JP6114906B2 - Axial-flow fan and electrical equipment equipped with it - Google Patents

Axial-flow fan and electrical equipment equipped with it Download PDF

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JP6114906B2
JP6114906B2 JP2012187183A JP2012187183A JP6114906B2 JP 6114906 B2 JP6114906 B2 JP 6114906B2 JP 2012187183 A JP2012187183 A JP 2012187183A JP 2012187183 A JP2012187183 A JP 2012187183A JP 6114906 B2 JP6114906 B2 JP 6114906B2
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air volume
commercial
capacitor
power supply
axial
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JP2014043818A (en
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高田 昌亨
昌亨 高田
和弘 室町
和弘 室町
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Panasonic Intellectual Property Management Co Ltd
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Priority to PCT/JP2012/007179 priority patent/WO2013073141A1/en
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Description

本発明は、主にパイプ用ファンや一般型換気扇、業務用や産業用の有圧換気扇等の排気用および給気用の換気装置や、機器組み込み用の冷却用ファンなどに搭載する軸流送風機およびその軸流送風機を搭載した電気機器に関するものである。   The present invention mainly relates to an axial-flow fan mounted on a ventilation fan for exhaust and supply such as a fan for a pipe or a general type ventilation fan, a pressure ventilation fan for business use or industrial use, a cooling fan for incorporation in an apparatus, etc. Further, the present invention relates to an electric device equipped with the axial fan.

近年、換気装置等の電気機器に搭載する電動機においては、低価格化、高効率化、静音化、小型化、薄型化が求められている。さらに、常時換気など小風量が必要な場合は、外風圧など圧力損失の変化があっても、確実に必要最小限の小風量での送風が実現でき、急速換気など大風量が必要な場合は、外風圧、フィルタ等の目詰まりによる圧力損失の変化など、環境影響を大きく受けることなく、最大風量での送風が実現できるような軸流送風機が求められている。   2. Description of the Related Art In recent years, electric motors mounted on electric devices such as ventilation devices have been required to be reduced in price, increased in efficiency, reduced in noise, reduced in size, and reduced in thickness. Furthermore, when a small air volume such as constant ventilation is required, even if there is a change in pressure loss such as outside air pressure, it is possible to reliably blow with the minimum necessary air volume. There is a need for an axial blower that can achieve blowing at the maximum air volume without being greatly affected by environmental influences such as external wind pressure, changes in pressure loss due to clogging of filters, and the like.

従来、この種の軸流送風機は、特許文献1に開示された構成のものが知られている。   Conventionally, this type of axial blower has a configuration disclosed in Patent Document 1.

以下、その軸流送風機について図6を参照しながら説明する。   Hereinafter, the axial flow fan will be described with reference to FIG.

図に示すように、軸流送風機108は、DC電源101よりDCモータ103に電力供給し、DCモータ103の回転軸にはプロペラファン104を取り付けたものである。そして、定常状態において、DC電源101より定格電圧をDCモータ103に印加し、静圧ゼロの時の回転数よりも若干低い回転数を所定の回転数として記憶する。外風圧などによって、運転回転数が所定の回転数よりも下がった場合には、DC電源101の出力電圧を定格電圧以上に上昇させ、所定の回転数より低くならないように制御する制御回路107を備えた構成としている。   As shown in the figure, the axial blower 108 supplies power to a DC motor 103 from a DC power source 101, and a propeller fan 104 is attached to the rotating shaft of the DC motor 103. In a steady state, a rated voltage is applied from the DC power source 101 to the DC motor 103, and a rotational speed slightly lower than the rotational speed when the static pressure is zero is stored as a predetermined rotational speed. A control circuit 107 for controlling the output voltage of the DC power source 101 to be higher than the rated voltage and not lower than the predetermined rotational speed when the operating rotational speed is lower than the predetermined rotational speed due to outside wind pressure or the like. It has a configuration with.

特開平5−223091号公報Japanese Patent Laid-Open No. 5-223091

このような従来の軸流送風機によれば、DC電源や制御回路などを設置するためのスペースを確保するために、小型化、薄型化ができないという課題がある。そして、常時換気など小風量が必要な場合は、外風圧など圧力損失の変化があっても、確実に必要最小限の小風量での送風を実現でき、急速換気など大風量が必要な場合は、外風圧など機外圧力損失が増加しても、送風量の減少が少なくできることが要求されている。   According to such a conventional axial blower, there is a problem that it cannot be reduced in size and thickness in order to secure a space for installing a DC power supply, a control circuit, and the like. And when a small air volume such as constant ventilation is required, even if there is a change in pressure loss such as outside wind pressure, it is possible to reliably deliver the air with the minimum necessary air volume. Even if the pressure loss outside the machine, such as outside wind pressure, increases, it is required that the decrease in the amount of blown air can be reduced.

