WO2015192460A1 - 具有电磁脉冲调控磁通量装置的全磁动力机 - Google Patents
具有电磁脉冲调控磁通量装置的全磁动力机 Download PDFInfo
- Publication number
- WO2015192460A1 WO2015192460A1 PCT/CN2014/084758 CN2014084758W WO2015192460A1 WO 2015192460 A1 WO2015192460 A1 WO 2015192460A1 CN 2014084758 W CN2014084758 W CN 2014084758W WO 2015192460 A1 WO2015192460 A1 WO 2015192460A1
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- WIPO (PCT)
- Prior art keywords
- magnetic
- stator
- permanent magnet
- turntable
- governor
- Prior art date
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02N—ELECTRIC MACHINES NOT OTHERWISE PROVIDED FOR
- H02N11/00—Generators or motors not provided for elsewhere; Alleged perpetua mobilia obtained by electric or magnetic means
Definitions
- the invention relates to the technical field of the application of rare earth permanent magnets in the conversion of magnetic energy into mechanical energy.
- the invention provides a strong green-safe, simple structure and reliable operation of the rare earth permanent magnet with the same polarity reversal and heteropolar phase absorption principle, and adopts the magnetoelectric interaction force induction pulse programming technology to pass the above-mentioned problems.
- the regulator contacts charge and discharge the storage and discharge energy component and accurately supply power to the regulator contact coil to cause a change in the magnetic flux of the controller contact inductor soft magnetic core, and the generated electromagnetic field interferes with the boundary magnetic field of the permanent magnet.
- the polar or heteropolar magnetic field superimposes the interference phenomenon, triggering the constant static magnetic field to change into the pulse magnetic force, realizing the magnetic energy to push the rotary disk to continue running, transforming the magnetic energy into the mechanical energy output work, and manufacturing the full magnetic power machine with the electromagnetic pulse regulating magnetic flux device;
- the static balance of the magnetic field of the original permanent magnet combination is changed. In the process of magnetic balance, a part of the magnetic energy is directly converted into mechanical energy. The stronger the inherent magnetic property of the permanent magnet combination, the greater the mechanical energy of the conversion.
- a full-magnetic power machine with an electromagnetic pulse-regulating magnetic flux device which has a stator type or a rotating inner-shaft housing fixed type in a rotating outer casing, and the stator type in the rotating outer casing includes an inner stator and an outer rotating shell.
- Electromagnetic induction pulse programming governor, steering switch, governor contact, permanent magnet, storage and discharge energy component the inner stator has a plurality of stator discs, and the stator iron ring on each stator disc is coupled with a regulator contact and a stator
- the soft magnetic core at one end of the permanent magnet is combined into a closed magnetic circuit on the stator, and several stator disks Installed on the same fixed hollow core spindle, the turntable iron ring on the outer turntable is mounted with one end of several rare earth turntable permanent magnets of the same polarity to form a closed magnetic circuit on the outer turntable, and the governor contact and stator on the stator disk
- the other end of the permanent magnet is combined to form a corresponding dynamic pair, each of the rotating permanent magnets is covered with a magnetic shielding sheath, and each of the stator disks is mounted with a plurality of electromagnetic induction pulse programming governor contacts, the governor contacts are composed of permanent magnets and packages Around the soft magnetic core composition of the week, there is an air gap between
- the other side is connected with the contact magnet iron pad, and the other side of the contact magnet iron pad is coupled with the inner surface of the soft magnetic core protruding platform, and the magnet iron pad and the soft magnetic core are coupled with the stator iron ring to form a small closed magnetic circuit, forever
- the magnet is not at the center of the inductor coil, and the inductor coil is composed of a main coil and a plurality of auxiliary coils wound around the bobbin.
- the soft magnetic core in the inductor coil has a heat dissipating cavity, and the power is turned on and off during operation.
- the instantaneous additional electromotive force or additional electromagnetic field generated by the contact of the device causes the change of the magnetic flux of the soft magnetic core of the induction coil to cause a constant static magnetic field variation in the magnetic field of the permanent magnet of the stator, mainly generating magnetic field oscillation to interfere with the boundary magnetic field strength of the permanent magnet, and the magnetic field superposition occurs.
- the interference phenomenon causes the position of the core of the original constant static magnetic field to change, so that the corresponding permanent magnet on the turntable can smoothly enter the relatively optimal position and then be powered off, and the explosive magnetic force is restored to make the turntable rotate, and the electromagnetic induction pulse is programmed and regulated.
- the power supply of the device is powered off, causing the change of the magnetic flux of the contactor of the controller to form a pulse magnetic force, thereby reducing the magnetic field strength of the magnetic field by changing the magnetic resistance.
- the turntable smoothly rotates to convert the magnetic energy into mechanical energy, and at the same time has the function of static start of the motor.
- the stator discs are staggered from each other at different angles to form a rotating magnetic field effect in the overall space of the magnetic motor, which is beneficial to the static starting and smooth continuous rotation of the same polarity rotating disc permanent magnets on the outer turntable under the magnetic energy force. Permanent magnets are installed the same
- the angle of the guide angle ⁇ ranges from 3 to 15 degrees. It rotates the outer turntable in the same direction under the action of magnetic energy.
- the generator running in conjunction with the magnetic motor performs the function of generating electricity under the command of the electromagnetic induction pulse programming controller.
- the wire connection circuit integrates the electromagnetic induction pulse programming governor, the governor contact, the steering switch, the storage and discharge energy component, and the generator to achieve opening, running, and stopping The functional requirements, such that the magnetic motor realizes the power supply from the storage and discharge energy component, causes the magnetic motor to start at zero, and excites the dynamic electromagnetic field of the associated governor contact and the constant magnetic field of the stator permanent magnet and the rotary disk permanent magnet to change the magnetic field under the moving state.
- the magnetic energy is converted into mechanical energy output, and the magnetic motor and the generator and the controller contact realize the starting, power generation, charging, discharging, increasing the inductance magnetic field and reducing the magnetic resistance according to the design requirements under the action of the electromagnetic induction pulse programming governor;
- the system combination of the machine: the electromagnetic induction pulse programming governor, the steering switch, the storage and discharge energy component, the running generator are all mounted on the frame of the magnetic motor coupling device, or mounted on the component where the magnetic motor is fixed and not rotated, or installed In the same casing, the whole machine system is formed; the brake body is mounted on one side of the outer turntable casing, and the ferromagnetic pad is used to adjust the safety magnetic gap and the guiding angle between the stator and the turntable and the magnetic gap of the turntable, and the permanent magnets in the magnetic body are installed too much.
