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Far infrared nanomaterial with energy-saving function for coating

A far-infrared material and nanotechnology, applied in the field of nano-far-infrared materials for coatings, can solve the problems of complex use, weak effect, unstable quality of far-infrared materials, etc., and achieve the effect of convenient use

Inactive Publication Date: 2014-10-08
关锦池
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, the current far-infrared materials have problems such as unstable quality, complicated use, and weak effect. It is urgent to develop a nano-scale far-infrared material with energy-saving functions.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] A kind of nanometer far-infrared material for coating with energy-saving function, this nanometer far-infrared material comprises by weight:

[0021] α-Al2O3 15,

[0022] Silica 25,

[0023] Zirconium silicate 40,

[0024] Magnesium Oxide 20,

[0025] Tourmaline Crystal Mineral Powder 2,

[0026] heavy calcium 3,

[0027] Forsterite 25.

Embodiment 2

[0029] A kind of nanometer far-infrared material for coating with energy-saving function, this nanometer far-infrared material comprises by weight:

[0030] α-Al2O3 15,

[0031] Silica 25,

[0032] Zirconium silicate 40,

[0033] Magnesium Oxide 20,

[0034] Tourmaline Crystal Mineral Powder 2,

[0035] light calcium 3,

[0036] Quartz Stone 25,

[0037] Wherein the nanometer far-infrared material is a multi-element mixed ultrafine powder with an average particle size of 0.5 micron.

Embodiment 3

[0039] A kind of nanometer far-infrared material for coating with energy-saving function, this nanometer far-infrared material comprises by weight:

[0040] α-Al2O3 20,

[0041] Silica 30,

[0042] Zirconium silicate 50,

[0043] Magnesium oxide 25,

[0044] Tourmaline Crystal Mineral Powder 5,

[0045] Aluminum silicate 6,

[0046] wollastonite 25,

[0047] Wherein, the nanometer far-infrared material is a multi-element mixed ultrafine powder with an average particle size of ≤0.5 micron.

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PUM

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Abstract

The invention relates to a far infrared nanomaterial with an energy-saving function for a coating. The far infrared nanomaterial comprises the following components in parts by weight: 15-25 parts of alpha-aluminum oxide, 25-40 parts of silicon dioxide, 40-60 parts of zirconium silicate, 20-30 parts of magnesium oxide, 2-9 parts of tourmaline mineral micropowder, 3-9 parts of inorganic filler, and 25-30 parts of flame retardant. The far infrared nanomaterial can be used for the kitchen coating and can be used for saving the usage amount of gas and natural gas, and has the advantages of being convenient to use, permanent to use, and the like.

Description

technical field [0001] The invention relates to a nanometer far-infrared material for coatings with an energy-saving function, belonging to the field of nanometer materials. Background technique [0002] In our country, the per capita energy resource occupation level is very low. On the other hand, the energy utilization level in our country is relatively backward compared with developed countries, which means a lot of waste of precious energy and brings serious pollution to the environment. How to make full, reasonable and economical use of energy is our concern. [0003] Far-infrared ray is a kind of electromagnetic wave. Its wavelength is longer than that of visible light in the entire spectrum. It is an electromagnetic wave with thermal radiation. In recent years, far-infrared rays have been used as heat sources for industrial heating. The scope of application is expanding day by day. And mass-produced far-line and outside-line products have become the favorite for ener...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D7/12C09D5/00
Inventor 关锦池
Owner 关锦池
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