JP2011047624A - Indoor unit of air conditioner - Google Patents

Indoor unit of air conditioner Download PDF

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JP2011047624A
JP2011047624A JP2009198671A JP2009198671A JP2011047624A JP 2011047624 A JP2011047624 A JP 2011047624A JP 2009198671 A JP2009198671 A JP 2009198671A JP 2009198671 A JP2009198671 A JP 2009198671A JP 2011047624 A JP2011047624 A JP 2011047624A
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wind direction
air
plate
vertical wind
direction plate
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JP5409202B2 (en
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Kentaro Matsubara
健太朗 松原
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Toshiba Carrier Corp
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Toshiba Carrier Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an indoor unit of an air conditioner having a wind direction guide device capable of improving wind direction guiding performance by surely and efficiently switching horizontal supply guide in a cooling operation and a downward supply guide in a heating operation, and smoothly circulating the air. <P>SOLUTION: This indoor unit includes a suction opening 5 and a supply opening 6, a ventilation flue 10, a heat exchanger 7, an air blower 8, the wind direction guide device G and a control section R. The wind direction guide device includes first and second vertical wind direction plates 11a, 11b having a length over the horizontal width of the supply opening and a roughly half length in the longitudinal direction, and rotated and driven in the longitudinal direction in parallel with each other, and a plurality of horizontal wind direction plates 11c disposed on one face section of the second vertical wind direction plate. The control section controls the vertical wind direction by rotating and driving the first vertical wind direction plate in the cooling operation, rotating and driving the second vertical wind direction plate in the heating operation, and making the vertical wind direction plate of the other side keep an angle designated in each operation mode in any of cooling and heating operations. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、空気調和機の室内機に係り、吹出し口に設けられ、熱交換空気を室内へ吹出し案内する風向案内装置の改良に関する。   The present invention relates to an indoor unit of an air conditioner, and relates to an improvement in a wind direction guide device that is provided at an outlet and guides heat exchange air to the room.

室内機と室外機とから構成される空気調和機において、室内機の吹出し口には、得られた冷気や暖気等の熱交換空気を室内へ吹出し案内する風向案内装置が備えられる。
一般的には、[特許文献1]に開示されるように、吹出し通風路に左右方向風向板が設置され、この吹出し通風路の先端である吹出し口に上下方向風向板(水平方向風向板)が設置される。特に、近時の傾向であり、上下方向風向板は2枚のものが平行に備えられ、それぞれ別の駆動機構を介して駆動源と連結される。
In an air conditioner composed of an indoor unit and an outdoor unit, a wind direction guide device that blows out and guides heat exchange air such as cold air and warm air obtained into the room is provided at the outlet of the indoor unit.
In general, as disclosed in [Patent Document 1], a left and right direction wind direction plate is installed in a blowout ventilation path, and a vertical direction wind direction plate (horizontal direction wind direction plate) is provided at a blowout opening which is a tip of the blowout ventilation path. Is installed. In particular, this is a recent trend, and two vertical wind direction plates are provided in parallel, and are connected to a driving source via different driving mechanisms.

この種の構造では、吹出し口に上下方向風向板を備えているので、吹出し口から吹出される熱交換空気の上下方向の風向制御幅は比較的広角に行われる。ただし、左右方向風向板は室内機本体内部である吹出し通風路の中途部に備えられているから、熱交換空気の左右方向の風向制御幅は極く狭く、近年の住宅の傾向である大部屋化に対処し難い。   In this type of structure, since the vertical air direction plate is provided at the outlet, the vertical air direction control width of the heat exchange air blown from the outlet is relatively wide. However, since the left and right direction wind direction plates are provided in the middle of the blowout ventilation path inside the indoor unit main body, the width of the air direction control in the left and right direction of the heat exchange air is extremely narrow, and large rooms that have been a trend in housing in recent years It is difficult to deal with

また、スイング動作としては、2枚の上下方向風向板を同時にスイングさせるようになっているので、上下方向風向板に連結する駆動モータの駆動電流が増大して、基板上の電子部品に大きな負荷を掛ける。そのため、スイングを多用すると電子部品の耐久性に問題が生じ易い。   Also, as the swing operation, the two vertical wind direction plates are simultaneously swung, so that the drive current of the drive motor connected to the vertical wind direction plate increases and a large load is applied to the electronic components on the board. Multiply. For this reason, if the swing is frequently used, a problem is likely to occur in the durability of the electronic component.

[特許文献2]には、吹出し口に上下方向風向板を回動可能に設け、この上下方向風向板上に左右方向風向板を回動可能に設け、左右方向風向板を駆動する駆動装置を吹出し口の一側部に設けられた駆動モータと、この駆動モータと左右方向風向板とを連係する連係手段で構成した空気調和機が開示されている。   In [Patent Document 2], a driving device that drives a horizontal wind direction plate by providing a vertical wind direction plate at the outlet so as to be rotatable, a left and right direction wind direction plate rotatably provided on the vertical direction wind direction plate, and the like. An air conditioner is disclosed that includes a drive motor provided on one side of the outlet and linkage means that links the drive motor and the right and left wind direction plates.

特開2008− 45822号公報JP 2008-45822 A 特開2006−300460号公報JP 2006-300460 A

前記[特許文献2]の技術は、左右方向の風向案内と上下方向の風向案内とを同時に行うため、風向変更時のロスが1度ですみ風量損失の低下を防止できる。ただし、ここには冷房運転時における冷気の吹出し案内と、暖房運転時における暖気の吹出し案内についての説明がない。   The technique of [Patent Document 2] performs the wind direction guidance in the left-right direction and the wind direction guidance in the up-down direction at the same time. Here, however, there is no explanation about the guide for blowing out cool air during the cooling operation and the guide for blowing out warm air during the heating operation.

同文献の図1は、冷房運転時の冷気吹出し案内を説明しているものと推測できるが、上下方向風向板が左右方向風向板の上面にあり、しかも下部側に凹状で、上部側に凸状に湾曲成されている。そのため、上下方向風向板に案内される冷気のほとんどは水平方向に向かずに、下方である床面へ向ってしまう。   Although it can be inferred that FIG. 1 of the same document explains the cold air blowing guidance during cooling operation, the vertical wind direction plate is on the upper surface of the left and right direction wind direction plate, and is concave on the lower side and convex on the upper side. It is formed in a curved shape. Therefore, most of the cool air guided by the up-down direction wind direction plate does not go in the horizontal direction but goes to the floor surface below.

この種の室内機は壁掛け形であり、部屋の高所に取付けられるので、冷房運転時には可能な限り冷気を水平方向に案内し、居住者の足元には冷気を送らないことが望ましい。この点、[特許文献2]の技術では冷気が居住者の足元に送られ易く、快適性に欠けたものとなってしまう。   Since this type of indoor unit is wall-mounted and is mounted at a high place in the room, it is desirable to guide the cool air in the horizontal direction as much as possible during cooling operation and not send cool air to the feet of the occupants. In this regard, with the technique of [Patent Document 2], cold air is easily sent to the feet of the occupants and lacks comfort.

