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Enamel-covered multipath parallel combined high-efficiency energy-saving enamelled wire and manufacturing and application method thereof

An enameled wire and enameled technology, applied in cable/conductor manufacturing, circuits, conductors, etc., can solve problems such as reducing the effective area, reducing the electrical conductivity, and increasing the effective resistance of round wires

Inactive Publication Date: 2016-01-13
陈胜民
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the skin effect (skin effect) of alternating current, the effective resistance of the round wire increases, reducing its effective area, thereby reducing its conductivity

Method used

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  • Enamel-covered multipath parallel combined high-efficiency energy-saving enamelled wire and manufacturing and application method thereof
  • Enamel-covered multipath parallel combined high-efficiency energy-saving enamelled wire and manufacturing and application method thereof
  • Enamel-covered multipath parallel combined high-efficiency energy-saving enamelled wire and manufacturing and application method thereof

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Embodiment Construction

[0009] Since the AC conduction in the conductor has a skin effect, the result of the skin effect increases its effective resistance, reduces the utilization of the effective cross-section of the AC in the round wire, and reduces the transmission channel of the AC in the conductor. Increased resistance of the wire. The passage of some electrons is restricted. The skin effect of alternating current is more and more similar to the cars we run on the highway, but it is a three-dimensional surface. And the car is a real level of traffic on the highway. If we unfold the surface of the conductor, it is a very thin and long rectangular electron highway. If the highway is widened and more lanes are added, more cars will naturally pass. The wire is the high-speed runway of electrons, why don't we widen it more? Compared with the round enameled wire and the oval enameled wire, if the surface area is the same, the volume of the round enameled wire is larger than that of the oval ename...

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PUM

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Abstract

The invention relates to an enamel-covered multipath parallel combined high-efficiency energy-saving enamelled wire and a manufacturing and application method thereof. On the basis of the theory of the alternating-current skin effect phenomenon, especially the theory of the conductor current law demonstrating a direct ratio of a maximum current allowed by a conductor to a perimeter of a section of the conductor, an enameled isolation perimeter increasing method, an ellipse perimeter increasing method, a reducing root-extending perimeter increasing principle, and a method of reducing inductance by using a linear arrangement structure with parallel layered tight extruding and bonding from inside to outside of enameled combined wire cores are used comprehensively. The technical method of transmitting the electric energy and converting the energy by the multi-path parallel movement way of electron currents is realized. The provided enamelled wire is a combined enamelled wire having the high efficiency of electric energy transmission and energy conversion. Realization of production and application of the provided enamelled wire as well as direct usage of the method by replacing multiple thin enamelled wires with small diameters in the prior art with a single thick enamelled wire is based on calculation and design; and the total perimeter of the section of the multipath and multi-core combined enamelled wire needs to be equal to or larger than the perimeter of the single-core enamelled wire slightly in the prior art.

Description

technical field [0001] All walks of life in our country and people's family life are inseparable from electric energy. The widespread use of electric energy also creates a tense situation for the production and supply of electric energy. The production and use of electric energy will also pollute the environment to a certain extent, and also aggravate the warming of the climate. Therefore, how to more effectively produce electric energy, transmit electric energy, use electric energy, effectively utilize electric energy, and save electric energy has become a major issue that is imminent at present. The electricity generated by most generators is first sent to step-up transformers, sent to remote places by high-voltage transmission lines, to step-down transformers in substations, and then to distribution transformers, and then to factories, mines, workshops and city streets through switches. The transformer distribution room in rural areas is sent to various users, motors, and...

Claims

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Application Information

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IPC IPC(8): H01B7/17H01B13/22H01B7/02
Inventor 陈胜民
Owner 陈胜民
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