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    • 31. 发明授权
    • 단극 발전기
    • 同极发电机
    • KR100834497B1
    • 2008-06-02
    • KR1020060049955
    • 2006-06-02
    • 김나현김재현
    • 김나현김재현
    • H02K31/02H02K31/00
    • 본 발명은 단극 발전기에 관한 것으로, 보다 상세하게는 단극 발전기에서 기전력을 결정하는 회전수와 자장의 세기를 만족함은 물론 브러시의 마모로 인한 열화를 줄이고, 2개의 도체원판을 사용했을 때의 동기 구동이 보다 정확하게 이루어질 수 있도록 한 단극 발전기에 관한 것으로서, 원동기(1)에 의해서 회전하는 구동축(2)과 절연된 구리원통(3)의 양측에 각각 (+)(-) 여자코일(4)(4a)이, 서로 대칭을 이루며 구리원통(3)의 바깥쪽에 동심적으로 배치된 철심(5)에 감기고, 상기 철심(5)의 외부에는 구리원통(3)과 도전벨트(6)로 연결된 한 쌍의 구리휠(7)(7a)이 상기 구동축(2)과 평행을 이루는 전동축(8)의 양측에 결합되며, 상기 구리휠(7)(7a)은 (+)(-)브러시(9)(9a)와 단면 상에서 면접촉되고 내부에 삽입되는 전동축(8)과 절연되는 축삽입돌부(7b)를 포함함으로써 동기 구동의 정확성을 손쉽게 구현할 수 있을 뿐만 아니라 기전력을 결정하는 회전수와 자장의 세기를 만족함은 물론 브러시의 마모로 인한 열화 현상을 줄일 수 있는 효과가 있다.
      구리원통, 구리원판, 구리휠, 철심, 도전벨트, 전동축, 구동축
    • 32. 发明公开
    • 단극 발전기
    • HOMOPOLAR DYNAMO
    • KR1020070115464A
    • 2007-12-06
    • KR1020060049955
    • 2006-06-02
    • 김나현김재현
    • 김나현김재현
    • H02K31/02H02K31/00
    • A homopolar generator is provided to enhance accuracy of synchronous drive by applying electromotive force through rotation conductive members and a conductive belt. A homopolar generator includes positive and negative excitation coils(4,4a), a metal member(5), a pair of copper wheels(7,7a), and a shaft insertion extruding member(7b). The positive and negative excitation coils are formed at both sides of a copper bar(3) insulated from a driving shaft(2) of a motor(1) and wound around the metal member, which is disposed in an outer portion of the copper bar. The pair of copper wheels are connected to the copper bar and a conductive belt(6), coupled to both sides of a transmission shaft(8), which is formed in parallel with the driving shaft, and contacted with positive and negative brushes(9,9a). The shaft insertion extruding member, which is inserted into the transmission shaft, is insulated from the transmission shaft.
    • 提供了一个同极发生器,以通过旋转导电元件和导电带施加电动势来提高同步驱动的精度。 单极发电机包括正和负激励线圈(4,4a),金属构件(5),一对铜轮(7,7a)和轴插入挤压构件(7b)。 正和负激励线圈形成在与电动机(1)的驱动轴(2)绝缘的铜棒(3)的两侧并缠绕在金属部件周围,该金属部件设置在铜棒的外部 。 一对铜轮连接到铜条和导电带(6),该导电带(6)与传动轴(8)的两侧相连,传动轴(8)与驱动轴平行形成,并与正和负电刷9接触 ,9A)。 插入传动轴的轴插入挤压构件与传动轴绝缘。
    • 36. 发明申请
    • HOMOPOLAR MACHINE WITH SHAFT AXIAL THRUST COMPENSATION FOR REDUCED THRUST BEARING WEAR AND NOISE
    • 具有轴向扭矩补偿功能的减速轴承磨损和噪音的同轴机
    • WO2004102769A2
    • 2004-11-25
    • PCT/US2004013949
    • 2004-05-05
    • GEN ATOMICSHEIBERGER MICHAELREED MICHAEL ROBERT
    • HEIBERGER MICHAELREED MICHAEL ROBERT
    • F16C39/06H01F13/00H02K7/09H02K31/00H02K31/02H02K55/06H02K
    • F16C39/06F16C32/0495F16C2360/00F16C2380/26H01F13/006H02K7/09H02K31/00H02K31/02H02K55/06Y02E40/627
    • A homopolar machine produces an axial counter force on the rotating shaft to compensate for the load on the shaft's thrust bearing to reduce wear and noise and prolong bearing life. The counter force is produced through magnetic interaction between the shaft and the machine's field coils and is created by changing the current excitation of the field coils, which results in a magnetic flux asymmetry in an inner flux return coupled to the shaft. The homopolar machine may also have a configuration that uses current collectors that maintain substantially constant contact pressure in the presence of high magnetic fields to improve current collector performance. The current collectors are flexible and may be made from either electrically conductive fibers or stacked strips such that they bear up against the armature so that the pressure is maintained by the spring constant of the current collector material. The homopolar machine may also have a configuration where the brushes are oriented so that the current is aligned as much as is practical with the local magnetic field lines so as to reduce the lateral electromagnetic forces on the brushes.
