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JP2008172990A - Power-generating electric motor - Google Patents

Power-generating electric motor Download PDF

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JP2008172990A
JP2008172990A JP2007031257A JP2007031257A JP2008172990A JP 2008172990 A JP2008172990 A JP 2008172990A JP 2007031257 A JP2007031257 A JP 2007031257A JP 2007031257 A JP2007031257 A JP 2007031257A JP 2008172990 A JP2008172990 A JP 2008172990A
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Shintaro Takenaka
伸太郎 竹中
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Shinyoh Industries Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
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    • Y02T10/64Electric machine technologies in electromobility

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Abstract

<P>PROBLEM TO BE SOLVED: To provide an electric motor of which consuming power is a half that of original motor that consumes electricity with the same drive force, or otherwise an electric motor that can generate electricity to be consumed by itself, which unfortunately are not commercially available, under the circumstances in which electric motors are attached and used everywhere, ranging from household appliances to facility and equipment for all the industrial fields merely as rotational driving forces, while although efforts are expended only to driven equipment from today's energy-saving awareness, the most important electric motors are consuming energy in the conventional manner as ever, and that there are needs to restrict the equipment use by users, as much as possible, and to develop biofuels, fuel cells, and the like. <P>SOLUTION: A driving rotating coil pole of electric motor rotates by applying electricity, as a matter of course, but all that is necessary is to attach independent coil pole power generating device or devices on a drive shaft of motor, separate from the motor to be driven. Although this is not an extreme argument, it is possible to generate more power than that consumed by a motor with the application of electricity, and the awareness of power generation by energy other than electric power should be changed, even if power generation incurs facility costs. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

家電製品から全産業機器装着の機器駆動電動機に関する分野で、全家庭から全企業に及ぶ全ての分野で、機器駆動目的電動機と発電機が一体型の、省エネルギー発電電動機である。  This is an energy-saving generator-motor that integrates a device-driven motor and a generator in all fields ranging from household appliances to equipment driven by all industrial equipment and from all households to all companies.

近年、省エネルギーと、クリーンエネルギーの問題が、環境関連と共に大きくクローズアップされる中での発電装置は、太陽光発電と風力発電、或は燃料電池的な未だに実用迄には相当な年月を要する発電装置しかない。  In recent years, power generation devices in which energy saving and clean energy problems are greatly highlighted along with environmental issues, still require considerable years for practical use, such as solar power generation and wind power generation, or fuel cells. There is only a power generation device.

従来から、家庭生活消費材及び各種機器を含む全産業で、液体加圧移送、気体圧縮機器等々、生活及び生産事業に欠かせない物として一般家庭はもとより、全産業、各企業ともに単なる動力電動機が装着され、この動力電動機のエネルギーロスを当然の方策と思考している。  Conventionally, in all industries including household materials and various equipment, liquid pressurization and transfer, gas compression equipment, etc. are indispensable for daily life and production business. Is installed, and the energy loss of this motor is considered a natural measure.

又、大規模工場の場合は、上水道に変わって工業用水を大型ポンプによって大量加圧移送で使用しているが、このほかにも工場生産設備として圧縮空気等は、圧縮動力を消費して放散され、種々の加圧気体を日常的に消費している。  In addition, in the case of large-scale factories, industrial water is used for large-scale pressurized transfer by large pumps instead of water supply, but in addition to this, compressed air etc. is dissipated by consuming compressed power as factory production equipment. In addition, various pressurized gases are consumed daily.

同時に、物を動かす動力機器には、必ず電導モーターが装着されており、殆どが単なる駆動部品としての役目以外にはなく、省エネルギー設計でも限界が有り、これらを有効に使用すれば、設計以上の電力節約につながる事にメーカー自体も気がついていない。  At the same time, power equipment that moves things is always equipped with a conductive motor, and most of them are not only serving as driving parts, but there are limits to energy-saving design. The manufacturers themselves are not aware of the power savings.

