CN110620443A - Phase force energy converter - Google Patents
Phase force energy converter Download PDFInfo
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- CN110620443A CN110620443A CN201910581742.0A CN201910581742A CN110620443A CN 110620443 A CN110620443 A CN 110620443A CN 201910581742 A CN201910581742 A CN 201910581742A CN 110620443 A CN110620443 A CN 110620443A
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- 230000006698 induction Effects 0.000 claims abstract description 52
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical group [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 claims abstract description 12
- 229910052742 iron Inorganic materials 0.000 claims abstract description 3
- 230000009286 beneficial effect Effects 0.000 abstract description 2
- 230000010287 polarization Effects 0.000 description 2
- 238000010586 diagram Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J50/00—Circuit arrangements or systems for wireless supply or distribution of electric power
- H02J50/10—Circuit arrangements or systems for wireless supply or distribution of electric power using inductive coupling
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Abstract
本发明涉及一种相位力能转换器。其包括:输出单元,包括输出框架和设置于所述输出框架上的感应线圈和真空频率线圈,所述感应线圈和真空频率线圈的铁芯是永磁铁空心铁体,感应线圈处理电流通过流经所述真空频率线圈,而将所述电能转换至所述输出线圈;输出单元,包括输出线圈和释放线圈和输入线圈,所述输入线圈和输出线圈和释放线圈的铁芯是永磁体,所述释放线圈的能源以感应力能供给输出线圈和供给元器件使用。本发明的有益效果为:这种相位力能转换器在使用时,用于感应极化磁能空间密度能源释放磁能活力能源使用,达到释放磁能内部力点能源使用。The invention relates to a phase force energy converter. It includes: an output unit, including an output frame and an induction coil and a vacuum frequency coil arranged on the output frame. The iron cores of the induction coil and the vacuum frequency coil are permanent magnet hollow iron bodies, and the induction coil handles current flowing through The vacuum frequency coil converts the electric energy to the output coil; the output unit includes an output coil, a release coil, and an input coil, and the iron cores of the input coil, the output coil, and the release coil are permanent magnets, and the Release the energy of the coil to supply the output coil and supply components with the induction force. The beneficial effects of the present invention are: when the phase force energy converter is in use, it is used to induce the polarized magnetic energy space density energy to release the magnetic energy vitality energy, so as to achieve the use of the internal force point energy of the released magnetic energy.
Description
技术领域technical field
本发明属于电子技术领域,具体涉及一种相位力能转换器。The invention belongs to the field of electronic technology, and in particular relates to a phase force-energy converter.
背景技术Background technique
本发明为最新技术,主要用于用正极化能源释放磁能内部力能能源使用和提高电能活力和区域内部释放磁能能源。The invention is the latest technology, and is mainly used for using the positive polarization energy to release the magnetic energy to use the internal power energy, to improve the vitality of the electric energy and to release the magnetic energy energy in the region.
发明内容Contents of the invention
为了达到释放磁能内部力能能源和区域内部释放磁能能源动力能源的最佳使用效果,本发明提供了一种相位力能转换器采用这种相位力能转换器,用于用正极化能源释放磁能内部力能能源使用和提高电能活力和区域内部释放磁能能源。In order to achieve the best use effect of releasing the internal force energy source of magnetic energy and the power energy source of magnetic energy energy released inside the region, the present invention provides a phase force energy converter. This phase force energy converter is used to release magnetic energy with positively polarized energy sources. The internal power energy uses and improves the vitality of the electric energy and releases the magnetic energy energy within the region.
本发明所采用的技术方案为:The technical scheme adopted in the present invention is:
本发明涉及一种相位力能转换器。其包括:输出单元,包括输出框架和设置于所述输出框架上的感应线圈和真空频率线圈,所述感应线圈和真空频率线圈的铁芯是永磁铁空心铁体,感应线圈处理电流通过流经所述真空频率线圈,而将所述电能转换至所述输出线圈;输出单元,包括输出线圈和释放线圈和输入线圈,所述输入线圈和输出线圈和释放线圈的铁芯是永磁体,所述释放线圈的能源以感应力能供给输出线圈和供给元器件使用。The invention relates to a phase force energy converter. It includes: an output unit, including an output frame and an induction coil and a vacuum frequency coil arranged on the output frame. The iron cores of the induction coil and the vacuum frequency coil are permanent magnet hollow iron bodies, and the induction coil handles current flowing through The vacuum frequency coil converts the electric energy to the output coil; the output unit includes an output coil, a release coil, and an input coil, and the iron cores of the input coil, the output coil, and the release coil are permanent magnets, and the Release the energy of the coil to supply the output coil and supply components with the induction force.
