WO2012065284A1 - 一种磁能发电机组 - Google Patents

一种磁能发电机组 Download PDF

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Publication number
WO2012065284A1
WO2012065284A1 PCT/CN2010/002119 CN2010002119W WO2012065284A1 WO 2012065284 A1 WO2012065284 A1 WO 2012065284A1 CN 2010002119 W CN2010002119 W CN 2010002119W WO 2012065284 A1 WO2012065284 A1 WO 2012065284A1
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WO
WIPO (PCT)
Prior art keywords
electromagnetic coil
permanent magnet
hollow electromagnetic
hollow
magnetic energy
Prior art date
Application number
PCT/CN2010/002119
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English (en)
French (fr)
Inventor
邹九大
Original Assignee
Zou Jiuda
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Publication date
Application filed by Zou Jiuda filed Critical Zou Jiuda
Publication of WO2012065284A1 publication Critical patent/WO2012065284A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K53/00Alleged dynamo-electric perpetua mobilia

Definitions

  • the present invention relates to a magnetic energy generator set that converts permanent magnet energy of a permanent magnet into electrical energy.
  • the technical problem to be solved by the present invention is to overcome the deficiencies of the prior art described above and to provide a magnetic energy generator set capable of utilizing constant and clean permanent magnet energy.
  • the magnetic energy generator set provided by the invention comprises a worktable, a hollow electromagnetic coil, two permanent magnet columns, and a power supply device connected with the hollow electromagnetic coil for changing the current direction of the hollow electromagnetic coil, wherein the two permanent magnet columns are respectively fixedly mounted.
  • the two permanent magnet columns have the same magnetic poles at opposite ends of the permanent magnet column.
  • the diameters of the two permanent magnet columns are slightly smaller than the inner diameter of the hollow electromagnetic coil, and a small amount of air gap is reserved, and the two permanent magnet columns are opposite to each other.
  • the ends are respectively inserted into the hollow electromagnetic coil, the hollow electromagnetic coil is coaxially disposed with the two permanent magnet columns, and the hollow electromagnetic coil is connected to one end of the horizontal linkage rod frame, and the other end of the linkage rod frame is connected
  • the horizontal reciprocating motion of the interlocking lever frame is converted into a switching device that rotates in the same direction, and the output shaft of the switching device is connected to the generator.
  • the power supply device is a combination of a DC power source and a commutator or a combination of a single-phase AC power source and a frequency converter.
  • the ratio of the outer diameter of the hollow electromagnetic coil to the diameter of the permanent magnet column is between 1. 5: 1 and 2. 5: 1.
  • the conversion device includes a rack disposed at the other end of the linkage frame and a gearbox that mates with the rack, the output shaft of the gearbox being coupled to the generator.
  • the length of the permanent magnet column at the left end extends into the hollow electromagnetic coil to account for about two-thirds of its total length
  • the length of the permanent magnet column at the right end extends into the hollow electromagnetic coil to account for its total length.
  • the length of the permanent magnet column at the left end extends into the hollow electromagnetic coil to about one-third of its total length
  • the permanent magnet column at the right end extends into the hollow electromagnetic The length of the coil is about two-thirds of its total length.
  • the magnetic energy generator set provided according to the present invention has the following advantages compared with the prior art:
  • the present invention extends the opposite ends of two permanent magnet columns of the same magnetic pole into the hollow electromagnetic coil respectively, according to the magnetic field and the polar phase
  • the principle of repulsion and heteropolar attraction periodically changing the direction of the current in the hollow electromagnetic coil through the DC power supply and the commutator or through the single-phase AC power supply after the frequency is reduced by the frequency converter, so that the hollow electromagnetic coil is in two forever
  • the reciprocating motion between the magnet columns is performed, and then the interlocking rod frame is driven to reciprocate, and then the reciprocating motion is converted into a rotating motion in the same direction by the conversion device, and finally the generator is driven to generate electricity, and the magnetic energy of the permanent magnet column is converted into electric energy.
  • the invention works by the force generated by the current-carrying air electromagnetic coil and the permanent magnet column, and does not need to use fuel, and skillfully converts the permanent magnet energy of the permanent magnet into electric energy, thereby achieving the use of the clean permanent magnet energy. the goal of.
  • Figure 1 is a top plan view showing a preferred embodiment of a magnetic energy generator set of the present invention.
