JP2007330076A - Brushless motor - Google Patents

Brushless motor Download PDF

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Publication number
JP2007330076A
JP2007330076A JP2006161261A JP2006161261A JP2007330076A JP 2007330076 A JP2007330076 A JP 2007330076A JP 2006161261 A JP2006161261 A JP 2006161261A JP 2006161261 A JP2006161261 A JP 2006161261A JP 2007330076 A JP2007330076 A JP 2007330076A
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JP
Japan
Prior art keywords
heat radiating
housing
radiating housing
rotor
brushless motor
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JP2006161261A
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JP4857924B2 (en
Inventor
Norimoto Agehara
紀元 揚原
Tomonori Ichiba
朋典 一場
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Max Co Ltd
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Max Co Ltd
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Priority to JP2006161261A priority Critical patent/JP4857924B2/en
Priority to TW096119919A priority patent/TW200824230A/en
Priority to PCT/JP2007/061551 priority patent/WO2007142299A1/en
Priority to CN2007800215035A priority patent/CN101467335B/en
Publication of JP2007330076A publication Critical patent/JP2007330076A/en
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Publication of JP4857924B2 publication Critical patent/JP4857924B2/en
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K9/00Arrangements for cooling or ventilating
    • H02K9/02Arrangements for cooling or ventilating by ambient air flowing through the machine
    • H02K9/04Arrangements for cooling or ventilating by ambient air flowing through the machine having means for generating a flow of cooling medium
    • H02K9/06Arrangements for cooling or ventilating by ambient air flowing through the machine having means for generating a flow of cooling medium with fans or impellers driven by the machine shaft
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K11/00Structural association of dynamo-electric machines with electric components or with devices for shielding, monitoring or protection
    • H02K11/30Structural association with control circuits or drive circuits
    • H02K11/33Drive circuits, e.g. power electronics
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K5/00Casings; Enclosures; Supports
    • H02K5/04Casings or enclosures characterised by the shape, form or construction thereof
    • H02K5/16Means for supporting bearings, e.g. insulating supports or means for fitting bearings in the bearing-shields
    • H02K5/173Means for supporting bearings, e.g. insulating supports or means for fitting bearings in the bearing-shields using bearings with rolling contact, e.g. ball bearings
    • H02K5/1732Means for supporting bearings, e.g. insulating supports or means for fitting bearings in the bearing-shields using bearings with rolling contact, e.g. ball bearings radially supporting the rotary shaft at both ends of the rotor
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K5/00Casings; Enclosures; Supports
    • H02K5/04Casings or enclosures characterised by the shape, form or construction thereof
    • H02K5/18Casings or enclosures characterised by the shape, form or construction thereof with ribs or fins for improving heat transfer
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K9/00Arrangements for cooling or ventilating
    • H02K9/22Arrangements for cooling or ventilating by solid heat conducting material embedded in, or arranged in contact with, the stator or rotor, e.g. heat bridges
    • H02K9/227Heat sinks

Abstract

<P>PROBLEM TO BE SOLVED: To provide a brushless motor the full length of which can be reduced by directly cooling switching elements with a cooling fan to enhance cooling efficiency, and by bringing the switching elements into close contact with a heat radiating housing. <P>SOLUTION: In the brushless motor, (1) The switching elements 10 for turning on/off power supply to a coil 32 provided to a stator 3 is closely fixed onto the bottom outside surface of the bottomed cylindrical heat radiating housing 1; (2) a rotor 2 and the stator 3 are accommodated inside of the heat radiating housing 1, and a fixture 16 for fixing the bearing 30 of the rotor 2 is provided on the bottom inside surface; and (3) the cooling fax 22 for cooling the heat radiating housing 1 is fixed onto the end part of one side of the heat radiating housing 1 of the rotor 2 rotating shaft 20, and an accommodating recessed part 24 for accommodating the bearing 30 is formed at the center of the cooling fan 22. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、ブラシレスモータ、詳しくはスイッチング素子からの発熱を冷却する冷却ファンを備えたブラシレスモータに関するものである。   The present invention relates to a brushless motor, and more particularly to a brushless motor including a cooling fan that cools heat generated from a switching element.

