JP2005139917A - Magnetic drive pump - Google Patents

Magnetic drive pump Download PDF

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Publication number
JP2005139917A
JP2005139917A JP2003374486A JP2003374486A JP2005139917A JP 2005139917 A JP2005139917 A JP 2005139917A JP 2003374486 A JP2003374486 A JP 2003374486A JP 2003374486 A JP2003374486 A JP 2003374486A JP 2005139917 A JP2005139917 A JP 2005139917A
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Japan
Prior art keywords
pump chamber
rotation
impeller
pump
drive
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Pending
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JP2003374486A
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Japanese (ja)
Inventor
Seiya Tanaka
誠也 田中
Mikinao Suzuki
幹尚 鈴木
Makoto Kawauchi
誠 川内
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Aisin Corp
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Aisin Seiki Co Ltd
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Application filed by Aisin Seiki Co Ltd filed Critical Aisin Seiki Co Ltd
Priority to JP2003374486A priority Critical patent/JP2005139917A/en
Priority to US10/967,178 priority patent/US20050095149A1/en
Priority to EP04025541A priority patent/EP1529960A1/en
Priority to CNU2004200141938U priority patent/CN2750078Y/en
Publication of JP2005139917A publication Critical patent/JP2005139917A/en
Pending legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D13/00Pumping installations or systems
    • F04D13/02Units comprising pumps and their driving means
    • F04D13/021Units comprising pumps and their driving means containing a coupling
    • F04D13/024Units comprising pumps and their driving means containing a coupling a magnetic coupling
    • F04D13/026Details of the bearings

Abstract

<P>PROBLEM TO BE SOLVED: To provide a magnetic drive pump to follow rotation of an engine without loss of synchronism during high speed rotation of an engine, and decreased in size. <P>SOLUTION: The pump comprises a pump chamber 8; an impeller 11 held rotatably at the internal part of the pump chamber 8 and making fluid generate a flow in the pump chamber 8 by its rotation; and a drive mechanism 50 to rotationally drive the impeller 11. The drive mechanism 50 consists of a permanent magnet 4 integrally fixed at a drive magnet 6 rotatably disposed at an external part (the atmosphere) 9 more externally than a partition wall 10 for separating a pump chamber 8 and the external part (the atmosphere) 9 from each other; and an inductor 7 consisting of a conduction element rotated by an induced current as a power source, generated by rotation of a permanent magnet 4 integrally fixed at the impeller 11. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は、磁力によりインペラを回転駆動する磁力駆動式ポンプに関する。このポンプはウォータポンプ等に用いられ得る。   The present invention relates to a magnetic drive pump that rotationally drives an impeller with a magnetic force. This pump can be used as a water pump or the like.

従来のウォータポンプは、メカニカルシールにより、外部(大気)とポンプ室は分離されているが、メカニカルシールのフリクションが大きく、燃費が悪化する原因となっている。これに対して、エンジンからの回転力を外部とポンプ室を分離する隔壁を挟んで対向する磁石で形成される磁気継手により、非接触のままエンジン冷却用ウォータポンプのインペラへ伝えられるものがある(例えば、特許文献1参照。)。しかしながら、このウォータポンプは、隔壁でポンプ室を外部に対してシールするタイプであり、フリクションは小さくなるが、エンジン高速回転時において、インペラを駆動するトルクが磁気継手の伝達トルクを上回ると、エンジンが回転しているにも拘わらずインペラの回転が停止する脱調状態に陥る。脱調は、直ぐにエンジンのオーバーヒートに繋がるため、これを回避するためには磁気継手の容量を大きくする必要がある。また、温度上昇による減磁及びエンジンの回転変動への追従を考慮すると磁気継手の容量はますます大きくなる問題がある。
特開平10−089069号公報
In the conventional water pump, the outside (atmosphere) and the pump chamber are separated by the mechanical seal, but the friction of the mechanical seal is large, which causes the fuel consumption to deteriorate. On the other hand, there is one in which the rotational force from the engine is transmitted to the impeller of the engine cooling water pump without contact by a magnetic coupling formed by magnets facing each other with a partition wall separating the pump chamber from the outside. (For example, refer to Patent Document 1). However, this water pump is a type in which the pump chamber is sealed to the outside with a partition wall, and friction is reduced. However, when the torque for driving the impeller exceeds the transmission torque of the magnetic coupling at the time of engine high speed rotation, Despite the rotation of the impeller, a step-out state occurs in which the impeller stops rotating. Since step-out immediately leads to overheating of the engine, in order to avoid this, it is necessary to increase the capacity of the magnetic coupling. Further, considering the demagnetization due to the temperature rise and the follow-up to engine rotation fluctuation, there is a problem that the capacity of the magnetic coupling becomes larger.
Japanese Patent Laid-Open No. 10-089069