  • Figure 2 is a front elevational view of Figure 1.
  • 3 is a structural schematic view of the hollow electromagnetic coil and the two permanent magnet columns when the hollow electromagnetic coil of FIG. 1 is moved to the leftmost end.
  • 4 is a structural schematic view of the hollow electromagnetic coil and the two permanent magnet columns when the hollow electromagnetic coil of FIG. 1 is moved to the rightmost end.
  • a preferred embodiment of a magnetic energy generator set of the present invention including a table 1, a hollow electromagnetic coil 2, two permanent magnet columns 3, 4, and a change electromagnetic connection connected to the hollow electromagnetic coil.
  • the power supply device 5 of the coil current direction, the power supply device is a combination of a DC power supply and a commutator or a combination of a single-phase AC power supply and a frequency converter, and a DC power supply and a commutator or a single-phase AC power supply and a frequency converter and a hollow electromagnetic
  • the specific connection of the coil is prior art and will not be described in detail herein.
  • the two permanent magnet columns 3 and 4 are fixedly mounted on the table 1 at intervals, and the opposite ends of the two permanent magnet columns 3 and 4 have the same magnetic poles, and the diameters of the two permanent magnet columns are slightly smaller than those of the hollow electromagnetic coil. Inner diameter, retain a small amount of air gap.
  • the opposite ends of the two permanent magnet columns 3 and 4 respectively extend into the hollow electromagnetic coil 2, and the hollow electromagnetic coil 2 and the two permanent magnet columns are coaxially arranged, and the hollow electromagnetic coil and the horizontal interlocking rod
  • One end of the frame 6 is connected, and the other end of the linkage frame is connected to convert the horizontal reciprocating motion of the linkage bar into a rotary motion converting device 7, and the output shaft of the switching device 7 is connected to the generator 8.
  • the conversion device 7 includes a rack 70 disposed at the other end of the linkage frame and a gearbox 71 mated with the rack, the output shaft of the gearbox being coupled to the generator, and the connection between the rack and the gearbox
  • the mode and the structure of the gear box can be adopted in various different forms according to the prior art, as long as the reciprocating motion is converted into a motion rotating in the same direction by the rack and the gear box, and the switching device can also be implemented in other forms. It will not be detailed here.
  • the specific connection of the conversion means to the generator can likewise be carried out in a number of different forms depending on the prior art.
  • the experiment proves that: when the ratio of the outer diameter of the hollow electromagnetic coil to the diameter of the permanent magnet column is between 1.5:1 and 2. 5:1, the working efficiency is the best.
  • the permanent magnet column extends into the air electromagnetic coil and is much more efficient than the permanent magnet column does not protrude into the air electromagnetic coil.
  • the outer side of the dotted line VIII and the broken line B is the fixed part of the corresponding permanent magnet column. The fixed portion occupies one third of the entire length of the permanent magnet column in length.
  • the length of the permanent magnet column at the left end extends into the hollow electromagnetic coil to account for about two-thirds of its total length
  • the length of the permanent magnet column at the right end extends into the hollow electromagnetic coil to account for its total length.
  • the length of the permanent magnet column at the left end extends into the hollow electromagnetic coil to about one-third of its total length
  • the permanent magnet column at the right end extends into the hollow electromagnetic The length of the coil is about two-thirds of its total length.
  • the invention extends the opposite ends of the two permanent magnet columns 3, 4 opposite to the same magnetic pole into the hollow electromagnetic coil 2, and according to the principle of magnetic field homopolar repulsive and heteropolar attraction, through the DC power supply and the commutator Or periodically changing the direction of the current in the hollow electromagnetic wire 'circle 2 by the single-phase AC power supply after the frequency is reduced by the frequency converter, so that the hollow electromagnetic coil 2 reciprocates between the two permanent magnet columns 3, 4, Then, the interlocking rod frame 6 is driven to reciprocate, and then the reciprocating motion is converted into a motion of rotating in the same direction by the converting device 7, and finally the generator 8 is driven to generate electricity, and the permanent magnet energy of the permanent magnet column is converted into electric energy.
  • the invention works by the force generated by the carrier air electromagnetic coil and the permanent magnet column, and does not need to use fuel, and skillfully converts the permanent magnet energy of the permanent magnet into electric energy, thereby achieving the use of the clean permanent magnet energy. the goal of.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
  • Linear Motors (AREA)