- the magnetic field will become messy, and the complicated magnetic polarity cross will cause degaussing Therefore, the more magnets there are, the stronger the magnetic force will be, and the speed will be slower. After the magnetic force in the magnetic field is easily balanced, the outer turntable will not rotate.
- the minimum magnetic spacing of the permanent magnets at the installation position is: The number of magnets is more than 2 times larger than the width of the permanent magnet; for another type of rotating inner-hull fixed type full-magnetic machine with electromagnetic pulse-regulated magnetic flux device, including turntable, fixed casing, electromagnetic induction pulse programming governor, steering switch a storage and discharge energy component, a plurality of rotating wheels are mounted on the main shaft of the rotary table, and each of the rotating disks is mounted with a permanent magnet of the same polarity and a turntable iron ring to form a closed magnetic circuit on a plurality of turntables, and a turntable on each turntable
- the other magnetic pole of the iron ring connecting permanent magnet is correspondingly dynamically paired with the permanent magnet on the fixed outer casing, and the stator iron ring on the fixed outer casing is connected with one end of the rare earth permanent magnets having the same polarity to form a closed magnetic circuit on the fixed outer casing.
- the permanent magnet on the inner surface of the fixed casing is mounted with the same angle of the guide angle ⁇ in the range of 3-15 degrees, which makes the turntable face under the action of magnetic energy Rotating in one direction, a plurality of sets of electromagnetic induction pulse programming governor contacts are installed in each adjacent permanent magnet interval in the fixed casing, and an instantaneous additional electromotive force or an additional electromagnetic field generated by the on-off pulse governor contacts during operation has Helps to generate a magnetic field change in the magnetic field of the permanent magnet, to reduce the magnetic resistance of the boundary magnetic field, and to generate a magnetic field superimposed interference phenomenon, which is beneficial to the rotating inner hub Correspondingly installed magnets of the same polarity are smoothly and continuously rotated under the action of magnetic energy.
- the generators are mounted on the external frame of the magnet body and connected by mechanical transmission members, or integrated with the magnetic motor.
- the magnetic motor is connected by wires.
- the line connects the electromagnetic induction pulse programming governor, the governor contact, the steering switch, the storage and discharge energy component, and the running generator.
- the coupling of the spindle output end meets the functional requirements of opening, running and stopping.
- the storage and discharge energy component is mainly composed of Rechargeable battery and steady current protection circuit structure, or supercapacitor and related charging and discharging circuit, or inductance coil and solar cell module related circuit with large inductance, or other power supply, or combination circuit thereof
- the electromagnetic induction pulse programming governor with the matching model is configured. After the magnetic motor is operated for a period of time, the permanent magnets are mutually attenuated to a certain extent. After replacing the new permanent magnet or magnetizing, continue to use the storage and discharge energy components.
- the battery indicator light replenishes the battery in time.
- the electromagnetic induction pulse programming governor is mainly composed of a plurality of copper coils and electronic components programmed to form a position trigger pulse and a current distribution integrated module circuit board, and a plurality of regulator contacts are mounted on the stator iron ring of the stator disk, and the controller touches
- the head is composed of a permanent magnet, a soft magnetic core, an air gap, a contact magnet iron pad, a heat dissipation cavity, a coil bobbin and a plurality of inductor coils, and the main switch is connected to the storage and discharge energy component to supply power to the regulator contact coil to allow the magnetic wheel to be rotated.
- Zero state start when a certain speed is reached, switch to run the generator, so that the controller contacts in the operation produce an accurately controllable instantaneous induction pulse electromagnetic field to interfere with the magnetic field to reduce the magnetoresistance, while the storage and discharge energy component is given to the regulator and
- the regulator contacts are powered, and the generator power supply is used to charge the storage and discharge energy components through the regulator's rectification and voltage regulation.
- Some of the power supplies charge the capacitors or inductors to ensure that the regulator contacts accurately generate the instantaneous magnetic field strength when the capacitor switches are discharged.
- the individual or superimposed disturbing magnetic fields generated by such governor contacts form a rotating magnetic body as a whole. Effect on the regulation of the lighting in specific required magnetic motive embodiment in terms of the specific service function, the brake, neutral, speed, brake off linkage, electronic locks, cooling, alerts are included within the regulatory functions required.
- Full-magnetic machine with electromagnetic pulse-regulated magnetic flux device which has a stator type in a rotating casing or Rotating inner casing fixed type, including stator, turntable, electromagnetic induction pulse programming governor, governor contact, running generator, steering switch, storage and discharge energy component, because the stator surface is mounted with several permanent magnets of the same polarity
- the stator iron ring is combined into a closed magnetic circuit, and the magnetoelectric induction pulser contacts are mounted on the stator iron ring.
- Several stator disks located on the stator are mounted on the same fixed main shaft, and the power supply of the storage and discharge energy component causes the magnetic motor to start to generate electricity.
- the machine charges the storage and discharge energy component, and the turntable iron ring and a plurality of permanent magnets with the same polarity are connected to form a closed magnetic circuit on the turntable, and the permanent magnet on the turntable is mounted with a guiding angle ⁇ , and the pulse governor is generated during operation.
- the controllable instantaneously induced pulsed electromagnetic field acts as a magnetic field to reduce the magnetic field strength of the magnetic field by changing the magnetic resistance, and the superimposed interference phenomenon of the same polarity or the same polarity magnetic field is generated, which is beneficial to the magnetic energy of the same polarity magnet installed on the turntable.
- the force is smoothly and continuously rotated.
- the permanent magnets After the machine is operated for a period of time, the permanent magnets are mutually magnetically attenuated to a certain extent. After replacing the new permanent magnet or magnetizing, continue to use it.
- the storage and discharge energy component needs to be recharged according to the power indicator.
- the machine is green and renewable new energy, close to zero emission and zero pollution, low cost of use, and no air. Long-term stable work in the environment, widely used in a variety of power equipment, power in many special environmental conditions, has a high social and economic value.
- FIG. 1 is a schematic structural view of a stator type in a rotating outer casing of the present invention, and is also an abstract drawing;
- Figure 2 is a cross-sectional view showing the ⁇ - ⁇ of the stator type in the rotating casing of the present invention
- FIG. 3 is a schematic view showing the form of a connecting line of the full-magnetic power system of the present invention.
- FIG. 4 is a schematic structural view of a rotating inner casing fixing type according to the present invention.
- Figure 5 is a cross-sectional view showing the ⁇ - ⁇ of the rotary inner casing fixing type of the present invention.
