameter of the rail wheel.

[0040] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:

[0042] Figure 1 Schematic diagram of the structure of an etching device for a wearable flexible electronic device according to one embodiment of the present invention Figure 1 ;

[0043] Figure 2 Schematic diagram of the structure of an etching device for a wearable flexible electronic device according to one embodiment of the present invention Figure 2 ;

[0044] Figure 3 Schematic diagram of the structure of the deoxidation component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 1 ;

[0045] Figure 4 Schematic diagram of the structure of the deoxidation component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 2 ;

[0046] Figure 5Schematic diagram of the structure of the charging component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 1 ;

[0047] Figure 6 Schematic diagram of the structure of the charging component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 2 ;

[0048] Figure 7 Schematic diagram of the structure of the glue coating component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 1 ;

[0049] Figure 8 Schematic diagram of the structure of the glue coating component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 2 ;

[0050] Figure 9 Schematic diagram of the structure of the etching assembly of the etching equipment for wearable flexible electronic devices according to one embodiment of the present invention Figure 1 ;

[0051] Figure 10 Schematic diagram of the structure of the etching assembly of the etching equipment for wearable flexible electronic devices according to one embodiment of the present invention Figure 2 ;

[0052] Figure 11 A schematic diagram of the structure of a debonding component of an etching device for a wearable flexible electronic device according to an embodiment of the present invention Figure 1 ;

[0053] Figure 12 A schematic diagram of the structure of a debonding component of an etching device for a wearable flexible electronic device according to an embodiment of the present invention Figure 2 ;

[0054] Figure 13 Schematic diagram of the structure of the conveying component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 1 ;

[0055] Figure 14 Schematic diagram of the structure of the conveying component of the etching equipment of the wearable flexible electronic device according to one embodiment of the present invention Figure 2 ;

[0056] Figure 15 Schematic diagram of the structure of a bracket of an etching device for a wearable flexible electronic device according to one embodiment of the present invention;

[0057] As shown in the figure:

[0058] 100-deoxidation components;

[0059] 101 - first housing, 102 - first fan, 103 - first negative pressure machine, 104 - first air duct, 105 - second air duct, 106 - first linear actuator, 107 - first laser generator;

[0060] 200-Charging component;

[0061] 201 - second housing, 202 - first regulated power supply, 203 - first electrode, 204 - second linear actuator, 205 - charging roller; 300 - glue coating assembly;

[0062] 301-third shell, 302-delivery pipe, 303-third air duct, 304-atomizing nozzle;

[0063] 400-etched components;

[0064] 401 - fourth housing, 402 - second electrode, 403 - second fan, 404 - second negative pressure machine, 405 - fourth air duct, 406 - fifth air duct, 407 - second regulated power supply, 408 - fifth linear actuator, 409 - second laser generator;

[0065] 500-Glue removal component;

[0066] 501 - fifth housing, 502 - third fan, 503 - third negative pressure machine, 504 - sixth air duct, 505 - seventh air duct, 506 - third linear actuator, 507 - third laser generator;

[0067] 600- conveying assembly;

[0068] 601-frame, 602-first power source, 603-second power source, 604-track wheel, 605-gear, 606-tray, 607-sealing strip, 608-suction cup, 609-fourth linear actuator;

[0069] 700-bracket;

[0070] 701-support leg, 702-rack, 703-guide rail, 704-fixed beam, 705-pipe clamp. DETAILED DESCRIPTION

[0071] The following describes embodiments of the present invention in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and are not to be construed as limiting the present invention.

[0072] The etching equipment for a wearable flexible electronic device according to an embodiment of the present invention will be described below with reference to the accompanying drawings.

