JP4997960B2 - Electric blower and vacuum cleaner - Google Patents

Electric blower and vacuum cleaner Download PDF

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Publication number
JP4997960B2
JP4997960B2 JP2006347140A JP2006347140A JP4997960B2 JP 4997960 B2 JP4997960 B2 JP 4997960B2 JP 2006347140 A JP2006347140 A JP 2006347140A JP 2006347140 A JP2006347140 A JP 2006347140A JP 4997960 B2 JP4997960 B2 JP 4997960B2
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Prior art keywords
impeller
electric blower
outer peripheral
air
peripheral portion
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JP2008157119A (en
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剛 西村
吉隆 村田
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Panasonic Corp
Panasonic Holdings Corp
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Panasonic Corp
Matsushita Electric Industrial Co Ltd
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Description

本発明は、電気掃除機等に使用される電動送風機及び電気掃除機に関するものである。   The present invention relates to an electric blower and a vacuum cleaner used for a vacuum cleaner and the like.

従来のこの種の電動送風機の構成について、図5を用いて説明する。   The configuration of this type of conventional electric blower will be described with reference to FIG.

図5において、2は、界磁コア3に界磁巻線(省略)を施してなるステータ、5は、シャフト6に通された電機子コア15に電機子巻線(略図)8を施し、整流子9を、同軸上に配置してシャフト6の両端に設けられた軸受10によって回転自在に支持されたロータ
である。ステータ2及びロータ5は、負荷側ブラケット11、反負荷側ブラケット12に固定され、前記反負荷側ブラケット12には、一対のカーボンブラシ13が異形管14を介して挿入されている。19は、排気口である。
In FIG. 5, 2 is a stator formed by applying field winding (omitted) to the field core 3, 5 is provided with armature winding (schematic) 8 on an armature core 15 passed through the shaft 6, The commutator 9 is a rotor that is coaxially disposed and rotatably supported by bearings 10 provided at both ends of the shaft 6. The stator 2 and the rotor 5 are fixed to a load side bracket 11 and an anti-load side bracket 12, and a pair of carbon brushes 13 are inserted into the anti-load side bracket 12 via deformed tubes 14. Reference numeral 19 denotes an exhaust port.

また、出力軸のシャフト6には、インペラ16が備えられ、インペラ16の外周部に通風路を形成するエアガイド17が配されている。前記エアガイド17は、表面の隣り合う静翼26間によって構成される複数のディフューザ通路をもつディフューザ部20と、流れをエアガイド17裏面へと導く流れ変更部21と、さらに気流を中央部に導く戻り通路22により構成されている。   Further, the shaft 6 of the output shaft is provided with an impeller 16, and an air guide 17 that forms an air passage on the outer periphery of the impeller 16 is disposed. The air guide 17 includes a diffuser portion 20 having a plurality of diffuser passages constituted by adjacent stationary vanes 26 on the surface, a flow changing portion 21 for guiding the flow to the back surface of the air guide 17, and an air flow at the central portion. It is constituted by a return passage 22 for guiding it.

25は、樹脂製のシール部材で、中央に第3の吸気口24を有すると共に、ファンケース18に溶着されており、ファンケース18は、インペラ16、エアガイド17を覆うように取り付けられ、電動送風機1が構成されている。   A resin sealing member 25 has a third air inlet 24 in the center and is welded to the fan case 18. The fan case 18 is attached so as to cover the impeller 16 and the air guide 17. A blower 1 is configured.

上記のように構成された従来の電動送風機1の動作は、以下の通りである。   The operation of the conventional electric blower 1 configured as described above is as follows.

電力が供給されると、界磁巻線を伝導した電流がカーボンブラシ13を通って整流子9に伝わり、界磁コア3で発生した磁束と電機子巻線8を通る電流との間で力が発生し、ロータ5が回転する。   When electric power is supplied, the current conducted through the field winding is transmitted to the commutator 9 through the carbon brush 13, and a force is generated between the magnetic flux generated in the field core 3 and the current passing through the armature winding 8. Occurs and the rotor 5 rotates.

