JP3611584B2 - Bay window air conditioner fixing structure - Google Patents

Bay window air conditioner fixing structure Download PDF

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Publication number
JP3611584B2
JP3611584B2 JP08899393A JP8899393A JP3611584B2 JP 3611584 B2 JP3611584 B2 JP 3611584B2 JP 08899393 A JP08899393 A JP 08899393A JP 8899393 A JP8899393 A JP 8899393A JP 3611584 B2 JP3611584 B2 JP 3611584B2
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Prior art keywords
air conditioner
unit
outdoor
bay window
indoor
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JPH06299760A (en
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重人 渡辺
銀一 信楽
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Misawa Homes Co Ltd
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Misawa Homes Co Ltd
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Description

【0001】
【産業上の利用分野】
この発明は出窓エアコン固定構造、更に詳しくは、室内機と室外機とを一体化したエアコンユニットを、出窓サッシの下方に設けたエアコン収納空間に収納する場合の出窓エアコン固定構造に関する。
【0002】
【従来の技術】
室内の温度調節を行わせる空気調和機(エアコン)は、室内機と室外機とを備えて形成されているが、近年では、室内空間の有効利用やエアコンの運転音の軽減などのため、室内機を隠す工夫がなされてきた。
一方、建物の室内空間への採光と室内外のアクセントとを兼ねて、従来より出窓サッシが用いられてきた。
【0003】
そこで、エアコン本体を出窓サッシの下方空間または上方空間に設けるという技術、例えば図6にその概略を示す実開昭57−125921号が提供されるようになった。
この実開昭57−125921号に示される技術は、図6を参照させながら説明すると、建物の構造体から室外側へ突出した出窓サッシ収納空間1には、出窓サッシ2が取り付けられている。この出窓サッシ2の室内側の上部には、エアコンの室内機3を固定し、出窓サッシ2の下方空間にエアコンの室外機4を収納して固定している。
【0004】
この技術によれば、エアコン本体の設置場所や管理並びにエアコンによる騒音問題を解消できる、という効果がある。
その後、出窓サッシ2の下方空間または上方空間にエアコン本体を収納する技術は、普通名詞のように「出窓エアコン」とまで言われるようになり、数多く提供されるようになった。
【0005】
【発明が解決しようとする課題】
ところで、近年では、室内機と室外機とを一体化したエアコン本体も提供されるようになった。
しかし、そのようなエアコン本体を出窓エアコンとして用いることについては、以下のような問題点があった。即ち、室内機と室外機とを一体化したエアコン本体はかなりの重量があり、出窓サッシの下方空間または上方空間に設けたエアコン収納空間へ納める作業が大変であった。
【0006】
本発明が解決すべき課題は、室内機と室外機とを一体化したエアコン本体を、出窓サッシの下方空間に設けたエアコン収納空間へ納める作業を簡易化することができる出窓エアコン固定構造を提供することにある。
【0007】
【課題を解決するための手段】
本発明は、上記した目的を達成するためのものである。
請求項1記載の出窓エアコン固定構造は、出窓サッシ(40)の下方に設けたエアコン収納空間に、室内機と室外機とを一体化したエアコンユニット(50)を収納固定するための出窓エアコン固定構造であって、エアコン収納空間の下部には、エアコンユニット支持板 (31) と、このエアコンユニット支持板 (31) 上に並設されエアコンユニット (50) の室内側下部、中央付近の下部、室外側下部をそれぞれ支持する室内側支持部材 (36) 、中間支持部材 (35) 及び室外側支持部材 (34) からなるエアコン支持部を設け、このエアコン支持部を構成する中間支持部材 (35) 、室内側支持部材 (36) 及びエアコンユニット支持板 (31) によって前記エアコンユニット (50) から出るドレン水を室外に排水処理するための室内水排水空間 (38A) を形成し、前記エアコン支持部を構成する中間支持部材 (35) 、室外側支持部材 (34) 及びエアコンユニット支持板 (31) によって室外からエアコンユニット (50) 内へ吹き込む雨水を室外に排水処理するための雨水排水空間 (39A) を形成するとともに、前記エアコン支持部を構成する室外側支持部材 (34) に、エアコンユニット(50)の室外側を係止するストッパー(34A) を設け、前記エアコンユニット(50)の室内側の底面とエアコン支持部を構成する室内側支持部材 (36)とが接触する部分の方が、エアコンユニット(50)の室外側の底面とエアコン支持部を構成する室外側支持部材 (34)とが接触する部分よりも高位となるように形成したことを特徴とする。
【0008】
請求項2記載の出窓エアコン固定構造は、請求項1記載の出窓エアコン固定構造を技術的に限定したものである。即ち、エアコン支持部(36)には、エアコンユニット(50)の底面と接触するローラー(37)が設けられていることを特徴とする。
【0009】
【作用】
請求項1記載の出窓エアコン固定構造によれば、以下のような作用を奏する。
即ち、エアコンユニット(50)をエアコン収納空間に固定するには、まず、エアコンユニット(50)の室外側の底面を、エアコン支持部(31,34,35,36) における室内側の接触部分である室内側支持部材(36)に接触させ、エアコンユニット(50)を室外側に向かって押し込む。すると、エアコンユニット(50)の室内側の底面とエアコン支持部とが接触する部分である室内側支持部材(36)の方が、エアコンユニット(50)の室外側の底面とエアコン支持部とが接触する部分である室外側支持部材(34)よりも高位であるので、エアコンユニット(50)は、室外側に向かって滑らかに移動し、エアコン支持部の室外側支持部材(34)に設けたストッパー(34A) により室外側の端部を係止された状態で、エアコン収納空間に収納される。
【0010】
請求項2記載の出窓エアコン固定構造によれば、上記の作用の他、以下のような作用を奏する。
即ち、ローラー(37)が、エアコンユニット(50)の底面とエアコン支持部(31,34,35,36) との接触による抵抗を軽減するので、エアコンユニット(50)は、室外側に向かってより滑らかに移動し、エアコン収納空間に収納される。
【0011】
【実施例】