特開2002−332947  JP 2002-332947 A 特開2003−061397  JP2003-061397

太陽光発電は天気に左右され、風力発電は地域的な問題を有し、両者共クリーンであるが、1Kw当たりの発電コストは非常に高価につき、場合に依っては設備償却不能とされており、風力発電に至っては、一端強風等で羽根破損或は塔柱倒壊も現実には有り、故障すれば夫々非常に高価な補修費が掛かり、これらは投資効率では償却不能なぐらい大きな欠点をもっているものの、太陽光発電と風力発電を併合して設置してもなお解消不能な欠点は解消されないことは言う迄もない。  Solar power generation depends on the weather, wind power generation has regional problems, and both are clean, but the power generation cost per 1 Kw is very expensive, and in some cases the equipment is not depreciable. In the case of wind power generation, blade damage or tower column collapse due to strong wind etc. is actually in reality, and if it breaks down, it costs very expensive repair costs, and these have major drawbacks that can not be depreciated by investment efficiency However, it goes without saying that even if solar power generation and wind power generation are installed together, the irresolvable drawbacks are not solved.

この太陽光発電と風力発電は自然を相手に気候に左右される自然界エネルギー発電である為、この欠点補完には、人工的発電しかない。  Since this solar power generation and wind power generation are natural energy power generation that is influenced by the climate against nature, there is only artificial power generation to supplement this drawback.

しかし、自然界の影響を受けない従来の人工的発電の全ては、ダム水力発電から始まって火力蒸気圧タービン発電、内燃機動力発電、近年では廃棄物固形化燃料焼却蒸気圧タービン発電等々を含めて、将来性でのバイオエネルギー発電もあるが、いずれも周辺設備からみれば膨大な設備投資が必要であり、発電コスト的に個人家屋や企業では投資回収は不能である。  However, all of the conventional artificial power generation that is not affected by the natural world, including dam hydraulic power generation, including thermal steam pressure turbine power generation, internal combustion engine power generation, and recently solidified fuel incineration steam pressure turbine power generation, etc. There is bioenergy power generation with future potential, but all of them require enormous capital investment from the viewpoint of peripheral facilities, and it is impossible to recover the investment in private houses and companies due to the power generation cost.

しかし、これらの自然界のエネルギー利用発電の欠点を補う人工的エネルギー利用の発電方法は、既存設備或は新規設備のなかで、液体、気体、各種駆動回転機器等々山ほど有るが、何一つとしてこれらの既存エネルギーは利用されていない。  However, there are a lot of power generation methods using artificial energy that compensate for the shortcomings of these energy-based power generations in the natural world, such as liquid, gas, and various types of rotating driving equipment among existing and new facilities. Existing energy is not used.

もし、全国で、否、全世界で、家電機器から全産業設備機器の大小全ての駆動電動機の消費電力エネルギーを有効利用すれば、計算不能な位の省電力エネルギーにつながる。  If nationwide, no, all over the world, the power consumption energy of all drive motors of household appliances to all industrial equipment is effectively used, it leads to power saving energy that cannot be calculated.

課題を解決する手段Means to solve the problem

人工的発電動力は、視点を変えて視れば、人類生活空間及び企業生産工程、或は必要最小限の発電装置しか装備されていない地球上の移動媒体、つまり、航空機、列車、船舶、自動車に至る迄、既存動力源は無尽蔵に氾濫している。  Artificial power generation, from a different perspective, is a moving medium on the earth that is equipped with human living space and corporate production processes, or the minimum necessary power generation devices, that is, aircraft, trains, ships, automobiles. Until then, the existing power source has been inundated.

