JP4593033B2 - Heating panel - Google Patents

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Publication number
JP4593033B2
JP4593033B2 JP2001259257A JP2001259257A JP4593033B2 JP 4593033 B2 JP4593033 B2 JP 4593033B2 JP 2001259257 A JP2001259257 A JP 2001259257A JP 2001259257 A JP2001259257 A JP 2001259257A JP 4593033 B2 JP4593033 B2 JP 4593033B2
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Prior art keywords
panel
heating panel
edge
heating
meandering manner
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JP2001259257A
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JP2003074882A (en
Inventor
滋子 飯島
典顕 井上
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Mitsubishi Plastics Inc
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Mitsubishi Plastics Inc
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Description

【0001】
【発明の属する技術分野】
本発明は、温水等の熱媒循環による暖房構造の形成に用いられ、敷設作業が容易な暖房用パネルに関する。
【0002】
【従来の技術】
従来より、温水等の熱媒循環による、例えば床暖房構造としては、上面に熱媒循環用可撓性パイプの収納用溝を蛇行状に穿設した発泡樹脂製或いは木製等の板状体の該パイプ収納用溝に、熱媒循環用可撓性パイプを収納し、その上をアルミニウム箔等の放熱材としての可撓性シートで被覆し、該シートを板状体の非溝部に貼着してなる床暖房パネルを、床下地材、或いは既設の床仕上げ材上に敷設し、その上に床仕上げ材を敷設した構造のものが多用されている。
【0003】
しかしながら、従来の前記床暖房パネルは、嵩高く、又、重量もあって、それに伴う取扱作業性や施工性等に劣り、更に、発泡樹脂製或いは木製等の板状体のパイプ収納用溝に収納された熱媒循環用可撓性パイプが放熱材としての可撓性シートに固着、一体化されてはいないことから、パイプと可撓性シートとの間に空間が生じて、放熱効率が必ずしも優れているとは言えず、床暖房機能を十分に発現し得ないという欠点があった。
【0004】
これに対して、本願出願人は、熱媒循環用可撓性パイプがその外周面の円周方向の一部を可撓性シートの一方の面に固着されることにより蛇行状に配設されてなる放熱器、が前記欠点を解消できることを発明して、先に特許出願し(特願2000−298890号)、引き続いて、その放熱器の配設パイプの収納用溝を穿設した暖房パネルとの組み合わせによる敷設作業性等について検討中であった。
【0005】
【発明が解決しようとする課題】
本発明は、前述の従来技術に鑑みてなされたもので、従って、本発明は、熱媒循環用可撓性パイプがその外周面の円周方向の一部を可撓性シートの一方の面に固着されることにより蛇行状に配設されてなる放熱器を用いて暖房構造を形成するにおいて、該配設パイプ収納用の溝が穿設された暖房用パネルであって、敷設作業が容易な暖房用パネルを提供することを目的とする。
【0006】
【課題を解決するための手段】
本発明は、熱媒循環用可撓性パイプがその外周面の円周方向の一部を可撓性シートの一方の面に固着されることにより蛇行状に配設されてなる放熱器の該配設パイプ収納用の溝が穿設された暖房用パネルであって、平面長方形状の両短辺を左右に置いた平面において長辺を4等分し短辺を2等分して、左片面左上部、左片面左下部、左片面右上部、左片面右下部、右片面左上部、右片面左下部、右片面右上部、及び右片面右下部に8分割したとき、左片面右下部の下端縁から同じく左片面右下部の下端縁に通じ、その間の左片面を略平行して蛇行状に走る偶数の溝と、右片面左下部の下端縁から同じく右片面左下部の下端縁に通じ、その間の右片面を略平行して蛇行状に走る偶数の溝とが穿設された第1パネルと、左片面左上部の上端縁から左片面右下部の下端縁に通じ、その間の左片面を略平行して蛇行状に走る偶数の溝と、右片面右上部の上端縁から右片面左下部の下端縁に通じ、その間の右片面を略平行して蛇行状に走る偶数の溝とが穿設された第2パネルの2種のパネルを組み合わせて構成されてなる暖房用パネル、を要旨とする。
【0007】
【発明の実施の形態】
本発明の暖房用パネルを図面に基づいて説明すると、図1(a)は本発明の暖房用パネルを構成する第1パネルの一実施例を示す裏面平面図、図1(b)は本発明の暖房用パネルを構成する第2パネルの一実施例を示す裏面平面図、図2は図1の第1パネルと第2パネルを組み合わせて構成された暖房用パネルの一実施例を示す裏面平面図、図3は図2の暖房用パネルに組み合わせて用いられる放熱器の平面図、図4は本発明の暖房用パネルを用いて放熱器と組み合わせて床暖房構造を形成したときの一実施例を示す部分拡大断面図であり、1は暖房用パネル、1Aは第1パネル、1aは第1パネルにおける放熱器の配設パイプ収納用溝、1Bは第2パネル、1bは第2パネルにおける放熱器の配設パイプ収納用溝、2は放熱器、2aは熱媒循環用可撓性パイプ、2bは可撓性シート、3は床材である。
