JP5046155B2 - Air conditioning panel - Google Patents

Air conditioning panel Download PDF

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JP5046155B2
JP5046155B2 JP2007107119A JP2007107119A JP5046155B2 JP 5046155 B2 JP5046155 B2 JP 5046155B2 JP 2007107119 A JP2007107119 A JP 2007107119A JP 2007107119 A JP2007107119 A JP 2007107119A JP 5046155 B2 JP5046155 B2 JP 5046155B2
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heat exchange
exchange pipe
panel
plate
receiver
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JP2008267618A (en
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正司 宮村
浩 山岸
克雅 金井
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Toyox Co Ltd
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Toyox Co Ltd
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Priority to JP2007107119A priority Critical patent/JP5046155B2/en
Priority to EP08740356A priority patent/EP2138778A1/en
Priority to PCT/JP2008/057268 priority patent/WO2008133079A1/en
Priority to US12/595,854 priority patent/US8561677B2/en
Priority to CN2008800122656A priority patent/CN101680670B/en
Publication of JP2008267618A publication Critical patent/JP2008267618A/en
Priority to HK10108752.9A priority patent/HK1142385A1/en
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  • Finishing Walls (AREA)
  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)
  • Steam Or Hot-Water Central Heating Systems (AREA)

Description

この発明は、屋内の冷房や暖房を輻射熱により行う冷暖房用パネルに関する。   The present invention relates to a cooling / heating panel that performs indoor cooling or heating by radiant heat.

従来、天井に施工する輻射式の冷暖房パネルがあった。このような冷暖房パネルは、金属や石膏ボードで作られた輻射パネルを有し、輻射パネルには複数の吸音孔が貫通して形成されている。輻射パネルの裏面には、樹脂製の熱交換パイプが配置され、この冷暖房パネルを天井に設置し、熱交換パイプに所望の温度の流体を流し、冷暖房を行っている。   Conventionally, there has been a radiation type air conditioning panel installed on the ceiling. Such an air conditioning panel has a radiation panel made of metal or gypsum board, and a plurality of sound absorbing holes are formed through the radiation panel. A heat exchange pipe made of resin is disposed on the rear surface of the radiation panel. The air conditioning panel is installed on the ceiling, and a fluid having a desired temperature is allowed to flow through the heat exchange pipe for air conditioning.

樹脂製の熱交換パイプは、加工性が良好であり、軽量でコストが安価という特長があるが、火災が発生したときには、炎が吸音孔から輻射パネルの裏面に進入し、熱交換パイプに引火するおそれがある。引火しなくても、熱により溶けて輻射パネルの吸音孔から漏れる危険性がある。このため、建築基準法及び消防法上の不燃性の認定を得ることができなかった。   Resin heat exchange pipes are characterized by good workability, light weight and low cost, but when a fire breaks out, flames enter the back of the radiant panel through the sound absorption holes and ignite the heat exchange pipes. There is a risk. Even if it does not ignite, there is a risk of melting from heat and leaking from the sound absorption holes of the radiation panel. For this reason, the incombustibility certification in the Building Standard Law and the Fire Service Law could not be obtained.

この問題を解決するために、特許文献1に開示された天井輻射冷暖房パネルが提供されている。この天井輻射冷暖房パネルは、吸音孔が形成された輻射パネルと熱交換パネルとの間に、不燃シートあるいは不燃板材を介在させている。また、特許文献2に開示されているように、輻射パネルの吸音孔を熱交換パイプとそれを覆った金属製の均熱板以外の部分に形成し、熱交換パイプを輻射パネル裏面と均熱板で挟んで輻射パネル内に設けたものも提案されている。
特開平10−227495号公報 特開2006−170551号公報
In order to solve this problem, a ceiling radiant cooling / heating panel disclosed in Patent Document 1 is provided. In this ceiling radiant cooling and heating panel, a non-combustible sheet or a non-combustible plate material is interposed between a radiant panel in which sound absorbing holes are formed and a heat exchange panel. Further, as disclosed in Patent Document 2, the sound absorption holes of the radiant panel are formed in portions other than the heat exchange pipe and the metal heat equalizing plate covering the heat exchange pipe, The thing provided in the radiation panel between the boards is also proposed.
Japanese Patent Laid-Open No. 10-227495 JP 2006-170551 A

上記従来の技術の場合、熱交換パイプと輻射パネルの間の不燃シートには、熱伝導率が高いセラミックシート等を使用しているので、不燃性シートは金属と比較すると大幅に熱伝導率が落ちるものであった。従って、金属のように確実に効率的に熱を伝えることができず、冷暖房装置としての熱効率が低くなるものであった。   In the case of the above conventional technology, the non-combustible sheet between the heat exchange pipe and the radiant panel uses a ceramic sheet having a high thermal conductivity, so the non-combustible sheet has a significantly higher thermal conductivity than metal. It was something that fell. Accordingly, heat cannot be reliably and efficiently transmitted as in the case of metal, and the thermal efficiency of the air conditioner becomes low.

