CN207483797U - A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace - Google Patents

A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace Download PDF

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Publication number
CN207483797U
CN207483797U CN201721269779.2U CN201721269779U CN207483797U CN 207483797 U CN207483797 U CN 207483797U CN 201721269779 U CN201721269779 U CN 201721269779U CN 207483797 U CN207483797 U CN 207483797U
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CN
China
Prior art keywords
fixedly connected
furnace body
heating furnace
inner ring
heating
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Expired - Fee Related
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CN201721269779.2U
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Chinese (zh)
Inventor
张佳兵
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Jiangxi Ruishun Superfine Copper Wire Science And Technology Co Innovation Co Ltd
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Jiangxi Ruishun Superfine Copper Wire Science And Technology Co Innovation Co Ltd
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Priority to CN201721269779.2U priority Critical patent/CN207483797U/en
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Publication of CN207483797U publication Critical patent/CN207483797U/en
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Abstract

A kind of COPPER WIRES PRODUCTION high-temperature annealing furnace,Including heating furnace body,The inner ring surface of the heating furnace body is fixedly connected with the outer shroud of sensing silicon steel staving,The inner ring upper end of the heating furnace body is fixedly connected with heat-insulated head cover,The outer surface of the heating furnace body is fixedly connected with the inner ring surface of bobbin,The external annular surface of the bobbin is wound with high frequency coil,The inner ring lower end of the heating furnace body is fixedly connected with heat insulation bottom board,The side surface upper end of the heating furnace body offers incoming line,And incoming line is through heating furnace body and the side wall of sensing silicon steel staving,The utility model is applied by motor,Bevel pinion,Bevel gear wheel,Transmission shaft,Worm and worm wheel transmission mechanism can realize that copper wire is continuously heated and cooled down annealing,Equipment service efficiency is high,And due to using eddy heating for heating principle,Mode than the heating of traditional resistor silk is more energy saving,And the maintenance cost of equipment is lower.