优选地,所述输出框架上设置有输入线圈,所述输出框架构造为方形框架,所述输入线圈输入正极化能源,所述输入线圈相对于真空频率线圈边缘设置,位于真空频率线圈和感应线圈的变化磁场中。Preferably, the output frame is provided with an input coil, the output frame is configured as a square frame, the input coil inputs positively polarized energy, and the input coil is set relative to the edge of the vacuum frequency coil, located between the vacuum frequency coil and the induction coil in a changing magnetic field.
优选地,所述接收框架上还设置有感应线圈,所述感应线圈的变化在真空频率线圈和输出线圈和释放线圈的变化而来,所述感应线圈相对于真空频率线圈边缘设置,位于真空频率线圈和输入线圈和输出线圈的变化磁场中。Preferably, an induction coil is also arranged on the receiving frame, and the change of the induction coil comes from the change of the vacuum frequency coil, the output coil and the release coil, and the induction coil is set relative to the edge of the vacuum frequency coil, located at the vacuum frequency Coil and the changing magnetic field of the input coil and output coil.
优选地,所述输出框架上还设置有释放线圈,所述释放线圈的变化在感应线圈和真空频率线圈和输入线圈的变化而来,所述释放线圈相对于感应线圈边缘设置,位于感应线圈和真空频率线圈的变化磁场中。Preferably, a release coil is also arranged on the output frame, and the change of the release coil comes from the change of the induction coil, the vacuum frequency coil and the input coil, and the release coil is set relative to the edge of the induction coil, and is located between the induction coil and the input coil. In the changing magnetic field of a vacuum frequency coil.
优选地,所述输出框架上还设置有真空频率线圈,所述真空频率线圈的变化在输入线圈和感应线圈和释放线圈的变化而来,所述真空频率线圈相对于感应线圈之间设置,位于感应线圈和输出线圈和释放线圈的变化磁场中。Preferably, a vacuum frequency coil is also arranged on the output frame, and the change of the vacuum frequency coil comes from the change of the input coil, the induction coil and the release coil, and the vacuum frequency coil is arranged between the induction coil and located at Induction coil and output coil and release coil in the changing magnetic field.
优选地,所述输出框架上还设置有输出线圈,所述输出线圈的变化在感应线圈和真空频率线圈和释放线圈的变化而来,所述输出线圈相对于真空频率线圈和释放线圈边缘设置,位于真空频率线圈和释放线圈的变化磁场中。Preferably, the output frame is also provided with an output coil, the change of the output coil is caused by the change of the induction coil, the vacuum frequency coil and the release coil, and the output coil is arranged on the edge of the vacuum frequency coil and the release coil, Located in the changing magnetic field of the vacuum frequency coil and the release coil.
优选地,所述输出框架上还设置有永磁体,所述永磁体的变化在真空频率线圈和输出线圈和输入线圈的变化而来,所述永磁体相对于输出框架内部并列设置,位于真空频率线圈和输出线圈和输入线圈和释放线圈感和应线圈的变化磁场中。Preferably, the output frame is also provided with a permanent magnet, the change of the permanent magnet comes from the change of the vacuum frequency coil and the output coil and the input coil, and the permanent magnet is arranged side by side relative to the inside of the output frame, and is located The coil and the output coil and the input coil and the release coil induce and respond to the changing magnetic field of the coil.
本发明的有益效果为:这种相位力能转换器在使用时,用于感应极化磁能空间密度能源释放磁能活力能源使用,达到释放磁能内部力点能源使用。The beneficial effects of the present invention are: when the phase force energy converter is in use, it is used to induce the polarized magnetic energy space density energy to release the magnetic energy vitality energy, so as to achieve the use of the internal force point energy of the released magnetic energy.
