CN109142384A - A kind of electrolytic copper foil break and Pinhole atomization system and its application - Google Patents

A kind of electrolytic copper foil break and Pinhole atomization system and its application Download PDF

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Publication number
CN109142384A
CN109142384A CN201811034482.7A CN201811034482A CN109142384A CN 109142384 A CN109142384 A CN 109142384A CN 201811034482 A CN201811034482 A CN 201811034482A CN 109142384 A CN109142384 A CN 109142384A
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China
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fog
spray nozzle
copper foil
shell
power mechanism
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CN201811034482.7A
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CN109142384B (en
Inventor
赵玮
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Suzhou Xiuchuang Investment Development Co ltd
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Zheng Yunyun
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/84Systems specially adapted for particular applications
    • G01N21/88Investigating the presence of flaws or contamination
    • G01N21/91Investigating the presence of flaws or contamination using penetration of dyes, e.g. fluorescent ink
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B13/00Machines or plants for applying liquids or other fluent materials to surfaces of objects or other work by spraying, not covered by groups B05B1/00 - B05B11/00
    • B05B13/02Means for supporting work; Arrangement or mounting of spray heads; Adaptation or arrangement of means for feeding work
    • B05B13/0278Arrangement or mounting of spray heads
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B14/00Arrangements for collecting, re-using or eliminating excess spraying material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B3/00Spraying or sprinkling apparatus with moving outlet elements or moving deflecting elements
    • B05B3/02Spraying or sprinkling apparatus with moving outlet elements or moving deflecting elements with rotating elements
    • B05B3/04Spraying or sprinkling apparatus with moving outlet elements or moving deflecting elements with rotating elements driven by the liquid or other fluent material discharged, e.g. the liquid actuating a motor before passing to the outlet
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • G01N2021/0106General arrangement of respective parts
    • G01N2021/0112Apparatus in one mechanical, optical or electronic block

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Catching Or Destruction (AREA)
  • Electrolytic Production Of Metals (AREA)

Abstract

The present invention relates to a kind of electrolytic copper foil break and Pinhole atomization system and its applications, it is characterized by, the 4th flexible power mechanism is installed in the lower surface of the lower panel of shell, the other end of 4th flexible power mechanism is connected with pressure plate, the surface of pressure plate is arranged at intervals with several compression rubber blocks, the width of rubber block and copper foil it is of same size.Using a kind of electrolytic copper foil break of the invention and Pinhole atomization system and its application, the dilute sulfuric acid of automatic coating whole picture in copper foil break and Pinhole may be implemented.

Description

A kind of electrolytic copper foil break and Pinhole atomization system and its application
Technical field
The present invention relates to electrolytic copper foil technical fields, more specifically more particularly to a kind of electrolytic copper foil break and needle Hole detection atomization system and its application.
Background technique
CN102798638A discloses the detection method of a kind of electrolytic copper foil break and pin hole, includes the following steps: (1), it sample treatment: selects a wide sink to detect sink, copper foil to be measured is trimmed to the sample of corrugationless and folding line, The size for seeking sample is that can lay flat in detection sink;(2), penetrating fluid is modulated: dyestuff is molten by the concentration of 0.5g/L~5g/L Solution is filled into detection sink in alcohol;(3), Rough Inspection: sample smooth surface is taken to be put into the detection water filled with penetrating fluid downward It in slot, places 0.5 minute to 2 minutes time, the color dot of observation infiltration hair side judges quantity and the position of break and pin hole; (4), dimensional measurement: detection is further amplified in the corresponding position of color dot with not less than 1000 times of electron microscopes, and measures needle The size in hole.However, the above method needs to shear off copper foil, the copper foil of whole picture can not be detected.
Summary of the invention
The purpose of the present invention is to provide a kind of electrolytic copper foil break and Pinhole atomization system and its application, mesh Be realize the dilute sulfuric acid of automatic coating whole picture in copper foil break and Pinhole.
The technical scheme of the present invention is realized as follows:
A kind of atomization system, comprising: atomization system frame, top guide roller (1-1), top drive roller (1-2), bottom guide roller (1-3), bottom driven roller (1-4), shell (1-5);Top guide roller (1-1), top drive roller (1-2), bottom guide roller (1- 3), bottom driven roller (1-4) and shell (1-5) are each attached on atomization system frame;
Shell includes: upper board (1-5-1), lower panel (1-5-2) and sidewall paneling (1-5-3), is provided with out on sidewall paneling Mouth (1-5-4);
Further include: first movement spraying system (1-6), second mobile spraying system (1-7);Pass through first movement spraying system (1-6) sprays dilution heat of sulfuric acid to copper foil with second mobile spraying system (1-7);First movement spraying system (1-6), second move The spraying granule size of dynamic spraying system (1-7) is 55-90 μm.
First movement spraying system (1-6) includes: several first fog-spray nozzles (1-6-1), the first fog-spray nozzle fixed link (1-6- 2), the first support connecting frame (1-6-3), the first track (1-6-4), the first flexible power mechanism (1-6-5);
First movement spraying system (1-6), second mobile spraying system (1-7) are separately positioned on the corresponding of shell (1-5) Top and lower part;
One end of first flexible power mechanism (1-6-5) is fixed on the upper board of shell (1-5), and the other end and the first support connect Connect frame (1-6-3) connection;It is solid that the lower surface of first support connecting frame (1-6-3) is connected with more spaced first fog-spray nozzles The lower end of fixed pole (1-6-2), the first fog-spray nozzle fixed link (1-6-2) is fixedly connected with the first fog-spray nozzle (1-6-1);First is spraying Head fixed link (1-6-2) is corresponding with the first fog-spray nozzle;First fog-spray nozzle fixed link (1-6-2) and the first fog-spray nozzle (1-6-1) It is arranged in " L shape ";Opening (1-5-4) of the spray direction of first fog-spray nozzle towards shell;First track (1-6-4) is vertically arranged In the side of shell (1-5);First support connecting frame (1-6-3) is provided with limited block, matches with the first track (1-6-4); When first flexible power mechanism (1-6-5) is stretched, the first support connecting frame (1-6-3) lifting is driven, and then drives first to be sprayed Head fixed link and the lifting of the first fog-spray nozzle.
