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Flame retardant type high polymer emulsion and preparation method thereof

A polymer emulsion, flame retardant technology, applied in the direction of polymer adhesive additives, non-polymer adhesive additives, adhesive types, etc. The physical properties of polymer emulsions and other issues, to achieve good physical properties, moderate price, good flame retardant effect

Inactive Publication Date: 2015-01-21
SHANGHAI INST OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although these methods can play a certain role in flame retardancy, they are used in a large amount (usually 20-50% of the emulsion), which seriously reduces the physical properties of the polymer emulsion and affects the use function of the polymer emulsion.
If the dosage is reduced, the flame retardant effect will not be achieved

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A flame-retardant polymer emulsion, calculated by weight percentage, its raw material composition and content are as follows:

[0029] Polymer emulsion 75%

[0030] Flame Retardant Polymer 10%

[0031] Ammonium polyphosphate 15%;

[0032] Described polymer emulsion is pure acrylic emulsion;

[0033] The flame retardant polymer is vinyl chloride-2-ethylhexyl acrylate;

[0034] The molecular weight of the ammonium polyphosphate is 1000.

[0035] The preparation method of above-mentioned a kind of flame retardant polymer emulsion, the steps are as follows:

[0036] Mix and stir the polymer emulsion, the flame retardant polymer and ammonium polyphosphate evenly to obtain the flame retardant polymer emulsion.

[0037] Tested according to the UL94 standard, the flame retardant effect of the flame retardant polymer emulsion obtained above reaches the flame retardant V-0 level.

Embodiment 2

[0049] A flame-retardant polymer emulsion, calculated by weight percentage, its raw material composition and content are as follows:

[0050] Polymer emulsion 90%

[0051] Flame Retardant Polymer 3%

[0052] Ammonium polyphosphate 7%;

[0053] Described polymer emulsion is styrene-acrylic emulsion;

[0054] The flame retardant polymer is N-(2,4,6-tribromophenyl) maleimide;

[0055] The molecular weight of the ammonium polyphosphate is 2000.

[0056] The preparation method of above-mentioned a kind of flame retardant polymer emulsion, the steps are as follows:

[0057] Mix and stir the polymer emulsion, the flame retardant polymer and ammonium polyphosphate evenly to obtain the flame retardant polymer emulsion.

[0058] Tested according to the UL94 standard, the flame retardant effect of the flame retardant polymer emulsion obtained above reaches the flame retardant V-1 level.

Embodiment 3

[0070] A flame-retardant polymer emulsion, calculated by weight percentage, its raw material composition and content are as follows:

[0071] Polymer emulsion 85%

[0072] Flame Retardant Polymer 4%

[0073]Ammonium polyphosphate 11%;

[0074] Described polymer emulsion is silicone acrylic emulsion;

[0075] Described flame-retardant polymer is tetrachlorophthalic anhydride;

[0076] The molecular weight of the ammonium polyphosphate is 1600.

[0077] The preparation method of above-mentioned a kind of flame retardant polymer emulsion, the steps are as follows:

[0078] Mix and stir the polymer emulsion, the flame retardant polymer and ammonium polyphosphate evenly to obtain the flame retardant polymer emulsion.

[0079] Tested according to the UL94 standard, the flame retardant effect of the flame retardant polymer emulsion obtained above reaches the flame retardant V-1 level.

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PUM

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Abstract

The invention discloses flame retardant type high polymer emulsion and a preparation method thereof. The flame retardant type high polymer emulsion consists of the following components in percentage by weight: 75-90% of high polymer emulsion, 3-10% of a flame retardant polymer and 7-15% of ammonium polyphosphate, wherein the high polymer emulsion is pure acrylic emulsion, styrene-acrylic emulsion, silicone acrylic emulsion or acetic styrene-acrylic emulsion; the flame retardant polymer is vinyl chloride-2-ethyl hexyl acrylate, N-(2,4,6-tribromophenyl) maleimide, tetrachlorophthalic anhydride, propylene alkyl (aryl) phosphorothioate or pentachlorobenzene acrylate. The preparation method of the flame retardant type high polymer emulsion comprises the following steps: mixing and uniformly stirring the high polymer emulsion, the flame retardant polymer and ammonium polyphosphate to obtain the flame retardant type high polymer emulsion. Due to the synergistic effects of the flame retardant polymer and ammonium polyphosphate, the flame retardant type high polymer emulsion disclosed by the invention has good flame retardant effect, so that the V-0 flame retardant level or the V-1 flame retardant level can be achieved by only finally using 10-25% of the flame retardant.

Description

technical field [0001] The invention relates to a flame-retardant polymer emulsion and a preparation method thereof. Background technique [0002] Polymer emulsions, such as pure acrylic emulsion, styrene-acrylic emulsion, silicon-acrylic emulsion, vinegar-acrylic emulsion, etc., are widely prepared into coatings and adhesives, which are widely used in construction, packaging, textile, automobile and other industries. However, polymer latex is easy to burn after drying into a film, which does not meet the current requirements for fire protection, safety and environmental protection. [0003] At present, there is a large demand for flame-retardant polymer emulsions in the market, but the flame-retardant technology is not perfect enough. Now the flame retardant of polymer emulsion mainly adopts the method of adding flame retardants, typical ones are: 1. Adding organic flame retardants, such as chlorinated paraffin, hexachlorocyclopentadiene, decabromodiphenyl ether, tetrabrom...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D133/04C09D125/14C09D131/04C09D5/18C09J133/04C09J125/14C09J131/04C09J11/08C09J11/04
CPCC08K3/32C08K5/101C08K5/1539C08K5/3415C08K5/5398C08K2003/323C08L25/14C08L31/04C08L33/04C08L2201/02C08L2201/52
Inventor 黄剑清潘安健
Owner SHANGHAI INST OF TECH
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