本発明は、このような従来の課題を解決するものであり、DC電源や、マイクロコンピュータを搭載した制御回路を使用することなく、外風圧など機外圧力損失が増加しても、送風量の減少を抑制した小風量送風と、大風量送風の両方が実現できる軸流送風機を提供することを目的としている。   The present invention solves such a conventional problem, and even if an external pressure loss such as an external wind pressure increases without using a DC power supply or a control circuit equipped with a microcomputer, It aims at providing the axial flow fan which can implement | achieve both small air volume ventilation which suppressed the reduction | decrease, and large air volume ventilation.

そして、この目的を達成するために、本発明は、回転軸と、この回転軸の少なくとも一端に接続したプロペラファンと、前記回転軸の外周に一体化され、複数の導体バーを有するかご形回転子と、このかご形回転子に対向して位置し、電機子巻線を固定子鉄心の各ティースに集中巻きした固定子とを備えた軸流送風機であって、前記かご形回転子には、前記導体バーを前記固定子との間に挟む位置に永久磁石を配し、商用交流電源に接続することで、小風量用コンデンサと大風量用コンデンサとが直列接続されて運転コンデンサとしての容量が小さくなる小風量用接続手段と、前記商用交流電源に接続することで、前記小風量用コンデンサを接続せず前記大風量用コンデンサのみを利用して運転コンデンサとしての容量が大きくなる大風量用接続手段と、を備え、前記商用交流電源が前記大風量用接続手段に接続された場合は、運転コンデンサとしての容量が大きくなることで機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数で同期機として一定運転し、前記商用交流電源が前記小風量用接続手段に接続された場合は、運転コンデンサとしての容量が前記大風量用接続手段に接続した場合に対して小さくなることで機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数の3分の1の回転数で誘導機として一定運転することを特徴とする軸流送風機としたものであり、これにより所期の目的を達成するものである。
In order to achieve this object, the present invention provides a rotating shaft, a propeller fan connected to at least one end of the rotating shaft, and a squirrel-cage having a plurality of conductor bars integrated with the outer periphery of the rotating shaft. An axial blower having a stator and a stator that is positioned opposite to the cage rotor and has an armature winding concentratedly wound on each tooth of the stator core, the cage rotor having By arranging a permanent magnet at a position sandwiching the conductor bar between the stator and connecting to a commercial AC power source , a small air volume capacitor and a large air volume capacitor are connected in series, and the capacity as an operating capacitor and small air volume connecting means is reduced, the by connecting to a commercial AC power source, the use a large volume of capacity increases as run capacitor by using only the capacitor the large volume without connecting the small air volume capacitor Comprising a connection unit, wherein the case where a commercial AC power supply is connected to the large air volume connection means, external static pressure becomes substantially maximum from external static pressure zero by volume of the run capacitor increases In the range up to the above , when a constant operation is performed as a synchronous machine at a rotational speed synchronized with the power supply frequency of the commercial AC power supply, and the commercial AC power supply is connected to the small air volume connection means, the capacity as an operating capacitor is the large capacity 3 minutes of the number of rotations synchronized with the power frequency of the commercial AC power source in the range from zero external static pressure to almost maximum external static pressure by being smaller than when connected to the air volume connection means The axial blower is characterized in that it operates as an induction machine at a rotational speed of 1 and achieves the intended purpose.

