JP3232351U - Insulated roof structure - Google Patents

Insulated roof structure Download PDF

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JP3232351U
JP3232351U JP2021000989U JP2021000989U JP3232351U JP 3232351 U JP3232351 U JP 3232351U JP 2021000989 U JP2021000989 U JP 2021000989U JP 2021000989 U JP2021000989 U JP 2021000989U JP 3232351 U JP3232351 U JP 3232351U
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heat insulating
insulating material
roof structure
waterproof sheet
field board
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龍平 中谷
龍平 中谷
石川 孝一
孝一 石川
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E.KATAYAMA & CO., LTD.
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Abstract

【課題】断熱性と防水性、並びに簡単な構造と施工性を持つ断熱屋根構造を提供する。【解決手段】屋根構造は、母屋60と、母屋の上に配設されかつ母屋に対して留付材30Cで固定された野地板50と、野地板の上に配設されかつ野地板に対して接着剤によって接着された断熱材40と、断熱材の上に配設されかつ断熱材に対して下塗りプライマーを介して防水シート20を形成するゴムの粘着によって接着された防水シートと、防水シートの上に配設されかつ防水シートに対して金属屋根材10に裏打ちされたゴムの粘着によって固定された金属屋根材とを含み、留付材が前記断熱材の厚さ方向に延びておらず、前記断熱材の厚さ方向に延びる構造材が存在しないため断熱材を横断する熱橋がない。従って外部環境の温度変化の影響を受けにくく、断熱性が極めて高い。また、野地板の上に断熱材を接着固定しているため、断熱材を厚く形成して断熱性を高めることが容易である。【選択図】図3PROBLEM TO BE SOLVED: To provide a heat insulating roof structure having heat insulating property and waterproof property, as well as a simple structure and workability. SOLUTION: The roof structure is formed on a main building 60, a field board 50 arranged on the main building and fixed to the main building by a fastener 30C, and a field board arranged on the field board and with respect to the field board. The heat insulating material 40 adhered by the adhesive, the waterproof sheet disposed on the heat insulating material and adhered to the heat insulating material by the adhesiveness of the rubber forming the waterproof sheet 20 via the undercoat primer, and the waterproof sheet. The fastener material does not extend in the thickness direction of the heat insulating material, including the metal roofing material disposed on the waterproof sheet and fixed to the waterproof sheet by the adhesiveness of the rubber lined with the metal roofing material 10. Since there is no structural material extending in the thickness direction of the heat insulating material, there is no thermal bridge across the heat insulating material. Therefore, it is not easily affected by temperature changes in the external environment and has extremely high heat insulating properties. Further, since the heat insulating material is adhered and fixed on the field board, it is easy to form the heat insulating material thickly to improve the heat insulating property. [Selection diagram] Fig. 3

Description

本考案は、断熱性、防水性、施工性に優れた断熱屋根構造に関する。 The present invention relates to a heat insulating roof structure having excellent heat insulating properties, waterproof properties, and workability.

従来から金属屋根材と断熱材を使用した断熱屋根構造が数多く提案されている(例えば特許文献1〜4参照)。かかる断熱屋根構造の典型例を図1に示す。図1(a)は、従来の断熱屋根構造の一例を屋根傾斜方向で鉛直に切った概略断面図であり、図1(b)は、図1(a)の断面図をその断面に直交する方向でA−A´で切った概略断面図である。図1中、10は金属屋根材、10Aは吊子、10Bは留付材、20は防水シート、30Aは金属垂木、40は断熱材、50は野地板、50Aは留付材、60はC型鋼からなる母屋である。 Conventionally, many heat insulating roof structures using metal roofing materials and heat insulating materials have been proposed (see, for example, Patent Documents 1 to 4). A typical example of such a heat insulating roof structure is shown in FIG. FIG. 1 (a) is a schematic cross-sectional view of an example of a conventional heat-insulated roof structure cut vertically in the roof inclination direction, and FIG. 1 (b) is a cross-sectional view of FIG. 1 (a) orthogonal to the cross section. It is a schematic cross-sectional view cut by AA'in the direction. In FIG. 1, 10 is a metal roofing material, 10A is a hanger, 10B is a fastener, 20 is a tarpaulin, 30A is a metal rafter, 40 is a heat insulating material, 50 is a field board, 50A is a fastener, and 60 is C. It is a main building made of shaped steel.