Further, second mobile spraying system (1-7) includes: that several second fog-spray nozzles (1-7-1), the second fog-spray nozzle are fixed Bar (1-7-2), the second support connecting frame (1-7-3), the second track (1-7-4), the second flexible power mechanism (1-7-5);Second The one end of flexible power mechanism (1-7-5) is fixed in the lower panel of shell (1-5), the other end and the second support connecting frame (1- 7-3) connect;The lower surface of second support connecting frame (1-7-3) is connected with more spaced second fog-spray nozzle fixed link (1- 7-2), the lower end of the second fog-spray nozzle fixed link (1-7-2) is fixedly connected with the second fog-spray nozzle (1-7-1);Second fog-spray nozzle is fixed Bar (1-7-2) is corresponding with the second fog-spray nozzle;Second fog-spray nozzle fixed link (1-7-2) and the second fog-spray nozzle (1-7-1) are in " L shape " Arrangement;Opening (1-5-4) of the spray direction of first fog-spray nozzle towards shell;Second track (1-7-4) is vertically provided at shell The side of (1-5);Second support connecting frame (1-7-3) is provided with limited block, matches with the second track (1-7-4);Second stretches When contracting power mechanism (1-7-5) stretches, the second support connecting frame (1-7-3) lifting is driven, and then the second fog-spray nozzle is driven to fix Bar and the lifting of the second fog-spray nozzle.
Further, shell uses cuboid or cylindrical body.
Further, the first fog-spray nozzle (1-6-1) of first movement spraying system (1-6) and the second mobile spraying system (1- 7) setting is spaced between the second fog-spray nozzle (1-7-1).
Further, the second fog-spray nozzle fixed link (1-7-2) is identical as the length of the first fog-spray nozzle fixed link (1-6-2).
Further, the upper board (1-5-1) of shell (1-5) is higher than top guide roller (1-1);The lower panel of shell (1-5) (1-5-2) is lower than bottom guide roller (1-3).
Further, the first fog-spray nozzle (1-6-1), the second fog-spray nozzle (1-7-1) one end connect with feed liquid hose.
Further, the length of the first track (1-6-4) and/or the second track (1-7-4) are as follows: obstructed along the height of shell Long arrangement.
Further, the length of the first track (1-6-4) and/or the second track (1-7-4) are as follows: elongated along the height of shell Arrangement.
Use the electrolytic copper foil break of the atomization system and the detection device of pin hole, comprising: atomization system (1), Copper foil (2);
Copper foil switchs to run down by top guide roller (1-1) and top drive roller (1-2) from level;
Copper foil switchs to level run by running down by bottom guide roller (1-3), bottom driven roller (1-4);
The smooth surface side of copper foil is arranged in second mobile spraying system (1-7) for the first movement spraying system (1-6).
The working method of the detection device of electrolytic copper foil break and pin hole,
Copper foil changes into vertical traveling by level after top guide roller (1-1), top drive roller (1-2);
First flexible power mechanism (1-6-5) and the second flexible power mechanism (1-7-5) stretch out, shrink simultaneously, i.e., first is spraying Head (1-6-1), the second fog-spray nozzle (1-7-1) go in the same direction or go relatively, and the design of the application is, the first fog-spray nozzle (1- 6-1), the second fog-spray nozzle (1-7-1) is arranged in a crossed manner, and between the first fog-spray nozzle (1-6-1) and the first support connecting frame (1-6-3) It is additionally provided between the first fog-spray nozzle fixed link (1-6-2), the second fog-spray nozzle (1-7-1) and the second support connecting frame (1-7-3) Being additionally provided with the second fog-spray nozzle fixed link (1-7-2) being capable of shape between the first fog-spray nozzle and the second fog-spray nozzle when going in the same direction At juxtaposition, guarantee that copper foil spraying area is not omitted;Copper foil by bottom guide roller (1-3), bottom driven roller (1-4), from Vertical advance is changed to horizontal traveling;The smooth surface of copper foil is towards the first fog-spray nozzle (1-6-1), the second fog-spray nozzle (1-7-1).
The working method of the detection device of electrolytic copper foil break and pin hole, copper foil is by top guide roller (1-1), top After portion's driven roller (1-2), vertical traveling is changed by level;First flexible power mechanism (1-6-5) is stretched out, and drives first to be sprayed Head (1-6-1) decline, meanwhile, the second flexible power mechanism (1-7-5) is shunk, and the second fog-spray nozzle (1-7-1) decline is driven;First Flexible power mechanism (1-6-5) is shunk, and the first fog-spray nozzle (1-6-1) is driven to rise, meanwhile, the second flexible power mechanism (1-7- 5) it stretches out, the second fog-spray nozzle (1-7-1) is driven to rise;Copper foil is by bottom guide roller (1-3), bottom driven roller (1-4), from perpendicular Horizontal traveling is changed to traveling.
