CN1431264A - Moisture dispersion and environment friendly type nano structured industry paint and its producing technique - Google Patents

Moisture dispersion and environment friendly type nano structured industry paint and its producing technique Download PDF

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Publication number
CN1431264A
CN1431264A CN 03113623 CN03113623A CN1431264A CN 1431264 A CN1431264 A CN 1431264A CN 03113623 CN03113623 CN 03113623 CN 03113623 A CN03113623 A CN 03113623A CN 1431264 A CN1431264 A CN 1431264A
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water
dispersion
environmentally friendly
nanostructure
polymer emulsion
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CN1252200C (en
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张万喜
刘福长
李贤意
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Abstract

A water-dispersive environment-friendly nano-class industrial paint is prepared from water-dispersive environment-friendly nano polymer emulsion, softened water, pigment, inertial and active antirust pigments, filler, drying agent and assistant through proportionally and sequentially mixing softened water, wetting agent, disperser, defoaming agent, anticorrosion agent, antimildew agent and pH value regulator, stirring, adding pigment slurry and polymer emulsion, stirring, adding filler, stirring, grinding, adding others, stirring and filtering. Its advantages are no poison and pollution, high safety and excellent mechanical performance.

Description

Environmentally friendly nanostructure industrial paint of water-dispersion and preparation technology
Technical field
The present invention relates to structure material, relate in particular to environmentally friendly nanostructure industrial paint of a kind of water-dispersion and preparation technology.
Background technology
Traditional industrial paint mostly is solvent-borne type paint, and common kind has alkyd, acrylate, urethane, epoxy, chlorinated rubber, highly-chlorinated polyethylene etc. to be the paint of base-material.Wherein contain about 50% organic volatile (VOC), these organic volatiles can evaporate in the atmosphere in the use at paint production and paint and go, contaminate environment, and workmen's health damaged.Therefore, each state has all worked out corresponding regulations and has limited volatile organic matter (VOC) discharging, and endeavours research " green " coating and resin, fundamentally to eliminate or the minimizing environmental pollution problems.
Industrial water-based lacquer requires high, and development difficulty is big.Western developed country is through sixties starting, crosses over the seventies, the eighties, up to the beginning of the nineties, just have performance preferably the patent of water-based industrial paint report.As the water-based acrylic acid modified alcoholic acid finish paint of Austrian Wei Ruohua company exploitation, the patent No. is that AT9400711 and chemical company of Japanese Nippon Steel develop the water-based acrylic acid modified alcoholic acid rust-proofing primer, and the patent No. is JP92359970.Though this class water-based industrial paint has reduced the discharging of some VOC, has alleviated topsoil, (230nm~1500nm), paint film compactness is poor, and water tolerance is bad, and decorative and protective and traditional paint are far apart because the polymer emulsion particle diameter is big.At present, also there be not the performance water-based industrial paint suitable to occur on the market with traditional paint.
Summary of the invention
The objective of the invention is at the problems referred to above, environmentally friendly nanostructure industrial paint of a kind of water-dispersion and preparation technology are provided, its safety non-toxic, environmentally safe, and paint film is done solid work soon, storing temperature is low, physical strength is high, rustless property is excellent, good weatherability, can be suitable with traditional paint.
