CN101161713A - Plastics having far infrared function - Google Patents
Plastics having far infrared function Download PDFInfo
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- CN101161713A CN101161713A CNA2007100466976A CN200710046697A CN101161713A CN 101161713 A CN101161713 A CN 101161713A CN A2007100466976 A CNA2007100466976 A CN A2007100466976A CN 200710046697 A CN200710046697 A CN 200710046697A CN 101161713 A CN101161713 A CN 101161713A
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- infrared functional
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Abstract
The present invention discloses a plastic with far-infrared function which is characterized in that the plastic comprises plastic and far-infrared powder. The existing far-infrared powders of commercial use are all available. The plastic with far-infrared function of the invention can transmit far-infrared ray which can be absorbed easily by human body. The invention increases the function of plastic and broadens the application area of plastic.
Description
Technical field
The present invention relates to a kind of plastics with far-infrared functional.
Background technology
The wavelength that general normal people needs most absorption is 4~14 μ m.The product of making after using far infrared rays and plastic material combining produces heat effect through infiltrating subcutis by red line far away.Thereby excite the body cell activity, effectively improve the blood of human body circulation, provide and organize oxygen supply, improve metabolism, strengthening immunity.General normal temperature just can be brought into play the effect of health care, rehabilitation and self-assisting therapy down.
In the daily life, use plastics in a large number, but existing plastics function singleness there is not additional function.
Summary of the invention
The objective of the invention is provides a kind of multifunctional plastic that can be emitting far-infrared in order to solve deficiency of the prior art.
For realizing above purpose, the present invention is achieved through the following technical solutions:
A kind of plastics with far-infrared functional is characterized in that, comprise plastics and far-infrared powder.The far-infrared powder of existing commercial sources all can use.
Wherein, form by following substances in percentage by weight: plastics 90%~98%; Far-infrared powder 1%~5%; Surplus is a toner.Described toner can be versicolor powder, and effect is to add color for plastics.
Wherein, described far-infrared powder is selected from and can produces the far-infrared powder that wavelength is 4~14 μ m rays.
Wherein, described plastics are selected from vinyon, acrylic plastering, igelite.
Wherein, form by following material by weight percentage: masterbatch 1%~5%; Plastics 90%~98%; Surplus is an additive;
Described masterbatch is made up of following material by weight percentage: plastics 90%~98%; Far-infrared powder 1%~5%; Surplus is a dispersion agent.
Wherein, described additive is selected from toner, lubricant, antioxidant, release agent.
Wherein, described dispersion agent is selected from silane coupling agent.
Wherein, described plastics are selected from vinyon, acrylic plastering, igelite.
The plastics with far-infrared functional among the present invention can be launched the far infrared rays that is easily absorbed by the body.Increase the function of plastics, widened the Application Areas of plastics.Especially be suitable for making shells such as warm-air drier, electric oven, fomenter.
Embodiment
Below in conjunction with specific embodiment component of the present invention is described further:
Embodiment 1:
Plastics with far-infrared functional are made up of following substances in percentage by weight: vinyon 90%; Far-infrared powder KY-Y-01 5%; Surplus is a toner.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 2:
Plastics with far-infrared functional are made up of following substances in percentage by weight: vinyon 97%; Far-infrared powder KY-Y-01 2%; Surplus is a toner.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 3:
Plastics with far-infrared functional are made up of following substances in percentage by weight: acrylic plastering 96%; Far-infrared powder KY-Y-01 3%; Surplus is a toner.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 4:
Plastics with far-infrared functional are made up of following substances in percentage by weight: acrylic plastering 93%; Far-infrared powder KY-Y-01 5%; Surplus is a toner.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 5:
Plastics with far-infrared functional are made up of following substances in percentage by weight: igelite 95%; Far-infrared powder KY-Y-01 3%; Surplus is a toner.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 6:
Plastics with far-infrared functional are made up of following substances in percentage by weight: vinyon 92%; Far-infrared powder KY-Y-01 3%; Surplus is a toner.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 7:
Plastics with far-infrared functional are made up of following material: masterbatch 1% by weight percentage; Vinyon 98%; Surplus is a toner;
Described masterbatch is made up of following material by weight percentage: vinyon 98%; Far-infrared powder KY-Y-01 1%; Surplus is a silane coupling agent.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 8:
Plastics with far-infrared functional are made up of following material: masterbatch 5% by weight percentage; Vinyon 94%; Surplus is a toner;
Described masterbatch is made up of following material by weight percentage: vinyon 95%; Far-infrared powder KY-Y-01 4%; Surplus is a silane coupling agent.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
Embodiment 9:
Plastics with far-infrared functional are made up of following material: masterbatch 2% by weight percentage; Acrylic plastering 96%; Surplus is a toner;
Described masterbatch is made up of following material by weight percentage: acrylic plastering 96%; Far-infrared powder KY-Y-01 3%; Surplus is a silane coupling agent.