図1の断熱屋根構造は、一般に、母屋60の上に野地板50を配置し、次いで留付材50Aで野地板50と共に金属垂木30Aを母屋60に固定した後、断熱材40を隣接する金属垂木30A間に配置し、断熱材40の上に防水シート20を配置し、金属屋根材10に係合された吊子10Aを金属垂木30Aの上部に留付材10Bで留めることによって施工される。 In the heat insulating roof structure of FIG. 1, generally, the field board 50 is arranged on the purlin 60, and then the metal rafters 30A are fixed to the purlin 60 together with the field board 50 with the fastener 50A, and then the heat insulating material 40 is attached to the adjacent metal. It is installed between the rafters 30A, the waterproof sheet 20 is placed on the heat insulating material 40, and the hanger 10A engaged with the metal roofing material 10 is fastened to the upper part of the metal rafters 30A with the fastener 10B. ..

しかしながら、この断熱屋根構造は、断熱材の厚さ方向に金属垂木のような構造材が存在するため、この部分に断熱材が配置されず、断熱性が十分でなかった。また、この断熱屋根構造は、金属垂木の存在により、金属屋根材と吊子と留付材と金属垂木と留付材と母屋の間で熱橋が形成されるため、母屋が外部環境の温度変化の影響を容易に受けて、室内側の断熱性が不十分になったり、母屋に結露が起こりやすい問題があった。 However, in this heat insulating roof structure, since a structural material such as a metal rafter exists in the thickness direction of the heat insulating material, the heat insulating material is not arranged in this portion, and the heat insulating property is not sufficient. In addition, in this heat-insulated roof structure, the presence of metal rafters forms a thermal bridge between the metal roofing material, the hanger, the fastener, the metal rafter, the fastener, and the purlin, so that the purlin is at the temperature of the external environment. There was a problem that the heat insulation inside the room was insufficient and dew condensation was likely to occur in the purlin due to the influence of the change.

これに対して断熱材の厚さ方向に金属垂木のような構造材を使用せず、断熱材と野地板の位置を変更した断熱屋根構造が提案されている。図2は、かかる断熱屋根構造の一例を屋根傾斜方向で鉛直に切った概略断面図であり、図2中、10は金属屋根材、20は防水シート、30Bは留付材、40は断熱材、50は野地板、60はC型鋼からなる母屋である。 On the other hand, a heat insulating roof structure has been proposed in which the positions of the heat insulating material and the field board are changed without using a structural material such as a metal rafter in the thickness direction of the heat insulating material. FIG. 2 is a schematic cross-sectional view of an example of such a heat insulating roof structure cut vertically in the roof inclination direction. In FIG. 2, 10 is a metal roofing material, 20 is a tarpaulin, 30B is a fastener material, and 40 is a heat insulating material. , 50 is a field board, and 60 is a main building made of C-shaped steel.

図2の断熱屋根構造は、一般に、母屋60の上に断熱材40を配置し、さらに断熱材40の上に野地板50を配置し、長い留付材30Bによって母屋60に断熱材40と野地板50を一緒に固定した後、野地板50の上に防水シート20を配置してから金属屋根材10を粘着固定することによって施工される。 In the heat insulating roof structure of FIG. 2, in general, the heat insulating material 40 is placed on the main building 60, the field board 50 is further placed on the heat insulating material 40, and the heat insulating material 40 and the field are placed on the main building 60 by the long fastener 30B. After fixing the main plate 50 together, the waterproof sheet 20 is placed on the field plate 50, and then the metal roofing material 10 is adhesively fixed.

