CN104861746A - Heat dissipating paint with large adhesive force and preparation method - Google Patents

Heat dissipating paint with large adhesive force and preparation method Download PDF

Info

Publication number
CN104861746A
CN104861746A CN201510217443.0A CN201510217443A CN104861746A CN 104861746 A CN104861746 A CN 104861746A CN 201510217443 A CN201510217443 A CN 201510217443A CN 104861746 A CN104861746 A CN 104861746A
Authority
CN
China
Prior art keywords
parts
powder
heat radiation
radiation coating
adhesive power
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
CN201510217443.0A
Other languages
Chinese (zh)
Inventor
不公告发明人
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.)
Foshan Hecai Technology Service Co Ltd
Original Assignee
Foshan Hecai Technology Service 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 Foshan Hecai Technology Service Co Ltd filed Critical Foshan Hecai Technology Service Co Ltd
Priority to CN201510217443.0A priority Critical patent/CN104861746A/en
Publication of CN104861746A publication Critical patent/CN104861746A/en
Pending legal-status Critical Current

Links

Landscapes

  • Paints Or Removers (AREA)
  • Adhesives Or Adhesive Processes (AREA)

Abstract

The invention discloses a type of heat dissipating paint with large adhesive force and a preparation method. The paint comprises, by weight, 35 parts to 50 parts of nanometer graphite, 5 parts to 12 parts of aluminum nitride powder, 1 part to 3 parts of zircon power, 4 parts to 7 parts of aluminum oxide, 1 part to 4 parts of calcined potassium feldspar, 3 parts to 6 parts of xylitol, 3 parts to 6 parts of attapulgite, 4 parts to 7 parts of silica fume, 4 parts to 7 parts of blanc fixe, 30 parts to 45 parts of pure water, 3 parts to 6 parts of potassium hexatitanate whisker, 3 parts to 6 parts of zirconia, 6 parts to 10 parts of modifier and the like. The modifier comprises, by weight, 25 parts to 40 parts of silicone acrylic emulsion, 3 parts to 7 parts of polypropylene, 3 parts to 7 parts of quartz sand, 3 parts to 7 parts of citric acid and the like. The preparation method comprises the step of material mixing, the step of ball milling and the step of low-temperature modification treatment. Treatment is carried out on the paint by adding the modifier, the surface of a metal part is coated with the obtained heat dissipating paint, weather resistance and heat resistance are improved, adhesive force is increased, the paint is prevented from falling off and ageing, and the service life of the paint is prolonged.