Above-mentioned raw materials is mixed, can make plastics with far-infrared functional.
Embodiment 10:
Plastics with far-infrared functional are made up of following material: masterbatch 3% by weight percentage; Acrylic plastering 95%; Surplus is a toner;
Described masterbatch is made up of following material by weight percentage: acrylic plastering 91%; Far-infrared powder KY-Y-01 5%; Surplus is a silane coupling agent.
Above-mentioned raw materials is mixed, promptly can be used for preparing the raw material of plastics, use the conventional method for preparing plastics, the plastics that can make with far-infrared functional with far-infrared functional.
The plastics with far-infrared functional among the present invention can also add other additives as required, as antioxidant, and lubricant, release agent etc.
The far-infrared powder KY-Y-01 composition that uses among the present invention is as shown in the table:
Project/kind | KY-Y-01 |
Outward appearance | White |
Composition | Al 2O 3、MgO、ZnO、ZrO 2、SiO 2Deng |
Median size (nm) | 0.2-0.5 |
D90< | 1.0nm |
Water content<% | 1 |
Far infrared transmissivity 〉=% | 85 |
PH value | 8-9 |
Surface density (g/cm 3) | ≤0.4 |
Drying loss (%) | ≤1.0 |
Ignition loss | ≤2.0 |
The foregoing description detects through Shanghai Inst. of Technical Physics, Chinese Academy of Sciences, its normal direction emissivity quite stable, and just in time in the human body range of receiving.
The foregoing description only is used for that the present invention will be described, does not constitute the restriction to the claim scope, and other alternative means that it may occur to persons skilled in the art that are all in claim scope of the present invention.
Claims (8)
1. the plastics with far-infrared functional is characterized in that, comprise plastics and far-infrared powder.
2. the plastics with far-infrared functional according to claim 1 is characterized in that, are made up of following substances in percentage by weight: plastics 90%~98%; Far-infrared powder 1%~5%; Surplus is a toner.
3. according to the plastics with far-infrared functional according to claim 2, it is characterized in that described far-infrared powder is selected from and can produces the far-infrared powder that wavelength is 4~14 μ m rays.
4. according to claim 2 or 3 described plastics, it is characterized in that described plastics are selected from vinyon, acrylic plastering, igelite with far-infrared functional.
5. the plastics with far-infrared functional according to claim 1 is characterized in that, are made up of following material by weight percentage: masterbatch 1%~5%; Plastics 90%~98%; Surplus is an additive;
Wherein, described masterbatch is made up of following material by weight percentage: plastics 90%~98%; Far-infrared powder 1%~5%; Surplus is a dispersion agent.
6. the plastics with far-infrared functional according to claim 5 is characterized in that, described additive is a toner.
7. the plastics with far-infrared functional according to claim 5 is characterized in that described dispersion agent is selected from silane coupling agent.
8. the plastics with far-infrared functional according to claim 5 is characterized in that described plastics are selected from vinyon, acrylic plastering, igelite.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNA2007100466976A CN101161713A (en) | 2007-09-29 | 2007-09-29 | Plastics having far infrared function |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNA2007100466976A CN101161713A (en) | 2007-09-29 | 2007-09-29 | Plastics having far infrared function |
Publications (1)
Publication Number | Publication Date |
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CN101161713A true CN101161713A (en) | 2008-04-16 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CNA2007100466976A Pending CN101161713A (en) | 2007-09-29 | 2007-09-29 | Plastics having far infrared function |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103382273A (en) * | 2012-05-03 | 2013-11-06 | 辽宁辽杰科技有限公司 | Far-infrared antibacterial thermoplastic composite sheet material and its preparation method and use |
CN103694565A (en) * | 2013-12-30 | 2014-04-02 | 浙江七色鹿色母粒有限公司 | Polypropylene master batch with automatic themogenesis heat preservation function and preparation method for polypropylene master batch |
CN109988436A (en) * | 2019-04-09 | 2019-07-09 | 深圳市圆方科技新材料有限公司 | A kind of plastics and its manufacturing method with infrared energy reflection |
-
2007
- 2007-09-29 CN CNA2007100466976A patent/CN101161713A/en active Pending
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103382273A (en) * | 2012-05-03 | 2013-11-06 | 辽宁辽杰科技有限公司 | Far-infrared antibacterial thermoplastic composite sheet material and its preparation method and use |
CN103694565A (en) * | 2013-12-30 | 2014-04-02 | 浙江七色鹿色母粒有限公司 | Polypropylene master batch with automatic themogenesis heat preservation function and preparation method for polypropylene master batch |
CN109988436A (en) * | 2019-04-09 | 2019-07-09 | 深圳市圆方科技新材料有限公司 | A kind of plastics and its manufacturing method with infrared energy reflection |
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Open date: 20080416 |