A kind of dilute sulfuric acid atomization system, comprising: atomization system frame, top guide roller (1-1), top drive roller (1-2), Shell (1-5);Top guide roller (1-1), top drive roller (1-2) and shell (1-5) are each attached on atomization system frame;
Top guide roller (1-1), top drive roller (1-2) are horizontally disposed;
Shell includes: upper board (1-5-1), lower panel (1-5-2) and sidewall paneling (1-5-3), is provided with out on sidewall paneling Mouth (1-5-4);
Further include: first movement spraying system (1-6), second mobile spraying system (1-7);
It is molten to the smooth surface of copper foil spraying dilute sulfuric acid with second mobile spraying system (1-7) by first movement spraying system (1-6) Liquid;The spraying granule size that first movement spraying system (1-6), second move spraying system (1-7) is 55-90 μm;
L shaped plate body (1-8) is provided in the lower panel of the shell of atomization system (1), it is solid in the vertical section of L shaped plate body (1-8) There is third to stretch power mechanism (1-9), the stretch other end of power mechanism (1-9) of third is connected with pressure plate, pressure plate surely Surface is arranged at intervals with several compression rubber blocks (1-10), the width of rubber block (1-10) and copper foil it is of same size;
Rubber block (1-10) of the one side of copper foil towards elasticity, vertical supporting (3) of the another side towards rack.
Further, the upper surface setting of rubber block (1-10) is fluted, and the two sides of rubber block (1-10) are provided with drainage Device stretches power mechanism (1-9) by third to adjust the pressing force between rubber block (1-10) and copper foil, and purpose is main Be in order to the solution on copper foil smooth surface surface is drained to the upper surface of rubber block (1-10) groove in, then flow to rubber block The drainage device of the two sides of (1-10), and then recycle.
Further, first movement spraying system (1-6) includes: that several first fog-spray nozzles (1-6-1), the first fog-spray nozzle are fixed Bar (1-6-2), the first support connecting frame (1-6-3), the first track (1-6-4), the first flexible power mechanism (1-6-5);
First movement spraying system (1-6), second mobile spraying system (1-7) are separately positioned on the corresponding of shell (1-5) Top and lower part;
One end of first flexible power mechanism (1-6-5) is fixed on the upper board of shell (1-5), and the other end and the first support connect Connect frame (1-6-3) connection;It is solid that the lower surface of first support connecting frame (1-6-3) is connected with more spaced first fog-spray nozzles The lower end of fixed pole (1-6-2), the first fog-spray nozzle fixed link (1-6-2) is fixedly connected with the first fog-spray nozzle (1-6-1);First is spraying Head fixed link (1-6-2) is corresponding with the first fog-spray nozzle;First fog-spray nozzle fixed link (1-6-2) and the first fog-spray nozzle (1-6-1) It is arranged in " L shape ";Opening (1-5-4) of the spray direction of first fog-spray nozzle towards shell;First track (1-6-4) is vertically arranged In the side of shell (1-5);First support connecting frame (1-6-3) is provided with limited block, matches with the first track (1-6-4); When first flexible power mechanism (1-6-5) is stretched, the first support connecting frame (1-6-3) lifting is driven, and then drives first to be sprayed Head fixed link and the lifting of the first fog-spray nozzle;
Second mobile spraying system (1-7) include: several second fog-spray nozzles (1-7-1), the second fog-spray nozzle fixed link (1-7-2), Second support connecting frame (1-7-3), the second track (1-7-4), the second flexible power mechanism (1-7-5);Second flexible engine One end of structure (1-7-5) is fixed in the lower panel of shell (1-5), and the other end is connect with the second support connecting frame (1-7-3);The The lower surface of two support connecting frames (1-7-3) is connected with more spaced second fog-spray nozzle fixed links (1-7-2), the second spray The lower end of mist head fixed link (1-7-2) is fixedly connected with the second fog-spray nozzle (1-7-1);Second fog-spray nozzle fixed link (1-7-2) with Second fog-spray nozzle is corresponding;Second fog-spray nozzle fixed link (1-7-2) and the second fog-spray nozzle (1-7-1) are arranged in " L shape ";First spray Opening (1-5-4) of the spray direction of mist head towards shell;Second track (1-7-4) is vertically provided at the side of shell (1-5); Second support connecting frame (1-7-3) is provided with limited block, matches with the second track (1-7-4);Second flexible power mechanism (1- When 7-5) stretching, the second support connecting frame (1-7-3) lifting is driven, and then drives the second fog-spray nozzle fixed link and second spraying Head lifting.
Further, shell uses cuboid or cylindrical body.
Further, the first fog-spray nozzle (1-6-1) of first movement spraying system (1-6) and the second mobile spraying system (1- 7) setting is spaced between the second fog-spray nozzle (1-7-1).
Further, the second fog-spray nozzle fixed link (1-7-2) is identical as the length of the first fog-spray nozzle fixed link (1-6-2).
Use the electrolytic copper foil break of above-mentioned dilute sulfuric acid atomization system and the detection device of pin hole, comprising: atomization system System (1), copper foil (2), copper foil are switched to vertically transport by top guide roller (1-1) and top drive roller (1-2) by level run Row.
A kind of electrolytic copper foil break and Pinhole atomization system, the atomization system (1) includes: atomization system frame Frame, top guide roller (1-1), top drive roller (1-2), bottom guide roller (1-3), bottom driven roller (1-4), shell (1-5); Top guide roller (1-1), top drive roller (1-2) and shell (1-5) are each attached on atomization system frame;
Top guide roller (1-1), top drive roller (1-2), bottom guide roller (1-3), bottom driven roller (1-4) are horizontally disposed;
Copper foil is switched to vertically run by top guide roller (1-1) and top drive roller (1-2) by level run;
Shell includes: upper board (1-5-1), lower panel (1-5-2) and sidewall paneling (1-5-3), is provided with out on sidewall paneling Mouth (1-5-4);
Further include: first movement spraying system (1-6), second mobile spraying system (1-7);
It is molten to the smooth surface of copper foil spraying dilute sulfuric acid with second mobile spraying system (1-7) by first movement spraying system (1-6) Liquid;The spraying granule size that first movement spraying system (1-6), second move spraying system (1-7) is 55-90 μm
L shaped plate body (1-8) is provided in the lower panel of the shell of atomization system (1), it is solid in the vertical section of L shaped plate body (1-8) There is third to stretch power mechanism (1-9), the stretch other end of power mechanism (1-9) of third is connected with pressure plate, pressure plate surely Surface is arranged at intervals with several compression rubber blocks (1-10), the width of rubber block (1-10) and copper foil it is of same size;Copper foil Rubber block (1-10) on one side towards elasticity, vertical supporting (3) of the another side towards rack;
Bottom guide roller (1-3), bottom driven roller (1-4) are arranged in the lower section of shell (1-5), i.e. copper foil first passes through rubber block After (1-10) and vertical supporting (3) tentatively removes moisture removal, then made by bottom guide roller (1-3), bottom driven roller (1-4) Copper foil is changed to level run by vertically running, so that dilution heat of sulfuric acid is able to enter in break and pin hole;
The 4th flexible power mechanism, the other end connection of the 4th flexible power mechanism are installed in the lower surface of the lower panel of shell Have a pressure plate, the surface of pressure plate is arranged at intervals with several compression rubber blocks, the width of rubber block and copper foil it is of same size.