次に、ロータ5が回転することにより、ロータ5のシャフト6に固定されたインペラ16が回転し、インペラ16内の空気を増速し、増速された空気の大部分は、エアガイド17のディフューザ部20を通り、減速されて流れ変更部21へと入り込み、方向を180度転換されて、戻り通路22を通り、電動送風機1内部へと導かれるようになっている(例えば、特許文献1参照)。
特開平5−76153号公報
Next, as the rotor 5 rotates, the impeller 16 fixed to the shaft 6 of the rotor 5 rotates, and the air in the impeller 16 is accelerated. Most of the increased air is supplied to the air guide 17. It passes through the diffuser part 20 and is decelerated and enters the flow changing part 21, the direction is changed by 180 degrees, and it is guided through the return passage 22 into the electric blower 1 (for example, Patent Document 1). reference).
JP-A-5-76153

しかしながら、上記特許文献1に記載された従来の電動送風機の構成では、第3の吸気口24の前面は負圧となるため、インペラ16から排出された空気のごく一部は、ディフューザ部20へ流れ込まず、ファンケース18とインペラ16との間を逆流して、再びインペラ16の入口部16aから吸い込まれようとする環流が生じる。それを防止するために、シール部材25が存在するが、その効果は完全なものとはいえないものであった。   However, in the configuration of the conventional electric blower described in Patent Document 1, since the front surface of the third intake port 24 has a negative pressure, a small part of the air discharged from the impeller 16 is directed to the diffuser unit 20. Instead of flowing in, a reverse flow is generated between the fan case 18 and the impeller 16 so as to be sucked from the inlet portion 16a of the impeller 16 again. In order to prevent this, the seal member 25 is present, but the effect is not perfect.

本発明は、上記従来の課題を解決し、インペラから排出された空気が、インペラとファンケースとの間から逆流し、再びインペラの入口部に戻る環流を防ぎ、同部でのロスを低減し、高い空気性能を有する電動送風機およびそれを用いた電気掃除機を提供することを目的とするものである。   The present invention solves the above-mentioned conventional problems, prevents the air discharged from the impeller from flowing back from between the impeller and the fan case, and returning to the inlet of the impeller again, thereby reducing the loss at the same portion. An object of the present invention is to provide an electric blower having high air performance and a vacuum cleaner using the same.

前記従来の課題を解決するために、本発明の電動送風機は、回転自在のロータのシャフトに固定されると共に中央に第1の吸気口を有するインペラと、前記インペラの外周部に設けられたエアガイドと、中央に第2の吸気口を有すると共に前記インペラ及び前記エアガイドを覆うファンケースと、前記ファンケースの内壁と前記インペラとの間に配され中央に第3の吸気口を有する樹脂製の略円形のシール部材を備え、前記エアガイドは、前記インペラの外周部に設けられ、複数の静翼からなるディフューザ部と、外周部に設けられ気流をリターンする流れ変更部と、気流を中央部へと導く戻り通路を備え、前記シール部材の内周部と前記インペラの内周部、及び、前記シール部材の外周部と前記インペラの外周部をそれぞれ近接または摺接させており、前記シール部材の外周部には、側面が前記イ
ンペラの外周端部と接し、且つ、円周状に形成されたリブが形成されているもので、加速された気流が排出されるインペラの出口部から、同入口部へのエアーリークが防止でき、空気損失が低減し、高い空気性能を有する電動送風機が得られる。
In order to solve the above-described conventional problems, an electric blower of the present invention includes an impeller that is fixed to a shaft of a rotatable rotor and has a first air inlet in the center, and an air provided on an outer peripheral portion of the impeller. A resin having a guide, a second air inlet in the center and a fan case covering the impeller and the air guide, and a third air inlet arranged in the center between the inner wall of the fan case and the impeller A substantially circular seal member, and the air guide is provided on the outer peripheral portion of the impeller, and includes a diffuser portion composed of a plurality of stationary blades, a flow changing portion provided on the outer peripheral portion for returning the air flow, and a central air flow A return passage that leads to the portion, and the inner peripheral portion of the seal member and the inner peripheral portion of the impeller, and the outer peripheral portion of the seal member and the outer peripheral portion of the impeller are close to each other or in sliding contact with each other. In the outer peripheral portion of the seal member, the side surface is in contact with the outer peripheral end portion of the impeller and a rib formed in a circumferential shape is formed, and an accelerated air flow is discharged. Air leakage from the outlet portion of the impeller to the inlet portion can be prevented, air loss is reduced, and an electric blower having high air performance can be obtained.

また、本発明の電気掃除機は、請求項1〜5のいずれか1項に記載の電動送風機を備えたもので、高い吸込性能を有する電気掃除機を提供できる。   Moreover, the vacuum cleaner of this invention is provided with the electric blower of any one of Claims 1-5, and can provide the vacuum cleaner which has high suction performance.

本発明の電動送風機は、空気損失が小さく、高い吸込性能を有するものである。   The electric blower of the present invention has low air loss and high suction performance.