この断熱屋根構造は、断熱材の厚さ方向に延びる金属垂木のような構造材がないため、図1の断熱屋根構造に比べて外部から母屋への熱伝達が少なくなっているが、断熱材が、断熱されていない野地板の裏面に存在するため、断熱材の裏面に結露が起こりやすい問題があった。また、野地板と母屋が留付材で直結しているため、この留付材を介して母屋に熱が伝達され、母屋に結露が起こりやすい問題があった。さらに、留付材を野地板の上から断熱材を貫通又は横断させて母屋に固定するため、野地板と断熱材を合わせた厚みの長さの留付材を使う必要があったり、剪断応力により留付材が破損したり、保持力が弱まったり、断熱材が褪せて留付材の頭が内部に突き抜ける問題があった。また、長い留付材の使用を避けようとすると厚い断熱材が使用できない問題があった。 Since this heat insulating roof structure does not have a structural material such as a metal rafter extending in the thickness direction of the heat insulating material, heat transfer from the outside to the purlin is less than that of the heat insulating roof structure shown in FIG. However, since it exists on the back surface of the non-insulated field board, there is a problem that dew condensation is likely to occur on the back surface of the heat insulating material. In addition, since the field board and the main building are directly connected by a fastener material, heat is transferred to the main building through the fastener material, and there is a problem that dew condensation is likely to occur in the main building. Furthermore, in order to fix the fastener material to the purlin by penetrating or crossing the heat insulating material from above the field board, it is necessary to use a fastener material having a total thickness of the field board and the heat insulating material, or shear stress. As a result, there are problems that the fastener material is damaged, the holding force is weakened, the heat insulating material is faded, and the head of the fastener material penetrates inside. In addition, there is a problem that a thick heat insulating material cannot be used when trying to avoid the use of a long fastening material.

特開平5−280157号公報Japanese Unexamined Patent Publication No. 5-280157 実開平6−6559号公報Jikkenhei 6-6559 Gazette 特開平8−246609号公報Japanese Unexamined Patent Publication No. 8-246609 特開2002−61339号公報Japanese Unexamined Patent Publication No. 2002-61339

本考案は、かかる従来技術の問題を解消するために創案されたものであり、その目的は、確実で永続的な断熱性と防水性、並びに簡単な構造と施工性を持つ断熱屋根構造を提供することにある。 The present invention was devised to solve the problems of the prior art, the purpose of which is to provide a heat insulating roof structure having reliable and permanent heat insulation and waterproofness, as well as simple structure and workability. To do.

本考案者は、かかる目的を達成するために鋭意検討した結果、野地板を母屋に留付材で固定し、野地板に断熱材を接着剤で固定することによって断熱材の厚さを考慮した長い留付材や断熱材を横断する金属垂木などの構造材を使う必要がなくなること、その上で断熱材で野地板を覆うことによって外部環境の温度変化の影響を受けにくくできること、さらに母屋への野地板の留付材の固定以外は基本的に接着工法を採用することによって外部環境からの熱や水の伝達箇所がなく、高い断熱性及び防水性が効果的に達成されることができることなどを見出し、本考案の完成に至った。 As a result of diligent studies to achieve this purpose, the present inventor considered the thickness of the heat insulating material by fixing the field board to the purlin with a fastener and fixing the heat insulating material to the field board with an adhesive. It is no longer necessary to use structural materials such as long fasteners and metal rafters that cross the heat insulating material, and by covering the field board with heat insulating material, it can be made less susceptible to temperature changes in the external environment, and to the purlin. By basically adopting the adhesive method except for fixing the fastener material of the field board, there is no transfer point of heat and water from the external environment, and high heat insulation and waterproofness can be effectively achieved. We found such things and reached the completion of this invention.