本発明は上記事情にもとづきなされたものであり、その目的とするところは、冷房運転時における水平吹出し案内と、暖房運転時における下方吹出し案内との切換えを確実に、かつ効率よく行えて風向案内特性の向上を図れるとともに、円滑な流通を可能とした風向案内装置を備える空気調和機の室内機を提供しようとするものである。   The present invention has been made based on the above circumstances, and the object of the present invention is to reliably and efficiently switch between the horizontal blowing guide during the cooling operation and the lower blowing guide during the heating operation, and the wind direction guidance. An object of the present invention is to provide an indoor unit of an air conditioner including a wind direction guiding device capable of improving characteristics and enabling smooth distribution.

前記目的を満足するため本発明は、吸込み口および吹出し口が開口され、内部に吸込み口と吹出し口とを連通する通風路を備え、この通風路中に熱交換器および送風機が配置され、吹出し口に風向案内装置が設けられ、少なくとも風向案内装置を制御する制御手段を備えた空気調和機の室内機であって、
前記風向案内装置は、吹出し口の左右幅方向全長に亘る長さで左右幅方向とは直交する前後方向の略半分の長さを有し前後方向に並んで平行に設けられ、前後方向に回動駆動される2枚の上下方向風向板と、これら前後2枚の上下方向風向板のうち後側の上下方向風向板の片面部に設けられ一斉に左右方向に回動駆動される複数枚の左右方向風向板とを備え、制御手段は、上下方向の風向制御を、冷房運転時に2枚の上下方向風向板における手前側の上下方向風向板を回動駆動し、暖房運転時に左右方向風向板を備えた後側の上下方向風向板を回動駆動するよう制御し、冷暖房運転時のいずれにおいても他方側の上下方向風向板は各運転モードで指定された角度を保持するよう制御する。
In order to satisfy the above-mentioned object, the present invention has an air inlet and an air outlet, and has an air passage that communicates the air inlet and the air outlet, and a heat exchanger and a blower are disposed in the air passage. An air conditioner indoor unit provided with a wind direction guide device at the mouth and provided with a control means for controlling at least the wind direction guide device,
The wind direction guide device has a length that extends over the entire length of the outlet in the left-right width direction and has approximately half the length in the front-rear direction perpendicular to the left-right width direction. A plurality of vertically driven wind direction plates, and a plurality of front and rear vertical wind direction plates provided on one side of the rear vertical wind direction plate and simultaneously rotated in the left and right direction. The control means controls the vertical wind direction by rotating the vertical wind direction plate on the front side of the two vertical wind direction plates during the cooling operation, and the horizontal wind direction plate during the heating operation. The rear vertical wind direction plate provided with is controlled to rotate, and the other vertical wind direction plate is controlled to maintain the angle specified in each operation mode in any of the cooling and heating operations.

本発明によれば、冷房運転時における水平吹出し案内と、暖房運転時における下方吹出し案内との切換えを確実に、かつ効率よく行えて風向案内特性の向上を図れるとともに、円滑な流通を可能とした風向案内装置を備える。   According to the present invention, it is possible to reliably and efficiently switch between the horizontal blowing guide during the cooling operation and the lower blowing guide during the heating operation to improve the wind direction guiding characteristics and enable smooth circulation. A wind direction guide device is provided.

本発明における一実施の形態に係る、空気調和機の室内機の斜視図。The perspective view of the indoor unit of the air conditioner based on one embodiment in this invention. 同実施の形態に係る、同室内機の縦断面図。The longitudinal cross-sectional view of the indoor unit based on the embodiment. 同実施の形態に係る、左右方向風向板を取付けた第2の(後側の)上下方向風向板の一部斜視図。The partial perspective view of the 2nd (rear side) up-down direction wind direction board which attached the left-right direction wind direction board based on the embodiment. 同実施の形態に係る、停止時と冷房運転時における風向案内装置の姿勢を説明する図。The figure explaining the attitude | position of the wind direction guidance apparatus at the time of a stop and air_conditionaing | cooling operation based on the embodiment. 同実施の形態に係る、冷房運転時における水平吹出しの際の風速分布を示す本実施の形態と従来構造の比較図。The comparison figure of this Embodiment and conventional structure which shows the wind speed distribution at the time of the horizontal blowing at the time of air_conditionaing | cooling operation based on the embodiment. 同実施の形態に係る、暖房運転時における風向案内装置の姿勢を説明する図。The figure explaining the attitude | position of the wind direction guidance apparatus at the time of the heating operation based on the embodiment. 同実施の形態に係る、暖房運転時における下吹出しの際の風速分布を示す本実施の形態と従来構造の比較図。The comparison figure of this Embodiment and conventional structure which shows the wind speed distribution at the time of the lower blowing at the time of heating operation based on the embodiment.

以下、本発明の実施の形態を、図面にもとづいて説明する。
図1は、空気調和機の室内機の外観を示す斜視図、図2は同室内機の縦断面図である。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is a perspective view showing an appearance of an indoor unit of an air conditioner, and FIG. 2 is a longitudinal sectional view of the indoor unit.

室内機本体1は、前面、上面および左右両側面筐体を構成する前面パネル2と、後本体3とから構成される。室内機本体1の正面視は、上下方向寸法に対して左右幅方向寸法が極めて大であり、全体的に横長状に形成される。   The indoor unit main body 1 includes a front panel 2 constituting a front surface, an upper surface, and left and right side housings, and a rear main body 3. The front view of the indoor unit main body 1 has a very large width dimension in the horizontal direction with respect to the vertical dimension, and is formed in a horizontally long shape as a whole.

前面パネル2の上面部に吸込み口5が設けられ、この吸込み口5を備えた上面部と、板体からなる前面部は一体化されるとともに、上面部後端を枢支部とした開閉パネル2Aとなっている。メンテナンス時など、必要に応じて開閉パネル2Aを開放して室内機本体1内部を露出できる。   A suction port 5 is provided in the upper surface portion of the front panel 2, and the upper surface portion provided with the suction port 5 and the front surface portion made of a plate are integrated, and the opening / closing panel 2A having the rear end of the upper surface portion as a pivotal support portion. It has become. The interior of the indoor unit body 1 can be exposed by opening the open / close panel 2A as necessary during maintenance or the like.

下面部には吹出し口6が設けられ、この吹出し口6に後述する風向案内装置Gが備えられる。図1は空調運転停止時の状態を示していて、吹出し口6は風向案内装置Gによって閉塞されている。図2は空調運転のうちの、特に冷房運転が行われている際での風向案内装置Gの状態を示していて、冷気の吹出し方向を設定している。   An air outlet 6 is provided on the lower surface, and a wind direction guide device G described later is provided in the air outlet 6. FIG. 1 shows a state when the air conditioning operation is stopped, and the outlet 6 is closed by the wind direction guide device G. FIG. 2 shows the state of the wind direction guiding device G during the air-conditioning operation, particularly when the air-cooling operation is being performed, and the cool air blowing direction is set.