Description

A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace
Technical field
The utility model is related to copper wire technical field of processing equipment, specially a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace.
Background technology
Copper is important source material irreplaceable in economic development, oneself is through being widely used in war industry, electric power, electronics electricity Gas, communication, building, light industry, machine-building and the every field of communications and transportation.In the past few years, copper wire industrial development is swift and violent, copper wire In process, annealing process is undergone, annealing furnace is needed in annealing process, existing annealing furnace mainly includes vacuum tank well formula Stove and hydrolock enameled machine annealing furnace mainly transmit heat with heat radiation and heat transfer two ways.Hydrolock enamelling machine is annealed The diabatic process of stove is resistance wire conduction heating insulating layer magnesia and sheath steel pipe, and steel pipe radiation walks spool, walks spool by outer Wall inward wall conducts, the copper wire that inner wall radiant heating passes therethrough.Above two annealing furnace uses traditional Resistant heating side Formula, capacity usage ratio is not high, and when carrying out annealing process, copper wire be it is intermittent be put into taking-up, the efficiency of technique is low, and The service life of resistance wire is limited, needs to regularly replace, and it is inconvenient to safeguard.
Utility model content
The purpose of this utility model is to provide a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace, to solve in above-mentioned background technology The problem of proposition.
To achieve the above object, the utility model provides following technical solution:A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace, packet Heating furnace body is included, the inner ring surface of the heating furnace body is fixedly connected with the outer shroud of sensing silicon steel staving, the heating furnace The inner ring upper end of furnace body is fixedly connected with heat-insulated head cover, and the outer surface of the heating furnace body is fixedly connected with the interior of bobbin Ring surface, the external annular surface of the bobbin are wound with high frequency coil, and the inner ring lower end of the heating furnace body is fixedly connected with Heat insulation bottom board, the side surface upper end of the heating furnace body offer incoming line, and incoming line runs through heating furnace body and sensing The side wall of silicon steel staving, the side surface lower end of the heating furnace body offer line outlet, and line outlet runs through heating furnace body With the side wall of sensing silicon steel staving, the inner ring of the heat-insulated head cover and heat insulation bottom board is rotatably connected to coiling bucket shaft, it is described around The outer surface of line bucket shaft is fixedly connected with coiling bucket, and the outer surface of coiling bucket offers spiral groove, it is described around The outer surface lower end of line bucket shaft is fixedly connected with bevel gear wheel, and the bevel gear wheel is engaged with bevel pinion, the conelet Gear is fixedly connected with transmission shaft, and the right end of the transmission shaft is fixedly connected with the output shaft of motor by shaft coupling, described The side surface of motor is fixedly connected with motor cabinet, and the motor cabinet is bolted with ground, and the left end of the transmission shaft passes through shaft coupling Device is fixedly connected with one end of worm screw, and the other end of the worm screw is rotatably connected to worm screw, and the worm engaging has worm gear, described Worm gear is fixedly connected with take-up stand, and the outside of the worm gear, worm screw and take-up stand is provided with moist closet.
Preferably, the bottom end of the heating furnace body is bolted with pedestal.
Preferably, the inner ring of the heat insulation bottom board is fixedly connected with the lower circle of revolving support, and the upper circle of revolving support is consolidated Surely it is connected with coiling bucket shaft.
Preferably, the input terminal of the high frequency coil is electrically connected with overload break circuit, and the input/output terminal of high frequency coil It is electrically connected with external circuits.
Preferably, the side wall of the incoming line and line outlet is fixedly connected with wear-resisting cylinder.
Preferably, the outer surface of the heating furnace body is provided with furnace temp meter.
Preferably, the outer surface of the moist closet is provided with moist closet thermometer.
Compared with prior art, the beneficial effects of the utility model are:The utility model is applied by motor, small bevel gear Wheel, bevel gear wheel, transmission shaft, worm and worm wheel transmission mechanism can realize that copper wire is continuously heated and cooled down annealing, The service efficiency of equipment is high, and the utility model uses eddy heating for heating principle, compared with the mode of traditional resistor silk heating more What is added is energy saving, and the maintenance cost of equipment is lower.
Description of the drawings
Fig. 1 is the utility model section view.
In figure:1 heating furnace body, 2 sensing silicon steel stavings, 3 heat-insulated head covers, 4 bobbins, 5 high frequency coils, 6 heat-insulated bottoms It is plate, 7 incoming lines, 8 line outlets, 9 coiling bucket shafts, 10 coiling buckets, 11 bevel gear wheels, 12 bevel pinions, 13 transmission shafts, 14 electronic Machine, 15 motor cabinets, 16 worm screws, 17 worm screws, 18 worm gears, 19 take-up stands, 20 moist closets, 21 pedestals, 22 revolving supports, 23 overloads Circuit breaker, 24 wear-resisting cylinders, 25 furnace temp meters, 26 moist closet thermometers.
The following is a combination of the drawings in the embodiments of the present utility model, and the technical scheme in the embodiment of the utility model is carried out It clearly and completely describes, it is clear that the described embodiments are only a part of the embodiments of the utility model rather than whole Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are without making creative work All other embodiments obtained shall fall within the protection scope of the present invention.