一般家庭では、先ず常識的な太陽光発電装置を補助を受けて装備しても、残念ながら太陽光の恩恵を受ける年間効果日数は地球上で地域的に大きな格差が有るが、家庭生活必需設備では全世界で全く格差がなく、先ず朝夕の洗面、朝食、昼食、そして夕食の各調理水道使用、一日の水洗トイレ使用回数、洗濯、風呂沸かし、これらは天候に関係なく日常的行為として全世界同様であり、真夏の日照り続きにはガーデニング放水、等々で、水道水配管元では頻繁に水道メーターは回転しており、この水道水ですら浄水場では加圧ポンプを、排水の下水管では下水処理場に到達する迄には何か所もの貯留槽でポンプアップ移送を行っており、これらの動力エネルギーも大きな物である。  In ordinary households, even if it is equipped with a common-sense solar power generation system with assistance, unfortunately there is a large disparity in the annual effect days that benefit from sunlight. In the world, there is no disparity at all. First of all, the morning and evening washbasins, breakfast, lunch, and dinner cooking water use, the number of flush toilet use per day, washing, bathing, these are all daily activities regardless of the weather. It is the same as in the world, and the water irrigation is frequently rotating at the tap water source at the source of the tap water in the midsummer sunshine. By the time it reaches the sewage treatment plant, it is pumped up in several storage tanks, and these motive energy is also a big thing.

同時に、一般家庭で、掃除機、洗濯機、冷蔵庫、時には独立乾燥機、電子レンジ、食器洗浄器、空調機器、扇風機、等々、これらには全てが電動モーターを装着しており、装着の電動モーターに対応した発電機を結続すれば、トータル的に大きな省エネルギーにつながる。  At the same time, in general homes, vacuum cleaners, washing machines, refrigerators, sometimes independent dryers, microwave ovens, dishwashers, air conditioners, electric fans, etc., all of which are equipped with electric motors If a generator that supports the above is connected, it will lead to significant energy savings.

これが産業界の企業設備になれば、全産業で上水道、及び工業用水は絶対的必要物で、その消費水量は大きく、動力の電動モーターに至っては膨大な動力電動機設備も有り、設備機器の駆動電動機は、単に既存設備の動力源のみに使用する時代ではない。  If this becomes an industrial enterprise facility, water supply and industrial water are an absolute necessity in all industries, the amount of water consumption is large, and there are enormous power motor facilities for power motors. An electric motor is not an era when it is used only as a power source for existing equipment.

本発明は、これらの既存設備機器又は今後の新設設備で、発電以外の用途で設置された圧縮空気、油圧機器、不活性高圧ガス、或は列車や自動車、船舶、航空機等々の輸送機関等々で搭載使用の駆動動力電動機、無意識的に浪費しているエネルギーを利用し、最も効率の良い発電となる様に考察した。  The present invention is such existing equipment or new equipment in the future, in compressed air, hydraulic equipment, inert high pressure gas installed for purposes other than power generation, or transportation such as trains, automobiles, ships, airplanes, etc. We considered the most efficient power generation using the onboard drive motor and the energy that was unconsciously wasted.

発明の効果The invention's effect

本発明は、一般家庭からあらゆる分野の産業迄、全世界的に全ての施設で省エネルギー実践可能であり、現代社会の電気機器は人間生活環境には不可欠なエネルギー源の塊を、有効に利用してコストの安価な電力に還元すれば、電気を使えば使うほどに発電し、バイオ燃料や高額な設備を要せずにクリーン発電ができ、グローバルな温暖化防止を各国民全員で実践可能なシステムで有る。  The present invention can be used to save energy in all facilities worldwide, from general households to industries in all fields, and electrical devices in modern society make effective use of a mass of energy sources that are indispensable for the human living environment. If the electricity is reduced to less expensive electricity, the more electricity is used, the more electricity is generated, the clean electricity can be generated without the need for biofuels and expensive equipment, and global warming prevention can be implemented by all citizens. It is in the system.

重要な事は、従来周知の太陽光発電或は風力発電でのKW/h単位の設置費用は莫大な費用が掛かるが、既存設備のエネルギーを利用することによって、初期投資費用の極限迄の節約にもつながった。  The important thing is that the installation cost of KW / h unit in the known solar power generation or wind power generation is enormous, but by using the energy of the existing equipment, the initial investment cost can be saved to the limit. Also led to.