- Figure 6 is a schematic cross-sectional view showing the structure of the contactor of the governor
- Fig. 7 is a schematic view showing the change of the magnetic field when the controller contacts are energized according to the present invention.
- 1. Full magnetic power machine with electromagnetic pulse regulating magnetic flux device (referred to as magnetic motor), 2.
- the example 1 rotates the inner stator type, including The magnetic motor 1, the electromagnetic induction pulse programming governor 2, the main switch 3, the operating switch 4, the storage and discharge energy component 5, the running generator 12, and the circuit connecting line 15 are integrally connected as shown, and the inner stator 6 has a plurality of The stator disk 7 made of a non-magnetic rigid material, the stator iron ring 9 on each stator disk 7 is coupled with the NdFeB permanent magnet 14 to form a closed magnetic circuit on the inner stator 6, and a plurality of stator disks 7 are mounted on the same fixed On the steel hollow core spindle 8, the turntable iron ring 18 on the outer turntable 16 made of non-magnetic rigid material is connected with a plurality of NdFeB permanent magnets 22 of the same polarity to form a closed magnetic circuit on the outer turn
- Each of the turntable permanent magnets 22 is covered with a magnetic shield 35, and the magnetic shield 35 is made of aluminum or copper to reduce the magnetic field on the side of the permanent magnets.
- Interference, stator hoop 9 of each stator disk 7 A plurality of electromagnetic induction pulse programming governor contacts 10 are mounted thereon, the governor contacts are composed of a permanent magnet 14 and a soft magnetic core 23 surrounding the circumference thereof, and an air gap 33 is partitioned between the soft magnetic core 23 and the permanent magnet 14.
- the air gap 33 is filled with a non-magnetic material, and the stator permanent magnet 14 faces outwardly against the permanent magnet 22 on the turntable 16, and the other side is coupled to the contact magnet iron pad 20, and the other side of the contact magnet iron pad 20 is soft.
- Magnetic The stepped surface of the core 23 is coupled, and the main inductor 19 and the auxiliary inductor 21 are wound around the bobbin 31.
- the main inductor 19 is a main coil for generating electromagnetic
- the auxiliary inductor 21 is auxiliary for generating an induced current supply regulator.
- the control electric signal of the capacitor switch in 10, the soft magnetic core 23 has a heat dissipating cavity 36, which contributes to heat dissipation, and an instantaneous additional electromotive force or an additional electromagnetic field generated by the regulator contact 10 that is turned on and off during operation causes the main inductor coil 19
- the change of the magnetic flux of the soft magnetic core 23 helps to generate a constant static magnetic field variation in the magnetic field of the stator permanent magnet 14, and changes the magnetic core position and the boundary magnetic field strength of the original constant magnetic field, and follows the electromagnetic induction pulse programming governor 2 command.
- the pulse magnetic force is formed to change the direction of the magnetic flux, and the magnetic circuit changes when the main inductor 19 is blocked.
- the magnetic circuit of the permanent magnet 14 and the soft core 23 is stationary.
- the main inductor 19 is turned on.
- the soft magnetic core 23 is electromagnetically induced, the electromagnet has a magnetic field, and the surface magnetic pole is adjusted to a magnetic pole different from the magnetic pole of the surface of the permanent magnet 14. Then, because the magnetic lines are attracted by the opposite poles, the magnetic field goes the shortest and closest path, and the boundary magnetic field strength of the permanent magnet 14 is changed, and the heteropolar magnetic field superimposed interference phenomenon occurs, so that the magnetic reluctance is reduced, and the corresponding permanent magnet 22 on the turntable 16 enters the stator.
- the permanent magnet 14 corresponding to the disk 7 is in the best position facing the surface, and immediately the main inductor 55 is powered off to immediately restore the constant magnetic field of the original permanent magnet 14. This sudden recovery of the explosive magnetic energy pushes the corresponding magnetic permanent magnet 22 on the turntable 16 smoothly.
- the ground rotates continuously to convert the magnetic energy into mechanical energy; it also has the function of static starting of the motor; several stator discs 7 are staggered at different angles to make the overall space inside the magnetic motor 1 form a rotating magnetic field effect, which is beneficial to the corresponding external turntable 16
- the installed polar rotating body 22 of the same polarity is statically activated and smoothly rotated continuously under the action of magnetic energy, and the permanent magnet 22 of the outer turntable 16 is mounted with the guiding angle 27 ⁇ of the same direction in the range of 3-15 degrees, and its magnetic force is applied.
- the outer turntable 16 is rotated in the same direction, and the running generator 12 associated with the magnetic motor 1 is programmed in the electromagnetic induction pulse.
- the function of generating power under the command of the controller 2 is to connect the electromagnetic induction pulse programming governor 2, the governor contact 10, the steering switch 4, the storage and discharge energy component 5, and the running generator 12 through the wire connecting line 15 to achieve the opening, Run and stop all functional requirements, so that magnetic motor 1 realizes storage and discharge
- the energy supply of the component 5 activates the electromagnetic field of the associated governor contact 10 to enable the stator permanent magnet 14 and the rotary disk permanent magnet 22 to start, generate, charge, discharge, increase the inductance magnetic field, and reduce the magnetic resistance under the motion condition.
- the operation, the electromagnetic induction pulse programming controller 2, the operation switch 4, the storage and discharge energy component 5, and the operation generator 12 are all mounted on the frame of the coupling device with the magnetic motor 1, or on the component where the magnetic motor 1 is fixed and not rotated.
- the outer side of the outer turntable 16 is mounted with a brake device 25 on one side, and the ferromagnetic pad 34 is used to adjust the safety magnetic gap 32 and the guide angle 27 between the stator disk 7 and the turntable 16, the permanent magnet in the magnetic motor 1 Installing too many magnetic fields can become messy, and the complicated magnetic polarity crossover between them will cause degaussing. Therefore, the more magnets are, the less magnetic force will be, and the speed will be slower, causing the magnetic force in the magnetic field to be easily balanced.
- Example 2 A full-magnetic machine 1 having another type of rotating inner-shell fixed type electromagnetic pulse-regulated magnetic flux device, including a turntable 16, a fixed casing 37, an electromagnetic induction pulse programming governor 2, a governor contact 10,
- the switch 4 and the discharge energy storage component 5 are mounted on the main shaft 8 of the turntable 16 with a plurality of turntables 16 mounted thereon, and each turntable 16 is mounted with a same polarity of NdFeB permanent magnets 22 and a turntable iron ring 18
- the closed magnetic circuit on the turntable 16, the other magnetic pole of the turntable iron ring 18 on each turntable 16 and the permanent magnet 14 on the fixed outer casing 37 are dynamically paired, and the stator hoop 9 on the fixed outer casing 37 is fixed.