[0073] Example 1

[0074] like Figure 1 and Figure 2 As shown, an etching device for wearable flexible electronic devices includes: a deoxidation component 100, a charging component 200, a glue coating component 300, an etching component 400, a glue removal component 500, a conveying component 600 and a bracket 700, wherein,

[0075] The deoxidation assembly 100, the charging assembly 200, the glue coating assembly 300, the etching assembly 400 and the glue removal assembly 500 are respectively arranged on the bracket 700;

[0076] like Figure 13 and Figure 14 As shown, the conveying assembly 600 includes: a frame 601, a first power source 602, a second power source 603, four track wheels 604, four gears 605, a tray 606, a sealing strip 607, a plurality of suction cups 608 and a plurality of fourth linear actuators 609, wherein,

[0077] Two of the four track wheels 604 are arranged on one side of the frame 601, and the other two of the four track wheels 604 are arranged on the other side of the frame 601. Two of the four gears are arranged on one side of the frame 601, and the other two of the four gears 605 are arranged on the other side of the frame 601.

[0078] The tray 606 is disposed above the vehicle frame 601, and the fourth linear actuator 609 is disposed below the vehicle frame 601. The fixed portion of the fourth linear actuator 609 is connected to the vehicle frame 601, and the movable end of the fourth linear actuator 609 passes through the vehicle frame 601 and is connected to the tray 606.

[0079] The suction cup 608 is provided on a side of the tray 606 away from the frame 601 , and the sealing strip 607 is provided at the edge of the tray 606 ;

[0080] The first power source 602 and the second power source 603 are respectively arranged on the vehicle frame 601, the power output end of the first power source 602 is connected to the power input end of the second power source 603, and the power output end of the second power source 603 is engaged with the rotating shaft of the gear 605; Figure 15 As shown, the bracket 700 includes two legs 701, two racks 702, two guide rails 703 and a plurality of fixed beams 704, wherein:

[0081] The rack 702 and the guide rail 703 are arranged parallel to each other, and both ends of the rack 702, the guide rail 703 and the fixed beam 704 are respectively connected to the two legs 701;

[0082] The track wheel 604 is disposed on the guide rail 703 , and the gear 605 is disposed on the rack 702 and meshes with the rack 702 .

[0083] In the embodiment of the present invention, the etching equipment is highly integrated with the main processing processes of wearable flexible electronic devices.

[0084] The bracket 700 is used as a carrier for the deoxidation component 100, the charging component 200, the gluing component 300, the etching component 400, the degumming component 500, and the conveying component 600. The conveying component 600 is used to carry the wearable flexible electronic device and convey it in sequence and process it through the deoxidation component 100, the charging component 200, the gluing component 300, the etching component 400, and the degumming component 500.

[0085] Specifically, the relevant staff placed the equipment in the dust-free workshop and connected it to the workshop's power system and control system;

[0086] The relevant staff places the wearable flexible electronic device on the tray 606 in the conveying assembly 600 according to the actual situation and fixes it with the suction cup 608;

[0087] Next, the gear 605 in the conveying assembly 600 is driven by the first power source 602 and the second power source 603 to sequentially transfer the entire conveying assembly 600 to the deoxidation assembly 100, the charging assembly 200, the glue coating assembly 300, the etching assembly 400, and the glue removal assembly 500.

[0088] When the tray reaches the deoxidation assembly 100, the fourth linear actuator 609 drives the entire tray 606 to rise upward to place the wearable flexible electronic device in the deoxidation assembly 100. At this time, the deoxidation assembly 100 processes the surface of the wearable flexible electronic device to remove the oxide layer on the wearable flexible electronic device.

[0089] When the tray reaches the charging assembly 200, the fourth linear actuator 609 drives the entire tray 606 to rise upwards and places the wearable flexible electronic device in the charging assembly 200. The charging assembly 200 charges the surface of the wearable flexible electronic device, making the surface of the wearable flexible electronic device fully charged.

[0090] When reaching the glue coating assembly 300, the fourth linear actuator 609 drives the entire tray 606 to rise upward to place the wearable flexible electronic device in the glue coating assembly 300, and the glue coating assembly 300 applies glue at a predetermined position on the surface of the wearable flexible electronic device;

[0091] When the tray reaches the etching assembly 400, the fourth linear actuator 609 drives the entire tray 606 to rise upwards and place the wearable flexible electronic device in the etching assembly 400. The etching assembly 400 etches the surface of the wearable flexible electronic device. During this process, the parts of the surface of the wearable flexible electronic device that do not have glue will be etched.

