CN103013204A - Flame-retardant ultraviolet curable coating for wood - Google Patents

Flame-retardant ultraviolet curable coating for wood Download PDF

Info

Publication number
CN103013204A
CN103013204A CN 201210281849 CN201210281849A CN103013204A CN 103013204 A CN103013204 A CN 103013204A CN 201210281849 CN201210281849 CN 201210281849 CN 201210281849 A CN201210281849 A CN 201210281849A CN 103013204 A CN103013204 A CN 103013204A
Authority
CN
China
Prior art keywords
retardant
acrylic resin
flame
nano
fire
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
CN 201210281849
Other languages
Chinese (zh)
Inventor
高延敏
李照磊
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.)
Jiangsu University of Science and Technology
Original Assignee
Jiangsu University of Science and Technology
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 Jiangsu University of Science and Technology filed Critical Jiangsu University of Science and Technology
Priority to CN 201210281849 priority Critical patent/CN103013204A/en
Publication of CN103013204A publication Critical patent/CN103013204A/en
Pending legal-status Critical Current

Links

Landscapes

  • Paints Or Removers (AREA)

Abstract

The invention discloses a flame-retardant ultraviolet curable coating for wood, composed of 30-50% of epoxy acrylic resin, 10-20% of nano-silicon dioxide, 10-20% of hydroxyethyl acrylate phosphoric acid derivatives, 5-30% of nano-alumium hydroxide, 1-5% of oxidized soybean oil acrylic resin, 0.1-1% of KH560 and 5% of 1173 by mass. The flame-retardant ultraviolet curable coating for wood is flame-retardant, high in gloss, full, soft, wearable and high in curing speed.