従来、ステータのコイルへの通電をオン・オフするためのスイッチング素子が発生する熱を冷却するために、放熱部材をステータ鉄心に固定し、スイッチング素子が発生した熱を放熱部材に放熱し、放熱部材からステータ鉄心に放熱させることによりステータ鉄心に放熱フィンの機能を持たせたブラシレスモータが提案されている(例えば、特許文献1)。
特開2004−357371号公報
Conventionally, in order to cool the heat generated by the switching element for turning on and off the stator coil, the heat dissipating member is fixed to the stator core, and the heat generated by the switching element is dissipated to the heat dissipating member. There has been proposed a brushless motor in which a stator core has a function of a radiating fin by radiating heat from a member to the stator core (for example, Patent Document 1).
JP 2004-357371 A

本発明が解決しようとする問題点は、上述のブラシレスモータは放熱部材にスイッチング素子を固定し、この放熱部材をステータ鉄心に固定したもので、冷却ファンによる冷却はステータ鉄心、放熱部材を介して間接的にスイッチング素子を冷却するものであり、しかもスイッチング素子は基板に直立した状態で固定されているため小型化を図ったとはいえ全体の長さは必ずしも改善されているとはいえなかった。   The problem to be solved by the present invention is that the above-mentioned brushless motor has a switching element fixed to a heat radiating member, and this heat radiating member is fixed to the stator core. Cooling by the cooling fan is performed via the stator core and the heat radiating member. Although the switching element is indirectly cooled, and the switching element is fixed in an upright state on the substrate, the overall length is not necessarily improved although the size is reduced.

本発明は、上記問題点を解決し、スイッチング素子を直接的に冷却ファンで冷却することにより冷却効率を高めるとともに、スイッチング素子を放熱ハウジングに密着させることにより小型化を図ることができるブラシレスモータを提供することを課題とする。   The present invention provides a brushless motor that solves the above-described problems, increases the cooling efficiency by directly cooling the switching element with a cooling fan, and can be miniaturized by bringing the switching element into close contact with the heat radiating housing. The issue is to provide.

前記課題を解決するために本発明に係るブラシレスモータは、以下の要件を備えることを特徴とする。
(イ)ステータのコイルへの通電をオン・オフするためのスイッチング素子を有底筒状の放熱ハウジングの底部外側面に密着固定したこと
(ロ)上記放熱ハウジングの内部にはロータと、ステータとを収容するとともに、底部内側面には上記ロータの回転軸を支持する軸受を固定する固定部を設けたこと
(ハ)上記ロータの回転軸には冷却ファンを固定し、該冷却ファンの中央には上記固定部を収容する収容凹部を設けたこと
In order to solve the above-mentioned problems, a brushless motor according to the present invention has the following requirements.
(A) A switching element for turning on / off the energization of the coil of the stator is tightly fixed to the bottom outer surface of the bottomed cylindrical heat radiating housing. (B) Inside the heat radiating housing is a rotor, a stator, And (c) a cooling fan is fixed to the rotating shaft of the rotor, and the cooling fan is fixed to the center of the cooling fan. Is provided with an accommodation recess to accommodate the fixed part

なお、前記放熱ハウジングを熱伝導に優れた金属で成型し、前記軸受の固定部を切削にて形成するとともに、前記放熱ハウジングの周面には、開口側から底部側に向かって複数の係合溝を形成し、前記ステータの外周面には上記係合溝に係合する係合凸片を形成することが好ましい。   The heat radiating housing is molded from a metal having excellent heat conduction, and the fixed portion of the bearing is formed by cutting, and the peripheral surface of the heat radiating housing has a plurality of engagements from the opening side to the bottom side. Preferably, a groove is formed, and an engaging convex piece that engages with the engaging groove is formed on the outer peripheral surface of the stator.

請求項1の発明によれば、スイッチング素子を放熱ハウジングに密着させて固定するとともに、冷却ファンの風を直接放熱ハウジングに吹き付けるようにしたのでスイッチング素子の冷却効率を高めることができるとともに、冷却ファンの内側にロータの軸受を収容するようにしたので、ブラシレスモータの全体の長さの短縮を図ることができた。   According to the first aspect of the present invention, the switching element is fixed in close contact with the heat dissipation housing, and the cooling fan is blown directly onto the heat dissipation housing, so that the cooling efficiency of the switching element can be increased and the cooling fan Since the rotor bearings are housed inside, the overall length of the brushless motor can be shortened.