第1の発明は、回転自在のロータのシャフトに固定されると共に中央に第1の吸気口を有するインペラと、前記インペラの外周部に設けられたエアガイドと、中央に第2の吸気口を有すると共に前記インペラ及び前記エアガイドを覆うファンケースと、前記ファンケースの内壁と前記インペラとの間に配され中央に第3の吸気口を有する樹脂製の略円形のシール部材を備え、前記エアガイドは、前記インペラの外周部に設けられ、複数の静翼からなるディフューザ部と、外周部に設けられ気流をリターンする流れ変更部と、気流を中央部へと導く戻り通路を備え、前記シール部材の内周部と前記インペラの内周部、及び、前記シール部材の外周部と前記インペラの外周部をそれぞれ近接または摺接させており、前記シール部材の外周部には、側面が前記インペラの外周端部と接し、且つ、円周状に形成されたリブが形成されているもので、加速された気流が排出されるインペラの出口部から、同入口部へのエアーリークが防止でき、空気損失が低減し、高い空気性能を有する電動送風機が得られる。   According to a first aspect of the present invention, there is provided an impeller which is fixed to a shaft of a rotatable rotor and has a first intake port in the center, an air guide provided in an outer peripheral portion of the impeller, and a second intake port in the center. And a fan case that covers the impeller and the air guide, and a substantially circular sealing member made of resin having a third air inlet in the center that is disposed between the inner wall of the fan case and the impeller. The guide is provided on the outer peripheral portion of the impeller, and includes a diffuser portion including a plurality of stationary blades, a flow changing portion provided on the outer peripheral portion for returning the airflow, and a return passage for guiding the airflow to the central portion, and the seal The inner peripheral part of the member and the inner peripheral part of the impeller, and the outer peripheral part of the seal member and the outer peripheral part of the impeller are brought close to or in sliding contact with each other. Air leaks from the impeller outlet to the inlet, where the surface is in contact with the outer peripheral edge of the impeller and is formed with a circumferentially formed rib. Can be prevented, air loss is reduced, and an electric blower having high air performance can be obtained.

また、周速の大きいインペラ外周での摩擦損失を低減し、空気性能の向上かつ機械的損失を低減し、効率の高い電動送風機を提供できる In addition, it is possible to reduce the friction loss on the outer periphery of the impeller having a high peripheral speed, improve the air performance and reduce the mechanical loss, and provide a highly efficient electric blower .

第2の発明は、請求項に記載の電動送風機を備えたもので、高い吸込性能を有する電気掃除機を提供できる。 2nd invention is provided with the electric blower of Claim 1 , and can provide the vacuum cleaner which has high suction performance.

以下、本発明の実施の形態について、図面を参照しながら説明する。なお、この実施の形態によって本発明が限定されるものではない。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. Note that the present invention is not limited to the embodiments.

(実施の形態1)
図1は、本発明の第1の実施の形態における電動送風機の部分断面図である。なお、上記従来の電動送風機と同一構成部品については同一符号を付して、その説明を省略する。
(Embodiment 1)
FIG. 1 is a partial cross-sectional view of the electric blower according to the first embodiment of the present invention. In addition, the same code | symbol is attached | subjected about the same component as the said conventional electric blower, and the description is abbreviate | omitted.

図1において、16cは、インペラ16に形成された第1の吸気口、18aは、ファンケース18に形成された第2の吸気口、24は、シール部材25に形成された第3の吸気口で、第2の吸気口16cと第3の吸気口24は、連通している。   In FIG. 1, 16 c is a first air inlet formed in the impeller 16, 18 a is a second air inlet formed in the fan case 18, and 24 is a third air inlet formed in the seal member 25. Thus, the second intake port 16c and the third intake port 24 communicate with each other.

本実施の形態は、インペラ16と、ファンケース18の内壁との間に、樹脂製のシール部材25を、ファンケース18に溶着されるような形で配し、シール部材25の第3の吸気口24側の先端を、インペラ16の入口部16aを覆うように折り曲げると共に、同入口部16aと接触させている。また、インペラ16の出口側の末端には、リブ27Aとリブ27Bが垂下形成され、リブ27Aの先端はインペラ16の上部に近接し、リブ27Bの側面はインペラ16の外周とラジアル方向で接している。   In the present embodiment, a resin seal member 25 is disposed between the impeller 16 and the inner wall of the fan case 18 so as to be welded to the fan case 18. The tip on the mouth 24 side is bent so as to cover the inlet portion 16a of the impeller 16, and is brought into contact with the inlet portion 16a. In addition, ribs 27A and ribs 27B are suspended from the end of the outlet side of the impeller 16, the tips of the ribs 27A are close to the top of the impeller 16, and the side surfaces of the ribs 27B are in contact with the outer periphery of the impeller 16 in the radial direction. Yes.

上記のように構成された本実施の形態における電動送風機1の動作は以下の通りである。   The operation of the electric blower 1 in the present embodiment configured as described above is as follows.