[0092] When reaching the degumming component 500, the fourth linear actuator 609 drives the entire tray 606 to rise upward and place the wearable flexible electronic device in the degumming component 500. The degumming component 500 removes the remaining glue on the surface of the wearable flexible electronic device, thereby obtaining a finished wearable flexible electronic device.

[0093] The etching equipment for wearable flexible electronic devices disclosed in the present invention can improve the etching accuracy and processing efficiency of wearable flexible electronic devices.

[0094] Example 2

[0095] In order to better explain the present invention, in one embodiment of the present invention, as Figure 1 and Figure 2 As shown, an etching device for wearable flexible electronic devices includes: a deoxidation component 100, a charging component 200, a glue coating component 300, an etching component 400, a glue removal component 500, a conveying component 600 and a bracket 700, wherein,

[0096] The deoxidation assembly 100, the charging assembly 200, the glue coating assembly 300, the etching assembly 400 and the glue removal assembly 500 are respectively arranged on the bracket 700;

[0097] like Figure 13 and Figure 14 As shown, the conveying assembly 600 includes: a frame 601, a first power source 602, a second power source 603, four track wheels 604, four gears 605, a tray 606, a sealing strip 607, a plurality of suction cups 608 and a plurality of fourth linear actuators 609, wherein,

[0098] Two of the four track wheels 604 are arranged on one side of the frame 601, and the other two of the four track wheels 604 are arranged on the other side of the frame 601. Two of the four gears are arranged on one side of the frame 601, and the other two of the four gears 605 are arranged on the other side of the frame 601.

[0099] The tray 606 is disposed above the vehicle frame 601, and the fourth linear actuator 609 is disposed below the vehicle frame 601. The fixed portion of the fourth linear actuator 609 is connected to the vehicle frame 601, and the movable end of the fourth linear actuator 609 passes through the vehicle frame 601 and is connected to the tray 606.

[0100] The suction cup 608 is provided on a side of the tray 606 away from the frame 601 , and the sealing strip 607 is provided at the edge of the tray 606 ;

[0101] The first power source 602 and the second power source 603 are respectively arranged on the vehicle frame 601, the power output end of the first power source 602 is connected to the power input end of the second power source 603, and the power output end of the second power source 603 is engaged with the rotating shaft of the gear 605; Figure 15 As shown, the bracket 700 includes two legs 701, two racks 702, two guide rails 703 and a plurality of fixed beams 704, wherein:

[0102] The rack 702, the guide rail 703 and the guide rail 703 are arranged parallel to each other, and the two ends of the rack 702, the two ends of the guide rail 703 and the two ends of the fixed beam 704 are respectively connected to the two legs 701;

[0103] The track wheel 604 is disposed on the guide rail 703 , and the gear 605 is disposed on the rack 702 and meshes with the rack 702 .

[0104] like Figure 3 and Figure 4 As shown, the deoxidation assembly 100 includes: a first housing 101, a first fan 102, a first negative pressure machine 103, a first air duct 104, a second air duct 105, a first linear actuator 106 and a first laser generator 107, wherein the first housing 101 is connected to the fixed beam 704, the first fan 102 and the first negative pressure machine 103 are respectively arranged on the first housing 101, the first air duct 104, the first fan 102 and the first housing 101 are in communication, and the second air duct 105, the first negative pressure machine 103 and the first housing 101 are in communication;

[0105] The first linear actuator 106 and the first laser generator 107 are respectively arranged in the first shell 101 , the two ends of the first linear actuator 106 are respectively connected to the inner wall of the first shell 101 , and the first laser generator 107 is connected to the movable part of the first linear actuator 106 .