即ち、本考案は、以下の(1)〜(4)の構成を有するものである。
(1)母屋と、前記母屋の上に配設されかつ前記母屋に対して留付材で固定された野地板と、前記野地板の上に配設されかつ前記野地板に対して接着剤によって接着された断熱材と、前記断熱材の上に配設されかつ前記断熱材に対して下塗りプライマーを介して防水シートを形成するゴムの粘着によって接着された防水シートと、前記防水シートの上に配設されかつ前記防水シートに対して金属屋根材に裏打ちされたゴムの粘着によって固定された金属屋根材とを含む断熱屋根構造であって、前記留付材が、前記断熱材の厚さ方向に延びていないこと、及び前記断熱材の厚さ方向に延びる構造材が、存在しないことを特徴とする断熱屋根構造。
(2)前記下塗りプライマーが、ブチルゴム系プライマーであり、前記防水シートが、非加硫ブチルゴム系シートであり、前記金属屋根材に裏打ちされたゴムが、非加硫ブチルゴムであることを特徴とする(1)に記載の断熱屋根構造。
(3)前記断熱材が、発泡プラスチックフォーム板であることを特徴とする(1)又は(2)に記載の断熱屋根構造。
(4)前記断熱材が、接着剤によって複数の断熱材が接着されかつ積層されたものであることを特徴とする(1)〜(3)のいずれかに記載の断熱屋根構造。
That is, the present invention has the following configurations (1) to (4).
(1) A main building, a field board disposed on the main building and fixed to the main building with a fastener, and a field board disposed on the field board and attached to the field board by an adhesive. On the bonded heat insulating material, a waterproof sheet disposed on the heat insulating material and adhered to the heat insulating material by adhesion of rubber forming a waterproof sheet via an undercoat primer, and on the waterproof sheet. A heat insulating roof structure including a metal roofing material that is arranged and fixed to the waterproof sheet by adhesion of rubber backed by a metal roofing material, wherein the fastening material is in the thickness direction of the heat insulating material. A heat insulating roof structure characterized in that it does not extend to the roof and that there is no structural material extending in the thickness direction of the heat insulating material.
(2) The undercoat primer is a butyl rubber-based primer, the waterproof sheet is a non-vulcanized butyl rubber-based sheet, and the rubber lined with the metal roofing material is a non-vulcanized butyl rubber. The insulated roof structure according to (1).
(3) The heat insulating roof structure according to (1) or (2), wherein the heat insulating material is a foamed plastic foam board.
(4) The heat insulating roof structure according to any one of (1) to (3), wherein the heat insulating material is one in which a plurality of heat insulating materials are bonded and laminated by an adhesive.

本考案の断熱屋根構造は、断熱材の厚さ方向に延びる釘やビスなどの留付材を設けず、しかも断熱材の厚さ方向に延びる金属垂木などの構造材を設けていないため、断熱材を横断する熱橋がなく、従って外部環境の温度変化の影響を受けにくく、断熱性が極めて高い。また、野地板の上に断熱材を接着固定しているため、断熱材を厚く形成して断熱性を高めることが容易である。 The heat insulating roof structure of the present invention is not provided with fasteners such as nails and screws extending in the thickness direction of the heat insulating material, and is not provided with structural materials such as metal rafters extending in the thickness direction of the heat insulating material. There is no thermal bridge across the material, so it is not easily affected by temperature changes in the external environment, and the heat insulation is extremely high. Further, since the heat insulating material is adhered and fixed on the field board, it is easy to form the heat insulating material thickly to improve the heat insulating property.

さらに、本考案の断熱屋根構造は、釘やビスなどの留付材で金属屋根材を固定せず、接着剤やゴムの粘着で接着固定するため、防水シートに穴を開けずに金属屋根材と防水シートの二重の防水機能を効果的に発揮することができる。また、各構成部間の固定は、留付材による母屋に対する野地板の固定以外、基本的に接着剤又はゴムによる粘着で行なわれているため、断熱屋根構造の施工が極めて容易である。 Further, the heat insulating roof structure of the present invention does not fix the metal roofing material with a fastener such as a nail or a screw, but adheres and fixes the metal roofing material with an adhesive or rubber adhesive, so that the metal roofing material is fixed without making a hole in the waterproof sheet. And the double waterproof function of the waterproof sheet can be effectively exhibited. Further, since the fixing between the constituent parts is basically performed by adhesive or rubber, other than fixing the field board to the purlin with the fastener material, it is extremely easy to construct the heat insulating roof structure.