電動送風機1に電力が供給されると、従来例と同様、ロータ5が回転しインペラ16で発生した気流が、エアガイド17のディフューザ部20を通り、減速されて流れ変更部21へと入り込み、方向を180度転換されて、戻り通路22を通り、電動送風機1内部へと導かれる。しかしながら、インペラ16から排出されたごく一部の気流は、第3の吸気口24の前面が負圧となるため、ディフューザ部20へ流れ込まず、ファンケース18とインペラ16との間を逆流して、再びインペラ16入口部から吸い込まれようとするが、樹脂製のシール部材25に設けられたリブ27Aおよびリブ27Bが防御壁となって、環流が生じにくくなっている。   When electric power is supplied to the electric blower 1, the airflow generated in the impeller 16 by rotating the rotor 5 passes through the diffuser portion 20 of the air guide 17 and enters the flow changing portion 21 as in the conventional example, The direction is changed by 180 degrees, passes through the return passage 22, and is guided into the electric blower 1. However, a small part of the airflow discharged from the impeller 16 does not flow into the diffuser portion 20 because the front surface of the third intake port 24 has a negative pressure, and flows backward between the fan case 18 and the impeller 16. Although it is going to be sucked in again from the inlet part of the impeller 16, the ribs 27A and the ribs 27B provided on the resin seal member 25 serve as a protective wall, and it is difficult for recirculation to occur.

さらに、インペラ16の入口部16aとシール部材25とのシール効果によっても、空気の流れが妨げられ、環流は発生しない。   Furthermore, the flow of air is also prevented by the sealing effect between the inlet portion 16a of the impeller 16 and the sealing member 25, and no recirculation occurs.

このように本実施の形態によれば、樹脂製のシール部材25は、吸気をスムーズにインペラ16へと導くガイドの役割と、インペラ16の入口部16aと出口部16bの両方で、環流を防ぐシールの役割を果たしており、同部での空気損失を低減し、空気性能の高い電動送風機を実現できるものである。   As described above, according to the present embodiment, the resin seal member 25 prevents the circulation by both the role of the guide that guides the intake air smoothly to the impeller 16 and the inlet portion 16a and the outlet portion 16b of the impeller 16. It plays the role of a seal, reduces air loss in the same part, and can realize an electric blower with high air performance.

参考の形態
図2は、本発明の第参考の形態における電動送風機の部分断面図である。なお、上記従来の電動送風機及び上記第1の実施の形態における電動送風機と同一構成部品については同一符号を付して、その説明を省略する。
( Reference form 1 )
Figure 2 is a partial cross-sectional view of an electric blower in the first reference embodiment of the present invention. In addition, the same code | symbol is attached | subjected about the same component as the electric blower in the said conventional electric blower and the said 1st Embodiment, and the description is abbreviate | omitted.

参考の形態における電動送風機は、図2に示すように、インペラ16と、ファンケース18の内壁との間に樹脂製のシール部材25が、ファンケース18に溶着されるような形で配され、シール部材25の第3の吸気口24側の先端は、インペラ16の入口部16aを覆うように折り曲げられ、同入口部16aと接触している。また、インペラ16の出口部16b側の末端には、厚みが薄く糸状で先端がインペラ16の外周上部に接するリブ28が円周状に形成されている。 Electric blower in this reference embodiment, as shown in FIG. 2, the impeller 16, the sealing member 25 made of resin between the inner wall of the fan case 18, is arranged in such a way is welded to the fan case 18 The tip of the seal member 25 on the third inlet 24 side is bent so as to cover the inlet portion 16a of the impeller 16, and is in contact with the inlet portion 16a. Further, a rib 28 having a thin thread shape and a tip contacting the upper outer periphery of the impeller 16 is formed on the end of the impeller 16 on the outlet 16b side.

以上のように構成された本参考の形態における電動送風機1の動作は、以下の通りである。 Operation of the electric blower 1 in the configured present reference embodiment as described above is as follows.

電動送風機1に電力が供給されると、従来例と同様、ロータ5が回転しインペラ16で発生した気流が、エアガイド17のディフューザ部20を通り、減速されて流れ変更部21へと入り込み、方向を180度転換されて、戻り通路22を通り、電動送風機1内部へと導かれる。しかしながら、インペラ16から排出されたごく一部の気流は、第3の吸気口24の前面が負圧となるため、ディフューザ部20へ流れ込まず、ファンケース18とインペラ16との間を逆流して、再びインペラ16の入口部16aから吸い込まれようとするが、樹脂製のシール部材25に設けられたリブ28が、インペラ16の外周上部と接触しており、その状態でインペラ16が回転しているため、エア漏れの防御壁となって、環流が生じにくくなっている。   When electric power is supplied to the electric blower 1, the airflow generated in the impeller 16 by rotating the rotor 5 passes through the diffuser portion 20 of the air guide 17 and enters the flow changing portion 21 as in the conventional example, The direction is changed by 180 degrees, passes through the return passage 22, and is guided into the electric blower 1. However, a small part of the airflow discharged from the impeller 16 does not flow into the diffuser portion 20 because the front surface of the third intake port 24 has a negative pressure, and flows backward between the fan case 18 and the impeller 16. The rib 28 provided on the resin seal member 25 is in contact with the outer peripheral upper portion of the impeller 16, and the impeller 16 rotates in this state. Therefore, it becomes a defense wall against air leakage, and it is difficult for recirculation to occur.

