JP2006230173A - Hybrid engine - Google Patents

Hybrid engine Download PDF

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Publication number
JP2006230173A
JP2006230173A JP2005068022A JP2005068022A JP2006230173A JP 2006230173 A JP2006230173 A JP 2006230173A JP 2005068022 A JP2005068022 A JP 2005068022A JP 2005068022 A JP2005068022 A JP 2005068022A JP 2006230173 A JP2006230173 A JP 2006230173A
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Prior art keywords
engine
motor
flywheel
generator
weight
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JP2005068022A
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Japanese (ja)
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Kazuhiro Ide
和宏 井出
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Individual
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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
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/60Other road transportation technologies with climate change mitigation effect
    • Y02T10/62Hybrid vehicles

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  • Hybrid Electric Vehicles (AREA)
  • Arrangement Or Mounting Of Propulsion Units For Vehicles (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To solve the problems wherein the weight is heavy, cost is high, and hence a hybrid engine has not become widespread to general public at large, even though problems related to environment and energy are serious and urgent, and especially, engines are used in automobiles and various industries and an improvement in fuel economy is important, and hybridization of the engine is regarded as one of the most important challenges. <P>SOLUTION: Components usable in common are integrated, and the engine itself is hybridized, thus increasing gas mileage, reducing weight and the cost, so that the engine can be used for all purposes, such as four-cycle, two-cycle, and diesel engines. Here, the distance between a magnet and a coil for reducing resistance by magnetic force can be adjusted, as required. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

この発明は、エンジンをハイブリッド化することに関する。  The present invention relates to hybridizing an engine.

従来の自動車用エンジンなどでは、図3に示すように、フライホイール1、セルモーター3、発電機4が別個に取付けられていたものである。  In a conventional automobile engine or the like, as shown in FIG. 3, a flywheel 1, a cell motor 3, and a generator 4 are separately attached.

しかしながら、以上の技術によれば、部品点数が多く重量面、組立て作業面、メンテナンス面において効率の悪いものとなっている。さらに走行用のモーターを別個に取付けハイブリッド化した場合は上記の効率はより悪くなっていくと考えられる。
そこで、この発明は、より効率よく、さらに軽量化でき、燃費に優れたハイブリッドエンジンを提供することを課題とする。
However, according to the above technique, the number of parts is large, and the efficiency is low in terms of weight, assembly work, and maintenance. Furthermore, when the motor for driving is separately installed and hybridized, the above efficiency is considered to deteriorate.
Accordingly, an object of the present invention is to provide a hybrid engine that is more efficient, can be further reduced in weight, and has excellent fuel efficiency.

以上の課題を解決するために、第一発明は、従来のエンジンなどにセルモーター、走行用のモーター、発電機を一体化したことを特徴とするハイブリッドエンジンである。
また、第二発明は、フライホイールとセルモーター、走行用のモーター、発電機を一体化したことを特徴とするハイブリッドエンジンである。
第三発明は、フライホイールとセルモーター、走行用のモーター、発電機を一体化したときに生じる磁力による抵抗を軽減するため磁石とコイルの距離を必要に応じて調節できるようにしたことを特徴とするハイブリッドエンジンである。
In order to solve the above problems, a first invention is a hybrid engine characterized by integrating a cell motor, a motor for traveling, and a generator into a conventional engine or the like.
The second invention is a hybrid engine characterized by integrating a flywheel, a cell motor, a motor for traveling, and a generator.
The third invention is characterized in that the distance between the magnet and the coil can be adjusted as necessary in order to reduce the resistance due to the magnetic force generated when the flywheel and the cell motor, the motor for traveling, and the generator are integrated. This is a hybrid engine.

第一発明によれば、セルモーター、走行用のモーター、発電機を一体化したことによりエネルギーの伝送ロスを無くし、部品点数を減らし、軽量化と組み立て作業、メンテナンス、燃費の効率を高めることが出来る。
また、より排気量の小さいエンジンで必要なパワーを得ることが出来る。
第二発明によれば、フライホイールとセルモーター、走行用のモーター、発電機を一体化したことによりエネルギーの伝送ロスを無くし、部品点数を減らし、軽量化と組み立て作業、メンテナンス、燃費の効率を高めることが出来る。
また、より排気量の小さいエンジンで必要なパワーを得ることが出来る。
第三発明によれば、定速走行時等エンジンのみを使用するときは磁力による抵抗を軽減することが出来、燃費の効率を高めることが出来る。
バッテリーの充電状況により、磁石とコイルの距離を適度に保つことで発電量を調整してエンジンの負担を軽減して燃費の効率を高めることが出来る。
According to the first invention, the integration of the cell motor, the motor for driving, and the generator eliminates energy transmission loss, reduces the number of parts, and reduces the weight, assembly work, maintenance, and fuel efficiency. I can do it.
Moreover, the required power can be obtained with an engine having a smaller displacement.
According to the second invention, the flywheel, the cell motor, the driving motor, and the generator are integrated to eliminate energy transmission loss, reduce the number of parts, reduce the weight, assembling work, maintenance, and fuel efficiency. Can be raised.
Moreover, the required power can be obtained with an engine having a smaller displacement.
According to the third aspect of the invention, when only the engine is used, such as when traveling at a constant speed, resistance due to magnetic force can be reduced, and fuel efficiency can be improved.
Depending on the state of charge of the battery, the distance between the magnet and the coil can be kept moderate to adjust the amount of power generation to reduce the load on the engine and increase the fuel efficiency.

