JP2012246604A5 - Insulation panel, indoor heat insulation structure of building, manufacturing method of heat insulation panel, construction method of indoor heat insulation structure, heat insulation panel assignment system, and heat insulation panel assignment method - Google Patents

Insulation panel, indoor heat insulation structure of building, manufacturing method of heat insulation panel, construction method of indoor heat insulation structure, heat insulation panel assignment system, and heat insulation panel assignment method Download PDF

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JP2012246604A5
JP2012246604A5 JP2011116666A JP2011116666A JP2012246604A5 JP 2012246604 A5 JP2012246604 A5 JP 2012246604A5 JP 2011116666 A JP2011116666 A JP 2011116666A JP 2011116666 A JP2011116666 A JP 2011116666A JP 2012246604 A5 JP2012246604 A5 JP 2012246604A5
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本発明は、建物の断熱性向上に寄与する断熱パネル、建物の室内側断熱構造、断熱パネルの製造方法、室内側断熱構造の施工方法、断熱パネルの割り付けシステム、及び断熱パネルの割り付け方法関する。 The present invention relates to a heat insulating panel that contributes to improving the heat insulating property of a building, a building indoor heat insulating structure, a method for manufacturing a heat insulating panel, a method for constructing a heat insulating panel, a heat insulating panel assignment system, and a heat insulating panel assignment method.

例えば建物の外壁を除去し、断熱材等を施工して再度外壁を形成する方法がある。また、床については暗く、狭い床下空間に潜り、床に断熱材等を施工して形成する方法がある。しかしながら外壁に対するこのような方法では外壁を除去するために部分的な施工ができないとともに、外壁の施工のために足場を形成する必要あり大がかりになる。一方、床については建物の基礎が床下空間を区画しているため、建物によっては床下から施工できない箇所が発生する。 For example, there is a method in which an outer wall of a building is removed and a heat insulating material is applied to form the outer wall again. In addition, there is a method in which the floor is dark and submerged in a narrow underfloor space, and a heat insulating material or the like is applied to the floor. However with unable partial construction to remove the outer wall in such a way with respect to the outer wall, it is necessary to form a scaffold for construction of the outer wall becomes bulky. On the other hand, with respect to the floor, since the foundation of the building divides the under-floor space, some buildings cannot be constructed from under the floor.

そこで本発明は上記の問題に鑑み、増し張り断熱による改修において工期を短く、改修を簡易とすることができる断熱パネルを提供することを課題とする。また、当該断熱パネルを含む建物の室内側断熱構造、断熱パネルの製造方法、室内側断熱構造の施工方法、断熱パネルの割り付けシステム、及び断熱パネルの割り付け方法を提供する。
本明細書中で「室内側断熱構造」は、「断熱壁構造」、「断熱床構造」、及び「断熱天井構造」を含む概念である。また「室内側既存構造」は断熱改修を行う前の既存の室内側構造を表し、既存壁構造、既存床構造、及び既存天井構造を意味する。
Then, this invention makes it a subject to provide the heat insulation panel which can shorten a work period and can make repair simple in repair by additional tension heat insulation in view of said problem. Moreover, the indoor side heat insulation structure of the building containing the said heat insulation panel, the manufacturing method of a heat insulation panel, the construction method of an indoor side heat insulation structure, the allocation system of a heat insulation panel, and the allocation method of a heat insulation panel are provided.
In this specification, the “room side heat insulating structure” is a concept including “heat insulating wall structure”, “heat insulating floor structure”, and “heat insulating ceiling structure”. The “indoor side existing structure” represents an existing indoor side structure before the heat insulation renovation, and means an existing wall structure, an existing floor structure, and an existing ceiling structure.

請求項3に記載の発明は、請求項1又は2に記載の断熱パネル(10)において、枠(12)の外周面にはシール部材(25)が配置されている。
請求項4に記載の発明は、請求項1〜3のいずれか一項に記載の断熱パネル(10)において、保持手段(11、30)には、加工可能範囲(11a、11b)が表示されている。
According to a third aspect of the present invention, in the heat insulation panel (10) according to the first or second aspect, a seal member (25) is disposed on the outer peripheral surface of the frame (12).
As for invention of Claim 4, in the heat insulation panel (10) as described in any one of Claims 1-3, the processable range (11a, 11b) is displayed on the holding means (11, 30). ing.