前記吹出し口6の一側部には、リモコン(リモートコントロール)から発信される信号を受けて表示する表示部Hが設けられる。表示内容としては、たとえば室内温度、運転種類、タイマー設定時間などである。   A display portion H that receives and displays a signal transmitted from a remote control (remote control) is provided at one side of the outlet 6. The display contents include, for example, room temperature, operation type, timer set time, and the like.

一方、前記後本体3には、エアフィルタFを支持するエアフィルタ支持枠Wと、熱交換器7と、室内送風機8および電気部品箱9が備えられる。電気部品箱9は前記表示部Hと対向する位置にあって、内部に制御用電気部品からなる制御部(制御手段)Rを収容し、表示部Hや室内送風機8等、電気部品と電気的に接続され、これらの制御をなす。   On the other hand, the rear body 3 includes an air filter support frame W that supports the air filter F, a heat exchanger 7, an indoor blower 8, and an electrical component box 9. The electrical component box 9 is located at a position facing the display unit H, and accommodates a control unit (control means) R composed of electrical components for control inside, and is electrically connected to the electrical components such as the display unit H and the indoor blower 8. To control these.

前記室内送風機8を作動することで、室内機本体1内には室内空気が吸込まれる吸込み口5と、熱交換空気が吹出される吹出し口6とを連通する通風路10が形成される。この通風路10において、前記エアフィルタ支持枠Wと、熱交換器7と、室内送風機8が順次配置されている。   By operating the indoor blower 8, a ventilation path 10 is formed in the indoor unit main body 1, which connects the suction port 5 through which room air is sucked and the blowout port 6 through which heat exchange air is blown out. In the ventilation path 10, the air filter support frame W, the heat exchanger 7, and the indoor blower 8 are sequentially arranged.

前記熱交換器7は、前側熱交換器部7Aと、後側熱交換器部7Bとが、側面視で略逆V字状に形成されてなる。前側熱交換器部7Aは、エアフィルタFを介して前面パネル2の前面部と吸込み口5を備えた上面部の一部と対向するよう湾曲成される。後側熱交換器部7Bは、直状で斜めに傾斜し、エアフィルタFを介して吸込み口5一部と対向している。   The heat exchanger 7 has a front heat exchanger portion 7A and a rear heat exchanger portion 7B formed in a substantially inverted V shape in a side view. The front heat exchanger portion 7A is curved so as to face a part of the upper surface portion including the front surface portion of the front panel 2 and the suction port 5 through the air filter F. The rear heat exchanger section 7B is straight and inclined obliquely, and faces a part of the suction port 5 through the air filter F.

前記熱交換器7は、図示しない室外機に収容される圧縮機や室外熱交換器などと冷媒管を介して連通されていて、これらで冷凍サイクルが構成される。さらに、熱交換器7の前後側熱交換器部7A,7B相互間に、前記室内送風機8が配置される。   The heat exchanger 7 communicates with a compressor, an outdoor heat exchanger, and the like housed in an outdoor unit (not shown) through a refrigerant pipe, and these constitute a refrigeration cycle. Further, the indoor blower 8 is disposed between the front and rear heat exchanger portions 7A and 7B of the heat exchanger 7.

室内送風機8は、室内機本体1の一側端のスペースに配置されたファンモータと、このファンモータの回転軸に連結される横流ファンとから構成される。横流ファンの軸方向長さは前記熱交換器7の幅方向長さと略同一に設定され、互いに正しく対向するように配置される。   The indoor blower 8 includes a fan motor disposed in a space on one side end of the indoor unit body 1 and a cross-flow fan connected to the rotation shaft of the fan motor. The length of the cross flow fan in the axial direction is set to be approximately the same as the length of the heat exchanger 7 in the width direction, and is arranged so as to face each other correctly.

前側熱交換器部7Aの下端部は前ドレンパン12a上に載り、後側熱交換器部7Bの下端部は後ドレンパン12b上に載る。前、後ドレンパン12a,12bは、それぞれ室内機本体1を構成する後本体3に一体に成形され、各熱交換器部7A,7Bから滴下するドレン水を受け、図示しない排水ホースを介して屋外へ排水するようになっている。   The lower end portion of the front heat exchanger portion 7A is placed on the front drain pan 12a, and the lower end portion of the rear heat exchanger portion 7B is placed on the rear drain pan 12b. The front and rear drain pans 12a and 12b are formed integrally with the rear main body 3 constituting the indoor unit main body 1, respectively, receive drain water dripping from the heat exchanger portions 7A and 7B, and are outdoors via a drain hose (not shown). It is designed to drain into

前後ドレンパン12a,12bの一部側壁外面は室内送風機8に近接して設けられ、これらで室内送風機8の横流ファンに対するノーズを構成している。ノーズとなる前後ドレンパン12a,12bの側壁部分と吹出し口6の各辺部との間は、隔壁部材13によって連結される。
前記室内送風機8を駆動することにより、隔壁部材13で囲まれる空間が、ノーズと吹出し口6とを連通する通風路10における吹出し側となる。これに対して、吸込み口5から熱交換器7に至る間が、通風路10における吸込み側になる。
The outer surfaces of the side walls of the front and rear drain pans 12a and 12b are provided close to the indoor blower 8, and these constitute a nose for the crossflow fan of the indoor blower 8. A partition wall member 13 connects the side wall portions of the front and rear drain pans 12 a and 12 b that become noses and the side portions of the outlet 6.
By driving the indoor blower 8, the space surrounded by the partition wall member 13 becomes the blowout side in the ventilation path 10 that communicates the nose and the blowout port 6. On the other hand, the space from the suction port 5 to the heat exchanger 7 is the suction side in the ventilation path 10.

前記エアフィルタ支持枠Wは、前面パネル2の前面部と対向するとともに、前側熱交換器部7Aと間隙を存して曲成される。さらに、前面パネル2の上面部の吸込み口5と対向し、後側熱交換器部7B上面と間隙を存して曲成される。このエアフィルタ支持枠Wに支持されるエアフィルタFも、エアフィルタ支持枠Wと同様の曲成形状をなす。   The air filter support frame W faces the front portion of the front panel 2 and is bent with a gap from the front heat exchanger portion 7A. Further, it is opposed to the suction port 5 on the upper surface portion of the front panel 2, and is bent with a gap from the upper surface of the rear heat exchanger portion 7B. The air filter F supported by the air filter support frame W also has a curved shape similar to that of the air filter support frame W.

エアフィルタ支持枠Wの下端部に沿って、エアフィルタ清掃装置Sが一体に設けられる。このエアフィルタ清掃装置Sは、エアフィルタ支持枠Wと吹出し口6との間に沿って介設されていて、前面パネル2によって遮蔽され外部から見えない。   An air filter cleaning device S is integrally provided along the lower end portion of the air filter support frame W. The air filter cleaning device S is interposed between the air filter support frame W and the outlet 6 and is shielded by the front panel 2 and cannot be seen from the outside.