また、特許文献2のように輻射パネルの吸音孔の位置を熱交換パイプの取り付け位置以外に設け、不燃板材として金属板で熱交換パイプを挟持した場合、熱効率は高いが、輻射パネルの加工や施工工数が掛かりコストも高くなり易いものであった。   Moreover, when the position of the sound absorption hole of the radiant panel is provided at a position other than the mounting position of the heat exchange pipe as in Patent Document 2 and the heat exchange pipe is sandwiched between metal plates as non-combustible plate materials, the thermal efficiency is high. The construction man-hours required and the cost was likely to be high.

この発明は、上記従来の技術の問題点に鑑みてなされたものであり、簡単な構造で熱効率が高く、不燃性も高い冷暖房用パネルを提供することを目的とする。   The present invention has been made in view of the above-described problems of the prior art, and an object thereof is to provide an air conditioning panel having a simple structure, high thermal efficiency, and high incombustibility.

本発明は、板状の輻射パネルと、前記輻射パネルを貫通する複数の吸音孔と、前記輻射パネルの裏面に部分的に配置した金属製の受け具と、前記受け具に保持された樹脂製の熱交換パイプが設けられ、前記熱交換パイプは、直線部と曲線部が交互に位置して設けられ、前記受け具は、前記熱交換パイプの直線部に沿って取り付けられる長尺部材であり、前記受け具の断面形状は、前記輻射パネルに重ねられる平坦な板体である均熱板と、前記均熱板から立設され前記熱交換パイプを係止する保持部であり上方が開口した半円状の湾曲部とを備え、前記均熱板は、前記熱交換パイプの前記直線部に連続して前記曲線部に達し、前記曲線部に達する前記均熱板の端部付近は前記保持部が取り除かれ、前記保持部は、前記熱交換パイプの側面を両側から弾発的に挟持するものであり、前記輻射パネル裏面の、前記均熱板が設けられた箇所以外の部分には不燃シートが敷設され、前記不燃シートは、セラミックシート又はグラスウールシートであり、前記均熱板の裏面に形成された切り欠き部に差し込まれて縁部が保持され、前記受け具の裏面は黒色に塗られ、前記吸音孔が前記不燃シートで覆われている冷暖房用パネルである。 The present invention provides a plate-shaped radiation panel, a plurality of sound absorbing holes penetrating the radiation panel, a metal receiver partially disposed on the back surface of the radiation panel, and a resin product held by the receiver The heat exchange pipe is provided with alternating straight portions and curved portions, and the support is a long member attached along the straight portion of the heat exchange pipe. , the cross-sectional shape of said receptacle, said the soaking plate is a flat plate body superimposed on the radiation panel, the retention portion is erected from the soaking plate that abolish engaging the heat exchange pipe upward opening A semicircular curved portion, and the heat equalizing plate reaches the curved portion continuously to the linear portion of the heat exchange pipe, and the vicinity of the end of the heat equalizing plate reaching the curved portion is the holding portion is removed, the holding unit, on both sides of side surfaces of the heat exchange pipe Is intended to et resilient manner sandwiching, the radiation panel back surface, incombustible sheet is laid on a portion other than portions where the soaking plate is provided, wherein the incombustible sheet, a ceramic sheet or a glass wool sheet, An air conditioning panel in which the edge is held by being inserted into a notch formed on the back surface of the heat equalizing plate, the back surface of the receiver is painted black, and the sound absorption holes are covered with the non-combustible sheet. is there.

前記熱交換パイプはガスバリアチューブであり、内周面に位置する層はポリウレタンであり、その外側の層はエチレン−ビニルアルコール共重合体(以下、EVOHと言う。)であり、その外側で外周面に位置する層はポリウレタンである。   The heat exchange pipe is a gas barrier tube, a layer located on the inner peripheral surface is polyurethane, an outer layer thereof is an ethylene-vinyl alcohol copolymer (hereinafter referred to as EVOH), and an outer peripheral surface on the outer side thereof. The layer located at is polyurethane.

又は、前記熱交換パイプは、内周面に位置する層がナイロンであり、その外側の層はポリウレタンであり、その外側の層はEVOHであり、その外側で外周面に位置する層はポリウレタンである。   Alternatively, in the heat exchange pipe, the layer located on the inner peripheral surface is nylon, the outer layer is polyurethane, the outer layer is EVOH, and the outer layer located on the outer peripheral surface is polyurethane. is there.

本発明の冷暖房用パネルは、簡単な構造で熱効率が良好であり、金属製の受け具が確実に熱交換パイプの熱交換流体の温度を輻射パネルに伝えることができる。しかも、受け具以外の部分には不燃シートが設けられ、熱交換パイプに樹脂を使用しても確実に不燃性を確保することができ、吸音孔による防音効果も維持したものである。   The cooling / heating panel of the present invention has a simple structure and good thermal efficiency, and the metal receiver can reliably transmit the temperature of the heat exchange fluid in the heat exchange pipe to the radiation panel. In addition, a non-combustible sheet is provided in a portion other than the receiver, and even if a resin is used for the heat exchange pipe, the non-combustibility can be ensured reliably, and the soundproofing effect by the sound absorbing holes is maintained.

以下、この発明の実施形態について図面に基づいて説明する。図1〜図5はこの発明の第一実施形態を示すもので、この実施形態の冷暖房用パネル10は、板状の輻射パネル12が設けられている。輻射パネル12は、アルミや鉄等の金属、石膏ボード、コンクリートなどで成形され、複数の吸音孔14が貫通して形成されている。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. 1 to 5 show a first embodiment of the present invention, and a cooling and heating panel 10 of this embodiment is provided with a plate-like radiation panel 12. The radiation panel 12 is formed of a metal such as aluminum or iron, gypsum board, concrete or the like, and has a plurality of sound absorbing holes 14 formed therethrough.