- One end of the permanent magnet 14 having the same polarity is mounted and coupled to form a closed magnetic circuit on the fixed outer casing 37.
- the other outer surface of the turntable iron ring 18 coupled with the permanent magnet 22 is mounted with a guiding angle 24 in the same direction, ⁇ angle range 3- 15 degrees, it rotates the turntable 16 in the same direction under the action of magnetic energy, and a plurality of sets of electromagnetic induction pulse programming governor contacts 10 are mounted in the fixed outer casing 37, and the pulse governor contacts 10 are turned on and off during operation.
- the additional electromotive force or the additional electromagnetic field contributes to the magnetic field change in the magnetic field of the permanent magnet, and the generated heteropolar magnetic field superimposes the interference phenomenon to reduce the magnetic reluctance, so that the magnetic motor 1 generally forms a rotating magnetic field effect, which is beneficial to the turntable 16
- the magnets of the same polarity installed on the opposite side are under the force of magnetic energy.
- the rotor 12 is continuously rotated, and the running generator 12 is mounted on the external frame of the magnetic motor 1 to be connected with each other by a mechanical transmission member, or is integrated with the magnetic motor 1.
- the magnetic motor 1 is programmed to regulate the electromagnetic induction pulse through the wire connecting line 15.
- the controller 2, the governor contact 10, the steering switch 4, the storage and discharge energy component 5, and the running generator 12 are integrally connected, and the spindle output end is coupled to the clutch 26 to achieve the functions of opening, running, and stopping, and the storage and discharge energy component 5 is mainly composed of Rechargeable battery and steady current regulator protection circuit, or by supercapacitor and related charging and discharging circuit, or by inductor with large inductance and solar cell module related circuit, or connected to other power sources, or their combined circuits
- the electromagnetic induction pulse programming governor 2 is connected with the matching model.
- the permanent magnets 14 of the permanent magnet 14 are mutually magnetically attenuated to a certain extent, and the new permanent magnet is replaced or magnetized and then used.
- the storage and discharge energy component 5 needs to press the power indicator light to replenish the power in time, which is a renewable green new energy source.
- the electromagnetic induction pulse programming governor 2 is mainly composed of a plurality of inductor coils and diodes, three-stage tubes, capacitors, resistors, inductors, capacitor discharge controllable switch electronic components, and is programmed to form a position trigger pulse and a current distribution integrated module circuit board.
