JP3845346B2 - Thermal insulation and formwork building material and building formwork using the building material - Google Patents

Thermal insulation and formwork building material and building formwork using the building material Download PDF

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JP3845346B2
JP3845346B2 JP2002238240A JP2002238240A JP3845346B2 JP 3845346 B2 JP3845346 B2 JP 3845346B2 JP 2002238240 A JP2002238240 A JP 2002238240A JP 2002238240 A JP2002238240 A JP 2002238240A JP 3845346 B2 JP3845346 B2 JP 3845346B2
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formwork
heat insulating
building
thin plate
heat
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JP2004076396A (en
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圭介 荻野
幸浩 濱木
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日崎建設株式会社
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Description

【0001】
【発明の属する技術分野】
本発明は、コンクリート躯体を有する建築物の、断熱兼型枠建材およびその建材を用いた建築用型枠に関するものである。
【0002】
【従来の技術】
従来、コンクリート躯体を有する建築物において、その躯体を成形する型枠の構築用型枠板として使用できる外、建築物の構築後は、解体せずにそのままコンクリート壁の補強用建材として使用できるようにした、型枠兼用建材が知られている(特公昭52−97219号公報参照)。
【0003】
【発明が解決しようとする課題】
ところで、かかる従来の型枠兼用建材は、型枠板を解体する手間が省け、また型枠板を断熱壁などの建材としてそのまま利用できるという利点があるが、その型枠兼用建材が型枠として利用される場合には、これが打設コンクリートの打設圧力に耐えてその変形、損傷することがないように補強する必要があり、その結果その重量増を招き、その作業性が悪くなり、また、型枠板として使用する際に、縦端太、横端太などよりなる支保工を必要として型枠の組立作業性が悪くなり、特に、型枠の曲面施工に対応するのが困難であるという問題がある。
【0004】
本発明はかかる実情に鑑みてなされたもので、強度が高く、軽量であり、高断熱性を有し、型枠板として使用したとき、取り扱いが容易であり、しかも打設コンクリートの圧力により変形することがなく、また、建物の高断熱性を有する断熱壁としてそのまま使用することができ、さらにまた、曲面施工の可能な新規な断熱兼型枠建材を提供し、さらに該前記断熱兼型枠建材を使用した新規な建築用型枠を提供することを目的とする。
【0005】
【課題を解決するための手段】
上記目的を達成するために、請求項1記載の発明は、コンクリートの打設空間を存して互いに対峙される内、外側の型枠壁よりなる型枠を構成する断熱兼型枠建材であって、硬質のポリウレタンよりなる断熱パネルと、該断熱パネルの、打設されるコンクリートと接触する面と反対側の一方の片面にラミネートされる波形薄板と、前記断熱パネルと波形薄板の一端面の全長に亘り接合されるバー部材とよりなり、前記波形薄板は、その波形の山すじおよび谷すじが、前記バー部材の長手方向と直交しており、記バー部材には、前記断熱パネルの一端面に通じる複数の取付孔が列設され、前記断熱パネルには、前記波形薄板の山すじおよび谷すじの方向と平行に複数のスリットが、前記バー部材の長手方向に間隔をあけて形成され、また、前記バー部材にも、前記スリットと平行な他のスリットが形成されていることを特徴としており、かかる特徴によれば、強度が高く、軽量であり、高断熱性を有し、型枠板として使用したとき、取り扱いが容易であり、しかも打設コンクリートの圧力により変形することがなく、また、建物の高断熱性を有する断熱壁としてそのまま使用することができる。しかも上記スリットの形成により、湾曲型枠壁を容易に施工することができ、また、建物の構築後は湾曲断熱壁として利用することができる。
【0006】
さらに、本請求項記載の発明は、前記請求項1記載の断熱兼型枠建材を使用した、建築用型枠であって、基礎上にコンクリートの打設空間を存して、最下段、少なくとも一段の中間段および最上段の各断熱兼型枠建材を、それらの波形薄板をコンクリート打設空間の反対側に位置させ、かつ、それらの波形薄板の山すじおよび谷すじを上下方向に指向させて、順次に鉛直方向に建て込み、各段に対応する両断熱兼型枠建材の上端面間に、複数のかすがい状アッセンブリタイを跨がらせて、その両端を両上端面にそれぞれ差し込み、前記各段の断熱兼型枠建材同志を一体に結合し、前記コンクリート打設空間を存して対峙する、内、外側の型枠壁を構成してなることを特徴としており、かかる特徴によれば、内、外の型枠壁よりなる型枠を組み立てるとき、型枠壁を構成する断熱兼型枠建材は、きわめて軽量であり、しかも、それらの断熱兼型枠建材にアッセンブリタイを差し込み結合することにより、従来の端太材などの支保工を不要にして、型枠の施工作業を、迅速、容易に、しかも、低コストで行なうことができる。また、型枠の完成後は、内、外側の型枠壁間のコンクリート打設空間にコンクリートを打設するとき、型枠壁を構成する断熱兼型枠建材は、硬質ポリウレタンよりなる断熱パネルの片面に、山筋と谷筋が上下方向に指向される波形薄板がラミネートされているので、その上下方向の剛性が高く、コンクリートの打設圧力を受けても変形したり、損傷したりすることがない。
【0007】
さらにまた、本請求項記載発明によれば、請求項記載の断熱兼型枠建材を使用した、建築用型枠であって、基礎上にコンクリートの打設空間を存して、最下段、少なくとも一段の中間段および最上段の各断熱兼型枠建材を、それらの波形薄板をコンクリート打設空間の反対側に位置させ、かつそれらの波形薄板の山すじおよび谷すじを上下方向に指向させて弧状に湾曲させて、順次に鉛直方向に建て込み、各段に対応する両断熱兼型枠建材の上端面間に、複数のかすがい状アッセンブリタイを跨がらせて、その両端を両上端面にそれぞれ差し込み、前記各段の断熱兼型枠建材同志を一体に結合し、前記コンクリート打設空間を存して対峙する、内、外側の型枠壁を構成してなることを特徴としており、かかる特徴によれば、前記請求項記載の発明と同じ効果を奏する上に、型枠の湾曲型枠壁を簡単容易に施工することができる。