以下、本発明を実施例及び図面に従って、更に詳しく説明する。ここで使用する図面は、図1乃至図5である。図1は、出窓サッシを室内側から見た正面図である。図2は、本実施例の垂直断面図である。図3は、エアコンユニットを示す正面図である。図4は、エアコンユニットを示す側面図である。図5は、エアコンユニットを示す底面図である。
【0012】
まず、本実施例の構成について、図2を用いて説明する。
出窓が設けられる建造物の構造材10は、芯材を不燃性パネルで覆って形成された壁パネル11、その壁パネル11の室内側を覆う内壁材12、及び壁パネル11の室外側を覆う外壁材13とを有して形成されている。その構造材10に開口部を設け、その開口部の上側に出窓サッシ取付構造を、開口部の下側にエアコンユニット取付構造をそれぞれ設けている。そして、出窓サッシ取付構造の室外側に出窓サッシ40を、エアコンユニット取付構造の内側には室内機と室外機とを一体化したエアコンユニット50を、それぞれ設けている。
【0013】
出窓サッシ取付構造は、構造材10の開口部の直下から室外側へ突出して固定されるとともに出窓サッシ40の上部を支持する出窓屋根材21と、出窓サッシ40の下部を支持するとともに出窓サッシ取付構造とエアコンユニット取付構造との境界となる出窓下材24とを有して形成されている。出窓屋根材21は、木製の板からなる屋根芯材21Aと、その屋根芯材21Aの室外側の表面及び出窓サッシ40との衝接面とを覆う防水性のある防水薄板21Bとからなる。
屋根芯材21Aは、本実施例では木製の板であるとしたが、成型によって製造するよりも簡易に製造、加工できる材質であれば、木製に限られない。また、防水薄板21Bは、本実施例では塩ビ鋼板を用いたが、防水性や耐久性があれば、例えばアルミ板でもよい。
【0014】
壁パネル11と出窓屋根材21とが交差する角部の室外側には、アングル材26を押し当て、防水薄板21Bの室内方向の端部がアングル材26の壁パネル11室外側の表面までを覆い、埋め込み固定部材27によって防水薄板21Bとアングル材26とを屋根芯材21Aに固定している。そのようなアングル材26及び埋め込み固定部材27付近を含めた壁パネル11室外側は、外壁材13で覆われ、その外壁材13と防水薄板21Bとの間は充填材14で充填される。屋根芯材21Aの室内側の表面は、内壁材22で覆われているが、その内壁材22の室外側の端部と出窓サッシ40との間には、内壁材22の下面と面一となるような取り付け補助材23が設けられている。
【0015】
出窓下材24もまた、木製の板からなる出窓下芯材24Aと、その出窓下芯材24Aの室外側の表面及び出窓サッシ40との衝接面とを覆う塩ビ鋼板製の防水薄板24Bとからなる。このような出窓下材24の上部には、化粧板25が固定される。出窓下材24もまた、屋根芯材21Aと同様、木製に限られない。また、防水薄板24Bも防水薄板21Bと同様、防水性や耐久性があれば、例えばアルミ板でもよい。
【0016】
上記のように形成された出窓サッシ取付構造には、出窓サッシ40が取り付けられるが、出窓サッシ40についての詳しい説明は省略する。なお、出窓屋根材21に相当する部分が設けられているような出窓サッシもあるが、そのような出窓サッシを取り付ける場合の出窓サッシ取付構造には、出窓屋根材21は不要となる。
【0017】
続いて、図2及び図3を用いて、エアコンユニット50について説明する。
エアコンユニット50は、その室内側に室内機ユニット51を、室外側に室外機ユニット55を設けている。また、エアコンユニット50の側部には、水切り板54を設けている。また、エアコンユニット50の底板下表面50Aは、室内側から室外側へ下方傾斜させている。
【0018】
室内機ユニット51の室内側には、その上部に室内吹出口51Bを、その室内吹出口51Bの下方に室内吸い込み口51Aを備え、それらの室内側に室内ルーバー52を設けている。また、室内機ユニット51の下部の室外機ユニット55側には、エアコンユニット50内で発生するドレン水をエアコンユニット50の外へ排出するためのドレン穴53を備えている。
【0019】
室外機ユニット55の室外側には、その上部に室外吸い込み口55Aを、その室外吸い込み口55Aの下方に室外吹出口55Bを備え、それらの室外側に室外ルーバー56を設けている。また、室外機ユニット55の下部には、室外ルーバー56を越えてエアコンユニット50内へ吹き込む雨水をエアコンユニット50の外へ排出するための雨水排水穴57を備えている。
【0020】
続いて、エアコンユニット取付構造について説明する。
エアコンユニット取付構造は、出窓サッシ取付構造の出窓下材24の下方空間たるエアコン収納空間に設けられるものであり、そのエアコン収納空間の下部には、エアコン支持部が設けられている。そのエアコン支持部は、エアコンユニット取付構造の下面部分を形成するエアコンユニット支持板31、そのエアコンユニット支持板31の上部室外側に設けられてエアコンユニット50の室外側下部を支持する室外側支持部材34、エアコンユニット支持板31の上部室内側に設けられてエアコンユニット50の室内側下部を支持する室内側支持部材36、及び室外側支持部材34と室内側支持部材36との間に設けられてエアコンユニット50の中央付近下部を支持する中間支持部材35を備えて形成されている。
エアコンユニット支持板31、室内側支持部材36、室外側支持部材34、及び中間支持部材35もまた、成型によって製造するよりも簡易に製造、加工できる材質である木製の板材で形成されている。
【0021】
エアコン支持部においては、室内側支持部材36の上面のほうが、室外側支持部材34よりも高位となるように形成している。また、室内側支持部材36には、エアコンユニット50の底板下表面50Aに接触して回転するローラー37を備えている。このローラー37により、エアコンユニット50を載置固定し易くなっている。
【0022】
エアコンユニット支持板31の上方における室外側支持部材34と中間支持部材35との間には室外排水構造39を、エアコンユニット支持板31の上方における中間支持部材35と室内側支持部材36との間には室内排水構造38をそれぞれ独立して設けている。従って、室外側支持部材34、室内側支持部材36及び中間支持部材35の外表面と、エアコンユニット支持板31における室外排水構造39及び室内排水構造38の上面とが、エアコンユニット50の下方空間の表面となる。
【0023】
そのエアコンユニット50の下方空間の表面と、エアコンユニット支持板31の下面及び室外側面とは、一枚の塩ビ鋼板製の防水薄板31Bにて覆われている。その防水薄板31Bの端部の処理は、出窓屋根材21の場合と同様である。即ち、壁パネル11とエアコンユニット支持板31とが交差する角部には、アングル材32を押し当て、防水薄板31Bの室内側の端部がアングル材32の壁パネル11室外側の表面を覆い、埋め込み固定部材33によって防水薄板31Bとアングル材32とを支持板芯材31Aに固定している。そのようなアングル材32及び埋め込み固定部材33付近を含め、壁パネル11の室外側は、外壁材13で覆われ、その外壁材13と防水薄板31Bとの間は充填材14で充填される。
【0024】
室内排水構造38は、エアコンユニット50から出るドレン水を処理するためのものであり、中間支持部材35、室内側支持部材36、及びエアコンユニット支持板31の表面を覆う防水薄板31Bによって囲まれた室内水排水空間38Aと、その室内水排水空間38Aの下部に連結されてドレン水を排出するドレン水排水パイプ38Bとからなる。
【0025】