また、リブ28の先端が細いので、インペラ16の回転に対して接触抵抗が非常に小さく、摺動によるロスは少ない。さらに、インペラ16の入口部16aとシール部材25とのシール効果によっても、空気の流れが妨げられ、環流は発生しない。   Further, since the tips of the ribs 28 are thin, the contact resistance is very small with respect to the rotation of the impeller 16, and the loss due to sliding is small. Furthermore, the flow of air is also prevented by the sealing effect between the inlet portion 16a of the impeller 16 and the sealing member 25, and no recirculation occurs.

このように本参考の形態によれば、樹脂製のシール部材25は、吸気をスムーズにインペラ16へと導くガイドの役割と、インペラ16の入口部16aと出口部16bの両方で、できる限り摺動によるロスを少なくする形で、空気の環流を防ぐシールの役割を果たし
ており、同部での空気損失を低減し、空気性能の高い電動送風機を実現できるものである。なお、リブ28は、複数本設けても良い。また、厚みの薄い糸状のリブは、バリのようなものでも代用できる。
Thus, according to this reference embodiment, the sealing member 25 made of resin, the role of the guide which leads to smooth the impeller 16 an intake, at both the inlet portion 16a and outlet portion 16b of the impeller 16, as much as possible sliding It plays the role of a seal that prevents air circulation in a form that reduces the loss due to movement, reducing the air loss at the same part, and realizing an electric blower with high air performance. A plurality of ribs 28 may be provided. Moreover, a thin thread-like rib can be substituted for a burr.

参考の形態
図3は、本発明の第参考の形態における電動送風機の部分断面図である。なお、上記従来の電動送風機及び上記実施の形態における電動送風機と同一構成部品については同一符号を付して、その説明を省略する。
( Reference form 2 )
Figure 3 is a partial cross-sectional view of an electric blower according to the second reference embodiment of the present invention. In addition, the same code | symbol is attached | subjected about the same component as the said conventional electric blower and the electric blower in the said embodiment, and the description is abbreviate | omitted.

参考の形態における電動送風機は、図3に示すように、インペラ16と、ファンケース18の間に、樹脂製のシール部材25がファンケース18に溶着されるような形で、配され、シール部材25の第3の吸気口24側の先端は、インペラ16の入口部16aを覆うように折り曲げられ、同入口部16aと接触している。また、インペラ16の出口部16b側の末端には、先端が、インペラ16の上部に近接したリブ27Aが形成されている。また、インペラ16の外周先端と、前記シール部材25は、端面同士が近接または接触し、さらにシール部材25は、ディフューザ部20の上面まで延設され、前記ディフューザ部20上面を密閉し、ディフューザ通路の気密性をあげている。 Electric blower in this reference embodiment, as shown in FIG. 3, the impeller 16, while the fan case 18, in a manner sealing member 25 made of a resin is welded to the fan case 18, it is arranged, sealed The tip of the member 25 on the third air inlet 24 side is bent so as to cover the inlet portion 16a of the impeller 16, and is in contact with the inlet portion 16a. A rib 27 </ b> A whose tip is close to the top of the impeller 16 is formed at the end of the impeller 16 on the outlet 16 b side. Further, the outer peripheral tip of the impeller 16 and the end face of the seal member 25 are close to or in contact with each other. Further, the seal member 25 extends to the upper surface of the diffuser portion 20, seals the upper surface of the diffuser portion 20, and the diffuser passage. The airtightness is raised.

以上のように構成された本参考の形態における電動送風機1の動作は、以下の通りである。 Operation of the electric blower 1 in the configured present reference embodiment as described above is as follows.

