JP3203086U - Assembled steel structure hollow building - Google Patents
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- JP3203086U JP3203086U JP2015006580U JP2015006580U JP3203086U JP 3203086 U JP3203086 U JP 3203086U JP 2015006580 U JP2015006580 U JP 2015006580U JP 2015006580 U JP2015006580 U JP 2015006580U JP 3203086 U JP3203086 U JP 3203086U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
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Abstract
【課題】断熱性、防音性、耐火性、耐震性及び耐久性に優れ、低コストの組立式鉄骨構造中空建築物を提供する。【解決手段】組立式鉄骨構造中空建築物は、中空屋根(A)と、中空壁(B)と、横支持梁及び縦支持梁を有する中空窓枠(C)と、中空天井板(D)と、中空床板(D?)とを備える。空気を保温、断熱層、防音層、防火層とすることにより、断熱性、防音性、耐火性を高めつつ、製造コストを低減することができる。また、中空屋根(A)、中空壁(B)及び中空窓枠(C)の軽量化により、鉄骨構造の負荷を軽減して耐震性を高めることができる。【選択図】図1An object of the present invention is to provide a low-cost assembly-type steel structure hollow building which is excellent in heat insulation, soundproofing, fire resistance, earthquake resistance and durability. An assembling-type steel structure hollow building includes a hollow roof (A), a hollow wall (B), a hollow window frame (C) having a transverse support beam and a longitudinal support beam, and a hollow ceiling plate (D). And a hollow floor plate (D?). By making air into a heat insulating layer, a heat insulating layer, a soundproof layer, and a fireproof layer, it is possible to reduce manufacturing costs while improving heat insulation, soundproofing, and fire resistance. Moreover, by reducing the weight of the hollow roof (A), the hollow wall (B), and the hollow window frame (C), the load on the steel structure can be reduced and the earthquake resistance can be improved. [Selection] Figure 1
Description
本考案は、建築技術分野と関連する組立式鉄骨構造中空建築物である。 The present invention is an assembly-type steel structure hollow building related to the field of building technology.
建築物は人々の生活、仕事、娯楽の主な場所である。設計から、竣工、取り壊しまでに、資源・エネルギーの取入れ、排水、排気、廃棄物の排出を行うことを伴う。したがって、最大限にエネルギーを節約し、環境を守り、汚染とごみを減少して、健康的でスペースの有効利用に適した「環境配慮型建築物」を提供することは、人類の共通の目標となる。
そこで、環境への影響を考慮して省エネルギー化を図るべく、外壁に断熱層を設けた建築物が種々提案されている(例えば特許文献1参照)。
Architecture is the main place of people's life, work and entertainment. From design to completion and demolition, it involves taking in resources and energy, draining, exhausting, and discharging waste. Therefore, it is a common goal of mankind to provide “environmentally conscious buildings” that maximize energy conservation, protect the environment, reduce pollution and waste, and are healthy and suitable for effective use of space. It becomes.
In view of this, various buildings have been proposed in which a heat insulating layer is provided on the outer wall in order to save energy in consideration of the influence on the environment (see, for example, Patent Document 1).
従来の建築物の屋根及び外壁の設計は、外断熱、内断熱、あるいは、サイドイッチ断熱などを要求している。しかし、これらの3つの断熱方式は、科学的に充分な断熱性を得ることが困難であった。 Conventional building roof and exterior wall designs require exterior insulation, interior insulation, or side switch insulation. However, it has been difficult for these three heat insulation methods to obtain scientifically sufficient heat insulation properties.
そこで、本考案は、熱伝導係数0.023W/(m・k)の天然資源である空気を保温、断熱層とし、建築材料を精選し、合理的な設計と組み合わせて、建築物が中空状態で自己保温性、断熱性、防音性、耐火性、耐震性、低二酸化炭素排出量、省エネルギー、低コスト、耐久性を有し、先進的な建築標準を達成することを目的とする。 Therefore, the present invention uses a natural heat source with a thermal conductivity coefficient of 0.023 W / (m · k) as a heat insulation and heat insulation layer, carefully selects building materials, and combines them with a rational design to create a hollow building. It aims to achieve advanced building standards with self-heat insulation, heat insulation, soundproofing, fire resistance, earthquake resistance, low carbon dioxide emission, energy saving, low cost and durability.