エアフィルタ清掃装置Sに作動信号が入ると、図2の位置に収容されるエアフィルタFは下端部からエアフィルタ清掃装置Sを通過し、さらにUターン状に上昇して、熱交換器7側に設けられるガイド路に沿って移動する。このとき、エアフィルタFに付着する塵埃が掻き落とされ、エアフィルタ清掃装置Sのダストボックス内に集溜される。   When the operation signal is input to the air filter cleaning device S, the air filter F accommodated in the position of FIG. 2 passes through the air filter cleaning device S from the lower end portion, and further rises in a U-turn shape. It moves along the guide path provided in the. At this time, dust adhering to the air filter F is scraped off and collected in the dust box of the air filter cleaning device S.

エアフィルタFは一旦、熱交換器7側のガイド路に収容されたあと、再び下端部から移動し、Uターン状に上昇してエアフィルタ清掃装置Sを再び通過して元の位置に戻る。このときも、エアフィルタFに残留する塵埃が掻き落され、完璧なエアフィルタ清掃がなされるようになっている。   The air filter F is once accommodated in the guide path on the heat exchanger 7 side, then moves again from the lower end, rises in a U-turn shape, passes through the air filter cleaning device S again, and returns to the original position. Also at this time, dust remaining on the air filter F is scraped off, and perfect air filter cleaning is performed.

つぎに、前記風向案内装置Gについて詳述する。
風向案内装置Gは、吹出し口6に前後に並んで嵌め込まれる2枚の上下方向風向板11a,11bと、一方(後側)の上下方向風向板11bに直接設けられ、図2の紙面の方向に沿い所定間隔を存して並置される複数枚の左右方向風向板11cとを備えている。
Next, the wind direction guiding device G will be described in detail.
The wind direction guide device G is provided directly on the two vertical wind direction plates 11a and 11b fitted in the blow-out port 6 side by side in the front-rear direction, and one (rear) vertical wind direction plate 11b. And a plurality of left and right direction wind direction plates 11c juxtaposed at predetermined intervals.

図1の手前側(図2の左側)の上下方向風向板11aを「第1の上下方向風向板」と呼び、図1の後側(図2の右側)の上下方向風向板11bを「第2の上下方向風向板」と呼ぶ。したがって、左右方向風向板11cは、第2の上下方向風向板11bに設けられることになる。   The up-down direction wind direction plate 11a on the front side (left side in FIG. 2) of FIG. 1 is referred to as “first up-down direction wind direction plate”, and the up-down direction wind direction plate 11b on the rear side (right side in FIG. 2) of FIG. 2 vertical wind direction plates ”. Therefore, the left-right direction wind direction plate 11c is provided on the second up-down direction wind direction plate 11b.

第1の上下方向風向板11aおよび第2の上下方向風向板11bは、断面が緩く湾曲した長尺状の板体である。それぞれの左右幅方向寸法が吹出し口6の左右幅方向寸法と略同一であり、左右幅方向と直交する方向である前後方向の寸法は、吹出し口6の同方向寸法の略半分の長さである。   The first up-down direction wind direction plate 11a and the second up-down direction wind direction plate 11b are long plate bodies whose sections are gently curved. The left and right width direction dimensions are substantially the same as the left and right width direction dimensions of the outlet 6, and the front-rear direction dimension that is perpendicular to the left and right width direction is approximately half the length of the outlet port 6 in the same direction. is there.

第1の上下方向風向板11aと第2の上下方向風向板11bが互いに平行に並んだ状態で吹出し口6に取付けられ、かつそれぞれが駆動機構を介して駆動モータ(いずれも図示しない)と連結されている。したがって、これらの回動姿勢によっては図1に示すように吹出し口6を閉塞し、あるいは図2に示すように開放する。   The first up-down direction wind direction plate 11a and the second up-down direction wind direction plate 11b are attached to the outlet 6 in a state of being arranged in parallel with each other, and each is connected to a drive motor (none of which is shown) via a drive mechanism. Has been. Therefore, depending on these rotational postures, the outlet 6 is closed as shown in FIG. 1 or opened as shown in FIG.

図3は、第2の上下方向風向板11bに対する左右方向風向板11cの取付け構造の一部を示す斜視図である。
第2の上下方向風向板11bにおける左右幅方向の両側端に、支持用リブ15が設けられる。図に示す一方側の支持用リブ15にのみ角孔が設けられていて、同形状の角部を備えた駆動軸16Aが嵌め込まれている。図示しない他方の支持用リブは、隔壁部材13の側面壁から突出する支持軸に回転自在に支持される。
FIG. 3 is a perspective view showing a part of a mounting structure of the left and right direction wind direction plate 11c with respect to the second up and down direction wind direction plate 11b.
Support ribs 15 are provided at both ends in the left-right width direction of the second up-down direction wind direction plate 11b. A square hole is provided only in the support rib 15 on one side shown in the figure, and a drive shaft 16A having a corner portion of the same shape is fitted. The other support rib (not shown) is rotatably supported by a support shaft protruding from the side wall of the partition wall member 13.

前記駆動軸16Aの側端部には、図示しない駆動機構と駆動モータが連結される。駆動モータが駆動されれば、駆動機構を介して駆動軸16Aが回動駆動され、駆動軸16Aと一体の支持用リブ15が同時に変位して、第2の上下方向風向板11bの回動付勢がなされる。   A drive mechanism and a drive motor (not shown) are connected to the side end of the drive shaft 16A. When the drive motor is driven, the drive shaft 16A is rotationally driven through the drive mechanism, and the support ribs 15 integral with the drive shaft 16A are simultaneously displaced, so that the second vertical wind direction plate 11b is rotated. Vigor is made.

この構成は、第1の上下方向風向板11aの駆動構成と同一である。したがって、第1の上下方向風向板11aおよび第2の上下方向風向板11bは、制御部Rによって別個に駆動制御されるようになっている。   This configuration is the same as the drive configuration of the first vertical wind direction plate 11a. Therefore, the first up-down direction wind direction plate 11a and the second up-down direction wind direction plate 11b are separately driven and controlled by the control unit R.

前記駆動軸16Aの軸芯位置に、この軸方向に沿って、周方向には掛合し、軸方向にはスライド自在に駆動棒16Bが挿入される。なお説明すると、駆動棒16Bは、駆動軸16Aに対して図に示す角軸部分の軸方向長さの範囲内で、軸方向に沿ってスライド自在である。   A drive rod 16B is inserted into the axial center position of the drive shaft 16A along the axial direction in the circumferential direction and slidable in the axial direction. In other words, the drive rod 16B is slidable along the axial direction within the range of the axial length of the angular shaft portion shown in the drawing with respect to the drive shaft 16A.

駆動棒16Bの図示しない(左側)端部は、駆動軸16Aの先端から突出していて、ここにラック部が設けられ、駆動モータの回転軸に嵌着されるピニオンギヤが噛合する。駆動モータがピニオンギヤを駆動するとラック部が軸方向に移動し、駆動棒16Bはラック部と一体にスライド付勢される。このとき、駆動軸16Aの位置は変らない。   An unillustrated (left side) end portion of the drive rod 16B protrudes from the tip end of the drive shaft 16A. A rack portion is provided here, and a pinion gear fitted to the rotation shaft of the drive motor meshes. When the drive motor drives the pinion gear, the rack portion moves in the axial direction, and the drive rod 16B is slid and biased integrally with the rack portion. At this time, the position of the drive shaft 16A does not change.

