CN208898944U - A kind of copper wire continuous annealing oxygen-proof protecting device - Google Patents

A kind of copper wire continuous annealing oxygen-proof protecting device Download PDF

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Publication number
CN208898944U
CN208898944U CN201821791081.1U CN201821791081U CN208898944U CN 208898944 U CN208898944 U CN 208898944U CN 201821791081 U CN201821791081 U CN 201821791081U CN 208898944 U CN208898944 U CN 208898944U
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CN
China
Prior art keywords
shell
wall
copper wire
bolted
cooling
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Expired - Fee Related
Application number
CN201821791081.1U
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Chinese (zh)
Inventor
徐秋远
熊小勇
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Jiangxi Hongzi Industrial Co Ltd
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Jiangxi Hongzi Industrial Co Ltd
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Priority to CN201821791081.1U priority Critical patent/CN208898944U/en
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Publication of CN208898944U publication Critical patent/CN208898944U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of copper wire continuous annealing oxygen-proof protecting devices, including the shell that cools down, leading-in bracket has been bolted in the top side outer wall of the cooling shell, and the outer circumferential walls of leading-in bracket are socketed with copper wire, pulley has been bolted in the both ends inner wall of the cooling shell, and the circle outer wall of copper wire one end and pulley far from leading-in bracket is slidably connected, the both ends inner wall of the cooling shell is rotatably connected to the same horizontal positioned rotation axis by bearing, and the paddle equidistantly distributed is bolted in the outer circumferential walls of rotation axis, rotation axis one end extends to the outside of cooling shell, rotation axis one end outer circumferential walls are socketed with handwheel.In the utility model, by being provided with cooling shell, high temperature copper wire coolant liquid in cooling shell can be made to carry out cooling processing, can quickly be cooled down, avoided high temperature copper wire chance air and aoxidize, the quality after ensure that copper wire annealing.