請求項2の発明によれば、現在、世に出ているブラシレスモータ(インパクトドライバ)は回転するロータについている軸受を、プラスチックの外側ハウジングに形成された台座で行なっているが、成形の精度のバラツキは否めず芯ズレが発生し、雑音の原因に加えて性能のバラツキにつながるが、金属製の放熱ハウジングにロータの軸受の固定部を切削して形成したので、固定部の精度が高くなり芯ズレによる雑音の発生や性能のバラツキを回避することができる。   According to the invention of claim 2, a brushless motor (impact driver) that is currently available in the world uses a pedestal formed on a plastic outer housing as a bearing for a rotating rotor. Inevitably, misalignment will occur, leading to variations in performance in addition to the cause of noise.However, since the fixed part of the rotor bearing is cut into the metal heat-dissipating housing, the precision of the fixed part increases and the core It is possible to avoid generation of noise due to deviation and variation in performance.

図1は、本発明に係るブラシレスモータの一例を示す正面側斜視図、図2は背面側斜視図、図3は分解斜視図を示し、このブラシレスモータは放熱ハウジング1、ロータ2、ステータ3、インナーカバー4とで構成され、ロータ2とステータ3とを放熱ハウジング1内に収容し、インナーカバー4を放熱ハウジング1にネジで固定することにより一体の構成されているものである。   1 is a front perspective view showing an example of a brushless motor according to the present invention, FIG. 2 is a rear perspective view, and FIG. 3 is an exploded perspective view. The brushless motor includes a heat radiating housing 1, a rotor 2, a stator 3, It is comprised by the inner cover 4, and the rotor 2 and the stator 3 are accommodated in the heat radiating housing 1, and it is comprised integrally by fixing the inner cover 4 to the heat radiating housing 1 with a screw.

放熱ハウジング1はアルミニウム等の熱伝導性の高い材質で有底筒状に形成され、底部外側面1aには、図4に示すようにFETなどのスイッチング素子10が寝かせて密着させた状態でネジ止めされ、スイッチング素子10の熱は放熱ハウジング1に伝導するようになっている。スイッチング素子10の端子10aは後方に向かって直角に折り曲げられ、回路基板11に形成されたスルーホール12に差し込まれた後、回路基板11を放熱ハウジング1に固定し、端子10aを半田付けすればスイッチング素子10を配置した回路基板11を放熱ハウジング1に固定できるようになっている。   The heat radiating housing 1 is formed into a bottomed cylindrical shape made of a material having high thermal conductivity such as aluminum, and a screw with a switching element 10 such as an FET lying on and in close contact with the bottom outer surface 1a as shown in FIG. The heat of the switching element 10 is transferred to the heat radiating housing 1. If the terminal 10a of the switching element 10 is bent at a right angle toward the rear and inserted into the through hole 12 formed in the circuit board 11, the circuit board 11 is fixed to the heat dissipation housing 1, and the terminal 10a is soldered. The circuit board 11 on which the switching element 10 is arranged can be fixed to the heat dissipation housing 1.

さらに、放熱ハウジング1の周面1bの底面側には多数の通気口13が形成され、開口側の周面には底面側に向かって複数の係合溝14が形成されるとともに、ネジ孔が形成された連結片15が突出して形成されている。   Further, a large number of vent holes 13 are formed on the bottom surface side of the peripheral surface 1b of the heat radiating housing 1, a plurality of engagement grooves 14 are formed on the peripheral surface on the opening side toward the bottom surface side, and screw holes are provided. The formed connecting piece 15 is formed so as to protrude.

そして、底部内側面1cの中央は前面に膨出して成型され、この膨出部には、切削にてロータ2の軸受30を固定する固定部16が形成されている(図5参照)。   The center of the bottom inner side surface 1c bulges to the front surface and is molded, and a fixed portion 16 for fixing the bearing 30 of the rotor 2 by cutting is formed in the bulged portion (see FIG. 5).