- the governor contact 10 is mounted on the circumferential surface of the stator disc 7, thereby generating a controllable instantaneous induced pulse electromagnetic field to perform the magnetic transformation, and also operating the storage and discharge energy component 5 to be supplied to the electromagnetic induction pulse programming governor 2
- the power source starts from a standstill, and then operates the generator, and charges the storage and discharge energy component 5 through the rectification and voltage regulation.
- the storage and discharge energy component 5 supplies power to the electromagnetic induction pulse programming regulator 2, wherein some current is supplied to the capacitor.
- the charging ensures that the regulator contact 10 accurately generates the instantaneous magnetic field strength when the capacitive switch is discharged.
- the governor contact 10 has a main inductor 19 and an auxiliary inductor 21, respectively, which can share a magnetic core, and is implemented in the specific magnetic actuator 1 Functional aspects of lighting control, braking, neutral, speed control, electricity Lock, heat, are included within the alert required regulatory functions, some parameters of the respective different types of magnetic motive 1 to Match sense pulse programmer regulator 2 to be adjusted to the best condition.
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- Control Of Eletrric Generators (AREA)
- Permanent Magnet Type Synchronous Machine (AREA)
- Dynamo-Electric Clutches, Dynamo-Electric Brakes (AREA)
Abstract
一种具有电磁脉冲调控磁通量装置的全磁动力机,它分为旋转外殻内定子型和旋转内枢外殻固定型,包括定子(6)、转盘(16)、电磁感应脉冲编程调控器(2)、调控器触头(10)、运转发电机(12)、操纵开关(4)和储放电能组件(5),由于定子表面安装有若干极性相同的永磁体与定子铁环组合成闭合磁路,定子铁环上安装有磁电感应脉冲器触头,由储放电能组件供电使磁动机启动后运转发电机给储放电能组件充电,运转中脉冲调控器产生出可控瞬间感应脉冲电磁场起到变磁作用,发生的磁场叠加干扰现象能够减小磁阻,有利于转盘上相对应安装的同极性磁体在磁能作用力下连续转动,该全磁动力机使用成本低,用于各种动力设备。
Description
具有电磁脉冲调控磁通量装置的全磁动力机
技术领域
本发明涉及稀土永磁体在磁能转换为机械能应用的技术领域。
背景技术
目前, 稀土钕铁硼合金超强永磁体的磁能转变为机械能的设备研制非常迫 切, 在研制过程中会不断有新的技术问题被发现, 被解决, 故需不断的深入研 究, 做出新的技术发明创新。
发明内容
本发明就是针对上述存在的问题提供一种绿色安全、 结构简单、 运转可靠 的稀土永磁体强大的同极性相斥、 异极性相吸原理, 采用磁电相互作用力感应 脉冲编程技术, 通过调控器触头对储放电能组件充放电并对调控器触头线圈准 确供电断电引发调控器触头电感软磁芯的磁通量变化, 产生的电感磁场对永磁 体边界磁场的脉冲干扰, 发生同极性或异极性磁场叠加干扰现象,引发出恒定静 态磁场变动为脉冲磁力, 实现磁能推动转盘持续运转, 磁能转变成机械能输出 做功,制造出具有电磁脉冲调控磁通量装置的全磁动力机; 电感磁场改变了原来 永磁体组合的磁场静态平衡, 在磁动平衡过程中有一部分磁能直接转变成机械 能, 永磁体组合固有磁性越强, 转换的机械能量越大。
本发明提供的技术方案是: 具有电磁脉冲调控磁通量装置的全磁动力机, 它有旋转外殻内定子型或者旋转内枢外殻固定型, 旋转外殻内定子型包括内定 子、 外转殻, 电磁感应脉冲编程调控器、 操纵开关、 调控器触头、 永磁体、 储 放电能组件, 所述内定子上有若干只定子盘, 每个定子盘上的定子铁环联接调 控器触头与定子永磁体一端的软磁芯组合成定子上的闭合磁路, 若干只定子盘
安装在同一固定空芯主轴上, 外转盘上的转盘铁环与若干极性相同的稀土转盘 永磁体一端安装联接形成外转盘上的闭合磁路, 并与定子盘上的调控器触头与 定子永磁体另一端组合形成相应动态组对, 每个转盘永磁体上套有隔磁护套, 每个定子盘上安装有若干电磁感应脉冲编程调控器触头, 调控器触头由永磁体 及包围绕其一周的软磁芯组成, 软磁芯内表面与永磁体表面之间有气隙隔断, 软磁芯内表面有凸出平台,定子永磁体一面朝外对着转盘上的永磁体, 另一面联 接触头磁体铁垫, 触头磁体铁垫的另一面与软磁芯内表面凸出平台联接, 磁体 铁垫和软磁芯都与定子铁环相联接, 构成小闭合磁路, 永磁体不在电感线圈中 心位置,电感线圈由一个主线圈和若干辅助线圈组成绕在线圈骨架上, 电感线圈 中的软磁芯有散热空腔, 在运转时通断电的调控器触头产生的瞬间附加电动势 或附加电磁场引起电感线圈软磁芯磁通量的变化 在该定子永磁体磁场范围内 引起恒定静态磁场的变动, 主要产生磁场震荡干扰永磁体边界磁场强度,发生的 磁场叠加干扰现象, 使原恒定静态磁场的磁心位置发生变化,让转盘上的相应永 磁体能顺利进入相对最佳位置后断电,恢复产生爆发性的磁推力让转盘转动, 随 着电磁感应脉冲编程调控器指令供电断电, 引起调控器触头磁通量变化形成脉 冲磁力作用, 达到减小磁阻改变边界磁场强度, 转盘顺利地不停转动让磁能转 变为机械能,它同时具有电动机静态启动的功能效果, 若干定子盘相互错开不同 角度使磁动机总体空间内形成旋转磁场效果, 有利于外转盘上相对应安装的同 极性转盘永磁体在磁能作用力下静态启动及顺利地连续转动, 外转盘上转盘永 磁体安装同一个方向的导向角 α角度范围 3-15度, 它在磁能作用力下使外转盘 朝同一个方向转动, 与磁动机联动的运转发电机在电磁感应脉冲编程调控器指 令下做发电的功能, 通过导线联接线路将电磁感应脉冲编程调控器、 调控器触 头、 操纵开关、 储放电能组件、 发电机联接一体, 达到开启、 运转、 停止各项