輻射パネル12の裏面12aには、熱交換パイプ16が後述する受け具18を介して設けられている。熱交換パイプ16は、輻射パネル12の一方向の幅を横切る直線部16aと、輻射パネル12の端部に達する前に湾曲しながら折り返す曲線部16bが交互に設けられ、連続して蛇行している。   On the back surface 12a of the radiation panel 12, a heat exchange pipe 16 is provided via a receiving member 18 described later. The heat exchange pipe 16 is alternately provided with straight portions 16a that cross the width of the radiant panel 12 in one direction and curved portions 16b that are bent and bent before reaching the end of the radiant panel 12, and meander continuously. Yes.

熱交換パイプ16は、図5に示すように3層構造のガスバリア性チューブであり、内周面に位置する第一層17はポリウレタンであり、その外側の第二層19はEVOHであり、その外側で外周面に位置する第三層21はポリウレタンである。EVOHはガスバリア性が高く、熱交換パイプ16を通る熱交換流体に空気中の酸素が溶け込むことを防ぐ。EVOHは水溶性であるが、ポリウレタンである第一層17と第三層21で内外面が覆われているため、熱交換媒体に水を使用しても溶けることはない。また、EVOHは硬く割れやすいため、曲線部16bは高温の成形時に曲げて作る。成形後に曲げ加工する場合は、加熱して曲げる。ポリウレタンは、柔らかく変形しやすいため、後述する受け具18の保持部22に入れやすい。さらに、ポリウレタンは反発弾性を有するため、後述する保持部22に入れた後に元に戻り、確実に保持部22に密着して保持されるため熱効率が良好となる。   As shown in FIG. 5, the heat exchange pipe 16 is a gas barrier tube having a three-layer structure, the first layer 17 located on the inner peripheral surface is polyurethane, and the second layer 19 outside thereof is EVOH. The third layer 21 located on the outer peripheral surface outside is polyurethane. EVOH has a high gas barrier property and prevents oxygen in the air from being dissolved in the heat exchange fluid passing through the heat exchange pipe 16. EVOH is water-soluble, but since the inner and outer surfaces are covered with the first layer 17 and the third layer 21 made of polyurethane, it does not dissolve even when water is used as the heat exchange medium. Further, since EVOH is hard and easily cracked, the curved portion 16b is formed by bending during high temperature molding. When bending after molding, bend by heating. Since polyurethane is soft and easily deformed, it is easy to put it in a holding portion 22 of a receiving member 18 to be described later. Furthermore, since polyurethane has impact resilience, it returns to its original state after being put in the holding portion 22 described later, and is securely held in close contact with the holding portion 22, so that the thermal efficiency is improved.

輻射パネル12の裏面12aには、熱交換パイプ16の直線部16aを保持する受け具18が取り付けられている。受け具18はアルミニウム押出形材等の金属製であり、熱交換パイプ16の直線部16aに沿って取り付けられる長尺部材であり、長手方向の断面形状が一定である。受け具18の断面形状は、図3に示すように、輻射パネル12の裏面12aに重ねられる板体である均熱板20が設けられ、均熱板20の中心には、熱交換パイプ16を保持する保持部22が設けられている。保持部22には、均熱板20から立設され上方が開口した半円状の湾曲部22aが形成され、湾曲部22aの先端には、外側に広がるウイング部22bが必要に応じて一体に形成されている。湾曲部22aの内周面は、熱交換パイプ16の外周面に密着する内径に形成され、熱交換パイプ16の側面を両側から弾発的に挟持するものである。受け具18が取り付けられる輻射パネル1の裏面12aには、接着性を確保するためのプライマー処理が施され、その裏面12aに、例えば熱可塑性樹脂のホットメルト接着剤や両面テープで接着されている。また、受け具18の裏面は、輻射パネル12の表側から吸音孔14を介して見えにくいように、黒色に塗られている。   A receiver 18 that holds the straight portion 16 a of the heat exchange pipe 16 is attached to the back surface 12 a of the radiation panel 12. The receiving member 18 is made of metal such as an aluminum extruded shape member, is a long member attached along the straight portion 16a of the heat exchange pipe 16, and has a constant cross-sectional shape in the longitudinal direction. As shown in FIG. 3, the cross-sectional shape of the receiver 18 is provided with a soaking plate 20 that is a plate that is stacked on the back surface 12 a of the radiation panel 12, and a heat exchange pipe 16 is provided at the center of the soaking plate 20. A holding part 22 for holding is provided. The holding portion 22 is formed with a semicircular curved portion 22a that is erected from the heat equalizing plate 20 and opens upward. A wing portion 22b that spreads outward is integrally formed at the distal end of the curved portion 22a. Is formed. The inner peripheral surface of the bending portion 22a is formed to have an inner diameter that is in close contact with the outer peripheral surface of the heat exchange pipe 16, and the side surfaces of the heat exchange pipe 16 are elastically sandwiched from both sides. The back surface 12a of the radiation panel 1 to which the receiver 18 is attached is subjected to a primer treatment for ensuring adhesion, and is adhered to the back surface 12a with, for example, a thermoplastic resin hot melt adhesive or double-sided tape. . Further, the back surface of the receiver 18 is painted black so that it is difficult to see from the front side of the radiation panel 12 through the sound absorbing hole 14.