For achieving the above object, technical solution of the present invention is, the environmentally friendly nanostructure industrial paint of described water-dispersion comprises following component: latex particle size is less than the environmentally friendly nanometer polymer emulsion of the water-dispersion of 100nm, softening water, pigment, inertia rust-stabilising pigment, active rust-stabilising pigment, filler, siccative and auxiliary agent.
Above-mentioned latex particle size is made up of hydrophobic type polymkeric substance, hydrophilic (methyl) acrylic acid esters co-polymer, tall and erect first liquid and softening water less than the environmentally friendly nanometer polymer emulsion of the water-dispersion of 100nm.Latex particle size is as follows less than the environmentally friendly nanometer polymer emulsion preparation method of the water-dispersion of 100nm: hydrophobic type polymkeric substance and hydrophilic (methyl) acrylic acid esters co-polymer are mixed by 1: 1~2; Under vacuum and 100~200 ℃, remove organic solvent, to mixture solid content more than or equal to 80%; Then with the softening water that contains pH value conditioning agent and 1~5% tall and erect first liquid, in the high-shear emulsifying still, stir and make the environmentally friendly nanometer polymer emulsion of water-dispersion, hydrophobic type polymkeric substance wherein can be a polyester, unsaturated fatty acids or siccative oil modified polyester, the epoxy polyester, unsaturated fatty acids or siccative oil modified epoxy polyester, Polyurethane, unsaturated fatty acids or siccative oil polyurethane, a kind of in organic-silicon-modified polyester and unsaturated fatty acids or the siccative oil modified organic silicon polyester, hydrophilic wherein (methyl) acrylic acid esters co-polymer can be the polymkeric substance of vinyl monomer radical addition polymerization gained; Reaction conditions is: 50~90 ℃ of temperature, rotating speed 1000~1800rpm, 40~60 minutes reaction times.
Above-mentioned latex particle size can be water-dispersion environmentally friendly (methyl) acrylic polyester nanometer polymer emulsion less than the environmentally friendly nanometer polymer emulsion of the water-dispersion of 100nm, its solid content is 30~45%, the consumption of this emulsion in coating is 30~70%, preferably 50~70%.
Above-mentioned latex particle size can be the environmentally friendly siccative oil modification of water-dispersion (methyl) acrylic polyester nanometer polymer emulsion less than the environmentally friendly nanometer polymer emulsion of the water-dispersion of 100nm, solid content is 35~45%, the consumption of this emulsion in coating is 30~70%, preferably 50~70%.
Above-mentioned latex particle size can be water-dispersion environmentally friendly (methyl) acrylic acid epoxy polyester nano polymer emulsion less than the environmentally friendly nanometer polymer emulsion of the water-dispersion of 100nm, and solid content is 35~50%; The consumption of this emulsion in coating is 30~70%, preferably 30~50%.
Above-mentioned latex particle size can be the environmentally friendly siccative oil modification of water-dispersion (methyl) acrylic acid epoxy polyester nano polymer emulsion less than the environmentally friendly nanometer polymer emulsion of the water-dispersion of 100nm, solid content is 35~50%, this emulsion consumption in coating is 30~70%, preferably 30~50%.
Above-mentioned softening water can be deionized water or distilled water, and the soluble ion total amount is less than 100ppm in its water, and specific conductivity is less than 20 μ m/cm.
Above-mentioned pigment can be Rutile type Titanium Dioxide, carbon black, and phthalocyanine blue etc., the consumption in coating is 1-25%, preferably 3-20%.
Above-mentioned inertia rust-stabilising pigment can be red iron oxide, iron oxide brown, iron oxide black, iron oxide yellow, iron mica etc., and the consumption in coating is 5-30%, preferably 10-20%.
Above-mentioned active rust-stabilising pigment can be zinc phosphate, zinc molybdate, aluminium triphosphate, alkali formula silicoaluminate aluminium, sodium metaborate etc., and the consumption of using in coating is 1-10%, preferably 2-6%.
The filler that is suitable for has talcum powder, mica powder, lime carbonate, process white, kaolin, and the consumption in coating is 5-25%, preferably 5-20%.
