CN206991913U - A kind of structure of electromagnetic induction winding - Google Patents

A kind of structure of electromagnetic induction winding Download PDF

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Publication number
CN206991913U
CN206991913U CN201720908475.XU CN201720908475U CN206991913U CN 206991913 U CN206991913 U CN 206991913U CN 201720908475 U CN201720908475 U CN 201720908475U CN 206991913 U CN206991913 U CN 206991913U
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CN
China
Prior art keywords
enamel covered
iron core
electromagnetic induction
covered wire
winding
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Expired - Fee Related
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CN201720908475.XU
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Chinese (zh)
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徐六德
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Individual
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Individual
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Abstract

A kind of structure of electromagnetic induction winding is the utility model is related to, including iron core and stacking are wrapped in more superimposing thread circles on the iron core, winding one or more layers by an enamel covered wire or more enamel covered wires side by side per superimposing thread circle is formed.A kind of structure of electromagnetic induction winding of the utility model is using the more superimposing thread circles being wrapped on the iron core, one or more layers transformer or generator for may be constructed heavy current output is wound by an enamel covered wire or more enamel covered wires side by side per superimposing thread circle, disclosure satisfy that the application scenarios of some heavy currents.

Description

A kind of structure of electromagnetic induction winding
Technical field
It the utility model is related to a kind of winding, and in particular to a kind of structure of electromagnetic induction winding.
Background technology
Winding is the combination for many coils being coiled into transformer or generator with enamel-covered wire etc., existing transformer or hair Coil in motor is from first to last to wind multilayer using an enamel-covered wire or more enamel-covered wires side by side, until iron core is wound Full, the centre of its enamel-covered wire will not be cut.And for the application scenarios of some heavy currents, the coiling of existing so winding Structure is difficult to meet demand.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of structure of electromagnetic induction winding, can provide forceful electric power The output of stream.
The technical scheme that the utility model solves above-mentioned technical problem is as follows:A kind of structure of electromagnetic induction winding, including Iron core and stacking are wrapped in more superimposing thread circles on the iron core, per superimposing thread circle by an enamel covered wire or more enamel-covers side by side Copper cash winds one or more layers composition.
On the basis of above-mentioned technical proposal, the utility model can also do following improvement.
Further, the iron core is specially the iron core of step-up transformer, and the coil is specially secondary coil.
Further, the iron core is specially the stator core of generator.
Further, the coiling circuit and direction per superimposing thread circle respectively correspond to identical.
Further, one layer is wound by an enamel covered wire per superimposing thread circle to form.
Further, one layer is wound by more enamel covered wires side by side per superimposing thread circle to form.
Further, multilayer is wound by an enamel covered wire per superimposing thread circle to form.
The beneficial effects of the utility model are:A kind of structure of electromagnetic induction winding of the utility model is described using being wrapped in More superimposing thread circles on iron core, winding one or more layers by an enamel covered wire or more enamel covered wires side by side per superimposing thread circle can be with The transformer or generator of heavy current output are formed, because every enamel covered wire can all produce electric current, and the utility model is this The radical of the enamel covered wire of winding construction is more than the radical of the enamel covered wire of the winding construction of existing same scale, so this practicality It is new to meet some heavy current application scenarios.
Brief description of the drawings
Fig. 1 is to wind one layer of knot formed by an enamel covered wire in a kind of structure of electromagnetic induction winding of the utility model Structure schematic diagram;
Fig. 2 is to be twined in a kind of structure of electromagnetic induction winding of the utility model per superimposing thread circle by more enamel covered wires side by side Around the structural representation of one layer of composition
Fig. 3 is to wind multilayer by an enamel covered wire in a kind of every superimposing thread circle of structure of electromagnetic induction winding of the utility model The structural representation of composition.
In accompanying drawing, the list of parts representated by each label is as follows:
1st, iron core, 2, enamel covered wire.
Embodiment
Principle of the present utility model and feature are described below in conjunction with accompanying drawing, example is served only for explaining this practicality It is new, it is not intended to limit the scope of the utility model.
A kind of structure of electromagnetic induction winding, including iron core 1 and stacking are wrapped in more superimposing thread circles on the iron core, often Superimposing thread circle winds one or more layers by the enamel covered wire 2 of an enamel covered wire 2 or more side by side and formed.In this specific embodiment In, the iron core 1 is specially the iron core of step-up transformer, and the coil is specially secondary coil.In another specific embodiment, The iron core 1 is specially the stator core of generator.Coiling circuit and direction per superimposing thread circle respectively correspond to identical.Fig. 1 is One layer of structural representation formed is wound by an enamel covered wire 2 in a kind of structure of electromagnetic induction winding of the utility model, had Body, wind one layer by an enamel covered wire 2 per superimposing thread circle and form.Fig. 2 is a kind of knot of electromagnetic induction winding of the utility model One layer of structural representation formed is wound by more enamel covered wires 2 side by side per superimposing thread circle in structure, specifically, per superimposing thread circle by more The enamel covered wire 2 of root side by side winds one layer of composition, and what is showed in fig. 2 is to wind one layer of structure by two enamel covered wires 2 side by side Into structure.Fig. 3 is more to be wound in a kind of every superimposing thread circle of structure of electromagnetic induction winding of the utility model by an enamel covered wire 2 The structural representation that layer is formed, formed specifically, winding multilayer by an enamel covered wire 2 per superimposing thread circle, Fig. 3 performances are by one Root enamel covered wire 2 winds two layers of composition.
In this specific embodiment one, the way of forceful electric power convertor transformer (or generator) has following several:
1st, one layer is wound in the induction end (or stator core of generator) of step-up transformer with an enamel covered wire 2 An enamel covered wire 2 is cut (the first folded completion) after coil, is then followed by starting in first folded (and first layer) coiling Place is folded (one layer of winding) according to the circuit and direction of the first lap wound line around second, also by an enamel-cover after the completion of the second folded winding Copper cash 2 is cut, so circulation, until iron core is wound full.
2nd, with two enamel covered wires 2 and come and wound in the induction end (or stator core of generator) of step-up transformer Two enamel covered wires 2 are cut (the first folded completion) after one layer line circle, are then followed by opening in first folded (and first layer) coiling The place of beginning is folded (one layer of winding) according to the circuit and direction of the first lap wound line around second, also by two after the completion of the second folded winding Enamel covered wire 2 is cut, so circulation, until iron core is wound full.