室外排水構造39は、室外ルーバー56からエアコンユニット50へ吹き込む雨水を処理するためのものであり、中間支持部材35、室外側支持部材34及びエアコンユニット支持板31の表面を覆う防水薄板31Bによって囲まれた雨水排水空間39Aと、その雨水排水空間39Aの下部に連結されてドレン水を排出する雨水排水パイプ39Bとからなる。
【0026】
続いて、上記実施例の作用について説明する。
まず、建物の壁パネル11に開口部を形成し、その開口部に出窓サッシ固定用開口部を形成する。その出窓サッシ固定用開口部は、屋根芯材21A及び出窓下芯材24Aを加工し、それら芯材21A,24Aの室外側の表面及び出窓サッシ40との衝接面を防水薄板21B,24Bにて覆うことによって形成する。
【0027】
また、壁パネル11と出窓屋根材21とが交差する角部の室外側には、アングル材26を押し当てる。そして、屋根芯材21Aの室外側の表面を覆った防水薄板21Bの室内方向の端部は、アングル材26の室外側の表面を覆わせ、埋め込み固定部材27によって防水薄板21Bとアングル材26とを屋根芯材21Aに固定することによって、出窓サッシ取付構造を完成させる。
【0028】
このようにして形成された出窓サッシ取付構造の出窓屋根材21及び出窓下材24に対し、出窓サッシ40を取り付ける。芯材21A,24Aの室外側の表面は、防水薄板21B,24Bにて覆われており、アングル材26によって角部も固定されているので、雨や雪に対しての防水性は担保されている。
出窓サッシ40との衝接面もまた防水薄板21B,24Bにて覆われているので、出窓サッシ40と出窓屋根材21または出窓下材24との隙間の防水性は担保されている。
【0029】
アングル材26及び埋め込み固定部材27付近を含めた壁パネル11室外側は、外壁材13で覆い、その外壁材13と防水薄板21Bとの間は充填材14で充填しているので、外壁材13と防水薄板21Bとの間の防水性が担保されている。従って、壁パネル11の防水性も担保されている。
続いて、エアコンユニット50の固定構造の作用を説明する。
【0030】
エアコンユニット50をエアコン収納空間に固定するには、まず、エアコンユニット50の底板下表面50Aの室外側を、緩衝材36Aを介在させて、室内側支持部材36に接触させ、エアコンユニット50を室外側に向かって押し込む。すると、室内側支持部材36にローラー36が、エアコンユニット50の底板下表面50Aとの接触による抵抗を軽減するので、エアコンユニット50は、室外側に向かってより滑らかに移動する。そして、緩衝材35Aを介在させた中間支持部材35を過ぎて、室外側支持部材34に設けてあるストッパー34Aへ、緩衝材34Bを介在させて接触する。
【0031】
エアコン支持部においては、室内側支持部材36の上面のほうが、室外側支持部材34よりも高位となるように形成しているので、エアコンユニット50は、室外側に向かって滑らかに移動し、その室外側の端部がストッパー34Aに係止された状態で、エアコン収納空間に収納され、その後固定される。
続いて、出窓エアコン40の排水構造の作用について説明する。
【0032】
エアコンユニット50が運転している際に発生するドレン水は、ドレン穴53から室内水排水空間38Aに導かれて排出される。
一方、室外ルーバー56を越えてエアコンユニット50に雨水が吹き込んだ場合には、その雨水は、雨水排水穴57から雨水排水空間39Aに導かれ、雨水排水パイプ39Bから排出される。風を伴った雨水であっても、雨水排水空間39Aは、室内水排水空間38Aとは別に独立して設けられているので、室内水排水空間38Aを通じて室内に吹き込むことはない。
【0033】
また、エアコン支持部は、出窓サッシ40やエアコンユニット50の形状に合わせた形状としなければならないが、その作製は、まず、エアコン支持部に必要な形状を、加工容易な材質で形成された芯材31A,34,35,36にて作製する。従って、成型による加工よりも安価で容易に作製できる。そして、作製された芯材31A,34,35,36を防水薄板31Bで覆えば、エアコン支持部が作製できる。
【0034】
次に、上記実施例の効果について説明する。
まず、エアコンユニット50へ吹き込む雨水をエアコンユニット50の外部へ排出するための雨水排水空間39Aを、ドレン水をエアコンユニットから外部へ排出するための室内水排水空間38Aとは別に独立させて設けたので、風を伴って吹き込む雨水であっても、室内に吹き込むことがない。
このように形成したため、室内機ユニット51と室外機ユニット55とを一体化したエアコンユニットであっても、出窓エアコンとして採用できるという効果がある。
【0035】
また、出窓サッシ40やエアコンユニット50の形状に合わせた形状にて作製しなければならないエアコン支持部を、加工が容易な木板で形成された芯材31A,34,35,36にて作製すればよく、必要な防水性も防水薄板31Bにて簡易に担保できる。従って、成型による作製よりも作製の手間が小さく、コストも小さいという効果がある。
【0036】
また、エアコンユニット50の底板下表面50Aを室内側から室外側へと傾斜させるとともに、室内側支持部材36の上面のほうが、室外側支持部材34よりも高位となるように形成し、更にローラー37を設けたので、エアコンユニットの取付時のエアコンユニット50の移動を滑らかにした。このため、エアコンユニットはかなりの重量があるが、作業者が極めて簡易に取付作業を行えるという効果がある。
【0037】
また、出窓サッシの取付構造にあっては、加工が容易な屋根芯材21A及び出窓下芯材24Aを加工し、それら芯材21A,24Aの室外側の表面及び出窓サッシ40との衝接面を防水薄板21B,24Bにて覆うことによって形成できるので、成型による作製よりも作製の手間が小さく、コストも小さいという効果がある。そして、その必要な防水性は、アングル材26,32、埋め込み固定部材27,33、外壁材13、及び充填材14で担保されており、雨や雪に対しても心配なく使用できる。
【0038】
以下、上記実施例のバリエーションについて説明する。
上記実施例では、エアコンユニット50の底板下表面50Aを、室内側から室外側へと向かって下方傾斜させて形成したが、室内側支持部材36の上面のほうが、室外側支持部材34よりも高位となるように形成してあれば、エアコンユニット50の底板下表面50Aを傾斜させて形成する必要はない。
【0039】
一方、エアコンユニット50の底板下表面50Aから突出した外周面を有するローラーを設けたとしても、エアコンユニット50を、出窓サッシ40の下方空間に設けたエアコン収納空間へ納める作業を簡易化することができる。
【0040】
【発明の効果】
請求項1及び請求項2記載の出窓エアコン固定構造によれば、室内機と室外機とを一体化したエアコン本体を、出窓サッシの下方空間に設けたエアコン収納空間へ納める作業を簡易化することができた、という効果がある。
【図面の簡単な説明】
【図1】出窓サッシを室内側から見た正面図である。
【図2】実施例の垂直断面図である。
【図3】エアコンユニットを示す正面図である。
【図4】エアコンユニットを示す側面図である。
【図5】エアコンユニットを示す底面図である。
【図6】実開昭57−125921号に示される出窓エアコンを示す概略図である。
【符号の説明】