【0008】
【発明の実施の形態】
以下、本発明の実施形態を、添付図面に示した参考例および本発明の実施例に基づいて説明する。
【0009】
まず、図1〜7を参照して、参考例について説明すると、図1は、熱兼型枠建材の一部破断斜視図、図2は、図1の2−2線に沿う断面図、図3は、図1の3−3線に沿う断面図、図4は、断熱兼型枠建材を使用した、建築用型枠の一部破断斜視図、図5は、図4の5−5線に沿う拡大断面図、図6は、図5の6矢視の仮想円囲い部分の拡大図、図7は、波形薄板をラミネートした断熱パネルの製造装置の概略図である。
【0010】
まず、図1〜3を参照して、参考例にかかる断熱兼型枠建材Aの構成について説明すると、この断熱兼型枠建材Aは、全体が横長の長方形に形成されており、硬質の断熱パネル1と、その断熱パネル1の一方の片面(コンクリートの打設される面と反対面)に一体にラミネートされる金属板製の波形薄板2と、断熱パネル1と波形薄板2の上端面に、その全長にわたり一体に接合される金属製のバー部材3とより構成されている。
【0011】
前記断熱パネル1は、高断熱性があり、しかも軽量である硬質ポリウレタンにより構成され、たとえば、その密度が20〜40kg/m3であり、その厚さが10〜80mmである。そして、前記波形薄板2の積層されない方の他方の片面(打設されるコンクリートが接触する側の片面)と、波形薄板2の外面には、それぞれ紙板4,5が一体に積層される。
【0012】
なお、後に述べるように、紙板4,5は、波形薄板2をラミネートした断熱パネル1を成形する行程で必要なものであるが、断熱兼型枠建材Aの積層板として利用することが可能である。
【0013】
硬質ポリウレタン製の断熱パネル1の一例として、ハンツマンジャパン社製のイソシアネートとポリオールとを混合し、55°Cの環境下で発泡して成形する。このとき、イソシアネートと、ポリオールとの混合割合は、62:38wt/%である。
【0014】
また、前記波形薄板2は、0.1〜0.5mmの鉄製薄板により前記断熱パネル1と同じ大きさの長方形に形成され、横断面波形、すなわちその山すじ2mと谷筋2vが上下方向に指向するように波形に屈曲加工され、縦方向の荷重に対して高い剛性が得られるように構成される。そして波形薄板2の波形の高さは、高いほど高い剛性が得られるが、断熱材として使用するには、その波の高さは5〜15mmとするのが望ましい。
【0015】
前記波形薄板2の一例として、板厚0.25mm、波形のピッチ31.8mm、波形の高さ9.0mmに加工した新中鋼株式会社製の鉄製薄板が用いられる。
【0016】
つぎに、図7を参照して前記波形薄板2をラミネートした断熱パネル1の製造方法について説明すると、ポリウレタンマシン20には、イソシアネートタンク21およびポリオールタンク22からイソシアネートおよびポリオールがそれぞれ供給され、それらはポリウレタンマシン20により加圧されてミキシングヘッド23へ圧送される。ミキシングヘッド23では、イソシアネートとポリウレタンとを混合し、それらの混合液はミキシングヘッド23のノズル23Nから断熱パネル1の成形機24に供給される。
【0017】
断熱パネル1の成形機24は、ミキシングヘッド23の前方に配設されており、断熱パネル1の成形空間Sを存してその上部および下部に、上紙(紙板)4および下紙(紙板)5の上部および下部搬送手段25,26がそれぞれ配設されている。上紙4の上部搬送手段25は上部ベルトコンベアよりなり、ローラ27に巻かれている上紙4は、この上部ベルトコンベア25により、前記成形空間Sの上部を搬入端から搬出端へと搬送される。また、下紙5の下部搬送手段26も下部ベルトコンベアよりなり、ローラ28に巻かれている下紙5は、この下部ベルトコンベア26により、前記成形空間Sの下部を搬入端から搬出端へと搬送される。下部ベルトコンベア26上に前記波形薄板2を挿入すると同時にミキシングヘッド23よりイソシアネートとポリオールの混合液を波形薄板2上に撒布する。なお、このとき、撒布した混合液上に波形薄板2を載せるようにしてもよい。
【0018】
上部および下部ベルトコンベア25,26により前記混合液は波形薄板2と共に搬送される間に、所定の温度に保持される成形空間Sにて、前記混合液よりなる未発泡のポリウレタン素材が発泡され、これにより硬質のポリウレタンフォーム、すなわち断熱パネル1が成形されると同時にその片面に波形薄板2がラミネートされる。この発泡時には波形薄板2がラミネートされた断熱パネル1の上下面には、前記上紙4および下紙5が一体に積層され、また、波形薄板2と下紙5の間に形成される間隙部に、発泡したポリウレタンフォームの一部が装填される。波形薄板2がラミネートされた断熱パネル1は、所定寸法にカッティングされ、他のベルトコンベア29により搬出される。そして完成された断熱パネル1のポリウレタン密度は30kg/m3である。
【0019】
以上のようにして成形され、所定の寸法に切断された、波形薄板2をラミネートした断熱パネル1には、前記金属製のバー部材3が固定される。
【0020】
図1〜3に示すように、前記バー部材3は、帯状の鉄製薄板を、横断面横T字状に成形してなり、鉛直部3Vと、その中間部一側より水平に張出す水平部3Hとを有し、前記断熱パネル1および波形薄板2の横幅と略同じ長さに形成される。そして、その水平部3Hには、その長手方向に間隔をあけて複数の取付孔6…が列設されている。
【0021】
前記バー部材3は、波形薄板2をラミネートした断熱パネル1の上端面に一体に接合される。すなわち図3に示すように、バー部材3の鉛直部3Vの下半部を、波形薄板2の上端外面に接合し、その水平部3Hを断熱パネル1の上面に密接させる。これにより、前記水平部3Hの複数の取付孔6…は、断熱パネル1の上端面に通じている。
【0022】
つぎに、図4〜6を参照して、断熱パネル1、波形薄板2およびバー部材3よりなる前記断熱兼型枠建材Aを用いて建築用型枠Fを構築する場合について説明する。
【0023】
図4に示すように、基礎B上にコンクリートの打設空間8を存してその内、外両側に複数の最下段の断熱兼型枠建材A(Aに添字dを付す)を、それらの波形薄板2を前記コンクリートの打設空間8と反対側にして横列接続して建て込み、つぎに、それらの最下段の内、外側の断熱兼型枠建材Ad,Adの上端面に複数のアッセンブリタイ10…の両端を取付孔6…を通して差し込んで内、外側の最下段の内、外側の断熱兼型枠建材Ad,Adを一体に結合し、つぎに、最下段の内、外側の断熱兼型枠建材Adの上端面上に、中間段の内、外側の断熱兼型枠建材Am(Aに符号mを付す)の下端面を接続し、それらを最下段の断熱兼型枠建材Aと同じ向きにして建て込み、それらの中間段の内、外側の断熱兼型枠建材Am,Amの上端面に複数のアッセンブリタイ10…の両端を取付孔6…を通して差し込んで、それらの中間段の断熱兼型枠建材Am,Amを一体に結合し、以下、同じ要領にて他の中間段の断熱兼型枠建材Amおよび最上段の内、外側の断熱兼型枠建材Au(Aに符号uを付す)を、その下部の内、外側の中間部断熱兼型枠建材Amの上端面に順次に建て込み、それらの上端面同志を複数の前記アッセンブリタイ10により結合する。