Further, the upper surface setting of rubber block (1-10) is fluted, and the two sides of rubber block (1-10) are provided with drainage Device stretches power mechanism (1-9) by third to adjust the pressing force between rubber block (1-10) and copper foil, and purpose is main Be in order to the solution on copper foil smooth surface surface is drained to the upper surface of rubber block (1-10) groove in, then flow to rubber block The drainage device of the two sides of (1-10), and then recycle.
Further, first movement spraying system (1-6) includes: that several first fog-spray nozzles (1-6-1), the first fog-spray nozzle are fixed Bar (1-6-2), the first support connecting frame (1-6-3), the first track (1-6-4), the first flexible power mechanism (1-6-5);
First movement spraying system (1-6), second mobile spraying system (1-7) are separately positioned on the corresponding of shell (1-5) Top and lower part;
One end of first flexible power mechanism (1-6-5) is fixed on the upper board of shell (1-5), and the other end and the first support connect Connect frame (1-6-3) connection;It is solid that the lower surface of first support connecting frame (1-6-3) is connected with more spaced first fog-spray nozzles The lower end of fixed pole (1-6-2), the first fog-spray nozzle fixed link (1-6-2) is fixedly connected with the first fog-spray nozzle (1-6-1);First is spraying Head fixed link (1-6-2) is corresponding with the first fog-spray nozzle;First fog-spray nozzle fixed link (1-6-2) and the first fog-spray nozzle (1-6-1) It is arranged in " L shape ";Opening (1-5-4) of the spray direction of first fog-spray nozzle towards shell;First track (1-6-4) is vertically arranged In the side of shell (1-5);First support connecting frame (1-6-3) is provided with limited block, matches with the first track (1-6-4); When first flexible power mechanism (1-6-5) is stretched, the first support connecting frame (1-6-3) lifting is driven, and then drives first to be sprayed Head fixed link and the lifting of the first fog-spray nozzle;
Second mobile spraying system (1-7) include: several second fog-spray nozzles (1-7-1), the second fog-spray nozzle fixed link (1-7-2), Second support connecting frame (1-7-3), the second track (1-7-4), the second flexible power mechanism (1-7-5);Second flexible engine One end of structure (1-7-5) is fixed in the lower panel of shell (1-5), and the other end is connect with the second support connecting frame (1-7-3);The The lower surface of two support connecting frames (1-7-3) is connected with more spaced second fog-spray nozzle fixed links (1-7-2), the second spray The lower end of mist head fixed link (1-7-2) is fixedly connected with the second fog-spray nozzle (1-7-1);Second fog-spray nozzle fixed link (1-7-2) with Second fog-spray nozzle is corresponding;Second fog-spray nozzle fixed link (1-7-2) and the second fog-spray nozzle (1-7-1) are arranged in " L shape ";First spray Opening (1-5-4) of the spray direction of mist head towards shell;Second track (1-7-4) is vertically provided at the side of shell (1-5); Second support connecting frame (1-7-3) is provided with limited block, matches with the second track (1-7-4);Second flexible power mechanism (1- When 7-5) stretching, the second support connecting frame (1-7-3) lifting is driven, and then drives the second fog-spray nozzle fixed link and second spraying Head lifting.
Further, shell uses cuboid or cylindrical body.
Further, the first fog-spray nozzle (1-6-1) of first movement spraying system (1-6) and the second mobile spraying system (1- 7) setting is spaced between the second fog-spray nozzle (1-7-1).
Further, the second fog-spray nozzle fixed link (1-7-2) is identical as the length of the first fog-spray nozzle fixed link (1-6-2).
Use the electrolytic copper foil break of above-mentioned dilute sulfuric acid atomization system and the detection device of pin hole, comprising: atomization system System (1), copper foil (2), copper foil are switched to vertically transport by top guide roller (1-1) and top drive roller (1-2) by level run Row;Copper foil after spraying, by third stretch power mechanism connection pressure plate and rubber block to the molten of copper foil smooth surface Liquid is tentatively handled;Then cooperate by bottom guide roller (1-3), bottom driven roller (1-4), enable dilution heat of sulfuric acid It enough enters in break and pin hole;Finally in the pressure plate and rubber block by the 4th flexible power mechanism connection, so that Solution flows in the drainage tube of the pressure plate two sides of the 4th flexible power mechanism, in order to recycle.
The beneficial effects of the present invention are:
1) automatic operation of the detection to electrolytic copper foil break and pin hole is realized.
It 2), can be using 2 kinds of methods come real using the design of first movement spraying system and the second mobile spraying system Now it is coated with solution.
3) cooperation of bottom guide roller and bottom driven roller, can preferably realize solution be pressed into the break of copper foil with In pin hole.
4) The present invention gives the scheme of three embodiments, embodiment two replaces guide roller-driving using rubber compact heap Roller, the purpose is to: while squeezing, realize recycling solution;Embodiment example three is further improved on the basis of example 2, The design of rubber compact heap is conducive to recycle solution, however its compression is ineffective;But guide roller-driven roller substrate hold-down function It is good, but cannot achieve recycling solution, therefore, the advantage and disadvantage in summary designed devise: compact heap-guiding/driven roller- Compact heap.