本発明は、消費者が環境保全目的機器の購入でなく、日常生活に不可欠な家電機器の購入で、産業機器では生産に必要不可欠な機器購入で、その結果が、装着されている駆動動力電動機が発電しており、環境保全に意識的、或は無意識でも自動的に環境保全にに貢献可能という大きなメリットを持っており、機器装填の一部品としての価格構成で、大勢に影響の無いコストパフォーマンスである。  The present invention is not a purchase of environmental conservation purpose equipment, but a purchase of home appliances indispensable for daily life, and a purchase of equipment indispensable for production in industrial equipment. Has a great merit that it can automatically contribute to environmental conservation even if it is conscious or unconscious for environmental conservation, and it has a cost structure that is not affected by the price structure as a part of equipment loading. It is performance.

既存設備或は新規設備、及び新規設計機器に付設の電動機(2)で、電動機(2)自体は必要最大限のトルク維持で仕様設定装着されるのが常識であるが、駆動回転過程での経時トルク低減変化がある場合は、必要以上のエネルギーロス回避の為に制御盤等で自動感知して電気印加極数を削減して適正動力トルク維持を図り、回転駆動中の電動機(1)の余剰卜ルクは有効利用の為に、電気印加以外の被回転ローターと対照のステーター極は電気無印加で被回転駆動発電機能を発揮して、発電機能をも発揮する。  It is common sense that the motor (2) attached to the existing equipment or new equipment and the newly designed equipment is mounted with the specifications set to maintain the maximum necessary torque. When there is a change in torque reduction over time, to avoid excessive energy loss, it is automatically detected by the control panel, etc., to reduce the number of electricity applied poles and maintain appropriate power torque. In order to make effective use of surplus torque, the rotor to be rotated other than the application of electricity and the stator pole of the control exhibit the function of rotating drive power generation without application of electricity, and also the power generation function.

電気印加極数を削減して適正動力トルクの為に、電気印加以外の被回転ローターと対照のステーター極は電源無印加で被回転駆動発電機能を発揮していた駆動回転過程で、必要トルク不足状況が発生した時には、電気無印加で被回転駆動極部位の必要極数に電気印加されて回転トルク増大を図る。  In order to reduce the number of electricity applied poles and achieve proper power torque, the required rotor torque is insufficient in the drive rotation process in which the rotated rotor other than electricity applied and the stator pole of the control were performing the driven drive power generation function without applying power. When the situation occurs, electricity is applied to the necessary number of rotation drive pole parts without applying electricity to increase the rotational torque.

又、設備計画仕様の段階で、電動機(2)の複数の独立するローターとステーターの内で動力に使用する独立の極数をを固定化して最大トルクを固定化し、別に被駆動回転の極数をを固定化して発電機機能を併設で発揮する機能をも持たす事も可能である。  In addition, at the stage of the equipment plan specification, the number of independent poles used for power in the plurality of independent rotors and stators of the motor (2) is fixed to fix the maximum torque, and the number of driven rotation poles separately. It is also possible to have the function of fixing the generator and demonstrating the generator function.

発明の実施する為の最良の形態BEST MODE FOR CARRYING OUT THE INVENTION

本発明は回転動力機器(1)は種々有るが、家電機器、産業用設備機器、電車、列車、自転車、自動車、船舶、航空機、その他あらゆる地球上の機器類のなかで最も多種多様で使用されているものとして、電動機(2)を、最も有効に省エネルギーで使用する事を目的とする。  In the present invention, there are various rotary power devices (1), but they are most widely used among household appliances, industrial equipment, trains, trains, bicycles, automobiles, ships, airplanes, and any other terrestrial devices. The purpose is to use the electric motor (2) with the most effective energy saving.

「図1」「図2」「図3」「図4」によって「請求項1」及び「請求項2」を説明すれば、回転動力機器(1)の電動機(2)で、駆動軸(3)に固着されて回転する何段もの複数の夫々の独立ローター鉄心(4)(5)(6)は、独立ステーター鉄心(8)(9)(10)に、段重ねで接見している。  If "Claim 1" and "Claim 2" are described with reference to "FIG. 1," "FIG. 2," "FIG. 3," and "FIG. 4," the drive shaft (3 A plurality of independent rotor cores (4), (5), and (6) that are fixed to and rotate on the independent stator cores are in contact with the independent stator cores (8), (9), and (10) in a stacked manner.