図1は、従来の断熱屋根構造の一例を示し、(a)は、屋根傾斜方向で鉛直に切った概略断面図であり、(b)は、(a)の断面図の断面に直交する方向で鉛直に切った概略断面図である。FIG. 1 shows an example of a conventional heat-insulated roof structure, (a) is a schematic cross-sectional view cut vertically in the roof inclination direction, and (b) is a direction orthogonal to the cross section of the cross-sectional view of (a). It is a schematic cross-sectional view cut vertically in.

図2は、従来の断熱屋根構造の別の例を屋根傾斜方向で鉛直に切った概略断面図である。FIG. 2 is a schematic cross-sectional view of another example of the conventional insulated roof structure cut vertically in the roof inclination direction.

図3は、本考案の断熱屋根構造の一例を屋根傾斜方向で鉛直に切った概略断面図である。FIG. 3 is a schematic cross-sectional view of an example of the heat insulating roof structure of the present invention cut vertically in the roof inclination direction.

本考案の断熱屋根構造の実施形態及びその施工方法について図面を使用して以下に示すが、本考案はこれらに限定されるものではない。 The embodiment of the heat insulating roof structure of the present invention and the construction method thereof are shown below with reference to the drawings, but the present invention is not limited thereto.

図3は、本考案の断熱屋根構造の一例を屋根傾斜方向で鉛直に切った概略断面図である。図3中、10は金属屋根材、20は防水シート、30Cは留付材、40は断熱材、50は野地板、60は母屋である。以下、図3の断熱屋根構造の各構成部分を下側(室内側)から上側(外部環境側)に向かって順に説明する。 FIG. 3 is a schematic cross-sectional view of an example of the heat insulating roof structure of the present invention cut vertically in the roof inclination direction. In FIG. 3, 10 is a metal roofing material, 20 is a waterproof sheet, 30C is a fastener material, 40 is a heat insulating material, 50 is a field board, and 60 is a purlin. Hereinafter, each component of the heat insulating roof structure of FIG. 3 will be described in order from the lower side (indoor side) to the upper side (external environment side).

母屋60は、屋根自重、積雪、施工時荷重、風荷重等に耐えて屋根構造全体を支えるために一定間隔で配置される構造部材であり、従来公知のものが使用されることができる。母屋60は、金属製、木製、鉄筋コンクリート(RC)製が使用できるが、本考案では、金属製のものが好ましく、特にC型鋼が好ましい。 The purlin 60 is a structural member arranged at regular intervals to withstand the roof's own weight, snow cover, construction load, wind load, and the like to support the entire roof structure, and conventionally known ones can be used. The purlin 60 can be made of metal, wood, or reinforced concrete (RC), but in the present invention, a metal one is preferable, and a C-shaped steel is particularly preferable.

野地板50は、母屋60の上に配設され、固定されるものであり、それより上の屋根構造を面で受けて支える板状の構造部材である。野地板50は、杉板、野地合板、耐火野地合板などの従来公知のものが使用されることができる。本考案では、野地板50は、耐火野地合板が好ましく、特に硬質木片セメント板、硬質木毛セメント板、構造用合板、又はそれらの併用物が好ましい。 The field board 50 is arranged and fixed on the purlin 60, and is a plate-shaped structural member that receives and supports the roof structure above it with a surface. As the field board 50, conventionally known ones such as cedar board, field plywood, and fireproof field plywood can be used. In the present invention, the field board 50 is preferably a refractory field plywood, and particularly a hard wood piece cement board, a hard wood wool cement board, a structural plywood, or a combination thereof.