ここで、熱交換パイプ16の、受け具18への取付方法について説明する。一対のウイング部22bの間に熱交換パイプ16を押し付けて、湾曲部22a及び熱交換パイプ16を弾性変形させ、湾曲部22aの間に弾発的に係止させる。このとき、熱交換パイプ16を、受け具18の湾曲部22aへ押し込む専用の治具を用いてもよい。   Here, a method of attaching the heat exchange pipe 16 to the receptacle 18 will be described. The heat exchange pipe 16 is pressed between the pair of wing portions 22b to elastically deform the curved portion 22a and the heat exchange pipe 16, and are elastically locked between the curved portions 22a. At this time, a dedicated jig for pushing the heat exchange pipe 16 into the curved portion 22a of the support 18 may be used.

輻射パネル12の裏面12aには、受け具18以外の部分に不燃シート23が敷設され、吸音孔14を覆っている。不燃シート23は、たとえばセラミックシートやグラスウールシート、その他不燃性のシート状のもの等である。不燃シート23は、図3に示すように、受け具18の均熱板20の両側縁部裏面に形成された切り欠き部20aに差し込まれて、縁部が保持されている。   On the back surface 12 a of the radiation panel 12, a non-combustible sheet 23 is laid on a portion other than the receiving member 18 to cover the sound absorbing hole 14. The non-combustible sheet 23 is, for example, a ceramic sheet, a glass wool sheet, or other non-combustible sheet. As shown in FIG. 3, the non-combustible sheet 23 is inserted into the notches 20 a formed on the back surfaces of both side edges of the heat equalizing plate 20 of the receiving device 18, and the edges are held.

次に、冷暖房用パネル10の使用方法について図4に基づいて説明する。室内の天井に冷暖房用パネル10を並べて取り付け、このとき輻射パネル12の裏面12aが屋根裏側となるようにする。そして、熱交換パイプ16の端部どうしを連結部材24で接続する。複数枚の冷暖房用パネル10を接続した熱交換パイプ16の一方の端部を、供給側メインパイプ26に接続し、他方の端部を戻り側メインパイプ28に接続する。供給側メインパイプ26と戻り側メインパイプ28は、温水器等の熱源30に接続されている。   Next, the usage method of the panel 10 for an air conditioning will be demonstrated based on FIG. The cooling / heating panel 10 is mounted side by side on the ceiling of the room, and at this time, the back surface 12a of the radiation panel 12 is set to the attic side. Then, the end portions of the heat exchange pipe 16 are connected by a connecting member 24. One end of the heat exchange pipe 16 connected to the plurality of cooling and heating panels 10 is connected to the supply-side main pipe 26, and the other end is connected to the return-side main pipe 28. The supply side main pipe 26 and the return side main pipe 28 are connected to a heat source 30 such as a water heater.

熱源30は、冷暖房用パネル10の熱交換パイプ16に所望の温度の熱交換用流体を供給している。熱交換流体は、例えば水である。熱源30から供給側メインパイプ26に供給された所定温度の水は、熱交換パイプ16の一方の端部から供給され、連結部材24で連結された複数の熱交換パイプ16を通過して他方の端部から戻り側メインパイプ28に流れ、熱源30に戻る。水が熱交換パイプ16を通過する過程で、輻射パネル12との間で熱交換を行なう。熱源30では、再び水を所望の温度に調整し、供給側メインパイプ26に供給する。   The heat source 30 supplies a heat exchange fluid having a desired temperature to the heat exchange pipe 16 of the air conditioning panel 10. The heat exchange fluid is, for example, water. Water of a predetermined temperature supplied from the heat source 30 to the supply-side main pipe 26 is supplied from one end of the heat exchange pipe 16, passes through the plurality of heat exchange pipes 16 connected by the connecting member 24, and passes through the other heat exchange pipe 16. It flows from the end to the return side main pipe 28 and returns to the heat source 30. In the process of water passing through the heat exchange pipe 16, heat exchange is performed with the radiation panel 12. In the heat source 30, water is adjusted again to a desired temperature and supplied to the supply-side main pipe 26.

この実施形態の冷暖房用パネル10によれば、構造が簡単で吸音孔による防音効果も維持しつつ不燃性があり、確実に熱交換も行うことができる。受け具18は、熱伝導性が高い金属で作られているため、熱交換パイプ16と輻射パネル12の間で受け具18を介して熱交換が行われ、熱効率が良好である。熱交換パイプ16に水を通すと、水の温度と圧力で熱交換パイプ16の径が僅かに太くなり、受け具18の湾曲部22aに熱交換パイプ16が密着し、より熱効率が上昇する。また、均熱板20が熱交換パイプ16に沿って長く設けられ、広い面積で輻射パネル12に接着されるため、この点からも熱効率が向上する。   According to the panel 10 for air conditioning according to this embodiment, the structure is simple, the soundproofing effect by the sound absorption holes is maintained, the nonflammability is ensured, and the heat exchange can be surely performed. Since the receptacle 18 is made of a metal having high thermal conductivity, heat is exchanged between the heat exchange pipe 16 and the radiant panel 12 via the receptacle 18, and the thermal efficiency is good. When water is passed through the heat exchange pipe 16, the diameter of the heat exchange pipe 16 is slightly increased due to the temperature and pressure of the water, the heat exchange pipe 16 comes into close contact with the curved portion 22 a of the receiver 18, and the thermal efficiency is further increased. Further, since the soaking plate 20 is provided long along the heat exchange pipe 16 and is bonded to the radiation panel 12 in a wide area, the thermal efficiency is also improved from this point.