夫々の独立ローター鉄心(4)(5)(6)及び各独立ステーター鉄心(8)(9)(10)には、当然ながら磁界造成で磁界コイル(12)夫々に装着されるか、或は可能な範囲でパーマネントマグネットが装着されて、電気印加で電磁極を構成する。  Each independent rotor iron core (4) (5) (6) and each independent stator iron core (8) (9) (10) are, of course, mounted on the magnetic coil (12) by magnetic field generation, or Permanent magnets are installed as much as possible, and an electromagnetic pole is formed by applying electricity.

独立ローター鉄心(4)(5)(6)及び独立ステーター鉄心(8)(9)(10)は、電動機(2)内で、各段層毎に独立している事から、各段層毎の磁界コイル(12)に電気印加を全段印加すれば強力な駆動力となり、逆に、駆動対象機器に必要な駆動力を削減しても良い時には、それに応じて各段層毎の磁界コイル(12)の電気印加段数を削減コントロールすれば消費電力も削減され、電気印加しない被駆動となる磁界コイル(12)によって発電作用が躍起し、電動機(2)は動力駆動回転しながら発電もされ、不必要な余剰電力消費を排除して、その上、発電も行う画期的な電動機(2)である。  The independent rotor cores (4), (5) and (6) and the independent stator cores (8), (9) and (10) are independent for each step layer in the motor (2). When all stages of electrical application are applied to the magnetic field coil (12), a strong driving force is obtained. Conversely, when it is possible to reduce the driving force required for the device to be driven, the magnetic field coil for each step layer accordingly. If the number of electricity application stages in (12) is reduced and controlled, the power consumption is also reduced, and the power generation action is brought about by the driven magnetic coil (12) to which no electricity is applied, and the electric motor (2) generates power while being driven by power. This is an epoch-making electric motor (2) that eliminates unnecessary surplus power consumption and also generates electricity.

又、電気印加しない被駆動の磁界コイル(12)で発電稼働中に、被駆動機器関連で電動機(2)がオーバーロードになり掛けて電流が増大しかけた時には、被駆動段層の発電中の磁界コイル(12)に電気印加切り替えして電動機(2)の駆動極数を増やし、オーバーロードを解消する。  In addition, when the electric motor (2) is overloaded in connection with the driven equipment and the current is increasing while the electric power is being driven by the driven magnetic coil (12) to which no electricity is applied, The application of electricity to the magnetic field coil (12) is switched to increase the number of drive poles of the electric motor (2), thereby eliminating the overload.

これらの機器装着の電動機(2)の稼働中での必要トルク変化は、産業機器には多く、例えば有機物基材装填の生ごみ発酵処理機の場合、日毎の投入生ごみの量や質、及び水分率等が一定するわけが無く、乾燥状態では軽ロードの攪拌で、急激な大量投入では過湿度で粘度が増大し、水分蒸散過程では塊状から粘土質土壌と変化し、この段階の最大トルクに対応した電動機(2)の装着は常時消費電力が大きくて装着不能が、本発明の電動機(2)の装着で、省エネルギーを上回る発電メリットが出る。  The required torque change during the operation of the electric motor (2) equipped with these devices is large in industrial equipment. For example, in the case of a garbage fermentation treatment machine loaded with an organic base material, the amount and quality of the input garbage per day, and The moisture content is not constant, it is a light load agitation in the dry state, the viscosity increases due to overhumidity when it is suddenly added in large quantities, and it changes from massive to clay soil in the process of moisture transpiration, and the maximum torque at this stage The mounting of the electric motor (2) corresponding to the above has a large power consumption and cannot be mounted at all times, but the mounting of the electric motor (2) of the present invention provides a power generation merit that exceeds energy saving.