功能要求, 这样磁动机实现了由储放电能组件供电, 使磁动机零启动, 激发了 相关联的调控器触头动态电磁场和定子永磁体和转盘永磁体恒定磁场在运动状 态下发生了磁场变化, 实现磁能转换为机械能输出, 同时磁动机及发电机和调 控器触头在电磁感应脉冲编程调控器作用下实现启动、 发电、 充电、 放电、 增 加电感磁场、 减少磁阻按设计要求顺利运转; 该机系统组合: 电磁感应脉冲编 程调控器、 操纵开关、 储放电能组件、 运转发电机均安装在与磁动机联接装置 的机架上、 或者安装在磁动机固定不旋转的部件上, 或者安装在同一个壳体内, 构成整机系统; 外转盘外壳一侧面安装刹车装置, 铁磁垫用来调节定子与转盘 之间安全磁间隙和导向角及转盘磁间隙, 磁动机体内永磁体安装太多磁场会变 得杂乱, 复杂的磁极性交叉反会引起消磁, 因此磁体越多反尔会磁力不强, 速 度还会变慢, 引起磁场里磁力容易均衡后, 外转盘就不会旋转, 安装位置永磁 体的最小磁间距是: 安装位置园周长除以永磁体数量, 大于永磁体宽度 2倍以 上; 对于另一类型的旋转内枢外殻固定型具有电磁脉冲调控磁通量装置的全磁 动力机, 包括转盘、 固定外殻, 电磁感应脉冲编程调控器、 操纵开关、 储放电 能组件, 所述转盘的主轴上安装有若干只转盘, 每片转盘上安装着极性相同的 永磁体与转盘铁环组合成若干转盘上的闭合磁路, 每个转盘上的转盘铁环联接 永磁体的另一个磁极与固定外殻上永磁体相应动态组对, 固定外殻上的定子铁 环与若干极性相同的稀土永磁体一端安装联接形成固定外殻上闭合磁路, 固定 外殻内表面永磁体安装有同一个方向的导向角 α角度范围 3-15度, 它在磁能作 用力下使转盘朝同一个方向转动, 固定外殻内每个相邻永磁体间隔中安装有若 干组电磁感应脉冲编程调控器触头, 在运转时通断电的脉冲调控器触头产生的 瞬间附加电动势或附加电磁场有助于在该永磁体磁场范围内产生变磁作用, 达 到减小磁阻改变边界磁场强度, 发生的磁场叠加干扰现象, 有利于旋转内枢上
相对应安装的同极性磁体在磁能作用力下顺利地连续转动, 发电机安装在磁动 机体外机架上用机械传动件相互联接运转, 或者与磁动机联为一体机, 磁动机 通过导线联接线路将电磁感应脉冲编程调控器、 调控器触头、 操纵开关、 储放 电能组件、 运转发电机联接一体, 主轴输出端联接离合器达到开启、 运转、 停 止各项功能要求, 储放电能组件主要由可充电池和稳流稳圧保护电路构成、 或 者由超级电容器及相关充放电路、 或者由电感量较大的电感线圈及太阳能电池 组件相关电路、 或者接入其它电源、 或者它们的组合电路构成, 同时配置连接 相匹配型号的电磁感应脉冲编程调控器, 磁动机运转一段时间后, 永磁体相互 磁力衰减到一定程度, 更换新的永磁体或充磁后再继续使用, 储放电能组件需 要按电量指示灯及时补充电量。
上述电磁感应脉冲编程调控器, 主要由若干铜线圈及电子元器件经编程组 成位置触发脉冲及电流分配集成模块电路板组成, 若干调控器触头安装在定子 盘的定子铁环上, 调控器触头由永磁体、 软磁芯、 气隙、 触头磁体铁垫、 散热 空腔、 线圈骨架及若干电感线圈组成, 总开关接通储放电能组件给调控器触头 线圈供电让磁动机转盘由零状态启动, 当达到一定转速后切换成运转发电机, 由此运转中调控器触头产生出准确可控瞬间感应脉冲电磁场起到干扰磁场降低 磁阻作用, 同时储放电能组件给调控器和调控器触头供电, 并通过调控器整流 稳压让发电机电源给储放电能组件充电, 其中有部分电源给电容或电感充电保 证电容开关放电时让调控器触头准确产生瞬间磁场强度的要求, 这种调控器触 头产生的单独或叠加的干扰磁场总体形成旋转磁场效果, 对具体磁动机实施中 在服务功能具体方面需要的灯光调控、 刹车、 空档、 调速、 制动断电联动、 电 子锁、 散热、 警示都包括在调控功能要求内。
具有电磁脉冲调控磁通量装置的全磁动力机, 它有旋转外殻内定子型或者
旋转内枢外殻固定型, 包括定子、 转盘、 电磁感应脉冲编程调控器、 调控器触 头、 运转发电机、 操纵开关、 储放电能组件, 由于定子表面安装有若干极性相 同的永磁体与定子铁环组合成闭合磁路, 定子铁环上安装有磁电感应脉冲器触 头, 位于定子上的若干定子盘安装在同一固定主轴上, 由储放电能组件供电使 磁动机启动后带动发电机给储放电能组件充电, 转盘上安装有转盘铁环和若干 只极性相同的永磁体联接形成转盘上闭合磁路, 转盘上的永磁体安装有导向角 α , 运转中脉冲调控器产生出可控瞬间感应脉冲电磁场起到变磁作用, 达到减 小磁阻改变边界磁场强度, 发生的同极性或异极性磁场叠加干扰现象,有利于转 盘上相对应安装的同极性磁体在磁能作用力下顺利地连续转动, 该机运转一段 时间后, 永磁体相互磁力衰减到一定程度, 需更换新的永磁体或充磁后再继续 使用, 储放电能组件需要按电量指示灯及时补充电量, 该机是绿色环保可再生 新能源, 接近零排放零污染, 使用成本低, 可在无空气环境中长期稳定工作,广 泛用于各种动力设备, 很多特殊环境条件中的动力, 具有很高的社会和经济价 值。
附图说明
图 1为本发明旋转外殻内定子型的结构示意图, 也是摘要附图;
图 2 为本发明旋转外殻内定子型的 Α-Α剖面示意图;
图 3为本发明全磁动力机系统的联接线路形态示意图;
图 4为本发明旋转内枢外殻固定型的结构示意图;
图 5为本发明旋转内枢外殻固定型的 Β-Β剖面示意图;
图 6为本发明调控器触头结构剖面示意图;
图 7为本发明调控器触头通电时磁场变化情况示意图。
图中, 1、 具有电磁脉冲调控磁通量装置的全磁动力机 (简称磁动机), 2、 电 磁感应脉冲编程调控器, 3、 总开关, 4、 操纵开关, 5、 储放电能组件, 6、 内 定子, 7、 定子盘, 8、 主轴, 9、 定子铁环, 10、 调控器触头, 12、 运转发电机, 13、 轴承, 14、 永磁体, 15、 电路联接线, 16、 转盘, 17、 端盖, 18、 转盘铁 环, 19、 主电感线圈, 20、 触头磁体铁垫, 21、 辅助电感线圈, 22、 永磁体, 23、 软磁芯, 24、 导向角 α, 25、 刹车装置, 26、 离合器, 27、 导向角, 28、 接线盒, 29、 机架支脚, 30、 非磁性材料填充物, 31、 线圈骨架, 32、 磁间隙 1, 33、 气隙 2, 34、 磁体铁垫, 35、 隔磁护套, 36、 散热空腔, 37、 固定外殻。 具体实施方式