【0008】
本発明の暖房用パネル1に組み合わせて用いられる放熱器2は、図3に示されるように、平面形状は、通常、長方形状、正方形状等の矩形状であり、熱媒循環用可撓性パイプ2aが可撓性シート2bの一方の面に、放熱器2の図面上の左片面側と右片面側とに分けて、それぞれに少なくとも1系列を往復させた熱媒循環用パイプ1aが蛇行状に配設されてなり、図3には、左片面側と右片面側とにそれぞれ2系列を往復させた例が示されている。
【0009】
ここで、熱媒循環用可撓性パイプ2aとしては、例えば、ポリエチレン、ポリブテン、ポリプロピレン等、或いはそれらの架橋体等の樹脂製であって、通常、外径が5〜30mm程度、内径が3〜20mm程度であり、そのパイプ内を循環させる熱媒としては、例えば、温水、水蒸気、オイル等が用いられる。
【0010】
又、可撓性シート2bとしては、例えば、アルミニウム箔、錫箔、銅箔、ステンレス鋼箔等の金属箔、金属繊維製或いは合成樹脂繊維製或いは天然繊維製等の織布や不織布、合成樹脂シート、及び、これらの積層体等が用いられ得るが、中で、高熱伝動率を有することによって放熱材としての機能を効率的に発現し得る面から、金属箔、又は金属繊維製の織布、不織布が好ましく、アルミニウム箔が特に好ましい。尚、これらの可撓性シートの厚みは、通常、10〜500μm程度とするのが好ましい。
【0011】
この放熱器2の熱媒循環用可撓性パイプ2aは、図4に示されるように、その外周面の円周方向の一部が、可撓性シート2bの一方の面に、例えば接着剤、粘着テープ等によって固着されており、その固着の幅は、外周面の全円周に対して1/8〜1/3の範囲とするのが好ましく、1/6〜1/4の範囲とするのが特に好ましい。又、その固着は、熱媒循環用可撓性パイプ2aの長手方向に連続させるのが好ましいが、長手方向に不連続であってもよい。
【0012】
尚、この放熱器2は、軽量で敷設が簡便であり、住宅等の床暖房はもとより、壁暖房、天井暖房等にも用いることができ、又、被暖房空間に対して可撓性シート側を内側としても外側としても用いることができる。
【0013】
そして、本発明の暖房用パネル1は、この放熱器2と組み合わせて暖房構造を形成するにおいて、放熱器2の配設パイプ2a収納用の溝が穿設された、同一寸法の第1パネル1Aと第2パネル1Bの2種のパネルを組み合わせて構成されてなる。
【0014】
その第1パネル1Aは、図1(a)に示されるように、平面長方形状の両短辺を左右に置いた平面において長辺を4等分し短辺を2等分して、左片面左上部1Aa、左片面左下部1Ab、左片面右上部1Ac、左片面右下部1Ad、右片面左上部1Ae、右片面左下部1Af、右片面右上部1Ag、及び右片面右下部1Ahに8分割したとき、左片面右下部1Adの下端縁1Ajから同じく左片面右下部1Adの下端縁1Ajに通じ、その間の左片面を略平行して蛇行状に走る偶数の溝1aと、右片面左下部1Afの下端縁1Ajから同じく右片面左下部1Afの下端縁1Ajに通じ、その間の右片面を略平行して蛇行状に走る偶数の溝1aとが穿設されており、図1(a)には、左片面と右片面とにそれぞれ4本の溝が穿設された例が示されている。
【0015】
又、その第2パネル1Bは、図1(b)に示されるように、平面長方形状の両短辺を左右に置いた平面において長辺を4等分し短辺を2等分して、左片面左上部1Ba、左片面左下部1Bb、左片面右上部1Bc、左片面右下部1Bd、右片面左上部1Be、右片面左下部1Bf、右片面右上部1Bg、及び右片面右下部1Bhに8分割したとき、左片面左上部1Baの上端縁1Biから左片面右下部1Bdの下端縁1Bjに通じ、その間の左片面を略平行して蛇行状に走る偶数の溝1bであって、その溝1b端部の位置を上端縁1Biにおいては前記第1パネル1Aの右片面左下部1Afの下端縁1Ajにおける位置と一致させ、下端縁1Bjにおいては前記第1パネル1Aの左片面右下部1Adの下端縁1Ajにおける位置と一致させた溝1bと、右片面右上部1Bgの上端縁1Biから右片面左下部1Bfの下端縁1Bjに通じ、その間の右片面を略平行して蛇行状に走る偶数の溝1bであって、その溝1b端部の位置を上端縁1Biにおいては前記第1パネル1Aの左片面右下部1Adの下端縁1Ajにおける位置と一致させ、下端縁1Bjにおいては前記第1パネル1Aの右片面左下部1Afの下端縁1Ajにおける位置と一致させた溝1bとが穿設されており、図1(b)には、左片面と右片面とにそれぞれ4本の溝が穿設された例が示されている。
【0016】
そして、図2に示されるように、敷設された第1パネル1Aの左片面右下部1Adの下端縁1Ajから同じく左片面右下部1Adの下端縁1Ajに通じる溝1a端部に、第2パネル1Bをその右片面右上部1Bgの上端縁1Biから右片面左下部1Bfの下端縁1Bjに通じる溝1bの右片面右上部1Bgの上端縁1Biの溝1b端部を合致させて敷設すると共に、敷設された第1パネル1Aの右片面左下部1Afの下端縁1Ajから同じく右片面左下部1Afの下端縁1Ajに通じる溝1a端部に、別の第2パネル1Bをその左片面左上部1Baの上端縁1Biから左片面右下部1Bdの下端縁1Bjに通じる溝1bの左片面左上部1Baの上端縁1Biの溝1b端部を合致させて並列に敷設する。
【0017】