同時に、電気自動車の駆動用の電動機(2)の場合には、スタート時点の駆動力と走行中の電動機負荷の大きな差、走行中のスピード負荷もさる事ながら、昇り阪道路や下り阪道路での負荷の変化にも電流値変化等で、電動機(2)自体での自動制御で、或は制御盤での制御も可能で、従来の自動車発電機の内燃機関のクランク回転で常時被駆動回転発電するものとは、おのずから異なる。  At the same time, in the case of the electric motor (2) for driving an electric vehicle, the difference between the driving force at the start and the electric motor load during travel, the speed load during travel, and the uphill and downhill roads Changes in the load of the motor can be controlled automatically by the electric motor (2) itself or by the control panel by changing the current value, etc., and always driven by the crank rotation of the internal combustion engine of a conventional automobile generator Naturally, it is different from what generates electricity.

上記に述べた「請求項1」の電動機(2)の基本構成は、一定の長さの駆動軸(3)に対して、独立ローター鉄心(4)(5)(6)及び独立ステーター鉄心(8)(9)(10)が円周上で各段層に配置されていることから、高さ余裕は有るが長さ方向での設置面積に制限がある場合には非常に有効であり、独立ローター鉄心(4)(5)(6)の何れかが駆動軸(3)から遠隔にある為に、同じ磁界磁力で有れば駆動力が大きいことのメリットが存在する。  The basic configuration of the electric motor (2) of the above-mentioned "claim 1" is that the independent rotor cores (4), (5), (6) and the independent stator iron core ( 8) Since (9) and (10) are arranged in each step layer on the circumference, it is very effective when there is a height margin but the installation area in the length direction is limited, Since any one of the independent rotor cores (4), (5), and (6) is remote from the drive shaft (3), there is a merit that the drive force is large if the magnetic field magnetic force is the same.

次に、「図5」「図6」「図7」「図8」に従って「請求項3」を説明すれば、電動機(2)の設置面積或は設置容積の制限で、高さ方向に制限が有り、長さ方向で余裕がある場合の、独立ローター鉄心(4)(5)(6)(7)及び独立ステーター鉄心(8)(9)(10)(11)の設置構成上で独立ローター鉄心(4)(5)(6)(7)が、駆動軸(3)の長さ方向に順次配列された構成で、機能性は全く変わらない。  Next, “Claim 3” will be described according to “FIG. 5”, “FIG. 6”, “FIG. 7”, and “FIG. 8”, and the installation area or the installation volume of the electric motor (2) is limited. And independent rotor cores (4) (5) (6) (7) and independent stator cores (8) (9) (10) (11) when there is room in the length direction The rotor cores (4), (5), (6), and (7) are arranged sequentially in the length direction of the drive shaft (3), and the functionality does not change at all.

しかし、独立ローター鉄心(4)(5)(6)(7)が駆動軸(3)上で長尺になる場合には高速回転で独立ローター鉄心(4)(5)(6)(7)の重力も加わり、駆動軸(3)が遠心力で振られて回転振動を起こし得る事から、適易、中間軸受け(12)を装着する。  However, when the independent rotor cores (4), (5), (6), and (7) are long on the drive shaft (3), the independent rotor cores (4), (5), (6), and (7) are rotated at high speed. In addition, the drive shaft (3) is vibrated by centrifugal force and can cause rotational vibration. Therefore, the intermediate bearing (12) is appropriately attached.