Description

A kind of strong adhesive power heat radiation coating and preparation method
Technical field
The present invention relates to heat radiation coating technical field, particularly relate to a kind of strong adhesive power heat radiation coating and preparation method.
Background technology
In social fast development, make various electric equipment products all towards miniaturization, lightweight, densification and high efficiency future development, so there is high-power electronic product obtain fast development, and consequent a large amount of heat does not distribute space will directly affect the job stability of electronic product, processing safety and work-ing life, the conventional type of cooling can not meet the cooling requirements of high power electronic product, so the rate of heat dissipation of electronic product just must be improved, and adopt at present maximum be coated heat radiation coating.
Heat radiation coating, by improving body surface radiation efficiency (particularly improving infrared radiation efficiency), augmented heat dispersion, there is cost low, implement simple, heat loss through radiation High tailored coating is directly constructed to the body surface wanting radiating and cooling, and heat loss through radiation High tailored coating can with infrared wave to the heat on airspace radiating object, reduce body surface and internal temperature, radiating and cooling is obvious.Coating heat radiation does not affect by surrounding medium, and coating heat radiation can use in vacuum environment.Coating, while playing radiation cooling, can also increase the performances such as self-cleaning, insulativity, preservative property, water-repellancy, antiacid alkali.
At present, heat radiation filler conventional in heat radiation coating is aluminium nitride, silicon nitride, aluminum oxide, beryllium oxide, magnesium oxide, silicon oxide and zinc oxide etc., the price of the material of these high thermal conductivity is higher, and the organic solvent toxicity preparing coating comparatively conference causes environmental pollution, also can the phenomenon of generating portion gel, therefore, just need that a kind of price is low, environmental friendliness and there will not be the heat radiation coating of gel phenomenon; And the patent of invention that the patent No. is CN104387904 A discloses a kind of Iron Casting Surface heat radiation coating solves above-mentioned defect, but the weathering resistance of the heat radiation coating of this patent, thermotolerance and adhesive power are high, easily come off and aging, and work-ing life is low.
Summary of the invention
The object of the invention is to solve deficiency of the prior art and defect proposition a kind of adhesive power heat radiation coating and preparation method by force.
For reaching this object, the present invention by the following technical solutions:
A kind of strong adhesive power heat radiation coating, it comprises the composition of following parts by weight: nano-graphite 35-50 part, aluminum nitride powder 5-12 part, zirconium English powder 1-3 part, aluminum oxide 4-7 part, calcining potassium felspar sand 1-4 part, Xylitol 3-6 part, attapulgite 3-6 part, silicon ash 4-7 part, ground barium sulfate 4-7 part, pure water 30-45 part, six titanium whisker 3-6 parts, zirconium white 3-6 part, properties-correcting agent 6-10 part, nanometer anion powder 3-8 part, chromite powder 3-8 part, boric acid aqueous solution 3-8 part, nano titanium oxide 3-8 part, polyester polyol 3-8 part, slaked lime powder 3-8 part;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 25-40 part, polypropylene 3-7 part, quartz sand 3-7 part, citric acid 3-7 part, fisetin 3-7 part, tealeaves alkaloid 3-7 part, methyl-silicone oil 3-7 part, calcium lignin sulphonate 1-5 part, lignocellulose 1-5 part, rosined soap 1-5 part, methyl violet 1-5 part, tetraphenylpyrazine 1-5, anti-hematic acid 0.1-0.5 part.
Preferably, it also comprises lapis amiridis 8-15 part.Lapis amiridis has and highlyer has fusing point, adds the resistance to elevated temperatures of heat-radiation coating heat.
Preferably, described properties-correcting agent also comprises jade powder 7-12 part.
Jade powder can dispel the obnoxious flavour and food that material of construction produces, and the various life smell such as cigarette is "dead", health environment-friendly, blocks burning, insulation antifrost.The jade coefficient of expansion is little, suitably arranges in pairs or groups in coating, can overcome the shortcoming that coating peeling peels off.