上記の課題を解決するために、請求項1に係る考案の組立式鉄骨構造中空建築物は、中空屋根(A)と、中空壁(B)と、横支持梁及び縦支持梁を有する中空窓枠(C)と、中空天井板(D)と、中空床板(D´)とを備えたことを特徴とする。
請求項2に係る考案は、請求項1に係る組立式鉄骨構造中空建築物において、前記中空屋根(A)は、第1板材(1)と、第2板材(3)と、前記第1板材(1)と前記第2板材(3)との間に形成される第1中空竜骨層(2)とで構成されていることを特徴とする。
請求項3に係る考案は、請求項1又は2の組立式鉄骨構造中空建築物において、外壁である前記中空壁(B)は、第3板材(4)と、第4板材(6)と、前記第3板材(4)と前記第4板材(6)との間に形成される第2中空竜骨層(5)とで構成され、建物内の内壁は、第5板材(7)と、第6板材(9)と、前記第5板材(7)と前記第6板材(9)との間に形成される第3中空竜骨層(8)とで構成されることを特徴とする。
請求項4に係る考案は、請求項1乃至3のいずれか1項の組立式鉄骨構造中空建築物において、前記中空窓枠(C)は、前記横支持梁(10)と、前記縦支持梁(10)と、断面T型板材(12)と、これらの間に形成される第4中空層(11)とで構成されることを特徴とする。
請求項5に係る考案は、請求項1乃至4のいずれか1項の組立式鉄骨構造中空建築物において、前記中空天井板(D)は、第7板材(13)と、第8板材(15)と、前記第7板材(13)と第8板材(15)との間に形成される第5中空竜骨層(14)とで形成され、前記中空床板(D´)は、第9板材(16)と、第10板材(18)と、前記第9板材(16)と前記第10板材(18)との間に形成される第6中空竜骨層(17)とで構成されることを特徴とする。
請求項6に係る考案は、請求項1乃至5のいずれか1項の組立式鉄骨構造中空建築物において、前記中空屋根(A)、前記中空壁(B)、横支持梁及び縦支持梁を有する前記中空窓枠(C)、前記中空天井板(D)、並びに、前記中空床板(D´)は、ALCからなる板材を含み、図面及びレイアウトプランに従って工場で完成可能された後、これらを建築現場で組み立て可能な構造であることを特徴とする。
In order to solve the above-mentioned problem, the assembling-type steel structure hollow building according to
The invention according to claim 2 is the assembly-type steel structure hollow building according to
The invention according to claim 3 is the assembly type steel structure hollow building according to
The invention according to claim 4 is the assembly-type steel structure hollow building according to any one of
The invention according to claim 5 is the assembly type steel structure hollow building according to any one of
The invention according to claim 6 is the assembly-type steel structure hollow building according to any one of
以下、本考案の実施形態について、図1乃至図8を参照して詳細に説明する。
本実施形態の組立式鉄骨構造中空建築物は、中空屋根(A)、中空壁(B)、縦、横支持梁を有する中空窓枠(C)、中空天井板(D)、及び、中空床板(D´)で構成される。
Hereinafter, embodiments of the present invention will be described in detail with reference to FIGS. 1 to 8.
The assembled steel structure hollow building of this embodiment includes a hollow roof (A), a hollow wall (B), a hollow window frame (C) having vertical and horizontal support beams, a hollow ceiling plate (D), and a hollow floor plate. (D ′).
中空屋根(A)は、第1板材(1)と、第2板材(3)と、第1板材(1)と第2板材(3)との間に形成される第1中空竜骨層(2)で構成されている。第1板材(1)と第2板材(3)との接合部は専用のシーラントで密封される。これらの板材は、専用のボルトを使用して鉄骨構造に固定される。 The hollow roof (A) includes a first plate member (1), a second plate member (3), and a first hollow keel layer (2) formed between the first plate member (1) and the second plate member (3). ). The joint between the first plate (1) and the second plate (3) is sealed with a dedicated sealant. These plate materials are fixed to the steel structure using a dedicated bolt.