【0024】
前記アッセンブリタイ10は、図5,6に示すように、丸鋼をかすがい状に屈曲形成してなる本体10aに、補強材10bを溶接して構成されており、図6に示すように、その補強材10aの屈曲端部は、断熱パネル1の内面に衝合して、該断熱材1の倒れを防止する。
【0025】
図4に示すように、内、外の型枠壁WI,WOよりなる型枠Fが組み立てられる。このとき、型枠壁WI,WOを構成する各断熱兼型枠建材Aは、きわめて軽量であり、しかも、それらの断熱兼型枠建材Aに、アッセンブリタイ10の差し込みにより結合することができ、従来の端太材などの支保工が不要になることから型枠Fの施工作業を、迅速、容易に、しかも、低コストで行なうことができる。
【0026】
また、型枠Fの完成後は、内、外側の型枠壁WI,WO間のコンクリート打設空間8に、コンクリートが打設される。このとき、型枠壁WI,WOを構成する各断熱兼型枠建材Aは、硬質ポリウレタンよりなる断熱パネル1の片面(コンクリート打設空間と反対側)に、山筋2mと谷筋2vが上下方向に指向される波形薄板2がラミネートされているので、その上下方向の剛性が高く、コンクリートの打設圧力を受けても変形したり、損傷したりすることがない。
【0027】
なお、この場合、硬質ポリウレタンよりなる断熱パネル1には、それ自体に耐荷重性をもたせる必要がないため、該硬質ポリウレタンは、型枠使用を目的としない断熱材と同程度の低密度のものでよい。
【0028】
つぎに、図8,9を参照して、本発明の施例について説明する。
【0029】
図8は、断熱兼型枠建材の一部破断斜視図、図9は、図8の9−9線に沿う断面図であり、前記参考例と同じ要素には、同じ符号が付される。
【0030】
この施例は、型枠Fの、内、外側の型枠壁WI,WOの曲面施工を可能としたものであり、断熱兼型枠建材Aを構成する断熱パネル1は、その横幅方向に等間隔を存して縦方向、すなわち波形薄板2の山すじ2mおよび谷すじ2v方向に平行に複数のスリット40…を入れ、さらに、バー部材3の平坦部3Hにも前記スリット40…と平行に他のスリット41…を入れる。これにより、断熱兼型枠建材Aは、その波形薄板2の波形の方向、すなわち平面視円弧状に湾曲した内、外側の型枠壁WI,WOを施工することができ、それら間のコンクリート打設空間8にコンクリートを打設することにより、平面視円弧状に湾曲した、湾曲躯体壁を構築することができる。
【0031】
しかして、この施例も、断熱兼型枠建材Aは、硬質のポリウレタンよりなる断熱パネル1と、これにラミネートされる波形薄板2とにより、軽量で、かつコンクリート打設圧力により充分に対抗し得る剛性を保持させることができる。
【0032】
以上、参考例および本発明の実施例について説明したが、本発明はその実施例に限定されることなく、本発明の範囲内で種々の実施例が可能である。たとえば、前記実施例では、波形薄板は、鉄板により形成した場合を説明したが、これを他の金属板、剛性樹脂板などの他の同効の薄板により形成してもよい。
【0033】
【発明の効果】
以上のように、請求項1記載の発明によれば、強度が高く、軽量であり、高断熱性を有し、型枠板として使用したとき、取り扱いが容易であり、しかも打設コンクリートの圧力により変形することがなく、また断熱建材として使用するときも取り扱いが容易であり、しかも高断熱性を有する断熱壁として使用することができる断熱兼型枠建材を提供することができる。その上、断熱パネルには、波形薄板の山すじおよび谷すじの方向と平行に複数のスリットが、バー部材の長手方向に間隔をあけて形成され、またバー部材にも、前記スリットと平行な他のスリットが形成されるので、湾曲型枠壁を容易に施工することができ、また、建物の構築後は断熱兼型枠建材を湾曲断熱壁として利用することができる。
【0034】
さらに、本請求項記載の発明によれば、前記請求項1記載の断熱兼型枠建材を使用した、建築用型枠において、内、外の型枠壁よりなる型枠を組み立てるとき、型枠壁を構成する断熱兼型枠建材は、きわめて軽量であり、しかもそれらの断熱兼型枠建材にアッセンブリタイを差し込み結合することにより、従来の端太材などの支保工を不要にして、型枠の施工作業を、迅速、容易に、しかも、低コストで行なうことができる。また、型枠の完成後は、内、外側の型枠壁間のコンクリート打設空間にコンクリートを打設するとき、型枠壁を構成する断熱兼型枠建材は、硬質ポリウレタンよりなる断熱パネルの片面に、山筋と谷筋が上下方向に指向される波形薄板がラミネートされているので、その上下方向の剛性が高く、コンクリートの打設圧力を受けても変形したり、損傷したりすることがない。
【0035】
さらにまた、本請求項記載の発明によれば、前記請求項記載の断熱兼型枠建材を使用した、建築用型枠において、前記請求項2記載の発明と同じ効果を奏する上に、型枠の湾曲型枠壁を簡単容易に施工することができる。
【図面の簡単な説明】
【図1】 参考例に係る断熱兼型枠建材の一部破断斜視
【図2】 図1の2−2線に沿う断面図
【図3】 図1の3−3線に沿う断面図
【図4】 断熱兼型枠建材を使用した、建築用型枠の一部破断斜視図
【図5】 図4の5−5線に沿う拡大断面図
【図6】 図5の6矢視の仮想円囲い部分の拡大図
【図7】 波形薄板をラミネートした断熱パネルの製造装置の概略図
【図8】 本発明の実施例に係る断熱兼型枠建材の一部破断斜視図
【図9】 図8の9−9線に沿う断面図
【符号の説明】
1・・・・・断熱パネル
2・・・・・波形薄板
2m・・・・山すじ
2v・・・・谷すじ
3・・・・・バー部材
6・・・・・取付孔
8・・・・・コンクリートの打設空間
10・・・・アッセンブリタイ
40・・・・スリット
41・・・・他のスリット
Ad・・・・最下段の断熱兼型枠建材
Am・・・・中間段の断熱兼型枠建材
Au・・・・最下段の断熱兼型枠建材
B・・・・・基礎
F・・・・・型枠
WI・・・・内側の型枠壁
WO・・・・外側の型枠壁
[0001]
BACKGROUND OF THE INVENTION
TECHNICAL FIELD The present invention relates to a heat insulating and forming frame building material and a building form using the building material for a building having a concrete frame.
[0002]
[Prior art]
Conventionally, in a building having a concrete frame, it can be used as a formwork plate for building a mold to form the frame, and after building the building, it can be used as a building material for reinforcing concrete walls without dismantling. A formwork and building material is known (see Japanese Patent Publication No. 52-97219).
