Processing method of antibacterial and wear-resistant aerated brick

A processing method and technology for aerated bricks, applied in the field of aerated bricks, can solve problems such as the inability of aerated bricks to meet building requirements, and achieve the effects of improving the physical and chemical properties of the surface, the effect is obvious, and the compressive strength is improved

Inactive Publication Date: 2017-05-10
孟志美
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Aerated bricks with hollow characteristics and scalability have gradually replaced solid bricks. With the increase of building height and the improvement of performance requirements such as shock resistance, heat preservation, waterproof, and sound insulation, the existing aerated bricks with only good expansion space Gas bricks are increasingly unable to meet architectural requirements

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] An antibacterial and wear-resistant aerated brick includes a regular triangular pyramid inner core and a square outer core. The regular triangular pyramid inner core includes, in parts by mass: 10 parts of diatomite, 10 parts of triethylenetetramine modified durian shells, chestnut shell fibers 5 parts of plain elements, 1 part of aerated aluminum powder, 3 parts of hollow glass microspheres, 3 parts of monoalkoxy titanate, 3 parts of polytetrafluoroethylene particles, 0.5 parts of melamine, and 1 part of sepiolite wool; The square outer core includes in parts by mass: 12 parts of cement, 5 parts of fluorogypsum, 5 parts of tea powder, 2 parts of aluminum sulfate, 2 parts of hydroxyethyl cellulose, 1 part of triethanolamine, 0.8 parts of shale powder, 1 part of antimony, 0.8 part of halogen flame retardant, 0.5 part of titanium dioxide, 0.5 part of nano-zinc oxide, 1 part of α-Al2O3 micropowder, 1 part of sodium dodecylbenzenesulfonate, 1 part of isooctyltriethoxysilane ...

Embodiment 2

[0029]An antibacterial and wear-resistant aerated brick, comprising a regular triangular pyramid inner core and a square outer core, the regular triangular pyramid inner core comprising: 20 parts by mass of diatomite, 20 parts of triethylenetetramine modified durian shells, chestnut shells 10 parts of cellulose, 2 parts of aerated aluminum powder, 6 parts of hollow glass microspheres, 5 parts of monoalkoxy titanate, 5 parts of polytetrafluoroethylene particles, 1 part of melamine, 1.5 parts of sepiolite wool; The square outer core includes: 18 parts by mass of cement, 8 parts of fluorogypsum, 8 parts of tea powder, 2.5 parts of aluminum sulfate, 3 parts of hydroxyethyl cellulose, 1.4 parts of triethanolamine, 1 part of shale powder, trioxide 1.5 parts of antimony, 1.2 parts of halogen flame retardant, 1 part of titanium dioxide, 1 part of nano-zinc oxide, 2 parts of α-Al2O3 micropowder, 1.5 parts of sodium dodecylbenzenesulfonate, 1.2 parts of isooctyltriethoxysilane Parts; th...

Embodiment 3

[0039] An antibacterial and wear-resistant aerated brick, characterized in that it includes a regular triangular pyramid inner core and a square outer core, and the regular triangular pyramid inner core includes: 15 parts by mass of diatomite, 12 parts of triethylenetetramine modified durian shell 8 parts of chestnut shell cellulose, 1.5 parts of aerated aluminum powder, 5 parts of hollow glass microspheres, 4 parts of monoalkoxy titanate, 4 parts of polytetrafluoroethylene particles, 0.6 parts of melamine, sepiolite wool 1.2 parts; the square outer core includes in parts by mass: 16 parts of cement, 6 parts of fluorogypsum, 6 parts of tea powder, 2.4 parts of aluminum sulfate, 2.2 parts of hydroxyethyl cellulose, 1.2 parts of triethanolamine, 0.85 parts of shale powder Parts, 1.25 parts of antimony trioxide, 1 part of halogenated flame retardant, 0.8 parts of titanium dioxide, 0.75 parts of nano-zinc oxide, 1.5 parts of α-Al2O3 micropowder, 1.4 parts of sodium dodecylbenzenesu...

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PUM

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Abstract

The invention relates to an antibacterial and wear-resistant aerated brick. The aerated brick is characterized by being prepared from a normal triangular pyramid inner core and a square outer core, wherein the normal triangular pyramid inner core is prepared from the following raw materials in parts by mass: 10-20 parts of kieselguhr, 10-20 parts of triethylene tetramine-modified durian shell, 5-10 parts of chestnut shell cellulose, 1-2 parts of aerated aluminum powder, 3-6 parts of hollow glass microspheres, 3-5 parts of mono-alkoxy titanate, 3-5 parts of polytetrafluoroethylene particles, 0.5-1 part of melamine and 1-1.5 parts of sepiolite amianthine; the square outer core is prepared from the following raw materials in parts by mass: 12-18 parts of cement, 5-8 parts of fluorgypsum, 5-8 parts of tea dust, 2-2.5 parts of aluminum sulfate, 2-3 parts of hydroxyethyl cellulose, 1-1.4 parts of triethanolamine, 0.8-1 part of shale powder, 1-1.5 parts of antimonous oxide, 0.8-1.2 parts of a halogenated flame retardant, 0.5-1 part of titanium dioxide, 0.5-1 part of nano-zinc oxide, 1-2 parts of alpha-Al2O3 micro-powder, 1-1.5 parts of sodium dodecyl benzene sulfonate and 1-1.2 parts of isooctyl triethoxysilane. The antibacterial and wear-resistant aerated brick is prepared by arranging the normal triangular pyramid inner core in the square outer core by means of one-piece autoclaved curing molding.

Description

technical field [0001] The invention relates to an aerated brick, in particular to an antibacterial and wear-resistant aerated brick and a processing method thereof. Background technique [0002] The wall materials used in the traditional construction market are mainly clay red bricks. The main reinforced concrete structure of the building is used as a support, and the bricks only play a filling role. When an earthquake occurs, the reinforced concrete structure will be deformed. When the reinforced concrete structure is deformed, the solid bricks will not Expansion and contraction at places will burst and collapse. The use of hollow bricks can leave a good space for expansion and contraction of reinforced concrete structures. [0003] Aerated bricks with hollow characteristics and scalability have gradually replaced solid bricks. With the increase of building height and the improvement of performance requirements such as shock resistance, heat preservation, waterproof, and s...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04C1/00C04B26/28C04B28/14C04B38/02B28B1/50B28B1/52B28B11/24B28B23/00
CPCE04C1/00B28B1/50B28B1/525B28B11/24B28B23/00C04B26/28C04B28/142C04B38/02C04B14/08C04B18/248C04B22/04C04B24/40C04B24/2682C04B24/128C04B14/4643C04B7/00C04B22/148C04B24/383C04B24/122C04B14/108C04B22/06C04B2103/63C04B24/20C04B24/42
Inventor 孟志美
Owner 孟志美
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