CN102368033A - Aluminum heat radiator fin with film - Google Patents

Aluminum heat radiator fin with film Download PDF

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Publication number
CN102368033A
CN102368033A CN2011101758959A CN201110175895A CN102368033A CN 102368033 A CN102368033 A CN 102368033A CN 2011101758959 A CN2011101758959 A CN 2011101758959A CN 201110175895 A CN201110175895 A CN 201110175895A CN 102368033 A CN102368033 A CN 102368033A
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CN
China
Prior art keywords
radiator fin
film
aluminium radiator
aluminium
heat radiator
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
CN2011101758959A
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Chinese (zh)
Inventor
方得志
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.)
SUZHOU FANGJIYUAN ENERGY-SAVING TECHNOLOGY Co Ltd
Original Assignee
SUZHOU FANGJIYUAN ENERGY-SAVING TECHNOLOGY 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 SUZHOU FANGJIYUAN ENERGY-SAVING TECHNOLOGY Co Ltd filed Critical SUZHOU FANGJIYUAN ENERGY-SAVING TECHNOLOGY Co Ltd
Priority to CN2011101758959A priority Critical patent/CN102368033A/en
Publication of CN102368033A publication Critical patent/CN102368033A/en
Pending legal-status Critical Current

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Abstract

The invention relates to an aluminum heat radiator fin with a film. The aluminum heat radiator is characterized in that the film with a coating composition is coated on the surface of aluminum or an aluminium substrate, wherein the coating composition comprises silicon dioxide, dibutyl hydroxy toluene, trifluoro resin, alcohol and water. The aluminum heat radiator fin with the film can ensure enough hydrophily and corrosion resistance.