ロータ2の回転軸20の先端にはピニオンギヤ21が設けられ、放熱ハウジング1側の後端には冷却ファン22が固定されている。この冷却ファン22は、図6(a)に示すように、円板23の中央が環状に膨出し、この膨出部24の周面から放射状にフィン25が形成されているもので、円板23と膨出部24とには通気孔26、27が多数形成されている。   A pinion gear 21 is provided at the tip of the rotating shaft 20 of the rotor 2, and a cooling fan 22 is fixed to the rear end of the heat radiating housing 1. As shown in FIG. 6 (a), the cooling fan 22 has a circular plate 23 in which the center bulges out in an annular shape, and fins 25 are formed radially from the peripheral surface of the bulging portion 24. A large number of air holes 26 and 27 are formed in 23 and the bulging portion 24.

上記膨出部24はロータ2の回転軸を軸支する軸受30の収容部を構成し、図6(b)及び図7に示すように、ロータ2の回転軸20に軸受30を取り付けたときには、この軸受30は膨出部24の内部24aに収容された状態になり冷却ファン22とほぼ面一になり、冷却ファン22の厚みに軸受30がほぼ収まるようになっている。   The bulging portion 24 constitutes a housing portion of the bearing 30 that pivotally supports the rotating shaft of the rotor 2, and when the bearing 30 is attached to the rotating shaft 20 of the rotor 2 as shown in FIGS. 6B and 7. The bearing 30 is housed in the interior 24 a of the bulging portion 24 and is substantially flush with the cooling fan 22, so that the bearing 30 is substantially within the thickness of the cooling fan 22.

軸受30を放熱ハウジング1の固定部16に固定させたときは、固定部16が軸受30とともに膨出部24内に収容され(図5参照)、冷却ファン22と放熱ハウジング1の底部内側面1cとは直近で対向した状態になり、冷却ファン22による冷却効果が最大に発揮できるようになっている。   When the bearing 30 is fixed to the fixed portion 16 of the heat dissipation housing 1, the fixed portion 16 is accommodated in the bulging portion 24 together with the bearing 30 (see FIG. 5), and the cooling fan 22 and the bottom inner surface 1c of the heat dissipation housing 1 are accommodated. Is in a state of being opposed to each other most recently, and the cooling effect by the cooling fan 22 can be maximized.

ステータ3は、内壁面から内側に向けて複数のコア31が形成され、このコア31に巻線(コイル)32が巻回されたもので、外壁面には放熱ハウジング1の係合溝14に係合する係合凸片33が形成され、組み付け時には放熱ハウジング1がステータ3を確実に保持するようになっている。   The stator 3 has a plurality of cores 31 formed from the inner wall surface to the inner side, and windings (coils) 32 are wound around the core 31. Engaging protrusions 33 to be engaged are formed so that the heat radiating housing 1 securely holds the stator 3 during assembly.

インナーカバー4は、内側にリングギヤ34が固定されていて、ロータの回転は、図示しない遊星ギヤ構造で減速され出力軸に伝達されるようになっているもので、本製品の場合には減速後にインパクトトルク発生機構に伝達され、インパクトトルクが発生されてネジを締めていくようになっている。また、ドリルドライバであれば、このインパクトトルクの発生機構はなく、直接出力軸に伝達されるようになっている。   The inner cover 4 has a ring gear 34 fixed inside, and the rotation of the rotor is reduced by a planetary gear structure (not shown) and transmitted to the output shaft. The torque is transmitted to the impact torque generating mechanism, and the impact torque is generated to tighten the screw. In the case of a drill driver, there is no mechanism for generating this impact torque, and it is transmitted directly to the output shaft.