そこで本発明は、磁力駆動式ポンプにおいて、エンジン高速回転時において脱調せずエンジンの回転へ追従すると共に、小型化を図ることを技術的課題とする。   SUMMARY OF THE INVENTION Accordingly, it is a technical object of the present invention to reduce the size of a magnetically driven pump while following the rotation of the engine without stepping out during high-speed rotation of the engine.

上記した技術的課題を解決するために請求項1の発明にて講じた技術的手段は、ポンプ室と、前記ポンプ室の内部で回転自在に保持され、その回転により前記ポンプ室内で流体に流れを生じさせるインペラと、前記インペラを回転駆動する駆動機構とを備えるポンプにおいて、前記駆動機構は、前記ポンプ室と外部とを分離する隔壁より前記外部に回転自在に配置される駆動部材に一体的に固定される磁着手段と、前記インペラに一体的に固定され前記磁着手段の回転により発生する誘導電流を動力源として回転する電導体からなる誘導子と、から構成されることである。   In order to solve the above technical problem, the technical means taken in the invention of claim 1 is a pump chamber and is held rotatably inside the pump chamber, and flows to the fluid in the pump chamber by the rotation. And a drive mechanism that rotationally drives the impeller. The drive mechanism is integrated with a drive member that is rotatably arranged outside the partition that separates the pump chamber and the outside. And an inductor made of an electric conductor that is integrally fixed to the impeller and that rotates using an induced current generated by rotation of the magnetizing means as a power source.

上記した手段によれば、駆動機構は、ポンプ室と外部とを分離する隔壁より外部に回転自在に配置される駆動部材に一体的に固定される磁着手段と、インペラに一体的に固定され磁着手段の回転により発生する誘導電流を動力源として回転する電導体からなる誘導子と、から構成されることにより、回転が非接触のまま伝達されフリクションの低下が図られる。また、エンジン高速回転時において脱調せずエンジンの回転へ追従すると共に、小型化を図ることができる。また、誘導子はポンプ室に配置されているため、誘導子が発熱した場合冷却される。   According to the above-described means, the drive mechanism is integrally fixed to the impeller and the magnetic attachment means fixed integrally to the drive member that is rotatably arranged outside the partition wall separating the pump chamber and the outside. By comprising an inductor made of an electric conductor that rotates using an induced current generated by rotation of the magnetizing means as a power source, the rotation is transmitted in a non-contact manner and the friction is reduced. Further, it is possible to follow the rotation of the engine without stepping out at the time of high-speed rotation of the engine and to reduce the size. Further, since the inductor is arranged in the pump chamber, it is cooled when the inductor generates heat.

