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Additive for energy health care foaming material and preparation method of additive

A technology of foaming materials and energy health preservation, applied in the field of foaming materials, can solve the problems of no improvement or improvement in the performance of foaming materials, can not be released, and is not conducive to human health, so as to improve microcirculation, improve elasticity, and improve human body lack of magnetism The effect of symptoms

Inactive Publication Date: 2016-01-20
太原伦嘉生物科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] The purpose of the present invention is to solve the problem that the current foaming materials cannot release health care functional factors that are beneficial to the human body or the environment, or the production process and the product itself release chemical components that are harmful to the human body, or have some functions but the performance of the foaming material has not been improved or improved , is not conducive to human health, cannot well meet people's use needs and other problems, and provides an additive for energy health-care foaming materials and a preparation method thereof

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] In this embodiment, an additive for energy-healthy foaming material is made of the following raw materials in weight percentage:

[0033] Take 10% of graphite fiber with carbon content≧99%, 10% of 0.1 micron titanium dioxide, 20% of 1 micron lithium tourmaline, 35% of 5 micron NdFeB material, pore diameter of 6nm, specific surface area≧1500m 2 / g mesoporous carbon 25%.

[0034] In this embodiment, a specific preparation method of additives for energy-healthy foaming materials is prepared by the above-mentioned raw materials in the weight percentage according to the following steps:

[0035] a) Put 35% of 5-micron NdFeB material into the stock solution for passivation treatment for 15 minutes, then add 0.1-micron titanium dioxide 10%, stir thoroughly, rinse with distilled water and carry out post-treatment to obtain functional rare earth Permanent magnet material spare;

[0036] b), the pore diameter is 6nm, and the specific surface area is ≧1500m 2 After putting 25% ...

Embodiment 2

[0040] In this embodiment, an additive for energy-healthy foaming material is made of the following raw materials in weight percentage:

[0041]Take 30% of graphite fiber with carbon content≧99%, 5% of 0.5 micron titanium dioxide, 45% of 10 micron lithium tourmaline, 10% of 50 micron NdFeB material, pore diameter of 13nm, specific surface area≧1500m 2 / g mesoporous carbon 10%.

[0042] In this embodiment, a specific preparation method of additives for energy-healthy foaming materials is prepared by the above-mentioned raw materials in the weight percentage according to the following steps:

[0043] a) Put 10% of 50-micron NdFeB material into the stock solution for passivation treatment for 20 minutes, then add 0.5-micron titanium dioxide 5%, after fully stirring, rinse with distilled water and perform post-treatment to obtain functional rare earth Permanent magnet material spare;

[0044] b), the pore diameter is 13nm, and the specific surface area is ≧1500m 2 After putting...

Embodiment 3

[0048] In this embodiment, an additive for energy-healthy foaming material is made of the following raw materials in weight percentage:

[0049] Take 18% of graphite fiber with carbon content≧99%, 7% of 0.3 micron titanium dioxide, 30% of 6 micron lithium tourmaline, 15% of 30 micron NdFeB material, pore diameter of 8nm, specific surface area≧1500m 2 / g mesoporous carbon 30%.

[0050] In this embodiment, a specific preparation method of additives for energy-healthy foaming materials is prepared by the above-mentioned raw materials in the weight percentage according to the following steps:

[0051] a) Put 15% of 30-micron NdFeB material into the stock solution for passivation treatment for 18 minutes, then add 0.3-micron titanium dioxide 7%, after fully stirring, rinse with distilled water and perform post-treatment to obtain functional rare earth Permanent magnet material spare;

[0052] b), the pore diameter is 8nm, and the specific surface area is ≧1500m 2 After putting 3...

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Abstract

The invention provides an additive for an energy health care foaming material and a preparation method of the additive and belongs to the technical field of foaming materials. According to the method, graphite fibers, contact agent materials, tourmaline materials, rare earth permanent magnetic materials and ordered mesoporous carbon serve as raw materials; the rare earth permanent magnetic materials are passivated, the contact agent materials are added and stirred, the mixture is washed with distilled water and processed, and the functional rare earth permanent magnetic materials are obtained; after surface modification is conducted on the ordered mesoporous carbon, the tourmaline materials are added and fully stirred, and the mixture is washed with distilled water and baked; cooling is conducted, and functional tourmaline powder materials are obtained; the obtained functional rare earth permanent magnetic materials and the functional tourmaline powder materials are crushed and mixed together, and functional composite powder is obtained; after the obtained functional composite powder is ground, the graphite fibers are added for being mixed together, after baking and drying are conducted, subpackage is conducted after natural cooling, and the additive for the energy health care foaming material is obtained. The additive for the energy health care foaming material has the advantages that multiple types of ecological energy factors are released, the work environment is improved, the health care function is achieved, meanwhile the physical and chemical properties of the foaming material are improve, the service life is long, and the cost is low.

Description

technical field [0001] The invention belongs to the technical field of foam materials, and in particular relates to an additive for energy health-care foam materials and a preparation method thereof. Background technique [0002] Commonly used foaming materials include polyurethane, polyethylene, polypropylene, latex, etc., which are substances that can gasify inside the substance to generate bubbles to make it foamed into a porous substance. Compared with dense materials, foaming materials have low density, Light weight, large specific area, sound absorption and noise reduction, damping seal, shock absorption buffer, heat insulation, sound insulation, moisture-proof, anti-static, corrosion resistance and other properties, so it is widely used in HVAC purification, automobile vehicles, electronics industry, Communication equipment, hardware tools, medical equipment, instrumentation, packaging, furniture, children's intellectual toys, sporting goods, household goods, travel g...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08K13/06C08K9/00C08K3/38C08K3/22C08K7/24C08K7/06
Inventor 张朝伦沈连明赵瑞
Owner 太原伦嘉生物科技股份有限公司
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