3rd, with three enamel covered wires 2 and come and wound in the induction end (or stator core of generator) of step-up transformer Three enamel covered wires 2 are cut (the first folded completion) after one layer line circle, are then followed by opening in first folded (and first layer) coiling The place of beginning is folded (one layer of winding) according to the circuit and direction of the first lap wound line around second, also by three after the completion of the second folded winding Enamel covered wire 2 is cut, so circulation, until iron core is wound full.
4th, with four enamel covered wires 2 and come and wound in the induction end (or stator core of generator) of step-up transformer Enamel covered wire 2 is cut (the first folded completion) after one layer line circle, is then followed by starting in first folded (and first layer) coiling Place is folded (one layer of winding) according to the circuit and direction of the first lap wound line around second, also by enamel covered wire after the completion of the second folded winding 2 cut, so circulation, until iron core is wound full.
5th, with tens enamel covered wires 2 and can come in the induction end (or stator core of generator) of step-up transformer (first folded complete) is wound and tens enamel covered wires 2 are cut after a layer line circle, is then followed by first folded (and first Layer) place that starts of coiling completes according to the circuit and direction of the first lap wound line around second folded (one layer of winding), the second folded winding Also tens enamel covered wires 2 are cut afterwards, so circulation, until iron core is wound full.(tens be specifically as follows ten, two Ten, 30 ...)
The forceful electric power convertor transformer (or generator) of several ways in specific embodiment one, its each layer of coiling will be cut It is disconnected, it is because the positron-electron of forceful electric power convertor transformer (or generator) coil does bidirectional-movement, if by every layer of coiling All cut, the electronics can of its one end is combined.The forceful electric power convertor transformer (or generator) of this several way, its both ends The end of a thread has a lot, and the more the end of a thread at its both ends can be combined respectively, makees positive and negative both threads output.
If to be used as transmission of electricity to use, the first can be selected or make the transformer closely conveyed for second in city to come With;The energy loss very little that the forceful electric power convertor transformer of the first way conveys in a certain distance;The forceful electric power of second of way Convertor transformer, conveyed in a certain distance, its electric energy will not substantially lose, that is to say, that from First heavy current transformation Device is transported to second forceful electric power convertor transformer again to the 3rd heavy current platform transformer, its electric current can ensure it is equally big, will not Loss.The forceful electric power convertor transformer of this several way, there are two side by side together around there are three side by side together around there are four side by side one Rise around being that while its electric current can increase in order to which the voltage drop that forceful electric power convertor transformer device is exported obtains smaller.
The heavy current generator of several ways, can apply in battery truck, while be also required to electricity in specific embodiment one Bottle drives generator;One gear or belt pulley can be installed on the rear wheel of battery truck and generated electricity to drive, then to inciting somebody to action The electricity that engine is sent is used directly in battery truck;If electricity and the electric collective effect of storage battery output that generator is sent are in one , it is necessary to which the electricity that generator is sent can be just acted in battery truck by electronic diode, if without electronics two on motor Pole pipe, the electricity of storage battery output can burn out generator, and in order to prevent this drawback, two motor can be installed in battery truck, Then by storage battery and generator respectively with two electronic mechatronics, so it is prevented that generator send electricity and storage battery it is defeated The electricity gone out is provided commonly on a motor.The heavy current generator of several ways above, when battery truck exports normally travel It could generate electricity, the electricity that it sends is used directly in battery truck, while can also be charged to storage battery, can make generator Diphaser, wherein a phase is used for battery truck, another phase is used to charge to storage battery by diode, and such battery truck can be with Traveling it is farther, the size of generator can according to battery truck size of current design.In this specific embodiment, hair Motor can also be multiphase, and so-called " multiphase " is exactly that multiple windings are wrapped in same iron core (monoblock, centre is without disconnected side by side Split) on, separated between every phase winding using plastic tab.
In this specific embodiment two, the way of forceful electric power convertor transformer (or generator) is also following several:
1st, wound two layers in the induction end (or stator core of generator) of step-up transformer with an enamel covered wire 2 Enamel covered wire 2 is cut after coil, is then followed by circuit and side of the place that the first lap wound line starts according to the first lap wound line Folded to around second, (wind two layers) after the completion of the second folded winding and also cut enamel covered wire 2, so circulate, until iron core is twined Around full.
2nd, three layers are wound in the induction end (or stator core of generator) of step-up transformer with an enamel covered wire 2 Enamel covered wire 2 is cut after coil, is then followed by circuit and side of the place that the first lap wound line starts according to the first lap wound line Folded to around second, (winding three layers) after the completion of the second folded winding also cuts enamel covered wire 2, so circulates, until iron core is twined Around full.
3rd, four layers are wound in the induction end (or stator core of generator) of step-up transformer with an enamel covered wire 2 Enamel covered wire 2 is cut after coil, is then followed by circuit and side of the place that the first lap wound line starts according to the first lap wound line Folded to around second, (winding four layers) after the completion of the second folded winding also cuts enamel covered wire 2, so circulates, until iron core is twined Around full.
4th, five layers are wound in the induction end (or stator core of generator) of step-up transformer with an enamel covered wire 2 Enamel covered wire 2 is cut after coil, is then followed by circuit and side of the place that the first lap wound line starts according to the first lap wound line Folded to around second, (winding five layers) after the completion of the second folded winding also cuts enamel covered wire 2, so circulates, until iron core is twined Around full.
The forceful electric power convertor transformer of several ways in specific embodiment two, the wire of transmission of electricity can be reduced.
The heavy current generator of several ways, generator can also be " multiphase " in specific embodiment two, so-called " more Phase " is exactly that multiple windings are wrapped on same iron core (iron core is a monoblock, and centre is not broken) side by side, is adopted between every phase winding Separated with plastic tab.
Preferred embodiment of the present utility model is the foregoing is only, it is all in this practicality not to limit the utility model Within new spirit and principle, any modification, equivalent substitution and improvements made etc., guarantor of the present utility model should be included in Within the scope of shield.

