CN105256302A - Anti-stripping aluminum alloy cured film forming liquid and preparation method thereof - Google Patents

Anti-stripping aluminum alloy cured film forming liquid and preparation method thereof Download PDF

Info

Publication number
CN105256302A
CN105256302A CN201510739900.2A CN201510739900A CN105256302A CN 105256302 A CN105256302 A CN 105256302A CN 201510739900 A CN201510739900 A CN 201510739900A CN 105256302 A CN105256302 A CN 105256302A
Authority
CN
China
Prior art keywords
mentioned
cured film
add
stir
aluminium alloy
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
CN201510739900.2A
Other languages
Chinese (zh)
Inventor
沈四海
沈军
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.)
Hefei Haiyuan Machinery Co Ltd
Original Assignee
Hefei Haiyuan Machinery Co Ltd
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 Hefei Haiyuan Machinery Co Ltd filed Critical Hefei Haiyuan Machinery Co Ltd
Priority to CN201510739900.2A priority Critical patent/CN105256302A/en
Publication of CN105256302A publication Critical patent/CN105256302A/en
Pending legal-status Critical Current

Links

Landscapes

  • Chemical Treatment Of Metals (AREA)

Abstract

The invention discloses anti-stripping aluminum alloy cured film forming liquid. The anti-stripping aluminum alloy cured film forming liquid is prepared from, by weight, 100-110 parts of bis(triethoxysilylpropyl) tetrasulfide, 10-12 parts of butyl titanate, 3-5 parts of multiwalled carbon nanotubes, 0.8-1 part of cerous nitrate, 0.3-1 part of trimethylolpropane, 0.08-0.1 part of polytetrafluoroethylene, 2-3 parts of triolein, 0.4-1 part of sodium hexametaphosphate, 3-5 parts of polytetrahydrofuran glycol, 1-2 parts of sodium sulfite, 0.4-1 part of nickel sulfamate and 1-2 parts of triisopropanolamine. The caking property of a cured film on base materials is high, the anti-stripping strength is high, the surface tenacity is high, and aluminum alloy base materials can be effectively protected for a long time.