本发明实例中, 参照图 1、 图 2、 图 3, 图 6、 图 7和图 4、 图 5所述的具有 电磁脉冲调控磁通量装置的全磁动力机, 实例 1 旋转外殻内定子型, 包括磁动 机 1、 电磁感应脉冲编程调控器 2, 总开关 3, 操纵开关 4, 储放电能组件 5、 运 转发电机 12、 电路联接线 15按图连接成一体, 所述内定子 6上有若干只用非磁 性刚性材料制做的定子盘 7, 每个定子盘 7上的定子铁环 9联接钕铁硼永磁体 14组合成内定子 6上的闭合磁路, 若干只定子盘 7安装在同一固定钢质空芯主 轴 8上, 用非磁性刚性材料制做的外转盘 16上的转盘铁环 18与若干极性相同 的钕铁硼永磁体 22—端安装联接形成外转盘 16上的闭合磁路, 并与定子盘 6 上的永磁体 14形成相应动态组对, 每个转盘永磁体 22上套有隔磁护套 35, 隔 磁护套 35采用铝或铜材质制造, 减少永磁体侧面的磁场干扰, 每个定子盘 7的 定子铁环 9上安装有若干组电磁感应脉冲编程调控器触头 10, 调控器触头由永 磁体 14及包围绕其一周的软磁芯 23组成, 软磁芯 23与永磁体 14之间有气隙 33隔断, 气隙 33中用非磁性材料填充,定子永磁体 14一面朝外对着转盘 16上 的永磁体 22, 另一面联接触头磁体铁垫 20, 触头磁体铁垫 20的另一面与软磁
芯 23内台阶面联接, 主电感线圈 19和辅助电感线圈 21绕在线圈骨架 31上, 主电感线圈 19是主线圈用于产生电磁, 辅助电感线圈 21为辅, 用于产生感应 电流供给调控器 10中的电容开关的控制电信号, 软磁芯 23有散热空腔 36, 有 助于散热, 在运转时通断电的调控器触头 10产生的瞬间附加电动势或附加电磁 场引起主电感线圈 19软磁芯 23磁通量的变化,有助于在该定子永磁体 14磁场 范围内产生恒定静态磁场的变动, 使原恒定磁场的磁心位置及边界磁场强度发 生变化, 跟随电磁感应脉冲编程调控器 2指令形成脉冲磁力作用,使磁力线方向 发生变化磁路发生变化, 主电感线圈 19不通电流时在气隙 33阻隔下永磁体 14 与软磁芯 23磁路是静止不通的, 当主电感线圈 19接通电流时软磁芯 23受到电 磁感应成为电磁铁具有磁场, 将表面磁极调整为与永磁体 14表面磁极相异的磁 极, 则因磁力线异极相吸, 磁力线走最短最近的路径, 改变了永磁体 14的边界 磁场强度, 发生异极性磁场叠加干扰现象,达到减小磁阻让转盘 16上对应的永 磁体 22进入定子盘 7对应的永磁体 14面对面最佳位置, 即刻该主电感线圈 19 断电立即恢复原永磁体 14的恒磁场, 这股突然恢复爆发出来的磁能推动转盘 16 上磁性相同的相应永磁体 22顺利地不停转动起来,让磁能转变为机械能; 它同 时具有电动机静态启动的功能效果; 若干定子盘 7相互错开不同角度使磁动机 1内部总体空间形成旋转磁场效果, 有利于外转盘 16上相对应安装的同极性转 盘永磁体 22在磁能作用力下静态启动及顺利地连续转动, 外转盘 16上转盘永 磁体 22安装同一个方向的导向角 27α角度范围 3-15度, 它在磁能作用力下使 外转盘 16朝同一个方向转动, 与磁动机 1联动的运转发电机 12在电磁感应脉 冲编程调控器 2指令下做发电的功能, 通过导线联接线路 15将电磁感应脉冲编 程调控器 2、 调控器触头 10、 操纵开关 4、 储放电能组件 5、 运转发电机 12联 接一体, 达到开启、 运转、 停止各项功能要求, 这样磁动机 1 实现了由储放电
能组件 5供电, 激发了相关联的调控器触头 10电磁场让定子永磁体 14和转盘 永磁体 22在运动状态下实现启动、 发电、 充电、 放电、 增加电感磁场、 减少磁 阻按设计要求顺利运转, 电磁感应脉冲编程调控器 2、 操纵开关 4、 储放电能组 件 5、 运转发电机 12均安装在与磁动机 1联接装置的机架上、 或者安装在磁动 机 1固定不旋转的部件上, 或者安装在同一个壳体内, 外转盘 16外壳一侧面安 装刹车装置 25,铁磁垫 34用来调节定子盘 7与转盘 16之间安全磁间隙 32和导 向角 27, 磁动机 1体内永磁体安装太多磁场会变得杂乱, 它们之间复杂的磁极 性交叉反会引起消磁, 因此磁体越多反尔会磁力不强, 速度还会变慢, 引起磁 场里的磁力容易均衡后, 外转盘 16就不会旋转, 安装位置永磁体 22的最小磁 间距是: 安装位置园周长除以永磁体 22数量, 大于永磁体 22宽度 2倍以上; 实例 2: 对于另一类型的旋转内枢外殻固定型具有电磁脉冲调控磁通量装置的全 磁动力机 1, 包括转盘 16、 固定外殻 37, 电磁感应脉冲编程调控器 2、 调控器 触头 10, 操纵开关 4、 储放电能组件 5, 所述转盘 16的主轴 8上安装有若干只 转盘 16,每片转盘 16上安装着极性相同的钕铁硼永磁体 22与转盘铁环 18组合 成若干转盘 16上的闭合磁路, 每个转盘 16上的转盘铁环 18联接永磁体 22的 另一个磁极与固定外殻 37上永磁体 14相应动态组对, 固定外殻 37上的定子铁 环 9与若干极性相同的永磁体 14一端安装联接形成固定外殻 37上闭合磁路, 转盘铁环 18联接永磁体 22的另一外表面安装有同一个方向的导向角 24,α角度 范围 3-15度, 它在磁能作用力下使转盘 16朝同一个方向转动, 固定外殻 37内 安装有若干组电磁感应脉冲编程调控器触头 10, 在运转时通断电的脉冲调控器 触头 10产生的瞬间附加电动势或附加电磁场有助于在该永磁体磁场范围内产生 变磁作用, 发生的异极性磁场叠加干扰现象,达到减小磁阻, 使磁动机 1总体形 成旋转磁场效果, 有利于转盘 16上相对应安装的同极性磁体在磁能作用力下顺
利地连续转动, 运转发电机 12安装在磁动机 1体外机架上用机械传动件相互联 接运转, 或者与磁动机 1联为一体机, 磁动机 1通过导线联接线路 15将电磁感 应脉冲编程调控器 2、 调控器触头 10、 操纵开关 4、 储放电能组件 5、 运转发电 机 12联接一体, 主轴输出端联接离合器 26达到开启、 运转、 停止各项功能要 求, 储放电能组件 5 主要由可充电池和稳流稳压保护电路构成、 或者由超级电 容器及相关充放电路、 或者由电感量较大的电感线圈及太阳能电池组件相关电 路、 或者接入其它电源、 或者它们的组合电路构成, 同时配置连接相匹配型号 的电磁感应脉冲编程调控器 2, 磁动机 1运转一段时间后, 永磁体 14永磁体 22 相互磁力衰减到一定程度, 更换新的永磁体或充磁后再继续使用, 储放电能组 件 5需要按电量指示灯及时补充电量, 是一项可再生绿色新能源。
上述电磁感应脉冲编程调控器 2, 主要由若干电感线圈及二极管、 三级管、 电容、 电阻、 电感、 电容放电可控开关电子元器件经编程组成位置触发脉冲及 电流分配集成模块电路板组成, 调控器触头 10、 安装在定子盘 7园周表面, 由 此运转中产生出可控瞬间感应脉冲电磁场起到变磁作用, 还要操纵储放电能组 件 5提供给电磁感应脉冲编程调控器 2从静止开始启动的电源, 然后又操纵运 转发电机, 并通过整流稳压给储放电能组件 5充电, 运转中储放电能组件 5给 电磁感应脉冲编程调控器 2供电, 其中有部分电流给电容充电保证电容开关放 电时调控器触头 10准确产生瞬间磁场强度的要求, 调控器触头 10分别有主电 感线圈 19和辅助电感线圈 21可以共用一个磁芯, 同时对具体磁动机 1实施中 在功能方面需要的灯光调控、 刹车、 空档、 调速、 电子锁、 散热、 警示都包括 在调控功能要求内, 不同型号的磁动机 1需匹配的感应脉冲编程调控器 2的一 些相应参数要调整到最佳状态。
以上所述, 仅为本发明较佳实例而已, 当不能限定本申请实施范围, 即凡
依本申请范围所作均等变化与修饰, 皆应仍属本发明涵盖范围内
Claims
