Thermal-insulation building thin layer aqueous coating material and preparation method thereof

A water-based coating, thermal insulation technology, applied in the coating and other directions, can solve the problems of high price and increase the production cost of the coating, and achieve the effects of low cost, simple method and good performance

Inactive Publication Date: 2015-10-14
GUIZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Titanium dioxide is widely used as a pigment because it has the best hiding power, but it is expensive, and a large amount of use will increase the production cost of coatings

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] A thin-layer water-based coating for thermal insulation buildings, comprising the following steps:

[0019] (1) Take 10kg filler (made by mixing 10% barium titanate powder and 90% tobermolite powder evenly and ball milling for 2 hours), 20kg barium slag (made by ball milling for 5 hours pretreatment), 1kg kaolin, 5kg Mix titanium dioxide with 10kg water, add 8kg sodium tripolyphosphate and stir until uniform;

[0020] (2) Add 16kg of acrylic acid emulsion and 1kg of lauryl alcohol fat, and stir until uniform;

[0021] (3) Add 0.1kg 2-methyl-4-isothiazolin-4-one, 0.4kg 2-n-octyl-4-isothiazolin-3-one, 0.1kg BASF A10 and 0.5kg sodium polyacrylate, It can be obtained by ball milling for 9 hours.

[0022] According to JGJ / T 132-2009 "Residential Building Energy Saving Testing Standard", the measured thermal resistance of the main part of the enclosure structure before and after the use of the proportion of paint is 0.63 (m 2 ·k) / W and 1.15(m 2 ·k) / W, the effective therma...

Embodiment 2

[0024] A thin-layer water-based coating for thermal insulation buildings, comprising the following steps:

[0025] (1) Take 20kg filler (made by mixing 30% barium titanate powder and 70% tobermolite powder evenly and ball milling for 4 hours), 26kg barium slag (pretreated by ball milling for 3 hours), 5kg kaolin, 18kg Mix titanium dioxide with 20kg water, add 15kg sodium tripolyphosphate and stir until uniform;

[0026] (2) Add 30kg acrylic acid emulsion and 4kg lauryl alcohol fat, stir until uniform;

[0027] (3) Add 0.2kg 2-methyl-4-isothiazolin-4-one, 0.1kg 2-n-octyl-4-isothiazolin-3-one, 0.4kg BASF A10 and 0.1kg sodium polyacrylate, It can be obtained by ball milling for 12 hours.

[0028] According to JGJ / T 132-2009 "Residential Building Energy Saving Testing Standard", the measured thermal resistance of the main part of the enclosure structure before and after the use of the proportion of paint is 0.63 (m 2 ·k) / W and 1.21(m 2 k) / W, the effective thermal resistance is...

Embodiment 3

[0030] A thin-layer water-based coating for thermal insulation buildings, comprising the following steps:

[0031] (1) Take 15kg filler (made by mixing 20% ​​barium titanate powder and 80% tobermolite powder evenly and ball milling for 3 hours), 23kg barium slag (made by ball milling for 4 hours pretreatment), 3kg kaolin, 11kg Mix titanium dioxide with 15kg water, add 12kg sodium tripolyphosphate and stir until uniform;

[0032] (2) Add 23kg of acrylic acid emulsion and 2.5kg of lauryl alcohol fat, and stir until uniform;

[0033] (3) Add 0.15kg 2-methyl-4-isothiazolin-4-one, 0.25kg 2-n-octyl-4-isothiazolin-3-one, 0.25kg BASF A10 and 0.3kg sodium polyacrylate, It can be obtained by ball milling for 10 hours.

[0034] According to JGJ / T 132-2009 "Residential Building Energy Saving Testing Standard", the measured thermal resistance of the main part of the enclosure structure before and after the use of the proportion of paint is 0.63 (m 2 ·k) / W and 1.19(m 2 ·k) / W, the effect...

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PUM

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Abstract

The present invention discloses a thermal-insulation building thin layer aqueous coating material and a preparation method thereof, wherein the coating material comprises the following raw materials by weight: 16-30 parts of an acrylic emulsion, 10-20 parts of a filler, 20-26 parts of barium residue, 1-5 parts of kaolin, 5-18 parts of titanium dioxide powder, 1-4 parts of dodecanol lipoid, 0.1-0.2 part of 2-methyl-4-isothiazolin-4-one, 0.1-0.4 part of 2-n-octyl-4-isothiazolin-3-one, 0.1-0.4 part of BASF A10, 0.1-0.5 part of sodium polyacrylate, 8-15 parts of sodium tripolyphosphate, and 10-20 parts of water. The preparation method comprises: taking samples according to the weight part ratio, taking the filler, the barium residue, the kaolin, the titanium dioxide powder and the water, mixing, adding the sodium tripolyphosphate, stirring to achieve a uniform state, adding the acrylic emulsion and the dodecanol lipoid, stirring to achieve a uniform state, adding the remaining raw materials, and carrying out ball milling to obtain the finished product. According to the present invention, characteristics of good performance, low cost, energy saving, and emission reducing can be achieved.

Description

technical field [0001] The invention relates to the technical field of building materials, in particular to a heat-insulating building thin-layer water-based paint, and also relates to a preparation method of the heat-insulating building thin-layer water-based paint. Background technique [0002] The traditional thermal insulation of buildings usually adopts externally hung organic or inorganic insulation boards, but the floor space is large, the construction period is long and the construction process is complicated, and there are also safety hazards such as flammability, easy delamination, easy falling off, and easy leakage. . [0003] With the development of coating technology, building thermal insulation coatings have been used in the field of building energy conservation due to their advantages of economy, environmental protection, convenient use, and obvious energy-saving effects. a technological trend. Coatings are mainly composed of aggregates with thermal insula...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D133/00C09D7/12
CPCC09D133/00C09D7/61C08L33/02C08K13/02C08K3/24C08K3/346C08K2003/2241C08K2003/324C08K2003/3045C08K2003/328C08K5/47
Inventor 刘飞王晓丹
Owner GUIZHOU UNIV
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