第2の上下方向風向板11bには支持板17が取付けられ、この支持板17に連結杆18が、支持板17の長手方向に沿って移動自在に支持される。前記駆動棒16Bの支持用リブ15から突出する端部は連結固定具20に連結され、この連結固定具20は支持板17と第2の上下方向風向板11bとの間隙部分で、連結杆18の一側部と連結される。   A support plate 17 is attached to the second vertical wind direction plate 11 b, and a connecting rod 18 is supported by the support plate 17 so as to be movable along the longitudinal direction of the support plate 17. The end protruding from the support rib 15 of the drive rod 16B is connected to a connection fixture 20, which is a gap between the support plate 17 and the second vertical wind direction plate 11b, and a connection rod 18 is connected. Connected to one side.

前記連結固定具20は、駆動棒16Bが軸方向に沿ってスライド付勢するときは追従して連結杆18をスライド付勢させるが、駆動棒16Bが回転したときは空回りさせる工夫が施されていて、駆動棒16Bの回転力を連結杆18へは伝達しない。   The connecting fixture 20 is devised to follow and slide the connecting rod 18 when the driving rod 16B slides along the axial direction, but to idle when the driving rod 16B rotates. Thus, the rotational force of the drive rod 16B is not transmitted to the connecting rod 18.

前記支持板17の前後方向一側部には、長手方向に所定間隔を存して複数の支持孔部が設けられ、ここに左右方向風向板11cの下端部に設けられる突部21が回動自在に嵌め込まれる。各左右方向風向板11cの下端部には、前記突部21とは別に、前記連結杆18と回動自在に掛合する突起22が設けられている。   A plurality of support holes are provided on one side of the support plate 17 in the longitudinal direction with a predetermined interval in the longitudinal direction, and a protrusion 21 provided at the lower end of the left and right wind direction plate 11c rotates there. Fits freely. In addition to the protrusion 21, a protrusion 22 is provided at the lower end of each of the left and right direction wind direction plates 11 c so as to be freely engaged with the connecting rod 18.

駆動棒16Bと連結固定具20を介して連結杆18が支持板17の長手方向に沿って往復移動すれば、複数枚の左右方向風向板11cは、それぞれの突部21を中心として一斉に左右方向に回動付勢されることになる。
以上の構成であるので、第2の上下方向風向板11bの上下方向の回動動作は左右方向風向板11cを載設したまま行われ、かつ第2の上下方向風向板11bの回動/回動停止に係らず、左右方向風向板11cの回動と回動停止を行うことができる。
If the connecting rod 18 reciprocates along the longitudinal direction of the support plate 17 via the drive rod 16B and the connecting fixture 20, the plurality of left and right wind direction plates 11c are moved to the left and right at the same time around the respective protrusions 21. It will be urged to rotate in the direction.
With the above configuration, the vertical movement of the second vertical wind direction plate 11b is performed while the left and right wind direction plate 11c is mounted, and the second vertical wind direction plate 11b is rotated / turned. Regardless of the movement stop, the left and right direction wind direction plate 11c can be rotated and stopped.

長尺板状の第1の上下方向風向板11aおよび第2の上下方向風向板11bに対する駆動源(駆動モータ)と、長尺板状の第2の上下方向風向板11bに載設される複数枚の左右方向風向板11cの駆動源(駆動モータ)を、それぞれの一側部に備えて駆動するようにしており、したがって駆動源の配置スペースの低減化を得る。   A drive source (drive motor) for the long plate-shaped first vertical wind direction plate 11a and the second vertical wind direction plate 11b, and a plurality of plates mounted on the long plate-shaped second vertical wind direction plate 11b. A driving source (driving motor) for each of the left and right wind direction plates 11c is provided on one side of each, so that the space for arranging the driving sources can be reduced.

つぎに、このようにして構成される空気調和機の室内機における作用について説明する。
使用者がリモコン(遠隔操作盤)の運転ボタンを押圧操作すると、制御部Rは室内送風機8を駆動するとともに、室内機と冷媒管を介して連通する室外機において圧縮機を駆動させ、冷凍サイクル運転が開始される。
Next, the operation of the indoor unit of the air conditioner configured as described above will be described.
When the user presses the operation button of the remote control (remote control panel), the control unit R drives the indoor blower 8 and also drives the compressor in the outdoor unit communicating with the indoor unit through the refrigerant pipe, thereby refrigeration cycle. Operation starts.

同時に、制御部Rは風向案内装置Gに制御信号を送って、吹出し口6を開口させる。風向案内装置Gは、後述するように冷房運転もしくは暖房運転の選択にともなって吹出し口6の開放姿勢を変える。   At the same time, the control unit R sends a control signal to the wind direction guide device G to open the outlet 6. As will be described later, the wind direction guiding device G changes the opening posture of the outlet 6 in accordance with the selection of the cooling operation or the heating operation.

室内空気が吸込み口5から吸込まれ、エアフィルタFを通過する。ここで室内空気に含まれていた塵埃が捕捉され、清浄化して熱交換器7に導かれる。室内空気は冷凍サイクル作用をなす熱交換器7を構成する前側熱交換器部7Aと後側熱交換器部7Bとを流通して、熱交換をなす。   Indoor air is sucked from the suction port 5 and passes through the air filter F. Here, dust contained in the room air is captured, cleaned, and guided to the heat exchanger 7. The room air flows through the front heat exchanger section 7A and the rear heat exchanger section 7B that constitute the heat exchanger 7 that performs the refrigeration cycle action, and performs heat exchange.

冷房運転時であれば室内空気は熱交換器7と熱交換して冷気となり、暖房運転時であれば暖気となって室内送風機8に吸込まれて、通風路10の吹出し側へ導かれる。そして、風向案内装置Gを構成する第1の上下方向風向板11aおよび第2の上下方向風向板11bと、左右方向風向板11cとに案内されて、吹出し口6から室内へ吹出される。   During the cooling operation, the room air exchanges heat with the heat exchanger 7 to become cold air, and during the heating operation, it becomes warm air and is sucked into the indoor blower 8 and guided to the outlet side of the ventilation path 10. And it guides to the 1st up-down direction wind direction board 11a and the 2nd up-down direction wind direction board 11b which comprise the wind direction guide apparatus G, and the left-right direction wind direction board 11c, and it blows off indoors from the blower outlet 6. FIG.

図4(A)は空調運転停止時の風向案内装置Gの状態図であり、図4(B)は冷房運転時で水平吹出しをなす風向案内装置Gの状態図であり、図4(C)は冷房運転時で斜め吹出しをなす風向案内装置Gの状態図である。   FIG. 4A is a state diagram of the wind direction guide device G when the air-conditioning operation is stopped, and FIG. 4B is a state diagram of the wind direction guide device G that performs horizontal blowing during the cooling operation, and FIG. These are the state diagrams of the wind direction guide apparatus G which makes an oblique blowing at the time of air_conditionaing | cooling operation.