[0003]
[Problems to be solved by the invention]
By the way, such a conventional formwork-compatible building material has the advantage that the labor of disassembling the formwork plate can be saved, and the formwork plate can be used as it is as a building material such as a heat insulating wall. When it is used, it must be reinforced to withstand the casting pressure of the cast concrete so that it does not deform or be damaged, resulting in an increase in weight, resulting in poor workability, and When using it as a formwork plate, it requires a support work consisting of a thick vertical edge, a thick horizontal edge, etc., and the assembling workability of the formwork deteriorates, and it is particularly difficult to cope with the curved surface construction of the formwork. There is a problem.
[0004]
The present invention has been made in view of such circumstances, has high strength, is lightweight, has high heat insulation properties, is easy to handle when used as a mold plate, and is deformed by the pressure of cast concrete. In addition, the present invention provides a novel heat insulating and forming frame building material that can be used as it is as a heat insulating wall having a high heat insulating property of a building, and can be curvedly constructed. The object is to provide a new formwork for building using building materials.
[0005]
[Means for Solving the Problems]
In order to achieve the above object, the invention according to claim 1 is a heat insulating and formwork building material that constitutes a formwork made up of an outside formwork wall while facing each other in a concrete placement space. A heat insulating panel made of hard polyurethane, a corrugated thin plate laminated on one side of the heat insulating panel opposite to the surface in contact with the placed concrete, and one end surface of the heat insulating panel and the corrugated thin plate. more become bar members to be joined over the entire length, the waveform sheet is mountain lines and troughs streaks of the waveform, the is orthogonal to the longitudinal direction of the bar member, before Symbol bar member, said insulating panel A plurality of mounting holes leading to one end surface are arranged, and a plurality of slits are formed in the heat insulation panel in parallel with the direction of the ridges and valleys of the corrugated thin plate at intervals in the longitudinal direction of the bar member. And also before To the bar member, wherein are characterized in that slits parallel other slit is formed, according to this aspect, high strength, is lightweight, has high thermal insulation properties, used as a mold plate Then, it is easy to handle and is not deformed by the pressure of the cast concrete, and can be used as it is as a heat insulating wall having a high heat insulating property of the building . In addition, the curved frame wall can be easily constructed by forming the slit, and can be used as a curved heat insulating wall after the building is constructed.