1…出窓サッシ収納空間、2…出窓サッシ、3…エアコンの室内機、4…エアコンの室外機、10…構造材、11…壁パネル、12…内壁材、13…外壁材、14…充填材、21…出窓屋根材、21A…屋根芯材、21B…防水薄板、22…内壁材、23…取り付け補助材、24…出窓下材、24A…出窓下芯材、24B…防水薄板、25…化粧板、26…アングル材、27…埋め込み固定部材、31…エアコンユニット支持板、31A…支持板芯材、31B…防水薄板、32…アングル材、33…埋め込み固定部材、34…室外側支持部材、34A…ストッパー、34B…緩衝材、35…中間支持部材、35A…緩衝材、36…室内側支持部材、36A…緩衝材、37…ローラー、38…室内排水構造、38A…室内水排水空間、38B…ドレン水排水パイプ、39…室外排水構造、39A…雨水排水空間、39B…雨水排水パイプ、40…出窓サッシ、50…エアコンユニット、50A…底板下表面、51…室内機ユニット、51A…室内吸い込み口、51B…室内吹出口、52…室内ルーバー、53…ドレン穴、54…水切り板、55…室外機ユニット、55A…室外吸い込み口、55B…室外吹出口、56…室外ルーバー、57…雨水排水穴。
[0001]
[Industrial application fields]
The present invention relates to a bay window air conditioner fixing structure, and more particularly to a bay window air conditioner fixing structure when an air conditioner unit in which an indoor unit and an outdoor unit are integrated is housed in an air conditioner housing space provided below a sash window sash .
[0002]
[Prior art]
An air conditioner (air conditioner) that adjusts indoor temperature is formed by including an indoor unit and an outdoor unit. However, in recent years, in order to effectively use the indoor space and reduce the operation noise of the air conditioner, The idea to hide the machine has been made.
On the other hand, bay window sashes have been used for both daylighting indoor space and building indoor and outdoor accents.
[0003]
Therefore, a technique for providing the air conditioner main body in the lower space or the upper space of the bay window sash, for example, Japanese Utility Model Laid-Open No. 57-125921 schematically shown in FIG.
The technique disclosed in Japanese Utility Model Laid-Open No. 57-125921 will be described with reference to FIG. 6. A bay window sash 2 is attached to the bay window sash storage space 1 protruding from the building structure to the outdoor side. The indoor unit 3 of the air conditioner is fixed to the upper part on the indoor side of the bay window sash 2, and the outdoor unit 4 of the air conditioner is housed and fixed in the lower space of the bay window sash 2.
[0004]
According to this technology, there is an effect that the noise problem caused by the air conditioner installation location and management and the air conditioner can be solved.
After that, the technology for housing the air conditioner main body in the lower space or the upper space of the bay window sash 2 has come to be referred to as “bay window air conditioner” as a common noun, and many techniques have been provided.
[0005]
[Problems to be solved by the invention]
Incidentally, in recent years, an air conditioner body in which an indoor unit and an outdoor unit are integrated has also been provided.
However, using such an air conditioner body as a bay window air conditioner has the following problems. That is, the air conditioner main body in which the indoor unit and the outdoor unit are integrated has a considerable weight, and it is difficult to store the air conditioner in the air conditioner storage space provided in the lower space or the upper space of the bay window sash.
[0006]
The problem to be solved by the present invention is to provide a bay window air conditioner fixing structure capable of simplifying the work of storing an air conditioner body in which an indoor unit and an outdoor unit are integrated into an air conditioner storage space provided in a lower space of the bay window sash. There is to do.
[0007]
[Means for Solving the Problems]
The present invention is for achieving the above-described object.