上記構成のブラシレスモータによれば、放熱ハウジング1にスイッチング素子10を固定し、回路基板11を放熱ハウジング1に固定したハウジングユニットに、ロータ2に冷却ファン22と軸受30とを取り付けたロータ2とステータ3とを収容する。この際、ロータ2の軸受30を放熱ハウジング1の固定部に嵌め合わせ、ステータ3の係合凸片33を放熱ハウジング1の係合溝14に係合させ、インナーカバー4の軸受部にロータ2の前側の軸受30を嵌め合わせた後、ネジで放熱ハウジング1とインナーカバー4とを連結することにより組み上げることができる。このことによりブラシレスモータをユニット化することができ、インパクトドライバーなどの装置に組み付ける際、モータユニットとして事前アッセンブリーができるので装置への組み付け時間の短縮が図れるとともに、従来のブラシレスモータのように直接ハウジングに配置するやり方の場合では、性能を安定させるために樹脂製ハウジングの高度の製造精度が要求され製造コストが上がる問題も回避できる。   According to the brushless motor having the above configuration, the switching element 10 is fixed to the heat radiating housing 1, and the rotor 2 in which the cooling fan 22 and the bearing 30 are attached to the rotor 2 in the housing unit in which the circuit board 11 is fixed to the heat radiating housing 1. The stator 3 is accommodated. At this time, the bearing 30 of the rotor 2 is fitted to the fixed portion of the heat radiating housing 1, the engaging protrusion 33 of the stator 3 is engaged with the engaging groove 14 of the heat radiating housing 1, and the rotor 2 is fitted to the bearing portion of the inner cover 4. After the front bearings 30 are fitted together, the heat dissipation housing 1 and the inner cover 4 can be assembled by screws. As a result, the brushless motor can be unitized, and when assembled to devices such as impact drivers, pre-assembly can be performed as a motor unit, so that the assembly time for the device can be shortened and the housing can be directly mounted like a conventional brushless motor. In the case of the method of disposing in the above-described manner, it is possible to avoid the problem of high manufacturing accuracy of the resin housing and high manufacturing cost in order to stabilize the performance.

しかも、ロータ2の軸受30を放熱ハウジング1と、インナーカバー4とで夫々支持し、放熱ハウジング1とステータ3とを係合溝14と係合凸片33とで係合させた状態でユニット化しているので、高速で回転するロータ2とステータ3の芯ずれを抑制でき、装置からの雑音発生を抑制することができる。   In addition, the bearing 30 of the rotor 2 is supported by the heat radiating housing 1 and the inner cover 4 respectively, and the heat radiating housing 1 and the stator 3 are unitized with the engaging groove 14 and the engaging convex piece 33 engaged. Therefore, misalignment between the rotor 2 and the stator 3 rotating at high speed can be suppressed, and noise generation from the apparatus can be suppressed.

さらに、発熱の元であるスイッチング素子10を寝かせた状態で放熱ハウジング1の底面外側に固定し、底面内側には近接して冷却ファン22を配置して放熱効果を高めるとともに、モータの全長縮小を図ることができ、装置の小型化に寄与することができる。   Further, the switching element 10 that is the source of heat generation is laid down and fixed to the outside of the bottom surface of the heat radiating housing 1, and a cooling fan 22 is disposed close to the inside of the bottom surface to enhance the heat radiation effect and reduce the overall length of the motor. This can contribute to the downsizing of the apparatus.

なお、上述のブラシレスモータは放熱ハウジング1とインナーカバー4との連結をネジを用いて行なっているが、図8に示すように、モーターナット40を用いて放熱ハウジング1とインナーカバー4との連結を行うようにしてもよい。このモーターナット40はリング状に形成し、内周面にネジ山41を形成したもので構成し、放熱ハウジング1の開口側周面にはネジ溝42を周設し、インナーカバー4には位置決め突起43を形成し、放熱ハウジング1にロータ2、ステータ3を収容した後、インナーカバー4の位置決め突起43を放熱ハウジング1の係合溝14に係合させてモーターナット40を放熱ハウジング1に螺合させることにより、図9に示すように、インナーカバー4と、放熱ハウジング1とを連結できるようにしてもよい。このモータによれば、インナーカバー4と放熱ハウジング1とを連結するための連結片を突出形成しなくてよいので、モータの周面に突起がなくなり、装置への組み付け性の向上を図ることができる。   In the brushless motor described above, the heat radiating housing 1 and the inner cover 4 are connected using screws, but the motor nut 40 is used to connect the heat radiating housing 1 and the inner cover 4 as shown in FIG. May be performed. The motor nut 40 is formed in a ring shape and is formed by forming a thread 41 on the inner peripheral surface. A screw groove 42 is provided on the opening side peripheral surface of the heat radiating housing 1, and the inner cover 4 is positioned. After the protrusion 43 is formed and the rotor 2 and the stator 3 are accommodated in the heat dissipation housing 1, the positioning protrusion 43 of the inner cover 4 is engaged with the engagement groove 14 of the heat dissipation housing 1, and the motor nut 40 is screwed into the heat dissipation housing 1. By combining them, the inner cover 4 and the heat radiating housing 1 may be connected as shown in FIG. According to this motor, since the connecting piece for connecting the inner cover 4 and the heat radiating housing 1 does not have to be formed in a protruding manner, there is no protrusion on the peripheral surface of the motor, and the ease of assembling to the apparatus can be improved. it can.