続いて、敷設された第2パネル1Bの右片面左下部1Bfの下端縁1Bjの溝1b端部、及び別に敷設された第2パネル1Bの左片面右下部1Bdの下端縁1Bjの溝1b端部に、第2パネルをその左片面左上部1Baの上端縁1Biから左片面右下部1Bdの下端縁1Bjに通じる溝1bの左片面左上部1Baの上端縁1Biの溝1b端部、及び右片面右上部1Bgの上端縁1Biから右片面左下部1Bfの下端縁1Bjに通じる溝1bの右片面右上部1Bgの上端縁1Biの溝1b端部をそれぞれ合致させて敷設し、続いて同様の敷設を繰り返し、最終的には、第2パネル1Bを、その左片面左上部1Baの上端縁1Biから左片面右下部1Bdの下端縁1Bjに通じる溝1bと、右片面右上部1Bgの上端縁1Biから右片面左下部1Bfの下端縁1Bjに通じる溝1bとを開口させ、本発明の暖房用パネルが構成される。
【0018】
そして、図2において、図面上中央部の第1パネル1Aと第2パネル1Bが敷設された箇所に前記放熱器2が敷設されることにより、本発明の暖房用パネル1と、前記放熱器2とが組み合わされて暖房構造が形成されることとなり、図面上左側の第2パネル1Bの左片面が交互に突出した箇所、及び、図面上右側の第2パネル1Bの右片面が交互に突出した箇所には放熱器2は敷設されず、又、第1パネル1A及び第2パネル1B共に敷設されていない箇所にはダミー材が敷設されて、共に、非暖房領域とされる。
【0019】
以上のように、本発明の暖房用パネル1は、第1パネル1Aと第2パネル1Bの2種のパネルを組み合わせて構成されてなるので、敷設作業が容易であり、更に、被暖房面積に応じた敷設が可能であると共に、パネル自体の種類が少ないことから、少品種大量生産に適し、製品管理も容易である。
【0020】
そして、本発明のこの暖房用パネル1は、前述したように、前記放熱器2が住宅等の床暖房、壁暖房、天井暖房等に用いることができ、又、被暖房空間に対して可撓性シート2b側を内側としても外側としても用いることができることに応じて、例えば、床暖房構造を形成する場合には、本発明の暖房用パネル1として表面に前述した溝1a及び1bが穿設された床下地材が敷設され、その上に、前記放熱器2が被暖房空間に対して可撓性シート2b側を内側として、暖房用パネル1の溝1a及び1bに放熱器2の配設パイプ2aを収納して敷設されることにより床暖房構造が形成され、或いは、前記放熱器2が被暖房空間に対して可撓性シート2b側を外側として敷設され、その上に、本発明の暖房用パネル1として裏面に前述した溝1a及び1bが穿設された床仕上げ材が、その溝1a及び1bに放熱器2の配設パイプ2aを収納して敷設されることにより床暖房構造が形成される。又、同様に、壁暖房構造を形成する場合には、本発明の暖房用パネル1は、壁下地材の表面又は壁仕上げ材の裏面に前述した溝1a及び1bが穿設されたものであり、又、天井暖房構造を形成する場合には、天井下地材の表面又は天井仕上げ材の裏面に前述した溝1a及び1bが穿設されたものである。
【0021】
以上の放熱器2と本発明の暖房用パネル1との組み合わせによる暖房構造の形成において、本発明においては、暖房用パネル1が床暖房用パネルである床暖房構造の形成に好適であり、且つ、被暖房空間に対して可撓性シートを外側とした床暖房構造の形成に好適であり、従って、本発明の暖房用パネル1としては、床仕上げ材の裏面に前記溝1aが穿設された第1パネル1Aと、床仕上げ材の裏面に前記溝1bが穿設された第2パネル1Bから構成されるのが好ましい。
【0022】
図4が、その床暖房構造の一実施例を示す部分拡大断面図であり、床材(新設の場合は床下地材、既設の場合は床仕上げ材)3上に、放熱器2がその熱媒循環用パイプ2aを被暖房空間に対して内側にし、その可撓性シート2bを被暖房空間に対して外側にして敷設され、その上に、裏面に配設パイプ収納用の溝1a及び1bが穿設された床仕上げ材からなる本発明の暖房用パネル1が、放熱器2の配設パイプ2aをその溝1a及び1bに収納して敷設されることにより形成されている。
【0023】
ここで、暖房用パネル1を構成する床仕上げ材としては、例えば、代表的には、フローリング材等が挙げられ、その厚みは、通常、8〜15mm程度とされ、又、裏面に穿設された放熱器2の配設パイプ2a収納用溝1a及び1bの形状は、断面略U字形状、断面略コ字形状等、特に限定されるものではないが、深さが収納する配設パイプ2aの外径の1.05〜1.95倍の断面略U字形状であるのが、温度分布をなくす面から好ましい。
【0024】
又、その深さの範囲内で、放熱器2における配設パイプ2aの熱媒導入口に対応する深さを深くし、熱媒排出口に対応する深さを浅くすることにより、導入・排出口近辺における温度分布を更に抑えることができる。尚、床仕上げ材としての強度の面から、溝底における床仕上げ材の厚みが3mm以上であるのが好ましい。
【0025】
【発明の効果】
本発明によれば、熱媒循環用可撓性パイプがその外周面の円周方向の一部を可撓性シートの一方の面に固着されることにより蛇行状に配設されてなる放熱器を用いて暖房構造を形成するにおいて、該配設パイプ収納用の溝が穿設された暖房用パネルであって、敷設作業が容易な暖房用パネルを提供することができる。更に、本発明の暖房用パネルは、被暖房面積に応じた敷設が可能であると共に、パネル自体の種類が少ないことから、少品種大量生産に適し、製品管理も容易である。
【図面の簡単な説明】
【図1】(a)は本発明の暖房用パネルを構成する第1パネルの一実施例を示す裏面平面図、(b)は本発明の暖房用パネルを構成する第2パネルの一実施例を示す裏面平面図である。
【図2】図1の第1パネルと第2パネルを組み合わせて構成された暖房用パネルの一実施例を示す裏面平面図である。
【図3】図2の暖房用パネルに組み合わせて用いられる放熱器の平面図である。