Preferably, it comprises the composition of following parts by weight: meter Shi Mo 38 parts, aluminum nitride powder 8 parts, 2.5 parts, zirconium English powder, 5.5 parts, aluminum oxide, calcining potassium felspar sand 3 parts, Xylitol 4.5 parts, attapulgite 5 parts, silicon ash 6.5 parts, ground barium sulfate 6 parts, pure water 40 parts, six titanium whisker 4 parts, zirconium white 4.5 parts, properties-correcting agent 8.5 parts, nanometer anion powder 6 parts, chromite powder 7 parts, boric acid aqueous solution 4 parts, polyester polyol 5 parts, slaked lime powder 6 parts, lapis amiridis 10.5 parts;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 32 parts, polypropylene 5.5 parts, quartz sand 4.5 parts, citric acid 3.5 parts, fisetin 5.5 parts, tealeaves alkaloid 4.5 parts, methyl-silicone oil 3.8 parts, calcium lignin sulphonate 2.6 parts, lignocellulose 2.5 parts, rosined soap 2 parts, methyl violet 2.5 parts, tetraphenylpyrazine 3, jade powder 10 parts.
A preparation method for above-mentioned strong adhesive power heat radiation coating, it comprises the following steps:
A), each component is put into mixer and carry out mixing treatment;
B), ball mill ball milling is put into again after mixing;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of about subzero 12-18 DEG C, under moving to normal temperature environment after 2-3 hour, packaging can obtain heat radiation coating.
Preferably, step a) in, mixing time is 40-60 minute.
Preferably, step b) in, Ball-milling Time is 3-5 hour.
Preferably, the preparation method of described properties-correcting agent comprises the following steps:
1) by quartz sand with dehydrated alcohol be dispersion medium, wherein the mass ratio of material and ethanol is 1:15, ultrasonic disperse 1-1.5 hour on supersonic cleaning machine;
2) quartz sand through ultrasonic disperse is put into nylon ball grinder, add polypropylene, fisetin, calcium lignin sulphonate, lignocellulose, rosined soap, methyl violet and tetraphenylpyrazine again, take agate ball as abrading-ball, ball material mass ratio is 6:2, be under the condition of 180-200 rev/min at rotating speed, during continuous ball milling 3-5;
3) pour in powder dish by powder complete for ball milling together with agate abrading-ball, dry at 65-95 DEG C, the powder of drying is sieved, take out agate abrading-ball, grind, till the larger reunion of nothing, so far, the preparation of mixed powder is complete;
4) by step 3) in mixture mix with organosilicon crylic acid latex, citric acid, tealeaves alkaloid, tetraphenylpyrazine and methyl-silicone oil, then at the uniform velocity stir under the environment of about 65-75 DEG C, can heat radiation coating be obtained, for subsequent use.
The present invention is by after adding properties-correcting agent and processing, and described obtained heat radiation coating is applied to the surface of metalwork, improves weathering resistance, thermotolerance and adhesive power, avoids coming off and aging, increases the service life.
Embodiment
Technical scheme of the present invention is further illustrated below by embodiment.
Embodiment 1
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 60 minutes
B), mixing after put into ball mill ball milling again, Ball-milling Time is 3 hours
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 18 DEG C, under moving to normal temperature environment after 2 hours, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 35 parts, aluminum nitride powder 8 parts, 2 parts, zirconium English powder, 4 parts, aluminum oxide, calcining potassium felspar sand 3 parts, Xylitol 5 parts, attapulgite 4 parts, silicon ash 7 parts, ground barium sulfate 6 parts, pure water 35 parts, six titanium whisker 6 parts, zirconium white 5 parts, properties-correcting agent 8 parts, nanometer anion powder 6 parts, chromite powder 5 parts, boric acid aqueous solution 7 parts, nano titanium oxide 8 parts, polyester polyol 5 parts, slaked lime powder 7 parts;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 25 parts, polypropylene 5 parts, quartz sand 6 parts, citric acid 7 parts, fisetin 4 parts, tealeaves alkaloid 7 parts, methyl-silicone oil 5 parts, calcium lignin sulphonate 2 parts, lignocellulose 1 part, rosined soap 5 parts, methyl violet 3 parts, anti-hematic acid 0.1 part, tetraphenylpyrazine 2 parts.
Comparative example 1 (patent No. is the patent of invention of CN104387904A)
The preparation method of a kind of iron casting surface heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 60 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 3 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 12 DEG C, under moving to normal temperature environment after 3 hours, packaging can obtain heat radiation coating.
Each components in mass portion number in the present embodiment comprises: water-soluble epoxy resin 30 parts, aquamaine stone flour 5 parts, silicon sol 3 parts, 4 parts, zirconium English powder, 3 parts, aluminum oxide, calcining potassium felspar sand 5 parts, Xylitol 2 parts, calcined kaolin 2 parts, ground barium sulfate 3 parts, 5 parts, macrobead graphite, deionized water 50 parts, six titanium whiskers 2 parts, crystalline flake graphite 2 parts, zirconium white 2 parts, properties-correcting agent 5 parts, nanometer anion powder 2 parts, silicon nitride 2 parts, chromite powder 2 parts, boric acid aqueous solution 2 parts, nano titanium oxide 1 part, polyester polyol 2 parts, slaked lime powder 2 parts.