電動送風機1に電力が供給されると、従来例と同様、ロータ5が回転しインペラ16で発生した気流が、エアガイド17のディフューザ部20を通り、減速されて流れ変更部21へと入り込み、方向を180度転換されて、戻り通路22を通り、電動送風機1内部へと導かれる。しかしながら、インペラ16から排出されたごく一部の気流は、第3の吸気口24の前面が負圧となるため、ディフューザ部20へ流れ込まず、ファンケース18とインペラ16との間を逆流して、再びインペラ16の入口部16aから吸い込まれようとするが、樹脂製のシール部材25に設けられたリブ27Aがインペラ16に近接しており、防御壁となって、環流が生じにくくなっている。   When electric power is supplied to the electric blower 1, the airflow generated in the impeller 16 by rotating the rotor 5 passes through the diffuser portion 20 of the air guide 17 and enters the flow changing portion 21 as in the conventional example, The direction is changed by 180 degrees, passes through the return passage 22, and is guided into the electric blower 1. However, a small part of the airflow discharged from the impeller 16 does not flow into the diffuser portion 20 because the front surface of the third intake port 24 has a negative pressure, and flows backward between the fan case 18 and the impeller 16. The rib 27A provided on the resin seal member 25 is close to the impeller 16 and tends to be a protective wall, so that it is difficult to generate recirculation. .

また、シール部材25は、インペラ16の外周先端と近接または接触しているため、インペラ16の回転に対して非常に接触抵抗が小さく、摺動によるロスが少ないので、高いシール効果が得られるとともに、環流によるロスも発生しない。   Further, since the seal member 25 is close to or in contact with the outer peripheral tip of the impeller 16, the contact resistance is very small with respect to the rotation of the impeller 16, and the loss due to sliding is small, so that a high sealing effect is obtained. No loss due to reflux occurs.

さらに、シール部材25は、インペラ16の外周先端部から、ディフューザ部20上面を覆うように延設されているので、インペラ16の出口部16bからディフューザ部20の入口部までの直線通路により、気流を直線的に効率よくディフューザ部20へと導き、さらに、ディフューザ部20とシール部材25が形成する、気密性の高い閉空間を気流が流れることで、高い圧力回復性能を得ることができる。   Further, since the seal member 25 is extended from the outer peripheral tip of the impeller 16 so as to cover the upper surface of the diffuser part 20, an air flow is generated by a straight path from the outlet part 16 b of the impeller 16 to the inlet part of the diffuser part 20. Can be efficiently and linearly guided to the diffuser portion 20, and the airflow can flow in a highly airtight closed space formed by the diffuser portion 20 and the seal member 25, whereby high pressure recovery performance can be obtained.

このように本参考の形態によれば、樹脂製のシール部材25は、吸気をスムーズにインペラ16へと導くガイドの役割と、インペラ16の入口部16aと出口部16bの両方で、できる限り摺動によるロスを少なくする形で、空気の環流を防ぐシールの役割、そして、インペラ16の出口部16bからディフューザ部20への通路形成によるスムーズな流入、さらには、ディフューザ部20においての、高い気密性による圧力回復性能の向上を果たしており、同部での空気損失を低減し、空気性能の高い電動送風機を実現できるものである。 Thus, according to this reference embodiment, the sealing member 25 made of resin, the role of the guide which leads to smooth the impeller 16 an intake, at both the inlet portion 16a and outlet portion 16b of the impeller 16, as much as possible sliding The role of a seal that prevents air circulation in a manner that reduces loss due to movement, smooth inflow due to passage formation from the outlet portion 16b of the impeller 16 to the diffuser portion 20, and high airtightness in the diffuser portion 20 The pressure recovery performance is improved by the property, and the air loss in the same part is reduced, and an electric blower with high air performance can be realized.

参考の形態
図4は、本発明の第参考の形態における電動送風機の部分断面図である。なお、上
記従来の電動送風機及び上記実施の形態における電動送風機と同一構成部品については同一符号を付して、その説明を省略する。
( Reference form 3 )
Figure 4 is a partial cross-sectional view of an electric blower in the third reference embodiment of the present invention. In addition, the same code | symbol is attached | subjected about the same component as the said conventional electric blower and the electric blower in the said embodiment, and the description is abbreviate | omitted.

参考の形態における電動送風機は、図4に示すように、インペラ16と、ファンケース18の内壁との間に、樹脂製のシール部材25がファンケース18に溶着されるような形で配され、シール部材25の第3の吸気口24側の先端は、インペラ16の入口部16aを覆うように折り曲げられ、同入口部16aと接触している。 Electric blower in this reference embodiment, as shown in FIG. 4, the impeller 16, between the inner wall of the fan case 18, the sealing member 25 made of resin is arranged in such a way is welded to the fan case 18 The tip of the seal member 25 on the third inlet 24 side is bent so as to cover the inlet portion 16a of the impeller 16, and is in contact with the inlet portion 16a.

また、シール部材25のインペラ16の出口部16b側の末端には、先端がインペラ16の上面に近接したリブ27Aが垂下形成されている。   Further, a rib 27 </ b> A whose tip is close to the upper surface of the impeller 16 is suspended from the end of the seal member 25 on the outlet 16 b side of the impeller 16.