【図4】本発明の暖房用パネルを用いて放熱器と組み合わせて床暖房構造を形成したときの一実施例を示す部分拡大断面図である。
【符号の説明】
1;暖房用パネル
1A;第1パネル
1B;第2パネル
1Aa,1Ba;左片面左上部
1Ab,1Bb;左片面左下部
1Ac,1Bc;左片面右上部
1Ad,1Bd;左片面右下部
1Ae,1Be;右片面左上部
1Af,1Bf;右片面左下部
1Ag,1Bg;右片面右上部
1Ah,1Bh;右片面右下部
1Bi;上端縁
1Aj,1Bj;下端縁
1a,1b;放熱器の配設パイプ収納用溝
2;放熱器
2a;熱媒循環用可撓性パイプ
2b;可撓性シート
3;床材
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a heating panel that is used for forming a heating structure by circulating a heat medium such as hot water and that is easy to install.
[0002]
[Prior art]
Conventionally, for example, a floor heating structure by circulating a heat medium such as hot water is made of a foamed resin or wooden plate-like body having a groove for storing a flexible pipe for heat medium circulation formed in a serpentine shape on the upper surface. A flexible pipe for circulating the heat medium is stored in the pipe storing groove, and the top is covered with a flexible sheet as a heat radiating material such as aluminum foil, and the sheet is adhered to the non-grooved portion of the plate-like body. A floor heating panel constructed as described above is laid on a floor base material or an existing floor finishing material, and a floor finishing material is laid thereon.
[0003]
However, the conventional floor heating panel is bulky and heavy, and is inferior in handling workability and workability associated therewith, and further, in the pipe storage groove of a plate-like body made of foamed resin or wood. Since the stored flexible pipe for circulating the heat medium is not fixed and integrated with the flexible sheet as the heat radiating material, a space is created between the pipe and the flexible sheet, and the heat radiation efficiency is improved. It was not necessarily excellent, and there was a drawback that the floor heating function could not be fully expressed.
[0004]
On the other hand, the applicant of the present application arranges the flexible pipe for circulating the heat medium in a meandering manner by fixing a part of the outer circumferential surface in the circumferential direction to one surface of the flexible sheet. Invented that the above-mentioned heat dissipator can eliminate the above-mentioned drawbacks, previously applied for a patent (Japanese Patent Application No. 2000-298890), and subsequently, a heating panel in which a groove for housing the heat dissipating pipe was formed. The laying workability, etc. in combination with was being studied.