[0106] Example 3

[0107] In order to better explain the present invention, in one embodiment of the present invention, as Figure 1 and Figure 2 As shown, an etching device for wearable flexible electronic devices includes: a deoxidation component 100, a charging component 200, a glue coating component 300, an etching component 400, a glue removal component 500, a conveying component 600 and a bracket 700, wherein,

[0108] The deoxidation assembly 100, the charging assembly 200, the glue coating assembly 300, the etching assembly 400 and the glue removal assembly 500 are respectively arranged on the bracket 700;

[0109] like Figure 13 and Figure 14 As shown, the conveying assembly 600 includes: a frame 601, a first power source 602, a second power source 603, four track wheels 604, four gears 605, a tray 606, a sealing strip 607, a plurality of suction cups 608 and a plurality of fourth linear actuators 609, wherein,

[0110] Two of the four track wheels 604 are arranged on one side of the frame 601, and the other two of the four track wheels 604 are arranged on the other side of the frame 601. Two of the four gears are arranged on one side of the frame 601, and the other two of the four gears 605 are arranged on the other side of the frame 601.

[0111] The tray 606 is disposed above the vehicle frame 601, and the fourth linear actuator 609 is disposed below the vehicle frame 601. The fixed portion of the fourth linear actuator 609 is connected to the vehicle frame 601, and the movable end of the fourth linear actuator 609 passes through the vehicle frame 601 and is connected to the tray 606.

[0112] The suction cup 608 is provided on a side of the tray 606 away from the frame 601 , and the sealing strip 607 is provided at the edge of the tray 606 ;

[0113] The first power source 602 and the second power source 603 are respectively arranged on the vehicle frame 601, the power output end of the first power source 602 is connected to the power input end of the second power source 603, and the power output end of the second power source 603 is engaged with the rotating shaft of the gear 605; Figure 15 As shown, the bracket 700 includes two legs 701, two racks 702, two guide rails 703 and a plurality of fixed beams 704, wherein:

[0114] The rack 702, the guide rail 703 and the guide rail 703 are arranged parallel to each other, and the two ends of the rack 702, the two ends of the guide rail 703 and the two ends of the fixed beam 704 are respectively connected to the two legs 701;

[0115] The track wheel 604 is disposed on the guide rail 703 , and the gear 605 is disposed on the rack 702 and meshes with the rack 702 .

[0116] like Figure 5 and Figure 6 As shown, the charging assembly 200 includes: a second housing 201, a first stabilized power supply 202, a first electrode 203, a second linear actuator 204 and a charging roller 205, wherein:

[0117] The second housing 201 and the first stabilized power supply 202 are respectively connected to the fixed beam 704, and the first electrode 203 is provided on the second housing 201;

[0118] The second linear actuator 204 and the charging roller 205 are respectively disposed in the second housing 201 . Both ends of the second linear actuator 204 are connected to the inner wall of the second housing 201 . The charging roller 205 is disposed on the movable portion of the second linear actuator 204 .

[0119] The first stabilized power supply 202, the first electrode 203 and the charging roller 205 are connected in sequence.

[0120] Example 4

[0121] In order to better explain the present invention, in one embodiment of the present invention, as Figure 1 and Figure 2 As shown, an etching device for wearable flexible electronic devices includes: a deoxidation component 100, a charging component 200, a glue coating component 300, an etching component 400, a glue removal component 500, a conveying component 600 and a bracket 700, wherein,

[0122] The deoxidation assembly 100, the charging assembly 200, the glue coating assembly 300, the etching assembly 400 and the glue removal assembly 500 are respectively arranged on the bracket 700;

[0123] like Figure 13 and Figure 14 As shown, the conveying assembly 600 includes: a frame 601, a first power source 602, a second power source 603, four track wheels 604, four gears 605, a tray 606, a sealing strip 607, a plurality of suction cups 608 and a plurality of fourth linear actuators 609, wherein,

[0124] Two of the four track wheels 604 are arranged on one side of the frame 601, and the other two of the four track wheels 604 are arranged on the other side of the frame 601. Two of the four gears are arranged on one side of the frame 601, and the other two of the four gears 605 are arranged on the other side of the frame 601.

