JP2015145608A - Building material using combination of brick and geopolymer - Google Patents

Building material using combination of brick and geopolymer Download PDF

Info

Publication number
JP2015145608A
JP2015145608A JP2014031096A JP2014031096A JP2015145608A JP 2015145608 A JP2015145608 A JP 2015145608A JP 2014031096 A JP2014031096 A JP 2014031096A JP 2014031096 A JP2014031096 A JP 2014031096A JP 2015145608 A JP2015145608 A JP 2015145608A
Authority
JP
Japan
Prior art keywords
brick
geopolymer
building material
combination
temperature
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2014031096A
Other languages
Japanese (ja)
Inventor
芳明 田中
Yoshiaki Tanaka
芳明 田中
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP2014031096A priority Critical patent/JP2015145608A/en
Publication of JP2015145608A publication Critical patent/JP2015145608A/en
Pending legal-status Critical Current

Links

Landscapes

  • Building Environments (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a building material having a temperature and humidity controlling function and a high aging degradation durability.SOLUTION: The building material is characterized by using a combination of brick and geopolymer material.

Description

この発明は、煉瓦とジオポリマー系コンクリートを組み合わせた建築材料である。  The present invention is a building material combining brick and geopolymer concrete.

一般にコンクリート建築材料は防音性や耐火性、耐久性に優れます。しかし、温度湿度の調節機能の面では劣ります。これはジオポリマー系コンクリートでも同じです。そしてジオポリマー系コンクリートは、経年劣化に対する耐久性において特に優れます。
煉瓦には高い耐久性と断熱性のほかに温度湿度の調節機能があるという長所があります。しかし構造材として用いる場合は地震に弱いという欠点がありました。また、表面貼りつけ等で用いる場合、露出しているため風化による経年劣化が比較的早いという欠点があります。
In general, concrete building materials are excellent in soundproofing, fire resistance and durability. However, the temperature and humidity adjustment function is inferior. The same is true for geopolymer concrete. Geopolymer concrete is particularly excellent in durability against aging.
In addition to high durability and thermal insulation, bricks have the advantage of temperature and humidity control. However, when used as a structural material, it has the disadvantage of being vulnerable to earthquakes. Also, when used for pasting on the surface, etc., there is a disadvantage that the deterioration due to weathering is relatively fast due to exposure.

煉瓦には高い耐久性があるが、露出している場合は風化による経年劣化が比較的早い。また煉瓦は構造材として用いる場合は地震に弱いという欠点がある。これをジオポリマー系コンクリートと組み合わせることで煉瓦の不足点である低耐震性と風化による経年劣化性などの点を大幅に改善し、それと同時に、ジオポリマー系コンクリートの不足点である温度湿度調節機能の低さを煉瓦のもつ温度湿度調節機能の性質で補う。本発明は、永く維持できる温度湿度調節機能と高い経年耐久性を実現するためになされた建築材料である。  Brick is highly durable, but if exposed, it is relatively aging due to weathering. Also, bricks have the disadvantage of being vulnerable to earthquakes when used as structural materials. Combining this with geopolymer concrete greatly improves the low earthquake resistance, which is a shortage of bricks, and aging degradation due to weathering. At the same time, the temperature and humidity control function is a shortage of geopolymer concrete. Is compensated by the temperature and humidity control function of the brick. The present invention is a building material made to realize a temperature and humidity control function that can be maintained for a long time and high aging durability.

ジオポリマー系コンクリートとして硬化させる際に、煉瓦をその内部に含ませてから硬化させる。またはすでに硬化させた空洞型のジオポリマー系コンクリート建築材料の中に煉瓦を入れ、煉瓦の外部露出具合を低減する。他には、煉瓦材料の上からジオポリマー系セメントで煉瓦を包んだのち硬化させるなどの方法が考えられる。
本発明は、煉瓦とジオポリマー系コンクリートを組み合わせた建築材料である。
When curing as geopolymer concrete, the brick is included in the interior and then cured. Alternatively, the brick is placed in a hollow geopolymer-based concrete building material that has already been hardened to reduce the external exposure of the brick. Another possible method is to wrap the brick with geopolymer cement on the brick material and then harden it.
The present invention is a building material combining brick and geopolymer concrete.

煉瓦はジオポリマー系コンクリートに守られる構造となるため、ジオポリマー系コンクリートのもつ風化に対する耐久性によって煉瓦は風化作用から守られ、煉瓦自体の経年劣化を低減できる。それにより、煉瓦のもつ温度湿度調節機能などの様々な機能を永く発揮できる。また、ジオポリマー系コンクリートのもつ弾力性と耐久性により、耐震性も期待できる建築材料となる。つまり温度湿度調節機能と風化に対する高い耐久性を主な特長とした、耐震性、耐火性、断熱性、防音性などの性能も期待できる高機能な建築材料となる。  Since bricks have a structure protected by geopolymer concrete, the durability of the geopolymer concrete against weathering protects the brick from weathering and can reduce aging of the brick itself. As a result, various functions such as the temperature and humidity control function of the brick can be exhibited for a long time. In addition, the elasticity and durability of geopolymer concrete makes it a building material that can also be expected to have earthquake resistance. In other words, it is a high-performance building material that can be expected to have performances such as earthquake resistance, fire resistance, heat insulation, and soundproofing, with temperature and humidity control functions and high durability against weathering as its main features.