Description

一种磁能发电机组
技术领域
本发明涉及一种磁能发电机组, 将永磁铁恒定的永磁能转化为电能。 背景技术 说
传统的发电机组, 在将燃料转化为电能的时候, 其能效相对较低, 因为在转化过程中会损失相当一部分能量, 并且污染环境, 主要包括二 氧化碳排放、 噪音、 核废料等。 在世界能源日益枯竭和环境持续恶化的 今天, 提供一种能够利用恒定且清洁的永磁书能的发电机组是目前急需解 决的问题。
发明内容
本发明所要解决的技术问题在于克服上述现有技术之不足, 提供一 种能够利用恒定且清洁的永磁能的磁能发电机组。
按照本发明提供的磁能发电机组, 包括工作台、 空心电磁线圈、 两 个永磁铁柱、 与空心电磁线圈相连的改变空心电磁线圈电流方向的供电 装置, 其特征在于两个永磁铁柱分别固定安装在工作台上呈间隔设置, 两个永磁铁柱相对的两端磁极相同, 两个永磁铁柱的直径略小于所述空 心电磁线圈的内径, 保留少量空气隙, 两个永磁铁柱相对的两端分别伸 入至空心电磁线圈内, 所述空心电磁线圈与两个永磁铁柱为同轴设置, 所述空心电磁线圈与水平的连动杆架的一端相连, 连动杆架的另一端连 接将连动杆架的水平往复运动转变成向同一方向旋转运动的转换装置, 该转换装置的输出轴与发电机相连。
所述供电装置为直流电源与换向器的组合或单相交流电源与变频器 的组合。 所述空心电磁线圈的外直径与永磁铁柱的直径的比例为 .1. 5 : 1至 2. 5: 1之间。
所述的转换装置包括设置在连动杆架另一端的齿条和与齿条配合的 齿轮箱, 该齿轮箱的输出轴与发电机相连。
当空心电磁线圈移动到最左端时, 左端的永磁铁柱伸入空心电磁线 圈的长度占其总长度的约三分之二, 右端的永磁铁柱伸入空心电磁线圈 的长度占其总长度的约三分之一; 当空心电磁线圈移动到最右端时, 左 端的永磁铁柱伸入至空心电磁线圈的长度占其总长度的约三分之一, 右 端的永磁铁柱伸入至空心电磁线圈的长度占其总长度的约三分之二。
按照本发明提供的一种磁能发电机组与现有技术相比具有如下优 点: 本发明是将相同磁极相对的两个永磁铁柱的相对两端分别伸入空心 电磁线圈内, 根据磁场同极相斥、 异极相吸的原理, 通过直流电源及换 向器或通过经变频器降低频率后的单相交流电源周期性地改变空心电磁 线圈中电流的方向, 从而使空心电磁线圈在两个永磁铁柱之间进行往复 运动做功, 进而带动连动杆架作往复运动, 再通过转换装置将往复运动 转化成向同一方向的旋转运动, 最后带动发电机发电, 将永磁铁柱的磁 能转化为电能。 本发明与传统的发电机组相比, 通过載流空气电磁线圈 与永磁铁柱产生的作用力做功, 无需使用燃料, 巧妙地将永磁铁恒定的 永磁能转化为电能, 从而达到利用清洁的永磁能的目的。
附图说明
图 1是本发明一种磁能发电机组的一种优选方式的结构俯视示意图。 图 2为图 1的正视示意图。
图 3为图 1中空心电磁线圈运动到最左端时空心电磁线圈与两个永磁 铁柱之间的结构示意图。 图 4为图 1中空心电磁线圈运动到最右端时空心电磁线圈与两个永磁 铁柱之间的结构示意图。
具体实施方式
参见图 1至图 4, 示出本发明的一种磁能发电机组的一种优选方式, 包括工作台 1、 空心电磁线圈 2、 两个永磁铁柱 3、 4、 与空心电磁线圈相 连的改变电磁线圈电流方向的供电装置 5, 所述供电装置为直流电源与换 向器的组合或单相交流电源与变频器的组合, 至于直流电源与换向器或 单相交流电源与变频器和空心电磁线圈的具体连接方式为现有技术, 这 里不再详述。 两个永磁铁柱 3、 4分别固定安装在工作台 1上呈间隔设置, 两个永磁铁柱 3、 4相对的两端磁极相同, 两个永磁铁柱的直径略小于所 述空心电磁线圈的内径, 保留少量空气隙。 两个永磁铁柱 3、 4相对的两 端分别伸入至空心电磁线圈 2内, 所述空心电磁线圈 2与两个永磁铁柱为 同轴设置, 所述空心电磁线圈与水平的连动杆架 6的一端相连, 连动杆架 的另一端连接将连动杆架的水平往复运动转变成旋转运动的转换装置 7, 该转换装置 7的输出轴与发电机 8相连。所述的转换装置 7包括设置在连动 杆架另一端的齿条 70和与齿条配合的齿轮箱 71, 该齿轮箱的输出轴与发 电机相连, 至于齿条与齿轮箱之间的连接方式及齿轮箱的结构可以根据 现有技术采用多种不同的形式, 只要通过齿条与齿轮箱将往复运动转变 成向同一方向旋转的运动即可, 转换装置还可以采用其它一些形式来实 现, 这里不再详述。 转换装置与发电机的具体的连接方式同样可以根据 现有技术采用多种不同的形式。
实验证明: 当所述空心电磁线圈的外直径与永磁铁柱的直径的比例 为 1. 5 : 1至 2. 5: 1之间时, 其工作效率最佳。 另外, 永磁铁柱伸入空气电 磁线圈内又比永磁铁柱没有伸入空气电磁线圈内的工作效率要高得多。 参见图 3、 图 4, 图中虚线八、 虚线 B的外侧为相应的永磁铁柱固定的部分, 固定的部分在长度上占永磁铁柱整体长度的三分之一。 当空心电磁线圈 移动到最左端时, 左端的永磁铁柱伸入空心电磁线圈的长度占其总长度 的约三分之二, 右端的永磁铁柱伸入空心电磁线圈的长度占其总长度的 约三分之一; 当空心电磁线圈移动到最右端时, 左端的永磁铁柱伸入至 空心电磁线圈的长度占其总长度的约三分之一, 右端的永磁铁柱伸入至 空心电磁线圈的长度占其总长度的约三分之二。
本发明是将相同磁极相对的两个永磁铁柱 3、 4相对的两端分别伸入 空心电磁线圈 2内, 根据磁场同极相斥、 异极相吸的原理, 通过直流电源 与换向器或通过经变频器降低频率后的单相交流电源周期性地改变空心 电磁线 '圈 2中电流的方向, 从而使空心电磁线圈 2在两个永磁铁柱 3、 4之 间进行往复运动做功, 进而带动连动杆架 6作往复运动, 再通过转换装置 7将往复运动转化成向同一方向旋转的运动, 最后带动发电机 8发电, 将 永磁铁柱的永磁能转化为电能。 本发明与传统的发电机组相比, 通过載 流空气电磁线圈与永磁铁柱产生的作用力做功, 无需使用燃料, 巧妙地 将永磁铁恒定的永磁能转化为电能, 从而达到利用清洁的永磁能的目的。