Description

Aluminium radiator fin with film
Technical field
The present invention relates to a kind of heatsink fins sheet material that forms the aluminum or aluminum alloy of the outstanding organic film of hydrophily from the teeth outwards, but for example relate to for for the heatsink fins sheet material of heat exchanger etc., being the preferred long term maintenance dew Aluminium Radiator fin material of wetting surface texture easily.
Background technology
The heat exchanger outstanding aluminiums such as heat conductivity, machinability, corrosion resistance that are widely used in order to carry out heat exchange effectively, in addition, also in order to make space compact (compact), adopt with the narrow interval and the structure of establishing Aluminium Radiator fin spare.Therefore, when the running of air conditioner, if the temperature of heat radiator fin material surface reaches below the dew point of air, the dew that then is attached on the heat radiator fin material surface condenses, and makes between the adjacent heat radiator fin inaccessible sometimes.At this moment, if the hydrophily on Aluminium Radiator fin material surface is low,,, thereby make the further variation of blocked state of heat radiator fin so that the dew that adheres to becomes is hemispherical then owing to become big with the contact angle of water.As a result, hot-swap feature receives known in the past problems such as the dew that hinders or cause owing to blast disperses outside air conditioner.
In order to improve the problem of above-mentioned dew; Developed through surface and carried out hydrophilicity-imparting treatment aluminium sheet self; So that when being processed into the heatsink fins sheet material and using, dew can not stop on the heat radiator fin surface and the technology that is removed easily, discharges.For example, disclose in the prior art and with the technology of synthetic silica and water paint.But if use synthetic silica, so add man-hour in the shaping of heatsink fins sheet material, there is the problem of the serious wear of instrument or metal mold etc. in the hardening of filming that then obtains.In addition, also have the distinctive cement of silica flavor or dust flavor, these stinks are considered to can bring unplessantness displeasure to human body owing to be adsorbed on that dispersing of material or silicon dioxide microparticle on the silica cause.Therefore, for example, the high-hydrophilic coating that uses the alumina sol replacement of silicon dioxide is disclosed in the prior art.In this technology, compare with the situation of using silica, although alleviate to some extent, still can observe stink, and if long-term the use, then stink increases, so still insufficient on this point that suppresses stink.
On the other hand; To disclose in the prior art that dew on the heat radiator fin material surface is long-time is detained and brings out hydration reaction or corrosion reaction in order suppressing to be attached to, to have used with the salt of carboxymethyl cellulose and N hydroxymethyl acrylamide technology as the surface conditioning agent of main component.In addition, disclose in the prior art in order to give corrosion resistance and hydrophily to the heatsink fins sheet material, using with polyvinyl alcohol and polyvinylpyrrolidone is effective as the surface conditioning agent of main component.At these in the past in the technology, owing to do not use silica etc., so can not cause the problem of wearing and tearing that stink or metal mold take place and so on.
In addition, the applicant continues the heat exchanger of the hydrophilic resin tunicle that is formed with organic system is inquired into the Aluminium Radiator fin material.Formation is the method for the organic system resin coating layer of main component with polyvinyl alcohol and water-soluble nylon, water-soluble phenol etc., polyacrylic acid, polyethylene glycol etc.Unpleasant foul smell can not take place and keep hydrophily in these resin coating layer.
The processability of the hydrophilic tunicle of these organic system resin coating layer is outstanding and do not have a problem such as tool wear; In addition; The foul smell that does not also have silica to cause takes place, even but such serious unlike inorganic system, but the undeniable generation that has the slight foul smell in organic system resin source.
The organic system resin coating layer is utilized the coating that application contains the constituent of resin coating layer on aluminium sheet such as glue spreader usually in the formation on the aluminium sheet, carry out heat drying then and implement.Then, the hydrophily aluminium aluminium radiator fin that produces becomes heat exchanger through operation such as pressurization processing or copper pipe insertion, expander, soldering.Think in these a series of manufacturing processes, thus when resin coating layer forms or heat exchanger when making added heat can cause that the part generation thermal decomposition deterioration of resin coating layer produces foul smell.
Summary of the invention
The objective of the invention is to, a kind of aluminium radiator fin material that stops inorganic system to apply reliably is provided, and this heatsink fins sheet material can guarantee sufficient hydrophily, corrosion resistance.
For this reason, the invention provides a kind of can use for a long time also can protracted hydrophilicity or the aluminium radiator fin material with resin film of corrosion resistance.Technical scheme of the present invention is following:
A kind of aluminium radiator fin with film is characterized in that the aluminium radiator fin has application composition and forms film by on aluminium or aluminium substrate surface, being coated with, and this application composition has silica, dibutyl hydroxy toluene, three fluororesin, alcohol and water.
Wherein, the content of silica is 4.8-25 wt%; Preferably, the content of silica is 7.5-22.5 wt%; More preferably, the content of silica is 12.5-20 wt%.
Wherein, the content of dibutyl hydroxy toluene is 1.5-7.5 wt%; Preferably, the content of dibutyl hydroxy toluene is 2.5-4.8wt%.
Wherein, described three fluororesin are CTFE/vinyl ether copolymers.Preferably, the content of three fluororesin is 0.8-5.5 wt%; More preferably, the content of three fluororesin is 1.2-4.5 wt%.
Wherein, described alcohol can be selected from isopropyl alcohol, diethylene glycol (DEG), DPG, polyethylene glycol, 1,2-propane diols, 1,3-butanediol, 1, one or more of 4-butanediol, glycerine.And preferably, the content of described alcohol is 5.0-18.5 wt%; Preferably, the content of described alcohol is 7.5-15.5 wt%; More preferably, the content of described alcohol is 9.0-13.5wt%.
Wherein, the thickness of described film is preferably 0.2-2.0 μ m; Preferably, its content is 0.5-1.5 μ m; At thickness is under the situation below the lower limit, and hydrophily descends, and is being under the situation more than the higher limit, and heat exchange efficiency descends.
Aluminum was the high material of corrosion resistance originally, but the aluminium radiator fin is under the moistening atmosphere owing to the existence of dew, so be exposed in the environment of easy generation corrosion.Can know in that any corrosion resistance layer is not set only to apply under the situation of hydrophilic resin layer that corrosion is carried out in the aluminium under this hydrophilic resin layer easily, therefore cause the performance of film to reduce.Thereby, be added with silica and three fluororesin among the present invention as corrosion-resistant component.
Dibutyl hydroxy toluene in the application composition of the present invention has water-soluble or certain hydrophily, so if on alumina-base material, adhere to the film that cooperation contains dibutyl hydroxy toluene, then the hydrophily of this film can variation.Therefore; The condensate that takes place in the running of heat exchanger can adapt to the hydrophily of aluminium radiator fin surface well and flow easily; Thereby quicken the discharge of condensate, heat radiator fin can not block because of being condensed, thereby can stop the variation of heat exchange efficiency effectively.
When embodiment of the present invention, unqualified to the formation method of film, for example as long as form above-mentioned application composition, known method such as heat after coating it on aluminium sheet then and apply and form film.In addition, when embodiment of the present invention, also unqualified to coating process.
In addition; Also can be in the scope that does not hinder performance of the present invention; In being used to form the composition of film, add the various coating additives that are used to improve coating or operability etc., for example at random appropriate table surface-active agent, Surface Machining agent, crosslinking agent, defoamer, levelling agent, antiseptic, other mould resistants etc. get final product.
In addition,, before coated thin film, also can implement phosphate and/or chromate surface treatment or carry out the differential arc oxidation processing in order further to improve corrosion resistance aluminium.
The specific embodiment
Utilize existing manufacturing approach in the prior art, make the aluminium matrix of JISAA-5052.Use alkaline rinse at first this aluminium to be carried out oil removing, carry out differential arc oxidation then and handle.
The aluminium that will pass through after the above-mentioned processing is used material as test, utilizes prior art to be processed into the aluminium radiator fin.Then, through applying application composition of the present invention, that is: according to the ratio of table 1 record, be coated on the inner surface of aluminium radiator fin, coating thickness is 0.5 mm, and the heat treated temperature is 160 ℃, forms described aluminium radiator fin with film.
Each aluminium radiator fin material to preparing carries out the test of following various performances.
The hydrophily test
At flow is 8 hours aluminium radiator fin materials of dipping in the running water of 1 L/min, then 80 ℃ dry 16 hours down, these operations as 1 circulation (cycle), are carried out 5 circulations.Then, the water droplet of about 0.5 microlitre of drippage (microliter) on the inner surface of aluminium radiator fin material uses the contact angle determination device to measure contact angle.
Then, carry out hydrophily evaluation according to following standard based on the aluminium radiator fin material of these measurement of contact angle values.
Outstanding: contact angle is less than 20 °
Well: contact angle is 20 ° to 40 ° (comprise 20 °, but do not comprise 40 °)
Qualified: contact angle is 40 ° to 60 ° (comprise 40 °, but do not comprise 60 °)
Bad: contact angle is more than 60 °.
Corrosion resistance is estimated
Each aluminium radiator fin material to trial-production is implemented neutral salt spray test (GB 6458-86), and be 720 h experimental period.After carrying out these tests, the outward appearance of each test piece of visualization, the long-pending ratio of all surfaces of the relative aluminium radiator fin material of area of counting corrosion part according to criterion, is estimated the extent of corrosion of aluminium radiator fin material.
Well: the ratio of corroded area is less than 10%;
Qualified:The ratio of corroded area is 10%-30% (not comprising 30%);
Bad: the ratio of corroded area is more than 30%.
The constituent content of table 1 application composition (wt%), wherein surplus is a water.
Experiment numbers Silica Dibutyl hydroxy toluene Three fluororesin Polyethylene glycol
1 4.8 1.5 0.8 5.0
2 7.2 2.2 1.5 7.5
3 10.8 3.0 2.4 9.5
4 13.5 3.7 3.2 11.5
5 15.8 4.5 3.8 13.5
6 18.5 5.5 4.5 15.0
7 21.8 6.5 5.0 16.8
8 25 7.5 5.5 18.5
Table 2The test evaluation result
Experiment numbers Hydrophily Corrosion resistance
1 Well Well
2 Well Well
3 Well Well
4 Outstanding Well
5 Outstanding Well
6 Outstanding Well
7 Outstanding Well
8 Outstanding Well