Detailed description of the invention
The present invention is described in further detail for embodiment in reference to the accompanying drawing, but does not constitute to of the invention Any restrictions.
Fig. 1 is the structural design drawing of the detection device of the electrolytic copper foil break and pin hole in embodiment one.
Fig. 2 is the elevation of the atomization system in embodiment one.
Fig. 3 is Section A-A schematic diagram (the not elongated cloth of the first track, the second track of the atomization system in embodiment one It sets).
Fig. 4 is the Section A-A schematic diagram (the first track, the elongated arrangement of the second track) of the atomization system in embodiment one.
Fig. 5 is the design diagram of the first movement spraying system in embodiment one.
Fig. 6 is the design diagram of the second mobile spraying system in embodiment one.
Fig. 7 is the design diagram of support connecting frame and track cooperation.
Fig. 8 is the fog-spray nozzle juxtaposition of the first movement spraying system and the second mobile spraying system in embodiment one Situation.
Fig. 9 is the situation that the mobile spraying system of comparative example can not intersect in fog-spray nozzle.
Figure 10 is the structural design drawing of the detection device of the electrolytic copper foil break and pin hole in embodiment two.
Figure 11 is the design detail drawing of the L shaped plate body and the flexible power mechanism of third in embodiment two.
Figure 12 is the design detail drawing of the rubber block in embodiment two.
Figure 13 is the structural design drawing of the detection device of the electrolytic copper foil break and pin hole in embodiment three.
Specific embodiment
Embodiment one: the detection device of electrolytic copper foil break and pin hole, comprising: atomization system (1), copper foil (2).
Atomization system (1) includes: atomization system frame, top guide roller (1-1), top drive roller (1-2), bottom guiding Roller (1-3), bottom driven roller (1-4), shell (1-5);Top guide roller (1-1), top drive roller (1-2), bottom guide roller (1-3), bottom driven roller (1-4) and shell (1-5) are each attached on atomization system frame;
Top guide roller (1-1), top drive roller (1-2), bottom guide roller (1-3), bottom driven roller (1-4) are horizontally disposed;
Shell includes: upper board (1-5-1), lower panel (1-5-2) and sidewall paneling (1-5-3), is provided with out on sidewall paneling Mouth (1-5-4);Cuboid or cylindrical body can be used in shell;
Further include: first movement spraying system (1-6), second mobile spraying system (1-7), first movement spraying system (1-6) It include: several first fog-spray nozzles (1-6-1), the first fog-spray nozzle fixed link (1-6-2), the first support connecting frame (1-6-3), first Track (1-6-4), the first flexible power mechanism (1-6-5);
First movement spraying system (1-6), second mobile spraying system (1-7) are separately positioned on the corresponding of shell (1-5) Top and lower part;
One end of first flexible power mechanism (1-6-5) is fixed on the upper board of shell (1-5), and the other end and the first support connect Connect frame (1-6-3) connection;
The lower surface of first support connecting frame (1-6-3) is connected with more spaced first fog-spray nozzle fixed links (1-6-2), The lower end of first fog-spray nozzle fixed link (1-6-2) is fixedly connected with the first fog-spray nozzle (1-6-1);
First fog-spray nozzle fixed link (1-6-2) is corresponding with the first fog-spray nozzle;
First fog-spray nozzle fixed link (1-6-2) and the first fog-spray nozzle (1-6-1) are arranged in " L shape ";
Opening (1-5-4) of the spray direction of first fog-spray nozzle towards shell;
First track (1-6-4) is vertically provided at the side of shell (1-5), particularly, is arranged corresponding with opening (1-5-4) Side;
First support connecting frame (1-6-3) is provided with limited block, matches with the first track (1-6-4);
When first flexible power mechanism (1-6-5) is stretched, the first support connecting frame (1-6-3) lifting is driven, and then drive first Fog-spray nozzle fixed link and the lifting of the first fog-spray nozzle.
Second mobile spraying system (1-7) includes: several second fog-spray nozzles (1-7-1), the second fog-spray nozzle fixed link (1-7- 2), the second support connecting frame (1-7-3), the second track (1-7-4), the second flexible power mechanism (1-7-5);
One end of second flexible power mechanism (1-7-5) is fixed in the lower panel of shell (1-5), and the other end and the second support connect Connect frame (1-7-3) connection;
The lower surface of second support connecting frame (1-7-3) is connected with more spaced second fog-spray nozzle fixed links (1-7-2), The lower end of second fog-spray nozzle fixed link (1-7-2) is fixedly connected with the second fog-spray nozzle (1-7-1);
Second fog-spray nozzle fixed link (1-7-2) is corresponding with the second fog-spray nozzle;
Second fog-spray nozzle fixed link (1-7-2) and the second fog-spray nozzle (1-7-1) are arranged in " L shape ";
Opening (1-5-4) of the spray direction of first fog-spray nozzle towards shell;
Second track (1-7-4) is vertically provided at the side of shell (1-5), particularly, is arranged corresponding with opening (1-5-4) Side;
Second support connecting frame (1-7-3) is provided with limited block, matches with the second track (1-7-4);
When second flexible power mechanism (1-7-5) is stretched, the second support connecting frame (1-7-3) lifting is driven, and then drive second Fog-spray nozzle fixed link and the lifting of the second fog-spray nozzle;
Particularly, the first fog-spray nozzle (1-6-1) of first movement spraying system (1-6) is with second mobile spraying system (1-7's) Setting is spaced between second fog-spray nozzle (1-7-1).
Particularly, the second fog-spray nozzle fixed link (1-7-2) is identical as the length of the first fog-spray nozzle fixed link (1-6-2).