Above-mentioned siccative is that cobalt, manganese, zirconium, calcium salt are the water miscible liquid of effective ingredient.For example Austria ties up the VXW siccative of Novartis Co.,Ltd, and the consumption in coating is 2-8%, preferably 4-6%.
The above-mentioned auxiliary agent that accounts for lacquer amount 0.5-5% can comprise:
(1) dispersion agent; It is the salt of ethylene monomer copolymer.For example: 5040 dispersion agents of Henkel Corp., the T-731 dispersion agent of Rhom and Hass.
(2) wetting agent; It is polyxyethylated alkylphenol.For example: home-made OP-10.
(3) defoamer; It is organic silicon modified by polyether.For example: the SN313 of the high company of sweat, NXZ, the BYK020 of Bi Ke company, 024.
(4) thickening material; It is caustic solubility ACRYLIC EMULSION class thickening material.For example: the R430 of Wei Lesi company, 1550 of Henkel Corp..
(5) sanitas can be the LXE of Rhom and Hass.
(6) mould inhibitor; Can be the M-8 of Rhom and Hass, home-made 75# mould inhibitor, m-tetrachlorophthalodinitrile.
(7) pH value conditioning agent; Can be volatile amine, for example: monoethanolamine, N-ethylmorpholine, N, N-dimethylethanolamine, 2, amino-1-propyl alcohol, triethylamine.
Preparation method of the present invention can realize as follows:
(1) softening water, wetting agent, dispersion agent, defoamer, sanitas, mould inhibitor, the pH value conditioning agent of adding formula ratio in mash vessel stirred 5-10 minute with speed governing dispersion machine (down together), and rotating speed is 400-500 rev/min;
(2) the water dispersion nano polymer emulsion of the more than half amounts of adding formula ratio stirred 5-10 minute, and rotating speed is 600-700 rev/min;
(3) color stuffing of adding formula ratio stirred 5-10 minute, and rotating speed is 800-1000 rev/min;
(4) grinding plant such as sand mill is ground to fineness less than 50 μ m;
(5) mill base of adding formula ratio in the lacquer container, the residue nanometer polymer emulsion stirred 8-10 minute, and rotating speed is 600-800 rev/min;
(6) stir down evenly adding siccative, add and continue to stir 5-10 minute, rotating speed is 600-800 rev/min;
(7) stir down evenly adding thickening material, add and stir 8-10 minute to being uniformly dispersed, rotating speed is 800-1000 rev/min;
(8) filter with 80 eye mesh screens, pack finished product.
The present invention is directed to big particle diameter polymer emulsion base-material poor water resistance, the not good shortcoming of protected decoration performance, select the nanometer polymer emulsion of a kind of particle diameter below 100nm, to solve the problem that water-based industrial paint exists as base-material.Because this class nanometer polymer emulsion emulsion particle diameter is very little, the paint film of formation is very fine and close, so water tolerance and decorative and protective can meet or exceed traditional paint.Because this class nanometer polymer emulsion emulsion particle diameter is minimum, surface tension is very low, so they have fabulous perviousness, wettability, levelling property and rheological.The coating made from it can carry out high-quality, high gloss, high performance application to metal parts, can substitute corresponding traditional paint product.And the present invention is nontoxic, and environmentally safe is healthy harmless to the workmen, safe and convenient to use.Nanostructure water-based industrial paint of the present invention can be widely used in the vehicles such as automobile, train, boats and ships, steel construction such as bridge, iron tower, railing, the protection of ferrous materials in the facilities such as petrochemical industry basin, pipeline.
Embodiment
Embodiment 1~6
Six embodiment of the present invention list in table 1, but the present invention not only is confined to following examples; Form the environmentally friendly nanostructure industrial paint of water-dispersion for preparing by said components, its performance is listed in table 2.Annotate: in the table 1
