CN204417571U - The zinc-plated solder coater on electric of copper wire - Google Patents
The zinc-plated solder coater on electric of copper wire Download PDFInfo
- Publication number
- CN204417571U CN204417571U CN201520025391.2U CN201520025391U CN204417571U CN 204417571 U CN204417571 U CN 204417571U CN 201520025391 U CN201520025391 U CN 201520025391U CN 204417571 U CN204417571 U CN 204417571U
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- coating
- immersion liquid
- liquid groove
- copper wire
- fixedly connected
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Abstract
The utility model discloses the zinc-plated solder coater on electric of a kind of copper wire, its drip irrigation device is that immersion liquid groove is fixedly connected on base plate by support, immersion liquid groove internal fixtion is connected with coating sponge, slip coating unit is provided with in immersion liquid groove, slip coating unit comprises slide post, the cotton brush of coating, immersion liquid groove side is provided with the slip through hole slided for slide post, slide post is rotatably connected to rotation axis near coating sponge one end, the cotton brush of coating is fixedly connected with on the rotating shaft, the cotton brush of coating is conflicted at coating sponge top, the slide post the other end is fixedly connected with limiting plate, limiting plate is provided with elastic component near immersion liquid groove one end, elastic component is conflicted on immersion liquid groove outer side, base plate is fixedly connected with mair motor, mair motor is fixedly connected with eccentric wheel, eccentric wheel excircle side and limiting plate are conflicted, immersion liquid groove top is fixedly connected with jet head, effectively prevent from applying the surperficial conjunctiva of cotton brush, improve the coating effect of soldering flux, and decrease the cost of maintenance.
Description
Technical field
The utility model relates to a kind of coating unit, and more particularly, it relates to the zinc-plated solder coater on electric of a kind of copper wire.
Background technology
Copper wire pull-out winder is removed copper wire oxide on surface by coating unit successively and is helped zinc-plated, then is undertaken zinc-plated by the tin stove with liquefaction, after zinc-plated in copper wire income storage line device.
The zinc-plated insulation rubber that can prevent of copper wire is clamminess, core blackout becomes fragile, prevent redox reaction and produce verdigris, improve conduction, improve wire performance, conveniently copper wire be plated in copper wire enter tin stokehold copper wire is passed into there is soldering flux immersion liquid groove in clean, remove copper wire oxide on surface, and strengthen zinc-plated effect, but the copper wire in winder is pulled through rotation guide wheel and copper wire is pressed into immersion liquid groove by existing installation, because copper wire pressurized produces moderate finite deformation, copper wire is easily damaged, and copper wire by after immersion liquid groove often with excessive soldering flux, too much soldering flux arrives in tin stove and easily produces the healthy of more toxic gas infringement staff, and waste a large amount of soldering fluxs, improve production cost, and easily enter dust and other impurities in immersion liquid groove, foreign material easily stick to copper wire surface, the impact larger on the zinc-plated generation of copper wire, and copper wire is clipped on 2 pieces of coating sponges by the zinc-plated solder coater on electric of present copper wire, soldering flux is injected again on coating sponge, but ran the long-time rear easy conjunctiva of coating sponge surface contacted with copper wire for a long time, cause soldering flux cannot be coated to copper wire surface normally, cause the soldering flux on copper wire surface containing quantity not sufficient, cause zinc-plated decreased effectiveness, and people need frequent replacing coating sponge, improve the cost of maintenance.
Utility model content
For the deficiency that prior art exists, the purpose of this utility model is to provide one to be not easy conjunctiva, applies effective, the zinc-plated solder coater on electric of the copper wire without the need to often safeguarding.