Wherein properties-correcting agent comprises by mass fraction:: modified corn starch 20 parts, Graphene 2 parts, quartz sand 2 parts, citric acid 2 parts, fisetin 2 parts, tealeaves alkaloid 5 parts, methyl-silicone oil 2 parts, calcium lignin sulphonate 0.5 part, lignocellulose 0.5 part, rosined soap 0.5 part, methyl violet 0.5 part, tetraphenylpyrazine 0.5 part.
Application uses the metalwork of the coating of embodiment 1 and application to use the metalwork of the coating of comparative example 1 to carry out multiple test comparison, and test result sees the following form 1.
Table 1
Can obtain from the comparative test result of upper table 1 embodiment 1 with comparative example 1, use the coating of embodiment 1 to improve the heat-conducting effect of coating, ageing-resistant, can not variable color; And be not easy to come off; Enhance the heat dispersion of metalwork and the mechanical mass performance of coatingsurface.Organosilicon crylic acid latex combines organosilicon fire-resistant, weathering resistance, chemical-resistant, high tint retention, snappiness, the tack of the low not v ulnerability of hydrophobic, surface energy and acrylic resin.A kind of high durable, high water-fast, resistant to pollution environment-friendly type building emulsion and coating.Polypropylene has good thermotolerance, and goods temperature to carry out disinfection sterilizing more than 100 DEG C, and not by under the condition of external force, 150 DEG C also indeformable; Organosilicon crylic acid latex and described polyacrylic blending and modifying; Further raising ageing resistance, weathering resistance and adhesive power.And nano-graphite has the performance of the natural ultra tiny Graphite Powder 99 of high-quality, there is special oxidation-resistance under the high temperature conditions.Self lubricity and plasticity-, have good conduction, heat conduction and tack simultaneously; Aluminum nitride powder thermal conductivity is high, and thermal expansivity is low; Dielectric loss is little, high insulation, environment-protecting asepsis; Improve the weathering resistance of metalwork, ageing resistance and thermotolerance greatly, heat-conducting effect is better.
Embodiment 2
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 55 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 4.5 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 12 DEG C, under moving to normal temperature environment after 3 hours, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 50 parts, aluminum nitride powder 12 parts, 3 parts, zirconium English powder, 7 parts, aluminum oxide, calcining potassium felspar sand 4 parts, Xylitol 3 parts, attapulgite 6 parts, silicon ash 5 parts, barite 4-7 part, pure water 45 parts, six titanium whisker 6 parts, zirconium white 5 parts, properties-correcting agent 10 parts, nanometer anion powder 3 parts, silicon nitride 6 parts, chromite powder 8 parts, boric acid aqueous solution 7 parts, nano titanium oxide 6 parts, polyester polyol 3 parts, slaked lime powder 4 parts;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 40 parts, polypropylene 7 parts, quartz sand 5 parts, citric acid 3 parts, fisetin 6 parts, tealeaves alkaloid 5 parts, methyl-silicone oil 7 parts, calcium lignin sulphonate 4 parts, lignocellulose 1 part, rosined soap 2 parts, methyl violet 5 parts, anti-hematic acid 0.3 part, tetraphenylpyrazine 4 parts.
The heat radiation coating that the present embodiment is obtained, 4900 hours ageing-resistant time, heatproof high temperature 330 DEG C, thermal conductivity 370W/ (m DEG C), color is constant; Bonding strength is 41kN/m.
Embodiment 3
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 45 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 3 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 18 DEG C, under moving to normal temperature environment after 2.5 hours, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 40 parts, aluminum nitride powder 5 parts, 3 parts, zirconium English powder, 4 parts, aluminum oxide, calcining potassium felspar sand 4 parts, Xylitol 6 parts, attapulgite 3 parts, silicon ash 4 parts, ground barium sulfate 5 parts, pure water 35 parts, six titanium whiskers 3 parts, zirconium white 6 parts, properties-correcting agent 6 parts, nanometer anion powder 7 parts, silicon nitride 5 parts, chromite powder 8 parts, boric acid aqueous solution 5 parts, nano titanium oxide 3 parts, polyester polyol 8 parts, slaked lime powder 8 parts, lapis amiridis 12 parts,
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 30 parts, polypropylene 3 parts, quartz sand 7 parts, citric acid 6 parts, fisetin 7 parts, tealeaves alkaloid 3 parts, methyl-silicone oil 7 parts, calcium lignin sulphonate 3 parts, lignocellulose 2 parts, rosined soap 1 part, methyl violet 1 part, tetraphenylpyrazine 4 parts, anti-hematic acid 0.2 part, jade powder 9 parts.