電動機の内部構造が、駆動軸回転の電磁コイル等の基本は変わらずに、それとは別個の独立した磁界のローターとステーターを段層で装着し、両者に電気印加で駆動力は増大し、別個の独立した磁界のローターとステーターに電力無印加被駆動磁界で発電する電動機の、断面図である。The internal structure of the motor is the same as that of the electromagnetic coil for rotating the drive shaft, but a separate magnetic field rotor and stator are mounted in layers, and the driving force is increased by applying electricity to both. It is sectional drawing of the electric motor which produces | generates a rotor and stator of an independent magnetic field with a non-power-applied driven magnetic field. 電動機の軸方向断面図である。It is an axial sectional view of an electric motor. 独立した段層装着磁界のローターとステーターが多い電動機の断面図である。It is sectional drawing of the electric motor with many rotors and stators of an independent stepped mounting magnetic field. 独立した段層装着磁界のローターとステーターが多い電動機の軸方向断面図である。It is an axial sectional view of an electric motor with many rotors and stators having independent stepped mounting magnetic fields. 電動機の内部構造が、駆動軸回転の電磁コイル等の基本は変わらずに、それとは別個の独立した磁界のローターとステーターを駆動軸方向で装着し、両者に電気印加で駆動力は増大し、別個の独立した磁界のローターとステーターに電力無印加被駆動磁界で発電する電動機の、断面図である。The internal structure of the electric motor does not change the basics such as the electromagnetic coil for driving shaft rotation, but a separate magnetic field rotor and stator are mounted in the driving shaft direction, and the driving force increases by applying electricity to both, It is sectional drawing of the electric motor which produces | generates a rotor and stator of a separate independent magnetic field by a non-power-applied driven magnetic field. 電動機の軸方向断面図である。It is an axial sectional view of an electric motor. 独立した軸方向装着磁界のローターとステーターの装着数が多い電動機の断面図である。It is sectional drawing of an electric motor with many mounting | wearing number of rotors and stators of independent axial mounting magnetic fields. 独立した軸方向装着磁界のローターとステーターの装着数が多い電動機の軸方向断面図である。FIG. 3 is an axial sectional view of an electric motor having a large number of independent axial mounting magnetic field rotors and stators.

符号の説明Explanation of symbols

1 回転動力機器
2 電動機
3 駆動軸
4 独立ローター鉄芯
5 独立ローター鉄芯
6 独立ローター鉄芯
7 独立ローター鉄芯
8 独立ステーター鉄芯
9 独立ステーター鉄芯
10 独立ステーター鉄芯
11 独立ステーター鉄芯
12 磁界コイル
13 中間軸受け
DESCRIPTION OF SYMBOLS 1 Rotation power equipment 2 Electric motor 3 Drive shaft 4 Independent rotor iron core 5 Independent rotor iron core 6 Independent rotor iron core 7 Independent rotor iron core 8 Independent stator iron core 9 Independent stator iron core 10 Independent stator iron core 11 Independent stator iron core 12 Magnetic coil 13 Intermediate bearing

Claims (3)

