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CN100381507C - Nano composite material high weather-resistant exterior wall paint - Google Patents

Nano composite material high weather-resistant exterior wall paint Download PDF

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Publication number
CN100381507C
CN100381507C CNB2004100402241A CN200410040224A CN100381507C CN 100381507 C CN100381507 C CN 100381507C CN B2004100402241 A CNB2004100402241 A CN B2004100402241A CN 200410040224 A CN200410040224 A CN 200410040224A CN 100381507 C CN100381507 C CN 100381507C
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China
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agent
nanometer
granularity
less
nano
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Expired - Fee Related
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CNB2004100402241A
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CN1594454A (en
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何昌霖
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Individual
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Publication of CN1594454A publication Critical patent/CN1594454A/en
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Abstract

The invention relates to a nano composite material high weather-resistant exterior wall paint, which is prepared by adding nano special functional auxiliary agent, nano silicone-acrylate emulsion, super weather-resistant fluorocarbon emulsion, pigment and filler and the like on the basis of the existing exterior wall paint and carrying out composite modification, and has the advantages of high weather resistance, scrubbing resistance, stain resistance, high hardness, strong adhesive force and good hydrophobicity.

Description

The high weather-proof outer wall paint of a kind of nano composite material
(1) technical field
The present invention relates to a kind of coating for wall surface, belong to building materials field.
(2) background technology
Present outer wall paint, generally be by formulated compositions such as water, pigment, filler, film coalescence aid, wetting agent, dispersion agent, defoamer, thickening material, frostproofers, its pollution resistance, wear-resisting erasibility are relatively poor, particularly in summer, lacquer is filmed easily to feel like jelly in hot environment and is after-tacked, and the absorption dust is serious, in addition under the intensive uviolizing, film easily aging, easily loss of gloss, fade, variable color, cracking, efflorescence, have a strong impact on decorative effect and use value.
(3) summary of the invention
Technical problem to be solved by this invention be to provide a kind of high weather-proof, pollution resistance is strong, wear-resisting scrubbing resistance, hardness height, strong adhesion, the beautiful outer wall paint of color.
The scheme that solves the technology of the present invention problem is: comprise following component by weight percentage:
Water 10-30% granularity is less than the nanometer aging-resistant agent 0.5-2% of 50nm
Mould inhibitor 0.1-3% granularity is less than the anti-stain resistant agent 0.5-2% of the nanometer of 50nm
Defoamer 0.1-0.5% granularity is less than the hydrophobizing agent 2-6% of 50nm
Sanitas 0.1-0.3% frostproofer 1-3%
Dispersion agent 0.3-0.8% wetting agent 0.1-0.5%
PH conditioning agent 0.1-0.3% thickening leveling agent 0.3-1%
Film coalescence aid 1-3.5% rutile titanium white powder 5-25%
Granularity less than the organosilicon crylic acid latex of 50nm or/and water-base fluorocarbon emulsion 30-70%
Granularity is less than the SiO of 50nm 2Or/and granularity is less than the TiO of 50nm 22-7%
Essence 0.01-0.2%.
The present invention also has following component:
Mica powder 0-10% oxygenated pigment 0-45%
Product of the present invention prepares like this:
(1), in dispersion cup, add prescription water, add dispersion agent, wetting agent, small part defoamer, sanitas, mould inhibitor, antiaging agent, anti-stain resistant agent, SiO then successively 2, TiO 2, frostproofer, mix;
(2), under high-speed stirring (1000 rev/mins), add titanium dioxide, high speed dispersion 30-40 minute then;
(3), former process finish mix slurry is ground to 25-30 μ m in colloidal mill or in the sand mill;
(4), with organosilicon crylic acid latex or/and water-base fluorocarbon emulsion, PH conditioning agent, film coalescence aid under low speed (300 rev/mins) stirs, mix;
(5), the slip of aforementioned (3) is joined in the emulsion that step (4) makes, stir down according to adding hydrophobizing agent, remaining defoamer, essence, thickening leveling agent, low speed dispersion 30 minutes at low speed (300 rev/mins);
Remaining 2/3 defoamer, essence, thickening leveling agent,, disperseed 30 minutes at low speed;
(6), with the slip that the stirs screen filtration about with 80 orders.
By aforesaid method, get 99.8 kilograms of finished products, technical target of the product is as follows:
22700 times (GB/T9755-2001 required standard 2000 times, experimental technique is by this standard for the scrubbing resistance number of times.Below quote identical)
100 hours no changes (48 hours) of 240 hours no changes (96 hours) of water tolerance alkali resistance
