WO2022016302A1 - Magnetic generator - Google Patents

Magnetic generator Download PDF

Info

Publication number
WO2022016302A1
WO2022016302A1 PCT/CN2020/102879 CN2020102879W WO2022016302A1 WO 2022016302 A1 WO2022016302 A1 WO 2022016302A1 CN 2020102879 W CN2020102879 W CN 2020102879W WO 2022016302 A1 WO2022016302 A1 WO 2022016302A1
Authority
WO
WIPO (PCT)
Prior art keywords
magnetic
rotor
stator
outer ring
repulsion
Prior art date
Application number
PCT/CN2020/102879
Other languages
French (fr)
Chinese (zh)
Inventor
薛锦云
Original Assignee
郑施斓
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 郑施斓 filed Critical 郑施斓
Priority to PCT/CN2020/102879 priority Critical patent/WO2022016302A1/en
Publication of WO2022016302A1 publication Critical patent/WO2022016302A1/en

Links

Images

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02NELECTRIC MACHINES NOT OTHERWISE PROVIDED FOR
    • H02N11/00Generators or motors not provided for elsewhere; Alleged perpetua mobilia obtained by electric or magnetic means

Definitions

  • a bearing sleeve type casing end cover is installed on both ends of the support sleeve of the rotor middle ring, and a bearing is installed in the center of the end cover.
  • This bearing is sleeved on the fixed shaft of the central stator, and the two bearing end covers are positioned to support The rotor runs.
  • Dozens of permanent magnet strips are installed on the inner ring of the rotor.
  • Dozens of permanent magnet magnetic strips are installed on the outer ring of the central stator.
  • the magnetic strips on the outer ring of the central stator and the magnetic strips on the inner ring of the rotor have the magnetic properties of the corresponding surfaces to form a magnetic levitation device based on the principle of same-sex repulsion.
  • the rotor magnetic levitation rotates on the outer circumference of the central stator to form a power system.
  • a circle of permanent magnet yoke magnetic salient poles is installed on the outer ring of the rotor, a circle of silicon steel sheet iron core is installed in the inner circle of the outer stator, and a winding coil is installed in the groove of the iron core.
  • the inner ring of the outer stator and the outer ring of the rotor form a power generation system.
  • An outer stator and a central stator are combined with a rotor to form a magneto generator.
  • Figure 1 is the internal structure diagram of the magneto generator
  • Figure 2 is the lateral internal structure diagram of the magneto generator.
  • the support frame on the central stator, and the support sleeve of the rotor middle ring are made of stainless steel.
  • the magnetic levitation repulsion between the corresponding surfaces of each segmented magnetic stripe is 6 mm, resulting in the magnetic levitation repulsion between the corresponding surfaces of the segmented magnetic strips, forming a high and low strength in the same direction, and transforming the magnetic levitation repulsion on the positive corresponding surface into the oblique magnetic levitation repulsion on the corresponding surface.
  • each segment is arranged from strong to weak, resulting in the addition of a guiding direction repulsive force to the repulsive force between the magnetic levitation, forming an oblique magnetic levitation repulsive driving force, so that the permanent magnet strips on the rotor are clockwise from the strong phase.
  • the repulsive force moves in the direction of the weak repulsive force, and the segments are connected and circulated one after another, driving the rotor to rotate clockwise.
  • the magnetic poles of the permanent magnet yoke on the outer ring of the rotor rotate at the same time, so that the silicon steel sheet iron core winding coil on the outer stator generates electricity. Power is generated by magnetism, and electricity is generated by power.
  • the magneto was born.
  • Figure 1 is the internal structure diagram of the magneto generator
  • Figure 2 is the lateral internal structure diagram of the magneto generator.
  • the ratio of the distance between the installation of each magnetic strip is as follows: the width of the magnetic strip on the inner ring of the rotor and the width of the magnetic strip on the outer ring of the central stator are 3 to 2.
  • the width of the magnetic strip on the inner is 2 cm.
  • the width dimension of each magnetic strip is the same as the segment size of each magnetic strip.
  • the magnetic stripe on the inner ring of the rotor and the magnetic stripe on the outer ring of the central stator are separated by a distance of 2.5 mm between points A and B, 1 mm between points B and C, and between points C and D. 2.5 mm between.
  • Figure 1 shows the internal structure of the magnetic generator.
  • the magnetic force is permanent, and the power generated by the magnetic force becomes permanent, and the perpetual motion machine is born.
  • the advantage is that it does not need any fuel and external energy to participate, and only the application of magnetic buoyancy can generate permanent power, which directly drives the power generation system to generate electricity. It can also be used as a space shuttle engine power. Space travel is not out of reach. It can also be used as a ship on water and a car engine on land. Its efficiency is currently incomparable and immeasurable. In short, it is a high-end product born in the sky.