Description

A kind of antistripping aluminium alloy cured film shaping dope and preparation method thereof
Technical field
The present invention relates to technical field of aluminum alloy surface treatment, particularly relate to a kind of antistripping aluminium alloy cured film shaping dope and preparation method thereof.
Background technology
Silane due to its uniqueness molecular structure, asepsis environment-protecting, cost is low, consistency is good etc., and feature starts to be applied to anti-corrosion of metal field by people.Silane can be combined with metallic matrix closely through hydrolysis, forms fine and close rete, have good protected effect to metal on surface.But when the porous of silane film own, resistibility is corroded to corrosive medium more weak, in corrosive environment, Cl-etc. are easy especially to be corroded along these defects, the accumulation of corrosion product in interface can make formation stressed zone, interface, and cause the stripping of rete to come off, such silane film is once be destroyed, cannot selfreparing be carried out, be easy to the corrosion causing metallic matrix.Research finds to prepare organic and inorganic silane complex film by the inorganic nano-particle that adulterates in silane film with the material (as rare earth ions such as Ce, La) with self-repair function, effectively can prevent these defects of silane complex film.
Summary of the invention
The object of the invention is exactly the defect in order to make up prior art, provides a kind of antistripping aluminium alloy cured film shaping dope and preparation method thereof.
The present invention is achieved by the following technical solutions:
A kind of antistripping aluminium alloy cured film shaping dope, it is made up of the raw material of following weight parts:
Two (the silica-based propyl group of γ-triethoxy) tetrasulfide 100-110, butyl (tetra) titanate 10-12, multi-walled carbon nano-tubes 3-5, cerous nitrate 0.8-1, TriMethylolPropane(TMP) 0.3-1, tetrafluoroethylene 0.08-0.1, triolein 2-3, Sodium hexametaphosphate 99 0.4-1, PTMG 3-5, S-WAT 1-2, nickel sulfamic acid 0.4-1, tri-isopropanolamine 1-2.
A preparation method for described antistripping aluminium alloy cured film shaping dope, comprises the following steps:
(1) above-mentioned two (the silica-based propyl group of γ-triethoxy) tetrasulfide is mixed by the volume ratio of 1-2:3-4:90-100 with deionized water, dehydrated alcohol, ultrasonic disperse 10-20 minute, add Glacial acetic acid, adjustment PH is 4-5, at 20-30 DEG C, be incubated 46-50 hour, obtain coupling agent solution;
(2) above-mentioned Sodium hexametaphosphate 99 is joined in 16-20 times of deionized water, stir, add nickel sulfamic acid, insulated and stirred 5-10 minute at 60-70 DEG C, obtain salt emulsion;
(3) above-mentioned cerous nitrate is joined its volume 200-300 doubly, in the ethanolic soln of 4-6%, ultrasonic 1-2 minute is rare earth alcohol liquid;
(4) above-mentioned salt emulsion mixed with rare earth alcohol liquid, add tri-isopropanolamine, 100-200 rev/min is stirred 20-30 minute, obtains rare earth emulsion;
(5) above-mentioned PTMG joined in 3-5 times of dehydrated alcohol, stir, add above-mentioned triolein, insulated and stirred 7-10 minute in 80-90 DEG C of water-bath, discharging cools, and is alcohol ester solution;
(6) above-mentioned butyl (tetra) titanate is mixed by the volume ratio of 1-2:25-30:2-3 with dehydrated alcohol, acetic acid, stir, add above-mentioned rare earth emulsion, stir, ageing 20-24 hour, adds alcohol ester solution, at 50-60 DEG C, be incubated 1-2 hour, obtain modified titanium dioxide sol;
(7) be mixed to join in resistance furnace by above-mentioned tetrafluoroethylene, multi-walled carbon nano-tubes, reacting by heating 5-6 hour at 480-500 DEG C, cooling is come out of the stove, and is washed by product, dries, obtain carbon fluoride nano-tube;
(8) above-mentioned TriMethylolPropane(TMP) is joined in 80-100 times of dehydrated alcohol, stir, add carbon fluoride nano-tube, S-WAT, ultrasonic 17-20 minute, mix with above-mentioned coupling agent solution, modified titanium dioxide sol, add each raw material of residue, stir, at 75-80 DEG C, distill 1-2 hour, cool and get final product.
Described a kind of antistripping aluminium alloy cured film shaping dope, the using method of this aluminium alloy cured film shaping dope is:
(1) after aluminium alloy being polished with carborundum paper, use the diamond paste polishing of 0.5 μm again, afterwards successively with acetone, ethanol, water three kinds of solvent supersonic cleanings, cleaned sample is processed respectively in the HNO3 solution of 1.8-2%NaOH solution and 4-5%, finally use deionized water ultrasonic cleaning, nitrogen drying is for subsequent use;
(2) the aluminium alloy pickling process pulling film forming in above-mentioned solution will handled well, sends into after film forming in loft drier, solidifies 110-120min, obtain cured film at 115-120 DEG C.
Advantage of the present invention is:
The carbon nanotube chemical character that the present invention adds is highly stable, and its C-C singly-bound is the most stable chemical bond of occurring in nature, effectively can improve solidity to corrosion and the mechanical property of substrate surface film;
Present invention adds rare earth nitrate, the oxide compound formed through passivation and oxyhydroxide can be formed with the reticulated structure of organosilane and act synergistically, fine and close coating is formed with carbon nanotube, carbonic acid gas, cathodic depolarization is effectively inhibit to react and anode dissolution reaction, reduce erosion rate, play good protective effect;