Referring to Fig. 1, the utility model provides a kind of technical solution:A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace, including adding Hot stove furnace body 1, the inner ring surface of the heating furnace body 1 are fixedly connected with the outer shroud of sensing silicon steel staving 2, the heating furnace The inner ring upper end of furnace body 1 is fixedly connected with heat-insulated head cover 3, and the outer surface of the heating furnace body 1 is fixedly connected with bobbin 4 Inner ring surface, the external annular surface of the bobbin 4 is wound with high frequency coil 5, and the inner ring lower end of the heating furnace body 1 is fixed Heat insulation bottom board 6 is connected with, the side surface upper end of the heating furnace body 1 offers incoming line 7, and incoming line 7 runs through heating furnace The side wall of furnace body 1 and sensing silicon steel staving 2, the side surface lower end of the heating furnace body 1 offers line outlet 8, and line outlet 8 through heating furnace body 1 and the side wall of sensing silicon steel staving 2, the inner ring rotation connection of the heat-insulated head cover 3 and heat insulation bottom board 6 There is coiling bucket shaft 9, the outer surface of the coiling bucket shaft 9 is fixedly connected with coiling bucket 10, and the outside table of coiling bucket 10 Face offers spiral groove, and the outer surface lower end of the coiling bucket shaft 9 is fixedly connected with bevel gear wheel 11, the auger Gear 11 is engaged with bevel pinion 12, and the bevel pinion 12 is fixedly connected with transmission shaft 13, and the right end of the transmission shaft 13 leads to The output shaft that shaft coupling is fixedly connected with motor 14 is crossed, the side surface of the motor 14 is fixedly connected with motor cabinet 15, institute It states motor cabinet 15 and is bolted with ground, the left end of the transmission shaft 13 is fixedly connected with one end of worm screw 16 by shaft coupling, described The other end of worm screw 16 is rotatably connected to worm screw 17, and the worm screw 16 is engaged with worm gear 18, and the worm gear 18 is fixedly connected with receipts Coil holder 19, the outside of the worm gear 18, worm screw 17 and take-up stand 19 are provided with moist closet 20, which applies by electronic Machine 13, bevel pinion 11, bevel gear wheel 10, transmission shaft 12, worm screw 15 and 17 transmission mechanism of worm gear can realize copper wire continuously not Disconnected is heated and is cooled down annealing, and the service efficiency of equipment is high, and the utility model is using eddy heating for heating principle, electric with tradition The mode of silk heating is hindered compared to more energy saving, and the maintenance cost of equipment is lower.
Specifically, heating furnace body 1 is in direct contact with ground in order to prevent, avoid causing to squeeze rupturing, the heating The bottom end of furnace body 1 is bolted with pedestal 21.
Specifically, since coiling bucket shaft 9 and 10 mass of coiling bucket are excessive, in order to avoid bevel gear wheel 11 and conelet Gear 12, which bears excessive axial force, leads to premature failure, and the inner ring of the heat insulation bottom board 6 is fixedly connected with revolving support 22 Lower circle, and the upper circle of revolving support 22 is fixedly connected with coiling bucket shaft 9.
Specifically, lead to peril because spread of voltage causes the electric current of high frequency coil 5 excessive in order to prevent, The input terminal of the high frequency coil 5 is electrically connected with overload break circuit 23, and the input/output terminal and external circuits of high frequency coil 5 Electrical connection.
Specifically, excessive wear occurs because of rubbing for a long time with copper wire for incoming line 7 and line outlet 8 in order to prevent, institute The side wall for stating incoming line 7 and line outlet 8 is fixedly connected with wear-resisting cylinder 24.
Specifically, understanding the temperature in heating furnace body 1 for convenience, the outer surface of the heating furnace body 1 is set It is equipped with furnace temp meter 25.
Specifically, understanding the temperature in moist closet 20 for convenience, the outer surface of the moist closet 20 is provided with heat preservation Room temperature meter 26.
Operation principle:When the utility model is before work, all parts of equipment are first gone through, are ensuring that component do not have It can work after failure, the utility model heats copper wire using the principle of eddy heating for heating, when high-frequency current flows through When high frequency coil 5, sensing electric current can be generated in the inside of silicon steel staving 2, since silicon steel staving 2 has resistance, so silicon Steel drum body 2 will generate heat in this way can be achieved with to copper wire heating heating, and heating furnace body 1 be by refractory ceramics manufacture and Into, therefore heat will not be generated, silicon steel staving 2 will not be prevented to generate sensing electric current, when needing to carry out lehr attendant to copper wire During skill, first open high frequency coil 5 switch, heating furnace is heated in advance, when the temperature in heating furnace be increased to it is certain When, then open motor 14, and the end of copper wire is put into incoming line 7, motor 14 by transmission mechanism drive around Line bucket 10 rotates, and copper wire is crimped on coiling bucket 10 and from top to bottom, finally discharged out of line outlet 8, and motor 14 Also take-up stand 19 can be driven to rotate by transmission mechanism, the copper wire by heating will be wound onto on take-up stand 19, and In moist closet 20, temperature slowly declines, and is finally completed annealing process.
While there has been shown and described that the embodiment of the utility model, for the ordinary skill in the art, It is appreciated that can these embodiments be carried out with a variety of variations in the case of the principle and spirit for not departing from the utility model, repaiied Change, replace and modification, the scope of the utility model are defined by the appended claims and the equivalents thereof.