    • 单极机在旋转轴上产生轴向反作用力,以补偿轴的推力轴承上的负载,以减少磨损和噪音,延长轴承寿命。 反作用力通过轴和机器的励磁线圈之间的磁相互作用产生,并且通过改变励磁线圈的电流激励而产生,这导致耦合到轴的内部磁通返回中的磁通量不对称性。 同极机器还可以具有使用集电器的结构,其在高磁场的存在下保持基本上恒定的接触压力以改善集电器性能。 集电器是柔性的,并且可以由导电纤维或堆叠的条形成,使得它们抵靠电枢,使得压力由集电器材料的弹簧常数保持。 单极机器还可以具有这样的构造,其中电刷被定向成使得电流与局部磁场线实际一致地对齐,以便减小电刷上的横向电磁力。
    • 37. 发明专利
    • 単極回転装置
    • 单点旋转装置
    • JP2015065782A
    • 2015-04-09
    • JP2013199311
    • 2013-09-26
    • 市山 義和
    • 市山 義和
    • H02K31/02
    • Y02T10/641
    • 【課題】発電機の高電圧化,電動機を高電圧・低電流で駆動出来る単極回転装置を提供する。 【解決手段】円筒状単極回転装置に於いて回転軸と平行な作動導体群の各々両端を第一導体環群,第二導体環群内の導体環に接続し,第一導体環群内の各導体環に圧接する導体環を有する第三導体環群と,第二導体環群内の各導体環に圧接する導体環を有する第四導体環群と,第三導体環群内及び第四導体環群内の導体環同士をそれぞれ接続するリターン導体群とを有して第三導体環群及び第四導体環群及び第二導体群を共に回転可能に保持し,作動導体群内の導体を直列接続して一つの電流経路を形成する。 【選択図】 図1
    • 要解决的问题:提供用于发电机的较高电压的单极旋转装置,并驱动具有高电压/低电流的电动机。解决方案:在圆柱形单极旋转装置中,操作导体组的两端平行于 旋转轴连接到第一导体环组和第二导体环组中的导体环。 提供了第三导体环组,其包含与第一导体环组中的导体环压接的导体环,第四导体环组,其包含与第二导体环组中的导体环压接的导体环 以及用于连接第三导体环组中的导体环和第四导体环组的返回导体组,用于将第三导体环组,第四导体环组和第二导体组一起可旋转地保持。 操作导体组中的导体串联连接以形成单个电流路径。
    • 38. 发明专利
    • Power-generating electric motor
    • 发电电动机
    • JP2009296869A
    • 2009-12-17
    • JP2009104134
    • 2009-04-22
    • Isamu Takehara勇 竹原
    • TAKEHARA ISAMU
    • H02K31/02
    • PROBLEM TO BE SOLVED: To achieve the distribution of power supplies and the fusion of functions by DC feeding with DC power generation, energy storage, and motor operation.