In the present invention, adding of titanium dioxide makes the compactness of silane complex film increase, effectively prevent the erosion of the corrosive ions such as Cl-, H2O and O2, the diffusion of corrosion product can be suppressed, due to aperture blocking effect, stop the further generation of corrosion, this is because a part of TiOH group will react with the hydroxyl of metallic surface, Si-OH, at aluminium alloy matrix surface synergistic sorption, this just effectively enhances the bonding force of rete and matrix, overcomes the shortcoming that simple silane film is easy to peel off at matrix surface;
The present invention is C-F key at multi-walled carbon nano-tubes Surface Creation, can improve the dispersiveness in film with TiO 2 particles, effectively reduces reunion, can also improve the water resisting property of film coated surface simultaneously;
Composite membrane of the present invention has excellent protective value to alloy matrix aluminum; can anode dissolution be effectively suppressed to react; multi-walled carbon nano-tubes can with the functional groups Cheng Jian of titanium dioxide, two (the silica-based propyl group of γ-triethoxy) tetrasulfide; serve the compactness increasing film; improve the effect of the stability of film; effectively can stop the immersion of corrosive medium, thus improve corrosion resistance.
The cohesiveness of cured film of the present invention and base material is strong, and peel strength is high, and surface toughness is good, can effective long-effective protection aluminum alloy base material.
Embodiment
A kind of antistripping aluminium alloy cured film shaping dope, it is made up of the raw material of following weight parts:
Two (the silica-based propyl group of γ triethoxy) tetrasulfide 100, butyl (tetra) titanate 10, multi-walled carbon nano-tubes 3, cerous nitrate 0.8, TriMethylolPropane(TMP) 0.3, tetrafluoroethylene 0.08, triolein 2, Sodium hexametaphosphate 99 0.4, PTMG 3, S-WAT 1, nickel sulfamic acid 0.4, tri-isopropanolamine 1.
A preparation method for described antistripping aluminium alloy cured film shaping dope, comprises the following steps:
(1) above-mentioned two (the silica-based propyl group of γ triethoxy) tetrasulfide is mixed by the volume ratio of 1:3:90 with deionized water, dehydrated alcohol, ultrasonic disperse 10 minutes, adds Glacial acetic acid, regulates PH to be 4, at 20 DEG C, be incubated 46 hours, obtain coupling agent solution;
(2) joined in 16 times of deionized waters by above-mentioned Sodium hexametaphosphate 99, stir, add nickel sulfamic acid, at 60 DEG C, insulated and stirred 5 minutes, obtains salt emulsion;
(3) above-mentioned cerous nitrate is joined its volume 200 times, 4% ethanolic soln in, ultrasonic 1 minute is rare earth alcohol liquid;
(4) above-mentioned salt emulsion mixed with rare earth alcohol liquid, add tri-isopropanolamine, 100 revs/min are stirred 20 minutes, obtain rare earth emulsion;
(5) above-mentioned PTMG joined in 3 times of dehydrated alcohols, stir, add above-mentioned triolein, insulated and stirred 7 minutes in 80 DEG C of water-baths, discharging cools, and is alcohol ester solution;
(6) mixed by the volume ratio of 1:25:2 with dehydrated alcohol, acetic acid by above-mentioned butyl (tetra) titanate, stir, add above-mentioned rare earth emulsion, stir, ageing 20 hours, adds alcohol ester solution, is incubated 1 hour, obtains modified titanium dioxide sol at 50 DEG C;
(7) be mixed to join in resistance furnace by above-mentioned tetrafluoroethylene, multi-walled carbon nano-tubes, reacting by heating 5 hours at 480 DEG C, cooling is come out of the stove, and is washed by product, dries, obtain carbon fluoride nano-tube;
(8) above-mentioned TriMethylolPropane(TMP) is joined in 80 times of dehydrated alcohols, stir, add carbon fluoride nano-tube, S-WAT, ultrasonic 17 minutes, mix with above-mentioned coupling agent solution, modified titanium dioxide sol, add each raw material of residue, stir, distill 1 hour at 75 DEG C, cool and get final product.
Described a kind of antistripping aluminium alloy cured film shaping dope, the using method of this aluminium alloy cured film shaping dope is:
(1) after aluminium alloy being polished with carborundum paper, use the diamond paste polishing of 0.5 μm again, afterwards successively with acetone, ethanol, water three kinds of solvent supersonic cleanings, by cleaned sample respectively 1.8%NaOH solution and 4% HNO3 solution in process, finally use deionized water ultrasonic cleaning, nitrogen drying is for subsequent use;
(2) the aluminium alloy pickling process pulling film forming in above-mentioned solution will handled well, sends into after film forming in loft drier, solidifies 110min, obtain cured film at 115 DEG C.
Performance test:
Bending viscosity:
By cured film shaping dope process aluminum alloy sheet of the present invention, after film-forming, by bending 60 degree of aluminium flake doubling, peel off curved part 3 times with adhesive tape, under X20 magnifying glass, detect extent of exfoliation, result flawless;
Aluminum alloy sheet after film-forming is soaked 1 hour in boiling water, at room temperature places 24 hours, then by bending 60 degree of aluminium flake doubling, peel off curved part 3 times with adhesive tape, under X20 magnifying glass, detect extent of exfoliation, result flawless;
Erosion resistance:
By cured film shaping dope process aluminum alloy sheet of the present invention, after film-forming, by this material lateral dissection, carry out spray test, agents useful for same to be concentration be 5% sodium chloride solution, test period 300 hours, measure the bubbling width formed in line of cut side, result bubbling width is 0;
Aluminum alloy sheet after film-forming being immersed in concentration is in the sodium chloride solution of 5%, and soak 300 hours, material surface is substantially unchanged, and soak 400 hours, minute quantity rust staining appears in edge.