The bay window air conditioner fixing structure according to claim 1 is a bay window air conditioner fixing for storing and fixing an air conditioner unit (50) in which an indoor unit and an outdoor unit are integrated in an air conditioner storage space provided below the sash (40). In the lower part of the air conditioner storage space , the air conditioner unit support plate (31) , the air conditioner unit support plate (31) arranged in parallel on the indoor side lower part of the air conditioner unit (50) , the lower part near the center, An air-conditioner support part comprising an indoor-side support member (36) , an intermediate support member (35) and an outdoor-side support member (34) for supporting the outdoor lower part is provided, and the intermediate support member (35) constituting the air-conditioner support part An indoor water drain space (38A) for draining drain water discharged from the air conditioner unit (50) to the outside by the indoor side support member (36) and the air conditioner unit support plate (31) , and the air conditioner support section Intermediate support constituting The member (35) , the outdoor support member (34) and the air conditioner unit support plate (31) form a rainwater drainage space (39A) for draining rainwater blown into the air conditioner unit (50) from the outside into the outdoor space. the the outdoor side support member constituting the air conditioner support portion (34), a stopper (34A) for engaging the exterior side is provided of air conditioning units (50), an inner side of a bottom surface and air support of the air conditioning units (50) The portion in contact with the indoor side support member (36) constituting the part is in contact with the outdoor side bottom surface of the air conditioning unit (50) and the outdoor side support member (34) constituting the air conditioner support part. Is formed so as to be higher.
[0008]
The bay window air conditioner fixing structure according to claim 2 is technically limited to the bay window air conditioner fixing structure according to claim 1. That is, the air conditioner support section (36) is provided with a roller (37) that comes into contact with the bottom surface of the air conditioner unit (50).
[0009]
[Action]
According to the bay window air conditioner fixing structure of the first aspect, the following effects are exhibited.
That is, in order to fix the air conditioner unit (50) in the air conditioner storage space, first, the outdoor bottom surface of the air conditioner unit (50) is contacted with the indoor side contact portion of the air conditioner support section (31, 34, 35, 36). The air conditioner unit (50) is pushed toward the outdoor side by bringing it into contact with a certain indoor support member (36). Then, the indoor side support member (36), which is the portion where the indoor side bottom surface of the air conditioner unit (50) and the air conditioner support portion are in contact, has the bottom surface on the outdoor side of the air conditioner unit (50) and the air conditioner support portion. Since it is higher than the outdoor support member (34) that is in contact, the air conditioner unit (50) moves smoothly toward the outdoor side and is provided on the outdoor support member (34) of the air conditioner support section. The outdoor side end is locked by the stopper (34A) and stored in the air conditioner storage space.
[0010]
According to the bay window air conditioner fixing structure of the second aspect, in addition to the above-described operation, the following operation is provided.
That is, since the roller (37) reduces the resistance caused by the contact between the bottom surface of the air conditioner unit (50) and the air conditioner support (31, 34, 35, 36), the air conditioner unit (50) moves toward the outdoor side. It moves more smoothly and is stored in the air conditioner storage space.
[0011]
【Example】
Hereinafter, the present invention will be described in more detail with reference to examples and drawings. The drawings used here are FIGS. 1 to 5. FIG. 1 is a front view of a bay window sash viewed from the indoor side. FIG. 2 is a vertical sectional view of the present embodiment. FIG. 3 is a front view showing the air conditioner unit. FIG. 4 is a side view showing the air conditioner unit. FIG. 5 is a bottom view showing the air conditioner unit.
[0012]
First, the configuration of the present embodiment will be described with reference to FIG.
A building structural material 10 provided with a bay window covers a wall panel 11 formed by covering a core material with a non-combustible panel, an inner wall material 12 covering the indoor side of the wall panel 11, and an outdoor side of the wall panel 11. The outer wall material 13 is formed. An opening is provided in the structural member 10, a bay window sash mounting structure is provided above the opening, and an air conditioner unit mounting structure is provided below the opening. A bay window sash 40 is provided outside the bay window sash mounting structure, and an air conditioner unit 50 in which the indoor unit and the outdoor unit are integrated is provided inside the air conditioner unit mounting structure .
[0013]
The bay window sash mounting structure protrudes and is fixed to the outdoor side from directly below the opening of the structural member 10 and supports the bay window sash 40 and the lower part of the bay window sash 40 and the bay window sash mounting. It has a bay window lower member 24 serving as a boundary between the structure and the air conditioner unit mounting structure . The bay window roof material 21 includes a roof core material 21A made of a wooden plate and a waterproof waterproof thin plate 21B that covers the outdoor surface of the roof core material 21A and the contact surface with the bay window sash 40.
Although the roof core material 21A is a wooden board in the present embodiment, the roof core material 21A is not limited to wood as long as the material can be easily manufactured and processed rather than being manufactured by molding. Moreover, although the polyvinyl chloride steel plate was used for the waterproof thin plate 21B in this embodiment, an aluminum plate may be used as long as it has waterproofness and durability.
[0014]
The angle member 26 is pressed against the outside of the corner where the wall panel 11 and the bay window roof material 21 intersect, and the end of the waterproof thin plate 21B in the room direction extends to the surface outside the wall panel 11 of the angle member 26. The waterproof thin plate 21B and the angle member 26 are fixed to the roof core member 21A by the covering and embedding fixing member 27. The outdoor side of the wall panel 11 including the vicinity of the angle member 26 and the embedded fixing member 27 is covered with the outer wall member 13, and the space between the outer wall member 13 and the waterproof thin plate 21 </ b> B is filled with the filler 14. The indoor side surface of the roof core material 21A is covered with the inner wall material 22, and the bottom surface of the inner wall material 22 is flush with the lower surface of the inner wall material 22 and the bay window sash 40. A mounting auxiliary material 23 is provided.
[0015]
The bay window lower member 24 also includes a bay window lower core member 24A made of a wooden plate, and a waterproof thin plate 24B made of a PVC steel plate that covers the outdoor surface of the bay window lower core member 24A and the contact surface with the bay window sash 40. Consists of. A decorative board 25 is fixed to the upper part of the bay window lower member 24. The bay window lower member 24 is not limited to wood, like the roof core member 21A. Further, the waterproof thin plate 24B may be, for example, an aluminum plate, as long as it is waterproof and durable, like the waterproof thin plate 21B.