For achieving the above object, the utility model provides following technical scheme: the zinc-plated solder coater on electric of a kind of copper wire, comprise base plate, support, immersion liquid groove, described immersion liquid groove is fixedly connected on base plate by support, described immersion liquid groove internal fixtion is connected with coating sponge, slip coating unit is provided with in described immersion liquid groove, described slip coating unit comprises slide post, the cotton brush of coating, described immersion liquid groove side is provided with the slip through hole slided for slide post, described slide post is rotatably connected to rotation axis near coating sponge one end, described coating cotton brush is fixedly connected with on the rotating shaft, described coating cotton brush is conflicted at coating sponge top, the described slide post the other end is fixedly connected with limiting plate, described limiting plate is provided with elastic component near immersion liquid groove one end, described elastic component is conflicted on immersion liquid groove outer side, described base plate is fixedly connected with mair motor, described mair motor is fixedly connected with eccentric wheel, described eccentric wheel excircle side and limiting plate are conflicted, described immersion liquid groove top is fixedly connected with jet head.
Preferably, described slip coating unit is provided with 2.
Preferably, described slip coating unit also comprises helper motor, and described rotation axis is rotationally connected by helper motor and slide post.
Preferably, described immersion liquid groove another side is provided with the erection through hole for rotation axis erection.
Preferably, described limiting plate is provided with scroll wheel near eccentric wheel side, and described limiting plate is conflicted in eccentric wheel excircle side by scroll wheel.
Preferably, described slide post is rectangular parallelepiped, and described coating cotton brush is right cylinder.
Compared with prior art, the beneficial effects of the utility model are: copper wire leads to coating sponge top from pass-out winder, conflict at coating sponge top owing to applying cotton brush, coating cotton brush is conflicted on copper wire another side, copper wire enters in tin stove after coating sponge, soldering flux is taken out by extraneous water pump and is pressed onto in jet head, soldering flux is sprayed on coating cotton by jet head and brushes, apply cotton brush uniform adsorption soldering flux, the cotton brush of coating is driven to rotate by the slip of copper wire, make copper wire surface-coated even, while copper wire coating, mair motor rotates slowly, band movable eccentric wheel rotates, limiting plate is promoted when eccentric wheel rotates, make limiting plate compression spring, make the slip of slip coating unit transverse direction, retract when eccentric wheel is rotated further, make limiting plate by the elastic force of compression spring, by overall for slip coating unit horizontal retraction, eccentric wheel constantly rotates, carrying out about slip coating unit entirety is slided, coating cotton brush is made to produce relative slip with copper wire, effectively prevent from applying the same surface of cotton brush and copper wire Long contact time, virgin state is returned to by applying the cotton deformability of self of brushing after the face just contacted with copper wire is separated with copper wire, effectively prevent from applying the surperficial conjunctiva of cotton brush, improve the coating effect of soldering flux, and decrease the cost of maintenance.
Accompanying drawing explanation
Fig. 1 is the stereographic map of the zinc-plated solder coater on electric embodiment of the utility model copper wire;
Fig. 2 is the working state figure of the zinc-plated solder coater on electric embodiment of the utility model copper wire;
Fig. 3 is the structure iron of the utility model copper wire zinc-plated solder coater on electric embodiment immersion liquid groove;
Fig. 4 is the structure iron of the utility model copper wire zinc-plated solder coater on electric embodiment slip coating unit.
Reference numeral: 1, base plate; 11, support; 2, immersion liquid groove; 21, sponge is applied; 22, jet head; 23, slip through hole; 24, through hole is set up; 3, mair motor; 31, eccentric wheel; 4, slip coating unit; 41, slide post; 42, rotation axis; 43, limiting plate; 44, the cotton brush of coating; 45, spring; 46, helper motor; 47, scroll wheel; 5, copper wire.
Embodiment
Referring to figs. 1 through Fig. 4, the zinc-plated solder coater on electric embodiment of the utility model copper wire is described further.