1. 具有电磁脉冲调控磁通量装置的全磁动力机, 其特征在于: 所述的全磁动力 机, 它有旋转外殻内定子型或者旋转内枢外殻固定型两大分类, 旋转外殻内 定子型, 包括内定子、 外转殻, 电磁感应脉冲编程调控器、 操纵开关、 调控 器触头、 永磁体、 储放电能组件, 所述内定子上有若干只定子盘, 每个定子 盘上的定子铁环联接调控器触头与定子永磁体一端的软磁芯组合成定子上的 闭合磁路, 若干只定子盘安装在同一固定空芯主轴上, 外转盘上的转盘铁环 与若干极性相同的转盘永磁体一端安装联接形成外转盘上的闭合磁路, 并与 定子盘上的调控器触头与定子永磁体另一端组合形成相应动态组对, 每个转 盘永磁体上套有隔磁护套, 每个定子盘上安装有若干只电磁感应脉冲编程调 控器触头, 调控器触头由永磁体及包围绕其一周的软磁芯组成, 软磁芯与永 磁体之间有气隙隔断,软磁芯内表面有凸出平台,定子永磁体一面朝外对着转 盘上的永磁体, 另一面联接触头磁体铁垫, 触头磁体铁垫的另一面与软磁芯 内表面凸出平台联接, 磁体铁垫和软磁芯都与定子铁环相联接, 形成小闭合 磁路, 电感线圈由一个主线圈和若干辅助线圈组成绕在线圈骨架上, 电感线 圈中的软磁芯有散热空腔, 在运转时受到通断电的调控器触头产生瞬间附加 电动势或附加电磁场引起电感线圈软磁芯磁通量的变化, 在定子永磁体磁场 范围内引起恒定静态磁场的变动干扰永磁体边界磁场强度, 发生磁场叠加干 扰现象,使原恒定静态磁场的磁心位置及边界磁场强度发生变化,让转盘上的 相应永磁体能顺利进入相对最佳位置后断电,恢复产生爆发性的磁推力让转 盘转动, 实现磁能转变为机械能, 它同时具有电动机静态启动的功能效果; 外转盘上转盘永磁体安装同一个方向的导向角 α角度范围 3-15度, 它在磁能 作用力下使外转盘朝同一个方向转动, 通过导线联接线路将电磁感应脉冲编 程调控器、 调控器触头、 操纵开关、 储放电能组件、 发电机联接一体, 构成
整机系统, 达到开启、 运转、 停止各项功能要求, 外转盘外壳一侧面安装刹 车装置, 铁磁垫用来调节定子与转盘之间安全磁间隙和导向角。
2. 根据权利要求 1所述的具有电磁脉冲调控磁通量装置的全磁动力机, 其特征 在于: 所述全磁动力机的另一类型是旋转内枢外殻固定型,包括内转盘、 固定 外殻, 电磁感应脉冲编程调控器、 操纵开关、 储放电能组件, 所述内转盘的 主轴上安装有若干片转盘, 每片转盘上安装着极性相同的永磁体与转盘铁环 组合成若干转盘上的闭合磁路, 每个转盘上的转盘铁环联接永磁体的另一个 磁极与固定外殻上永磁体相应动态组对, 固定外殻上的定子铁环与若干极性 相同的永磁体一端安装联接形成固定外殻上闭合磁路, 在转盘外表面的永磁 体安装有同一个方向的导向角 α,它在磁能作用力下使转盘朝同一个方向转 动, 固定外殻内每个相邻永磁体间隔中安装有调控器触头, 在运转时调控器 触头产生瞬间附加电动势或附加电磁场有助于在该永磁体磁场范围内产生变 磁作用, 达到改变边界磁场强度减小磁阻, 发生磁场叠加干扰现象,使旋转内 枢上相对应安装的同极性磁体在磁能作用力下顺利地连续转动, 运转发电机 安装在磁动机体外机架上用机械传动件相互联接运转, 或者与磁动机联为一 体机, 磁动机通过导线联接线路将电磁感应脉冲编程调控器、 调控器触头、 操纵开关、 储放电能组件、 运转发电机联接一体, 主轴输出端联接离合器达 到开启、 运转、 停止各项功能要求, 磁动机运转一段时间后, 永磁体相互磁 力衰减到一定程度, 更换新的永磁体或充磁后再继续使用, 储放电能组件需 要按电量指示灯及时补充电量。
3.根据权利要求 1所述的具有电磁脉冲调控磁通量装置的全磁动力机,其特征在 于: 所述电磁感应脉冲编程调控器, 主要由若干铜电感线圈及电子元器件编 程组成位置触发脉冲及电流分配集成模块电路板组成, 若干调控器触头安装
在定子盘的定子铁环上形成磁通回路, 调控器触头由永磁体、 软磁芯、 气隙、 触头磁体铁垫、 散热空腔、 线圈骨架及若干线圈组成, 总开关接通储放电能 组件供电给调控器触头让磁动机启动, 带动整个磁动机转盘由静止状态转动, 当达到一定转速后运转发电机, 运转中调控器触头不断产生出准确可控瞬间 感应脉冲电磁场起到干扰永磁体磁场降低磁阻作用, 让磁动机顺利运转, 运 转中储放电能组件给调控器及调控器触头供电, 并通过调控器整流稳压让发 电机电源给储放电能组件充电。
4. 根据权利要求 1所述的具有电磁脉冲调控磁通量装置的全磁动力机, 其特征 在于: 所述储放电能组件, 主要由可充电池和稳流稳压保护电路构成、 或者 由超级电容器及相关充放电路、 或者由电感量较大的电感线圈及相关电路、 或者它们的组合电路构成, 同时配置连接相匹配型号的电磁感应脉冲编程调 控器, 调控器与操纵开关、 储放电能组件安装在与磁动机联接装置的机架上、 或者安装在磁动机固定不旋转的部件上。
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CN203119808U (zh) * | 2013-01-28 | 2013-08-07 | 章宪 | 一种爪型杠杆式与感应脉冲器组合的全磁动力机 |
CN203387440U (zh) * | 2013-06-13 | 2014-01-08 | 章宪 | 具有l型磁体导向角度的全磁动力机 |
-
2014
- 2014-06-16 CN CN201410269616.9A patent/CN105207525A/zh active Pending
- 2014-08-20 CN CN201410414839.XA patent/CN105162358A/zh active Pending
- 2014-08-20 WO PCT/CN2014/084758 patent/WO2015192460A1/zh active Application Filing
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2166558Y (zh) * | 1993-07-26 | 1994-05-25 | 李公新 | 一种永磁旋转体原动机装置 |
DE202012004825U1 (de) * | 2012-05-15 | 2012-06-18 | Johann Zehentbauer | Erfindung zur Erzeugung der Influenz bei elektrostatischem und elektromagnetischen Generatoren unter Vermeidung des Einflusses der elektromotorischen Kraft (EMK) auf die zugeführte Leistung |
CN203119808U (zh) * | 2013-01-28 | 2013-08-07 | 章宪 | 一种爪型杠杆式与感应脉冲器组合的全磁动力机 |
CN203387440U (zh) * | 2013-06-13 | 2014-01-08 | 章宪 | 具有l型磁体导向角度的全磁动力机 |
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