Abstract

A magnetic generator, wherein a main body structure is composed of an outer stator, a central stator and a rotor; and a circle of dozens of permanent-magnet magnetic strips are mounted on an inner ring of the rotor and an outer ring of the central stator. The magnetic strips on the inner ring of the rotor and the magnetic strips on the outer ring of the central stator form a magnetic levitation apparatus on the basis of the principle of like poles repelling each other, so that the rotor magnetically levitates over the outer ring of the central stator to form a power system. A circle of magnetic yoke magnetic salient poles of a permanent-magnet are mounted on an outer ring of the rotor, a circle of silicon steel sheet iron cores are mounted on an inner ring of the outer stator, and a winding coil is mounted in an iron core slot. A magnetic levitation mutually repulsive force that is directly opposite each magnetic strip segment is transformed into an inclined-plane magnetic levitation mutually repulsive force that is diagonally opposite same, in order to form an oblique mutually repulsive driving force to drive the rotor to rotate in a clockwise direction. The magnetic yoke magnetic salient poles on the outer ring of the rotor simultaneously rotate along with the rotor, so that the iron core winding coil on the inner ring of the outer stator generates electricity. Power is generated by a magnetic force to form a permanent perpetual motion machine.

Description

磁力发电机magneto generator
主体结构:main structure:
由一个外定子,一个中心定子,与转子相组合。在转子中圈支撑体套管两端,各安装上一个轴承套筒式套管端盖,在端盖中心安装一个轴承,此轴承套装在中心定子固定轴上,两个轴承端盖定位支撑着转子运行。在转子套管右侧端加装一个刹车闸。在转子内圈上安装一周圈数十条永磁铁磁条。在中心定子外圈上安装一周圈数十条永磁铁磁条,中心定子外圈上的磁条与转子内圈上的磁条,相对应面的磁性,以同性相斥原理形成磁浮装置,造成转子磁浮在中心定子外围圈旋转,形成动力系统。在转子外圈安装上一周圈永磁铁磁轭磁凸极,在外定子内圈安装上一周圈硅钢片铁心,在铁心凹槽内安装绕组线圈。外定子内圈与转子外圈形成发电系统。一个外定子和一个中心定子与一个转子组合成一台磁力发电机。如图1磁力发电机内部结构图,如图2磁力发电机横向内部结构图。It consists of an outer stator, a central stator, combined with the rotor. A bearing sleeve type casing end cover is installed on both ends of the support sleeve of the rotor middle ring, and a bearing is installed in the center of the end cover. This bearing is sleeved on the fixed shaft of the central stator, and the two bearing end covers are positioned to support The rotor runs. Install a brake on the right end of the rotor sleeve. Dozens of permanent magnet strips are installed on the inner ring of the rotor. Dozens of permanent magnet magnetic strips are installed on the outer ring of the central stator. The magnetic strips on the outer ring of the central stator and the magnetic strips on the inner ring of the rotor have the magnetic properties of the corresponding surfaces to form a magnetic levitation device based on the principle of same-sex repulsion. The rotor magnetic levitation rotates on the outer circumference of the central stator to form a power system. A circle of permanent magnet yoke magnetic salient poles is installed on the outer ring of the rotor, a circle of silicon steel sheet iron core is installed in the inner circle of the outer stator, and a winding coil is installed in the groove of the iron core. The inner ring of the outer stator and the outer ring of the rotor form a power generation system. An outer stator and a central stator are combined with a rotor to form a magneto generator. Figure 1 is the internal structure diagram of the magneto generator, and Figure 2 is the lateral internal structure diagram of the magneto generator.
使用材料:中心定子上的支撑架,与转子中圈支撑体套管用不锈钢材料。Materials used: the support frame on the central stator, and the support sleeve of the rotor middle ring are made of stainless steel.
磁力产生动力发电原理:The principle of magnetic power generation:
应用磁浮力为动力,安排转子内圈上的磁条与中心定子外圈上的磁条,各分段相对应面之间的距离,建立相隔有远近之分,最近的为1毫米,最远的为6毫米,造成各分段磁条相对应面之间的磁浮相斥力,往同一方向形成高低强弱之分,将正对应面的磁浮相斥力,改造成为斜对应面的斜面磁浮相斥力,各分段由强到弱排例,造成给磁浮间相斥力增加一项引导方向排斥力,形成斜向磁浮相斥推动力,使转子上的各永磁铁磁条,顺时针方向由强相斥力往弱相斥力方向移动,一段接一段陆续相连接循环移动,带动转子顺时针方向旋转。转子外圈上的永磁铁磁轭磁极同时跟着旋转,使外定子上的硅钢片铁心绕组线圈产生电力。由磁力产生动力,再由动力产生电力。磁力发电机就此旦生。如图1磁力发电机内部结构图,如图2磁力发电机横向内部结构图。Using the magnetic buoyancy force as the driving force, arrange the magnetic stripe on the inner ring of the rotor and the magnetic stripe on the outer ring of the central stator. The magnetic levitation repulsion between the corresponding surfaces of each segmented magnetic stripe is 6 mm, resulting in the magnetic levitation repulsion between the corresponding surfaces of the segmented magnetic strips, forming a high and low strength in the same direction, and transforming the magnetic levitation repulsion on the positive corresponding surface into the oblique magnetic levitation repulsion on the corresponding surface. , each segment is arranged from strong to weak, resulting in the addition of a guiding direction repulsive force to the repulsive force between the magnetic levitation, forming an oblique magnetic levitation repulsive driving force, so that the permanent magnet strips on the rotor are clockwise from the strong phase. The repulsive force moves in the direction of the weak repulsive force, and the segments are connected and circulated one after another, driving the rotor to rotate clockwise. The magnetic poles of the permanent magnet yoke on the outer ring of the rotor rotate at the same time, so that the silicon steel sheet iron core winding coil on the outer stator generates electricity. Power is generated by magnetism, and electricity is generated by power. The magneto was born. Figure 1 is the internal structure diagram of the magneto generator, and Figure 2 is the lateral internal structure diagram of the magneto generator.
各磁条安装相隔尺寸比例如下:转子内圈上的磁条宽度与中心定子外圈上的磁条宽度,为3比2,如转子内圈上的磁条宽度为3厘米,中心定子上的磁条宽度为2厘米。各磁条的宽度尺寸为各磁条的分段尺寸一致。转子内圈上的磁条与中心定子外圈上的磁条,各部位相隔距离,A点与B点之间为2.5毫米,B点与C点之间为1毫米,C点与D点之间为2.5毫米。A点与E点之间为圆周弧形线,D点与F点之间为圆周弧形线。如图1磁力发电机内部结构图。The ratio of the distance between the installation of each magnetic strip is as follows: the width of the magnetic strip on the inner ring of the rotor and the width of the magnetic strip on the outer ring of the central stator are 3 to 2. For example, the width of the magnetic strip on the inner The width of the magnetic strip is 2 cm. The width dimension of each magnetic strip is the same as the segment size of each magnetic strip. The magnetic stripe on the inner ring of the rotor and the magnetic stripe on the outer ring of the central stator are separated by a distance of 2.5 mm between points A and B, 1 mm between points B and C, and between points C and D. 2.5 mm between. There is a circular arc line between points A and E, and a circular arc line between points D and F. Figure 1 shows the internal structure of the magnetic generator.
磁力为永久性,由磁力产生出的动力也就成为永久性,永动机就此旦生。其优点为不用任何燃料外力能源参入,只单应用磁浮力就可产生永久动力,直接带动发电系统产生电力。还可作为航天飞机引擎动力,太空星际旅行并非遥不可及,更可作为水上的船,陆上的车引擎动力,其效率当前无从可比,无法估量,总之为一项恒空出世的高档产品。The magnetic force is permanent, and the power generated by the magnetic force becomes permanent, and the perpetual motion machine is born. The advantage is that it does not need any fuel and external energy to participate, and only the application of magnetic buoyancy can generate permanent power, which directly drives the power generation system to generate electricity. It can also be used as a space shuttle engine power. Space travel is not out of reach. It can also be used as a ship on water and a car engine on land. Its efficiency is currently incomparable and immeasurable. In short, it is a high-end product born in the sky.