本発明によれば、商用交流電源に接続する複数の交流電源接続手段と、回転軸と、この回転軸の少なくとも一端に接続したプロペラファンと、前記回転軸の外周に一体化され、複数の導体バーを有するかご形回転子と、このかご形回転子に対向して位置し、電機子巻線を固定子鉄心の各ティースに集中巻きした固定子とを備えた軸流送風機であって、前記かご形回転子には、前記導体バーを前記固定子との間に挟む位置に永久磁石を配し、前記交流電源接続手段のうち一つの接続手段は大風量用接続手段で、その他の接続手段は小風量用接続手段であり、前記商用交流電源が前記大風量用接続手段に接続された場合は、機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数で一定運転し、前記商用交流電源が前記小風量用接続手段に接続された場合は、機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数の3分の1の回転数で一定運転することを特徴とする軸流送風機の構成としたものである。このような構成により、常時換気など小風量が必要な場合は、外風圧などの影響により、ファン負荷が増加しても、商用交流電源の電源周波数に同期した回転数の3分の1の回転数で運転するので、小風量での送風を実現できる。また、急速換気など大風量が必要な場合は、外風圧などの影響により、ファン負荷が増加しても、商用交流電源の電源周波数に同期して回転数一定で運転する。このように、マイクロコンピュータや特別な制御回路を使用することなく、送風量の減少が少なくできる軸流送風機および電気機器が提供できるという効果を得ることができる。   According to the present invention, a plurality of AC power source connecting means for connecting to a commercial AC power source, a rotating shaft, a propeller fan connected to at least one end of the rotating shaft, and a plurality of conductors integrated on the outer periphery of the rotating shaft An axial blower comprising: a cage rotor having a bar; and a stator positioned opposite to the cage rotor and having an armature winding concentratedly wound on each tooth of the stator core, In the cage rotor, a permanent magnet is arranged at a position sandwiching the conductor bar between the stator and one of the AC power supply connection means is a connection means for large air volume, and the other connection means Is a connection means for small air volume, and when the commercial AC power supply is connected to the connection means for large air volume, the commercial AC power supply is in the range from zero external static pressure to almost maximum external static pressure. A constant operation at a speed synchronized with the power frequency of the When a commercial AC power source is connected to the connection means for small air volume, the rotational speed of 3 synchronized with the power frequency of the commercial AC power source in a range from zero external static pressure to approximately maximum external static pressure. The axial flow blower is characterized in that it is operated at a constant rotational speed of 1 / min. With such a configuration, when a small air volume such as constant ventilation is required, even if the fan load increases due to the influence of outside wind pressure, etc., the rotation speed is 1/3 of the rotation speed synchronized with the power frequency of the commercial AC power supply. Since it is operated by a number, it is possible to achieve air blowing with a small air volume. When a large air volume such as rapid ventilation is required, even if the fan load increases due to the influence of external wind pressure or the like, the engine is operated at a constant speed in synchronization with the power frequency of the commercial AC power supply. Thus, the effect that an axial blower and an electric device that can reduce the decrease in the amount of blown air can be provided without using a microcomputer or a special control circuit can be obtained.

本発明の実施の形態1における軸流送風機を示すブロック図The block diagram which shows the axial-flow fan in Embodiment 1 of this invention. 同電動機の構成を示す分解斜視図Exploded perspective view showing the configuration of the same motor 同電動機の回転数−トルク特性の一例を示すグラフGraph showing an example of the rotation speed-torque characteristics of the same motor 同軸流送風機の風量−静圧特性の一例を示すグラフA graph showing an example of air flow-static pressure characteristics of a coaxial flow blower 同軸流送風機を搭載した換気装置の設置状態を示す断面図Sectional drawing which shows the installation state of the ventilator equipped with the coaxial flow blower 従来の軸流送風機を示すブロック図Block diagram showing a conventional axial blower