[0125] The tray 606 is disposed above the vehicle frame 601, and the fourth linear actuator 609 is disposed below the vehicle frame 601. The fixed portion of the fourth linear actuator 609 is connected to the vehicle frame 601, and the movable end of the fourth linear actuator 609 passes through the vehicle frame 601 and is connected to the tray 606.

[0126] The suction cup 608 is provided on a side of the tray 606 away from the frame 601 , and the sealing strip 607 is provided at the edge of the tray 606 ;

[0127] The first power source 602 and the second power source 603 are respectively arranged on the vehicle frame 601, the power output end of the first power source 602 is connected to the power input end of the second power source 603, and the power output end of the second power source 603 is engaged with the rotating shaft of the gear 605; Figure 15 As shown, the bracket 700 includes two legs 701, two racks 702, two guide rails 703 and a plurality of fixed beams 704, wherein:

[0128] The rack 702, the guide rail 703 and the guide rail 703 are arranged parallel to each other, and the two ends of the rack 702, the two ends of the guide rail 703 and the two ends of the fixed beam 704 are respectively connected to the two legs 701;

[0129] The track wheel 604 is disposed on the guide rail 703 , and the gear 605 is disposed on the rack 702 and meshes with the rack 702 .

[0130] like Figure 7 and Figure 8 The glue coating component 300 includes: a third shell 301, a delivery pipe 302, a third air duct 303 and an atomizing nozzle 304, wherein,

[0131] The third housing 301 is connected to the fixed beam 704, and the atomizing nozzle is arranged in the third housing 301 and connected to the inner wall of the third housing 301;

[0132] The delivery pipe 302 and the third air duct 303 are respectively arranged in the third shell 301 . The delivery pipe 302 is connected to the atomizing nozzle, and the third air duct 303 is connected to the inside of the third shell 301 .

[0133] Example 5

[0134] In order to better explain the present invention, in one embodiment of the present invention, as Figure 1 and Figure 2 As shown, an etching device for wearable flexible electronic devices includes: a deoxidation component 100, a charging component 200, a glue coating component 300, an etching component 400, a glue removal component 500, a conveying component 600 and a bracket 700, wherein,

[0135] The deoxidation assembly 100, the charging assembly 200, the glue coating assembly 300, the etching assembly 400 and the glue removal assembly 500 are respectively arranged on the bracket 700;

[0136] like Figure 13 and Figure 14 As shown, the conveying assembly 600 includes: a frame 601, a first power source 602, a second power source 603, four track wheels 604, four gears 605, a tray 606, a sealing strip 607, a plurality of suction cups 608 and a plurality of fourth linear actuators 609, wherein,

[0137] Two of the four track wheels 604 are arranged on one side of the frame 601, and the other two of the four track wheels 604 are arranged on the other side of the frame 601. Two of the four gears are arranged on one side of the frame 601, and the other two of the four gears 605 are arranged on the other side of the frame 601.

[0138] The tray 606 is disposed above the vehicle frame 601, and the fourth linear actuator 609 is disposed below the vehicle frame 601. The fixed portion of the fourth linear actuator 609 is connected to the vehicle frame 601, and the movable end of the fourth linear actuator 609 passes through the vehicle frame 601 and is connected to the tray 606.

[0139] The suction cup 608 is provided on a side of the tray 606 away from the frame 601 , and the sealing strip 607 is provided at the edge of the tray 606 ;

[0140] The first power source 602 and the second power source 603 are respectively arranged on the vehicle frame 601, the power output end of the first power source 602 is connected to the power input end of the second power source 603, and the power output end of the second power source 603 is engaged with the rotating shaft of the gear 605; Figure 15 As shown, the bracket 700 includes two legs 701, two racks 702, two guide rails 703 and a plurality of fixed beams 704, wherein:

[0141] The rack 702, the guide rail 703 and the guide rail 703 are arranged parallel to each other, and the two ends of the rack 702, the two ends of the guide rail 703 and the two ends of the fixed beam 704 are respectively connected to the two legs 701;

[0142] The track wheel 604 is disposed on the guide rail 703 , and the gear 605 is disposed on the rack 702 and meshes with the rack 702 .