図4(A)の空調運転停止時は、第1の上下方向風向板11aと第2の上下方向風向板11bの板面相互が略直状に並び、先に図1で示したように吹出し口6を閉塞する。このとき左右方向風向板11cは第2の上下方向風向板11bの上面にあり、室内から室内機本体1を見上げても第2の上下方向風向板11bに遮蔽されて見えない。   When the air conditioning operation in FIG. 4A is stopped, the plate surfaces of the first vertical air direction plate 11a and the second vertical air direction plate 11b are arranged substantially in a straight line, and are blown out as shown in FIG. The mouth 6 is closed. At this time, the left / right wind direction plate 11c is on the upper surface of the second up / down direction wind direction plate 11b, and even if the indoor unit body 1 is looked up from the room, it is shielded by the second up / down direction wind direction plate 11b.

冷房運転開始の信号を受けると制御部Rは、基本的に図4(B)の状態になるよう風向案内装置Gを制御する。第1の上下方向風向板11aは略水平姿勢を保持し、第2の上下方向風向板11bは冷気の流通を妨げない程度に第1の上下方向風向板11aと間隔を保持し、かつ略水平状態を保持する。   When receiving the cooling operation start signal, the controller R basically controls the wind direction guiding device G so as to be in the state of FIG. The first vertical wind direction plate 11a maintains a substantially horizontal posture, and the second vertical wind direction plate 11b maintains a distance from the first vertical wind direction plate 11a so as not to disturb the flow of cold air, and is substantially horizontal. Keep state.

吹出し口6から吹出されるほとんどの冷気は略水平方向へ導かれ、室内にいる居住人に直接当たることはない。したがって、室内の居住人は冷気に直接的に晒されることが無く、快適冷房作用が行われる。   Most of the cold air blown out from the outlet 6 is guided in a substantially horizontal direction and does not directly hit the resident in the room. Therefore, the resident in the room is not directly exposed to the cold air, and a comfortable cooling action is performed.

リモコンからスイング信号を受信したとき制御部Rは、第2の上下方向風向板11bに対して冷房運転モードで指定された角度の姿勢、すなわち図4(B)の姿勢を固定し、第1の上下方向風向板11aを図4(B)の姿勢から図4(C)の姿勢に変え、また図4(C)から図4(B)の姿勢に変える。   When the swing signal is received from the remote controller, the control unit R fixes the posture of the angle specified in the cooling operation mode with respect to the second vertical wind direction plate 11b, that is, the posture of FIG. The vertical wind direction plate 11a is changed from the posture of FIG. 4 (B) to the posture of FIG. 4 (C), and from the posture of FIG. 4 (C) to FIG. 4 (B).

冷気は吹出し口から水平吹出しと斜め吹出しおよびこれらの間の姿勢を繰り返し、いわゆるスイング吹出しが行われる。したがって、可能な限り居住人に冷気が当たるのを避け、快適冷房を保持しつつ冷気が室内に何遍無く吹出されることとなる。   Cold air repeats a horizontal blow, an oblique blow, and a posture between these from the blow outlet, and so-called swing blow is performed. Therefore, it is avoided that the occupant is exposed to cold air as much as possible, and the cold air is uniformly blown into the room while maintaining comfortable cooling.

第1の上下方向風向板11aを回動させるので、従来構造のように両方の上下方向風向板を連動して回動させることと比較して、駆動モータの負荷を半分にでき、制御用電気部品の温度上昇を低減させ耐久性の向上を得られる。   Since the first vertical wind direction plate 11a is rotated, the load of the drive motor can be halved as compared with the case where both the vertical direction wind plates are rotated in conjunction with the conventional structure. It is possible to reduce the temperature rise of parts and improve durability.

左右方向風向板11cは、水平吹出しとスイング吹出しのいずれにおいても、冷気を左右方向に案内することができる。すなわち、図3で説明した駆動棒16Bを進退移動させることで連結杆18が同方向に移動し、第2の上下方向風向板11bに取付けられる複数枚の左右方向風向板11cが一斉に左右方向に向いて冷気を案内する。   The horizontal wind direction plate 11c can guide the cold air in the horizontal direction in both the horizontal blowout and the swing blowout. That is, the connecting rod 18 is moved in the same direction by moving the drive rod 16B described in FIG. 3 forward and backward, and a plurality of left and right wind direction plates 11c attached to the second vertical wind direction plate 11b are simultaneously moved in the left and right direction. Guide the cool air towards you.

図5(A)は本実施の形態での冷房水平吹出しを行った際の吹出し口から1m前方部分の風速分布を示す図であり、図5(B)は従来構造での冷房水平吹出しを行った際の吹出し口から1m前方部分の風速分布を示す図である。   FIG. 5 (A) is a diagram showing the wind speed distribution 1 m ahead from the outlet when the horizontal cooling is performed in the present embodiment, and FIG. 5 (B) is the horizontal cooling in the conventional structure. It is a figure which shows the wind speed distribution of a 1-m front part from the blowing outlet at the time of hitting.

なお、図5(A)、図5(B)において、Y軸に示す「角度」とは、第1の上下方向風向板11aおよび第2の上下方向風向板11bのそれぞれ支持軸を結ぶ線の中間点位置を原点とし、室内機を室内壁面に取付けた位置から、吹出し口6前方の水平方向を0°とし、それより下方を(+)角度、上方を(−)角度としたものである。   In FIGS. 5A and 5B, the “angle” shown on the Y-axis is a line connecting the support shafts of the first vertical wind direction plate 11a and the second vertical wind direction plate 11b. The intermediate point position is the origin, the horizontal direction in front of the air outlet 6 is 0 ° from the position where the indoor unit is attached to the wall surface of the room, the lower side is the (+) angle, and the upper side is the (−) angle. .

先に図4(B)で説明したように、第1の上下方向風向板11aは水平姿勢をとり、第2の上下方向風向板11bは冷房運転モードで指定された角度を保持する。左右方向風向板11cは第2の上下方向風向板11bの上面側に位置する。
計測結果として、室内機の吹出し口6の原点位置から水平角度0°の位置が、最も風速が大であることが確認され、それより上方および下方部分に行くにつれて風速が低下している。したがって、完全な水平吹出しとなる。
As described above with reference to FIG. 4B, the first vertical wind direction plate 11a takes a horizontal posture, and the second vertical direction wind direction plate 11b maintains the angle specified in the cooling operation mode. The left-right direction wind direction plate 11c is located on the upper surface side of the second up-down direction wind direction plate 11b.
As a measurement result, it was confirmed that the wind speed was the highest at a position where the horizontal angle was 0 ° from the origin position of the outlet 6 of the indoor unit, and the wind speed decreased toward the upper and lower portions. Therefore, it becomes a complete horizontal blowout.