The zinc-plated solder coater on electric of a kind of copper wire, comprise base plate 1, support 11, immersion liquid groove 2, described immersion liquid groove 2 is fixedly connected on base plate 1 by support 11, described immersion liquid groove 2 internal fixtion is connected with coating sponge 21, slip coating unit 4 is provided with in described immersion liquid groove 2, described slip coating unit 4 comprises slide post 41, apply cotton brush 44, described slide post 41 is rectangular parallelepiped, described immersion liquid groove 2 side is provided with the slip through hole 23 slided for slide post 41, described slide post 41 is rotatably connected to rotation axis 42 near coating sponge 21 one end, the cotton brush 44 of described coating is right cylinder, the cotton brush 44 of described coating is fixedly connected on rotation axis 42, the cotton brush 44 of described coating is conflicted at coating sponge 21 top, described slide post 41 the other end is fixedly connected with limiting plate 43, described limiting plate 43 is provided with spring 45 near immersion liquid groove 2 one end, described spring 45 is conflicted on immersion liquid groove 2 outer side, described base plate 1 is fixedly connected with mair motor 3, described mair motor 3 is fixedly connected with eccentric wheel 31, described eccentric wheel 31 excircle side and limiting plate 43 are conflicted, described immersion liquid groove 2 top is fixedly connected with jet head 22, copper wire 5 leads to coating sponge 21 top from pass-out winder, conflict at coating sponge 21 top owing to applying cotton brush 44, the cotton brush 44 of coating is made to conflict on copper wire 5 another side, copper wire 5 enters in tin stove after coating sponge 21, soldering flux is taken out by extraneous water pump and is pressed onto in jet head 22, soldering flux is sprayed on the cotton brush 44 of coating by jet head 22, apply cotton brush 44 uniform adsorption soldering flux, the cotton brush 44 of coating is driven to rotate by the slip of copper wire 5, make copper wire 5 surface-coated even, while copper wire 5 applies, mair motor 3 rotates slowly, band movable eccentric wheel 31 rotates, limiting plate 43 is promoted when eccentric wheel 31 rotates, make limiting plate 43 compression spring 45, make the slip of slip coating unit 4 transverse direction, retract when eccentric wheel 31 is rotated further, make limiting plate 43 by the elastic force of compression spring 45, by overall for slip coating unit 4 horizontal retraction, eccentric wheel 31 constantly rotates, the carrying out of the overall left and right of slip coating unit 4 is slided, the cotton brush 44 of coating is made to produce relative slip with copper wire 5, effectively prevent from applying the cotton same surface of brush 44 and copper wire 5 Long contact time, virgin state is returned to by the deformability of self applying cotton brush 44 after the face just contacted with copper wire 5 is separated with copper wire 5, effectively prevent from applying the surperficial conjunctiva of cotton brush 44, improve the coating effect of soldering flux, and decrease the cost of maintenance, and unnecessary soldering flux flows in immersion liquid groove 2, suction applies on sponge 21 by the adsorption effect of coating sponge 21 again by the soldering flux in immersion liquid groove 2, again soldering flux is coated in copper wire 5 on the surface, decrease the waste of soldering flux, because slide post 41 is rectangle, effectively prevent from slide post 41 from producing when sliding to rotate, owing to applying cotton brush 44 for right cylinder, the cotton brush 44 of convenient coating rotates.
Described slip coating unit 4 is provided with 2, makes same copper wire 5 by 2 times coatings, and effective guarantee copper wire 5 applies completely, effectively prevents soldering flux from applying less, and effectively raises the homogeneity of soldering flux coating.
Described slip coating unit 4 also comprises spring 45 helper motor 46, described rotation axis 42 is rotationally connected by spring 45 helper motor 46 and slide post 41, spring 45 helper motor 46 drives rotation axis 42 to rotate, rotation axis 42 is made to carry out rotation, make in coating procedure, to rotate the cotton brush 44 of coating, the cotton brush 44 of coating is rubbed on copper wire 5 surface relatively, soldering flux is effectively made to be coated in copper wire 5 surface uniformly, make coating more even, and apply generation centrifugal force when cotton brush 44 rotates, cotton brush 44 surface of the coating of depression is effectively made to throw away, the cotton brush 44 of coating is effectively made to restore.