[0005]
[Problems to be solved by the invention]
The present invention has been made in view of the above-described prior art, and therefore, the present invention provides a flexible pipe for circulating a heat medium in which a part of the outer peripheral surface in the circumferential direction is provided on one surface of the flexible sheet. When a heating structure is formed by using a radiator arranged in a meandering manner by being fixed to a heating panel, the heating panel is provided with a groove for accommodating the arranged pipe, and laying work is easy An object is to provide a heating panel.
[0006]
[Means for Solving the Problems]
The present invention provides a radiator for a heat radiator in which a flexible pipe for circulating a heat medium is arranged in a meandering manner by fixing a part of the outer circumferential surface in the circumferential direction to one surface of a flexible sheet. This is a heating panel with a groove for storing the installed pipe, and the long side is divided into four equal parts and the short side is divided into two equal parts in the plane where both short sides of the rectangular plane are placed on the left and right. When divided into 8 parts on the upper left side of one side, the lower left side of one side, the upper right part of the left side of one side, the lower right part of the left side of the single side, the upper left part of the right side of the single side, the lower left part of the right side of the right side, the upper right side of the right side of the single side. The lower edge also leads to the lower right edge on the lower right side of the left side, and the even number of grooves running in a meandering manner on the left side in parallel, and the lower edge of the lower left side of the right side to the lower edge of the lower left side of the right side. A first panel in which an even number of grooves running in a meandering manner are provided in parallel with the right side surface between the first panel and the upper left edge of the upper left side Connected to the lower edge of the lower right side of one side, the even number of grooves running in a meandering manner in parallel with the left side of the one side, and the upper edge of the upper right part of the right side to the lower edge of the lower left side of the right side, and the right side between them The gist of the present invention is a heating panel formed by combining two types of panels, the second panel, in which even-numbered grooves that run in a meandering manner in parallel are formed.
[0007]
DETAILED DESCRIPTION OF THE INVENTION
The heating panel of the present invention will be described with reference to the drawings. FIG. 1 (a) is a back plan view showing one embodiment of the first panel constituting the heating panel of the present invention, and FIG. 1 (b) is the present invention. FIG. 2 is a back plan view showing one embodiment of a heating panel configured by combining the first panel and the second panel of FIG. 1. 3 is a plan view of a radiator used in combination with the heating panel of FIG. 2, and FIG. 4 is an embodiment when a floor heating structure is formed in combination with a radiator using the heating panel of the present invention. 1 is a heating panel, 1A is a first panel, 1a is a radiator housing pipe storage groove in the first panel, 1B is a second panel, and 1b is heat dissipation in the second panel. Pipe storage groove, 2 is a radiator, 2a is a heating medium Ring for flexible pipes, 2b flexible sheet, 3 is a flooring material.
[0008]
As shown in FIG. 3, the radiator 2 used in combination with the heating panel 1 of the present invention has a rectangular planar shape such as a rectangular shape or a square shape, and is flexible for heat medium circulation. The pipe 2a divides into one side of the flexible sheet 2b on the left side and the right side in the drawing of the radiator 2, and the heat medium circulation pipe 1a that reciprocates at least one series respectively meanders. FIG. 3 shows an example in which two lines are reciprocated on the left side and the right side, respectively.
[0009]
Here, the flexible pipe 2a for circulating the heat medium is, for example, made of resin such as polyethylene, polybutene, polypropylene, or a cross-linked body thereof, and generally has an outer diameter of about 5 to 30 mm and an inner diameter of 3 For example, warm water, water vapor, oil, or the like is used as the heating medium that circulates in the pipe.
[0010]
Examples of the flexible sheet 2b include metal foils such as aluminum foil, tin foil, copper foil, and stainless steel foil, woven fabrics and nonwoven fabrics made of metal fibers, synthetic resin fibers, or natural fibers, and synthetic resin sheets. In addition, these laminates and the like can be used. Among them, a metal foil, or a woven fabric made of metal fibers, from the viewpoint that the function as a heat dissipation material can be efficiently expressed by having a high thermal conductivity. Nonwoven fabric is preferred, and aluminum foil is particularly preferred. The thickness of these flexible sheets is usually preferably about 10 to 500 μm.
[0011]
As shown in FIG. 4, the flexible pipe 2 a for circulating the heat medium of the radiator 2 has a circumferential part of its outer peripheral surface on one surface of the flexible sheet 2 b, for example, an adhesive. The width of the fixing is preferably in the range of 1/8 to 1/3 with respect to the entire circumference of the outer peripheral surface, and in the range of 1/6 to 1/4. It is particularly preferable to do this. Further, the fixation is preferably continuous in the longitudinal direction of the flexible pipe 2a for circulating the heat medium, but may be discontinuous in the longitudinal direction.
[0012]
The radiator 2 is lightweight and easy to lay, and can be used not only for floor heating of houses and the like, but also for wall heating and ceiling heating. Can be used both inside and outside.