本発明の請求項1記載の軸流送風機は、回転軸と、この回転軸の少なくとも一端に接続したプロペラファンと、前記回転軸の外周に一体化され、複数の導体バーを有するかご形回転子と、このかご形回転子に対向して位置し、電機子巻線を固定子鉄心の各ティースに集中巻きした固定子とを備えた軸流送風機であって、前記かご形回転子には、前記導体バーを前記固定子との間に挟む位置に永久磁石を配し、商用交流電源に接続することで、小風量用コンデンサと大風量用コンデンサとが直列接続されて運転コンデンサとしての容量が小さくなる小風量用接続手段と、前記商用交流電源に接続することで、前記小風量用コンデンサを接続せず前記大風量用コンデンサのみを利用して運転コンデンサとしての容量が大きくなる大風量用接続手段と、を備え、前記商用交流電源が前記大風量用接続手段に接続された場合は、運転コンデンサとしての容量が大きくなることで機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数で同期機として一定運転し、前記商用交流電源が前記小風量用接続手段に接続された場合は、運転コンデンサとしての容量が前記大風量用接続手段に接続した場合に対して小さくなることで機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数の3分の1の回転数で誘導機として一定運転することを特徴とする軸流送風機の構成を有する。これにより、常時換気など小風量が必要な場合は、外風圧などの影響により、ファン負荷が増加しても、商用交流電源の電源周波数に同期した回転数の3分の1の回転数で運転するので、小風量での送風を実現できる。また、急速換気など大風量が必要な場合は、外風圧などの影響により、ファン負荷が増加しても、商用交流電源の電源周波数に同期して回転数一定で運転する。このように、マイクロコンピュータや特別な制御回路を使用することなく、送風量の減少が少なくできるという効果を奏する。 The axial blower according to claim 1 of the present invention is a cage rotor having a rotating shaft, a propeller fan connected to at least one end of the rotating shaft, and a plurality of conductor bars integrated with the outer periphery of the rotating shaft. And an axial flow fan that is located opposite to the cage rotor and includes a stator in which armature windings are concentratedly wound on each tooth of the stator core, and the cage rotor includes: A permanent magnet is disposed at a position sandwiching the conductor bar between the stator and connected to a commercial AC power source, whereby a small air volume capacitor and a large air volume capacitor are connected in series, and the capacity as an operating capacitor is increased. Connection means for small air volume that decreases, and connection for large air volume that increases the capacity as an operating capacitor by using only the large air volume capacitor without connecting the small air volume capacitor by connecting to the commercial AC power supply means , Wherein the when the commercial AC power supply is connected to the large air volume for connection means, ranging from external static pressure zero by volume of the run capacitor increases until external static pressure becomes substantially maximum in the constant operation as the synchronous machine at a rotational speed synchronized with the power source frequency of the commercial AC power source, when said commercial AC power supply is connected to the small air volume connecting means, capacitance connecting the large volume of the run capacitor Rotation of one-third of the number of rotations synchronized with the power frequency of the commercial AC power source in the range from zero external static pressure to almost maximum external static pressure by being smaller than when connected to the means It has a configuration of an axial blower characterized by constant operation as an induction machine . As a result, when a small air volume, such as constant ventilation, is required, even if the fan load increases due to the influence of external wind pressure, etc., it operates at a speed that is one third of the speed synchronized with the power frequency of the commercial AC power supply. Therefore, it is possible to realize air blowing with a small air volume. When a large air volume such as rapid ventilation is required, even if the fan load increases due to the influence of external wind pressure or the like, the engine is operated at a constant speed in synchronization with the power frequency of the commercial AC power supply. In this way, there is an effect that the reduction in the amount of blown air can be reduced without using a microcomputer or a special control circuit.

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。   Hereinafter, embodiments of the present invention will be described with reference to the drawings.