Claims (3)

1. an antistripping aluminium alloy cured film shaping dope, is characterized in that what it was made up of the raw material of following weight parts:
Two (the silica-based propyl group of γ-triethoxy) tetrasulfide 100-110, butyl (tetra) titanate 10-12, multi-walled carbon nano-tubes 3-5, cerous nitrate 0.8-1, TriMethylolPropane(TMP) 0.3-1, tetrafluoroethylene 0.08-0.1, triolein 2-3, Sodium hexametaphosphate 99 0.4-1, PTMG 3-5, S-WAT 1-2, nickel sulfamic acid 0.4-1, tri-isopropanolamine 1-2.
2. a preparation method for antistripping aluminium alloy cured film shaping dope as claimed in claim 1, is characterized in that comprising the following steps:
(1) above-mentioned two (the silica-based propyl group of γ-triethoxy) tetrasulfide is mixed by the volume ratio of 1-2:3-4:90-100 with deionized water, dehydrated alcohol, ultrasonic disperse 10-20 minute, add Glacial acetic acid, adjustment PH is 4-5, at 20-30 DEG C, be incubated 46-50 hour, obtain coupling agent solution;
(2) above-mentioned Sodium hexametaphosphate 99 is joined in 16-20 times of deionized water, stir, add nickel sulfamic acid, insulated and stirred 5-10 minute at 60-70 DEG C, obtain salt emulsion;
(3) above-mentioned cerous nitrate is joined its volume 200-300 doubly, in the ethanolic soln of 4-6%, ultrasonic 1-2 minute is rare earth alcohol liquid;
(4) above-mentioned salt emulsion mixed with rare earth alcohol liquid, add tri-isopropanolamine, 100-200 rev/min is stirred 20-30 minute, obtains rare earth emulsion;
(5) above-mentioned PTMG joined in 3-5 times of dehydrated alcohol, stir, add above-mentioned triolein, insulated and stirred 7-10 minute in 80-90 DEG C of water-bath, discharging cools, and is alcohol ester solution;
(6) above-mentioned butyl (tetra) titanate is mixed by the volume ratio of 1-2:25-30:2-3 with dehydrated alcohol, acetic acid, stir, add above-mentioned rare earth emulsion, stir, ageing 20-24 hour, adds alcohol ester solution, at 50-60 DEG C, be incubated 1-2 hour, obtain modified titanium dioxide sol;
(7) be mixed to join in resistance furnace by above-mentioned tetrafluoroethylene, multi-walled carbon nano-tubes, reacting by heating 5-6 hour at 480-500 DEG C, cooling is come out of the stove, and is washed by product, dries, obtain carbon fluoride nano-tube;
(8) above-mentioned TriMethylolPropane(TMP) is joined in 80-100 times of dehydrated alcohol, stir, add carbon fluoride nano-tube, S-WAT, ultrasonic 17-20 minute, mix with above-mentioned coupling agent solution, modified titanium dioxide sol, add each raw material of residue, stir, at 75-80 DEG C, distill 1-2 hour, cool and get final product.
3. a kind of antistripping aluminium alloy cured film shaping dope according to claim 1, is characterized in that the using method of this aluminium alloy cured film shaping dope is:
(1) after aluminium alloy being polished with carborundum paper, use the diamond paste polishing of 0.5 μm again, afterwards successively with acetone, ethanol, water three kinds of solvent supersonic cleanings, cleaned sample is processed respectively in the HNO3 solution of 1.8-2%NaOH solution and 4-5%, finally use deionized water ultrasonic cleaning, nitrogen drying is for subsequent use;
(2) the aluminium alloy pickling process pulling film forming in above-mentioned solution will handled well, sends into after film forming in loft drier, solidifies 110-120min, obtain cured film at 115-120 DEG C.
CN201510739900.2A 2015-11-04 2015-11-04 Anti-stripping aluminum alloy cured film forming liquid and preparation method thereof Pending CN105256302A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510739900.2A CN105256302A (en) 2015-11-04 2015-11-04 Anti-stripping aluminum alloy cured film forming liquid and preparation method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510739900.2A CN105256302A (en) 2015-11-04 2015-11-04 Anti-stripping aluminum alloy cured film forming liquid and preparation method thereof

Publications (1)