Working method includes following two:
The first, copper foil changes into vertical traveling by level after top guide roller (1-1), top drive roller (1-2);
First flexible power mechanism (1-6-5) and the second flexible power mechanism (1-7-5) stretch out, shrink simultaneously, i.e., first is spraying Head (1-6-1), the second fog-spray nozzle (1-7-1) go in the same direction or go relatively, and the design of the application is, the first fog-spray nozzle (1- 6-1), the second fog-spray nozzle (1-7-1) is arranged in a crossed manner, and between the first fog-spray nozzle (1-6-1) and the first support connecting frame (1-6-3) It is additionally provided between the first fog-spray nozzle fixed link (1-6-2), the second fog-spray nozzle (1-7-1) and the second support connecting frame (1-7-3) Being additionally provided with the second fog-spray nozzle fixed link (1-7-2) being capable of shape between the first fog-spray nozzle and the second fog-spray nozzle when going in the same direction At juxtaposition, guarantee that copper foil spraying area is not omitted;
Copper foil is changed to horizontal traveling by bottom guide roller (1-3), bottom driven roller (1-4), from vertical traveling;The smooth surface of copper foil Towards the first fog-spray nozzle (1-6-1), the second fog-spray nozzle (1-7-1).
If without the first fog-spray nozzle fixed link (1-6-2), the design of the second fog-spray nozzle fixed link (1-7-2), as shown in Figure 9 Comparative example, when the first fog-spray nozzle and the second fog-spray nozzle go in the same direction, since opposite fog-spray nozzle can not protrude opposite, copper foil There can be not spraying region (i.e. copper foil region between the first fog-spray nozzle and the second fog-spray nozzle).
Particularly, the first fog-spray nozzle fixed link (1-6-2) is identical as the length of the second fog-spray nozzle fixed link (1-7-2).
Second, copper foil changes into vertical row by level after top guide roller (1-1), top drive roller (1-2) Into;First flexible power mechanism (1-6-5) is stretched out, and the first fog-spray nozzle (1-6-1) decline is driven, meanwhile, the second flexible engine Structure (1-7-5) is shunk, and drives the second fog-spray nozzle (1-7-1) decline;First flexible power mechanism (1-6-5) is shunk, and drives first Fog-spray nozzle (1-6-1) rises, meanwhile, the second flexible power mechanism (1-7-5) is stretched out, and the second fog-spray nozzle (1-7-1) is driven to rise; Copper foil is changed to horizontal traveling by bottom guide roller (1-3), bottom driven roller (1-4), from vertical traveling.
Copper foil is changed to horizontal traveling by bottom guide roller (1-3), bottom driven roller (1-4), from vertical traveling, above-mentioned to set The purpose of meter is, is squeezed using guide roller dilute sulfuric acid atomized liquid, guarantees that atomized liquid can enter the break of copper foil In pin hole.
Particularly, the upper board (1-5-1) of shell (1-5) is higher than top guide roller (1-1);The lower panel of shell (1-5) (1-5-2) is lower than bottom guide roller (1-3);The purpose of above-mentioned design is the first flexible power mechanism (1-6-5) in order to guarantee When being retracted to maximum value, the first fog-spray nozzle (1-6-1) can be concordant with the lower surface of top guide roller (1-1);Second is flexible For power mechanism (1-7-5) when being retracted to maximum value, the second fog-spray nozzle (1-7-1) can be flat with the upper surface of bottom guide roller Together.
Particularly, the first fog-spray nozzle (1-6-1), the second fog-spray nozzle (1-7-1) one end connect with feed liquid hose.
As shown in figure 3, the length of the first track (1-6-4), the second track (1-7-4) can choose: along the height of shell Spend not elongated arrangement.
As shown in figure 4, the length of the first track (1-6-4), the second track (1-7-4) can choose: along the height of shell Spend elongated arrangement.
Embodiment two: bottom guide roller (1-3), bottom driven roller (1-4) in embodiment one, copper foil is oriented to by bottom The extruding of both roller (1-3), bottom driven roller (1-4), so that dilution heat of sulfuric acid can more fully enter infiltration after being squeezed Point and pin hole.
However, there are following differences for embodiment one, when equipment is longer between in the running, in the bottom of atomization system (1), Especially bottom guide roller (1-3), more solution can be gathered at the position bottom driven roller (1-4).The purpose of embodiment two exists In solving the above problems.
The difference is that, eliminated with embodiment one: bottom guide roller (1-3), bottom driven roller (1-4).Atomization It is provided with L shaped plate body (1-8) in the lower panel of the shell of system (1), is fixed with third in the vertical section of L shaped plate body (1-8) Flexible power mechanism (1-9), the stretch other end of power mechanism (1-9) of third are connected with pressure plate, the surface interval of pressure plate Be provided with several compression rubber blocks (1-10), the width of rubber block (1-10) and copper foil it is of same size;
Rubber block (1-10) of the one side of copper foil towards elasticity, vertical supporting (3) of the another side towards rack;
Particularly, the upper surface setting of rubber block (1-10) is fluted, and the two sides of rubber block (1-10) are provided with drainage device, Power mechanism (1-9) is stretched by third to adjust the pressing force between rubber block (1-10) and copper foil, and purpose is mainly In the groove for the upper surface that the solution on copper foil smooth surface surface is drained to rubber block (1-10), rubber block (1-10) is then flowed to Two sides drainage device, and then recycle.
Embodiment three: it on the basis of example 2, is further improved.Bottom guide roller (1-3), bottom driven roller (1- 4) setting is in the lower section of shell (1-5), i.e., copper foil first passes through after rubber block (1-10) and vertical supporting (3) tentatively remove moisture removal, Then copper foil is made to be changed to level run by vertically running by bottom guide roller (1-3), bottom driven roller (1-4), so that dilute Sulfuric acid solution is able to enter in break and pin hole;The 4th flexible power finally is installed in the lower surface of the lower panel of shell Mechanism, the other end of the 4th flexible power mechanism are connected with pressure plate, and the surface of pressure plate is arranged at intervals with several compression rubber Block, the width of rubber block and copper foil it is of same size.