Description

A kind of fire-retardant ultraviolet-curing paint for timber
Technical field
The invention belongs to paint field, relate to a kind of wood coating, specifically relate to a kind of fire-retardant, wear-resisting, inferior light ultraviolet cured paint composition for timber.
Background technology
Along with UV Application of coatings scope is more and more extensive, people also more and more pay attention to the flame-retardant modified of UV coating.At present a lot of to the method for modifying flame of UV coating, mainly be to adopt the interpolation fire retardant to carry out flame-retardant modified to coating system.Wherein fire retardant mainly divides two classes, and a class is additive flame retardant; Another kind of is reactive flame retardant..Wherein reactive flame retardant mainly is the modification to prepolymer or monomer, and its mode with chemical bond is followed other component combinations, but the reactive flame retardant cost is high, and price comparison is expensive; Although and the additive flame retardant low price is very large on the impact of UV coating, the impact of wherein most importantly UV being solidified.And the poor stability of additive flame retardant in coating, be easy to separate out.Therefore researching and developing a kind of mixed type fire retardant that has simultaneously addition type and response type is highly significant.
The nitrogen based flame retardant becomes the new leading product of fire retardant in recent years, and it has flame retarding efficiency height, heat decomposition temperature advantages of higher.Such as: trimeric cyanamide, dicyanodiamide etc. are monomer-grafted and be dispersed in a kind of mixed type fire retardant in the polyether polyol, these fire retardants all are small molecules, do not participate in solidification process, move to easily the surface of coating, along with the time changes, be diffused into gradually in the environment, lost flame retardant effect, simultaneously, these fire retardants join in the UV-light coating, also do not affected solidification effect because not participating in the UV-light reaction, also increased the fragility of filming simultaneously, the flame retardant curing agent of therefore seeking development of new has great importance.
Have the characteristics of quick solidifying, environmental protection as the UV ultraviolet-curing paint, be used for gradually now timber, use as a kind of decorative paint.Yet along with the raising of fire prevention and other performance requriements, requirement has fire-retardant, wear-resisting, the coating that is used for timber of the multiple over-all properties such as inferior light.
Summary of the invention
The objective of the invention is the defective that exists for overcoming prior art, satisfy fire-retardant, wear-resisting, the multiple over-all properties requirement such as inferior light, and a kind of fire-retardant ultraviolet-curing paint for timber is provided.
In order to achieve the above object, the technical scheme that the present invention deals with problems is by utilizing Hydroxyethyl acrylate phosphoric acid derivatives and nano-aluminum hydroxide to be fire retardant matter, nano silicon be wear-resisting with regulate the glossiness material; Simultaneously, utilize soybean oil olefin(e) acid fat to be the dispersion curing material, and utilize sharp coupling agent KH560 to be the interface activator, to improve sticking power, utilize the different new ester of vinylformic acid to be defoamer and curing material, several compositions cooperatively interact, to reach the optimization purpose.Its concrete technical scheme is: a kind of fire-retardant ultraviolet-curing paint for timber is by epoxy acrylic resin, nano silicon, the Hydroxyethyl acrylate phosphoric acid derivatives, nano-aluminum hydroxide, oxidation soybean oil acrylic resin, KH560 and 1173 forms, and the mass percentage content scope of its component is:
Epoxy acrylic resin 30%~50%,
Nano silicon 10~20%,
Hydroxyethyl acrylate phosphoric acid derivatives 10~20%,
Nano-aluminum hydroxide 5~30%,
Oxidation soybean oil acrylic resin 1~5%,
KH560 0.1~1%,
1173 5%。
Wherein: described Hydroxyethyl acrylate phosphoric acid derivatives molecular structure is:
Figure BDA00001992405400021
It derives from following reaction:
Figure BDA00001992405400022
Its preparation method is, with phosphoric acid according to mol ratio: phosphoric acid: Hydroxyethyl acrylate=1.25:3 joins in the reactor, and temperature of reaction is controlled first 80 degree, react after 1 hour, is warmed up to 100 degree, continues to react then cool to room temperature, then discharging 4 hours.
Preparation method of the present invention is, first the liquid ingredient in the technical formula component mixed, and then adds solid ingredient and stirs, and grinds at shredder, at last packing again.
Advantage and the effect that has compared with prior art for the fire-retardant ultraviolet-curing paint of timber of the present invention is:
Technical solution of the present invention is owing to utilized Hydroxyethyl acrylate phosphoric acid derivatives and nano-aluminum hydroxide to be fire retardant matter, and nano silicon is wear-resisting and regulates the glossiness material; Utilized soybean oil olefin(e) acid fat for disperseing curing material, and utilized sharp coupling agent KH560 to be the interface activator, to improve sticking power, utilized the different new ester of vinylformic acid to be defoamer and curing material, several compositions cooperatively interact, so that the present invention has is fire-retardant, glossiness is high, full, soft, wear-resisting and fast advantage and the effect of curing speed.
Embodiment
Embodiment 1:
One, component content proportioning by mass percentage:
Epoxy acrylic resin 30%,
Nano silicon 20%,
Phosphorous Hydroxyethyl acrylate derivative 20%,
Nano-aluminum hydroxide 22.9%,
Oxidation soybean oil acrylic resin 2%,
KH560 0.1%,
1173 5%。
Two, the preparation method is: first the liquid ingredient in the technical formula component is mixed, then add solid ingredient and stir, grind at shredder, at last packing.
Three, the technical indicator of present embodiment is: curing speed=10s, wear loss=38g/min, glossiness (20 measurement of angle)=50GU, mist shadow=13GU.
Embodiment 2:
One, component content proportioning by mass percentage:
Epoxy acrylic resin 40%,
Nano silicon 10%,
Phosphorous acrylic acid derivative 15%,
Nano-aluminum hydroxide 28%,
Oxidation soybean oil acrylic resin 1%,
KH560 1%,
1173 5%。
Two, the preparation method is identical with embodiment 1.
Three, the technical indicator of present embodiment is: curing speed=12s, and wear loss=25g/min, glossiness (20 measurement of angle)=48GU, mist shadow=25GU, fire-retardant.
Embodiment 3:
One, component content proportioning by mass percentage:
Epoxy acrylic resin 50%,
Nano silicon 20%,
Phosphorous acrylic acid derivative 10%,
Nano-aluminum hydroxide 9%,
Oxidation soybean oil acrylic resin 5%,
KH560 1%,
1173 5%。
Two, the preparation method is identical with embodiment 1.
Three, the technical indicator of present embodiment is: curing speed=10s, and wear loss=36g/min, glossiness (20 measurement of angle)=39GU, mist shadow=5GU, fire-retardant.
Embodiment 4:
One, component content proportioning by mass percentage:
Epoxy acrylic resin 47%,
Nano silicon 20%,
Phosphorous acrylic acid derivative 20%,
Nano-aluminum hydroxide 5%,
Oxidation soybean oil acrylic resin 2%,
KH560 1%,
1173 5%。
Two, the preparation method is identical with embodiment 1.
Three, the technical indicator of present embodiment is: curing speed=8s, and wear loss=30g/min, glossiness (20 measurement of angle)=54GU, mist shadow=24GU, fire-retardant.
Embodiment 5:
One, component content proportioning by mass percentage:
Epoxy acrylic resin 45%,
Nano silicon 20%,
Phosphorous acrylic acid derivative 15%,
Nano-aluminum hydroxide 9%,
Oxidation soybean oil acrylic resin 5%,
KH560 1%,
1173 5%。
Two, the preparation method is identical with embodiment 1.
Three, the technical indicator of present embodiment is: curing speed=10s, and wear loss=38g/min, glossiness (20 measurement of angle)=58GU, mist shadow=20GU, fire-retardant.
Embodiment 6:
One, component content proportioning by mass percentage:
Epoxy acrylic resin 30%,
Nano silicon 20%,
Phosphorous acrylic acid derivative 20%,
Nano-aluminum hydroxide 19%,
Oxidation soybean oil acrylic resin 5%,
KH560 1%,
1173 5%。
Two, the preparation method is identical with embodiment 1.
Three, the technical indicator of present embodiment is: curing speed=7s, and wear loss=32g/min, glossiness (20 measurement of angle)=48GU, mist shadow=15GU, fire-retardant.
Embodiment 7:
One, component content proportioning by mass percentage:
Epoxy acrylic resin 32%,
Nano silicon 10%,
Phosphorous Hydroxyethyl acrylate derivative 17%,
Nano-aluminum hydroxide oxidation 30%,
Oxidation soybean oil acrylic resin 5%,
KH560 1%,
1173 5%。
Two, the preparation method is identical with embodiment 1.
Three, the technical indicator of present embodiment is: curing speed=10s, and wear loss=38g/min, glossiness (20 measurement of angle)=58GU, mist shadow=20GU, fire-retardant.
Embodiment of the present invention only is used for the explanation technical solution of the present invention, is not limited to the present invention.