The heat radiation coating that the present embodiment is obtained, 5300 hours ageing-resistant time, heatproof high temperature 350 DEG C, thermal conductivity 390W/ (m DEG C), color is constant; Bonding strength is 46kN/m.
Embodiment 4
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 55 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 2 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 16 DEG C, under moving to normal temperature environment after 2 hours, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 45 parts, aluminum nitride powder 10 parts, 2 parts, zirconium English powder, 7 parts, aluminum oxide, calcining potassium felspar sand 3 parts, Xylitol 5 parts, attapulgite 5 parts, silicon ash 6 parts, ground barium sulfate 4 parts, pure water 40 parts, six titanium whisker 6 parts, zirconium white 4 parts, properties-correcting agent 7 parts, nanometer anion powder 5 parts, silicon nitride 7 parts, chromite powder 3 parts, boric acid aqueous solution 8 parts, nano titanium oxide 4 parts, polyester polyol 6 parts, slaked lime powder 4 parts, lapis amiridis 15;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 35 parts, polypropylene 7 parts, quartz sand 7 parts, citric acid 4 parts, fisetin 4 parts, tealeaves alkaloid 5 parts, methyl-silicone oil 4 parts, calcium lignin sulphonate 5 parts, lignocellulose 4 parts, rosined soap 3 parts, methyl violet 4 parts, tetraphenylpyrazine 2 parts, anti-hematic acid 0.5 part, jade powder 12 parts.
The heat radiation coating that the present embodiment is obtained, 4700 hours ageing-resistant time, heatproof high temperature 350 DEG C, thermal conductivity 360W/ (m DEG C), color is constant; Bonding strength is 40kN/m.
Embodiment 5
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 40 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 5 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 14 DEG C, under moving to normal temperature environment after 3 hours, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 38 parts, aluminum nitride powder 7 parts, 1 part, zirconium English powder, 7 parts, aluminum oxide, calcining potassium felspar sand 1 part, Xylitol 6 parts, attapulgite 3 parts, silicon ash 5 parts, ground barium sulfate 6 parts, pure water 36 parts, six titanium whisker 6 parts, zirconium white 4 parts, properties-correcting agent 9 parts, nanometer anion powder 6 parts, silicon nitride 5 parts, chromite powder 4 parts, boric acid aqueous solution 3 parts, nano titanium oxide 7 parts, polyester polyol 3 parts, slaked lime powder 5 parts;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 32 parts, polypropylene 6 parts, quartz sand 3 parts, citric acid 4 parts, fisetin 5 parts, tealeaves alkaloid 4 parts, methyl-silicone oil 6 parts, calcium lignin sulphonate 5 parts, lignocellulose 4 parts, rosined soap 2 parts, methyl violet 5 parts, anti-hematic acid 0.4 part, tetraphenylpyrazine 3 parts.
The heat radiation coating that the present embodiment is obtained, 5100 hours ageing-resistant time, heatproof high temperature 370 DEG C, thermal conductivity 380W/ (m DEG C), color is constant; Bonding strength is 48kN/m.
Embodiment 6
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 60 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 3 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 17 DEG C, under moving to normal temperature environment after 2.5 hours, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 48 parts, aluminum nitride powder 11 parts, 3 parts, zirconium English powder, 7 parts, aluminum oxide, calcining potassium felspar sand 4 parts, Xylitol 6 parts, attapulgite 3 parts, silicon ash 4 parts, ground barium sulfate 5 parts, pure water 36 parts, six titanium whiskers 4 parts, zirconium white 6 parts, properties-correcting agent 8 parts, nanometer anion powder 6 parts, silicon nitride 8 parts, chromite powder 8 parts, boric acid aqueous solution 7 parts, nano titanium oxide 4 parts, polyester polyol 7 parts, slaked lime powder 3 parts, lapis amiridis 8 parts,
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 28 parts, polypropylene 5 parts, quartz sand 7 parts, citric acid 5 parts, fisetin 4 parts, tealeaves alkaloid 5 parts, methyl-silicone oil 6 parts, calcium lignin sulphonate 4 parts, lignocellulose 3 parts, rosined soap 4 parts, methyl violet 1 part, tetraphenylpyrazine 4 parts, anti-hematic acid 0.3 part, jade powder 7 parts.
The heat radiation coating that the present embodiment is obtained, 5000 hours ageing-resistant time, heatproof high temperature 360 DEG C, thermal conductivity 350W/ (m DEG C), color is constant; Bonding strength is 44kN/m.
Embodiment 7