この発明の一実施形態を、図1、図2に示す。
図1は、従来型のエンジンのフライホイール1に当たる部分をフライホイール一体型発電モーター5としてエンジンスタート用のモーター、発進、加速用のモーターとして使用するほか減速時やエンジンの負荷の少ないときには発電用として稼働させる。
図2aは、エンジンスタート用のモーター、発進、加速用のモーターとして使用する時や減速時や発電用として稼働させる場合は磁石6とコイル7の距離を必要に応じて近づける。
図2bは、定速走行時等エンジンのみ使用している場合は磁石6とコイル7の距離を離し、磁力による抵抗を軽減させる。
One embodiment of the present invention is shown in FIGS.
FIG. 1 shows that a portion corresponding to the flywheel 1 of a conventional engine is used as a motor for starting an engine, a motor for starting and accelerating as a flywheel-integrated generator motor 5, and for generating power when the engine is decelerated or when the load on the engine is low. Operate as
In FIG. 2a, when used as a motor for starting an engine, a motor for starting and accelerating, decelerating, or operating for power generation, the distance between the magnet 6 and the coil 7 is reduced as necessary.
In FIG. 2b, when only the engine is used, such as when driving at a constant speed, the distance between the magnet 6 and the coil 7 is increased to reduce resistance due to magnetic force.

「実施形態の効果」
この実施形態によれば、エンジン部は常に燃費の良い状態で回らせておくことが出来る他、フライホイール、セルモーター、走行用のモーター、発電機を一体化できるのでその部分のエネルギーの伝送ロスを無くし、軽量化及び製造コスト、メンテナンスの軽減をはかることが出来る。
また、より排気量の小さいエンジンで必要なパワーを得ることが出来る。
"Effect of the embodiment"
According to this embodiment, the engine unit can always be rotated in a state of good fuel consumption, and since the flywheel, the cell motor, the driving motor, and the generator can be integrated, the energy transmission loss of that part It is possible to reduce the weight, manufacturing cost, and maintenance.
Moreover, the required power can be obtained with an engine having a smaller displacement.

「他の実施形態」
図1の実施形態では、フライホイールとモーター、発電機の組み合わせのハイブリッドエンジンであったが、他の実施形態では、フライホイールとモーター、フライホイールと発電機を取付けただけでも良い。
"Other embodiments"
In the embodiment of FIG. 1, the hybrid engine is a combination of a flywheel, a motor, and a generator. However, in another embodiment, the flywheel and the motor, and the flywheel and the generator may be attached.

この発明の一実施形態を示す斜視図である。It is a perspective view showing one embodiment of this invention. この発明の一実施形態を示す図である。It is a figure which shows one Embodiment of this invention. 従来技術を示す斜視図である。It is a perspective view which shows a prior art.

符号の説明Explanation of symbols

1 フライホイール
2 ピストン
3 セルモーター
4 発電機
5 フライホイール一体型発電モーター
6 フライホイール型磁石
7 コイル
DESCRIPTION OF SYMBOLS 1 Flywheel 2 Piston 3 Cell motor 4 Generator 5 Flywheel integrated generator motor 6 Flywheel magnet 7 Coil

Claims (3)

エンジンとモーター、発電機を一体としたことを特徴とするハイブリッドエンジン。  A hybrid engine that combines an engine, motor, and generator. 請求項1の一体には従来のエンジンに使われているフライホイール、セルモーターを含むことを特徴とする請求項1記載のハイブリッドエンジン。  The hybrid engine according to claim 1, wherein the one-piece structure includes a flywheel and a cell motor used in a conventional engine. 請求項1の一体には従来のエンジンに使われているフライホイールをモーター、発電機として使えるようにしたものである。そのため磁力による抵抗を軽減する方法としてコイルと磁石の距離を必要に応じ調節出来るようにしたことを特徴とする請求項1記載のハイブリッドエンジン。  According to the first aspect of the present invention, a flywheel used in a conventional engine can be used as a motor and a generator. Therefore, the hybrid engine according to claim 1, wherein the distance between the coil and the magnet can be adjusted as necessary as a method of reducing resistance due to magnetic force.
JP2005068022A 2005-02-14 2005-02-14 Hybrid engine Pending JP2006230173A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2005068022A JP2006230173A (en) 2005-02-14 2005-02-14 Hybrid engine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013504489A (en) * 2009-09-15 2013-02-07 ケーピーアイティ カミンズ インフォシステムズ リミテッド How to convert a vehicle to a hybrid vehicle
CN103821612A (en) * 2013-11-05 2014-05-28 北京理工大学 Magnetic drive engine energy transmission system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013504489A (en) * 2009-09-15 2013-02-07 ケーピーアイティ カミンズ インフォシステムズ リミテッド How to convert a vehicle to a hybrid vehicle
CN103821612A (en) * 2013-11-05 2014-05-28 北京理工大学 Magnetic drive engine energy transmission system

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