本願発明によれば、駆動機構は、ポンプ室と外部とを分離する隔壁により外部に回転自在に配置される駆動部材に一体的に固定される磁着手段と、インペラに一体的に固定され磁着手段の回転により発生する誘導電流を動力源として回転する電導体からなる誘導子と、から構成されることにより、回転が非接触のまま伝達されフリクションの低下が図られる。また、エンジン高速回転時において脱調せずエンジンの回転へ追従すると共に、小型化を図ることができる。また、誘導子はポンプ室に配置されているため、誘導子が発熱した場合冷却される。   According to the present invention, the drive mechanism includes a magnetic attachment means that is integrally fixed to a drive member that is rotatably disposed outside by a partition wall that separates the pump chamber and the outside, and a magnetic mechanism that is integrally fixed to the impeller. By comprising an inductor made of an electric conductor that rotates using an induced current generated by the rotation of the landing means as a power source, the rotation is transmitted in a non-contact manner and the friction is reduced. Further, it is possible to follow the rotation of the engine without stepping out at the time of high-speed rotation of the engine and to reduce the size. Further, since the inductor is arranged in the pump chamber, it is cooled when the inductor generates heat.

本発明に従った実施形態を図面に基づいて説明する。   An embodiment according to the present invention will be described with reference to the drawings.

図1は本発明の実施形態を示すウォータポンプ(磁力駆動式ポンプ)100である。ウォータポンプ100は、図示しない締結手段により、エンジンブロック(例えば、タイミングチェーンケース等であってもよい)110に固定されている。   FIG. 1 shows a water pump (magnetic drive pump) 100 showing an embodiment of the present invention. The water pump 100 is fixed to an engine block (which may be a timing chain case or the like) 110 by fastening means (not shown).

ウォータポンプ(磁力駆動式ポンプ)100は、主にエンジンブロック110に形成される凹部110aを蓋してポンプ室8を画成するボディ2と、ポンプ室8の内部で回転自在に保持され、回転によりポンプ室8内で冷却水(流体)に流れを生じさせるインペラ11と、インペラ11を回転駆動する駆動機構50とから構成される。   A water pump (magnetically driven pump) 100 mainly covers a recess 110a formed in the engine block 110 to define a pump chamber 8 and is rotatably held inside the pump chamber 8 to rotate. Thus, the impeller 11 that causes a flow of cooling water (fluid) in the pump chamber 8 and the drive mechanism 50 that rotationally drives the impeller 11 are configured.

ボディ2は、エンジンブロック110に図示しない締結手段によりOリング(例えば、ガスケット等であってもよい)120を介して液密的に固定されている。ボディ2には、シャフト3がベアリング1を介して回転自在に保持されている。シャフト3の一端にはプーリシート130が固定されエンジンからの回転駆動力が伝達され、他端には永久磁石(磁着手段)4が固定されるブラケット5が一体的に設けられるドライブマグネット(駆動部材)6が固定されている。ドライブマグネット6は、ボディ2と、ボディ2のポンプ室8側に固定されるポンプ室と外部(大気)9とを分離する隔壁10との間に回転可能に配置されている。永久磁石4は、周方向で分割されてN極とS極とが互い違いに設けられたものである。隔壁10は、ボディ2にOリング(例えば、ガスケット等であってもよい)140を介して液密的に固定されている。   The body 2 is liquid-tightly fixed to the engine block 110 via an O-ring (for example, a gasket) 120 by fastening means (not shown). A shaft 3 is rotatably held on the body 2 via a bearing 1. A pulley seat 130 is fixed to one end of the shaft 3 to transmit a rotational driving force from the engine, and a drive magnet (drive) integrally provided with a bracket 5 to which a permanent magnet (magnetization means) 4 is fixed to the other end. Member) 6 is fixed. The drive magnet 6 is rotatably arranged between the body 2, a pump chamber fixed to the pump chamber 8 side of the body 2, and a partition wall 10 that separates the outside (atmosphere) 9. The permanent magnet 4 is divided in the circumferential direction, and N poles and S poles are provided alternately. The partition wall 10 is liquid-tightly fixed to the body 2 via an O-ring (which may be a gasket or the like) 140.