Claims (7)

1. aluminium radiator fin with film; It is characterized in that the aluminium radiator fin has application composition and forms film by on aluminium or aluminium substrate surface, being coated with, this application composition has silica, dibutyl hydroxy toluene, three fluororesin, alcohol and water.
2. the described aluminium radiator fin of claim 1, the content that it is characterized in that described silica is 4.8-25 wt%.
3. the described aluminium radiator fin of claim 1, the content that it is characterized in that described dibutyl hydroxy toluene is 1.5-7.5 wt%.
4. the described aluminium radiator fin of claim 1 is characterized in that described three fluororesin are CTFE/vinyl ether copolymers.
5. the described aluminium radiator fin of claim 1 is characterized in that described alcohol is selected from isopropyl alcohol, diethylene glycol (DEG), DPG, polyethylene glycol, 1,2-propane diols, 1,3-butanediol, 1, one or more of 4-butanediol, glycerine.
6. the described aluminium radiator fin of claim 5, the content that it is characterized in that described alcohol is 5.0-18.5 wt%.
7. the described aluminium radiator fin of claim 1, the thickness that it is characterized in that described film is 0.2-2.0 μ m.
CN2011101758959A 2011-06-28 2011-06-28 Aluminum heat radiator fin with film Pending CN102368033A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
CN2011101758959A CN102368033A (en) 2011-06-28 2011-06-28 Aluminum heat radiator fin with film

Publications (1)

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CN102368033A true CN102368033A (en) 2012-03-07

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108885071A (en) * 2016-03-30 2018-11-23 株式会社Uacj Hydrophilic coating film and the aluminum fin and heat exchanger for using the hydrophilic coating film

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1886255A (en) * 2003-11-19 2006-12-27 应用薄膜股份有限公司 Aluminum phosphate compounds, compositions, materials and related metal coatings
CN101679807A (en) * 2007-05-15 2010-03-24 富士胶片株式会社 Hydrophilic coating composition and hydrophilic member using the same
WO2010092927A1 (en) * 2009-02-13 2010-08-19 三菱電機株式会社 Coating method and coated article

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1886255A (en) * 2003-11-19 2006-12-27 应用薄膜股份有限公司 Aluminum phosphate compounds, compositions, materials and related metal coatings
CN101679807A (en) * 2007-05-15 2010-03-24 富士胶片株式会社 Hydrophilic coating composition and hydrophilic member using the same
WO2010092927A1 (en) * 2009-02-13 2010-08-19 三菱電機株式会社 Coating method and coated article

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108885071A (en) * 2016-03-30 2018-11-23 株式会社Uacj Hydrophilic coating film and the aluminum fin and heat exchanger for using the hydrophilic coating film
CN108885071B (en) * 2016-03-30 2019-11-05 株式会社Uacj Hydrophilic coating film and the aluminum fin and heat exchanger for using the hydrophilic coating film

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Application publication date: 20120307