[0006]
Furthermore, the invention according to claim 2 is a building form using the heat insulating and forming frame building material according to claim 1, and has a concrete placement space on the foundation, At least one intermediate and uppermost heat-insulating / framework materials are positioned on the opposite side of the concrete placement space, and the corrugated sheet's mountain and valley lines are directed vertically. Then, build in the vertical direction one after the other, span a plurality of brace-like assembly ties between the upper end surfaces of both heat-insulating and formwork building materials corresponding to each step, and insert both ends into both upper end surfaces. In addition, the heat insulation and formwork building materials of each step are integrally joined, and the inside and outside formwork walls are configured to face each other in the concrete placement space. According to this, a formwork consisting of inner and outer formwork walls is assembled. When standing up, the heat insulation and formwork building materials that make up the formwork walls are extremely lightweight, and the assembly ties are inserted into the heat insulation and formwork building materials and joined together to support conventional end thick materials. The construction work of the mold can be performed quickly, easily and at a low cost. In addition, after completion of the formwork, when placing concrete in the concrete placement space between the inner and outer formwork walls, the heat insulating and formwork building material constituting the formwork wall is a heat insulating panel made of hard polyurethane. Since the corrugated sheet with the mountain and valley lines oriented in the vertical direction is laminated on one side, its vertical rigidity is high, and it can be deformed or damaged even when subjected to concrete placing pressure. There is no.
[0007]
Still further, according to the invention described in claim 3 , it is a building form using the heat insulation and formwork building material according to claim 1 , and there is a concrete placement space on the foundation, and the lowest step. , At least one intermediate and uppermost heat-insulating / framework materials, with their corrugated sheets positioned on the opposite side of the concrete placement space, and with the corrugated sheet's crests and troughs oriented vertically It is curved in an arc shape, and is built in the vertical direction in sequence, and a plurality of braided assembly ties are straddled between the upper end surfaces of both heat-insulating and formwork building materials corresponding to each step, and both ends thereof are It is characterized by comprising inner and outer formwork walls which are respectively inserted into the upper end surfaces, integrally connecting the heat insulating and formwork building materials of each step and facing each other in the concrete placement space. cage, according to this aspect, the second aspect On achieving the same effect as the mounting of the invention, a curved formwork wall formwork can be easily easily construction.
[0008]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of the present invention will be described below based on reference examples shown in the accompanying drawings and examples of the present invention.
[0009]
First, referring to FIGS. 1-7, to describe the reference example, FIG. 1 is a partially broken perspective view of adiabatic and formwork construction materials, Fig. 2 is a cross-sectional view taken along line 2-2 in FIG. 1, 3 is a cross-sectional view taken along the line 3-3 in FIG. 1, FIG. 4 is a partially cutaway perspective view of a formwork for construction using a heat insulating and formwork building material, and FIG. FIG. 6 is an enlarged cross-sectional view taken along the line, FIG. 6 is an enlarged view of a virtual circle encircled portion shown by arrow 6 in FIG. 5, and FIG. 7 is a schematic diagram of a heat insulation panel manufacturing apparatus in which corrugated thin plates are laminated.
[0010]
First, with reference to FIGS. 1-3, when the structure of the heat insulation and mold frame building material A concerning a reference example is demonstrated, this heat insulation and mold frame building material A is formed in the oblong rectangle as a whole, and hard heat insulation The panel 1, the corrugated thin plate 2 made of a metal plate integrally laminated on one side of the heat insulating panel 1 (the surface opposite to the surface on which the concrete is placed), and the upper end surfaces of the heat insulating panel 1 and the corrugated thin plate 2 The metal bar member 3 is integrally joined over the entire length.
[0011]
The said heat insulation panel 1 is comprised with the hard polyurethane which has high heat insulation and is lightweight, for example, the density is 20-40 kg / m < 3 >, and the thickness is 10-80 mm. Then, the paper plates 4 and 5 are integrally laminated on the other side of the corrugated thin plate 2 where the corrugated thin plate 2 is not laminated (one side on the side where the concrete to be placed contacts) and the outer surface of the corrugated thin plate 2, respectively.
[0012]
As will be described later, the paper plates 4 and 5 are necessary in the process of forming the heat insulation panel 1 laminated with the corrugated thin plate 2, but can be used as a laminated plate of the heat insulation and formwork building material A. is there.
[0013]
As an example of the heat insulation panel 1 made of hard polyurethane, an isocyanate and a polyol manufactured by Huntsman Japan Co. are mixed and foamed and molded in an environment of 55 ° C. At this time, the mixing ratio of isocyanate and polyol is 62:38 wt /%.
[0014]
Further, the corrugated thin plate 2 is formed in a rectangular shape having the same size as the heat insulating panel 1 by an iron thin plate having a thickness of 0.1 to 0.5 mm, and the corrugated cross section, that is, the mountain streak 2m and the trough 2v are in the vertical direction. It is bent into a waveform so as to be oriented, and is configured to obtain high rigidity against a load in the vertical direction. The higher the corrugated height of the corrugated thin plate 2 is, the higher the rigidity is. However, in order to use it as a heat insulating material, the height of the corrugated plate is desirably 5 to 15 mm.
[0015]
As an example of the corrugated thin plate 2, an iron thin plate manufactured by Shinnaka Steel Co., Ltd. processed to have a plate thickness of 0.25 mm, a corrugated pitch of 31.8 mm, and a corrugated height of 9.0 mm is used.
[0016]
Next, the manufacturing method of the heat insulation panel 1 laminated with the corrugated thin plate 2 will be described with reference to FIG. 7. The polyurethane machine 20 is supplied with isocyanate and polyol from an isocyanate tank 21 and a polyol tank 22, respectively. Pressurized by the polyurethane machine 20 and fed to the mixing head 23. In the mixing head 23, isocyanate and polyurethane are mixed, and the mixed liquid is supplied from the nozzle 23 </ b> N of the mixing head 23 to the molding machine 24 of the heat insulating panel 1.