なお、上述のモータの組み付けは、何れもモータのユニット化を実現し、ラインでの組み付け工程の簡便化を図ったものであるが、モータのさらに他の組付けの仕方をインパクトドライバの場合について、図10に基づいて説明する。これは、放熱ハウジング1と、ステータ3、インナーカバー4を2本のネジ51、51でインパクトドライバーアセンブリ50に一体に連結するようにしたもので、放熱ハウジング1、ステータ3、インナーカバー4にはそれぞれネジ51を挿通する挿通孔が形成された連結片52、53、54を形成し、インパクトドライバーアセンブリ50の連結片55にはネジ51を螺合するネジ孔を形成し、連結片53、54を放熱ハウジング1の係合溝14に係合させながら合体させ、係合片52の挿通孔から差し込んだネジ51が、連結片52、53、54を貫通し、インパクトドライバーアセンブリ50の連結片55に形成されたネジ孔にねじ込むことにより、図11に示すように、インパクトドライバーアセンブリ50と一体にモータを組み付けることができる。   In addition, the above-mentioned motor assembly has realized the unitization of the motor, and simplifies the assembly process on the line. This will be described with reference to FIG. In this structure, the heat radiating housing 1, the stator 3, and the inner cover 4 are integrally connected to the impact driver assembly 50 with two screws 51, 51. Connection pieces 52, 53, and 54 having insertion holes through which the screws 51 are inserted are formed, and screw holes for screwing the screws 51 are formed in the connection pieces 55 of the impact driver assembly 50. Are engaged with the engaging groove 14 of the heat radiating housing 1, and the screw 51 inserted from the insertion hole of the engaging piece 52 passes through the connecting pieces 52, 53, 54, and connects the connecting piece 55 of the impact driver assembly 50. As shown in FIG. 11, the motor is assembled integrally with the impact driver assembly 50 by screwing into the screw holes formed in You can kick it.

上述のモータの組み付けによれば、製品(例えば、インパクトドライバ)内部の駆動系を全てアッセンブリ化することができ、一層の組み付け工程の簡素化を図ることができる。   According to the assembly of the motor described above, the entire drive system inside the product (for example, impact driver) can be assembled, and the assembly process can be further simplified.

本発明に係るブラシレスモータの正面側斜視図Front side perspective view of brushless motor according to the present invention 上記ブラシレスモータの背面側斜視図Rear side perspective view of the brushless motor 上記ブラシレスモータの分解斜視図Exploded perspective view of the brushless motor 放熱ハウジングへのスイッチング素子の取り付け状態を説明する背面側斜視図Rear side perspective view for explaining the mounting state of the switching element to the heat dissipation housing 上記ブラシレスモータの縦断面図Vertical section of the brushless motor (a)(b)は、冷却ファンと軸受との関係を説明する斜視図(A) (b) is a perspective view explaining the relationship between a cooling fan and a bearing. 冷却ファンと軸受との関係を説明する要部断面図Cross-sectional view of the main part explaining the relationship between the cooling fan and the bearing 本発明に係るブラシレスモータの他の例を説明する正面側斜視図Front perspective view for explaining another example of a brushless motor according to the present invention 上記他の例のブラシレスモータの構成を説明する分解斜視図The exploded perspective view explaining the composition of the brushless motor of the above-mentioned other example 本発明に係るブラシレスモータの別の例を説明する分解斜視図The exploded perspective view explaining another example of the brushless motor concerning the present invention 上記別の例のブラシレスモータの構成を説明する背面側斜視図Rear side perspective view for explaining the configuration of the brushless motor of another example