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 58 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 3.5 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 13 DEG C, under moving to normal temperature environment after 2.5 hours, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 38 parts, aluminum nitride powder 6 parts, 3 parts, zirconium English powder, 4 parts, aluminum oxide, calcining potassium felspar sand 1 part, Xylitol 5 parts, attapulgite 4 parts, silicon ash 6 parts, ground barium sulfate 4 parts, pure water 42 parts, six titanium whisker 6 parts, zirconium white 5 parts, properties-correcting agent 7 parts, nanometer anion powder 6 parts, silicon nitride 3 parts, chromite powder 8 parts, boric acid aqueous solution 4 parts, nano titanium oxide 6 parts, polyester polyol 5 parts, slaked lime powder 5 parts;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 38 parts, polypropylene 7 parts, quartz sand 7 parts, citric acid 5 parts, fisetin 6 parts, tealeaves alkaloid 4 parts, methyl-silicone oil 5 parts, calcium lignin sulphonate 3 parts, lignocellulose 2 parts, rosined soap 4 parts, methyl violet 5 parts, anti-hematic acid 0.1 part, tetraphenylpyrazine 1 part.
The heat radiation coating that the present embodiment is obtained, 5200 hours ageing-resistant time, heatproof high temperature 360 DEG C, thermal conductivity 360W/ (m DEG C), color is constant; Bonding strength is 46kN/m.
Embodiment 8
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 48 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 4.5 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 17 DEG C, under moving to normal temperature environment after 2-3 hour, packaging can obtain heat radiation coating.
This coating comprises following component by weight: nano-graphite 42 parts, aluminum nitride powder 10 parts, 1 part, zirconium English powder, 6 parts, aluminum oxide, calcining potassium felspar sand 2 parts, Xylitol 5 parts, attapulgite 6 parts, silicon ash 4 parts, ground barium sulfate 5 parts, pure water 32 parts, six titanium whiskers 3 parts, zirconium white 5 parts, properties-correcting agent 9 parts, nanometer anion powder 7 parts, silicon nitride 5 parts, chromite powder 4 parts, boric acid aqueous solution 3 parts, nano titanium oxide 8 parts, polyester polyol 6 parts, slaked lime powder 5 parts, lapis amiridis 10 parts,
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 37 parts, polypropylene 4 parts, quartz sand 6 parts, citric acid 7 parts, fisetin 3 parts, tealeaves alkaloid 5 parts, methyl-silicone oil 6 parts, calcium lignin sulphonate 1 part, lignocellulose 4 parts, rosined soap 3 parts, methyl violet 2 parts, tetraphenylpyrazine 5 parts, anti-hematic acid 0.4 part, jade powder 10 parts.
The heat radiation coating that the present embodiment is obtained, 5000 hours ageing-resistant time, heatproof high temperature 340 DEG C, thermal conductivity 380W/ (m DEG C), color is constant; Bonding strength is 45kN/m.
Embodiment 9
A kind of preparation method of strong adhesive power heat radiation coating
A), by each component put into mixer and carry out mixing treatment, mixing time is 50 minutes;
B), mixing after put into ball mill ball milling again, Ball-milling Time is 4 hours;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of subzero about 15 DEG C, under moving to normal temperature environment after 2-3 hour, packaging can obtain heat radiation coating.
This coating comprises following component by weight: meter Shi Mo 38 parts, aluminum nitride powder 8 parts, 2.5 parts, zirconium English powder, 5.5 parts, aluminum oxide, calcining potassium felspar sand 3 parts, Xylitol 4.5 parts, attapulgite 5 parts, silicon ash 6.5 parts, ground barium sulfate 6 parts, pure water 40 parts, six titanium whisker 4 parts, zirconium white 4.5 parts, properties-correcting agent 8.5 parts, nanometer anion powder 6 parts, chromite powder 7 parts, boric acid aqueous solution 4 parts, polyester polyol 5 parts, slaked lime powder 6 parts, lapis amiridis 10.5 parts;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 32 parts, polypropylene 5.5 parts, quartz sand 4.5 parts, citric acid 3.5 parts, fisetin 5.5 parts, tealeaves alkaloid 4.5 parts, methyl-silicone oil 3.8 parts, calcium lignin sulphonate 2.6 parts, lignocellulose 2.5 parts, rosined soap 2 parts, methyl violet 2.5 parts, tetraphenylpyrazine 3, jade powder 10 parts.
The heat radiation coating that the present embodiment is obtained, 5400 hours ageing-resistant time, heatproof high temperature 370 DEG C, thermal conductivity 380W/ (m DEG C), color is constant; Bonding strength is 50kN/m.
Below know-why of the present invention is described in conjunction with specific embodiments.These describe just in order to explain principle of the present invention, and can not be interpreted as limiting the scope of the invention by any way.Based on explanation herein, those skilled in the art does not need to pay performing creative labour can associate other embodiment of the present invention, and these modes all will fall within protection scope of the present invention.