外壁である中空壁(B)は、第3板材(4)と、第4板材(6)と、これらの間に形成される第2中空竜骨層(5)とで構成される。組立式鉄骨構造中空建築物の内部を仕切る内壁は、第5板材(7)と、第6板材(9)と、これらの間に形成される第3中空竜骨層(8)とで構成される。これらの板材と板材との間の接合部は、専用のシーラントで密封される。また、これらの板材は、専用のボルトを使用して鉄骨構造に固定される。 The hollow wall (B) which is an outer wall is comprised by the 3rd board | plate material (4), the 4th board | plate material (6), and the 2nd hollow keel layer (5) formed among these. The inner wall that partitions the interior of the assembling-type steel structure hollow building is composed of the fifth plate member (7), the sixth plate member (9), and the third hollow keel layer (8) formed therebetween. . The joint between these plates is sealed with a dedicated sealant. Further, these plate materials are fixed to the steel frame structure using dedicated bolts.
中空窓枠(C)は、縦支持梁(10)と、横縦支持梁(10)と、断面T型板材(12)と、これらの間に形成される第4中空層(11)とで構成される。これらの板材と板材との間は、専用のシーラントで密封し連接される。これらの板材は、専用のボルトを使用して鉄骨構造に固定される。 The hollow window frame (C) includes a vertical support beam (10), a horizontal and vertical support beam (10), a cross-sectional T-shaped plate member (12), and a fourth hollow layer (11) formed therebetween. Composed. These plates are sealed and connected with a dedicated sealant. These plate materials are fixed to the steel structure using a dedicated bolt.
中空天井板(D)は、第7板材(13)と、第8板材(15)と、これらの間に形成される第5中空竜骨層(14)とで構成される。床板(D´)は、第9板材(16)と、第10板材(18)と、これらの間に形成される第6中空竜骨層(17)とで構成される。これらの板材と板材との間は、専用のシーラントで密封し連接される。これらの板材は、専用のボルトを使用して鉄骨造に固定される。 The hollow ceiling plate (D) includes a seventh plate member (13), an eighth plate member (15), and a fifth hollow keel layer (14) formed therebetween. A floor board (D ') is comprised by the 9th board | plate material (16), the 10th board | plate material (18), and the 6th hollow keel layer (17) formed among these. These plates are sealed and connected with a dedicated sealant. These plate materials are fixed to the steel structure using dedicated bolts.
前記中空屋根(A)、中空壁(B)、横支持梁及び縦支持梁を有する中空窓枠(C)、中空天井板(D)、並びに、中空床板(D´)は、図面及びレイアウトプランに従って工場で完成され、その後、これらは、建築現場で組み立てられる。これらの板材は、ALC(高温高圧蒸気養生された軽量気泡コンクリート)からなる。 The hollow roof (A), the hollow wall (B), the hollow window frame (C) having the horizontal support beam and the vertical support beam, the hollow ceiling plate (D), and the hollow floor plate (D ′) are shown in the drawings and layout plan. According to the factory, and then these are assembled at the construction site. These plate materials are made of ALC (lightweight aerated concrete cured by high temperature and high pressure steam).
本考案は、密封状態で熱伝導係数0.023W/(m・k)の天然資源である空気を保温、断熱層、防音層及び防火層とする。また、建築材料を精選し、合理的な設計と組み合わせて、材質の優れた特性を発揮させるように各建築材料を組み込んで、科学的に完璧な中空建築物を得る。そして、最大限の自己保温性、断熱性、防音性、耐火性、耐震性、低二酸化炭素排出量、省エネルギー、低コスト、耐久性を有して先進的な建築標準とする。 In the present invention, air that is a natural resource having a thermal conductivity coefficient of 0.023 W / (m · k) in a sealed state is used as a heat insulating layer, a heat insulating layer, a soundproof layer, and a fireproof layer. In addition, the building materials are carefully selected and combined with a rational design, and each building material is incorporated so as to exhibit the excellent characteristics of the material, thereby obtaining a scientifically perfect hollow building. And it will be an advanced building standard with maximum self-heat insulation, heat insulation, soundproofing, fire resistance, earthquake resistance, low carbon dioxide emission, energy saving, low cost and durability.