誘導子7は、固定部材7aに固定され、隔壁10を介してドライブマグネット6に対向するように配置されている。誘導子7は、永久磁石4の回転により発生した誘導電流を動力源として回転する電導体から成る。固定部材7aは回転部材14の一端に固定され、回転部材14の他端側にはインペラ11が固定されている。回転部材14は、一端が隔壁10に固定され他端がエンジンブロックに固定されるシャフト13に水中軸受け12を介して回転自在に支承されている。誘導子7と永久磁石4とから駆動機構50が構成される。   The inductor 7 is fixed to the fixing member 7 a and is disposed so as to face the drive magnet 6 through the partition wall 10. The inductor 7 is made of an electric conductor that rotates using an induced current generated by the rotation of the permanent magnet 4 as a power source. The fixing member 7 a is fixed to one end of the rotating member 14, and the impeller 11 is fixed to the other end side of the rotating member 14. The rotating member 14 is rotatably supported via an underwater bearing 12 on a shaft 13 having one end fixed to the partition wall 10 and the other end fixed to the engine block. A drive mechanism 50 is constituted by the inductor 7 and the permanent magnet 4.

次に本実施形態の作用について説明する。   Next, the operation of this embodiment will be described.

シャフト3がエンジンからの回転駆動力によりプーリシート130を介して回転させられると、シャフト3に一体の永久磁石4が回転させられる。永久磁石4の回転に伴い、隔壁10を介して永久磁石4に対向する誘導子7に誘導電流が発生する。誘導子7の誘導電流と永久磁石4の磁束により、誘導子7が永久磁石4の回転方向と同一方向に回転させられる。誘導子7の回転に伴い誘導子7と一体の回転部材14が回転させられ、回転部材14と一体のインペラ11が回転させられ、ポンプ室8内で冷却水に流れを生じさせる。   When the shaft 3 is rotated via the pulley seat 130 by the rotational driving force from the engine, the permanent magnet 4 integrated with the shaft 3 is rotated. With the rotation of the permanent magnet 4, an induced current is generated in the inductor 7 facing the permanent magnet 4 through the partition wall 10. The inductor 7 is rotated in the same direction as the rotation direction of the permanent magnet 4 by the induced current of the inductor 7 and the magnetic flux of the permanent magnet 4. With the rotation of the inductor 7, the rotating member 14 integrated with the inductor 7 is rotated, and the impeller 11 integrated with the rotating member 14 is rotated, thereby causing a flow of cooling water in the pump chamber 8.

このとき、誘導電流による回転トルクの伝達は、永久磁石4と誘導子7とのすべり(回転差)が許容されるため、永久磁石4が回転しているにも拘わらず誘導子7の回転が停止する脱調状態は発生しない。このため、永久磁石4の磁力は必要以上の磁力を持つ必要がなく、小型又は低磁力のものでよい。また、図2に示すように、すべり(回転差)により、低速域では、車室用ヒータ装置の性能向上のため大流量の冷却水を送水でき、高速域では必要以上の冷却水の送水が防止され駆動力の損失が防止される。   At this time, the transmission of the rotational torque by the induced current allows the slip (rotational difference) between the permanent magnet 4 and the inductor 7, so that the rotation of the inductor 7 is performed even though the permanent magnet 4 is rotating. There is no step-out condition to stop. For this reason, the magnetic force of the permanent magnet 4 does not need to have an excessive magnetic force, and may be a small or low magnetic force. In addition, as shown in FIG. 2, due to slippage (rotational difference), a large amount of cooling water can be sent in the low speed range to improve the performance of the heater device for the passenger compartment. This prevents the loss of driving force.

本発明の実施の形態に係わるウォータポンプ100の縦断面図である。It is a longitudinal section of water pump 100 concerning an embodiment of the invention. 本発明の実施の形態に係わるウォータポンプ100の作用を示す説明図である。It is explanatory drawing which shows the effect | action of the water pump 100 concerning embodiment of this invention.