Claims

权 利 要 求 书
1、一种磁能发电机组, 包括工作台、空心电磁线圈、两个永磁铁柱、 与空心电磁线圈相连的改变空心电磁线圈电流方向的供电装置, 其特征 在于两个永磁铁柱分别固定安装在工作台上呈间隔设置, 两个永磁铁柱 相对的两端磁极相同, 两个永磁铁柱的直径略小于所述空心电磁线圈的 内径, 保留少量空气隙, 两个永磁铁柱相对的两端分别伸入至空心电磁 线圈内, 所述空心电磁线圈与两个永磁铁柱为同轴设置, 所述空心电磁 线圈与水平的连动杆架的一端相连, 连动杆架的另一端连接将连动杆架 的水平往复运动转变成向同一方向旋转运动的转换装置, 该转换装置的 输出轴与发电机相连。
2、 如权利要求 1所述的磁能发电机组, 其特征在于所述供电装置为 直流电源与换向器的组合或单相交流电源与变频器的组合。
3、 如权利要求 1所述的磁能发电机组, 其特征在于所述空心电磁线 圈的外直径与永磁铁柱的直径的比例为 1. 5 : 1至 2. 5: 1之间。
4、 如权利要求 1所述的磁能发电机组, 其特征在于所述的转换装置 包括设置在连动杆架另一端的齿条和与齿条配合的齿轮箱, 该齿轮箱的 输出轴与发电机相连。
5、 如权利要求 1所述的磁能发电机组, 其特征在于当空心电磁线圈 移动到最左端时, 左端的永磁铁柱伸入空心电磁线圈的长度占其总长度 的约三分之二, 右端的永磁铁柱伸入空心电磁线圈的长度占其总长度的 约三分之一; 当空心电磁线圈移动到最右端时, 左端的永磁铁柱伸入至 空心电磁线圈的长度占其总长度的约三分之一, 右端的永磁铁柱伸入至 空心电磁线圈的长度占其总长度的约三分之二。
PCT/CN2010/002119 2010-11-16 2010-12-21 一种磁能发电机组 WO2012065284A1 (zh)

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CN102761232A (zh) * 2012-07-17 2012-10-31 陈子勇 一种永磁接力轮轴式发电装置

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201063067Y (zh) * 2007-06-18 2008-05-21 华宏新技股份有限公司 镜头致动装置
CN101577475A (zh) * 2008-05-09 2009-11-11 邹九大 磁能发动机
CN101777820A (zh) * 2009-01-09 2010-07-14 邹九大 一种磁能发动机

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201063067Y (zh) * 2007-06-18 2008-05-21 华宏新技股份有限公司 镜头致动装置
CN101577475A (zh) * 2008-05-09 2009-11-11 邹九大 磁能发动机
CN101777820A (zh) * 2009-01-09 2010-07-14 邹九大 一种磁能发动机

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