(実施の形態1)
図1〜図5に示すように、軸流送風機8は、電動機11を搭載し、この電動機11の回転軸であるシャフト9にプロペラファン8aを取り付け、商用交流電源接続手段16を介して商用交流電源に接続されている。換気装置1は、軸流送風機8を内蔵している。軸流送風機8によって吸い込まれた、煙草の煙や調理等で発生した汚れた室内空気は換気装置1の吸込み口より吸込まれ、建物の壁14を貫通して屋外に排出される。電動機11は、電機子巻線2である主巻線2aと補助巻線2bとをそれぞれ固定子鉄心4aのティース17に集中巻きした固定子4と、この固定子4に対向して回転自在に保持されたかご形回転子3と、運転コンデンサと、始動コンデンサ12と、PTCサーミスタ13より構成される。かご形回転子3の中心には回転軸であるシャフト9が圧入されており、外周側にはアルミで形成された複数の導体バー5が設けられている。導体バー5は、スキューされるとともに、その本数は偶数である。そして、かご形回転子3の導体バー5とシャフト9の間には永久磁石6が配置されている。永久磁石6は、異方性のサマリウム・鉄・窒素磁粉と異方性のネオジウム・鉄・ホウ素磁粉を混合したボンド磁石で、径方向の断面形状は略コの字状とし、反凹側を固定子4側に向けるとともに、導体バー5同様にスキューされている。サマリウム・鉄・窒素磁粉の粒径は2〜3μmで、ネオジウム・鉄・ホウ素磁粉の粒径は50〜100μmである。また、各永久磁石6の極間7において対向する極間7の中心を結ぶ極間中心線上の位置に導体バー5を配置する形態である。この導体バー5の配置と偶数本数形成により、かご形回転子3が回転することで電機子巻線2に誘起される逆起電圧には3次調波成分が多く含有されることになる。運転コンデンサは大風量用運転コンデンサ10と、小風量用運転コンデンサ15がある。商用交流電源が商用交流電源接続手段16の小風量用接続手段16aと共通接続手段16cに接続された場合は、小風量用運転コンデンサ15と大風量用運転コンデンサ10が直列接続となり、運転コンデンサとしての容量が小さくなる。また、商用交流電源が商用交流電源接続手段16の大風量用接続手段16bと共通接続手段16cに接続された場合は、小風量用運転コンデンサ15は電気的には接続されない。従って、運転コンデンサは大風量用運転コンデンサ10のみとなり、容量は大風量用運転コンデンサ10の容量そのままとなり、始動コンデンサ12は同期運転状態において、PTCサーミスタ13によって切り離される。そして、軸流送風機8は小風量が選択された時には、機外静圧ゼロから最大静圧(風量ゼロ)までの領域で商用交流電源の電源周波数に同期した回転数の3分の1の回転数で一定運転する。一方、大風量が選択された時には、機外静圧ゼロから最大静圧(風量ゼロ)までの領域で商用交流電源の電源周波数に同期した回転数にて一定回転で運転する構成である。
(Embodiment 1)
As shown in FIGS. 1 to 5, the axial blower 8 is equipped with an electric motor 11, a propeller fan 8 a is attached to a shaft 9 that is a rotating shaft of the electric motor 11, and commercial AC is supplied via a commercial AC power supply connection means 16. Connected to power. The ventilator 1 includes an axial flow fan 8. Dirty indoor air generated by cigarette smoke, cooking, or the like sucked by the axial blower 8 is sucked from the suction port of the ventilator 1 and is discharged to the outside through the wall 14 of the building. The electric motor 11 includes a stator 4 in which a main winding 2a and an auxiliary winding 2b, which are armature windings 2, are concentratedly wound around teeth 17 of a stator core 4a, and a stator 4 that is rotatably opposed to the stator 4. The cage-shaped rotor 3 that is held, an operating capacitor, a starting capacitor 12, and a PTC thermistor 13 are included. A shaft 9 that is a rotating shaft is press-fitted into the center of the squirrel-cage rotor 3, and a plurality of conductor bars 5 made of aluminum are provided on the outer peripheral side. The conductor bars 5 are skewed and the number thereof is an even number. A permanent magnet 6 is disposed between the conductor bar 5 and the shaft 9 of the cage rotor 3. The permanent magnet 6 is a bonded magnet in which anisotropic samarium / iron / nitrogen magnetic powder and anisotropic neodymium / iron / boron magnetic powder are mixed. It faces the stator 4 side and is skewed like the conductor bar 5. The particle size of samarium / iron / nitrogen magnetic powder is 2 to 3 μm, and the particle size of neodymium / iron / boron magnetic powder is 50 to 100 μm. Further, the conductor bar 5 is arranged at a position on the center line between the poles 7 connecting the centers of the opposing poles 7 in the gap 7 between the permanent magnets 6. Due to the arrangement of the conductor bars 5 and the formation of an even number, the counter electromotive voltage induced in the armature winding 2 by the rotation of the squirrel-cage rotor 3 contains a lot of third-order harmonic components. The operation capacitors include a large air volume operation capacitor 10 and a small air volume operation capacitor 15. When the commercial AC power source is connected to the small air volume connection unit 16a and the common connection unit 16c of the commercial AC power source connection unit 16, the small air volume operation capacitor 15 and the large air volume operation capacitor 10 are connected in series, and are used as the operation capacitor. The capacity of becomes smaller. When the commercial AC power source is connected to the large air volume connection unit 16b and the common connection unit 16c of the commercial AC power source connection unit 16, the small air volume operation capacitor 15 is not electrically connected. Accordingly, the operating capacitor is only the large air volume operating capacitor 10, the capacity remains the same as that of the large air volume operating capacitor 10, and the starting capacitor 12 is disconnected by the PTC thermistor 13 in the synchronous operation state. When the small air volume is selected, the axial blower 8 rotates at one third of the number of rotations synchronized with the power frequency of the commercial AC power supply in the region from the static pressure outside the machine to the maximum static pressure (zero air volume). Constant operation with a number. On the other hand, when a large air volume is selected, the operation is performed at a constant rotation at a rotation speed synchronized with the power supply frequency of the commercial AC power supply in the region from the static pressure outside the machine to the maximum static pressure (zero air volume).