[0013]
When the heating panel 1 of the present invention is combined with the radiator 2 to form a heating structure, a first panel 1A having the same dimensions, in which a groove for accommodating the arrangement pipe 2a of the radiator 2 is formed. And a combination of two types of panels, the second panel 1B.
[0014]
As shown in FIG. 1 (a), the first panel 1A has a plane rectangular shape in which both short sides are placed on the left and right sides, the long side is divided into four equal parts, and the short side is divided into two equal parts. Left upper part 1Aa, left single side left lower part 1Ab, left single side upper right part 1Ac, left single side right lower part 1Ad, right single side left upper part 1Ae, right single side left lower part 1Af, right single side upper right part 1Ag, and right single side right lower part 1Ah Then, the lower left edge 1Aj of the lower left side 1Ad of the left side is connected to the lower edge 1Aj of the lower right side 1Ad of the left side and the even number of grooves 1a running in a meandering manner substantially parallel to the left side of the left side 1Af An even-numbered groove 1a that penetrates from the lower end edge 1Aj to the lower end edge 1Aj of the lower left side 1Af of the right one side and runs in a meandering manner substantially parallel to the right side between them is formed in FIG. 1 (a). An example is shown in which four grooves are drilled on each of the left and right sides. To have.
[0015]
Further, as shown in FIG. 1 (b), the second panel 1B has a flat rectangular plane in which both short sides are placed on the left and right sides, the long side is divided into four equal parts, and the short side is divided into two equal parts, Left single left upper part 1Ba, left single left lower part 1Bb, left single right upper part 1Bc, left single right lower part 1Bd, right single left upper part 1Be, right single left lower part 1Bf, right single right upper part 1Bg, and right single right lower part 1Bh When divided, there is an even number of grooves 1b that run from the upper edge 1Bi of the upper left side 1Ba of the left side to the lower edge 1Bj of the lower right side 1Bd of the left side and run in a meandering manner along the left side of the left side. The position of the end portion is made to coincide with the position of the lower end edge 1Aj of the lower left portion 1Af of the right side of the first panel 1Ai at the upper end edge 1Bi, and the lower end edge of the lower right portion 1Ad of the left side of the first panel 1A at the lower end edge 1Bj. Matched with the position in 1Aj 1b and an even-numbered groove 1b that runs from the upper edge 1Bi of the right upper surface 1Bg of the right side to the lower edge 1Bj of the lower left part 1Bf of the right side of the right side and runs in a meandering manner substantially parallel to the right side of the right side. The upper edge 1Bi matches the position of the lower left edge 1Aj of the left lower part 1Ad of the left side of the first panel 1A, and the lower edge 1Aj of the lower left edge 1Af of the right side of the first panel 1A corresponds to the lower edge 1Bj. 1b is formed, and FIG. 1 (b) shows an example in which four grooves are formed on each of the left side surface and the right side surface.
[0016]
Then, as shown in FIG. 2, the second panel 1 </ b> B is provided at the end of the groove 1 a that leads from the lower end edge 1 </ b> Aj of the left lower part 1 </ b> Ad of the left one side of the laid first panel 1 </ b> A to the lower end edge 1 </ b> Aj of the left lower part 1 </ b> Ad. And the groove 1b end of the upper right edge 1Bi of the right upper surface 1Bg of the groove 1b extending from the upper edge 1Bi of the right upper surface 1Bg of the right one surface to the lower edge 1Bj of the lower left portion 1Bf of the right single surface. Another second panel 1B is connected to the upper end edge of the left upper part 1Ba of the left one side of the first panel 1A at the end of the groove 1a that leads from the lower end edge 1Aj of the lower left part 1Af of the right side of the first panel 1Af. 1Bi is laid in parallel with the end of the groove 1b of the upper left edge 1Bi of the upper left side 1Ba of the left upper surface 1Ba of the groove 1b leading from the lower edge 1Bj of the lower right 1Bd of the left one side.
[0017]
Subsequently, the groove 1b end of the lower end edge 1Bj of the lower left side 1Bf of the right side of the second panel 1B laid and the end of the groove 1b of the lower end edge 1Bj of the lower right side 1Bd of the left side of the second panel 1B laid separately. In addition, the second panel is connected to the upper edge 1Bi of the upper left side 1Ba of the left side and the lower edge 1Bj of the lower right side 1Bd of the left side of the left side. Laying the upper edge 1Bi of the right side of the groove 1b from the upper edge 1Bi of the portion 1Bg to the lower edge 1Bj of the lower left side 1Bf of the right side, respectively, and laying the same, and repeating the same laying. Finally, the second panel 1B is moved from the upper edge 1Bi of the left upper surface 1Ba of the left side to the lower edge 1Bj of the lower right portion 1Bd of the left side, and from the upper edge 1Bi of the right upper surface 1Bg of the right side to the right side. Lower left 1 A groove 1b leading to f of the lower edge 1Bj is opened, the heating panels are constructed of the present invention.