留付材30Cは、従来公知のビス、釘などが使用されることができるが、本考案では、金属製のスクリュービスが特に好ましい。留付材30Cは、母屋60に対して野地板50を固定するためのものであり、留付材30Cのビスなどの頭は、野地板50の外部環境側の面に面一で位置するように使用される。 Conventionally known screws, nails, and the like can be used as the fastener material 30C, but in the present invention, metal screw screws are particularly preferable. The fastening material 30C is for fixing the field board 50 to the purlin 60, so that the heads of the fasteners 30C such as screws are flush with the surface of the field board 50 on the external environment side. Used for.

本考案の断熱屋根構造では、留付材30Cが野地板50の上の断熱材40の厚さ方向に延びていないことが必要である。これにより、留付材30Cを介する外部環境からの熱の内部への伝達が効果的に抑制されることができる。 In the heat insulating roof structure of the present invention, it is necessary that the fastener 30C does not extend in the thickness direction of the heat insulating material 40 on the field board 50. As a result, the transfer of heat from the external environment to the inside through the fastener 30C can be effectively suppressed.

断熱材40は、従来公知の屋根用の断熱材が使用されることができるが、本考案では、施工性と断熱性の点で発泡プラスチックフォーム板、特にポリイソシアヌレートフォーム板が好ましい。断熱材40は、野地板50に対して接着剤によって接着される。ここで使用される接着剤としては、従来公知のものが使用されることができるが、本考案では、クロロプレンゴム系接着剤、酢酸ビニル系接着剤が好ましい。断熱材40を厚くしたい場合は、接着剤によって複数の断熱材(例えば発泡プラスチックフォーム板)が接着されかつ積層されたものを使用することができる。 As the heat insulating material 40, conventionally known heat insulating materials for roofs can be used, but in the present invention, foamed plastic foam boards, particularly polyisocyanurate foam boards, are preferable in terms of workability and heat insulating properties. The heat insulating material 40 is adhered to the field board 50 with an adhesive. As the adhesive used here, conventionally known adhesives can be used, but in the present invention, chloroprene rubber-based adhesives and vinyl acetate-based adhesives are preferable. When it is desired to increase the thickness of the heat insulating material 40, a material in which a plurality of heat insulating materials (for example, foamed plastic foam board) are bonded and laminated with an adhesive can be used.

本考案の断熱屋根構造では、断熱材40の厚さ方向に延びる構造材(金属垂木など)が存在しないことが必要である。これにより、断熱材40をまたぐ熱橋がなくなり、外部環境からの熱の内部への伝達が効果的に抑制されることができる。 In the heat insulating roof structure of the present invention, it is necessary that there is no structural material (metal rafters or the like) extending in the thickness direction of the heat insulating material 40. As a result, the thermal bridge that straddles the heat insulating material 40 is eliminated, and the transfer of heat from the external environment to the inside can be effectively suppressed.

防水シート20は、断熱材40の上に配設され、釘やビスで穴を開けないで接着されるものであり、それより上の金属屋根材10の隙間から雨水や湿気が侵入しても防水シート20より下への移行を防止するためのものである。本考案では、防水シート20は、合成ゴムからなるシートであることが好ましく、特に非加硫ブチルゴム系シートが好ましい。防水シート20は、断熱材40の上に下地処理材として下塗りプライマーを塗布した後、その上に載せて接着されることができる。これにより、防水シート20の接着が、下塗りプライマーと防水シート20を形成するゴムの粘着によって効果的に行なわれることができる。下塗りプライマーとしては、ブチルゴム系プライマーが好ましい。 The waterproof sheet 20 is arranged on the heat insulating material 40 and is adhered without making holes with nails or screws, and even if rainwater or moisture invades through the gaps of the metal roofing material 10 above it. This is to prevent the transition below the waterproof sheet 20. In the present invention, the waterproof sheet 20 is preferably a sheet made of synthetic rubber, and a non-vulcanized butyl rubber-based sheet is particularly preferable. The waterproof sheet 20 can be adhered by applying an undercoat primer as a base treatment material on the heat insulating material 40 and then placing it on the undercoat primer. Thereby, the adhesion of the waterproof sheet 20 can be effectively performed by the adhesion of the undercoat primer and the rubber forming the waterproof sheet 20. As the undercoat primer, a butyl rubber-based primer is preferable.