Claims (7)

  1. 主体结构设计。一个外圈定子,一个中心定子,与一个转子相组合,转子内圈磁浮在中心定子外围圈,转子外围圈套在外定子内圈,组合成一台磁力发电机的主体结构设计方案。如图1磁力发电机内部结构图,如图2磁力发电机横向内部结构图。Main structure design. An outer stator and a central stator are combined with a rotor, the inner rotor magnetic levitation is on the outer ring of the central stator, and the outer ring of the rotor is sheathed on the inner ring of the outer stator to form a main structural design scheme of a magnetic generator. Figure 1 is a diagram of the internal structure of the magnetic generator, and Figure 2 is a diagram of the transverse internal structure of the magnetic generator.
  2. 将转子内圈磁浮在中心定子外圈。在转子内圈上安装一周圈数十条永磁铁磁条,在中心定子外圈上安装一周圈数十条永磁铁磁条,转子内圈的磁条与中心定子外圈的磁条,相对应面的磁性,以同性相斥原理形成磁浮装置,造成转子磁浮在中心定子外围圈的设计方案。如图1磁力发电机内部结构图。Magnetically levitate the rotor inner ring on the center stator outer ring. Dozens of permanent magnet magnetic strips are installed on the inner ring of the rotor, and dozens of permanent magnet magnetic strips are installed on the outer ring of the central stator. The magnetic levitation device is formed by the principle of same-sex repulsion, resulting in the design scheme of the rotor magnetic levitation in the outer ring of the central stator. Figure 1 shows the internal structure of the magnetic generator.
  3. 在转子中圈支撑体套管两端安装轴承端盖。转子支撑体套管两端各安装上一个套筒式圆形端盖,在端盖中心安装一个轴承,此轴承的作用为,将此轴承套装在中心定子固定轴两端上,支撑定位整个转子运行的设计方案。如图2磁力发电机横向内部结构图。Install bearing end caps on both ends of the rotor middle ring support sleeve. A sleeve-type circular end cover is installed on each end of the sleeve of the rotor support body, and a bearing is installed in the center of the end cover. Running design. As shown in Figure 2, the transverse internal structure of the magnetic generator is shown.
  4. 转子与中心定子上的磁条宽度尺寸比例设计。两者比例为3比2,如转子内圈上的磁条宽度为3厘米,中心定子上的磁条宽度为2厘米。此项比例设计,造成转子在旋转运行中每根磁条当行驶中心定子外圈各分段磁条上时,保持各段位行驶连接稳定,产生的磁浮引导方向排斥力不间断,保持旋转速度稳定的设计方案。如图1磁力发电机内部结构图。The width and size of the magnetic strips on the rotor and the central stator are proportionally designed. The ratio of the two is 3 to 2. For example, the width of the magnetic strip on the inner ring of the rotor is 3 cm, and the width of the magnetic strip on the central stator is 2 cm. This proportional design causes each magnetic strip of the rotor to run on each segmented magnetic strip of the outer ring of the center stator during the rotating operation, keeping the driving connection of each segment stable, the generated magnetic levitation guide direction repulsion force is uninterrupted, and the rotation speed is kept stable. design scheme. Figure 1 shows the internal structure of the magnetic generator.