Claims (7)

1. a strong adhesive power heat radiation coating, is characterized in that: it comprises the composition of following parts by weight: nano-graphite 35-50 part, aluminum nitride powder 5-12 part, zirconium English powder 1-3 part, aluminum oxide 4-7 part, calcining potassium felspar sand 1-4 part, Xylitol 3-6 part, attapulgite 3-6 part, silicon ash 4-7 part, ground barium sulfate 4-7 part, pure water 30-45 part, six titanium whisker 3-6 parts, zirconium white 3-6 part, properties-correcting agent 6-10 part, nanometer anion powder 3-8 part, chromite powder 3-8 part, boric acid aqueous solution 3-8 part, polyester polyol 3-8 part, slaked lime powder 3-8 part;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 25-40 part, polypropylene 3-7 part, quartz sand 3-7 part, citric acid 3-7 part, fisetin 3-7 part, tealeaves alkaloid 3-7 part, methyl-silicone oil 3-7 part, calcium lignin sulphonate 1-5 part, lignocellulose 1-5 part, rosined soap 1-5 part, methyl violet 1-5 part, tetraphenylpyrazine 1-5.
2. strong adhesive power heat radiation coating according to claim 1, is characterized in that: it also comprises lapis amiridis 8-15 part.
3. strong adhesive power heat radiation coating according to claim 2, is characterized in that: described properties-correcting agent also comprises jade powder 7-12 part.
4. strong adhesive power heat radiation coating according to claim 3, is characterized in that: it comprises the composition of following parts by weight: meter Shi Mo 38 parts, aluminum nitride powder 8 parts, 2.5 parts, zirconium English powder, 5.5 parts, aluminum oxide, calcining potassium felspar sand 3 parts, Xylitol 4.5 parts, attapulgite 5 parts, silicon ash 6.5 parts, ground barium sulfate 6 parts, pure water 40 parts, six titanium whisker 4 parts, zirconium white 4.5 parts, properties-correcting agent 8.5 parts, nanometer anion powder 6 parts, chromite powder 7 parts, boric acid aqueous solution 4 parts, polyester polyol 5 parts, slaked lime powder 6 parts, lapis amiridis 10.5 parts;
Described properties-correcting agent comprises following parts by weight: organosilicon crylic acid latex 32 parts, polypropylene 5.5 parts, quartz sand 4.5 parts, citric acid 3.5 parts, fisetin 5.5 parts, tealeaves alkaloid 4.5 parts, methyl-silicone oil 3.8 parts, calcium lignin sulphonate 2.6 parts, lignocellulose 2.5 parts, rosined soap 2 parts, methyl violet 2.5 parts, tetraphenylpyrazine 3, jade powder 10 parts.
5. a preparation method for the strong adhesive power heat radiation coating as described in claim 1-4, is characterized in that: it comprises the following steps:
A), each component is put into mixer and carry out mixing treatment;
B), ball mill ball milling is put into again after mixing;
C), by material after ball milling carry out low temperature modification process, at the uniform velocity stir under the environment of about subzero 12-18 DEG C, under moving to normal temperature environment after 2-3 hour, packaging can obtain heat radiation coating.
6. the preparation method of strong adhesive power heat radiation coating according to claim 5, is characterized in that: step a) in, mixing time is 40-60 minute.
7. the preparation method of strong adhesive power heat radiation coating according to claim 5, is characterized in that: step b) in, Ball-milling Time is 3-5 hour.
CN201510217443.0A 2015-04-30 2015-04-30 Heat dissipating paint with large adhesive force and preparation method Pending CN104861746A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510217443.0A CN104861746A (en) 2015-04-30 2015-04-30 Heat dissipating paint with large adhesive force and preparation method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510217443.0A CN104861746A (en) 2015-04-30 2015-04-30 Heat dissipating paint with large adhesive force and preparation method