請求項に記載の発明は、建物の躯体(42〜46、52)と、建物の躯体の室内側に配置された請求項1〜のいずれか一項に記載の断熱パネル(53〜56)と、を備え、 断熱パネルの枠が建物の躯体に固定部材(58)により固定されている、建物の室内側断熱構造(40)である。
ここで「建物の躯体」は、建物に備えられる構造上の要素を意味し、具体的には柱、間柱、梁、根太、既存内装材、既存床材、既存天井材等を含む概念である。また、「建物の室内側断熱構造」とは、「建物の断熱壁構造」、「建物の断熱床構造」、「建物の断熱天井構造」を含む概念である。
The invention according to claim 5, skeleton of the building (the 42~46,52), insulation panels according to any one of claims 1 to 4 arranged on the interior side of the skeleton of the building (53 to 56 ), And the frame of the heat insulation panel is fixed to the housing of the building by a fixing member (58).
Here, “building frame” means a structural element provided in the building, and specifically includes pillars, studs, beams, joists, existing interior materials, existing flooring materials, existing ceiling materials, etc. . Further, the “building interior heat insulation structure” is a concept including “building thermal insulation wall structure”, “building thermal insulation floor structure”, and “building thermal insulation ceiling structure”.

請求項6に記載の発明は、施工対象である室内側既存構造の情報を取得する工程(S110)と、取得した情報に基づいて請求項1〜4のいずれか一項に記載の断熱パネルの割り付けを決める工程(S111)と、決められた割り付けに基づいて断熱パネルを製造する工程(S112)と、を備え、断熱パネルの割り付けを決める工程の際に、可能な限り真空断熱材の割合を多くする、断熱パネルの製造方法である。
請求項に記載の発明は、施工対象である室内側既存構造の情報を取得する工程(S110)と、取得した情報に基づいて請求項1〜のいずれか一項に記載の断熱パネルの割り付けを決める工程(S111)と、決められた割り付けに基づいて断熱パネルを製造する工程(S112)と、製造された断熱パネルを室内側既存構造に取り付ける工程(S114)と、を備える、室内側断熱構造の施工方法(S101)である。
ここで、「室内側既存構造」とは、「既存壁構造」、「既存床構造」、及び「既存天井構造」を含む概念である。
Invention of Claim 6 is the process (S110) which acquires the information of the indoor existing structure which is construction object, and the heat insulation panel as described in any one of Claims 1-4 based on the acquired information. A step of determining allocation (S111) and a step of manufacturing a heat insulation panel based on the determined allocation (S112), and in the step of determining the allocation of the heat insulation panel, the proportion of the vacuum heat insulating material as much as possible It is a manufacturing method of the heat insulation panel which increases.
Invention of Claim 7 is the process (S110) which acquires the information of the indoor existing structure which is construction object, and the heat insulation panel as described in any one of Claims 1-4 based on the acquired information. An indoor side comprising: a step of determining allocation (S111); a step of manufacturing a heat insulating panel based on the determined allocation (S112); and a step of attaching the manufactured heat insulating panel to an existing indoor structure (S114). It is the construction method (S101) of a heat insulation structure.
Here, the “indoor side existing structure” is a concept including “existing wall structure”, “existing floor structure”, and “existing ceiling structure”.

請求項に記載の発明は、施工対象である室内側既存構造のデータを受信する受信手段(103)と、受信した室内側既存構造のデータに基づいて、該室内側既存構造を演算して寸法データを生成する手段(102)と、生成された寸法データに基づいて請求項1〜のいずれか一項に記載の断熱パネルを割り付ける演算をして割り付けデータを生成する手段(102)と、生成された断熱パネルの割り付け結果を出力する出力手段(106)と、を有する、断熱パネルの割り付けシステム(100)である。 The invention according to claim 8 calculates the indoor existing structure based on the receiving means (103) for receiving the data of the indoor existing structure to be constructed and the received indoor existing structure data. Means (102) for generating dimensional data, and means (102) for generating allocation data by performing an operation for allocating the thermal insulation panel according to any one of claims 1 to 4 based on the generated dimension data. And an output means (106) for outputting the generated insulation panel assignment result, the insulation panel assignment system (100).