1100 hours 42 circulation no changes of (250 hours) coating temperature-change resistance (10 times) of artificial ageing resistance
Hydrophobicity that resistance to crocking is pollution-free (no standard) is fallen into water and is rolled down, and does not stay water mark (no standard).
Embodiment 2
By the double centner preparation of raw material: get
15 kilograms in water
Dispersion agent U.S. Rohm﹠amp; 0.4 kilogram of the Tamol731 (Diisobutylene maleic acid sodium) that hass produces
0.2 kilogram of the CF-10 (alkyl aryl polyether) that wetting agent U.S. UCAR produces
0.3 kilogram of the SN-369 (containing brokenly the liquid that soaks branch) that defoamer Germany Henkel produces
Mould inhibitor U.S. Rohm﹠amp; 0.3 kilogram of the LXE (isothiazolinone) that hass produces
1 kilogram of the KLH-1 that nanometer aging-resistant agent Beijing initiative nanometer company limited produces
2 kilograms of the NZX-1 that the anti-contamination of nanometer Beijing initiative nanometer company limited produces
Nanometer SiO 22 kilograms
Nano-TiO 21 kilogram
18 kilograms in rutile titanium white powder
5 kilograms of Topical grade mica powders
4 kilograms of red iron oxides
2.2 kilograms of frostproofer propylene glycol
45 kilograms of the SKFT-1 that water-base fluorocarbon emulsion Beijing initiative nanometer company limited produces
2.3 kilograms of the TEXAND lipidols (2,2,4-trimethylammonium-1,3-pentanediol list isopropylformic acid fat) that film coalescence aid U.S. EASTMAN produces
0.2 kilogram of the AMP-95 (2-chloro-2-methyl isophthalic acid-propyl alcohol) that PH conditioning agent U.S. ANGUS produces
0.1 kilogram in essence
4 kilograms of the SS-1 that nano-sized hydrophobic agent Beijing initiative nanometer company limited produces
Thickening material U.S. Rohm﹠amp; 0.3 kilogram of the RM-8 (polyurethane of surging) that hass produces
Flow agent U.S. Rohm﹠amp; 0.7 kilogram of the RM-1020PR (Polyurethane) that hass produces.
Production craft step is as follows:
(1), in dispersion cup, add prescription water, add dispersion agent, wetting agent, 1/3 defoamer, mould inhibitor, nanometer aging-resistant agent, the anti-stain resistant agent of nanometer, SiO then successively 2, TiO 2, propylene glycol, mix;
(2), under high-speed stirring (1000 rev/mins), add titanium dioxide, red iron oxide, Topical grade mica powder, high speed dispersion 30 minutes;
(3), former process finish mix slurry is ground to 25-30 μ m in colloidal mill;
(4), water-base fluorocarbon emulsion, PH conditioning agent, film coalescence aid under stirring, low speed (300 rev/mins) are mixed;
(6), with the slip that the stirs screen filtration about with 80 orders.
Product of the present invention can also prepare like this; In (2) step of aforesaid method, behind the adding titanium dioxide, add mica powder, oxygenated pigment more successively, other steps are identical with it with method.
The present invention is owing to added nano level features auxiliary agent, nano silicone acrylic emulsion and super weather resistance fluorocarbon emulsion on prior art, and color stuffing etc. has been carried out composite modified, thereby make its wear resistance erasibility than currently available products improve 10 times, water tolerance, alkali resistance, artificial ageing resistance, the temperature-change resistance of filming improve 3-5 doubly, have good hydrophobicity, a hardness advantages of higher.
(4) embodiment
Be described further below in conjunction with embodiment, but be not limited only to this.
Embodiment 1
By the double centner preparation of raw material: get
13 kilograms in water
0.6 kilogram of the DP-518 (polyacrylic acid ammonia salt) that moral modest chemical company in dispersion agent Taiwan is produced
0.3 kilogram of the DP-18 (straight chain non-ionic surfactant) that moral modest chemical company in wetting agent Taiwan is produced
0.3 kilogram of 082 (non-silicone contains the hydrophobic particles mineral oil mixture) that moral modest chemical company in defoamer Taiwan is produced
0.1 kilogram of the MB-11 (5-chloro-2-methyl-4-isothiazoline-3-ketone/2-methyl-4-isothiazoline-ketone=3/1) that moral modest chemical company in sanitas Taiwan is produced
2 kilograms of the MB-16 (heterogeneous ring compound) that moral modest chemical company in mould inhibitor Taiwan is produced
1 kilogram of the KLH-1 that nanometer aging-resistant agent Beijing initiative nanometer company limited produces
1 kilogram of the NZX-1 that the anti-stain resistant agent of nanometer Beijing initiative nanometer company limited produces
The nanometer SiO that Beijing initiative nanometer company limited produces 22 kilograms
The nano-TiO that Beijing initiative nanometer company limited produces 2, 1 kilogram
25 kilograms in rutile titanium white powder
1.6 kilograms of frostproofer propylene glycol
15 kilograms of the GHSN of nano-silicon acrylic emulsion Jiangsu League of Nations Chemical Manufacture
35 kilograms of the SKFT-1 that water-base fluorocarbon emulsion Beijing initiative nanometer company limited produces
Film coalescence aid alcohol ester-12 2.2 kilogram
0.2 kilogram of the DMAE (dimethylethanolamine) that moral modest chemical company in PH conditioning agent Taiwan is produced
0.1 kilogram in essence
4 kilograms of the SS-1 that nano-sized hydrophobic agent Beijing initiative nanometer company limited produces