板材は、厚さ100mm、密度55kg/m2、熱抵抗値0.83w/(m2・k)、伝熱係数0.12w/(m・k)、貯熱係数2.15w/(m2・k)、熱膨張率7.0×10−6/℃、防音指数37.7dB、耐火極限4時間である。板材を二重配筋で強化して、圧縮強さ4.00Nmm2以上、曲げ強度0.50Nmm2以上、せん断強さ0.50Nmm2以上、弾性1800Nmm2以上とする。(中華人民共和国建築標準設計研究所で出版された書類番号03SG715−1 GUOJIAJIANZHUBIAOZHUNSHEJI 03SG715−1)。 The plate has a thickness of 100 mm, a density of 55 kg / m 2 , a thermal resistance value of 0.83 w / (m 2 · k), a heat transfer coefficient of 0.12 w / (m · k), and a heat storage coefficient of 2.15 w / (m 2 K), coefficient of thermal expansion of 7.0 × 10 −6 / ° C., soundproof index of 37.7 dB, and fire resistance limit of 4 hours. The plate material is reinforced with double reinforcement to obtain a compressive strength of 4.00 Nmm 2 or more, a bending strength of 0.50 Nmm 2 or more, a shear strength of 0.50 Nmm 2 or more, and an elasticity of 1800 Nmm 2 or more. (Document number 03SG715-1 GUOJIAJIANZHUBIAOZHUNSHEJI 03SG715-1 published at the Institute of Architectural Standard Design, People's Republic of China).
これを使用した具体的な実施形態は、以下の効果を奏する。
中空屋根(A)は、第1板材(1)(厚さ100mm)、第1中空竜骨層(2)(厚さ50mm)、第2板材(3)(厚さ100mm)で構成されて、その伝熱係数は0.16w/(m2・k)に達する。
A specific embodiment using this has the following effects.
The hollow roof (A) is composed of a first plate (1) (thickness 100 mm), a first hollow keel layer (2) (thickness 50 mm), and a second plate (3) (thickness 100 mm), The heat transfer coefficient reaches 0.16 w / (m 2 · k).
外壁である中空壁(B)は、第3板材(4)(厚さ100mm)、第2中空竜骨層(5)(厚さ100mm)、第4板材(6)(厚さ100mm)で構成されて、伝熱係数は0.16w/(m2・k)に達することができる。内壁は、第5板材(7)(厚さ50mm)、第3中空竜骨層(8)(厚さ50mm)、第6板材(9)(厚さ50mm)で構成されて、伝熱係数0.19w/(m2・k)に達することができる。 The hollow wall (B), which is the outer wall, is composed of a third plate (4) (thickness 100 mm), a second hollow keel layer (5) (thickness 100 mm), and a fourth plate (6) (thickness 100 mm). Thus, the heat transfer coefficient can reach 0.16 w / (m 2 · k). The inner wall is composed of the fifth plate member (7) (thickness 50 mm), the third hollow keel layer (8) (thickness 50 mm), and the sixth plate member (9) (thickness 50 mm). 19w / (m 2 · k) can be reached.
縦及び横支持梁を有する中空窓枠(C)は、縦、横支持梁(10)及び第4中空層(11)(厚さ100mm)、断面T型板材(12)(厚さ100mm)で構成されて、伝熱係数は0.16w/(m2・k)に達することができる。 The hollow window frame (C) having vertical and horizontal support beams is a vertical, horizontal support beam (10) and a fourth hollow layer (11) (thickness 100 mm), and a cross-sectional T-shaped plate material (12) (thickness 100 mm). Configured, the heat transfer coefficient can reach 0.16 w / (m 2 · k).
中空屋根(A)、中空の内外壁、中空天井板(D)及び中空床板(D´)の防音指数は、全て50〜74.8dB以上とすることができ、中空床板(D´)は、湿気を防げる。 The soundproofing indexes of the hollow roof (A), the hollow inner and outer walls, the hollow ceiling plate (D) and the hollow floor plate (D ′) can all be 50 to 74.8 dB or more, and the hollow floor plate (D ′) Prevent moisture.
耐震、耐火、防錆及び防腐:板材厚さ100mm、密度55kg/m2の軽い板材は、鉄骨構造の負荷を軽減できる。板材と板材との間は、専用のシーラントで密封し連接される。板材は、専用のボルトを使用して鉄骨構造に固定される。大きな地震があったときに、屋根、天井板、内外壁の板材は、脱落することなく、震度8〜9級の地震に耐えることができる。密封された中空空間を自然に流通する乾燥した空気により、内部の線材、管材、鋼材を保護する。板材の厚さが50〜100mmの場合、耐火限度が2〜4時間となり、組立式鉄骨構造中空建築物は、A級ないしA級以上の耐火性を得ることができる。 Earthquake resistance, fire resistance, rust prevention and antiseptic: A light plate material having a plate thickness of 100 mm and a density of 55 kg / m 2 can reduce the load on the steel structure. The plate material is sealed and connected with a special sealant. The plate material is fixed to the steel structure using a dedicated bolt. When a large earthquake occurs, the roof, ceiling plate, and inner and outer wall plates can withstand earthquakes with a seismic intensity of 8 to 9 without dropping off. The inside wire, pipe, and steel are protected by dry air that naturally circulates in the sealed hollow space. When the thickness of the plate material is 50 to 100 mm, the fire resistance limit is 2 to 4 hours, and the assembling-type steel structure hollow building can obtain fire resistance of class A to class A or higher.