これに対して従来構造である、吹出し口に2枚の上下方向風向板を備え、この後側の通風路に左右方向風向板を備えたものでは、室内機の吹出し口の原点位置から水平角度+5°の位置が、最も風速分布が大であることが確認された。すなわち、風向が若干下方に向けて吹出され、完全な水平吹出しとなっていない。   On the other hand, in the conventional structure, which has two vertical air direction plates at the air outlet and a left and right air direction plate at the rear air passage, the horizontal angle from the origin position of the air outlet of the indoor unit It was confirmed that the wind speed distribution was the largest at the position of + 5 °. That is, the wind direction is blown out slightly downward and is not completely horizontal.

以上の風量分布の実験結果から明らかなように、本発明の水平吹出しは、従来構造に比べて水平方向への吹出風量を増加できるため、前方への冷風の到達距離が拡大され、室内の温度分布を改善できる。   As is apparent from the above experimental results of the air volume distribution, the horizontal air blowing of the present invention can increase the air blowing air volume in the horizontal direction compared to the conventional structure, so that the reach distance of the cold air to the front is expanded and the indoor temperature is increased. Distribution can be improved.

暖房運転時は、以下に述べるように作用する。
図6(A)は暖房運転時で下吹出しをなす風向案内装置Gの状態図であり、図6(B)は暖房運転時で斜め吹出しをなす風向案内装置Gの状態図である。
During heating operation, it works as described below.
FIG. 6A is a state diagram of the wind direction guiding device G that makes a lower blowing during heating operation, and FIG. 6B is a state diagram of the wind direction guiding device G that makes an oblique blowing during heating operation.

暖房運転開始の信号を受けると制御部Rは、基本的に図6(A)の状態になるよう風向案内装置Gを制御する。具体的には、第1の上下方向風向板11aを暖房運転モードで指定された角度である斜め下向きの姿勢を保持する。第2の上下方向風向板11bは、略垂直姿勢に向けられる。
吹出し口6から吹出される暖気は、ほとんど垂直方向へ導かれ、室内にいる居住人の足元に向って吹出される。いわゆる頭寒足熱状態が得られて、快適暖房作用が行われる。
When receiving the heating operation start signal, the controller R basically controls the wind direction guiding device G so as to be in the state of FIG. Specifically, the first vertical wind direction plate 11a is held in an obliquely downward posture that is an angle specified in the heating operation mode. The second up-down direction wind direction plate 11b is oriented in a substantially vertical posture.
The warm air blown out from the blowout port 6 is guided almost vertically and blown out toward the feet of the resident in the room. A so-called head cold foot heat state is obtained, and a comfortable heating action is performed.

リモコンからスイング信号を受信したとき制御部Rは、第1の上下方向風向板11aの姿勢を固定し、第2の上下方向風向板11bを図6(A)の姿勢から図6(B)の姿勢である第1の上下方向風向板11aと略平行な状態に変える。このとき、第2の上下方向風向板11bは冷房運転時とはほとんど反転状態になる。   When the swing signal is received from the remote controller, the controller R fixes the posture of the first vertical wind direction plate 11a and moves the second vertical wind direction plate 11b from the posture of FIG. 6 (A) to FIG. 6 (B). The posture is changed to a state substantially parallel to the first vertical wind direction plate 11a. At this time, the second up-down direction wind direction plate 11b is almost reversed from that during the cooling operation.

さらに、第2の上下方向風向板11bを、図6(B)から図6(A)の姿勢に変える。暖気は吹出し口から下吹出しと斜め吹出しおよびこれらの間の姿勢を繰り返し、いわゆるスイング吹出しが行われる。
このようにスイング時は、第2の上下方向風向板11bを回動し、第1の上下方向風向板11aは運転モードで指定された角度を維持する。したがって、可能な限り頭寒足熱式の快適暖房を保持しつつ、暖気が吹出されることとなる。
Further, the second vertical wind direction plate 11b is changed from the posture of FIG. 6 (B) to the posture of FIG. 6 (A). Warm air repeats a lower blow, an oblique blow, and a posture between these from the blow outlet, and so-called swing blow is performed.
Thus, at the time of a swing, the 2nd up-down direction wind direction board 11b is rotated, and the 1st up-down direction wind direction board 11a maintains the angle designated by the operation mode. Therefore, warm air is blown out while maintaining the comfort heating of the head cold foot type as much as possible.

第1の上下方向風向板11aを回動させるので、従来構造のように両方の上下方向風向板を連動して回動させることと比較して、駆動モータの負荷を半分にでき、制御用電気部品の温度上昇を低減させ耐久性の向上を得られる。
左右方向風向板11cは、水平吹出しとスイング吹出しのいずれにおいても、左右方向に一斉に向けて暖気を左右方向に案内できることは、冷房運転時と何ら変りが無い。
Since the first vertical wind direction plate 11a is rotated, the load of the drive motor can be halved as compared with the case where both the vertical direction wind plates are rotated in conjunction with the conventional structure. It is possible to reduce the temperature rise of parts and improve durability.
The horizontal direction wind direction plate 11c can guide the warm air in the left-right direction all at once in both the horizontal blow and the swing blow-out, which is the same as in the cooling operation.

図7(A)は本実施の形態での暖房下吹出しを行った際の吹出し口6から1m前方部分の風速分布を示す図であり、図7(B)は従来構造での暖房下吹出しを行った際の吹出し口から1m前方部分の風速分布を示す図である。   FIG. 7 (A) is a diagram showing the wind speed distribution 1 m ahead from the outlet 6 when performing the heating-down blowing in the present embodiment, and FIG. 7 (B) shows the heating-down blowing in the conventional structure. It is a figure which shows the wind speed distribution of 1 m ahead part from the blower outlet at the time of performing.

なお、図7(A)、図7(B)において、Y軸に示す「角度」とは、第1の上下方向風向板11aおよび第2の上下方向風向板11bのそれぞれ支持軸を結ぶ線の中間点位置を原点とし、室内機を室内壁面に取付けた位置から、吹出し口6前方の水平方向を0°とし、それより下方を(+)角度としたものであり、90°は、吹出し口6の下方垂直方向位置となる。
先に図6(A)で説明したように、第1の上下方向風向板11aは暖房運転モードで指定された角度を保持し、第2の上下方向風向板11bは略垂直方向に向けられる。この状態で左右方向風向板11cは第2の上下方向風向板11bとともに略垂直方向に向けられる。
In FIG. 7A and FIG. 7B, the “angle” shown on the Y-axis is a line connecting the support axes of the first vertical wind direction plate 11a and the second vertical wind direction plate 11b. From the position where the midpoint position is the origin, the horizontal direction in front of the air outlet 6 from the position where the indoor unit is attached to the indoor wall surface is 0 °, and the downward direction is the (+) angle, and 90 ° is the air outlet. 6 is the lower vertical position.
As described above with reference to FIG. 6A, the first vertical wind direction plate 11a maintains the angle specified in the heating operation mode, and the second vertical wind direction plate 11b is oriented in a substantially vertical direction. In this state, the left / right wind direction plate 11c is directed in a substantially vertical direction together with the second up / down direction wind direction plate 11b.