  5. 转子内圈磁条与中心定子外圈磁条,相对应面之间各段位不同位置间隔尺寸设计。A点与B点之间距离为2.5毫米,B点与C点之间距离为1毫米,C点与D点之间距离为2.5毫米。如图1磁力发电机内部结构图。The magnetic strips on the inner ring of the rotor and the magnetic strips on the outer ring of the center stator are designed with different positions of the corresponding surfaces at different positions. The distance between point A and point B is 2.5 mm, the distance between point B and point C is 1 mm, and the distance between point C and point D is 2.5 mm. Figure 1 shows the internal structure of the magnetic generator.
  6. 磁力产生动力原理。转子内圈磁条与中心定子外圈磁条,相对应面各位置间隔尺寸设计,造成转子上的内圈磁条与中心定子上的外圈磁条,各分段相对应面之间的距离,建立相隔有远近之分,最近的为1毫米,最远的为6毫米,造成各分段磁条相对应面之间的磁浮相斥力往同一方向形成高低强弱之分,顺时针方向各分段由强到弱排例,造成给磁浮间相斥力增加一项引导方向排斥力,使转子上的各永磁铁磁条,顺时针方向由强相斥力往弱相斥力方向移动,一段接一段陆续相连接循环移动,将正对面的磁浮相斥力,改造成为斜对面斜面磁浮相斥力,形成定向斜面相斥推动力,带动转子顺时针方向旋转。转子外圈上的永磁铁磁轭磁极同时跟着旋转,使外定子上的铁心绕组线圈产生电力。由磁力直接产生动力的技术设计方案。如图1磁力发电机内部结构图。The principle of power generation by magnetism. The inner magnetic stripe of the rotor and the outer magnetic strip of the center stator, the space between the corresponding surfaces of each position is designed, resulting in the distance between the inner magnetic stripe on the rotor and the outer magnetic stripe on the central stator, and the corresponding surfaces of each segment , the establishment distance is divided into distance, the nearest is 1 mm, and the farthest is 6 mm, resulting in the magnetic levitation repulsion between the corresponding surfaces of each segmented magnetic stripe to form a high and low strength in the same direction. The segments are arranged from strong to weak, resulting in a repulsive force in the guiding direction added to the repulsion between the magnetic floats, so that the permanent magnet strips on the rotor move clockwise from the strong repulsion to the weak repulsion, segment by segment. The magnetic levitation phase repulsion on the opposite side is transformed into a magnetic levitation phase repulsion force on the obliquely opposite inclined plane, and the directional inclined plane repulsive force is formed, which drives the rotor to rotate clockwise. The magnetic poles of the permanent magnet yoke on the outer ring of the rotor rotate at the same time, so that the iron core winding coils on the outer stator generate electricity. A technical design scheme that directly generates power by magnetic force. Figure 1 shows the internal structure of the magnetic generator.
  7. 以磁取缔电直接产生动力。免去先由电力产生磁力再以磁力产生动力过程。开发磁力应用缔造产生出高档永动机。Directly generate power by magnetic outlawing electricity. The process of first generating magnetic force by electricity and then generating power by magnetic force is eliminated. Develop magnetic applications to create high-end perpetual motion machines.
PCT/CN2020/102879 2020-07-18 2020-07-18 Magnetic generator WO2022016302A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2020/102879 WO2022016302A1 (en) 2020-07-18 2020-07-18 Magnetic generator