Description

A kind of copper wire continuous annealing oxygen-proof protecting device
Technical field
The utility model relates to copper wire production technical fields more particularly to a kind of copper wire continuous annealing to be filled with protection against oxidation It sets.
Background technique
Copper wire refers to made of being drawn as hot rolling copper rod unannealed (but the lesser silk of size may require intermediate annealing) Silk, can be used for knitmesh, cable, copper brush filter screen etc..
Copper wire gradually becomes smaller by the extruding diameter of wire-drawing equipment mold, but during copper wire deformation, easily makes At there is stress concentration phenomenon in copper wire internal structure, so as to cause the decline of copper wire quality, if stress not removed, copper wire meeting It is very easy to fracture, service life is very short, therefore, generally requires to carry out annealing operation to the copper wire after wire drawing, with Eliminate the internal stress generated after copper wire wire drawing.But in current production process, copper wire temperature after wire drawing is very high, this Copper wire can aoxidize at once after encountering air under the conditions of temperature, in order to guarantee that the quality after copper wire annealing is needed to its anti-oxidation guarantor Shield.
Utility model content
Purpose of the utility model is to solve disadvantages existing in the prior art, and a kind of copper wire proposed continuously moves back Fiery oxygen-proof protecting device, the problem of being put forward with effective solution background technique.
To achieve the goals above, the utility model adopts the technical scheme that
A kind of copper wire continuous annealing oxygen-proof protecting device, including cooling shell, the top side of the cooling shell Leading-in bracket has been bolted in outer wall, and the outer circumferential walls of leading-in bracket are socketed with copper wire, the both ends inner wall of the cooling shell Pulley is bolted, and the circle outer wall of copper wire one end and pulley far from leading-in bracket is slidably connected, the cooling shell The both ends inner wall of body is rotatably connected to the same horizontal positioned rotation axis by bearing, and the outer circumferential walls of rotation axis pass through spiral shell The paddle for being connected to and equidistantly distributing is tethered, rotation axis one end extends to the outside of cooling shell, rotation axis one end outer circumferential walls It is socketed with handwheel, condenser, the bottom outer wall of the cooling shell has been bolted in the top exterior walls of the cooling shell Cooling shell is bolted, and the bottom side outer wall of cooling shell is plugged with water inlet pipe, cooling one lateral roof of shell Outer wall is plugged with outlet pipe, and drawing liquid pump, and the output end of drawing liquid pump has been bolted in the bottom interior wall of the cooling shell There is circulation pipe by flanged joint, circulation pipe extends to the inside of cooling shell, and circulation pipe is extended to far from one end of drawing liquid pump The bottom of cooling shell, cooling shell side outer wall top are plugged with inlet tube, and cooling shell side outer wall passes through bolt It is connected with dry shell, pulley has been bolted in the both ends inner wall of dry shell.
Preferably, the top side outer wall of the dry shell is plugged with arc connecting tube, and arc connecting tube extends to The inside of cooling shell.
Preferably, nitrogen gas generator, and nitrogen gas generator one has been bolted in the top exterior walls of the dry shell Aspiration pump has been bolted in side outer wall, and the output end of aspiration pump has escape pipe by flanged joint.
Preferably, the bottom side outer wall of the dry shell has been bolted liquid collecting shell, and liquid collecting shell with Through-hole is offered between dry shell.
Preferably, mounting rack has been bolted in the dry shell side outer wall, and the both ends inner wall of mounting rack is logical It crosses bearing and is rotatably connected to collecting wheel.
Preferably, fixed block has been bolted in the dry shell side bottom outer wall, and outside the top of fixed block Wall has been connected through a screw thread threaded rod, and the top exterior walls of threaded rod are pasted with silicagel pad.
Preferably, supporting leg, and the bottom of supporting leg has been bolted in the bottom four corners outer wall of the cooling shell Universal wheel has been bolted in portion's outer wall.
Preferably, the drawing liquid pump, nitrogen gas generator, aspiration pump and condenser pass through conducting wire and are connected with switch, and open It closes and processor is connected with by conducting wire.
Compared with prior art, the utility model has the following beneficial effects:
1, by being provided with cooling shell, high temperature copper wire coolant liquid in cooling shell can be made to carry out cooling processing, made It can quickly cool down, and avoid high temperature copper wire chance air and aoxidize, the quality after ensure that copper wire annealing.
2, by being provided with drawing liquid pump, circulation pipe and cooling shell, the coolant liquid after cooling down to copper wire can be dropped Temperature processing, improve coolant liquid to the cooling quality of copper wire, improve work efficiency, by be provided with paddle, rotation axis and Coolant liquid in the shell that cools down can be stirred mixing, improve the cooling quality of coolant liquid, use convenient for people by handwheel.
3, by being provided with nitrogen gas generator, aspiration pump and air nozzle, the copper wire after can cooling down to coolant liquid is carried out again Primary cooling, avoids its surface from contacting with air, further avoids copper wire and aoxidize, and its surface is dried, just In adding the copper wire working process got off, by being provided with threaded rod, fixed block and silicagel pad, can by copper wire surface further into Row cleaning, convenient for collecting.
Detailed description of the invention
Fig. 1 be the utility model proposes a kind of copper wire continuous annealing oxygen-proof protecting device sectional structure signal Figure;
Fig. 2 be the utility model proposes a kind of copper wire continuous annealing oxygen-proof protecting device front view structure signal Figure;
Fig. 3 be the utility model proposes the local overlooking structure of copper wire continuous annealing oxygen-proof protecting device a kind of show It is intended to.