このような本発明の軸流送風機8によれば、図3の回転数−トルク特性のグラフに示すように、商用交流電源の電源周波数に同期した回転数の3分の1の回転数において、所定のトルク領域にて回転数一定の特性が生じることとなる。商用交流電源が小風量用接続手段16aに接続された場合は、運転コンデンサの容量が小さいので、電動機11の回転数−トルク特性はトルクが低下する。そして、プロペラファン8aの負荷カーブの交点である商用交流電源の電源周波数に同期した回転数の3分の1の回転数で一定運転する。また、商用交流電源が大風量用接続手段16bに接続された場合は、運転コンデンサの容量が大きい。従って、始動時は導体バー5に誘導電流が発生することで滑りに対応した回転トルクが発生して動作した後、永久磁石6の磁力と固定子4の電機子巻線2による電磁石の磁力の吸引力によって回転するモードへ移行する。そして、商用交流電源の電源周波数に同期した回転数にて一定回転で運転する。このように、軸流送風機8を搭載する換気装置1では、DC電源や、マイクロコンピュータを搭載した制御回路を使用することなく、図4の風量−静圧特性のグラフに示すように、常時換気が選択された場合も、急速換気が選択された場合も、所定の回転数での一定運転となる。すなわち、外風圧など機外圧力損失が増加しても、送風量の減少が少なくできる風量−静圧特性が得られる。   According to such an axial flow fan 8 of the present invention, as shown in the graph of the rotational speed-torque characteristic of FIG. 3, at a rotational speed of one third of the rotational speed synchronized with the power supply frequency of the commercial AC power supply, A constant rotation speed characteristic is produced in a predetermined torque region. When the commercial AC power source is connected to the small air volume connection means 16a, the torque of the rotation speed-torque characteristic of the motor 11 is reduced because the capacity of the operating capacitor is small. Then, constant operation is performed at a rotational speed that is one third of the rotational speed synchronized with the power supply frequency of the commercial AC power supply, which is the intersection of the load curves of the propeller fan 8a. Further, when the commercial AC power supply is connected to the large air volume connection means 16b, the capacity of the operating capacitor is large. Accordingly, at the time of start-up, an induced current is generated in the conductor bar 5 to generate a rotational torque corresponding to the slip, so that the magnetic force of the permanent magnet 6 and the magnetic force of the electromagnet by the armature winding 2 of the stator 4 are increased. Transition to a mode that rotates by suction force. And it drive | operates by fixed rotation with the rotation speed synchronized with the power supply frequency of commercial AC power supply. In this way, in the ventilation device 1 equipped with the axial flow fan 8, as shown in the graph of the air flow-static pressure characteristics in FIG. 4 without using a DC power supply or a control circuit equipped with a microcomputer, the ventilation is always performed. Whether or not rapid ventilation is selected, constant operation is performed at a predetermined rotational speed. That is, even if an external pressure loss such as an external wind pressure increases, an air flow-static pressure characteristic that can reduce a decrease in the blowing rate can be obtained.

また、電動機11は、固定子鉄心4aのティース17に集中巻きするとともに、導体バー5の本数を偶数本とし、各永久磁石6の極間7において対向する極間7の中心を結ぶ極間中心線上の位置に導体バー5を配置している。この構成により、かご形回転子3が回転することで電機子巻線2に誘起される逆起電圧には3次調波成分が多く含有されることになる。従って、商用交流電源の電源周波数に同期した回転数の3分の1の回転数において生じる回転数一定となるトルク領域が拡大することとなり、小風量であっても、高静圧化を実現した軸流送風機が得られる。   Further, the electric motor 11 is concentratedly wound around the teeth 17 of the stator core 4a, the number of conductor bars 5 is an even number, and the center of the poles connecting the centers of the poles 7 facing each other at the poles 7 of each permanent magnet 6 is connected. A conductor bar 5 is arranged at a position on the line. With this configuration, the counter-electromotive voltage induced in the armature winding 2 by the rotation of the squirrel-cage rotor 3 contains a lot of third-order harmonic components. Therefore, the torque region where the rotational speed is constant at the rotational speed that is 1/3 of the rotational speed synchronized with the power frequency of the commercial AC power supply is expanded, and high static pressure can be achieved even with a small air volume. An axial flow fan is obtained.

また、導体バー5と永久磁石6はスキューされているので、電源投入時など誘導機としての動作から、同期機としての動作への移行が滑らかとなる。さらに、同期運転時のトルクリプルも小さくなるため、低振動・低騒音化を実現した軸流送風機が得られる。   Further, since the conductor bar 5 and the permanent magnet 6 are skewed, the transition from the operation as an induction machine to the operation as a synchronous machine becomes smooth, such as when the power is turned on. Furthermore, since the torque ripple at the time of synchronous operation is reduced, an axial blower that achieves low vibration and low noise can be obtained.