Publications (1)

Publication Number Publication Date
CN104861746A true CN104861746A (en) 2015-08-26

Family

ID=53907953

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510217443.0A Pending CN104861746A (en) 2015-04-30 2015-04-30 Heat dissipating paint with large adhesive force and preparation method

Country Status (1)

Country Link
CN (1) CN104861746A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107747702A (en) * 2017-11-17 2018-03-02 赵永继 A kind of LED street lamp
CN107781780A (en) * 2017-11-17 2018-03-09 赵永继 A kind of automobile LED headlight

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107747702A (en) * 2017-11-17 2018-03-02 赵永继 A kind of LED street lamp
CN107781780A (en) * 2017-11-17 2018-03-09 赵永继 A kind of automobile LED headlight

Similar Documents

Publication Publication Date Title
CN104861748A (en) Heat dissipating paint strongly resistant to ageing and preparation method
CN108084823B (en) A kind of electric-heating coatings and its preparation method and application
CN104387904A (en) Heat-dissipation paint for iron casting surfaces
JP6704516B2 (en) Hydrophilic sedimentation-preventing far-infrared wave absorbing material and manufacturing method thereof, and kitchen electric appliance and manufacturing method thereof
CN102585638A (en) Preparation method for waterborne nano radiating and cooling environment-friendly coating, and coating
CN105086666A (en) Radiation cooling paint for LED radiator surfaces
CN104293095A (en) Special water-based radiant heat dissipation coating for capacitor shell
CN106833227A (en) A kind of aqueous compound insulating moulding coating and preparation method thereof
CN110054917A (en) A kind of inorganic heat preservation coating composition, inorganic heat preservation coating
CN104861746A (en) Heat dissipating paint with large adhesive force and preparation method
CN108707378A (en) A kind of novel antibacterial heat insulating coatings and preparation method thereof
CN102337062A (en) Water-based thermal insulation coating and preparation method thereof
CN105348875B (en) A kind of Alumina gel is modified the inorganic interior wall coating of sodium silicate
CN104293086A (en) Coating taking graphene microchip as main agent and applied on aluminum foil for radiating
CN106220182A (en) A kind of great power LED cooling ceramic substrate containing Nano diamond
CN109836985A (en) A kind of mould inner surface anticorrosive coating
CN108774436A (en) A kind of electrical cabinet shell specially radiates paint and preparation method thereof
CN107446528B (en) A kind of heat-conducting glue and preparation method thereof
CN106032319A (en) Improved ceramic material
CN103408330A (en) Method for modifying ceramic surface by using alumina sol
CN104817952A (en) High-temperature-resistant, reflection-resistant and aging-resistant heat-dissipating powder coating and preparation method thereof
CN110885606A (en) Water-based fluorocarbon metallic paint for high-reflection external wall and preparation method thereof
CN104293175A (en) Special radiating coating for metalized film capacitor shell and preparation method thereof
CN104293085A (en) Special oily radiant heat dissipation coating for thin-film capacitor shell
CN104861747A (en) High weather resistance heat dissipation coating and production method thereof

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
EXSB Decision made by sipo to initiate substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20150826

RJ01 Rejection of invention patent application after publication