符号の説明Explanation of symbols

4・・・永久磁石(磁着手段)
6・・・ドライブマグネット
7・・・誘導子
8・・・ポンプ室
9・・・外部(大気)
10・・・隔壁
11・・・インペラ
50・・・駆動機構
4 ... Permanent magnet (magnetization means)
6 ... Drive magnet 7 ... Inductor 8 ... Pump chamber 9 ... External (atmosphere)
DESCRIPTION OF SYMBOLS 10 ... Partition 11 ... Impeller 50 ... Drive mechanism

Claims (1)

ポンプ室と、
前記ポンプ室の内部で回転自在に保持され、その回転により前記ポンプ室内で流体に流れを生じさせるインペラと、
前記インペラを回転駆動する駆動機構とを備えるポンプにおいて、
前記駆動機構は、前記ポンプ室と外部とを分離する隔壁より前記外部に回転自在に配置される駆動部材に一体的に固定される磁着手段と、前記インペラに一体的に固定され前記磁着手段の回転により発生する誘導電流を動力源として回転する電導体からなる誘導子と、から構成されることを特徴とする磁力駆動式ポンプ。
A pump room,
An impeller that is rotatably held inside the pump chamber, and causes the fluid to flow in the pump chamber by the rotation;
In a pump comprising a drive mechanism that rotationally drives the impeller,
The drive mechanism is integrally fixed to a drive member that is rotatably disposed outside the partition wall that separates the pump chamber from the outside, and is fixed to the impeller integrally. A magnetic drive pump characterized by comprising an inductor made of an electric conductor that rotates using an induced current generated by rotation of the means as a power source.
JP2003374486A 2003-11-04 2003-11-04 Magnetic drive pump Pending JP2005139917A (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
JP2003374486A JP2005139917A (en) 2003-11-04 2003-11-04 Magnetic drive pump
US10/967,178 US20050095149A1 (en) 2003-11-04 2004-10-19 Magnetic drive pump
EP04025541A EP1529960A1 (en) 2003-11-04 2004-10-27 Magnetic drive pump
CNU2004200141938U CN2750078Y (en) 2003-11-04 2004-11-03 Magnetic pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2003374486A JP2005139917A (en) 2003-11-04 2003-11-04 Magnetic drive pump

Publications (1)

Publication Number Publication Date
JP2005139917A true JP2005139917A (en) 2005-06-02

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Family Applications (1)

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JP2003374486A Pending JP2005139917A (en) 2003-11-04 2003-11-04 Magnetic drive pump

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Country Link
US (1) US20050095149A1 (en)
EP (1) EP1529960A1 (en)
JP (1) JP2005139917A (en)
CN (1) CN2750078Y (en)

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JP2008138656A (en) * 2006-04-12 2008-06-19 Aisin Seiki Co Ltd Magnetic drive pump
DE102008051302A1 (en) 2007-10-16 2009-04-23 Aisin Seiki Kabushiki Kaisha, Kariya-shi Magnetic drive pump
JP2010191322A (en) * 2009-02-20 2010-09-02 Fuji Xerox Co Ltd Drive transmission device and image forming apparatus
US7922464B2 (en) 2006-04-12 2011-04-12 Aisin Seiki Kabushiki Kaisha Magnetic drive pump
WO2016104535A1 (en) * 2014-12-22 2016-06-30 イーグル工業株式会社 Sliding bearing and pump

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008138656A (en) * 2006-04-12 2008-06-19 Aisin Seiki Co Ltd Magnetic drive pump
US7922464B2 (en) 2006-04-12 2011-04-12 Aisin Seiki Kabushiki Kaisha Magnetic drive pump
DE102008051302A1 (en) 2007-10-16 2009-04-23 Aisin Seiki Kabushiki Kaisha, Kariya-shi Magnetic drive pump
JP2010191322A (en) * 2009-02-20 2010-09-02 Fuji Xerox Co Ltd Drive transmission device and image forming apparatus
WO2016104535A1 (en) * 2014-12-22 2016-06-30 イーグル工業株式会社 Sliding bearing and pump
JPWO2016104535A1 (en) * 2014-12-22 2017-09-28 イーグル工業株式会社 Slide bearing and pump
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CN2750078Y (en) 2006-01-04
EP1529960A1 (en) 2005-05-11
US20050095149A1 (en) 2005-05-05

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