また、永久磁石6の径方向の断面形状を略コの字状とし、反凹側を固定子4側に向けているので、かご形回転子3が回転することで電機子巻線2に誘起される逆起電圧には3次調波成分がより一層多く含有されることになる。そのため、商用交流電源の電源周波数に同期した回転数の3分の1の回転数において生じる回転数一定となるトルク領域が一段と拡大することとなり、小風量であっても、より一層の高静圧化を実現した軸流送風機が得られる。   Further, since the cross-sectional shape of the permanent magnet 6 in the radial direction is substantially U-shaped and the anti-concave side is directed to the stator 4 side, the cage rotor 3 rotates to induce the armature winding 2. The counter electromotive voltage that is generated contains a greater amount of the third-order harmonic component. For this reason, the torque region where the rotational speed is constant at a rotational speed that is one third of the rotational speed synchronized with the power supply frequency of the commercial AC power supply is further expanded. An axial blower realizing pressure can be obtained.

また、永久磁石6は磁粉粒径の小さい異方性のサマリウム・鉄・窒素磁粉と、磁粉粒径の大きな異方性のネオジウム・鉄・ホウ素磁粉を混合したボンド磁石としている。そして、磁粉の充填率が向上することで、磁束密度が高くなる。さらに、ネオジウム・鉄・ホウ素磁粉がサマリウム・鉄・窒素磁粉の磁化反転を抑制する。そのため、保持力が向上し、電源周波数に同期して回転するトルクが高くなるため、プロペラファン8aは開放時の負荷カーブと閉切り時の負荷カーブの差を大きくとることが可能となる。従って、外風圧など機外圧力損失が増加しても、送風量の減少が極めて少なくできる軸流送風機が得られる。   The permanent magnet 6 is a bonded magnet in which anisotropic samarium / iron / nitrogen magnetic powder having a small magnetic particle diameter and anisotropic neodymium / iron / boron magnetic powder having a large magnetic particle diameter are mixed. And magnetic flux density becomes high because the filling rate of magnetic powder improves. Furthermore, neodymium / iron / boron magnetic powder suppresses magnetization reversal of samarium / iron / nitrogen magnetic powder. Therefore, the holding force is improved, and the torque that rotates in synchronization with the power supply frequency is increased. Therefore, the propeller fan 8a can take a large difference between the load curve when opened and the load curve when closed. Therefore, an axial blower can be obtained in which the decrease in the amount of blown air can be extremely reduced even if the outside pressure loss such as outside wind pressure increases.

なお、本実施の形態1では、始動コンデンサ12とPTCサーミスタ13とを設ける構成としたが、誘導機としての始動から同期運転への移行に影響が無ければ、始動コンデンサ12とPTCサーミスタ13とを設けない構成としても良く、その作用効果に差異は生じない。   In the first embodiment, the starting capacitor 12 and the PTC thermistor 13 are provided. However, if there is no effect on the shift from the starting as the induction machine to the synchronous operation, the starting capacitor 12 and the PTC thermistor 13 are connected. It is good also as a structure which does not provide, and a difference does not arise in the effect.

以上のように、本発明にかかる軸流送風機は、小風量による確実な送風、および、電源周波数に同期した回転数にて一定運転することによって、機外静圧が上昇しても、風量の減少が少ない送風ができることから、ブラシレスDCモータや特別な回路を搭載することなく、安価に適切な風量を確保することが要求される電気機器である換気装置、扇風機、冷蔵庫、エアコンなどの空気調和機、冷却ユニットなどへの搭載が有用である。   As described above, the axial flow fan according to the present invention is capable of performing the constant air flow with a small air volume and the constant operation at the number of rotations synchronized with the power supply frequency, so that the air volume can be reduced even if the external static pressure increases. Air conditioning such as ventilators, fans, refrigerators, air conditioners, etc. that are required to secure an appropriate air flow at low cost without installing a brushless DC motor or special circuit is possible because it can blow air with little decrease. It is useful to mount on a machine or cooling unit.

1 換気装置
2 電機子巻線
3 かご形回転子
4 固定子
5 導体バー
6 永久磁石
7 極間
8 軸流送風機
8a プロペラファン
9 シャフト
10 大風量用運転コンデンサ
11 電動機
12 始動コンデンサ
13 PTCサーミスタ
14 壁
15 小風量用運転コンデンサ
16 商用交流電源接続手段
16a 小風量用接続手段
16b 大風量用接続手段
16c 共通接続手段
17 ティース
DESCRIPTION OF SYMBOLS 1 Ventilator 2 Armature winding 3 Cage-shaped rotor 4 Stator 5 Conductor bar 6 Permanent magnet 7 Between poles 8 Axial fan 8a Propeller fan 9 Shaft 10 Large air volume operation capacitor 11 Electric motor 12 Start capacitor 13 PTC thermistor 14 Wall 15 Operation Capacitor for Small Air Volume 16 Commercial AC Power Supply Connection Means 16a Small Air Volume Connection Means 16b Large Air Volume Connection Means 16c Common Connection Means 17 Teeth

