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Electromagnetic wave-proof disinsection and sterilizing imitation ceramic nanometer interior wall coating capable of releasing trace element negative ions

An anti-electromagnetic wave and trace element technology, applied in anti-fouling/underwater coatings, radiation-absorbing coatings, coatings, etc., can solve the problems of lagging performance improvement speed of coatings, etc.

Inactive Publication Date: 2012-03-28
丁一
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

While paint workers persevere to meet the challenges, the rate of improvement in coating performance lags far behind the needs of social development

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0013] Embodiment 1: 1. chloracetate propamyrite nano-emulsion formula weight ratio%

[0014] ① Vinyl chloride 13.6%;

[0015] ② Vinyl acetate 13.6%;

[0016] ③Butyl Acrylate 7.8%;

[0017] ④ medical stone nano powder 1.9%;

[0018] ⑤Tourmaline nanopowder 1.9%;

[0019] ⑥ sodium cetyl sulfate 1.6%;

[0020] ⑦Alkylphenol polyoxyethylene (10) ether 0.2%;

[0021]⑧Sodium polymethacrylate 0.2%;

[0022] ⑨ Ammonium persulfate 0.2%;

[0023] ⑩sodium bicarbonate 0.1%;

[0024] Fe 2 o 3 1.8%;

[0025] Al 2 o 3 0.8%;

[0026] Water 56.3%.

Embodiment 2

[0027] Embodiment 2: the formula weight proportion % of chloracid-promellite copolymer nanoemulsion paint

[0028] 1. Promellite nanoemulsion, i.e. Example 1 56.7%;

[0029] ② Polyvinyl alcohol 11.3%;

[0030] ③Titanium dioxide nanopowder TiO 2 8.5%;

[0031] ④Silicon dioxide nano powder SiO 2 8.5%;

[0032] ⑤ mica nano powder 4.5%;

[0033] ⑥ medical stone nano powder 1.5%;

[0034] ⑦Tourmaline nanopowder 1.3%;

[0035] ⑧Talc powder 1.7%;

[0036] ⑨Sodium hexametaphosphate 0.2%;

[0037] ⑩ Tributyl phosphate 0.06%;

[0038] Trisodium Phosphate 0.04%;

[0039] Water 5.7%.

[0040] Preparation:

[0041] (1) Preparation of Promellite Nanoemulsion:

[0042] The emulsion preparation must be carried out in a stainless steel or enamel reaction kettle. Since vinyl chloride is a gas, the reaction kettle should be sealed before adding the monomer, and the pressure test should be performed by entering nitrogen to check the tigh...

Embodiment 3

[0046] Embodiment 3: Insecticidal and sterilizing nano-silver imitation porcelain coating weight proportion%

[0047] ① Polyvinyl alcohol 2.0%;

[0048] ②Polyacrylamide 0.2%;

[0049] ③ Gadolinium sulfate 10%;

[0050] ④Calcium hydroxide 0.3%;

[0051] ⑤Titanium dioxide TiO 2 1.0%;

[0052] ⑥Silicon dioxide SiO 2 1.5%;

[0053] ⑦Talc powder 35%;

[0054] ⑧Nano Ag 0.2%;

[0055] ⑨Triclosin 15%;

[0056] ⑩Water 34.8%.

[0057] Preparation:

[0058] (1) Add water and polyvinyl alcohol into the reaction kettle, heat to 90°C, stir for 30 minutes, then add polyacrylamide and stir evenly before use;

[0059] (2) Gadolinium sulfate, calcium hydroxide, titanium dioxide TiO 2 , SiO2 2 , Nano-Ag is stirred evenly with a small amount of water before use;

[0060] (3) Put the solution prepared in step (1) into the blender, then pour the solution prepared in step (2) into the above blender, and after stirring for 30 minutes, add...

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PUM

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Abstract

The invention discloses an electromagnetic wave-proof disinsection and sterilizing imitation ceramic nanometer interior wall coating capable of releasing trace element negative ions, which belongs to the technical field of the preparation and the production of the modified coating of construction decoration nanometer material. The coating is an engineering material matched with the national economy industrial sector. Along with the development of the high-technology industry, economic takeoff and improvement in the living standard, people have higher requirements on room conditions, working space and air quality, and therefore the requirement on the multifunction of the interior wall coating used for constructions for accelerating human health is higher. In the electromagnetic wave-proof disinsection and sterilizing imitation ceramic nanometer interior wall coating, the porosity of a medical stone is utilized, various tract elements can be dissolved out and released, and especially the content of magnetic ferrous oxide Fe2O3 is high; the electromagnetic wave-proof disinsection and sterilizing imitation ceramic nanometer interior wall coating has a high magnet adsorption property and contains elements, such as TiO2, SiO2 and the like which have magic water-purification and sterilization action; and nano silver, acetofenate, natural negative ion generators and copolymers, such as nanometer tourmalines and the like are added to mix to prepare the nanometer interior wall coating. The electromagnetic wave-proof disinsection and sterilizing imitation ceramic nanometer interior wall coating not only can continuously release trace element negative ions beneficial for the human health and adsorb electromagnetic pollution but also can kill insects, sterilize and purify air.

Description

Technical field: [0001] The invention discloses an anti-electromagnetic wave anti-electromagnetic wave anion-releasing nanometer interior wall paint imitating porcelain, which belongs to the technical field of preparation and production of nano-material modified paint for building decoration. Background technique: [0002] Coatings are engineering materials that are matched with the national economic and industrial sectors. The development of the universe and the ocean, aerospace, new energy and renewable resources, living and working, learning space, shipbuilding industry, information and new materials, etc. The development of high-tech industries, the economic take-off, and the continuous improvement of people's living standards have made great impact on Coatings put forward higher performance requirements. Despite the persistent efforts of paint workers to meet the challenges, the rate of improvement of paint performance lags far behind the needs of social development. ...

Claims

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Application Information

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IPC IPC(8): C09D5/32C09D5/14C09D127/06C09D131/04C09D133/08C09D7/12
Inventor 成进学丁一
Owner 丁一
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