In figure: 1 leading-in bracket, 2 cooling shells, 3 paddles, 4 supporting legs, 5 outlet pipes, 6 cooling shells, 7 circulation pipes, 8 into Water pipe, 9 universal wheels, 10 drawing liquid pumps, 11 liquid collecting shells, 12 threaded rods, 13 fixed blocks, 14 silicagel pads, 15 mounting racks, 16 dry shells Body, 17 nitrogen gas generators, 18 escape pipes, 19 arc connecting tubes, 20 condensers, 21 copper wires, 22 collecting wheels, 23 rotation axis, 24 hands Wheel.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.
Referring to Fig.1-3, a kind of copper wire continuous annealing oxygen-proof protecting device, including cooling shell 2, cooling shell 2 Leading-in bracket 1 has been bolted in top side outer wall, and the outer circumferential walls of leading-in bracket 1 are socketed with copper wire 21, cooling shell 2 Pulley has been bolted in both ends inner wall, and the circle outer wall of copper wire 21 one end and pulley far from leading-in bracket 1 is slidably connected, The both ends inner wall of cooling shell 2 is rotatably connected to the same horizontal positioned rotation axis 23, and the circle of rotation axis 23 by bearing The paddle 3 equidistantly distributed is bolted in all outer walls, and 23 one end of rotation axis extends to the outside of cooling shell 2, turns 23 one end outer circumferential walls of moving axis are socketed with handwheel 24, and condenser 20 has been bolted in the top exterior walls of cooling shell 2, and cold Air inlet pipe and outlet tube are connected separately between condenser 20 and cooling shell 2, the bottom outer wall of cooling shell 2 is bolted There is cooling shell 6, and the bottom side outer wall of cooling shell 6 is plugged with water inlet pipe 8, cooling 6 side top exterior walls grafting of shell There is outlet pipe 5, drawing liquid pump 10 has been bolted in the bottom interior wall of cooling shell 2, and the output end of drawing liquid pump 10 passes through method Orchid is connected with circulation pipe 7, and circulation pipe 7 extends to the inside of cooling shell 6, and circulation pipe 7 is extended to far from one end of drawing liquid pump 10 The bottom of cooling shell 2,2 side outer wall top of cooling shell are plugged with inlet tube, and cooling 2 one end outer wall of shell offers installation Slot, and the inner wall of mounting groove has been connected by screw to observation window, dry shell has been bolted in cooling 2 side outer wall of shell 16, pulley has been bolted in the both ends inner wall of dry shell 16.
In the utility model, the top side outer wall of dry shell 16 is plugged with arc connecting tube 19, and arc connecting tube 19 extend to the inside of cooling shell 2, and nitrogen gas generator 17, and nitrogen has been bolted in the top exterior walls of dry shell 16 Aspiration pump has been bolted in 17 side outer wall of generator, and the output end of aspiration pump has escape pipe 18 by flanged joint, out Tracheae 18 extends to the bottom of dry shell 16, and the bottom outer wall of escape pipe 18 is connected by screw to the jet equidistantly distributed Liquid collecting shell 11, and liquid collecting shell 11 and dry shell 16 has been bolted in mouth, the bottom side outer wall of dry shell 16 Between offer through-hole, the top side outer wall of dry shell 16 offers the air dispelling hole equidistantly distributed, dry shell 16 1 Mounting rack 15 has been bolted in side outer wall, and the both ends inner wall of mounting rack 15 is rotatably connected to collecting wheel 22 by bearing, The one end of copper wire far from leading-in bracket 1 passes through arc connecting tube 19 and extends to the side outer wall of dry shell 16, dry shell 16 Fixed block 13 has been bolted in side bottom outer wall, and the top exterior walls of fixed block 13 have been connected through a screw thread threaded rod 12, the top exterior walls of threaded rod 12 are pasted with silicagel pad 14, and branch has been bolted in the bottom four corners outer wall of cooling shell 2 Support leg 4, and the bottom outer wall of supporting leg 4 has been bolted universal wheel 9, drawing liquid pump 10, nitrogen gas generator 17, aspiration pump and Condenser 20 is connected with switch by conducting wire, and switchs and be connected with processor by conducting wire.
Working principle: at the present apparatus free time, will all actuators among the above, refer to dynamical element, electrical part and The power supply of adaptation is attached by conducting wire, specific connection means, should be referred in following working principles, between each electrical part successively Job order complete be electrically connected, detailed connection means, be techniques well known, it is following mainly introduce working principle and Process is not explained to electrical control, and device is moved to job site and fixation by universal wheel 9 when work, then will Antioxidant and cooling water is added into cooling shell 2 by inlet tube, suitable liquid level is added to by observation window, then passes through hand Paddle 3 in 24 rotation rotation axis 23 of wheel then will place to carry out being mixed into coolant liquid to antioxidant and cooling water Copper wire 21 after reason is entered in cooling shell 2 by leading-in bracket 1, and coolant liquid carries out fast cooling to it, and when cooling, which opens, takes out Coolant liquid is extracted into cooling shell 6 by liquid pump 10, then by the external cold water of water inlet pipe 8, is carried out to the coolant liquid in circulation pipe 7 Cooling, while opening condenser 20, and the coolant liquid of evaporation is carried out condensation collection, then the copper wire 21 after first step cooling into Enter into arc connecting tube 19, open nitrogen gas generator 17 and aspiration pump, coolant liquid is dropped by the air nozzle under escape pipe 18 21 surface of copper wire after temperature carries out cooling and drying again, and the copper wire 21 after drying is collected by collecting wheel 22, passes through and rotates spiral shell Rasp bar 12 contacts the silicagel pad 14 on threaded rod 12 with 21 surface of copper wire, is cleared up drying again to its surface.
The preferable specific embodiment of the above, only the utility model, but the protection scope of the utility model is not It is confined to this, anyone skilled in the art is within the technical scope disclosed by the utility model, practical according to this Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model Within enclosing.