また、インペラ16外周先端と、前記シール部材25は端面同士が近接または摺接すると共に、シール部材25は、ディフューザ部20の上面、さらには流れ変更部21まで延設され、前記ディフューザ部20の上面および側面を密閉し、ディフューザ通路の気密性をあげている。   Further, the outer peripheral tip of the impeller 16 and the end face of the sealing member 25 are close to or in sliding contact with each other, and the sealing member 25 extends to the upper surface of the diffuser portion 20 and further to the flow changing portion 21, and the upper surface of the diffuser portion 20. And the side is sealed to increase the airtightness of the diffuser passage.

以上のように構成された本参考の形態における電動送風機1の動作は、以下の通りである。 Operation of the electric blower 1 in the configured present reference embodiment as described above is as follows.

電動送風機1に電力が供給されると、ロータ5が回転しインペラ16で発生した気流が、エアガイド17のディフューザ部20を通り、減速されて流れ変更部21へと入り込み、方向を180度転換されて、戻り通路22を通り、電動送風機1内部へと導かれる。しかしながら、インペラ16から排出されたごく一部の気流は、第3の吸気口24の前面が負圧となるため、ディフューザ部20へ流れ込まず、ファンケース18とインペラ16との間を逆流して、再びインペラ16の入口部16aから吸い込まれようとするが、樹脂製のシール部材25に設けられたリブ27Aが、インペラ16の上面に近接して、防御壁となるので環流が生じにくくなっている。   When electric power is supplied to the electric blower 1, the rotor 5 rotates and the air flow generated by the impeller 16 passes through the diffuser portion 20 of the air guide 17 and is decelerated and enters the flow changing portion 21 to change the direction by 180 degrees. Then, it passes through the return passage 22 and is guided into the electric blower 1. However, a small part of the airflow discharged from the impeller 16 does not flow into the diffuser portion 20 because the front surface of the third intake port 24 has a negative pressure, and flows backward between the fan case 18 and the impeller 16. The rib 27A provided on the resin seal member 25 is close to the upper surface of the impeller 16 and becomes a protective wall, so that it is difficult for the circulation to occur. Yes.

また、シール部材25は、インペラ16の外周先端と近接または摺接しているため、インペラ16の回転に対して非常に接触抵抗が小さく、摺動によるロスが少ないので、高いシール効果が得られるとともに、環流によるロスも発生しない。   Further, since the seal member 25 is close to or slidably contacted with the outer peripheral tip of the impeller 16, the contact resistance is very small with respect to the rotation of the impeller 16, and the loss due to sliding is small, so that a high sealing effect is obtained. No loss due to reflux occurs.

さらに、シール部材25は、インペラ16の外周先端部から、ディフューザ部20上面、さらには流れ変更部21を覆うように延設されているので、インペラ16の出口部16bからディフューザ部20の入口部までの直線通路により、気流を直線的に効率よくディフューザ部20へと導き、さらに、ディフューザ部20、流れ変更部21とシール部材25が形成する気密性の高い閉空間を気流が流れることで、高い圧力回復性能を得ることができる。   Furthermore, since the seal member 25 extends from the outer peripheral tip portion of the impeller 16 so as to cover the upper surface of the diffuser portion 20 and further the flow changing portion 21, the seal member 25 extends from the outlet portion 16 b of the impeller 16 to the inlet portion of the diffuser portion 20. With the straight path to the airflow, the airflow is efficiently and linearly guided to the diffuser part 20, and further, the airflow flows through the highly airtight closed space formed by the diffuser part 20, the flow changing part 21 and the seal member 25. High pressure recovery performance can be obtained.

このように本参考の形態によれば、樹脂製のシール部材25は、吸気をスムーズにインペラ16へと導くガイドの役割と、インペラ16の入口部16aと出口部16bの両方で、できる限り摺動によるロスを少なくする形で、空気の環流を防ぐシールの役割、そして、インペラ16の出口部16bからディフューザ部20への通路形成によるスムーズな流入、さらには、ディフューザ部20から、流れ変更部21においての、長い通路におよぶ高い気密性の保持による圧力回復性能の向上を果たしており、同部での空気損失を低減し、空気性能の高い電動送風機を実現できるものである。 Thus, according to this reference embodiment, the sealing member 25 made of resin, the role of the guide which leads to smooth the impeller 16 an intake, at both the inlet portion 16a and outlet portion 16b of the impeller 16, as much as possible sliding The role of a seal that prevents air circulation in a form that reduces loss due to movement, smooth inflow due to passage formation from the outlet portion 16b of the impeller 16 to the diffuser portion 20, and further, from the diffuser portion 20 to the flow changing portion 21 has improved the pressure recovery performance by maintaining high airtightness over a long passage, reducing air loss in the same part, and realizing an electric blower with high air performance.