[0143] like Figure 9 and Figure 10 As shown, the etching assembly 400 includes: a fourth housing 401, a second electrode 402, a second fan 403, a second negative pressure machine 404, a fourth air duct 405, a fifth air duct 406, a second stabilized power supply 407, a fifth linear actuator 408, and a second laser generator 409, wherein:

[0144] The fourth housing 401 and the second regulated power supply 407 are both connected to the fixed beam 704;

[0145] The second electrode 402, the second fan 403 and the second negative pressure machine 404 are respectively arranged on the fourth housing 401, the fourth air duct 405, the second fan 403 and the interior of the fourth housing 401 are connected, and the fifth air duct 406, the second negative pressure machine 404 and the interior of the fourth housing 401 are connected;

[0146] The fifth linear actuator 408 and the second laser generator 409 are respectively disposed in the fourth housing 401 . Both ends of the fifth linear actuator 408 are connected to the inner wall of the fourth housing 401 . The second laser generator 409 is connected to the movable portion of the fifth linear actuator 408 .

[0147] The second regulated power supply 407 is connected to the second electrode 402 .

[0148] Example 6

[0149] In order to better explain the present invention, in one embodiment of the present invention, as Figure 1 and Figure 2 As shown, an etching device for wearable flexible electronic devices includes: a deoxidation component 100, a charging component 200, a glue coating component 300, an etching component 400, a glue removal component 500, a conveying component 600 and a bracket 700, wherein,

[0150] The deoxidation assembly 100, the charging assembly 200, the glue coating assembly 300, the etching assembly 400 and the glue removal assembly 500 are respectively arranged on the bracket 700;

[0151] like Figure 13 and Figure 14 As shown, the conveying assembly 600 includes: a frame 601, a first power source 602, a second power source 603, four track wheels 604, four gears 605, a tray 606, a sealing strip 607, a plurality of suction cups 608 and a plurality of fourth linear actuators 609, wherein,

[0152] Two of the four track wheels 604 are arranged on one side of the frame 601, and the other two of the four track wheels 604 are arranged on the other side of the frame 601. Two of the four gears are arranged on one side of the frame 601, and the other two of the four gears 605 are arranged on the other side of the frame 601.

[0153] The tray 606 is disposed above the vehicle frame 601, and the fourth linear actuator 609 is disposed below the vehicle frame 601. The fixed portion of the fourth linear actuator 609 is connected to the vehicle frame 601, and the movable end of the fourth linear actuator 609 passes through the vehicle frame 601 and is connected to the tray 606.

[0154] The suction cup 608 is provided on a side of the tray 606 away from the frame 601 , and the sealing strip 607 is provided at the edge of the tray 606 ;

[0155] The first power source 602 and the second power source 603 are respectively arranged on the vehicle frame 601, the power output end of the first power source 602 is connected to the power input end of the second power source 603, and the power output end of the second power source 603 is engaged with the rotating shaft of the gear 605; Figure 15As shown, the bracket 700 includes two legs 701, two racks 702, two guide rails 703 and a plurality of fixed beams 704, wherein:

[0156] The rack 702, the guide rail 703 and the guide rail 703 are arranged parallel to each other, and the two ends of the rack 702, the two ends of the guide rail 703 and the two ends of the fixed beam 704 are respectively connected to the two legs 701;

[0157] The track wheel 604 is disposed on the guide rail 703 , and the gear 605 is disposed on the rack 702 and meshes with the rack 702 .