また冷暖房用パネル10は、輻射パネル12の受け具18以外の部分は不燃シート23で覆われているため、不燃性が向上し、火災のときに熱交換パイプ16に引火したりすることを防ぐ。そして、熱交換パイプ16に安価な合成樹脂を使用しても、不燃性の認定を得ることができる。   Moreover, since the part other than the receptacle 18 of the radiation panel 12 is covered with the incombustible sheet | seat 23, the panel 10 for air conditioning improves nonflammability and prevents that the heat exchange pipe 16 is ignited at the time of a fire. . Even if an inexpensive synthetic resin is used for the heat exchange pipe 16, the incombustibility certification can be obtained.

熱交換パイプ16は三層構造であり、第一層17と第三層21はポリウレタンで柔軟性があり加工しやすく、第二層19はガスバリア性が高いエチレン−ビニルアルコール共重合体(EVOH)で作られ、循環する水に空気中の酸素が溶けることを防いでいる。水に酸素が溶けないため、連結部材24等が金属で作られていても腐食することがなく耐久性を持たせることができる。   The heat exchange pipe 16 has a three-layer structure. The first layer 17 and the third layer 21 are made of polyurethane and are flexible and easy to process. The second layer 19 is an ethylene-vinyl alcohol copolymer (EVOH) having a high gas barrier property. It prevents the oxygen in the air from dissolving in the circulating water. Since oxygen does not dissolve in water, even if the connecting member 24 or the like is made of metal, it does not corrode and can have durability.

熱交換パイプ16は、保持部22の弾性力で取り付けられ保持されるため、特別な係止装置が不要で簡単な構造である。また、熱交換パイプ16の取り付けや取り外しが簡単であり、取り付けるときは保持部22のウイング部22bの間に押圧するだけの簡単な操作で行うことができ、保持部22のウイング部22bにガイドされて湾曲部22a内側へ簡単に押し込むことができる。ウイング部22bにガイドされることにより、保持部22に無理な力がかかって破損することが無く、安全である。   Since the heat exchange pipe 16 is attached and held by the elastic force of the holding portion 22, a special locking device is unnecessary and has a simple structure. Further, the heat exchange pipe 16 can be easily attached and detached, and when the heat exchange pipe 16 is attached, the heat exchange pipe 16 can be simply operated by pressing between the wing portions 22b of the holding portion 22 and guided to the wing portion 22b of the holding portion 22. Thus, it can be easily pushed into the curved portion 22a. By being guided by the wing portion 22b, the holding portion 22 is not damaged due to excessive force, which is safe.

なお、熱交換パイプ16は3層構造以外に、図6に示すように4層構造でもよい。図6に示す熱交換パイプ32のガスバリアチューブは、内周面に位置する第一層34はナイロンであり、その外側の第二層36はポリウレタンである。そして、その外側の第三層38がEVOHであり、その外側で外周面に位置する第四層40はポリウレタンである。第一層34のナイロンは、水に強いため、金属製の連結部材24等の耐久性を高めることができる。また、このガスバリアチューブの外側にナイロンを積層したり、ナイロン以外に公知の樹脂を積層することもできる。   In addition to the three-layer structure, the heat exchange pipe 16 may have a four-layer structure as shown in FIG. As for the gas barrier tube of the heat exchange pipe 32 shown in FIG. 6, the 1st layer 34 located in an internal peripheral surface is nylon, and the 2nd layer 36 of the outer side is polyurethane. The third layer 38 on the outer side is EVOH, and the fourth layer 40 located on the outer peripheral surface on the outer side is polyurethane. Since the nylon of the first layer 34 is resistant to water, durability of the metal connecting member 24 and the like can be improved. Further, nylon can be laminated on the outside of the gas barrier tube, or a known resin can be laminated other than nylon.

次にこの発明の第二実施形態について図7,図8に基づいて説明する。なお、ここで、上記実施形態と同様の部材は同様の符号を付して説明を省略する。この実施形態の冷暖房用パネル42も、輻射パネル12の裏面12aに、熱交換パイプ16の直線部16aを保持する受け具44が取り付けられている。受け具44はアルミニウム押出形材等の金属製であり、熱交換パイプ16の直線部16aに沿って取り付けられる長尺部材であり、長手方向の断面形状が一定である。受け具44には、輻射パネル12の裏面12aに重ねられる板体である均熱板46が設けられ、均熱板46の中心には、保持部22が設けられている。   Next, a second embodiment of the present invention will be described with reference to FIGS. Here, the same members as those in the above embodiment are denoted by the same reference numerals, and the description thereof is omitted. Also in the air conditioning panel 42 of this embodiment, a receiving tool 44 that holds the straight portion 16 a of the heat exchange pipe 16 is attached to the back surface 12 a of the radiation panel 12. The receiving tool 44 is made of a metal such as an aluminum extruded profile, is a long member attached along the straight portion 16a of the heat exchange pipe 16, and has a constant cross-sectional shape in the longitudinal direction. The receiver 44 is provided with a soaking plate 46 that is a plate that is stacked on the back surface 12 a of the radiation panel 12, and the holding unit 22 is provided at the center of the soaking plate 46.