Claims (1)

1. fire-retardant ultraviolet-curing paint that is used for timber, it is characterized in that: content is 30%~50% by epoxy acrylic resin by mass percentage, nano silicon is 10~20%, the Hydroxyethyl acrylate phosphoric acid derivatives is 10~20%, nano-aluminum hydroxide is 5~30%, oxidation soybean oil acrylic resin is that 1~5%, KH560 is 0.1~1% and 1173 to be 5% to form, and wherein: described Hydroxyethyl acrylate phosphoric acid derivatives molecular structure is:
Figure FDA00001992405300011
CN 201210281849 2012-08-09 2012-08-09 Flame-retardant ultraviolet curable coating for wood Pending CN103013204A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201210281849 CN103013204A (en) 2012-08-09 2012-08-09 Flame-retardant ultraviolet curable coating for wood

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201210281849 CN103013204A (en) 2012-08-09 2012-08-09 Flame-retardant ultraviolet curable coating for wood

Publications (1)

Publication Number Publication Date
CN103013204A true CN103013204A (en) 2013-04-03

Family

ID=47962334

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201210281849 Pending CN103013204A (en) 2012-08-09 2012-08-09 Flame-retardant ultraviolet curable coating for wood

Country Status (1)

Country Link
CN (1) CN103013204A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104817935A (en) * 2015-04-27 2015-08-05 苏州市鼎立包装有限公司 Waterproof coating for surface of packaging wood case and preparation method of waterproof coating
CN105034107A (en) * 2015-06-24 2015-11-11 南通亚振东方家具有限公司 Method for preparing composite wood with hydroxide
CN105131673A (en) * 2015-09-14 2015-12-09 上海应用技术学院 Ultraviolet curing flame retardant primer coating and preparation method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104817935A (en) * 2015-04-27 2015-08-05 苏州市鼎立包装有限公司 Waterproof coating for surface of packaging wood case and preparation method of waterproof coating
CN105034107A (en) * 2015-06-24 2015-11-11 南通亚振东方家具有限公司 Method for preparing composite wood with hydroxide
CN105131673A (en) * 2015-09-14 2015-12-09 上海应用技术学院 Ultraviolet curing flame retardant primer coating and preparation method thereof

Similar Documents

Publication Publication Date Title
CN104072742B (en) A kind of epoxide modified aqueous alkide resin and water alcohol acid amino-stoving varnish and preparation method
CN101885943B (en) Nano-glass heat insulation paint and preparation method thereof
CN104804633B (en) A kind of low-temperature quick-drying type acroleic acid polyurethane coating and preparation method thereof
CN104356884A (en) Low-temperature quick-drying water-based primer-topcoat protective paint used for elevator track and preparation method thereof
CN102863874B (en) Water-base epoxy zinc-rich priming paint and preparation method thereof
CN101845263A (en) UV (Ultraviolet) curing coatings with high weatherability
CN105440821B (en) A kind of pump valve antirust paint
CN103409026B (en) A kind of environment-friendly water-based anti-flaming dope
CN101781517B (en) Self-flame-retardant aqueous polyurethane industrial wood lacquer
CN102140306A (en) UV (Ultraviolet) laser roller coating woodware primer coat
CN104559616A (en) Corrosion-resistant acrylic paint
CN104073040A (en) UV-cured white curtaining paint and preparation method thereof
CN105860629A (en) Fireproof paint for wood
CN103013204A (en) Flame-retardant ultraviolet curable coating for wood
CN102850872B (en) A kind of steel construction heat reflection frie retardant coating of ultrathin rete and preparation method thereof
CN102167920A (en) Aqueous flame-retardant coating and preparation method thereof
CN104531036B (en) Water-based double-component spray glue
CN104017427B (en) Thermosetting powder coating additive and preparation process thereof
CN103436158A (en) Crystal water-permeability UV (Ultraviolet) matte top-coat
CN105670356A (en) Fireproof waterborne coating for steel structures
CN107964345A (en) A kind of water paint and its preparation and application method
CN103740171B (en) Utilize ultraviolet light polymerization in the colour-wash/ink of tire and preparation method
CN102816506A (en) Self-dried acrylic modified alkyd resin flame-retardant paint
CN105733416A (en) Environment-friendly ultraviolet light polymerization powder coating
CN103254749B (en) Water-based blackboard paint

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C05 Deemed withdrawal (patent law before 1993)
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20130403