[0018]
And in FIG. 2, the said heat radiator 2 is laid in the location where the 1st panel 1A and 2nd panel 1B of the center part on the drawing were laid, Therefore The heating panel 1 of this invention, and the said heat radiator 2 Are combined to form a heating structure, the left side of the second panel 1B on the left side of the drawing alternately protrudes, and the right side of the second panel 1B on the right side of the drawing alternately protrudes. The radiator 2 is not laid at the place, and a dummy material is laid at a place where neither the first panel 1A nor the second panel 1B is laid, and both are in a non-heating area.
[0019]
As described above, since the heating panel 1 of the present invention is configured by combining two types of panels, the first panel 1A and the second panel 1B, the laying work is easy and the heating area is further increased. In addition to being able to lay in accordance with the number of types of panels, it is suitable for mass production of small varieties and easy product management.
[0020]
In the heating panel 1 of the present invention, as described above, the radiator 2 can be used for floor heating, wall heating, ceiling heating, etc. of a house, etc. When the floor sheet heating structure is formed, for example, the above-described grooves 1a and 1b are formed on the surface as the heating panel 1 of the present invention. The heat sink 2 is disposed in the grooves 1a and 1b of the heating panel 1 with the heat sink 2 facing the flexible sheet 2b side with respect to the space to be heated. The floor heating structure is formed by storing and laying the pipe 2a, or the radiator 2 is laid with respect to the space to be heated with the flexible sheet 2b side as the outside. The groove 1a described above on the back surface as the heating panel 1 Floor coverings fine 1b is bored, floor heating structure is formed by being laid accommodating the disposed pipe 2a of the radiator 2 in the groove 1a and 1b. Similarly, when the wall heating structure is formed, the heating panel 1 of the present invention has the above-described grooves 1a and 1b formed on the surface of the wall base material or the back surface of the wall finishing material. Further, when the ceiling heating structure is formed, the above-described grooves 1a and 1b are formed on the surface of the ceiling base material or the back surface of the ceiling finishing material.
[0021]
In the formation of the heating structure by the combination of the above radiator 2 and the heating panel 1 of the present invention, in the present invention, the heating panel 1 is suitable for the formation of a floor heating structure that is a floor heating panel, and Therefore, it is suitable for forming a floor heating structure having a flexible sheet as an outside with respect to the space to be heated. Therefore, as the heating panel 1 of the present invention, the groove 1a is formed on the back surface of the floor finishing material. The first panel 1A and the second panel 1B in which the groove 1b is formed on the back surface of the floor finishing material are preferable.
[0022]
FIG. 4 is a partial enlarged cross-sectional view showing an embodiment of the floor heating structure. On the floor material (floor base material in the case of new installation, floor finishing material in the case of existing equipment) 3, the radiator 2 is heated. The medium circulation pipe 2a is laid on the inside with respect to the space to be heated, and the flexible sheet 2b is laid on the outside with respect to the space to be heated. The heating panel 1 of the present invention, which is made of a floor finishing material having a perforated hole, is formed by laying an installation pipe 2a of the radiator 2 in the grooves 1a and 1b.
[0023]
Here, as a floor finishing material which comprises the panel 1 for heating, a flooring material etc. are mentioned typically, for example, The thickness shall be about 8-15 mm normally, and it is drilled in the back surface. The shape of the grooves 1a and 1b for accommodating the pipe 2a for the radiator 2 is not particularly limited, such as a substantially U-shaped cross section or a substantially U-shaped cross section. From the viewpoint of eliminating the temperature distribution, a substantially U-shaped cross-section having an outer diameter of 1.05 to 1.95 times the outer diameter is preferable.
[0024]
Further, within the depth range, the depth corresponding to the heat medium introduction port of the arrangement pipe 2a in the radiator 2 is increased, and the depth corresponding to the heat medium discharge port is decreased, thereby introducing and discharging. The temperature distribution in the vicinity of the exit can be further suppressed. In addition, it is preferable that the thickness of the floor finishing material in a groove bottom is 3 mm or more from the surface of the strength as a floor finishing material.
[0025]
【The invention's effect】
According to the present invention, the heat radiator circulating flexible pipe is arranged in a meandering manner by fixing a part of the outer circumferential surface in the circumferential direction to one surface of the flexible sheet. When the heating structure is formed using the heating panel, the heating panel in which the groove for accommodating the arranged pipes is formed, and the heating panel that can be easily laid can be provided. Furthermore, the heating panel according to the present invention can be laid according to the area to be heated, and since the number of types of the panel itself is small, it is suitable for mass production of small varieties and product management is easy.
[Brief description of the drawings]
FIG. 1 (a) is a back plan view showing an embodiment of a first panel constituting the heating panel of the present invention, and FIG. 1 (b) is an embodiment of the second panel constituting the heating panel of the present invention. FIG.