保持部22は、均熱板46の、熱交換パイプ16直線部16aが位置する部分にのみ設けられ、直線部16aを保持している。均熱板46の長手方向の端部46aは、熱交換パイプ16の直線部16aに連続した曲線部16bに接している。曲線部16bに接する均熱板46の端部46a付近は、保持部22が取り除かれている。このため曲線部16bは均熱板46に載せられているだけとなる。曲線部16bの中心部分では均熱板46から外れて不燃シート23の上を通過し、隣接する受け具44の均熱板46の端部46aに再び載り、直線部16aとなって保持部22に保持される。   The holding | maintenance part 22 is provided only in the part in which the heat exchange pipe 16 linear part 16a is located of the soaking | uniform-heating plate 46, and is holding the linear part 16a. An end 46 a in the longitudinal direction of the heat equalizing plate 46 is in contact with a curved portion 16 b that is continuous with the straight portion 16 a of the heat exchange pipe 16. The holding portion 22 is removed from the vicinity of the end portion 46a of the heat equalizing plate 46 in contact with the curved portion 16b. For this reason, the curved portion 16b is only placed on the soaking plate 46. At the central portion of the curved portion 16b, it is detached from the soaking plate 46, passes over the non-combustible sheet 23, and rests on the end portion 46a of the soaking plate 46 of the adjacent receiving tool 44 to become the straight portion 16a. Retained.

なお、保持部22は、熱交換パイプ16の曲線部16bが曲がる側のみ除去されたものでも良く、この場合も上記と同様の効果を有する。また、保持部22を除去せずに乗り越えるようにして曲線部16bが隣接する均熱板46の保持部22につながるようにしても良い。この場合、保持部22の除去工数を削減することができる。   In addition, the holding part 22 may be removed from only the side where the curved part 16b of the heat exchange pipe 16 is bent, and in this case, the same effect as described above is obtained. Further, the curved portion 16b may be connected to the holding portion 22 of the adjacent heat equalizing plate 46 so as to get over without removing the holding portion 22. In this case, the number of steps for removing the holding unit 22 can be reduced.

この実施形態の冷暖房用パネル42は、上記実施形態と同様の使用方法で同様の効果を有するものである。熱交換パイプ16の曲線部16bと輻射パネル12の間にも均熱板46が位置しているため、均熱板46の面積が広くなり、より熱効率が向上する。   The cooling / heating panel 42 of this embodiment has the same effect by the same usage as in the above embodiment. Since the soaking plate 46 is also located between the curved portion 16b of the heat exchange pipe 16 and the radiation panel 12, the area of the soaking plate 46 is increased, and the thermal efficiency is further improved.

次にこの発明の第三実施形態について図9〜図12に基づいて説明する。なお、ここで、上記実施形態と同様の部材は同様の符号を付して説明を省略する。この実施形態の冷暖房用パネル50も、輻射パネル12の裏面12aに、熱交換パイプ16の直線部16aを保持する受け具18が取り付けられている。   Next, a third embodiment of the present invention will be described with reference to FIGS. Here, the same members as those in the above embodiment are denoted by the same reference numerals, and the description thereof is omitted. In the cooling / heating panel 50 of this embodiment, the support 18 that holds the straight portion 16 a of the heat exchange pipe 16 is attached to the back surface 12 a of the radiation panel 12.

この実施形態の熱交換パイプ16は、輻射パネル12に固定された受け具18に対して、1本おきに同じ方向に湾曲して保持部22に取り付けられている。   The heat exchange pipe 16 of this embodiment is attached to the holding portion 22 by being bent in the same direction every other piece with respect to the receiver 18 fixed to the radiation panel 12.

この実施形態の冷暖房用パネル50も、上記の実施形態と同様の使用方法で同様の効果を有するものであり、熱交換パイプ16の湾曲方向が一定であるため、熱交換パイプ16の曲がり癖の方向に常に湾曲させることとなり、より容易に曲線部16bの設定を行うことができる。   The air-conditioning panel 50 of this embodiment also has the same effect by the same usage method as the above-described embodiment, and the bending direction of the heat exchange pipe 16 is constant since the bending direction of the heat exchange pipe 16 is constant. The curved portion 16b can be set more easily because the curved portion 16b is always curved in the direction.

同様に、図12に示すように、熱交換パイプ16の両端部を輻射パネル12の両側に持ってきても良い。この場合も、上記実施形態と同様の効果を得ることができる。   Similarly, as shown in FIG. 12, both ends of the heat exchange pipe 16 may be brought to both sides of the radiation panel 12. Also in this case, the same effect as the above embodiment can be obtained.