0.6 kilogram of the WT-105A that moral modest chemical company in thickening leveling agent Taiwan is produced.
Production craft step is as follows:
(1), in dispersion cup, add prescription water, add dispersion agent, wetting agent, 1/3 defoamer, sanitas, mould inhibitor, nanometer aging-resistant agent, the anti-stain resistant agent of nanometer, SiO then successively 2, TiO 2, propylene glycol, mix;
(2), under high-speed stirring (1000 rev/mins), add titanium dioxide, high speed dispersion 30 minutes;
(3), former process finish mix slurry is ground to 25-30 μ m in sand mill;
(4), nano-silicon acrylic emulsion, water-base fluorocarbon emulsion, PH conditioning agent, film coalescence aid under stirring, low speed (300 rev/mins) are mixed;
(5), the slip of aforementioned (3) is joined in the emulsion that step (4) makes, low speed (300 rev/mins) stir down according to the adding hydrophobizing agent,
(5), the slip of aforementioned (3) is joined in the emulsion that step (4) makes, low speed (300 rev/mins) stir down according to add hydrophobizing agent, remaining 2/3 defoamer, essence, thickening material, flow agent,, low speed dispersion 30 minutes;
(6), with the slip that the stirs screen filtration about with 80 orders.
By aforesaid method, get 99.85 kilograms of finished products, technical target of the product is as follows;
26000 times (GB/T9755-2001 required standard 1000 times, experimental technique is by this standard for the scrubbing resistance number of times.Below quote identical)
110 hours no changes (48 hours) of 225 hours no changes (96 hours) of water tolerance alkali resistance
1140 hours 47 circulation no changes of (250 hours) coating temperature-change resistance (10 times) of artificial ageing resistance
Hydrophobicity that resistance to crocking is pollution-free (no standard) is fallen into water and is rolled down, and does not stay water mark (no standard).
Embodiment 3
By the double centner preparation of raw material: get
10 kilograms in water
0.5 kilogram of the XG-505 (ammonium polyacrylate salt) that the new photoinitiator chemical of dispersion agent company produces
0.2 kilogram of the XG-301 (multipolymer of hydroxyl) that the new photoinitiator chemical of wetting agent company produces
0.4 kilogram of the XG-039 (mineral oil, modification hydrophobic silicon) that the new photoinitiator chemical of defoamer company produces
0.1 kilogram of the XG-3 (organic heterocyclic molecule) that the new photoinitiator chemical of sanitas company produces
Mould inhibitor U.S. Rohm﹠amp; 0.3 kilogram of the LXE (isothiazolinone) that the company that hass produces produces
1.5 kilograms of the KLH-1 that nanometer aging-resistant agent Beijing initiative nanometer company limited produces
1 kilogram of the NZX-1 that the anti-stain resistant agent of nanometer Beijing initiative nanometer company limited produces
The nanometer SiO that Beijing initiative nanometer company limited produces 23 kilograms
The nano-TiO that Beijing initiative nanometer company limited produces 2, 2 kilograms
21 kilograms in rutile titanium white powder
1.6 kilograms of frostproofer propylene glycol
50 kilograms of the GHSN of nano-silicon acrylic emulsion Jiangsu League of Nations Chemical Manufacture
2.5 kilograms in film coalescence aid lauryl alcohol fat
0.2 kilogram of the AUP-95 that PH conditioning agent U.S. ANGUS produces
0.1 kilogram in essence
5 kilograms of the SS-1 that nano-sized hydrophobic agent Beijing initiative nanometer company limited produces
0.6 kilogram of the XG-202 (hydrophobically modified Polyurethane) that the new photoinitiator chemical of thickening leveling agent company produces.
Production craft step is as follows:
(1), in dispersion cup, add prescription water, add dispersion agent, wetting agent, 1/3 defoamer, sanitas, mould inhibitor, nanometer aging-resistant agent, the anti-stain resistant agent of nanometer, SiO then successively 2, TiO 2, propylene glycol, mix;
(2), under high-speed stirring (1000 change part), add titanium dioxide, high speed dispersion 30 minutes;
(3), former process finish mix slurry is ground to 25-30 μ m in colloidal mill;
(4), nano-silicon acrylic emulsion, PH conditioning agent, film coalescence aid under stirring, low speed (300 rev/mins) are mixed;
(5), the slip of aforementioned (3) is joined in the emulsion that step (4) makes, low speed (300 rev/mins) stir down according to add hydrophobizing agent, remaining 2/3 defoamer, essence, thickening leveling agent,, the low speed dispersion is 30 minutes again;
(6), with the slip that the stirs screen filtration about with 80 orders.
By aforesaid method, get 99.8 kilograms of finished products, technical target of the product is as follows:
26700 times (GB/T9755-2001 required standard 1000 times, experimental technique is by this standard for the scrubbing resistance number of times.Below quote identical)
100 hours no changes (48 hours) of 240 hours no changes (96 hours) of water tolerance alkali resistance
1100 hours 42 circulation no changes of (250 hours) coating temperature-change resistance (10 times) of artificial ageing resistance
Hydrophobicity that resistance to crocking is pollution-free (no standard) is fallen into water and is rolled down, and does not stay water mark (no standard).