請求項に記載の発明は、受信手段、及び演算手段を備える演算装置を用い、施工対象である室内側既存構造のデータを受信し(S210)、受信した室内側既存構造のデータに基づいて該室内側既存構造を演算して寸法データを生成し(S211)、生成された寸法データに基づいて請求項1〜のいずれか一項に記載の断熱パネルを割り付ける演算をして割り付けデータを生成することにより、断熱パネルの割り付け結果を得る、断熱パネルの割り付け方法である。 The invention according to claim 9 uses the receiving device and the calculation device including the calculation means, receives the data of the existing indoor side structure to be constructed (S210), and based on the received indoor side existing structure data The indoor existing structure is calculated to generate dimension data (S211), and based on the generated dimension data, calculation is performed to allocate the heat insulation panel according to any one of claims 1 to 4 , and the allocation data is This is a method for allocating heat insulation panels, which is obtained to obtain the result of the heat insulation panel assignment.

Claims (9)

複数の枠材が組み合わされて枠状に形成された枠と、
前記枠材により区画された枠内に配置された真空断熱材と、
前記真空断熱材を前記枠内に保持する保持手段と、を備える
断熱パネル。
A frame formed by combining a plurality of frame members into a frame shape;
A vacuum heat insulating material disposed in a frame defined by the frame material;
And a holding means for holding the vacuum heat insulating material in the frame.
前記枠内には、前記真空断熱材が配置されていない部位に切断可能な他の断熱材も配置されている請求項1に記載の断熱パネル。   The heat insulation panel according to claim 1, wherein another heat insulating material that can be cut at a portion where the vacuum heat insulating material is not disposed is also disposed in the frame. 前記枠の外周面にはシール部材が配置されている請求項1又は2に記載の断熱パネル。   The heat insulation panel according to claim 1, wherein a seal member is disposed on an outer peripheral surface of the frame. 前記保持手段には、加工可能範囲が表示されている請求項1〜3のいずれか一項に記載の断熱パネル。  The heat insulation panel according to any one of claims 1 to 3, wherein a processable range is displayed on the holding means. 建物の躯体と、
前記建物の躯体の室内側に配置された請求項1〜のいずれか一項に記載の断熱パネルと、を備え、
前記断熱パネルの前記枠が前記建物の躯体に固定部材により固定されている、建物の室内側断熱構造。
The building's enclosure,
The heat insulation panel according to any one of claims 1 to 4 , which is disposed on the indoor side of the housing of the building,
The indoor heat insulating structure of a building, wherein the frame of the heat insulating panel is fixed to a housing of the building by a fixing member.
施工対象である室内側既存構造の情報を取得する工程と、A process of acquiring information on the existing indoor structure that is the construction target;
前記取得した情報に基づいて請求項1〜4のいずれか一項に記載の断熱パネルの割り付けを決める工程と、  The step of deciding the allocation of the heat insulating panel according to any one of claims 1 to 4 based on the acquired information;
前記決められた割り付けに基づいて前記断熱パネルを製造する工程と、を備え、  Producing the thermal insulation panel based on the determined allocation,
前記断熱パネルの割り付けを決める工程の際に、可能な限り前記真空断熱材の割合を多くする、断熱パネルの製造方法。  A method for manufacturing a heat insulating panel, wherein the proportion of the vacuum heat insulating material is increased as much as possible in the step of determining the allocation of the heat insulating panels.
施工対象である室内側既存構造の情報を取得する工程と、
前記取得した情報に基づいて請求項1〜のいずれか一項に記載の断熱パネルの割り付けを決める工程と、
前記決められた割り付けに基づいて前記断熱パネルを製造する工程と、
前記製造された前記断熱パネルを前記室内側既存構造に取り付ける工程と、を備える、室内側断熱構造の施工方法。
A process of acquiring information on the existing indoor structure that is the construction target;
The step of deciding the allocation of the heat insulation panel according to any one of claims 1 to 4 , based on the acquired information;
Manufacturing the thermal insulation panel based on the determined allocation;
Attaching the manufactured heat insulation panel to the indoor side existing structure.
施工対象である室内側既存構造のデータを受信する受信手段と、
受信した前記室内側既存構造のデータに基づいて、該室内側既存構造を演算して寸法データを生成する手段と、
生成された前記寸法データに基づいて請求項1〜のいずれか一項に記載の断熱パネルを割り付ける演算をして割り付けデータを生成する手段と、
生成された前記断熱パネルの割り付け結果を出力する出力手段と、を有する、
断熱パネルの割り付けシステム。
A receiving means for receiving the data of the indoor existing structure to be constructed;
Means for calculating the indoor existing structure based on the received indoor existing structure data and generating dimension data;
Means for generating allocation data by performing an operation for allocating the thermal insulation panel according to any one of claims 1 to 4 based on the generated dimension data;
Output means for outputting the generated allocation result of the thermal insulation panel,
Insulation panel layout system.
受信手段、及び演算手段を備える演算装置を用い、
施工対象である室内側既存構造のデータを受信し、
受信した前記室内側既存構造のデータに基づいて該室内側既存構造を演算して寸法データを生成し、
生成された前記寸法データに基づいて請求項1〜のいずれか一項に記載の断熱パネルを割り付ける演算をして割り付けデータを生成することにより、
前記断熱パネルの割り付け結果を得る、
断熱パネルの割り付け方法。
Using an arithmetic device comprising a receiving means and an arithmetic means,
Receive the data of the existing indoor structure to be constructed,
Based on the received indoor side existing structure data, the indoor side existing structure is calculated to generate dimension data,
By generating the allocation data by performing an operation of allocating the heat insulation panel according to any one of claims 1 to 4 based on the generated dimension data,
Obtaining the result of the insulation panel assignment,
Insulation panel layout method.
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JP5976309B2 (en) * 2011-12-14 2016-08-23 株式会社ウッドワン Thermal insulation reforming method and thermal insulation panel for thermal insulation reforming
JP6313942B2 (en) * 2013-09-30 2018-04-18 株式会社ウッドワン Internal heat insulation structure for apartment houses and method of heat insulation reform for apartment houses
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JP5982685B2 (en) * 2014-12-10 2016-08-31 株式会社Lixil Indoor thermal insulation repair method
JP6266030B2 (en) * 2016-01-29 2018-01-24 株式会社コシイプレザービング Installation method of heat insulation member
JP2019199877A (en) * 2017-04-20 2019-11-21 Agc株式会社 Heat insulating structure
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Family Cites Families (13)