Described immersion liquid groove 2 another side is provided with the erection through hole 24 set up for rotation axis 42, rotation axis 42 is inserted in erection through hole 24 away from slide post 41 one end, effectively prevent from rotation axis 42 from producing away from slide post 41 one end to rock or this skew, prevent from producing error during coating soldering flux, make coating soldering flux more even.
Described limiting plate 43 is provided with scroll wheel 47 near eccentric wheel 31 side, described limiting plate 43 is conflicted in eccentric wheel 31 excircle side by scroll wheel 47, scroll wheel 47 and eccentric wheel 31 produce when conflicting and rotate, effectively decrease the frictional force of eccentric wheel 31 and limiting plate 43, prevent wearing and tearing, effectively raise the life-span of use.
Claims (6)
1. the zinc-plated solder coater on electric of copper wire, comprise base plate, support, immersion liquid groove, described immersion liquid groove is fixedly connected on base plate by support, described immersion liquid groove internal fixtion is connected with coating sponge, it is characterized in that: in described immersion liquid groove, be provided with slip coating unit, described slip coating unit comprises slide post, the cotton brush of coating, described immersion liquid groove side is provided with the slip through hole slided for slide post, described slide post is rotatably connected to rotation axis near coating sponge one end, described coating cotton brush is fixedly connected with on the rotating shaft, described coating cotton brush is conflicted at coating sponge top, the described slide post the other end is fixedly connected with limiting plate, described limiting plate is provided with elastic component near immersion liquid groove one end, described elastic component is conflicted on immersion liquid groove outer side, described base plate is fixedly connected with mair motor, described mair motor is fixedly connected with eccentric wheel, described eccentric wheel excircle side and limiting plate are conflicted, described immersion liquid groove top is fixedly connected with jet head.
2. the zinc-plated solder coater on electric of copper wire according to claim 1, is characterized in that: described slip coating unit is provided with 2.
3. the zinc-plated solder coater on electric of copper wire according to claim 2, is characterized in that: described slip coating unit also comprises helper motor, and described rotation axis is rotationally connected by helper motor and slide post.
4. the zinc-plated solder coater on electric of copper wire according to claim 3, is characterized in that: described immersion liquid groove another side is provided with the erection through hole for rotation axis erection.
5. the zinc-plated solder coater on electric of copper wire according to claim 4, is characterized in that: described limiting plate is provided with scroll wheel near eccentric wheel side, and described limiting plate is conflicted in eccentric wheel excircle side by scroll wheel.
6. the zinc-plated solder coater on electric of copper wire according to claim 5, is characterized in that: described slide post is rectangular parallelepiped, and described coating cotton brush is right cylinder.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520025391.2U CN204417571U (en) | 2015-01-15 | 2015-01-15 | The zinc-plated solder coater on electric of copper wire |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520025391.2U CN204417571U (en) | 2015-01-15 | 2015-01-15 | The zinc-plated solder coater on electric of copper wire |
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CN204417571U true CN204417571U (en) | 2015-06-24 |
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CN201520025391.2U Expired - Fee Related CN204417571U (en) | 2015-01-15 | 2015-01-15 | The zinc-plated solder coater on electric of copper wire |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107363368A (en) * | 2016-05-13 | 2017-11-21 | 浙江盾安禾田金属有限公司 | A kind of automatic welder |
CN111705282A (en) * | 2020-06-24 | 2020-09-25 | 浙江东南新材科技有限公司 | Production process of high-strength galvanized steel coil |
-
2015
- 2015-01-15 CN CN201520025391.2U patent/CN204417571U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107363368A (en) * | 2016-05-13 | 2017-11-21 | 浙江盾安禾田金属有限公司 | A kind of automatic welder |
CN111705282A (en) * | 2020-06-24 | 2020-09-25 | 浙江东南新材科技有限公司 | Production process of high-strength galvanized steel coil |
CN111705282B (en) * | 2020-06-24 | 2022-04-08 | 浙江东南新材科技有限公司 | Production process of high-strength galvanized steel coil |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150624 Termination date: 20190115 |
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CF01 | Termination of patent right due to non-payment of annual fee |