符号の説明Explanation of symbols

1 放熱ハウジング
2 ロータ
3 ステータ
4 インナーカバー
10 スイッチング素子
16 固定部
22 冷却ファン
24 収容凹部(膨出部)
30 軸受
32 コイル
DESCRIPTION OF SYMBOLS 1 Heat radiation housing 2 Rotor 3 Stator 4 Inner cover 10 Switching element 16 Fixed part 22 Cooling fan 24 Housing recessed part (bulging part)
30 Bearing 32 Coil

Claims (2)

以下の要件を備えることを特徴とするブラシレスモータ。
(イ)ステータに設けたコイルへの通電をオン・オフするスイッチング素子を有底筒状の放熱ハウジングの底部外側面に密着固定したこと
(ロ)上記放熱ハウジングの内部にはロータと、ステータとを収容するとともに、底部内側面には上記ロータの軸受を固定する固定部を設けたこと
(ハ)上記ロータの回転軸の上記放熱ハウジング側の端部には上記放熱ハウジングを冷却する冷却ファンを固定し、該冷却ファンの中央には上記軸受を収容する収容凹部を形成したこと
A brushless motor having the following requirements:
(A) A switching element for turning on / off the power supply to the coil provided in the stator is closely attached to the bottom outer surface of the bottomed cylindrical heat radiating housing. (B) Inside the heat radiating housing is a rotor, a stator, (C) a cooling fan for cooling the heat radiating housing is provided at the end of the rotating shaft of the rotor on the heat radiating housing side. It was fixed, and a housing recess for housing the bearing was formed in the center of the cooling fan.
前記放熱ハウジングを熱伝導に優れた金属で成型し、前記軸受の固定部を切削にて形成するとともに、前記放熱ハウジングの周面には、開口側から底部側に向かって複数の係合溝を形成し、前記ステータの外周面には上記係合溝に係合する係合凸片を形成した、請求項1記載のブラシレスモータ。   The heat radiating housing is molded from a metal having excellent heat conduction, and the fixed portion of the bearing is formed by cutting, and a plurality of engagement grooves are formed on the peripheral surface of the heat radiating housing from the opening side to the bottom side. The brushless motor according to claim 1, wherein an engagement convex piece that is formed and is engaged with the engagement groove is formed on an outer peripheral surface of the stator.
JP2006161261A 2006-06-09 2006-06-09 Brushless motor Active JP4857924B2 (en)

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JP2006161261A JP4857924B2 (en) 2006-06-09 2006-06-09 Brushless motor
TW096119919A TW200824230A (en) 2006-06-09 2007-06-04 Brushless motor
PCT/JP2007/061551 WO2007142299A1 (en) 2006-06-09 2007-06-07 Brushless motor
CN2007800215035A CN101467335B (en) 2006-06-09 2007-06-07 Brushless motor

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JP5365872B2 (en) * 2009-06-24 2013-12-11 株式会社デンソー Drive device
DE102010040875A1 (en) * 2010-09-16 2012-03-22 Robert Bosch Gmbh Electric motor with a power output stage and with efficient heat transport and process
JP5692575B2 (en) 2010-12-28 2015-04-01 株式会社デンソー Drive device
JP5692588B2 (en) 2010-12-28 2015-04-01 株式会社デンソー Drive device
CN105186787B (en) * 2015-08-18 2018-09-25 常州格力博有限公司 The radiator structure of brushless motor
US11757330B2 (en) 2019-12-19 2023-09-12 Black & Decker, Inc. Canned outer-rotor brushless motor for a power tool
US11437900B2 (en) 2019-12-19 2022-09-06 Black & Decker Inc. Modular outer-rotor brushless motor for a power tool

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WO2022168298A1 (en) * 2021-02-08 2022-08-11 株式会社日立製作所 Hoisting machine and elevator

Also Published As

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TW200824230A (en) 2008-06-01
CN101467335A (en) 2009-06-24
WO2007142299A1 (en) 2007-12-13
JP4857924B2 (en) 2012-01-18
CN101467335B (en) 2011-06-08

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