なお、この発明の冷暖房用パネルは、上記各実施形態に限定されるものではなく、熱交換パイプの配置や形状は適宜設定可能なものであり、熱交換パイプの配置や蛇行や湾曲させる回数も変更可能である。輻射パネルの形状や大きさ、吸音孔の間隔等も適宜選択可能である。輻射パネルや不燃シートの素材や厚みは、適宜変更可能であり、冷暖房用パネルの設置場所は天井以外に壁等の適宜の場所に適用可能である。熱交換パイプは、ガスバリア性を高めるために、外周面にアルミ蒸着等の処理を行ってもよい。   In addition, the panel for air conditioning of this invention is not limited to each said embodiment, The arrangement | positioning and shape of a heat exchange pipe can be set suitably, and also the arrangement | positioning of a heat exchange pipe, the frequency | count of meandering or curving are also possible. It can be changed. The shape and size of the radiation panel, the interval between the sound absorbing holes, and the like can be selected as appropriate. The material and thickness of the radiant panel and the incombustible sheet can be changed as appropriate, and the installation location of the air conditioning panel can be applied to an appropriate location such as a wall in addition to the ceiling. The heat exchange pipe may be subjected to treatment such as aluminum vapor deposition on the outer peripheral surface in order to improve gas barrier properties.

この発明の第一実施形態の冷暖房用パネルの正面図である。It is a front view of the panel for air conditioning of 1st embodiment of this invention. 図1のA−A線断面図である。It is the sectional view on the AA line of FIG. 図1のA−A線拡大断面図である。It is an AA line expanded sectional view of FIG. この実施形態の冷暖房用パネルの使用方法を示す概略図である。It is the schematic which shows the usage method of the panel for air conditioning of this embodiment. この実施形態の冷暖房用パネルの熱交換パイプの部分破断斜視図である。It is a partially broken perspective view of the heat exchange pipe of the air conditioning panel of this embodiment. この実施形態の冷暖房用パネルの熱交換パイプの変形例を示す部分破断斜視図である。It is a partially broken perspective view which shows the modification of the heat exchange pipe of the air conditioning panel of this embodiment. この発明の第二実施形態の冷暖房用パネルの正面図である。It is a front view of the panel for air conditioning of 2nd embodiment of this invention. 図7のB−B線断面図である。It is the BB sectional view taken on the line of FIG. この発明の第三実施形態の冷暖房用パネルの正面図である。It is a front view of the panel for air conditioning of 3rd embodiment of this invention. 図9のC−C線拡大断面図である。FIG. 10 is an enlarged sectional view taken along line CC in FIG. 9. 第三実施形態の冷暖房用パネルの使用方法を示す概略図である。It is the schematic which shows the usage method of the panel for air conditioning of 3rd embodiment. 第三実施形態の熱交換パイプの配置の変形例を示す正面図である。It is a front view which shows the modification of arrangement | positioning of the heat exchange pipe of 3rd embodiment.

10 冷暖房用パネル
12 輻射パネル
14 吸音孔
16 熱交換パイプ
16a 直線部
16b 曲線部
18 受け具
20 均熱板
22 保持部
23 不燃シート
DESCRIPTION OF SYMBOLS 10 Panel for air conditioning 12 Radiation panel 14 Sound absorption hole 16 Heat exchange pipe 16a Straight line part 16b Curved part 18 Receptacle 20 Soaking plate 22 Holding part 23 Nonflammable sheet

Claims (3)