[0016]
Although the bay window sash 40 is attached to the bay window sash mounting structure formed as described above, a detailed description of the bay window sash 40 is omitted. In addition, there is a bay window sash in which a portion corresponding to the bay window roof material 21 is provided, but the bay window roof material 21 is not necessary for the bay window sash mounting structure in the case of mounting such a bay window sash.
[0017]
Next, the air conditioner unit 50 will be described with reference to FIGS. 2 and 3.
The air conditioner unit 50 is provided with an indoor unit 51 on the indoor side and an outdoor unit 55 on the outdoor side. A draining plate 54 is provided on the side of the air conditioner unit 50. The bottom plate lower surface 50A of the air conditioner unit 50 is inclined downward from the indoor side to the outdoor side.
[0018]
On the indoor side of the indoor unit 51, an indoor outlet 51B is provided at the top, an indoor suction port 51A is provided below the indoor outlet 51B, and an indoor louver 52 is provided on the indoor side. Further, a drain hole 53 for discharging drain water generated in the air conditioner unit 50 to the outside of the air conditioner unit 50 is provided on the side of the outdoor unit 55 below the indoor unit unit 51.
[0019]
On the outdoor side of the outdoor unit 55, an outdoor suction port 55A is provided at the upper part thereof, an outdoor outlet 55B is provided below the outdoor suction port 55A, and an outdoor louver 56 is provided on the outdoor side thereof. In addition, a rainwater drain hole 57 for discharging rainwater blown into the air conditioner unit 50 beyond the outdoor louver 56 to the outside of the air conditioner unit 50 is provided at the lower part of the outdoor unit 55.
[0020]
Next, a description will be given to the air conditioning unit mounting structure.
The air conditioner unit mounting structure is provided in an air conditioner storage space, which is a space below the bay window lower member 24 of the bay window sash mounting structure , and an air conditioner support portion is provided in the lower part of the air conditioner storage space. The air conditioner support section includes an air conditioner unit support plate 31 that forms a lower surface portion of the air conditioner unit mounting structure, and an outdoor support member that is provided outside the upper room of the air conditioner unit support plate 31 and supports the lower outdoor portion of the air conditioner unit 50. 34, provided on the upper indoor side of the air conditioner unit support plate 31 and supporting the lower part on the indoor side of the air conditioner unit 50, and provided between the outdoor support member 34 and the indoor support member 36. An intermediate support member 35 that supports a lower portion near the center of the air conditioner unit 50 is provided.
The air conditioner unit support plate 31, the indoor side support member 36, the outdoor side support member 34, and the intermediate support member 35 are also formed of a wooden plate material that is a material that can be easily manufactured and processed rather than being manufactured by molding.
[0021]
In the air conditioner support portion, the upper surface of the indoor side support member 36 is formed to be higher than the outdoor side support member 34. In addition, the indoor support member 36 includes a roller 37 that rotates in contact with the bottom plate lower surface 50 </ b> A of the air conditioner unit 50. This roller 37 makes it easy to place and fix the air conditioner unit 50.
[0022]
An outdoor drainage structure 39 is provided between the outdoor support member 34 and the intermediate support member 35 above the air conditioner unit support plate 31, and between the intermediate support member 35 and the indoor support member 36 above the air conditioner unit support plate 31. The indoor drainage structure 38 is independently provided. Accordingly, the outer surfaces of the outdoor support member 34, the indoor support member 36, and the intermediate support member 35, and the upper surfaces of the outdoor drainage structure 39 and the indoor drainage structure 38 of the air conditioner unit support plate 31 are in the space below the air conditioner unit 50. It becomes the surface.
[0023]
The surface of the lower space of the air conditioner unit 50, the lower surface of the air conditioner unit support plate 31, and the outdoor side surface are covered with a single waterproof thin plate 31B made of polyvinyl chloride steel plate. The processing of the end portion of the waterproof thin plate 31B is the same as the case of the bay window roof material 21. That is, the angle member 32 is pressed against the corner where the wall panel 11 and the air conditioner unit support plate 31 intersect, and the indoor side end portion of the waterproof thin plate 31B covers the surface of the angle member 32 outside the wall panel 11. The waterproof thin plate 31B and the angle member 32 are fixed to the support plate core member 31A by the embedded fixing member 33. The outdoor side of the wall panel 11 including the vicinity of the angle member 32 and the embedded fixing member 33 is covered with the outer wall member 13, and the space between the outer wall member 13 and the waterproof thin plate 31 </ b> B is filled with the filler 14.
[0024]
The indoor drainage structure 38 is for treating drain water from the air conditioner unit 50, and is surrounded by a waterproof thin plate 31B that covers the surface of the intermediate support member 35, the indoor side support member 36, and the air conditioner unit support plate 31. The room water drain space 38A and a drain water drain pipe 38B that is connected to a lower portion of the room water drain space 38A and discharges drain water.
[0025]
The outdoor drainage structure 39 is for treating rainwater blown from the outdoor louver 56 into the air conditioner unit 50, and is surrounded by a waterproof thin plate 31B that covers the surfaces of the intermediate support member 35, the outdoor support member 34, and the air conditioner unit support plate 31. The rainwater drainage space 39A and a rainwater drainage pipe 39B connected to the lower part of the rainwater drainage space 39A and discharging drain water.
[0026]
Then, the effect | action of the said Example is demonstrated.
First, an opening is formed in the wall panel 11 of the building, and an opening for fixing the sash is formed in the opening. The opening portion for fixing the bay window sash processes the roof core material 21A and the lower bay window core material 24A, and the outer surfaces of the core materials 21A, 24A and the contact surface with the bay window sash 40 are formed on the waterproof thin plates 21B, 24B. It is formed by covering.