Claims (7)

1. a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace, including heating furnace body (1), it is characterised in that:The heating furnace body (1) Inner ring surface be fixedly connected with sensing silicon steel staving (2) outer shroud, the inner ring upper end of the heating furnace body (1) is fixedly connected There is heat-insulated head cover (3), the outer surface of the heating furnace body (1) is fixedly connected with the inner ring surface of bobbin (4), the line The external annular surface of coil (4) is wound with high frequency coil (5), and the inner ring lower end of the heating furnace body (1) is fixedly connected with heat-insulated Bottom plate (6), the side surface upper end of the heating furnace body (1) offer incoming line (7), and incoming line (7) is through heating-furnace The side wall of body (1) and sensing silicon steel staving (2), the side surface lower end of the heating furnace body (1) offer line outlet (8), and Line outlet (8) is through heating furnace body (1) and the side wall of sensing silicon steel staving (2), the heat-insulated head cover (3) and heat insulation bottom board (6) inner ring is rotatably connected to coiling bucket shaft (9), and the outer surface of the coiling bucket shaft (9) is fixedly connected with coiling bucket (10), and the outer surface of coiling bucket (10) offers spiral groove, and the outer surface lower end of the coiling bucket shaft (9) is consolidated Surely bevel gear wheel (11) is connected with, the bevel gear wheel (11) is engaged with bevel pinion (12), and the bevel pinion (12) is fixed Transmission shaft (13) is connected with, the right end of the transmission shaft (13) is fixedly connected with the output shaft of motor (14) by shaft coupling, The side surface of the motor (14) is fixedly connected with motor cabinet (15), and the motor cabinet (15) is bolted with ground, the transmission The left end of axis (13) is fixedly connected with one end of worm screw (16) by shaft coupling, and the other end of the worm screw (16) is rotatably connected to Worm screw (17), the worm screw (16) are engaged with worm gear (18), and the worm gear (18) is fixedly connected with take-up stand (19), the worm gear (18), the outside of worm screw (17) and take-up stand (19) is provided with moist closet (20).
2. a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace according to claim 1, it is characterised in that:The heating furnace body (1) bottom end is bolted with pedestal (21).
3. a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace according to claim 1, it is characterised in that:The heat insulation bottom board (6) Inner ring be fixedly connected with the lower circle of revolving support (22), and the upper circle of revolving support (22) is fixedly connected with coiling bucket shaft (9)。
4. a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace according to claim 1, it is characterised in that:The high frequency coil (5) Input terminal be electrically connected with overload break circuit (23), and the input/output terminal of high frequency coil (5) is electrically connected with external circuits.
5. a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace according to claim 1, it is characterised in that:The incoming line (7) and The side wall of line outlet (8) is fixedly connected with wear-resisting cylinder (24).
6. a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace according to claim 1, it is characterised in that:The heating furnace body (1) outer surface is provided with furnace temp meter (25).
7. a kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace according to claim 1, it is characterised in that:The moist closet (20) Outer surface is provided with moist closet thermometer (26).
CN201721269779.2U 2017-09-29 2017-09-29 A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace Expired - Fee Related CN207483797U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721269779.2U CN207483797U (en) 2017-09-29 2017-09-29 A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721269779.2U CN207483797U (en) 2017-09-29 2017-09-29 A kind of COPPER WIRES PRODUCTION line high-temperature annealing furnace

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Publication Number Publication Date
CN207483797U true CN207483797U (en) 2018-06-12

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Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114150142A (en) * 2021-11-25 2022-03-08 海盐时雨金属科技有限公司 Annealing furnace with coil expanding function and annealing process thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114150142A (en) * 2021-11-25 2022-03-08 海盐时雨金属科技有限公司 Annealing furnace with coil expanding function and annealing process thereof

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

Granted publication date: 20180612

Termination date: 20190929