[0158] like Figure 11 and Figure 12 As shown, the adhesive removal assembly 500 includes: a fifth housing 501, a third fan 502, a third negative pressure machine 503, a sixth air duct 504, a seventh air duct 505, a third linear actuator 506 and a third laser generator 507, wherein the fifth housing 501 is connected to the fixed beam 704, the third fan 502 and the third negative pressure machine 503 are respectively arranged on the fifth housing 501, the sixth air duct 504, the third fan 502 and the fifth housing 501 are connected, and the seventh air duct 505, the third negative pressure machine 503 and the fifth housing 501 are connected;

[0159] The third linear actuator 506 and the third laser generator 507 are respectively arranged in the fifth shell 501, the two ends of the third linear actuator 506 are respectively connected to the inner wall of the fifth shell 501, and the third laser generator 507 is connected to the movable part of the third linear actuator 506.

[0160] In addition, as a possibility, the conveying assembly 600 further includes: a rotary actuator, wherein:

[0161] The fixed portion of the rotary actuator is connected to the movable end of the fourth linear actuator 609 , and the movable end of the rotary actuator is connected to the tray 606 .

[0162] The bracket 700 also includes: a plurality of pipe clamps 705, which are used to fix the deoxidation component 100, the charging component 200, the glue coating component 300, the etching component 400 and the glue removal component 500.

[0163] In addition, the first power source 602 includes an electric motor, and the second power source 603 includes a reducer.

[0164] In addition, an electrically controlled valve is provided in the middle of the delivery pipe 302 . There are two third air ducts 303 , which are symmetrically arranged on both sides of the delivery pipe 302 .

[0165] Finally, the diameter of the gear 605 is smaller than the diameter of the track wheel 604 .

[0166] In summary, the etching equipment for wearable flexible electronic devices disclosed in the present invention can improve the etching accuracy and processing efficiency of wearable flexible electronic devices.

[0167] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0168] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature identified as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, "plurality" means two or more, unless otherwise specifically defined.

[0169] In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," "connect," "fixed," etc. should be understood broadly. For example, they may refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0170] In the present invention, unless otherwise expressly specified or limited, when a first feature is "above" or "below" a second feature, it may mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediary. Furthermore, when a first feature is "above," "above," or "above" a second feature, it may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is at a higher level than the second feature. When a first feature is "below," "below," or "below" a second feature, it may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature is at a lower level than the second feature.

[0171] In the description of this specification, the reference terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention.

[0172] The descriptions do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. In addition, those skilled in the art may combine and integrate different embodiments or examples and features of different embodiments or examples described in this specification without conflict.

[0173] Although the embodiments of the present invention have been shown and described above, it will be understood that the above embodiments are illustrative and are not to be construed as limitations on the present invention. A person skilled in the art may change, modify, replace and modify the above embodiments within the scope of the present invention.