附图说明Description of drawings
图1是本发明的一个优选实施例的相位力能转换器的示意图。Fig. 1 is a schematic diagram of a phase force-energy converter of a preferred embodiment of the present invention.
图中:1、支架;2、输入线圈;3、输出线圈;4、真空频率线圈;5、感应线圈;6、释放线圈;7、永磁体。In the figure: 1. bracket; 2. input coil; 3. output coil; 4. vacuum frequency coil; 5. induction coil; 6. release coil; 7. permanent magnet.
具体实施方式Detailed ways
如图1所示,本发明提供的相位力能转换器,其包括,输出单元。下面将详细地描述本发明的相位力能转换器及其各个部分。As shown in FIG. 1 , the phase force-energy converter provided by the present invention includes an output unit. The phase force energy converter of the present invention and its various parts will be described in detail below.
如图1所示,输出单元包括输出框架1和设置于输出框架1上的输入线圈2和释放线圈6和真空频率线圈4和输出线圈3和感应线圈5相互并列,输入线圈2输入的能源流经感应线圈5和真空频率线圈4和释放线圈6和将磁能力能处理组合传输至输出线圈3。As shown in Figure 1, the output unit includes an output frame 1 and an input coil 2, a release coil 6, a vacuum frequency coil 4, an output coil 3, and an induction coil 5 arranged on the output frame 1. The energy flow input by the input coil 2 Through the induction coil 5 and the vacuum frequency coil 4 and the release coil 6, the magnetic energy can be combined and transmitted to the output coil 3 .
作为输出单元的第一个优选实施例,如图1所示,输出框架1上设置有输入线圈2,所述输出框架1构造为方形框架,所述输入线圈2输入正极化能源,所述输入线圈2相对于真空频率线圈4边缘设置,位于真空频率线圈4和感应线圈5的变化磁场中。As the first preferred embodiment of the output unit, as shown in Figure 1, the output frame 1 is provided with an input coil 2, the output frame 1 is structured as a square frame, the input coil 2 inputs positively polarized energy, and the input The coil 2 is arranged on the edge of the vacuum frequency coil 4 and located in the changing magnetic field of the vacuum frequency coil 4 and the induction coil 5 .
第二个优选实施例是在第一个优选实施例的基础上,如图1所示,输出框架1上还设置有感应线圈5,所述感应线圈5的变化在真空频率线圈4和输出线圈3和释放线圈6的变化而来,所述感应线圈5相对于真空频率线圈4边缘设置,位于真空频率线圈4和输入线圈2和输出线圈3的变化磁场中。The second preferred embodiment is based on the first preferred embodiment, as shown in Figure 1, the output frame 1 is also provided with an induction coil 5, the change of the induction coil 5 is between the vacuum frequency coil 4 and the output coil 3 and the release coil 6, the induction coil 5 is set relative to the edge of the vacuum frequency coil 4, and is located in the changing magnetic field of the vacuum frequency coil 4 and the input coil 2 and the output coil 3.
第三个优选实施例是在第二个优选实施例的基础上,如图1所示,输出框架1上还设置有释放线圈6,所述释放线圈6的变化在感应线圈5和真空频率线圈4和输入线圈2的变化而来,所述释放线圈6相对于感应线圈5边缘设置,位于感应线圈5和真空频率线圈4的变化磁场中。The third preferred embodiment is based on the second preferred embodiment, as shown in Figure 1, the output frame 1 is also provided with a release coil 6, the change of the release coil 6 is between the induction coil 5 and the vacuum frequency coil 4 and the input coil 2, the release coil 6 is set relative to the edge of the induction coil 5, and is located in the changing magnetic field of the induction coil 5 and the vacuum frequency coil 4.