The mode of embodiment three is copper foil after spraying, by third stretch power mechanism connection pressure plate with And rubber block tentatively handles the solution of copper foil smooth surface;Then passing through bottom guide roller (1-3), bottom driven roller (1- 4) cooperate, so that dilution heat of sulfuric acid is able to enter in break and pin hole;Finally passing through the 4th flexible power mechanism connection Pressure plate and rubber block so that solution flows in the drainage tube of the pressure plate two sides of the 4th flexible power mechanism, in order to Recycling.
Particularly, the flexible power mechanism in embodiment one, two, three uses hydraulic cylinder or pneumatic cylinder.
Embodiment provided above is better embodiment of the invention, only is used to facilitate to illustrate the present invention, not to this hair It is bright to make any form of restriction, any those of ordinary skill in the art, if not departing from the proposed skill of the present invention In the range of art feature, using the equivalent embodiment for locally changing or modifying made by disclosed technology contents, and Without departing from technical feature content of the invention, in the range of still falling within the technology of the present invention feature.

Claims (7)

1. a kind of electrolytic copper foil break and Pinhole atomization system, which is characterized in that the atomization system (1) includes: Atomization system frame, top guide roller (1-1), top drive roller (1-2), bottom guide roller (1-3), bottom driven roller (1-4), Shell (1-5);Top guide roller (1-1), top drive roller (1-2) and shell (1-5) are each attached on atomization system frame;
Top guide roller (1-1), top drive roller (1-2), bottom guide roller (1-3), bottom driven roller (1-4) are horizontally disposed;
Copper foil is switched to vertically run by top guide roller (1-1) and top drive roller (1-2) by level run;
Shell includes: upper board (1-5-1), lower panel (1-5-2) and sidewall paneling (1-5-3), is provided with out on sidewall paneling Mouth (1-5-4);
Further include: first movement spraying system (1-6), second mobile spraying system (1-7);
It is molten to the smooth surface of copper foil spraying dilute sulfuric acid with second mobile spraying system (1-7) by first movement spraying system (1-6) Liquid;The spraying granule size that first movement spraying system (1-6), second move spraying system (1-7) is 55-90 μm;
L shaped plate body (1-8) is provided in the lower panel of the shell of atomization system (1), it is solid in the vertical section of L shaped plate body (1-8) There is third to stretch power mechanism (1-9), the stretch other end of power mechanism (1-9) of third is connected with pressure plate, pressure plate surely Surface is arranged at intervals with several compression rubber blocks (1-10), the width of rubber block (1-10) and copper foil it is of same size;Copper foil Rubber block (1-10) on one side towards elasticity, vertical supporting (3) of the another side towards rack;
Bottom guide roller (1-3), bottom driven roller (1-4) are arranged in the lower section of shell (1-5), i.e. copper foil first passes through rubber block After (1-10) and vertical supporting (3) tentatively removes moisture removal, then made by bottom guide roller (1-3), bottom driven roller (1-4) Copper foil is changed to level run by vertically running, so that dilution heat of sulfuric acid is able to enter in break and pin hole;
The 4th flexible power mechanism, the other end connection of the 4th flexible power mechanism are installed in the lower surface of the lower panel of shell Have a pressure plate, the surface of pressure plate is arranged at intervals with several compression rubber blocks, the width of rubber block and copper foil it is of same size.
2. electrolytic copper foil break as described in claim 1 and Pinhole atomization system, which is characterized in that rubber block The upper surface setting of (1-10) is fluted, and the two sides of rubber block (1-10) are provided with drainage device, are stretched power by third Mechanism (1-9) adjusts the pressing force between rubber block (1-10) and copper foil, and purpose is primarily to by copper foil smooth surface surface The solution upper surface that is drained to rubber block (1-10) groove in, then flow to the drainage dress of the two sides of rubber block (1-10) It sets, and then recycles.
3. electrolytic copper foil break as described in claim 1 and Pinhole atomization system, which is characterized in that first movement Spraying system (1-6) includes: several first fog-spray nozzles (1-6-1), the first fog-spray nozzle fixed link (1-6-2), the first support connection Frame (1-6-3), the first track (1-6-4), the first flexible power mechanism (1-6-5);
First movement spraying system (1-6), second mobile spraying system (1-7) are separately positioned on the corresponding of shell (1-5) Top and lower part;
One end of first flexible power mechanism (1-6-5) is fixed on the upper board of shell (1-5), and the other end and the first support connect Connect frame (1-6-3) connection;It is solid that the lower surface of first support connecting frame (1-6-3) is connected with more spaced first fog-spray nozzles The lower end of fixed pole (1-6-2), the first fog-spray nozzle fixed link (1-6-2) is fixedly connected with the first fog-spray nozzle (1-6-1);First is spraying Head fixed link (1-6-2) is corresponding with the first fog-spray nozzle;First fog-spray nozzle fixed link (1-6-2) and the first fog-spray nozzle (1-6-1) It is arranged in " L shape ";Opening (1-5-4) of the spray direction of first fog-spray nozzle towards shell;First track (1-6-4) is vertically arranged In the side of shell (1-5);First support connecting frame (1-6-3) is provided with limited block, matches with the first track (1-6-4); When first flexible power mechanism (1-6-5) is stretched, the first support connecting frame (1-6-3) lifting is driven, and then drives first to be sprayed Head fixed link and the lifting of the first fog-spray nozzle;
Second mobile spraying system (1-7) include: several second fog-spray nozzles (1-7-1), the second fog-spray nozzle fixed link (1-7-2), Second support connecting frame (1-7-3), the second track (1-7-4), the second flexible power mechanism (1-7-5);Second flexible engine One end of structure (1-7-5) is fixed in the lower panel of shell (1-5), and the other end is connect with the second support connecting frame (1-7-3);The The lower surface of two support connecting frames (1-7-3) is connected with more spaced second fog-spray nozzle fixed links (1-7-2), the second spray The lower end of mist head fixed link (1-7-2) is fixedly connected with the second fog-spray nozzle (1-7-1);Second fog-spray nozzle fixed link (1-7-2) with Second fog-spray nozzle is corresponding;Second fog-spray nozzle fixed link (1-7-2) and the second fog-spray nozzle (1-7-1) are arranged in " L shape ";First spray Opening (1-5-4) of the spray direction of mist head towards shell;Second track (1-7-4) is vertically provided at the side of shell (1-5); Second support connecting frame (1-7-3) is provided with limited block, matches with the second track (1-7-4);Second flexible power mechanism (1- When 7-5) stretching, the second support connecting frame (1-7-3) lifting is driven, and then drives the second fog-spray nozzle fixed link and second spraying Head lifting.