Emulsion 1, be latex particle size less than the water-dispersion of 100nm environmentally friendly (methyl) acrylic polyester nanometer polymer emulsion, it is made up of hydrophobic type alkyd resin, hydrophilic (methyl) acrylic acid esters co-polymer, tall and erect first liquid and softening water.The first liquid of described Zhuo is the product or the analogous products of tall and erect earlier international (Hong Kong) company limited (Tnu-seal Zntem national (HK) ltd.).(as follows)
Emulsion 2, be latex particle size less than the environmentally friendly siccative oil modification of the water-dispersion of 100nm (methyl) acrylic polyester nanometer polymer emulsion, it is made up of hydrophobic type siccative oil modified poly ester, hydrophilic (methyl) acrylic acid esters co-polymer, tall and erect first liquid and softening water.
Emulsion 3, be latex particle size less than the amino nanometer polymer emulsion of the acrylic acid modified epoxy polyester of the water-dispersion of 100nm environmentally friendly (methyl), it is made up of hydrophobic type epoxy polyester resin, hydrophilic (methyl) acrylic acid esters co-polymer, tall and erect first liquid and softening water.
Emulsion 4, be latex particle size less than the environmentally friendly siccative oil modification of the water-dispersion of 100nm (methyl) acrylic acid epoxy polyester nano polymer emulsion, it is made up of hydrophobic type unsaturated fatty acids modified epoxy vibrin, hydrophilic (methyl) acrylic acid esters co-polymer, tall and erect first liquid and softening water.
1 is the AC261 emulsion of ROHM AND HAAS in the Comparative Examples; The 2nd, the BC-01 emulsion of ROHM AND HAAS.
Table 1: component of the present invention is formed embodiment 1~6
Raw material Embodiment Comparative Examples
??1 ??2 ??3 ??4 ??5 ??6 ??1 ??2
Softening water ??13.49 ??7.53 ??6.12 ??10.28 ??7.93 ??5.31 ??10.78 ??8.99
Wetting agent OP-10 ??0.1 ??0.15 ??0.3 ??0.1 ??0.25 ??0.24 ??0.2 ??0.25
Dispersion agent 5040 ??0.5 ??0.8 ??0.3 ??0.2 ??0.24 ??0.27 ??0.3 ??0.25
Defoamer NXZ ??0.01 ??0.02 ??0.03 ??0.02 ??0.03 ??0.03 ??0.03 ??0.02
Sanitas LXE ??0.1 ??0.1 ??0.15 ??0.1 ??0.15 ??0.13 ??0.2 ??0.26
Mould inhibitor M-8 ??0.1 ??0.1 ??0.2 ??0.2 ??0.1 ??0.13 ??0.2 ??0.23
PH value conditioning agent AMP-95 ??0.2 ??0.2 ??0.5 ??0.3 ??0.3 ??0.6 ??0.3 ??0.3
Titanium dioxide ??20 ??20 ??20 ??0 ??0 ??0 ??20 ??0
Red iron oxide ??0 ??0 ??0 ??10 ??0 ??19 ??0 ??19
Iron mica ??0 ??0 ??0 ??0 ??25 ??0 ??0 ??0
Talcum powder 800 orders ??0 ??0 ??10 ??5 ??6 ??5 ??10 ??5
Mica powder 600 orders ??2 ??1.6 ??0 ??4 ??5 ??10 ??0 ??7
Process white ??6 ??3.5 ??0 ??18 ??0 ??5 ??0 ??5
Calcined kaolin ??0 ??0 ??0 ??3 ??8 ??0 ??0 ??0
Zinc phosphate ??0 ??0 ??0 ??0.8 ??1 ??0.5 ??0 ??1.5
209 zinc yellows ??0 ??0 ??0 ??0.2 ??1 ??0.5 ??0 ??1.0
Emulsion 1 ??53 ??0 ??0 ??0 ??0 ??0 ??57 ??50
Emulsion 2 ??0 ??60 ??56 ??0 ??0 ??0 ??0 ??0
Emulsion 3 ??0 ??0 ??0 ??44 ??0 ??0 ??0 ??0
Emulsion 4 ??0 ??0 ??0 ??0 ??49 ??47 ??0 ??0
Do agent VXW ??3 ??4.0 ??5.6 ??2.5 ??5.0 ??5.0 ??0 ??0
Thickening material ??1.5 ??2.0 ??0.8 ??1.3 ??6.0 ??1.3 ??1.0 ??1.2
Add up to ??100.0 ??100.0 ??100.0 ??100.0 ??100.0 ??100.0 ??100.0 ??100.0
Its performance of water-based industrial paint by table 1 formulation is listed in table 2
Table 2 water-based industrial paint performance
Project Embodiment Comparative Examples
????1 ????2 ????3 ????4 ????5 ????6 ????1 ????2
Open a jar state Qualified Qualified Qualified Qualified Qualified Qualified Qualified Qualified
Appearance of coat Qualified Qualified Qualified Qualified Qualified Qualified Qualified Qualified
Fineness μ m ????45 ????45 ????45 ????45 ????45 ????45 ????45 ????45
Viscosity PaS 〉= ????0.5 ????0.5 ????0.5 ????0.5 ????0.5 ????0.5 ????0.5 ????0.5
Solid part %> ????50 ????50 ????50 ????50 ????50 ????50 ????50 ????50
Time of drying Surface drying h ????2 ????2 ????2 ????2 ????2 ????2 ????2 ????2
Do solid work h ????24 ????24 ????24 ????24 ????24 ????24 ????24 ????24
The sticking power level ????1 ????1 ????1 ????1 ????1 ????1 ????2 ????2
Shock-resistant kg Cm ????50 ????50 ????50 ????40 ????40 ????40 ????40 ????40
Salt spray resistance h ???—— ???—— ???—— ????500 ????720 ????600 ????—— ????96
Water tolerance h ????96 ????96 ????96 ????—— ????—— ????—— ????8 ????——
The freeze-thawing resistant circulation ????5 ????5 ????5 ????5 ????5 ????5 ????0 ????0