第四个优选实施例是在第三个优选实施例的基础上,如图1所示,输出框架1上还设置有真空频率线圈4,所述真空频率线圈4的变化在输入线圈2和感应线圈5和释放线圈6的变化而来,所述真空频率线圈4相对于感应线圈5之间设置,位于感应线圈5和输出线圈3和释放线圈6的变化磁场中。The fourth preferred embodiment is based on the third preferred embodiment, as shown in Figure 1, the output frame 1 is also provided with a vacuum frequency coil 4, the change of the vacuum frequency coil 4 is induced by the input coil 2 and The coil 5 and the release coil 6 come from changes, the vacuum frequency coil 4 is arranged between the induction coil 5 and is located in the changing magnetic field of the induction coil 5 and the output coil 3 and the release coil 6 .
第五个优选实施例是在第四个优选实施例的基础上,如图1所示,输出框架1上还设置有输出线圈3,所述输出线圈3的变化在感应线圈5和真空频率线圈4和释放线圈6的变化而来,所述输出线圈3相对于真空频率线圈4和释放线圈6边缘设置,位于真空频率线圈4和释放线圈6的变化磁场中。The fifth preferred embodiment is based on the fourth preferred embodiment, as shown in Figure 1, the output frame 1 is also provided with an output coil 3, the change of the output coil 3 is between the induction coil 5 and the vacuum frequency coil 4 and the release coil 6, the output coil 3 is set relative to the edge of the vacuum frequency coil 4 and the release coil 6, and is located in the changing magnetic field of the vacuum frequency coil 4 and the release coil 6.
第六个优选实施例是在第五个优选实施例的基础上,如图1所示,输出框架1上还设置有永磁体7,所述永磁体7的变化在真空频率线圈4和输出线圈3和输入线圈2的变化而来,所述永磁体7相对于输出框架1内部并列设置,位于真空频率线圈4和输出线圈3和输入线圈2和释放线圈6和感应线圈5的变化磁场中。The sixth preferred embodiment is based on the fifth preferred embodiment, as shown in Figure 1, the output frame 1 is also provided with a permanent magnet 7, the change of the permanent magnet 7 is between the vacuum frequency coil 4 and the output coil 3 and the input coil 2, the permanent magnet 7 is arranged side by side relative to the inside of the output frame 1, and is located in the changing magnetic field of the vacuum frequency coil 4, the output coil 3, the input coil 2, the release coil 6 and the induction coil 5.
由此,作为第六个优选实施例的相位力能转换器的工作原理可以参考如下:Therefore, the working principle of the phase force-energy converter as the sixth preferred embodiment can be referred to as follows:
当输入线圈2输入能源时,由此输入线圈2周围存在变化的磁场,由输入线圈2设置在真空频率线圈4和感应线圈5,所以真空频率线圈和感应线圈5产生相应的感应电流。同样地,输入线圈2输入的能源通过磁场依次从感应线圈5和释放线圈6和真空频率线圈4和永磁体7和输出线圈3运用电能和磁能力能,及线圈内永磁铁磁性强度用于用正极化能源释放磁能内部力能能源使用和提高电能活力和区域内部释放磁能能源。When the input coil 2 inputs energy, there is a changing magnetic field around the input coil 2, and the input coil 2 is set on the vacuum frequency coil 4 and the induction coil 5, so the vacuum frequency coil and the induction coil 5 generate corresponding induction currents. Similarly, the energy inputted by the input coil 2 uses electric energy and magnetic energy from the induction coil 5, the release coil 6, the vacuum frequency coil 4, the permanent magnet 7 and the output coil 3 through the magnetic field, and the magnetic strength of the permanent magnet in the coil is used for Positive polarization energy releases magnetic energy, uses internal force energy, improves electric energy vitality, and releases magnetic energy energy within the region.
本发明不局限于上述最佳实施方式,任何人在本发明的启示下都可得出其他各种形式的产品,但不论在其形状或结构上作任何变化,凡是具有与本申请相同或相近似的技术方案,均落在本发明的保护范围之内。The present invention is not limited to the above-mentioned best implementation mode, anyone can draw other various forms of products under the inspiration of the present invention, but no matter make any changes in its shape or structure, all those with the same or similar features as the present application Approximate technical solutions all fall within the protection scope of the present invention.
Claims (6)
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Application publication date: 20191227 |