[0027]
Further, the angle member 26 is pressed against the outdoor side of the corner where the wall panel 11 and the bay window roof material 21 intersect. The indoor end of the waterproof thin plate 21B that covers the outdoor surface of the roof core member 21A covers the outdoor surface of the angle member 26, and the waterproof thin plate 21B and the angle member 26 are covered by the embedded fixing member 27. Is fixed to the roof core material 21A to complete the bay window sash mounting structure.
[0028]
The bay window sash 40 is attached to the bay window roof material 21 and the bay window lower member 24 of the bay window sash mounting structure formed as described above. The outdoor surfaces of the core materials 21A, 24A are covered with waterproof thin plates 21B, 24B, and the corners are also fixed by the angle material 26, so that the waterproof property against rain and snow is ensured. Yes.
Since the contact surface with the bay window sash 40 is also covered with the waterproof thin plates 21B and 24B, the waterproof property of the gap between the bay window sash 40 and the bay window roof material 21 or the bay window lower member 24 is ensured.
[0029]
The outside of the wall panel 11 including the vicinity of the angle member 26 and the embedded fixing member 27 is covered with the outer wall member 13, and the space between the outer wall member 13 and the waterproof thin plate 21 </ b> B is filled with the filler 14. And the waterproof thin plate 21B are secured. Therefore, the waterproof property of the wall panel 11 is also ensured.
Next, the operation of the fixing structure of the air conditioner unit 50 will be described.
[0030]
In order to fix the air conditioner unit 50 in the air conditioner storage space, first, the outdoor side of the bottom plate lower surface 50A of the air conditioner unit 50 is brought into contact with the indoor side support member 36 with the cushioning material 36A interposed therebetween, and the air conditioner unit 50 is placed in the room. Push outward. Then, the roller 36 on the indoor side support member 36 reduces resistance due to contact with the bottom plate lower surface 50A of the air conditioner unit 50, so that the air conditioner unit 50 moves more smoothly toward the outdoor side. Then, after passing through the intermediate support member 35 interposing the buffer material 35A, the buffer material 34B is brought into contact with the stopper 34A provided on the outdoor support member 34.
[0031]
In air-support portion, more of the top surface of the indoor-side supporting member 36, since the formed such that the high than the outdoor side support member 34, air conditioning unit 50 is smoothly moved toward the outdoor side, that In the state where the end portion on the outdoor side is locked to the stopper 34A, it is housed in the air conditioner housing space and then fixed.
Then, the effect | action of the drainage structure of the bay window air conditioner 40 is demonstrated.
[0032]
Drain water generated when the air conditioner unit 50 is operating is led from the drain hole 53 to the indoor water drain space 38A and discharged.
On the other hand, when rainwater blows into the air conditioner unit 50 beyond the outdoor louver 56, the rainwater is guided to the rainwater drainage space 39A from the rainwater drainage hole 57 and discharged from the rainwater drainage pipe 39B. Even if it is rainwater accompanied by wind, the rainwater drainage space 39A is provided separately from the indoor water drainage space 38A, and therefore is not blown into the room through the indoor water drainage space 38A.
[0033]
In addition, the air conditioner support portion must have a shape that matches the shape of the bay window sash 40 and the air conditioner unit 50. First, a core required for the air conditioner support portion is formed from an easily processable material. It is made of materials 31A, 34, 35, and 36. Therefore, it can be easily produced at a lower cost than the processing by molding. And if the produced core materials 31A, 34, 35, and 36 are covered with the waterproof thin plate 31B, an air conditioner support portion can be produced.
[0034]
Next, effects of the above embodiment will be described.
First, a rainwater drain space 39A for discharging rainwater blown into the air conditioner unit 50 to the outside of the air conditioner unit 50 is provided separately from the indoor water drainage space 38A for discharging drain water to the outside from the air conditioner unit. Therefore, even rainwater blown with wind does not blow indoors.
Since it formed in this way, even if it is an air-conditioner unit which integrated the indoor unit 51 and the outdoor unit 55, there exists an effect that it can employ | adopt as a bay window air conditioner.
[0035]
Moreover, if the air conditioner support part which should be produced in the shape matched with the shape of the bay window sash 40 or the air conditioner unit 50 is produced with the core materials 31A, 34, 35, and 36 formed of wood boards that are easy to process. Well, the necessary waterproofness can be easily secured by the waterproof thin plate 31B. Therefore, there is an effect that the production time and the cost are smaller than the production by molding.
[0036]
Further, the bottom surface 50A of the bottom plate of the air conditioner unit 50 is inclined from the indoor side to the outdoor side, and the upper surface of the indoor side support member 36 is formed to be higher than the outdoor side support member 34, and the roller 37 Since the air conditioner unit is installed, the air conditioner unit 50 is smoothly moved when the air conditioner unit is mounted. For this reason, although an air-conditioning unit has considerable weight, there exists an effect that an operator can perform attachment work very easily.
[0037]
Further, in the attachment structure of the bay window sash, the roof core material 21A and the lower bay window core material 24A that are easy to process are processed, and the outer surfaces of the core materials 21A and 24A and the contact surface with the bay window sash 40 are processed. Can be formed by covering them with waterproof thin plates 21B and 24B, so that it is possible to reduce the labor and cost of manufacturing compared to manufacturing by molding. The necessary waterproofness is secured by the angle members 26 and 32, the embedded fixing members 27 and 33, the outer wall member 13 and the filler 14, and can be used without worrying about rain and snow.
[0038]
Hereafter, the variation of the said Example is demonstrated.
In the above embodiment, the bottom plate lower surface 50A of the air conditioner unit 50 is formed to be inclined downward from the indoor side toward the outdoor side, but the upper surface of the indoor side support member 36 is higher than the outdoor side support member 34. If it forms so that it may become, it is not necessary to incline and form the bottom plate lower surface 50A of the air-conditioner unit 50. FIG.
[0039]
On the other hand, even if a roller having an outer peripheral surface protruding from the bottom surface 50A of the bottom plate of the air conditioner unit 50 is provided, it is possible to simplify the work of storing the air conditioner unit 50 in the air conditioner storage space provided in the lower space of the bay window sash 40. it can.