Claims (6)

回転軸と、
この回転軸の少なくとも一端に接続したプロペラファンと、
前記回転軸の外周に一体化され、複数の導体バーを有するかご形回転子と、
このかご形回転子に対向して位置し、電機子巻線を固定子鉄心の各ティースに集中巻きした固定子とを備えた軸流送風機であって、
前記かご形回転子には、前記導体バーを前記固定子との間に挟む位置に永久磁石を配し、
商用交流電源に接続することで、小風量用コンデンサと大風量用コンデンサとが直列接続されて運転コンデンサとしての容量が小さくなる小風量用接続手段と、
前記商用交流電源に接続することで、前記小風量用コンデンサを接続せず前記大風量用コンデンサのみを利用して運転コンデンサとしての容量が大きくなる大風量用接続手段と、を備え、
前記商用交流電源が前記大風量用接続手段に接続された場合は、運転コンデンサとしての容量が大きくなることで機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数で同期機として一定運転し、
前記商用交流電源が前記小風量用接続手段に接続された場合は、運転コンデンサとしての容量が前記大風量用接続手段に接続した場合に対して小さくなることで機外静圧ゼロから機外静圧が略最大になるまでの範囲で前記商用交流電源の電源周波数に同期した回転数の3分の1の回転数で誘導機として一定運転することを特徴とする軸流送風機。
A rotation axis;
A propeller fan connected to at least one end of the rotating shaft;
A squirrel-cage rotor integrated with the outer periphery of the rotating shaft and having a plurality of conductor bars;
An axial flow fan that is located opposite to the squirrel-cage rotor and includes a stator in which armature windings are concentratedly wound on each tooth of the stator core,
In the cage rotor, a permanent magnet is disposed at a position where the conductor bar is sandwiched between the stator and the stator,
By connecting to a commercial AC power source , a small air volume capacitor and a large air volume capacitor are connected in series to reduce the capacity as an operating capacitor, and a small air volume connection means,
By connecting to the commercial AC power supply, the large air volume connecting means that increases the capacity as an operating capacitor using only the large air volume capacitor without connecting the small air volume capacitor, and
When the commercial AC power supply is connected to the connection means for large air volume, the commercial AC is in a range from zero external static pressure to almost maximum external static pressure due to the increase in capacity as an operating capacitor. Constant operation as a synchronous machine at a rotation speed synchronized with the power frequency of the power supply,
When the commercial AC power source is connected to the connection means for small air volume , the capacity as an operating capacitor becomes smaller than that when connected to the connection means for large air volume, so that the static pressure outside the machine is reduced from zero. An axial blower characterized in that a constant operation as an induction machine is performed at a rotational speed that is one third of the rotational speed synchronized with the power supply frequency of the commercial AC power supply until the pressure becomes substantially maximum.
前記導体バーの本数は偶数とするとともに、前記永久磁石の極間中心線上の位置に前記導体バーが配置されていることを特徴とする請求項1記載の軸流送風機。 2. The axial blower according to claim 1, wherein the number of the conductor bars is an even number, and the conductor bars are disposed at a position on a center line between the poles of the permanent magnet. 前記導体バーと前記永久磁石はスキューされていることを特徴とする請求項1または2のいずれかに記載の軸流送風機。 The axial flow blower according to claim 1, wherein the conductor bar and the permanent magnet are skewed. 前記永久磁石は異方性のサマリウム・鉄・窒素磁粉と異方性のネオジウム・鉄・ホウ素磁粉を混合したボンド磁石であることを特徴とする請求項1〜3のいずれかに記載の軸流送
風機。
The axial flow according to any one of claims 1 to 3, wherein the permanent magnet is a bonded magnet in which anisotropic samarium / iron / nitrogen magnetic powder and anisotropic neodymium / iron / boron magnetic powder are mixed. Blower.
請求項1〜4のいずれかに記載の軸流送風機を搭載した電気機器。 An electric device equipped with the axial-flow fan according to claim 1. 請求項5記載の電気機器は換気装置、扇風機、冷蔵庫、空気調和機、冷却ユニットのいずれかであることを特徴とする電気機器。
6. The electric device according to claim 5, wherein the electric device is any one of a ventilator, a fan, a refrigerator, an air conditioner, and a cooling unit.
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