低二酸化炭素排出量、省エネルギー及び低コスト:板材は、熱放射が小さく、優れた建材であり、重量が通常のコンクリートの1/4だけであり、鉄骨構造の量を減少することが可能になる。そして、空気を保温、断熱層として、コストの低下が可能である。工場生産等の生産方式により、生産速度を高め、サイクルタイムを短縮することができる。そして、製造に関わる人件費を低減して総コストを低下させることができる。 Low carbon dioxide emissions, energy saving and low cost: The plate material has low heat radiation, is an excellent building material, weighs only 1/4 that of normal concrete, and can reduce the amount of steel structure . The cost can be reduced by using air as a heat insulating layer and a heat insulating layer. Production methods such as factory production can increase production speed and cycle time. And the labor cost concerning manufacture can be reduced and total cost can be reduced.
イギリス、米国、ロシア、日本、カナダ、デンマーク及びスウェーデンの建築屋根及び外壁の熱伝導率の基準値は、それぞれ0.45、0.45、0.44、0.42、0.38、0.30及び0.17W/(m2・k)である。本考案の組立式鉄骨構造中空建築物の屋根及び外壁の熱伝導率は、全て0.16W/(m2・k)以下になり、世界の先進的な水準を超える。 The standard values for the thermal conductivity of architectural roofs and exterior walls in the UK, USA, Russia, Japan, Canada, Denmark and Sweden are 0.45, 0.45, 0.44, 0.42, 0.38,. 30 and 0.17 W / (m 2 · k). The thermal conductivity of the roof and outer wall of the assembling-type steel structure hollow building of the present invention is all less than 0.16 W / (m 2 · k), which exceeds the world's advanced level.
A…中空屋根、B…中空壁、C…中空窓枠、D…中空天井板、D´…中空床板、1…第1板材、2…第1中空竜骨層、3…第2板材、4…第3板材、5…第2中空竜骨層、6…
第4板材、7…第5板材、8…第3中空竜骨層、9…第6板材、10…縦支持梁、横支持梁、11…第4中空層、12…断面T型板材、13…第7板材、14…第5中空竜骨層、15…第8板材、16…第9板材、17…第6中空竜骨層、18…第10板材
A ... hollow roof, B ... hollow wall, C ... hollow window frame, D ... hollow ceiling plate, D '... hollow floor plate, 1 ... first plate material, 2 ... first hollow keel layer, 3 ... second plate material, 4 ... 3rd plate, 5 ... 2nd hollow keel layer, 6 ...
4th plate material, 7 ... 5th plate material, 8 ... 3rd hollow keel layer, 9 ... 6th plate material, 10 ... Longitudinal support beam, lateral support beam, 11 ... 4th hollow layer, 12 ... Cross-section T type plate material, 13 ... 7th plate material, 14 ... 5th hollow keel layer, 15 ... 8th plate material, 16 ... 9th plate material, 17 ... 6th hollow keel layer, 18 ... 10th plate material
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN107859213A (en) * | 2017-12-15 | 2018-03-30 | 武汉迈特国际集成房屋实业有限公司 | A kind of assembled lightgage steel joist wall and construction technology for being applied to building |
CN109989500A (en) * | 2019-04-22 | 2019-07-09 | 国家电网有限公司 | A kind of construction technology of high-strength anti-seismic wall |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107859213A (en) * | 2017-12-15 | 2018-03-30 | 武汉迈特国际集成房屋实业有限公司 | A kind of assembled lightgage steel joist wall and construction technology for being applied to building |
CN109989500A (en) * | 2019-04-22 | 2019-07-09 | 国家电网有限公司 | A kind of construction technology of high-strength anti-seismic wall |
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