Claims (6)

  1. A kind of 1. structure of electromagnetic induction winding, it is characterised in that:It is wrapped in including iron core and stacking more on the iron core Superimposing thread circle, one or more layers is wound by an enamel covered wire or more enamel covered wires side by side per superimposing thread circle and formed.
  2. A kind of 2. structure of electromagnetic induction winding according to claim 1, it is characterised in that:The iron core is specially to boost The iron core of transformer, the coil are specially secondary coil.
  3. A kind of 3. structure of electromagnetic induction winding according to claim 1, it is characterised in that:The iron core is specially to generate electricity The stator core of machine.
  4. A kind of 4. structure of electromagnetic induction winding according to any one of claims 1 to 3, it is characterised in that:Per superimposing thread circle Coiling circuit and direction respectively correspond to it is identical.
  5. A kind of 5. structure of electromagnetic induction winding according to any one of claims 1 to 3, it is characterised in that:Per superimposing thread circle One layer is wound by an enamel covered wire to form, or is wound one layer by more enamel covered wires side by side per superimposing thread circle and formed.
  6. A kind of 6. structure of electromagnetic induction winding according to any one of claims 1 to 3, it is characterised in that:Per superimposing thread circle Multilayer is wound by an enamel covered wire to form.
CN201720908475.XU 2017-07-25 2017-07-25 A kind of structure of electromagnetic induction winding Expired - Fee Related CN206991913U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720908475.XU CN206991913U (en) 2017-07-25 2017-07-25 A kind of structure of electromagnetic induction winding

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720908475.XU CN206991913U (en) 2017-07-25 2017-07-25 A kind of structure of electromagnetic induction winding

Publications (1)

Publication Number Publication Date
CN206991913U true CN206991913U (en) 2018-02-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720908475.XU Expired - Fee Related CN206991913U (en) 2017-07-25 2017-07-25 A kind of structure of electromagnetic induction winding

Country Status (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109767897A (en) * 2019-03-20 2019-05-17 大连北方互感器集团有限公司 Voltage transformer coil first winding and its winding method
CN115415507A (en) * 2022-08-12 2022-12-02 中国兵器装备集团西南技术工程研究所 Device for intervening solidification process of aluminum alloy melt through magnetic field

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109767897A (en) * 2019-03-20 2019-05-17 大连北方互感器集团有限公司 Voltage transformer coil first winding and its winding method
CN115415507A (en) * 2022-08-12 2022-12-02 中国兵器装备集团西南技术工程研究所 Device for intervening solidification process of aluminum alloy melt through magnetic field

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Granted publication date: 20180209