Publication Number Publication Date
CN105256302A true CN105256302A (en) 2016-01-20

Family

ID=55096225

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510739900.2A Pending CN105256302A (en) 2015-11-04 2015-11-04 Anti-stripping aluminum alloy cured film forming liquid and preparation method thereof

Country Status (1)

Country Link
CN (1) CN105256302A (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101583739A (en) * 2006-09-29 2009-11-18 莫门蒂夫性能材料股份有限公司 Storage stable composition of partial and/or complete condensate of hydrolyzable organofunctional silane
WO2010095756A1 (en) * 2009-02-18 2010-08-26 新日本製鐵株式会社 Surface-treated precoated metal sheet, process for producing same, and surface-treating solution
CN102453429A (en) * 2010-10-26 2012-05-16 浙江大学 Preparation method for nano-TiO2/organic silicon metal anti-corrosion coating
CN104630749A (en) * 2015-02-22 2015-05-20 桂林理工大学 Corrosion-resistant self-assembled doped film layer on aluminum alloy surface and preparation method of corrosion-resistant self-assembled doped film layer

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101583739A (en) * 2006-09-29 2009-11-18 莫门蒂夫性能材料股份有限公司 Storage stable composition of partial and/or complete condensate of hydrolyzable organofunctional silane
WO2010095756A1 (en) * 2009-02-18 2010-08-26 新日本製鐵株式会社 Surface-treated precoated metal sheet, process for producing same, and surface-treating solution
CN102453429A (en) * 2010-10-26 2012-05-16 浙江大学 Preparation method for nano-TiO2/organic silicon metal anti-corrosion coating
CN104630749A (en) * 2015-02-22 2015-05-20 桂林理工大学 Corrosion-resistant self-assembled doped film layer on aluminum alloy surface and preparation method of corrosion-resistant self-assembled doped film layer

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
李帅俊等: ""多壁碳纳米管氟化改性新方法研究"", 《化学与生物工程》 *

Similar Documents

Publication Publication Date Title
CN104629603B (en) The metal conditioner and corrosion-resistant coating preparation method of graphene-containing
CN102677059A (en) Super-hydrophobic aluminium and preparation method thereof
CN104984889A (en) Zinc-aluminum coating enhanced with particles in micro-nano sizes and production method of zinc-aluminum coating
CN106929840A (en) A kind of preparation method with corrosion proof superhydrophobic surface of aluminum alloy
CN105885611A (en) Polymer metallic copper anticorrosive coating and preparation method thereof
GB2425975A (en) Organic-inorganic hybrid coatings
CN109777290A (en) A kind of process for treating surface of the ultralight corrosion-resistant aviation aluminum alloy material of high-performance
CN103469286A (en) Organic-inorganic composite coating on metal surface and preparation process thereof
CN105274510A (en) Hard aluminum alloy curing film forming liquid and preparation method thereof
CN105401143A (en) Rare earth aluminum alloy cured film forming solution and preparation method thereof
CN105331964A (en) Rust-protection aluminum alloy curing film and preparation method thereof
CN105274537A (en) Aluminum alloy corrosion inhibition curing film forming liquid and preparation method thereof
CN105401138A (en) Aluminum alloy fluorinated hydrophobic cured film forming solution and preparation method thereof
CN105274513A (en) Beewax forming liquid for cured film of aluminum alloy and preparation method of beewax forming liquid
CN105274516A (en) Micro-emulsified forming liquid for cured film of aluminum alloy and preparation method of micro-emulsified forming liquid
CN105256302A (en) Anti-stripping aluminum alloy cured film forming liquid and preparation method thereof
CN105296986A (en) Aluminum alloy anti-contamination curing film molding liquid and preparation method thereof
CN106047030A (en) Resin-based metal copper anticorrosion coating and preparation method thereof
CN105331969A (en) Surface passivation treatment agent for aluminum profile
CN105331961A (en) Forming liquid for flexible aluminum alloy curing film and preparation method of forming liquid
CN105274511A (en) Aluminum alloy curing film forming liquid and preparation method thereof
CN105331962A (en) Forming liquid of anticorrosion aluminum alloy curing film and preparation method of forming liquid
CN105401145A (en) Fluorinated carbon nanotube aluminum alloy cured film forming solution and preparation method thereof
CN105274512A (en) Forming liquid for environment-friendly cured film of aluminum alloy and preparation method of forming liquid
CN105401141A (en) Gel aluminum alloy cured film forming solution and preparation method thereof

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20160120