回転動力機器(1)である電動機(2)の、駆動軸(3)に連動して回転する単数或は複数の場合はその数だけの、例えば3段層に場合は独立ローター鉄芯(4)(5)(6)及びそれに対照する複数の独立ステーター鉄芯(8)(9)(10)は、回転中心の駆動軸(3)から円外周に向かって積層形状で複数の多重積層を構成する。
それぞれの独立ローター鉄芯(4)(5)(6)及び独立ステーター鉄芯(8)(9)(10)には磁界コイル(12)、或は可能な範囲でのパーマネントマグネットが鉄心に装着されて、独立ローター鉄芯(4)(5)(6)及び独立ステーター鉄心(8)(9)(10)は、内外両面に対照する両極を構成して一定間隙を持ってローター回転可能な状態で装着される。
独立ローター鉄芯(4)(5)(6)及び独立ステーター鉄心(8)(9)(10)が夫々分離独立していることから、各極の夫々の磁界コイル(12)への電気印加、或は無印加を制御盤等でコントロールする事によより、電動機(2)の構造上で持つ最大と最小の駆動力変化を必要に応じて随時発揮する能力機能を有し、又、電気無印加で被駆動の磁界コイル(12)による発電機能も生じて供給先に通電又は蓄電目的送電が可能である。
或は当初から、複数の独立ローター鉄芯(4)(5)(6)及び独立ステーター鉄心(8)(9)(10)の内で、限定固定電気印加して、電動機(2)が回転駆動する限り無印加極の被駆動によって発電する様にも構成が出来、家電機器の最小型から産業機器の超大型迄、設備機器動力源としての極限の省エネルギーを達成させる、複数独立極層を持った、駆動モーター兼発電機。
In the case of a single or a plurality of electric motors (2) that are rotating power devices (1) that rotate in conjunction with the drive shaft (3), the number of them, for example, the number of independent rotor cores (4 ) (5) (6) and a plurality of independent stator iron cores (8), (9), and (10) to be compared with each other, a plurality of multiple laminations are formed in a laminated shape from the rotation center drive shaft (3) toward the outer circumference of the circle. Constitute.
Each independent rotor iron core (4) (5) (6) and independent stator iron core (8) (9) (10) is fitted with a magnetic coil (12) or permanent magnet to the extent possible. The independent rotor cores (4), (5), (6) and the independent stator cores (8), (9), (10) constitute both poles contrasting both the inner and outer surfaces, and the rotor can rotate with a constant gap. Mounted in a state.
Since the independent rotor iron cores (4), (5) and (6) and the independent stator cores (8), (9) and (10) are separated and independent, electricity is applied to each magnetic field coil (12) of each pole. In addition, by controlling the non-application with a control panel, etc., it has the ability function to demonstrate the maximum and minimum driving force changes on the structure of the electric motor (2) as needed. A power generation function by the non-applied driven magnetic coil (12) is also generated, and the supply destination can be energized or transmitted for power storage.
Or, from the beginning, the motor (2) is rotated by applying limited fixed electricity among the plurality of independent rotor cores (4) (5) (6) and independent stator cores (8) (9) (10). As long as it is driven, it can be configured to generate electricity by being driven by the non-applied pole, and it has multiple independent pole layers that achieve the ultimate energy saving as a power source for equipment from the smallest type of home appliances to the ultra-large size of industrial equipment. I have a drive motor / generator.
動力駆動トルクの不足と余剰を、駆動機(2)自体に内蔵の回路によって自動で電気的に感知制御し、駆動力不足の場合は全ローターとステーターが電気印加で電動機能に切り替わり、トルク余剰の段階では必要トルク電動機能維持に切り替わり、他の余剰極は電気無印加に切り替わって発電機能を果たす、請求項1記載の、駆動モーター兼発電機。  The deficiency and surplus of the power drive torque is automatically sensed and controlled automatically by the built-in circuit in the drive (2) itself. When the drivability is insufficient, all rotors and stators are switched to the electric function by applying electricity, and the torque surplus The drive motor / generator according to claim 1, wherein at the stage, the motor is switched to maintaining the required torque electric function, and the other surplus pole is switched to non-electricity application to perform a power generation function. 回転動力機器(1)である電動機(2)の、駆動軸(3)に連動して回転する複数の独立ローター鉄芯(4)(5)(6)(7)は駆動軸(3)に固着されて水平方向に独立装着され、それに対照する複数の独立ステーター鉄芯(8)(9)(10)(11)も、駆動軸の延長水平方向に向かって装着された、請求項1乃至2記載の、駆動モーター兼発電機。  A plurality of independent rotor iron cores (4), (5), (6) and (7) rotating in conjunction with the drive shaft (3) of the electric motor (2) which is the rotary power device (1) are connected to the drive shaft (3). A plurality of independent stator iron cores (8), (9), (10), and (11) that are fixed and independently mounted in the horizontal direction are also mounted toward the extended horizontal direction of the drive shaft. The drive motor / generator according to 2.
JP2007031257A 2007-01-15 2007-01-15 Power-generating electric motor Pending JP2008172990A (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002153027A (en) * 2000-11-14 2002-05-24 Mitsubishi Heavy Ind Ltd Multiple redundant permanent magnet motor
JP2003032978A (en) * 2001-07-23 2003-01-31 Mitsubishi Electric Corp Rotating electric machine
JP2005162448A (en) * 2003-12-05 2005-06-23 Mitsubishi Electric Corp Elevator hoisting machine

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002153027A (en) * 2000-11-14 2002-05-24 Mitsubishi Heavy Ind Ltd Multiple redundant permanent magnet motor
JP2003032978A (en) * 2001-07-23 2003-01-31 Mitsubishi Electric Corp Rotating electric machine
JP2005162448A (en) * 2003-12-05 2005-06-23 Mitsubishi Electric Corp Elevator hoisting machine

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