また、上記実施の形態における電動送風機1を、電気掃除機に採用すれば、高い吸込性能を有する電気掃除機を提供することが出来る。 Further, the electric blower 1 according to the first above you facilities, by adopting the vacuum cleaner, it is possible to provide a vacuum cleaner with a high suction performance.

以上のように、本発明にかかる電動送風機と電気掃除機は、高い吸込性能により吸込仕事率の向上が図れるので、電動送風機を用いる家庭用電化機器、産業機器等の用途にも幅広く適用できる。   As described above, since the electric blower and the vacuum cleaner according to the present invention can improve the suction work rate due to the high suction performance, the electric blower and the vacuum cleaner can be widely applied to applications such as household electric appliances and industrial equipment using the electric blower.

本発明の第1の実施の形態における電動送風機の部分断面図The fragmentary sectional view of the electric blower in the 1st Embodiment of this invention 本発明の第参考の形態における電動送風機の部分断面図The fragmentary sectional view of the electric blower in the 1st reference form of the present invention 本発明の第参考の形態における電動送風機の部分断面図Partial sectional drawing of the electric blower in the 2nd reference form of this invention 本発明の第参考の形態における電動送風機の部分断面図Partial sectional drawing of the electric blower in the 3rd reference form of this invention 従来の電動送風機を示す部分断面図Partial sectional view showing a conventional electric blower

1 電動送風機
2 ステータ
5 ロータ
11 負荷側ブラケット
12 反負荷側ブラケット
13 カーボンブラシ
15 電機子コア
16 インペラ
17 エアガイド
18 ファンケース
19 排気口
20 ディフューザ部
21 流れ変更部
22 戻り通路
24 第3の吸気口
25 シール部材
26 静翼
27 リブA、B
28 リブ
DESCRIPTION OF SYMBOLS 1 Electric blower 2 Stator 5 Rotor 11 Load side bracket 12 Anti-load side bracket 13 Carbon brush 15 Armature core 16 Impeller 17 Air guide 18 Fan case 19 Exhaust port 20 Diffuser part 21 Flow change part 22 Return path 24 3rd inlet port 25 Seal member 26 Stator blade 27 Rib A, B
28 Ribs

Claims (2)

回転自在のロータのシャフトに固定されると共に中央に第1の吸気口を有するインペラと、前記インペラの外周部に設けられたエアガイドと、中央に第2の吸気口を有すると共に前記インペラ及び前記エアガイドを覆うファンケースと、前記ファンケースの内壁と前記インペラとの間に配され中央に第3の吸気口を有する樹脂製の略円形のシール部材を備え、前記エアガイドは、前記インペラの外周部に設けられ、複数の静翼からなるディフューザ部と、外周部に設けられ気流をリターンする流れ変更部と、気流を中央部へと導く戻り通路を備え、前記シール部材の内周部と前記インペラの内周部、及び、前記シール部材の外周部と前記インペラの外周部をそれぞれ近接または摺接させており、前記シール部材の外周部には、側面が前記インペラの外周端部と接し、且つ、円周状に形成されたリブが形成されていることを特徴とする電動送風機。 An impeller fixed to the shaft of the rotatable rotor and having a first intake port at the center, an air guide provided at the outer periphery of the impeller, a second intake port at the center and the impeller and the A fan case that covers the air guide; and a substantially circular sealing member made of resin having a third air inlet in the center that is disposed between the inner wall of the fan case and the impeller. A diffuser portion provided on the outer peripheral portion and including a plurality of stationary blades; a flow changing portion provided on the outer peripheral portion for returning the airflow; and a return passage for guiding the airflow to the central portion; and an inner peripheral portion of the seal member; The inner peripheral portion of the impeller, and the outer peripheral portion of the seal member and the outer peripheral portion of the impeller are close to or in sliding contact with each other, and the side surface of the outer peripheral portion of the seal member Contact with the outer peripheral edge of La, and the electric blower, wherein a rib formed in a circumferential shape is formed. 請求項に記載の電動送風機を備えた電気掃除機。 A vacuum cleaner comprising the electric blower according to claim 1 .
JP2006347140A 2006-12-25 2006-12-25 Electric blower and vacuum cleaner Expired - Fee Related JP4997960B2 (en)

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Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04179897A (en) * 1990-11-14 1992-06-26 Matsushita Electric Ind Co Ltd Electric blower
JP3524627B2 (en) * 1995-04-24 2004-05-10 三洋電機株式会社 Electric blower
JPH10252693A (en) * 1997-03-11 1998-09-22 Mitsubishi Electric Corp Motor-drive blower

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