      SOLUTION: The power-generating electric motor 20 has a field armature collector assembly 10 supporting and connecting electrically a field armature assembly 3. The field armature assembly 3 has a field magnet 1 comprising magnetic field generators 4a, 4b of DC magnetic field, and a magnetic circuit part 5 constituting a closed magnetic path in series magnetically, with the generators, and an armature body 2 with an electrical circuit part 6. The field armature collector assembly 10 has a collector sliding part 9 sandwiching the electrical circuit part 6, and an electric sliding part 7 fixed in the electrical circuit part 6, and connected to the collector sliding part 9 electrically, while being brought into contact with the collector sliding part 9 so as to enable relative displacement. The electrical circuit part 6 and the magnetic circuit part 5 intersect with each other at an electromagnetic induction crossing part and an electromagnetic non-induction crossing part. In the electromagnetic induction crossing part and the electromagnetic non-induction crossing part, the magnetic field orientations of the magnetic circuit part 5 are faced in the opposite directions mutually and are aligned to the direction of electromotive force upon power generation or to the direction of current upon motor operation.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:通过直流发电,储能和电机运行,通过直流馈电实现电源分配和功能融合。 发电电动机20具有支撑并连接电场电枢组件3的励磁电枢收集器组件10.场电枢组件3具有包括直流磁场的磁场发生器4a,4b的场磁体1 以及构成与发电机串联磁闭合的磁路的磁路部分5和具有电路部分6的电枢体2.场电枢收集器组件10具有夹住电路部分6的集电极滑动部分9 以及固定在电路部6中的电动滑动部7,并且与集电体滑动部9电接合,同时与集电体滑动部9接触,从而能够进行相对位移。 电路部6和磁路部5在电磁感应交叉部和电磁非感应交叉部相互交叉。 在电磁感应交叉部和电磁非感应交叉部中,磁路部5的磁场取向在相反的方向上相互面对,并且与发电时的电动势方向或电流方向对准 在电机运行时。 版权所有(C)2010,JPO&INPIT
    • 40. 发明专利
    • Dc motor
    • 直流电动机
    • JP2006238623A
    • 2006-09-07
    • JP2005050539
    • 2005-02-25
    • Fujitsu General Ltd株式会社富士通ゼネラル
    • NARITA KENJIFUJIOKA TAKUSHITANABE YOICHI
    • H02K31/02H02K16/02
    • PROBLEM TO BE SOLVED: To obtain an air gap optimum for a motor, in an air gap type DC motor.
      SOLUTION: A stator 2 is fixed to the center, and two rotors 5 and 6 are supported rotatably, fronting on the stator 1. For the stator 1, 2n (n; a positive integer) pieces of yokes 2a, in each of which trapezoidal or fan-shaped electromagnetic steel plates are stacked in its peripheral direction, are arranged at equal intervals on one hand, and winding 1 is applied from its internal perimeter to its periphery to those yokes 2a on the other, and also severally facing winding sections on the sides of the rotors 5 and 6 are accommodated in the grooves B made in the yoke 2a. For the rotors 5 and 6, permanent magnets 3 and 4, in each of which the stator 1 side is made a magnetic pole, are counterposed to the yoke 2a, and air gap planes are made the same poles, and the permanent magnets 3 and 4 in the mutually facing rotors 5 and 6 are made different poles, and the magnetic flux by the permanent magnets 3 and 4 is closed via a back yoke 14.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了获得气隙型直流电动机中的最佳电动机气隙。 解决方案:定子2固定在中心,两个转子5和6可旋转地支撑在定子1上。对于定子1,每个定子1中的2n(n;正整数)磁轭2a 其中梯形或扇形电磁钢板沿圆周方向堆叠,一方面以相等的间隔布置,并且绕组1从其内周向其周边施加到那些轭2a,另外也分别面对 在转子5和6的侧面上的卷绕部分容纳在由磁轭2a制成的槽B中。 对于转子5和6,将定子1侧为磁极的永久磁铁3,4分别与磁轭2a抵接,气隙面成为相同的极,永久磁铁3和 4相互面对的转子5和6被制成不同的极,并且由永久磁铁3和4的磁通量通过背轭14关闭。版权所有(C)2006,JPO&NCIPI