FIG. 2 is a back plan view showing one embodiment of a heating panel configured by combining the first panel and the second panel of FIG. 1;
FIG. 3 is a plan view of a radiator used in combination with the heating panel of FIG. 2;
FIG. 4 is a partially enlarged cross-sectional view showing an embodiment when a floor heating structure is formed in combination with a radiator using the heating panel of the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1; Heating panel 1A; 1st panel 1B; 2nd panel 1Aa, 1Ba; Left single side upper left part 1Ab, 1Bb; Left single side left lower part 1Ac, 1Bc; Left single side upper right part 1Ad, 1Bd; Left single side right lower part 1Ae, 1Be Right upper half 1Ag, 1Bg; right upper half 1Ah, 1Bh; right single lower right 1Bi; upper edge 1Aj, 1Bj; lower edge 1a, 1b; Groove 2; radiator 2a; flexible pipe 2b for circulating heat medium; flexible sheet 3; flooring

Claims (3)

熱媒循環用可撓性パイプがその外周面の円周方向の一部を可撓性シートの一方の面に固着されることにより蛇行状に配設されてなる放熱器の該配設パイプ収納用の溝が穿設された暖房用パネルであって、平面長方形状の両短辺を左右に置いた平面において長辺を4等分し短辺を2等分して、左片面左上部、左片面左下部、左片面右上部、左片面右下部、右片面左上部、右片面左下部、右片面右上部、及び右片面右下部に8分割したとき、左片面右下部の下端縁から同じく左片面右下部の下端縁に通じ、その間の左片面を略平行して蛇行状に走る偶数の溝と、右片面左下部の下端縁から同じく右片面左下部の下端縁に通じ、その間の右片面を略平行して蛇行状に走る偶数の溝とが穿設された第1パネルと、左片面左上部の上端縁から左片面右下部の下端縁に通じ、その間の左片面を略平行して蛇行状に走る偶数の溝と、右片面右上部の上端縁から右片面左下部の下端縁に通じ、その間の右片面を略平行して蛇行状に走る偶数の溝とが穿設された第2パネルの2種のパネルを組み合わせて構成されてなることを特徴とする暖房用パネル。The heat pipe circulating flexible pipe is disposed in a meandering manner by fixing a part of the outer circumferential surface in the circumferential direction to one surface of the flexible sheet. A heating panel having a groove for a hole, wherein the long side is divided into four equal parts and the short side is divided into two equal parts in a plane in which both short sides of a flat rectangular shape are placed on the left and right, Same as the lower left edge of the lower left side of the left side when divided into 8 parts on the lower left side of the left side, upper right part of the left side of the left side, upper right part of the left side of the single side, upper left part of the left side of the right side, upper right part of the right side of the single side An even number of grooves running in a meandering manner in parallel with the left side of the left side of the left side of the left side, and a lower edge of the lower side of the right side of the left side of the right side. A first panel with an even number of grooves running in a meandering manner parallel to one side and the upper left edge of the upper left side of the left side, lower right side of the left side An even number of grooves running in a meandering manner in parallel with the left one side between them and the upper right edge of the upper right part of the right side from the lower edge of the lower left part of the right side of the right side. A heating panel comprising a combination of two types of panels, a second panel having an even number of grooves running in a meandering manner. 暖房用パネルが床暖房用パネルである請求項1に記載の暖房用パネル。The heating panel according to claim 1, wherein the heating panel is a floor heating panel. 床暖房用パネルが床仕上げ材である請求項2に記載の暖房用パネル。The heating panel according to claim 2, wherein the floor heating panel is a floor finishing material.
JP2001259257A 2001-08-29 2001-08-29 Heating panel Expired - Fee Related JP4593033B2 (en)

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JP5315387B2 (en) * 2011-07-19 2013-10-16 旭化成ホームズ株式会社 Cooling panel

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07167448A (en) * 1993-12-15 1995-07-04 Matsushita Electric Works Ltd Floor heating device
JPH11229600A (en) * 1998-02-18 1999-08-24 Corona Corp Floor heating panel
JP2000039158A (en) * 1998-07-23 2000-02-08 Sumitomo Light Metal Ind Ltd Panel for hot-water type floor heating
JP2000111068A (en) * 1998-10-07 2000-04-18 Tokyo Gas Co Ltd Hot water mat for hot water type floor heating system and mat material

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07167448A (en) * 1993-12-15 1995-07-04 Matsushita Electric Works Ltd Floor heating device
JPH11229600A (en) * 1998-02-18 1999-08-24 Corona Corp Floor heating panel
JP2000039158A (en) * 1998-07-23 2000-02-08 Sumitomo Light Metal Ind Ltd Panel for hot-water type floor heating
JP2000111068A (en) * 1998-10-07 2000-04-18 Tokyo Gas Co Ltd Hot water mat for hot water type floor heating system and mat material

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