4. electrolytic copper foil break as described in claim 1 and Pinhole atomization system, which is characterized in that shell uses Cuboid or cylindrical body.
5. electrolytic copper foil break as claimed in claim 3 and Pinhole atomization system, which is characterized in that first movement The second fog-spray nozzle (1-7-1) of the first fog-spray nozzle (1-6-1) of spraying system (1-6) and second mobile spraying system (1-7) it Between be spaced setting.
6. electrolytic copper foil break as claimed in claim 3 and Pinhole atomization system, which is characterized in that second is spraying Head fixed link (1-7-2) is identical as the length of the first fog-spray nozzle fixed link (1-6-2).
7. a kind of electrolytic copper foil break of dilute sulfuric acid atomization system and the detection device of pin hole, comprising: as claim 1-6 appoints Atomization system (1), copper foil (2) described in one, copper foil is by top guide roller (1-1) and top drive roller (1-2), by level Operation switchs to vertically run;Copper foil is stretched the pressure plate and rubber block of power mechanism connection by third after spraying The solution of copper foil smooth surface is tentatively handled;Then cooperate by bottom guide roller (1-3), bottom driven roller (1-4), make Dilution heat of sulfuric acid is obtained to be able to enter in break and pin hole;Finally the pressure plate by the 4th flexible power mechanism connection with And rubber block, so that solution flows in the drainage tube of the pressure plate two sides of the 4th flexible power mechanism, in order to recycle.
CN201811034482.7A 2018-09-06 2018-09-06 Atomization system for detecting penetration point and pinhole of electrolytic copper foil and application thereof Expired - Fee Related CN109142384B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110404698A (en) * 2019-08-01 2019-11-05 台州弘锐精密机械有限公司 A kind of stainless steel plate production and processing technology

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1868011A (en) * 2003-08-27 2006-11-22 昭和电工株式会社 Sheet for capacitor electrodes, method and apparatus for manufacturing the same, and electrolytic acpacitors
CN101357356A (en) * 2007-07-31 2009-02-04 上海华立电子工程有限公司 Automatic sprayer and control method thereof
CN201508310U (en) * 2009-07-31 2010-06-16 强晓明 Online detection device for electrolytic copper foil production
JP2010247417A (en) * 2009-04-15 2010-11-04 Sumitomo Metal Mining Co Ltd Method of manufacturing heat-resistant resin film with metal base layer and heat-resistant resin film with metal film, and device for manufacturing the heat-resistant resin film with metal base layer
US20120103521A1 (en) * 2010-10-27 2012-05-03 Zhen Ding Technology Co., Ltd. Etching apparatus with suction mechanism
CN102798638A (en) * 2011-05-25 2012-11-28 东强(连州)铜箔有限公司 Method for detecting penetration points and pinholes of electrolytic copper foil
CN108254321A (en) * 2018-01-18 2018-07-06 广东嘉元科技股份有限公司 A kind of processing method of copper foil surface aberration reparation
CN108459028A (en) * 2018-04-10 2018-08-28 杨丹霞 Electrolytic copper foil infiltration Pinhole equipment

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1868011A (en) * 2003-08-27 2006-11-22 昭和电工株式会社 Sheet for capacitor electrodes, method and apparatus for manufacturing the same, and electrolytic acpacitors
CN101357356A (en) * 2007-07-31 2009-02-04 上海华立电子工程有限公司 Automatic sprayer and control method thereof
JP2010247417A (en) * 2009-04-15 2010-11-04 Sumitomo Metal Mining Co Ltd Method of manufacturing heat-resistant resin film with metal base layer and heat-resistant resin film with metal film, and device for manufacturing the heat-resistant resin film with metal base layer
CN201508310U (en) * 2009-07-31 2010-06-16 强晓明 Online detection device for electrolytic copper foil production
US20120103521A1 (en) * 2010-10-27 2012-05-03 Zhen Ding Technology Co., Ltd. Etching apparatus with suction mechanism
CN102798638A (en) * 2011-05-25 2012-11-28 东强(连州)铜箔有限公司 Method for detecting penetration points and pinholes of electrolytic copper foil
CN108254321A (en) * 2018-01-18 2018-07-06 广东嘉元科技股份有限公司 A kind of processing method of copper foil surface aberration reparation
CN108459028A (en) * 2018-04-10 2018-08-28 杨丹霞 Electrolytic copper foil infiltration Pinhole equipment

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
GUANBIN YI ET AL.: "Experimental analysis of pinholes on electrolytic copper foil and their prevention", 《ENGINEERING FAILURE ANALYSIS》 *
范程华等: "基于89C51 的电解铜箔针孔在线检测装置设计", 《合肥师范学院学报》 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110404698A (en) * 2019-08-01 2019-11-05 台州弘锐精密机械有限公司 A kind of stainless steel plate production and processing technology

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