以下、本発明を実施するための形態についての幾つかの例を説明する。
煉瓦を含ませて硬化させて作る、ジオポリマー系コンクリート建築材料。形状や厚みについては、硬化に使用する型枠の形状や厚みによりあらゆるパターンを生み出せる。例えば、外壁材、床板材、屋根材、天井材、耐火材、駐車場の路面として。ジオポリマー系コンクリートは凍結によるヒビを起こしにくい性質をもつため、その点でも優れた建築材料となる。煉瓦においてジオポリマーセメントで包んで接着していく方法により、風化による煉瓦自体の経年劣化と接着状態の劣化を、用いるジオポリマーの耐久性により低減できる。
Hereafter, some examples about the form for implementing this invention are demonstrated.
A geopolymer concrete building material made of brick and cured. With regard to shape and thickness, all patterns can be created depending on the shape and thickness of the mold used for curing. For example, as exterior wall materials, floorboard materials, roofing materials, ceiling materials, fireproof materials, and parking lot road surfaces. Geopolymer concrete is an excellent building material because it is resistant to cracking due to freezing. By the method of wrapping and bonding with geopolymer cement in the brick, the deterioration of the brick itself due to weathering and the deterioration of the adhesion state can be reduced by the durability of the geopolymer used.

Claims (1)

煉瓦とジオポリマー系コンクリートを組み合わせた建築材料  Building materials combining brick and geopolymer concrete
JP2014031096A 2014-02-03 2014-02-03 Building material using combination of brick and geopolymer Pending JP2015145608A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2014031096A JP2015145608A (en) 2014-02-03 2014-02-03 Building material using combination of brick and geopolymer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2014031096A JP2015145608A (en) 2014-02-03 2014-02-03 Building material using combination of brick and geopolymer

Publications (1)

Publication Number Publication Date
JP2015145608A true JP2015145608A (en) 2015-08-13

Family

ID=53889966

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2014031096A Pending JP2015145608A (en) 2014-02-03 2014-02-03 Building material using combination of brick and geopolymer

Country Status (1)

Country Link
JP (1) JP2015145608A (en)

Similar Documents

Publication Publication Date Title
EP3752689A4 (en) Prefabricated insulated building panel with at least one cured cementitious layer bonded to insulation
US9353523B2 (en) Insulated wall panel
SI3083522T1 (en) Dry building material mixture and thermal insulation plaster produced therefrom
WO2015121762A3 (en) Prefabricated structural building panels and assemblies thereof
MY182385A (en) Coloured fiber cement products and methods for the production thereof
WO2019216851A3 (en) Cement-based light precast mortar with expanded perlite aggregate
WO2009007994A3 (en) Composition of materials for production of fly ash, pre polymerized resin composite
CY1124725T1 (en) ENVIRONMENTALLY RESPONSIBLE INSULATED BUILDING COMPONENTS AND STRUCTURES
RU2013107756A (en) SEMI-TRANSPARENT LIGHT CONCRETE
JP2015145608A (en) Building material using combination of brick and geopolymer
CN105418032A (en) Plastering mortar used for heat preservation for outer wall
RU161250U1 (en) PANEL FACADE HEATING
WO2019240705A3 (en) Natural, light aggregate precast composite mortar with insulation properties, inorganic binding system
WO2019004954A3 (en) Building brick and manufacturing method thereof
PL422190A1 (en) Bridgeless structural composite for construction of walls and floors and method for construction of walls and floors in buildings, using the bridgeless structural composite
CN104131651A (en) Foamed ceramic steel structure wall
RU2483174C2 (en) Method to finish building walls
CN106316276A (en) Anti-crack plastering mortar for steel mesh frame expanded polyphenyl boards
CN206769095U (en) Foamed concrete plate outer heat preservation system
JP2015147716A (en) Geopolymer furniture material and interior material including brick
JP2008297774A (en) Concrete panel for building material and method of manufacturing the same
EA201900511A1 (en) FRONT DECORATIVE HEAT-INSULATING PANEL FROM POLYSTYREN CONCRETE AND METHOD OF ITS MANUFACTURE (OPTIONS)
GR20110100382A (en) Method for breaking thermal bridges in building elements
MD1438Y (en) Process for thermal insulation and protection from atmospheric actions of external walls of building filler structures
TR201916347A2 (en) Construction material that can be used for different purposes