Claims (10)

1, the environmentally friendly nanostructure industrial paint of a kind of water-dispersion, it comprises following component: latex particle size is less than the environmentally friendly nanometer polymer emulsion of the water-dispersion of 100nm, softening water, pigment, inertia rust-stabilising pigment, active rust-stabilising pigment, filler, siccative and auxiliary agent.
2, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1, it is characterized in that, the environmentally friendly nanometer polymer emulsion of water-dispersion is selected from solid and is divided into 30~45% the acrylic acid modified polyester nano polymer emulsion of water-dispersion environmentally friendly (methyl), solid is divided into 35~45% the environmentally friendly siccative oil modification of water-dispersion (methyl) acrylic polyester nanometer polymer emulsion, solid is divided into 35~50% water-dispersion environmentally friendly (methyl) acrylic acid epoxy polyester nano polymer emulsion and solid and is divided into 35~50% the environmentally friendly siccative oil modification of water-dispersion (methyl) acrylic acid epoxy polyester nano polymer emulsion, and its weight percent content is 30~70%.
3, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1 is characterized in that softening water is deionized water or distilled water, and the soluble ion total amount is less than 100ppm in the water, and specific conductivity is less than 20 μ m/cm.
4, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1 is characterized in that pigment is selected from Rutile type Titanium Dioxide, carbon black and phthalocyanine blue, and weight percent content is 1~25%.
5, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1 is characterized in that the inertia rust-stabilising pigment is selected from red iron oxide, iron oxide brown, iron oxide black, iron oxide yellow and iron mica, and its weight percent content is 5~30%.
6, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1 is characterized in that, active rust-stabilising pigment is selected from zinc phosphate, zinc molybdate, aluminium triphosphate, alkali formula silicoaluminate aluminium and sodium metaborate, and its weight percent content is 1~10%.
7, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1 is characterized in that filler is selected from talcum powder, mica powder, lime carbonate, process white and kaolin, and its weight percent content is 5~25%.
8, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1 is characterized in that, siccative is that cobalt, manganese, zirconium, calcium salt are the water miscible liquid of effective ingredient, and its weight percent content is 2~8%.
9, the environmentally friendly nanostructure industrial paint of water-dispersion according to claim 1 is characterized in that, auxiliary agent comprises dispersion agent, wetting agent, defoamer, thickening material, sanitas, mould inhibitor and pH value conditioning agent, and its weight percent content is 0.5-5%.
10, the preparation technology of the environmentally friendly nanostructure industrial paint of a kind of water-dispersion as claimed in claim 1 is characterized in that comprising the steps:
(1) softening water, wetting agent, dispersion agent, defoamer, sanitas, mould inhibitor, the pH value conditioning agent of adding formula ratio in mash vessel stirred 5-10 minute, and rotating speed is 400-500 rev/min;
(2) the water dispersion nano polymer emulsion of the more than half amounts of adding formula ratio stirred 5-10 minute, and rotating speed is 600-700 rev/min;
(3) color stuffing of adding formula ratio stirred 5-10 minute, and rotating speed is 800-1000 rev/min;
(4) be ground to fineness less than 50 μ m;
(5) mill base of adding formula ratio in the lacquer container, the residue nanometer polymer emulsion stirred 8-10 minute, and rotating speed is 600-800 rev/min;
(6) stir down evenly adding siccative, add and continue to stir 5-10 minute, rotating speed is 600-800 rev/min;
(7) stir down evenly adding thickening material, add and stir 8-10 minute to being uniformly dispersed, rotating speed is 800-1000 rev/min;
(8) filter with 80 eye mesh screens, packing makes finished product.
CN 03113623 2003-01-21 2003-01-21 Moisture dispersion and environment friendly type nano structured industry paint and its producing technique Expired - Fee Related CN1252200C (en)