板状の輻射パネルと、前記輻射パネルを貫通する複数の吸音孔と、前記輻射パネルの裏面に部分的に配置した金属製の受け具と、前記受け具に保持された樹脂製の熱交換パイプが設けられ、
前記熱交換パイプは、直線部と曲線部が交互に位置して設けられ、
前記受け具は、前記熱交換パイプの直線部に沿って取り付けられる長尺部材であり、前記受け具の断面形状は、前記輻射パネルに重ねられる平坦な板体である均熱板と、前記均熱板から立設され前記熱交換パイプを係止する保持部であり上方が開口した半円状の湾曲部とを備え、
前記均熱板は、前記熱交換パイプの前記直線部に連続して前記曲線部に達し、前記曲線部に達する前記均熱板の端部付近は前記保持部が取り除かれ、
前記保持部は、前記熱交換パイプの側面を両側から弾発的に挟持するものであり、
前記輻射パネル裏面の、前記均熱板が設けられた箇所以外の部分には不燃シートが敷設され、
前記不燃シートは、セラミックシート又はグラスウールシートであり、前記均熱板の裏面に形成された切り欠き部に差し込まれて縁部が保持され、前記受け具の裏面は黒色に塗られ、前記吸音孔が前記不燃シートで覆われていることを特徴とする冷暖房用パネル。
A plate-shaped radiant panel, a plurality of sound absorbing holes penetrating the radiant panel, a metal receiver partially disposed on the back surface of the radiant panel, and a resin heat exchange pipe held by the receiver Is provided,
The heat exchange pipe is provided with linear portions and curved portions located alternately,
The receiver is an elongate member attached along a straight portion of the heat exchange pipe, and the cross-sectional shape of the receiver is a soaking plate that is a flat plate body overlaid on the radiation panel, and the soaking plate. is erected from the hot plate and a the heat exchange pipe to a holding portion that abolish engagement upward semicircular having an open curved portion,
The heat equalizing plate reaches the curved portion continuously with the linear portion of the heat exchange pipe, and the holding portion is removed near the end of the heat equalizing plate reaching the curved portion,
The holding part is for elastically holding the side surface of the heat exchange pipe from both sides,
A non-combustible sheet is laid on the back of the radiation panel other than the portion where the heat equalizing plate is provided,
The non-combustible sheet is a ceramic sheet or a glass wool sheet, and is inserted into a notch formed on the back surface of the heat equalizing plate to hold an edge, and the back surface of the receiver is painted black, and the sound absorbing holes Is covered with the non-combustible sheet.
前記熱交換パイプはガスバリアチューブであり、内周面に位置する層はポリウレタンであり、その外側の層はエチレン−ビニルアルコール共重合体であり、その外側で外周面に位置する層はポリウレタンであることを特徴とする請求項1記載の冷暖房用パネル。   The heat exchange pipe is a gas barrier tube, the layer located on the inner peripheral surface is polyurethane, the outer layer is ethylene-vinyl alcohol copolymer, and the outer layer located on the outer peripheral surface is polyurethane. The air-conditioning panel according to claim 1. 前記熱交換パイプはガスバリアチューブであり、内周面に位置する層がナイロンであり、その外側の層はポリウレタンであり、その外側の層はエチレン−ビニルアルコール共重合体であり、その外側で外周面に位置する層はポリウレタンであることを特徴とする請求項1記載の冷暖房用パネル。   The heat exchange pipe is a gas barrier tube, the layer located on the inner peripheral surface is nylon, the outer layer is polyurethane, the outer layer is ethylene-vinyl alcohol copolymer, and the outer periphery is the outer periphery. 2. The air conditioning panel according to claim 1, wherein the layer located on the surface is polyurethane.
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US12/595,854 US8561677B2 (en) 2007-04-16 2008-04-14 Cooling/heating panel with holding device
CN2008800122656A CN101680670B (en) 2007-04-16 2008-04-14 Cooling/heating panel
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Families Citing this family (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5148467B2 (en) * 2008-12-18 2013-02-20 住商メタレックス株式会社 Radiation panel for radiant ceiling and its construction method
JP2010243129A (en) * 2009-04-09 2010-10-28 Asahi Kasei Homes Co Radiation cooling/heating system
JP5394115B2 (en) * 2009-04-09 2014-01-22 旭化成ホームズ株式会社 Radiation panel device
JP5394114B2 (en) * 2009-04-09 2014-01-22 旭化成ホームズ株式会社 Radiation panel device
DE102009055440A1 (en) * 2009-12-31 2011-07-07 Sgl Carbon Se, 65203 Ceiling- or wall element for use as composite material for attachment to ceiling or wall, particularly thermally active concrete wall or concrete ceiling, is regulated over frame with base, in which heating- or cooling register is arranged
JP5470522B2 (en) * 2010-06-30 2014-04-16 株式会社トヨックス Air conditioning unit
JP5577505B2 (en) * 2010-06-30 2014-08-27 株式会社トヨックス Air conditioning unit and air conditioning system
JP2012013307A (en) * 2010-06-30 2012-01-19 Toyox Co Ltd Ceiling panel, air conditioning unit, and air conditioning system
KR101261328B1 (en) 2011-05-03 2013-05-07 황금찬 The heat exchanging panel using the stable
JP6286650B2 (en) * 2013-05-16 2018-03-07 株式会社トヨックス Radiant panel
JP6163047B2 (en) * 2013-08-22 2017-07-12 株式会社ササクラ Radiation panel for air conditioning and radiation unit for air conditioning equipped with the same
JP2016044837A (en) * 2014-08-20 2016-04-04 株式会社ササクラ Radiation panel
JP6970421B2 (en) * 2017-05-22 2021-11-24 株式会社ササクラ Radiant panel for air conditioning and its manufacturing method

Family Cites Families (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5276651U (en) * 1976-09-24 1977-06-08
JPS55122087U (en) * 1979-02-23 1980-08-29
JPS5793711U (en) * 1980-11-29 1982-06-09
JPS587069U (en) * 1981-07-01 1983-01-18 三菱電機株式会社 Heat exchanger
JPH1038293A (en) * 1996-07-19 1998-02-13 Shinko Kenzai:Kk Floor heating pipe fixing member and floor heating structure using floor joist
JP2991158B2 (en) * 1996-12-10 1999-12-20 株式会社トヨックス Ceiling radiant cooling and heating panel
JPH11118167A (en) * 1997-10-09 1999-04-30 Tohoku Setsubi:Kk Jig for floor heating, and heating tatami
JPH11166742A (en) * 1997-12-02 1999-06-22 Osaka Gas Co Ltd Heat pipe type floor heating panel
JP3995226B2 (en) * 1998-10-16 2007-10-24 株式会社トヨックス Radiant air conditioning panel
JP2002130704A (en) * 2000-10-23 2002-05-09 Sanyo Electric Co Ltd Radiator for heating
JP3851218B2 (en) * 2001-05-14 2006-11-29 株式会社クラレ Gas barrier material comprising a modified ethylene-vinyl alcohol copolymer
JP2006170551A (en) * 2004-12-17 2006-06-29 Toyox Co Ltd Ceiling radiation panel

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