[0017]
The molding machine 24 for the heat insulation panel 1 is disposed in front of the mixing head 23, and has an upper paper (paper board) 4 and a lower paper (paper board) in the upper and lower portions of the molding space S of the heat insulation panel 1. 5 upper and lower conveying means 25 and 26 are respectively provided. The upper conveying means 25 of the upper paper 4 is composed of an upper belt conveyor, and the upper paper 4 wound around the rollers 27 is conveyed by the upper belt conveyor 25 from above the forming space S from the carry-in end to the carry-out end. The Further, the lower sheet conveying means 26 for the lower paper 5 is also composed of a lower belt conveyor, and the lower paper 5 wound around the rollers 28 moves the lower part of the molding space S from the carry-in end to the carry-out end by the lower belt conveyor 26. Be transported. The corrugated thin plate 2 is inserted on the lower belt conveyor 26 and simultaneously, a mixed liquid of isocyanate and polyol is spread on the corrugated thin plate 2 from the mixing head 23. At this time, the corrugated thin plate 2 may be placed on the distributed liquid mixture.
[0018]
While the mixed liquid is conveyed together with the corrugated thin plate 2 by the upper and lower belt conveyors 25 and 26, an unfoamed polyurethane material made of the mixed liquid is foamed in the molding space S maintained at a predetermined temperature. Thereby, the rigid polyurethane foam, that is, the heat insulating panel 1 is formed, and at the same time, the corrugated thin plate 2 is laminated on one surface thereof. At the time of foaming, the upper paper 4 and the lower paper 5 are integrally laminated on the upper and lower surfaces of the heat insulating panel 1 on which the corrugated thin board 2 is laminated, and a gap formed between the corrugated thin board 2 and the lower paper 5. A portion of the foamed polyurethane foam is loaded. The heat insulation panel 1 on which the corrugated thin plate 2 is laminated is cut to a predetermined size and carried out by another belt conveyor 29. The completed insulating panel 1 has a polyurethane density of 30 kg / m 3 .
[0019]
The metal bar member 3 is fixed to the heat insulating panel 1 laminated with the corrugated thin plate 2 that has been molded as described above and cut to a predetermined size.
[0020]
As shown in FIGS. 1-3, the said bar member 3 shape | molds a strip | belt-shaped iron thin plate in a cross-section transverse T character shape, and is the horizontal part which protrudes horizontally from the vertical part 3V and its intermediate part one side. 3H, and is formed to have substantially the same length as the lateral width of the heat insulating panel 1 and the corrugated thin plate 2. A plurality of mounting holes 6 are arranged in the horizontal portion 3H at intervals in the longitudinal direction.
[0021]
The bar member 3 is integrally joined to the upper end surface of the heat insulating panel 1 on which the corrugated thin plate 2 is laminated. That is, as shown in FIG. 3, the lower half of the vertical portion 3 </ b> V of the bar member 3 is joined to the upper outer surface of the corrugated thin plate 2, and the horizontal portion 3 </ b> H is brought into close contact with the upper surface of the heat insulating panel 1. Thus, the plurality of mounting holes 6 of the horizontal portion 3H communicate with the upper end surface of the heat insulating panel 1.
[0022]
Next, with reference to FIGS. 4-6, the case where the building form F is constructed | assembled using the said heat insulation and formwork building material A which consists of the heat insulation panel 1, the corrugated thin board 2, and the bar member 3 is demonstrated.
[0023]
As shown in FIG. 4, there is a concrete placement space 8 on the foundation B, and a plurality of lowermost thermal insulation and formwork building materials A (subscript d is added to A) on both sides thereof, The corrugated thin plate 2 is built in a row and connected to the opposite side of the concrete placement space 8, and then a plurality of assemblies are installed on the upper end surfaces of the heat insulation and formwork building materials Ad, Ad on the outermost and lowermost layers thereof. The both ends of the ties 10 are inserted through the mounting holes 6, and the inner and outer bottom-stage inner and outer heat-insulating / framework materials Ad, Ad are joined together, and then the lower-most inner and outer heat-insulating On the upper end surface of the formwork building material Ad, the lower end surface of the heat insulation and formwork building material Am (A is denoted by m) in the middle stage is connected to the lower end of the heat insulation and formwork building material A. Built in the same direction, and in the middle stage, the outer heat insulation and formwork building materials Am, Am on the upper end surface of Am The assembly ties 10 are inserted through the mounting holes 6 and the intermediate heat insulation and mold frame building materials Am and Am are joined together, and in the same manner, the other intermediate heat insulation and mold frames are connected. The building material Am and the outermost heat insulation / framework building material Au (A is denoted by u) are sequentially built in the upper end surface of the outer middle heat insulation / framework building material Am inside the lower part, These upper end surfaces are connected by a plurality of the assembly ties 10.
[0024]
As shown in FIGS. 5 and 6, the assembly tie 10 is formed by welding a reinforcing material 10b to a main body 10a formed by bending round steel into a bite shape, and as shown in FIG. The bent end portion of the reinforcing material 10a collides with the inner surface of the heat insulating panel 1 to prevent the heat insulating material 1 from falling.
[0025]
As shown in FIG. 4, a mold F composed of inner and outer mold walls WI and WO is assembled. At this time, each heat insulation and formwork building material A constituting the formwork walls WI and WO is very lightweight, and can be coupled to the heat insulation and formwork building material A by inserting the assembly tie 10, Since the conventional support work such as thick ends is unnecessary, the construction work of the mold F can be performed quickly, easily and at low cost.