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Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1299830C (en) * 2003-05-19 2007-02-14 财团法人工业技术研究院 Super-micro particle dispersing and milling method and product
CN102190952A (en) * 2011-05-24 2011-09-21 东来涂料技术(上海)有限公司 Environment-friendly water-based single-component metallic-effect refinish paint for automobiles and preparation method thereof
CN102464929A (en) * 2010-11-19 2012-05-23 深圳市国彩纳米建材有限公司 Nano-modified water-based antirust coating
CN102504667A (en) * 2011-11-22 2012-06-20 大连理工大学 Aqueous environmental-friendly nanometer structure automobile priming paint and preparation method thereof
CN102504694A (en) * 2011-12-19 2012-06-20 大连理工大学 Water-based naon-sized pre-coated coil top coating and preparation method thereof
CN102516850A (en) * 2011-12-19 2012-06-27 大连理工大学 Aqueous nano composite electrically-conducting paint and preparation method thereof
CN102516863A (en) * 2011-11-22 2012-06-27 大连理工大学 Water dispersible environmentally-friendly nanometer structure automotive finish paint and preparation method thereof
CN102702899A (en) * 2012-07-03 2012-10-03 江苏兰陵高分子材料有限公司 Water-based modified pure acrylic acid anticorrosive paint
CN103013267A (en) * 2012-11-28 2013-04-03 天长市开林化工有限公司 Preservative oil for water-based hard membrane steel tube and preparation method thereof
CN103045053A (en) * 2013-01-04 2013-04-17 高文升 Water-based industrial anticorrosion paint and preparation method
CN106118315A (en) * 2016-06-30 2016-11-16 广西梧州龙鱼漆业有限公司 Aqueous industrial height finish coat varnish and preparation method thereof
CN110093077A (en) * 2019-05-05 2019-08-06 四川灯彩教育管理有限公司 The preparation method of color lamp steelwork epoxy-modified acrylic acid aqueous anticorrosion paint
CN110776770A (en) * 2019-11-26 2020-02-11 徐州新路缘机械科技有限公司 Environment-friendly mechanical equipment paint

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1299830C (en) * 2003-05-19 2007-02-14 财团法人工业技术研究院 Super-micro particle dispersing and milling method and product
CN102464929A (en) * 2010-11-19 2012-05-23 深圳市国彩纳米建材有限公司 Nano-modified water-based antirust coating
CN102190952A (en) * 2011-05-24 2011-09-21 东来涂料技术(上海)有限公司 Environment-friendly water-based single-component metallic-effect refinish paint for automobiles and preparation method thereof
CN102516863A (en) * 2011-11-22 2012-06-27 大连理工大学 Water dispersible environmentally-friendly nanometer structure automotive finish paint and preparation method thereof
CN102504667A (en) * 2011-11-22 2012-06-20 大连理工大学 Aqueous environmental-friendly nanometer structure automobile priming paint and preparation method thereof
CN102504694A (en) * 2011-12-19 2012-06-20 大连理工大学 Water-based naon-sized pre-coated coil top coating and preparation method thereof
CN102516850A (en) * 2011-12-19 2012-06-27 大连理工大学 Aqueous nano composite electrically-conducting paint and preparation method thereof
CN102702899A (en) * 2012-07-03 2012-10-03 江苏兰陵高分子材料有限公司 Water-based modified pure acrylic acid anticorrosive paint
CN102702899B (en) * 2012-07-03 2014-08-20 江苏兰陵高分子材料有限公司 Water-based modified pure acrylic acid anticorrosive paint
CN103013267A (en) * 2012-11-28 2013-04-03 天长市开林化工有限公司 Preservative oil for water-based hard membrane steel tube and preparation method thereof
CN103045053A (en) * 2013-01-04 2013-04-17 高文升 Water-based industrial anticorrosion paint and preparation method
CN106118315A (en) * 2016-06-30 2016-11-16 广西梧州龙鱼漆业有限公司 Aqueous industrial height finish coat varnish and preparation method thereof
CN110093077A (en) * 2019-05-05 2019-08-06 四川灯彩教育管理有限公司 The preparation method of color lamp steelwork epoxy-modified acrylic acid aqueous anticorrosion paint
CN110776770A (en) * 2019-11-26 2020-02-11 徐州新路缘机械科技有限公司 Environment-friendly mechanical equipment paint

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Effective date of registration: 20090116

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Patentee after: Jiangmen Paint Factory Co., Ltd.

Address before: Resin Tech Chemical Ltd, Jiangmen, Guangdong, Jiangmen, Pengjiang, Henan Province, Tang Tang Industrial Zone, zip code: 529095

Co-patentee before: Liu Fuchang

Patentee before: Zhang Wan Xi

Co-patentee before: Li Xianyi

ASS Succession or assignment of patent right

Owner name: JIANGMEN CITY PAINT MAKING CO., LTD., FACTORY

Free format text: FORMER OWNER: ZHANG WANXI

Effective date: 20090116

C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20060419

Termination date: 20120121