* Cited by examiner, † Cited by third party
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JPH10219866A (en) * 1997-02-03 1998-08-18 Matsushita Refrig Co Ltd Heat insulating panel and manufacture therefor
JP3335316B2 (en) * 1999-02-12 2002-10-15 株式会社イナックストステム・ホールディングス Thermal insulation panel
JP2001193214A (en) * 2000-01-17 2001-07-17 Shibano Seisakusho:Kk Method and system for erecting panel for construction
JP2006063772A (en) * 2004-08-24 2006-03-09 Kiyotaka Morita Sukiya-style interior constriction method and sukiya-style indoor structure (built in the style of a tea-ceremony house)
JP4567407B2 (en) * 2004-09-27 2010-10-20 アキレス株式会社 Construction method of high thermal insulation structure of building
JP4609305B2 (en) * 2005-12-19 2011-01-12 パナソニック株式会社 Thermal insulation structure and building using thermal insulation structure
JP4622892B2 (en) * 2006-03-06 2011-02-02 パナソニック株式会社 Building wall structure
JP2007239288A (en) * 2006-03-08 2007-09-20 Matsushita Electric Ind Co Ltd Member for construction using vacuum insulating material
JP4895708B2 (en) * 2006-07-27 2012-03-14 株式会社コンピュータシステム研究所 Building renovation design support system
JP5077058B2 (en) * 2008-05-12 2012-11-21 パナソニック株式会社 Insulation wall
JP5217641B2 (en) * 2008-06-02 2013-06-19 パナソニック株式会社 Insulation wall
JP5300351B2 (en) * 2008-07-09 2013-09-25 アキレス株式会社 Architectural vacuum insulation board
JP5514015B2 (en) * 2010-07-01 2014-06-04 パナソニック株式会社 Interior building materials with insulation

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