金属屋根材10は、ガルバリウム鋼板(登録商標)、ジンガリウム鋼板、亜鉛合金板などの従来公知のものが使用されることができ、本考案では、裏面が合成ゴム、特に非加流ブチルゴムで裏打ちされているものが好ましい。金属屋根材10は、防水シート20の上に配設され、防水シート20のゴムに対する金属屋根材10に裏打ちされたゴムの粘着によって接着され固定されることができる。防水シート20のゴムと金属屋根材10に裏打ちされたゴムの粘着により両者の接着、固定を確実にすることができる。 As the metal roofing material 10, conventionally known materials such as galvalume steel plate (registered trademark), gallium steel plate, and zinc alloy plate can be used. In the present invention, the back surface is lined with synthetic rubber, particularly non-vulcanized butyl rubber. It is preferable that it is. The metal roofing material 10 is arranged on the tarpaulin 20 and can be adhered and fixed by the adhesiveness of the rubber lined to the metal roofing material 10 to the rubber of the tarpaulin 20. Adhesion between the rubber of the waterproof sheet 20 and the rubber lined on the metal roofing material 10 ensures that the two are adhered and fixed.

次に、本考案の断熱屋根構造の施工方法の一例について説明する。まず、設計された屋根構造に合わせて、例えば、屋根の傾斜方向に直交する方向に母屋60を一定の間隔で配置する。母屋60は、耐火被覆を施されたものを使用することができる。次に、割付に応じて野地板50を母屋60の上に配置し、野地板50を母屋60に留付材で固定する。野地板50に接着剤を付けて断熱材40を接着、固定し、必要により野地板50の目地部に目地テープを貼る。断熱材40を厚くしたい場合は、必要に応じて接着剤を用いて断熱材40を複数枚積層する。 Next, an example of the construction method of the heat insulating roof structure of the present invention will be described. First, according to the designed roof structure, for example, purlins 60 are arranged at regular intervals in a direction orthogonal to the inclination direction of the roof. As the purlin 60, one having a fireproof coating can be used. Next, the field board 50 is arranged on the purlin 60 according to the allocation, and the field board 50 is fixed to the purlin 60 with a fastener material. An adhesive is attached to the field board 50 to bond and fix the heat insulating material 40, and if necessary, a joint tape is attached to the joint portion of the field board 50. When it is desired to thicken the heat insulating material 40, a plurality of heat insulating materials 40 are laminated by using an adhesive as needed.

断熱材40の上にローラー、刷毛などを用いて下塗りプライマーを均一に塗布する。全面に塗布した後、乾燥するまで十分な養生期間をとる。次に、予め墨出しを行ない、墨出しラインに合わせ、防水シート20を敷き込む。敷き込みは、ローラーなどで押さえて空気を抜きながら圧着して行なう。次に、割付図に応じて墨出しを行ない、金属屋根材10をゴムハンマーなどを用いて金属屋根材に裏打ちされたゴムが防水シート20に充分に粘着するように圧着させて固定する。これらの工程で、断熱屋根構造の施工が基本的に完了する。 The undercoat primer is uniformly applied onto the heat insulating material 40 using a roller, a brush, or the like. After applying to the entire surface, allow a sufficient curing period until it dries. Next, the marking is performed in advance, and the waterproof sheet 20 is laid in accordance with the marking line. The laying is done by pressing with a roller or the like and crimping while removing air. Next, marking is performed according to the layout drawing, and the metal roofing material 10 is fixed by crimping the metal roofing material 10 with a rubber hammer or the like so that the rubber lined with the metal roofing material sufficiently adheres to the waterproof sheet 20. In these steps, the construction of the insulated roof structure is basically completed.