[0026]
Further, after the mold F is completed, concrete is placed in the concrete placing space 8 between the inner and outer mold walls WI and WO. At this time, each heat insulation and formwork building material A constituting the formwork walls WI and WO has a mountain line 2m and a valley line 2v up and down on one side of the heat insulation panel 1 made of hard polyurethane (on the side opposite to the concrete placement space). Since the corrugated thin plate 2 oriented in the direction is laminated, the rigidity in the vertical direction is high, and it is not deformed or damaged even when subjected to the concrete placing pressure.
[0027]
In this case, since the heat insulation panel 1 made of hard polyurethane does not need to have load resistance itself, the hard polyurethane has a low density comparable to that of a heat insulating material not intended for use in a formwork. It's okay.
[0028]
Next, with reference to FIGS, will be described actual施例of the present invention.
[0029]
FIG. 8 is a partially broken perspective view of a heat-insulating / framework building material, and FIG. 9 is a cross-sectional view taken along line 9-9 in FIG. 8. The same elements as those in the reference example are denoted by the same reference numerals.
[0030]
The actual施例is of the form F, among the outer mold wall WI, is obtained by allowing a curved construction of WO, the insulating panel 1 constituting the heat-insulating and formwork construction material A has, in its lateral width direction A plurality of slits 40 are inserted in parallel in the vertical direction, that is, in the direction of the ridges 2m and valleys 2v of the corrugated thin plate 2 at equal intervals, and the flat portion 3H of the bar member 3 is also parallel to the slits 40. Insert another slit 41. Thereby, the heat insulation and formwork building material A can construct the outside formwork walls WI and WO inside the corrugated thin plate 2 in the corrugated direction, that is, curved in an arc shape in plan view. By placing concrete in the installation space 8, it is possible to construct a curved housing wall that is curved in an arc shape in plan view.
[0031]
Thus, the actual施例also adiabatic and formwork construction material A has a thermal insulation panel 1 made of polyurethane rigid by a waveform sheet 2 to be laminated thereto, lightweight, and fully countered by concrete設圧force Can be maintained.
[0032]
As mentioned above, although the reference example and the Example of this invention were demonstrated, this invention is not limited to the Example, A various Example is possible within the scope of the present invention. For example, in the above-described embodiment, the case where the corrugated thin plate is formed of an iron plate has been described. However, the corrugated thin plate may be formed of another effective thin plate such as another metal plate or a rigid resin plate.
[0033]
【The invention's effect】
As described above, according to the first aspect of the present invention, the strength is high, the weight is light, the heat insulating property is high, the handling is easy when used as a mold plate, and the pressure of the cast concrete is high. Therefore, it is possible to provide a heat-insulating / framework building material that can be used as a heat-insulating wall that is not easily deformed and is easy to handle when used as a heat-insulating building material. In addition, in the heat insulation panel, a plurality of slits are formed in parallel with the direction of the ridges and valleys of the corrugated thin plate at intervals in the longitudinal direction of the bar member, and the bar member is also parallel to the slits. Since other slits are formed, the curved frame wall can be easily constructed, and after the building is constructed, the heat insulating and mold frame building material can be used as the curved heat insulating wall.
[0034]
Furthermore, according to the invention described in claim 2 , in the building form using the heat insulating and forming frame building material of claim 1, when assembling the form made of the inner and outer form walls, The heat insulation and formwork building materials that make up the frame walls are extremely lightweight, and the assembly ties are inserted into and bonded to these heat insulation and formwork building materials, eliminating the need for conventional support work such as thick ends. The frame construction work can be performed quickly, easily and at low cost. In addition, after completion of the formwork, when placing concrete in the concrete placement space between the inner and outer formwork walls, the heat insulating and formwork building material constituting the formwork wall is a heat insulating panel made of hard polyurethane. The corrugated thin plate with the mountain and valley lines oriented vertically is laminated on one side, so the rigidity in the vertical direction is high, and it can be deformed or damaged even when subjected to concrete placing pressure. There is no.
[0035]
Furthermore, according to the invention of the present claim 3, it was used a heat-insulating and formwork construction material of claim 1, wherein, in the building formwork, on which the same effect as the invention of claim 2, wherein, The curved formwork wall of the formwork can be constructed easily and easily.