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202007183835.2 2020-07-18
PCT/CN2020/102879 WO2022016302A1 (en) 2020-07-18 2020-07-18 Magnetic generator

Publications (1)

Publication Number Publication Date
WO2022016302A1 true WO2022016302A1 (en) 2022-01-27

Family

ID=79730020

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2020/102879 WO2022016302A1 (en) 2020-07-18 2020-07-18 Magnetic generator

Country Status (1)

Country Link
WO (1) WO2022016302A1 (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2196343Y (en) * 1994-05-11 1995-05-03 王伟 Double stator and power-adjustable magnet driven motor
CN1138243A (en) * 1995-06-12 1996-12-18 刘鸿兴 Magnetic engine
CN101800501A (en) * 2010-03-31 2010-08-11 傅开辉 Magneto motor
KR20180025537A (en) * 2016-09-01 2018-03-09 김철곤 A stator having a rotating magnetic field lines

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2196343Y (en) * 1994-05-11 1995-05-03 王伟 Double stator and power-adjustable magnet driven motor
CN1138243A (en) * 1995-06-12 1996-12-18 刘鸿兴 Magnetic engine
CN101800501A (en) * 2010-03-31 2010-08-11 傅开辉 Magneto motor
KR20180025537A (en) * 2016-09-01 2018-03-09 김철곤 A stator having a rotating magnetic field lines

Similar Documents

Publication Publication Date Title
KR100969682B1 (en) Direct-drive electric machine
KR102099979B1 (en) A generator using two rotors which can use a rotary shaft or a fixed shaft
CN107222131A (en) A kind of rotor gravity unloading type magnetic bearing compound machine
CN101369767B (en) Underwater integrated electric motor thruster
CN101696713B (en) Radial magnetic bearing of low-power consumption inner rotor of permanent-magnetic up-attracting and down-repelling structure
CN102723840A (en) Circumference magnet-cutting fluid power generation device
CN112510952B (en) Transverse-dislocation brushless dual-rotor motor based on magnetic field modulation principle
JP2002262489A5 (en)
CN102843015A (en) Linearly-rotating two-degrees-of-freedom magnetic levitation bearing-free permanent magnetic actuator
CN112510953B (en) Transverse dislocation brushless double-rotor motor based on unilateral magnetic regulation principle
KR102156481B1 (en) An axial motor including a magnetic levitation rotary body
CN102118072A (en) Automatic accelerating permanent-magnet direct-drive motor
CN114944737A (en) Primary and secondary mixed excitation type double salient pole two-degree-of-freedom magnetic flux reverse motor
CN110971099A (en) Stator coreless Halbach array bearingless permanent magnet synchronous motor
WO2022016302A1 (en) Magnetic generator
US10778063B2 (en) Reducing bearing forces in an electrical machine
CN109302026A (en) A kind of bicyclic set magnet permanent motor of diametrical magnetization
KR100975326B1 (en) Electric generator with fixing plate comprising segmented magnets and rotary disk having segmented coil
KR20130092302A (en) Stator module and electric motor comprising the same
CN202503401U (en) Gyro stabilizing apparatus and ship having the same
CN102082490A (en) High-thrust permanent magnet direct drive linear electric motor
CN201084870Y (en) A magnetic-energy boat
KR101060171B1 (en) Rotator using magnet
WO2022000517A1 (en) Magnetic perpetual motion machine
CN106849595B (en) Double-mover double-winding cylindrical linear generator based on single-side magnetic regulation principle

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20945812

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 20945812

Country of ref document: EP

Kind code of ref document: A1