計測結果として、室内機の吹出し口6の原点位置から水平角度80°の位置が、最も風速が大であることが確認され、それより前方および後方部分に行くにつれて風速が低下している。したがって、垂直に近い下吹出しとなる。
これに対して従来構造である、吹出し口に2枚の上下方向風向板を備え、この後側の通風路に左右方向風向板を備えたものでは、室内機の吹出し口の原点位置から水平角度65°の位置が、最も風速分布が大であることが確認された。
As a result of the measurement, it was confirmed that the wind speed was the highest at a position at a horizontal angle of 80 ° from the origin position of the outlet 6 of the indoor unit, and the wind speed decreased toward the front and rear portions. Accordingly, the bottom blowout is almost vertical.
On the other hand, in the conventional structure, which has two vertical air direction plates at the air outlet and a left and right air direction plate at the rear air passage, the horizontal angle from the origin position of the air outlet of the indoor unit It was confirmed that the wind speed distribution was the largest at the position of 65 °.

以上の風量分布の実験結果から明らかなように、本発明の下吹出しは、従来構造に比べ、より垂直方向への吹出風量を増加できるため、室内床面側への温風の分布が拡大され、室内の温度分布を改善できる。
特に第2の上下方向風向板11bは、冷房運転時と暖房運転時に反転する機能を有するので、吹出し口6から吹出される熱交換空気の風向を上下方向に効果的に追従させることが可能である。
As is clear from the above experimental results of the air volume distribution, the lower air blowing of the present invention can increase the air blowing volume in the vertical direction more than the conventional structure, so that the distribution of the hot air on the indoor floor surface side is expanded. The temperature distribution in the room can be improved.
In particular, since the second up-and-down air direction plate 11b has a function of reversing during the cooling operation and the heating operation, it is possible to effectively follow the air direction of the heat exchange air blown from the outlet 6 in the vertical direction. is there.

また、第1の上下方向風向板11aと、第2の上下方向風向板11bおよび左右方向風向板11cは、それぞれが単独でスイング動作が可能であるとともに、第1、第2の上下方向風向板11a,11bのいずれかと、左右方向風向板11cとの組合せによるスイング動作が可能である。
したがって、複数のスイングパターンを有することとなり、さらなる快適性の向上を得られるとともに、使用勝手の向上を図れる。
The first vertical wind direction plate 11a, the second vertical direction wind direction plate 11b, and the left and right direction wind direction plate 11c can swing independently, and the first and second vertical direction wind direction plates. Swing operation by combination of either 11a, 11b and the left-right direction wind direction board 11c is possible.
Accordingly, a plurality of swing patterns are provided, so that further improvement in comfort can be obtained and user-friendliness can be improved.

なお、本発明は上述した実施の形態そのままに限定されるものではなく、実施段階ではその要旨を逸脱しない範囲で構成要素を変形して具体化できる。そして、上述した実施の形態に開示されている複数の構成要素の適宜な組合せにより種々の発明を形成できる。   Note that the present invention is not limited to the above-described embodiment as it is, and can be embodied by modifying the constituent elements without departing from the scope of the invention in the implementation stage. Various inventions can be formed by appropriately combining a plurality of constituent elements disclosed in the above-described embodiments.

5…吸込み口、6…吹出し口、10…通風路、7…熱交換器、8…送風機、G…風向案内装置、11a…第1の上下方向風向板、11b…第2の上下方向風向板、11c…左右方向風向板、R…制御部(制御手段)。   DESCRIPTION OF SYMBOLS 5 ... Suction inlet, 6 ... Outlet, 10 ... Ventilation path, 7 ... Heat exchanger, 8 ... Blower, G ... Wind direction guide apparatus, 11a ... 1st up-down direction wind direction plate, 11b ... 2nd up-down direction wind direction plate , 11c ... right and left direction wind direction plate, R ... control unit (control means).

Claims (3)

吸込み口および吹出し口が開口され、内部に前記吸込み口と吹出し口とを連通する通風路を備え、この通風路中に熱交換器および送風機が配置され、前記吹出し口に風向案内装置が設けられ、少なくとも風向案内装置を制御する制御手段を備えた空気調和機の室内機であって、
前記風向案内装置は、
吹出し口の左右幅方向全長に亘る長さで、かつ左右幅方向とは直交する前後方向の略半分の長さを有して、同前後方向に並んで平行に設けられ、前後方向に回動駆動される2枚の上下方向風向板と、
これら前後2枚の上下方向風向板のうち、後側の上下方向風向板の片面部に設けられ、一斉に左右方向に回動駆動される複数枚の左右方向風向板とを備え、
前記制御手段は、上下方向の風向制御を、
冷房運転時に、2枚の上下方向風向板における手前側の上下方向風向板を回動駆動し、暖房運転時に、左右方向風向板を備えた後側の上下方向風向板を回動駆動するよう制御し、冷暖房運転時のいずれにおいても他方側の上下方向風向板は各運転モードで指定された角度を保持するよう制御する
ことを特徴とする空気調和機の室内機。
A suction port and a blow-off port are opened, and an air passage that communicates the suction port and the blow-out port is provided therein. A heat exchanger and a blower are disposed in the air flow passage, and a wind direction guide device is provided in the blow-out port. , An indoor unit of an air conditioner provided with a control means for controlling at least the wind direction guide device,
The wind direction guiding device is
The length of the outlet is the entire length in the left-right width direction, and approximately half the length in the front-rear direction perpendicular to the left-right width direction. Two up and down wind direction plates to be driven;
Of these two front and rear vertical wind direction plates, provided on one side of the rear vertical wind direction plate, and provided with a plurality of left and right wind direction plates that are simultaneously rotated in the left and right direction,
The control means performs up and down direction control.
Controls that the front vertical wind direction plate of the two vertical wind direction plates is rotated during cooling operation, and the rear vertical wind direction plate with the left and right direction wind plates is rotated during heating operation. The indoor unit of the air conditioner is characterized in that the airflow direction plate on the other side is controlled so as to maintain the angle specified in each operation mode in any of the cooling and heating operations.
さらに前記制御手段は、
冷房運転時には、左右方向風向板が上部に位置するよう後側の上下方向風向板の姿勢を制御し、暖房運転時には左右方向風向板が下部に位置するよう後側の上下方向風向板の姿勢を制御する
ことを特徴とする請求項1記載の空気調和機の室内機。
Further, the control means includes
During cooling operation, the posture of the rear vertical wind direction plate is controlled so that the left and right wind direction plate is located at the upper part, and during heating operation, the posture of the rear vertical wind direction plate is set so that the left and right direction wind direction plate is located at the lower part. The indoor unit of an air conditioner according to claim 1, wherein the indoor unit is controlled.
さらに前記制御手段は、
2枚の上下方向風向板および複数枚の左右方向風向板を、それぞれが単独で、もしくはいずれか一方の上下方向風向板と左右方向風向板との組合せによるスイング動作が可能に制御する
ことを特徴とする請求項1および請求項2のいずれかに記載の空気調和機の室内機。
Further, the control means includes
Two vertical wind direction plates and a plurality of left and right wind direction plates are controlled so as to be capable of swinging independently or in combination with either one of the vertical wind direction plates and the left and right direction wind direction plates. The indoor unit of the air conditioner according to any one of claims 1 and 2.
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