Claims (8)

1. a kind of copper wire continuous annealing oxygen-proof protecting device, including cooling shell (2), which is characterized in that the cooling shell The top side outer wall of body (2) has been bolted leading-in bracket (1), and the outer circumferential walls of leading-in bracket (1) are socketed with copper wire (21), pulley has been bolted in the both ends inner wall of cooling shell (2), and copper wire (21) is far from leading-in bracket (1) The circle outer wall of one end and pulley is slidably connected, and the both ends inner wall of cooling shell (2) is rotatably connected to same by bearing Horizontal positioned rotation axis (23), and the paddle equidistantly distributed is bolted in the outer circumferential walls of rotation axis (23) (3), rotation axis (23) one end extends to the outside of cooling shell (2), and rotation axis (23) one end outer circumferential walls are socketed with handwheel (24), the top exterior walls of cooling shell (2) have been bolted condenser (20), the bottom of cooling shell (2) Outer wall has been bolted cooling shell (6), and the bottom side outer wall of cooling shell (6) is plugged with water inlet pipe (8), cooling Shell (6) side top exterior walls are plugged with outlet pipe (5), and pumping has been bolted in the bottom interior wall of cooling shell (2) Liquid pump (10), and the output end of drawing liquid pump (10) has circulation pipe (7) by flanged joint, circulation pipe (7) extends to cooling shell (6) inside, circulation pipe (7) extend to the bottom of cooling shell (2) far from the one end of drawing liquid pump (10), and cool down shell (2) one It is plugged with inlet tube at the top of the outer wall of side, cooling shell (2) side outer wall has been bolted dry shell (16), dry Pulley has been bolted in the both ends inner wall of shell (16).
2. a kind of copper wire continuous annealing oxygen-proof protecting device according to claim 1, which is characterized in that the drying The top side outer wall of shell (16) is plugged with arc connecting tube (19), and arc connecting tube (19) extends to cooling shell (2) Inside.
3. a kind of copper wire continuous annealing oxygen-proof protecting device according to claim 1, which is characterized in that the drying The top exterior walls of shell (16) have been bolted nitrogen gas generator (17), and nitrogen gas generator (17) side outer wall passes through spiral shell It tethers and is connected to aspiration pump, the output end of aspiration pump has escape pipe (18) by flanged joint.
4. a kind of copper wire continuous annealing oxygen-proof protecting device according to claim 1, which is characterized in that the drying The bottom side outer wall of shell (16) has been bolted liquid collecting shell (11), and liquid collecting shell (11) and drying shell (16) Between offer through-hole.
5. a kind of copper wire continuous annealing oxygen-proof protecting device according to claim 1, which is characterized in that the drying Shell (16) side outer wall has been bolted mounting rack (15), and the both ends inner wall of mounting rack (15) is rotated by bearing and connected It is connected to collecting wheel (22).
6. a kind of copper wire continuous annealing oxygen-proof protecting device according to claim 1, which is characterized in that the drying Shell (16) side bottom outer wall has been bolted fixed block (13), and the top exterior walls of fixed block (13) are connected by screw thread It is connected to threaded rod (12), the top exterior walls of threaded rod (12) are pasted with silicagel pad (14).
7. a kind of copper wire continuous annealing oxygen-proof protecting device according to claim 1, which is characterized in that the cooling The bottom four corners outer wall of shell (2) has been bolted supporting leg (4), and the bottom outer wall of supporting leg (4) passes through bolt It is connected with universal wheel (9).
8. a kind of copper wire continuous annealing oxygen-proof protecting device according to claim 1, which is characterized in that the drawing liquid Pump (10), nitrogen gas generator (17), aspiration pump and condenser (20) are connected with switch by conducting wire, and switch and connected by conducting wire It is connected to processor.
CN201821791081.1U 2018-11-01 2018-11-01 A kind of copper wire continuous annealing oxygen-proof protecting device Expired - Fee Related CN208898944U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821791081.1U CN208898944U (en) 2018-11-01 2018-11-01 A kind of copper wire continuous annealing oxygen-proof protecting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821791081.1U CN208898944U (en) 2018-11-01 2018-11-01 A kind of copper wire continuous annealing oxygen-proof protecting device

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114058796A (en) * 2021-11-15 2022-02-18 江西中核铜业有限公司 Annealing equipment for anti-oxidation bare copper wire
CN117265245A (en) * 2023-09-25 2023-12-22 江苏启航不锈钢精线有限责任公司 Stainless steel finish wire processing equipment with high-quality cooling quenching

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114058796A (en) * 2021-11-15 2022-02-18 江西中核铜业有限公司 Annealing equipment for anti-oxidation bare copper wire
CN117265245A (en) * 2023-09-25 2023-12-22 江苏启航不锈钢精线有限责任公司 Stainless steel finish wire processing equipment with high-quality cooling quenching
CN117265245B (en) * 2023-09-25 2024-08-23 江苏启航不锈钢精线有限责任公司 Stainless steel finish wire processing equipment with high-quality cooling quenching

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190524

Termination date: 20201101

CF01 Termination of patent right due to non-payment of annual fee