[0040]
【The invention's effect】
According to the bay window air conditioner fixing structure according to claim 1 and 2, simplification of the work of storing the air conditioner main body in which the indoor unit and the outdoor unit are integrated into the air conditioner storage space provided in the lower space of the bay window sash. There is an effect that has been made.
[Brief description of the drawings]
FIG. 1 is a front view of a bay window sash as viewed from the indoor side.
FIG. 2 is a vertical sectional view of the embodiment.
FIG. 3 is a front view showing an air conditioner unit.
FIG. 4 is a side view showing an air conditioner unit.
FIG. 5 is a bottom view showing the air conditioner unit.
FIG. 6 is a schematic view showing a bay window air conditioner disclosed in Japanese Utility Model Laid-Open No. 57-125921.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 ... bay window sash storage space, 2 ... bay window sash, 3 ... air conditioner indoor unit, 4 ... air conditioner outdoor unit, 10 ... structural material, 11 ... wall panel, 12 ... inner wall material, 13 ... outer wall material, 14 ... filler , 21 ... bay window roof material, 21A ... roof core material, 21B ... waterproof thin plate, 22 ... inner wall material, 23 ... attachment auxiliary material, 24 ... bay window lower material, 24A ... bay window lower core material, 24B ... waterproof thin plate, 25 ... makeup Plate 26: Angle material 27: Embedded fixing member 31 ... Air conditioner unit support plate 31A ... Support plate core material 31B Waterproof thin plate 32 ... Angle material 33 ... Embedded fixing member 34 ... Outdoor support member 34A ... stopper, 34B ... buffer material, 35 ... intermediate support member, 35A ... buffer material, 36 ... indoor side support member, 36A ... buffer material, 37 ... roller, 38 ... indoor drainage structure, 38A ... indoor water drainage space, 38B Drain water drainage pipe, 39 ... Outdoor drainage structure, 39A ... Rainwater drainage space, 39B ... Rainwater drainage pipe, 40 ... Bay window sash, 50 ... Air conditioning unit, 50A ... Bottom plate bottom surface, 51 ... Indoor unit, 51A ... Indoor suction port , 51B ... Indoor air outlet, 52 ... Indoor louver, 53 ... Drain hole, 54 ... Drain plate, 55 ... Outdoor unit, 55A ... Outdoor air inlet, 55B ... Outdoor air outlet, 56 ... Outdoor louver, 57 ... Rainwater drain hole .

Claims (2)

出窓サッシの下方に設けたエアコン収納空間に、室内機と室外機とを一体化したエアコンユニットを収納固定するための出窓エアコン固定構造であって、
エアコン収納空間の下部には、エアコンユニット支持板と、このエアコンユニット支持板上に並設されエアコンユニットの室内側下部、中央付近の下部、室外側下部をそれぞれ支持する室内側支持部材、中間支持部材及び室外側支持部材からなるエアコン支持部を設け、
このエアコン支持部を構成する中間支持部材、室内側支持部材及びエアコンユニット支持板によって前記エアコンユニットから出るドレン水を室外に排水処理するための室内水排水空間を形成し、
前記エアコン支持部を構成する中間支持部材、室外側支持部材及びエアコンユニット支持板によって室外からエアコンユニット内へ吹き込む雨水を室外に排水処理するための雨水排水空間を形成するとともに、
前記エアコン支持部を構成する室外側支持部材に、エアコンユニットの室外側を係止するストッパーを設け、
前記エアコンユニットの室内側の底面とエアコン支持部を構成する室内側支持部材とが接触する部分の方が、エアコンユニットの室外側の底面とエアコン支持部を構成する室外側支持部材とが接触する部分よりも高位となるように形成したことを特徴とする出窓エアコン固定構造。
A bay window air conditioner fixing structure for storing and fixing an air conditioner unit integrating an indoor unit and an outdoor unit in an air conditioner storage space provided below the sash window,
At the lower part of the air conditioner storage space , an air conditioner unit support plate, an indoor support member arranged in parallel on the air conditioner unit support plate and supporting the lower part on the indoor side of the air conditioner unit, the lower part near the center, and the lower part on the outdoor side, and intermediate support An air-conditioner support part comprising a member and an outdoor support member
Forming an indoor water drainage space for draining drain water discharged from the air conditioner unit to the outside by the intermediate support member, the indoor side support member and the air conditioner unit support plate constituting the air conditioner support part,
Forming a rainwater drainage space for draining rainwater blown into the air conditioner unit from the outside by the intermediate support member, the outdoor support member and the air conditioner unit support plate constituting the air conditioner support part,
The outdoor support member constituting the air conditioner support part is provided with a stopper for locking the outdoor side of the air conditioner unit,
The portion where the bottom surface of the air conditioner unit on the indoor side and the indoor support member constituting the air conditioner support portion come into contact with the bottom surface on the outdoor side of the air conditioner unit and the outdoor support member constituting the air conditioner support portion. A bay window air conditioner fixing structure formed so as to be higher than the portion.
エアコン支持部には、エアコンユニットの底面と接触するローラーが設けられていることを特徴とする請求項1記載の出窓エアコン固定構造。2. The bay window air conditioner fixing structure according to claim 1, wherein the air conditioner support portion is provided with a roller that contacts the bottom surface of the air conditioner unit.
JP08899393A 1993-04-16 1993-04-16 Bay window air conditioner fixing structure Expired - Fee Related JP3611584B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP08899393A JP3611584B2 (en) 1993-04-16 1993-04-16 Bay window air conditioner fixing structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP08899393A JP3611584B2 (en) 1993-04-16 1993-04-16 Bay window air conditioner fixing structure

Publications (2)

Publication Number Publication Date
JPH06299760A JPH06299760A (en) 1994-10-25
JP3611584B2 true JP3611584B2 (en) 2005-01-19

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
JP08899393A Expired - Fee Related JP3611584B2 (en) 1993-04-16 1993-04-16 Bay window air conditioner fixing structure

Country Status (1)

Country Link
JP (1) JP3611584B2 (en)

Also Published As

Publication number Publication date
JPH06299760A (en) 1994-10-25

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