[Brief description of the drawings]
FIG. 1 is a partially broken perspective view of a heat insulating and formwork building material according to a reference example . FIG. 2 is a sectional view taken along line 2-2 in FIG. 1. FIG. 3 is a sectional view taken along line 3-3 in FIG. 4 is a partially broken perspective view of a building formwork using a heat-insulating and formwork building material. FIG. 5 is an enlarged cross-sectional view taken along line 5-5 in FIG. 4. FIG. FIG. 7 is a schematic view of an apparatus for manufacturing a heat insulating panel laminated with corrugated thin plates. FIG. 8 is a partially broken perspective view of a heat insulating and forming frame building material according to an embodiment of the present invention . Sectional view along line 9-9 in Fig. 8 [Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 ... Thermal insulation panel 2 ... Corrugated thin plate 2m ...... Mountain streak 2v ...... Valley streak 3 ... Bar member 6 ... Mounting hole 8 ... ··· Concrete placement space 10 ··· Assembly tie 40 ··· Slit 41 ··· Other slits Ad ··· Insulation at the lowermost stage and formwork material Am · · · Insulation at the middle level Combined formwork material Au ··· Bottom heat insulation and formwork material B ··· Base F ··· Formwork WI · · · Inside formwork wall WO · · · Outer type Frame wall

Claims (3)

コンクリートの打設空間(8)を存して互いに対峙される内、外側の型枠壁(WI,WO)よりなる型枠(F)を構成する断熱兼型枠建材であって、
硬質のポリウレタンよりなる断熱パネル(1)と、該断熱パネル(1)の、打設されるコンクリートと接触する面と反対側の一方の片面にラミネートされる波形薄板(2)と、前記断熱パネル(1)と波形薄板(2)の一端面の全長に亘り接合されるバー部材(3)とよりなり、
前記波形薄板(2)は、その波形の山すじ(2m)および谷すじ(2v)が、前記バー部材(3)の長手方向と直交しており、記バー部材(3)には、前記断熱パネル(1)の一端面に通じる複数の取付孔(6)が列設され、前記断熱パネル(1)には、前記波形薄板(2)の山すじ(2m)および谷すじ(2v)の方向と平行に複数のスリット(40)が、前記バー部材(3)の長手方向に間隔をあけて形成され、また、前記バー部材(3)にも、前記スリット(40)と平行な他のスリット(41)が形成されていることを特徴とする、熱兼型枠建材。
Inside the concrete placement space (8) facing each other, a heat insulation and formwork building material constituting the formwork (F) made of the outside formwork wall (WI, WO),
A heat insulating panel (1) made of hard polyurethane, a corrugated thin plate (2) laminated on one side of the heat insulating panel (1) opposite to the surface in contact with the placed concrete, and the heat insulating panel (1) and the bar member (3) joined over the entire length of one end face of the corrugated thin plate (2),
The waveform sheet (2) is a mountain streaks (2m) and valleys streak of the waveform (2v) is said is orthogonal to the longitudinal direction of the bar member (3), before Symbol bar member (3), the A plurality of mounting holes (6) communicating with one end surface of the heat insulation panel (1) are arranged in a row, and the heat insulation panel (1) has a mountain line (2m) and a valley line (2v) of the corrugated thin plate (2). A plurality of slits (40) parallel to the direction are formed at intervals in the longitudinal direction of the bar member (3), and the bar member (3) also includes other slits (40) parallel to the slit (40). characterized in that the slit (41) is formed, adiabatic and formwork construction materials.
請求項1記載の断熱兼型枠建材を使用した、建築用型枠であって、
基礎(B)上にコンクリートの打設空間(8)を存して、最下段、少なくとも一段の中間段および最上段の各断熱兼型枠建材(Ad,Am,Au)を、それらの波形薄板(2)をコンクリート打設空間(8)の反対側に位置させ、かつ、それらの波形薄板(2)の山すじ(2m)および谷すじ(2v)を上下方向に指向させて、順次に鉛直方向に建て込み、各段に対応する両断熱兼型枠建材(Ad,Am,Au)の上端面間に、複数のかすがい状アッセンブリタイ(10)を跨がらせて、その両端を両上端面にそれぞれ差し込み、前記各段の断熱兼型枠建材(Ad,Am,Au)同志を一体に結合し、前記コンクリート打設空間(8)を存して対峙する、内、外側の型枠壁(WI,WO)を構成してなることを特徴とする、建築用型枠。
A building form using the heat insulating and formwork building material according to claim 1,
There is a concrete placement space (8) on the foundation (B), and the bottom, at least one intermediate and top thermal insulation and formwork building materials (Ad, Am, Au), their corrugated sheet (2) is positioned on the opposite side of the concrete placement space (8), and the corrugated thin plate (2) is vertically oriented with the mountain lines (2m) and valley lines (2v) oriented vertically. Build in the direction and span a plurality of brace-like assembly ties (10) between the upper end surfaces of both heat-insulating and formwork building materials (Ad, Am, Au) corresponding to each step. Inner and outer formwork walls that are inserted into the end faces, and in which the heat insulating and formwork building materials (Ad, Am, Au) of each step are joined together and face each other in the concrete placement space (8). A formwork for construction, characterized by comprising (WI, WO).
請求項記載の断熱兼型枠建材を使用した、建築用型枠であって、
基礎(B)上にコンクリートの打設空間(8)を存して、最下段、少なくとも一段の中間段および最上段の各断熱兼型枠建材(Ad,Am,Au)を、それらの波形薄板(2)をコンクリート打設空間(8)の反対側に位置させ、かつそれらの波形薄板(2)の山すじ(2m)および谷すじ(2v)を上下方向に指向させて平面視弧状に湾曲させて、順次に鉛直方向に建て込み、各段に対応する両断熱兼型枠建材(Ad,Am,Au)の上端面間に、複数のかすがい状アッセンブリタイ(10)を跨がらせて、その両端を両上端面にそれぞれ差し込み、前記各段の断熱兼型枠建材(Ad,Am,Au)同志を一体に結合し、前記コンクリート打設空間(8)を存して対峙する、内、外側の型枠壁(WI,WO)を構成してなることを特徴とする、建築用型枠。
A building form using the heat insulating and formwork building material according to claim 1 ,
There is a concrete placement space (8) on the foundation (B), and the bottom, at least one intermediate and top thermal insulation and formwork building materials (Ad, Am, Au), their corrugated sheet (2) is positioned on the opposite side of the concrete placement space (8), and the corrugated thin plate (2) is curved in a plan view arc shape with the ridges (2m) and valley ridges (2v) directed vertically. Then, it is built in the vertical direction one after another, and a plurality of brace-like assembly ties (10) are straddled between the upper end surfaces of both heat-insulating / framework building materials (Ad, Am, Au) corresponding to each step. The both ends are inserted into both upper end surfaces, respectively, and the heat insulating and formwork building materials (Ad, Am, Au) of the respective steps are joined together to confront each other in the presence of the concrete placement space (8). , Characterized in that it forms an outer formwork wall (WI, WO) , Architectural formwork.
JP2002238240A 2002-08-19 2002-08-19 Thermal insulation and formwork building material and building formwork using the building material Expired - Fee Related JP3845346B2 (en)

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