Claims (2)

1. the high weather-proof outer wall paint of a nano composite material is characterized in that: comprise following component by weight percentage:
Water 10-30% granularity is less than the nanometer aging-resistant agent 0.5-2% of 50nm
Mould inhibitor 0.1-3% granularity is less than the anti-stain resistant agent 0.5-2% of the nanometer of 50nm
Defoamer 0.1-0.5% granularity is less than the hydrophobizing agent 2-6% of 50nm
Sanitas 0.1-0.3% frostproofer 1-3%
Dispersion agent 0.3-0.8% wetting agent 0.1-0.5%
PH conditioning agent 0.1-0.3% thickening leveling agent 0.3-1%
Film coalescence aid 1-3.5% rutile titanium white powder 5-25%
Granularity less than the organosilicon crylic acid latex of 50nm or/and water-base fluorocarbon emulsion 30-70%
Granularity is less than the nanometer SiO of 50nm 2Or/and granularity is less than the nano-TiO of 50nm 22-7%
Essence 0.01-0.2%.
2. the high weather-proof outer wall paint of nano composite material according to claim 1, it is characterized in that: it also has
Mica powder 0-10% oxygenated pigment 0-45%.
CNB2004100402241A 2004-07-13 2004-07-13 Nano composite material high weather-resistant exterior wall paint Expired - Fee Related CN100381507C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2004100402241A CN100381507C (en) 2004-07-13 2004-07-13 Nano composite material high weather-resistant exterior wall paint

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2004100402241A CN100381507C (en) 2004-07-13 2004-07-13 Nano composite material high weather-resistant exterior wall paint

Publications (2)

Publication Number Publication Date
CN1594454A CN1594454A (en) 2005-03-16
CN100381507C true CN100381507C (en) 2008-04-16

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Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2421727B (en) 2004-12-30 2007-11-14 Ind Tech Res Inst Method for forming coating material and the material formed thereby
CN101177554B (en) * 2006-11-10 2010-05-12 北京化工大学 Preparation method of antibiotic anti-fungus agent for building surface
CN101654578B (en) * 2008-08-22 2011-11-02 展辰涂料集团股份有限公司 Water-base fluorocarbon imitation marble paint, preparation method thereof and method for spraying with imitation marble effect
CN101845261B (en) * 2009-03-24 2013-01-09 上海三银制漆有限公司 Self-cleaning water-based fluorocarbon paint for external walls
CN101812263A (en) * 2010-04-16 2010-08-25 杭州美多乐化工有限公司 Waterborne weather-resistant self-cleaning type silicone acrylic latex paint and production method thereof
CN104962143B (en) * 2015-07-27 2017-09-22 长沙理工大学 Water-based fluorocarbon anti-pollution flashover coating and preparation method and application thereof
CN105017916A (en) * 2015-08-03 2015-11-04 蓝星(成都)新材料有限公司 Water-based paint high in weather resistance
CN109897471A (en) * 2019-04-10 2019-06-18 中建七局第二建筑有限公司 A kind of formaldehyde-free building coating and preparation method thereof

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Granted publication date: 20080416

Termination date: 20100713