Claims

1. An etching device for wearable flexible electronic devices, characterized in that: include: Deoxidation component, charging component, glue coating component, etching component, glue removal component, conveying component and bracket, wherein, The deoxidation component, the charging component, the glue coating component, the etching component and the glue removal component are respectively arranged on the bracket; The conveying assembly includes: a frame, a first power source, a second power source, four track wheels, four gears, a tray, a sealing strip, a plurality of suction cups and a plurality of fourth linear actuators, wherein, Two of the four rail wheels are arranged on one side of the frame, and the other two of the four rail wheels are arranged on the other side of the frame; two of the four gears are arranged on one side of the frame, and the other two of the four gears are arranged on the other side of the frame; The tray is arranged above the frame, the fourth linear actuator is arranged below the frame, the fixed portion of the fourth linear actuator is connected to the frame, and the movable end of the fourth linear actuator passes through the frame and is connected to the tray; The suction cup is arranged on a side of the tray away from the frame, and the sealing strip is arranged at the edge of the tray; The first power source and the second power source are respectively arranged on the vehicle frame, the power output end of the first power source is connected to the power input end of the second power source, and the power output end of the second power source is engaged with the rotating shaft of the gear; the bracket includes: two legs, two racks, two guide rails and multiple fixed beams, wherein, The rack and the guide rail are arranged parallel to each other, and the rack, the guide rail and the two ends of the fixed beam are respectively connected to the two legs; The track wheel is arranged on the guide rail, and the gear is arranged on the rack and meshes with the rack; The deoxidation component includes: a first housing, a first fan, a first negative pressure machine, a first air duct, a second air duct, a first linear actuator and a first laser generator, wherein: The first housing is connected to the fixed beam, the first fan and the first negative pressure machine are respectively arranged on the first housing, the first air duct, the first fan and the first housing are connected, and the second air duct, the first negative pressure machine and the first housing are connected; The first linear actuator and the first laser generator are respectively disposed in the first housing, with both ends of the first linear actuator connected to the inner wall of the first housing, and the first laser generator connected to the movable portion of the first linear actuator; The charging assembly includes: a second housing, a first voltage-stabilized power supply, a first electrode, a second linear actuator and a charging roller, wherein: The second housing and the first regulated power supply are respectively connected to the fixed beam, and the first electrode is provided on the second housing; The second linear actuator and the charging roller are respectively arranged in the second housing, the two ends of the second linear actuator are respectively connected to the inner wall of the second housing, and the charging roller is arranged on the movable part of the second linear actuator; The first voltage-stabilized power supply, the first electrode and the charging roller are connected in sequence; The glue coating assembly includes: a third shell, a delivery pipe, a third air duct and an atomizing nozzle, wherein: The third shell is connected to the fixed beam, and the atomizing nozzle is arranged in the third shell and connected to the inner wall of the third shell; The delivery pipe and the third air duct are respectively arranged in the third shell, the delivery pipe is connected to the atomizing nozzle, and the third air duct is connected to the inside of the third shell; The etching assembly includes: a fourth housing, a second electrode, a second fan, a second negative pressure machine, a fourth air duct, a fifth air duct, a second voltage-stabilized power supply, a fifth linear actuator, and a second laser generator, wherein: The fourth housing and the second voltage-regulated power supply are both connected to the fixed beam; The second electrode, the second fan and the second negative pressure machine are respectively arranged on the fourth housing, the fourth air duct, the second fan and the interior of the fourth housing are connected, and the fifth air duct, the second negative pressure machine and the interior of the fourth housing are connected; The fifth linear actuator and the second laser generator are respectively arranged in the fourth shell, the two ends of the fifth linear actuator are respectively connected to the inner wall of the fourth shell, the second laser generator is connected to the movable part of the fifth linear actuator; the second regulated power supply is connected to the second electrode.

2. The etching device for wearable flexible electronic devices according to claim 1, characterized in that: The adhesive removal assembly includes: a fifth housing, a third fan, a third negative pressure machine, a sixth air duct, a seventh air duct, a third linear actuator and a third laser generator, wherein: The fifth housing is connected to the fixed beam, the third fan and the third negative pressure machine are respectively arranged on the fifth housing, the sixth air duct, the third fan and the fifth housing are connected, and the seventh air duct, the third negative pressure machine and the fifth housing are connected; The third linear actuator and the third laser generator are respectively arranged in the fifth shell, the two ends of the third linear actuator are respectively connected to the inner wall of the fifth shell, and the third laser generator is connected to the movable part of the third linear actuator.

3. The etching device for wearable flexible electronic devices according to claim 1, characterized in that: The conveying assembly further includes a rotary actuator, wherein: The fixed part of the rotary actuator is connected to the movable end of the fourth linear actuator, and the movable end of the rotary actuator is connected to the tray.

4. The etching device for wearable flexible electronic devices according to claim 1, wherein: The first power source includes an electric motor, and the second power source includes a speed reducer.

5. The etching device for wearable flexible electronic devices according to claim 1, characterized in that: An electric-controlled valve is provided in the middle of the delivery pipe. There are two third air ducts, which are symmetrically arranged on both sides of the delivery pipe.

6. The etching device for wearable flexible electronic devices according to claim 1, characterized in that: The diameter of the gear is smaller than the diameter of the track wheel.

Citation Information

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