本考案の断熱屋根構造を上で詳細に説明したが、これらは、一例にすぎず、本考案の請求項に記載の範囲を実質的に逸脱しない限り、上記の実施形態の修正、一部削除、一部の置換、一部の技術の追加等は可能であることは理解するべきである。また、説明の簡略化のために上記の説明で従来公知の構造や施工工程を十分に記載していない部分があることも理解するべきである。本考案の技術思想が十分に内在されている限り、そのような断熱屋根構造及び施工方法は、本考案の範疇に属する。 The insulated roof structure of the present invention has been described in detail above, but these are merely examples, and the above-described embodiments have been modified or partially deleted unless the scope of the claims of the present invention is substantially deviated. It should be understood that some replacements, some additions of technology, etc. are possible. In addition, for the sake of simplification of the explanation, it should be understood that there is a part in the above explanation that does not sufficiently describe the conventionally known structure and construction process. As long as the technical idea of the present invention is sufficiently inherent, such an insulated roof structure and construction method belongs to the category of the present invention.

本考案の断熱屋根構造によれば、簡単な屋根構造で断熱性と防水性を高めることができ、しかも施工性にも優れているので、当業界において極めて有用である。 According to the heat-insulated roof structure of the present invention, a simple roof structure can enhance heat-insulating and waterproofing properties, and is also excellent in workability, which is extremely useful in the art.

10 金属屋根材
10A 吊子
10B 留付材
20 防水シート
30A 金属垂木
30B 留付材
30C 留付材
40 断熱材
50 野地板
50A 留付材
60 母屋
10 Metal roofing material 10A Suspension 10B Fastener 20 Waterproof sheet 30A Metal rafter 30B Fastener 30C Fastener 40 Insulation material 50 Field board 50A Fastener 60 Purlin

Claims (4)

母屋と、前記母屋の上に配設されかつ前記母屋に対して留付材で固定された野地板と、前記野地板の上に配設されかつ前記野地板に対して接着剤によって接着された断熱材と、前記断熱材の上に配設されかつ前記断熱材に対して下塗りプライマーを介して防水シートを形成するゴムの粘着によって接着された防水シートと、前記防水シートの上に配設されかつ前記防水シートに対して金属屋根材に裏打ちされたゴムの粘着によって固定された金属屋根材とを含む断熱屋根構造であって、前記留付材が、前記断熱材の厚さ方向に延びていないこと、及び前記断熱材の厚さ方向に延びる構造材が、存在しないことを特徴とする断熱屋根構造。 A main building, a field board disposed on the main building and fixed to the main building with a fastener, and a field board arranged on the field board and bonded to the field board with an adhesive. A heat insulating material, a waterproof sheet disposed on the heat insulating material and adhered to the heat insulating material by adhesion of rubber forming a waterproof sheet via an undercoat primer, and disposed on the waterproof sheet. In addition, it is a heat insulating roof structure including a metal roofing material fixed to the waterproof sheet by adhesiveness of rubber backed by a metal roofing material, and the fastening material extends in the thickness direction of the heat insulating material. A heat insulating roof structure characterized in that there is no structural material extending in the thickness direction of the heat insulating material. 前記下塗りプライマーが、ブチルゴム系プライマーであり、前記防水シートが、非加硫ブチルゴム系シートであり、前記金属屋根材に裏打ちされたゴムが、非加硫ブチルゴムであることを特徴とする請求項1に記載の断熱屋根構造。 Claim 1 is characterized in that the undercoat primer is a butyl rubber-based primer, the waterproof sheet is a non-vulcanized butyl rubber-based sheet, and the rubber lined with the metal roofing material is a non-vulcanized butyl rubber. Insulated roof structure as described in. 前記断熱材が、発泡プラスチックフォーム板であることを特徴とする請求項1又は2に記載の断熱屋根構造。 The heat insulating roof structure according to claim 1 or 2, wherein the heat insulating material is a foamed plastic foam board. 前記断熱材が、接着剤によって複数の断熱材が接着されかつ積層されたものであることを特徴とする請求項1〜3のいずれかに記載の断熱屋根構造。 The heat insulating roof structure according to any one of claims 1 to 3, wherein the heat insulating material is one in which a plurality of heat insulating materials are bonded and laminated by an adhesive.
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