Composition for action of resist-fire and fire-extinguishing

A fire-extinguishing composition and a technology for the composition, which are applied in the direction of fire-proof equipment and the like, can solve the problems of not being able to have both flame-retardant and fire-extinguishing functions, and achieve the effects of preventing re-ignition and highlighting the flame-retardant effect.

Inactive Publication Date: 2007-01-10
尹旭烈
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0011] Although various flame retardant compositions have been developed for fire extinguis

Method used

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  • Composition for action of resist-fire and fire-extinguishing
  • Composition for action of resist-fire and fire-extinguishing

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0052] 50 kg of sodium dihydrogen phosphate, 188 kg of diammonium hydrogen phosphate, 30 kg of borax, 40 kg of boric acid and 30 kg of polyoxyalkylated alkyl phosphate were mixed and stirred in sequence, and then 662 kg of water was added , Prepare 1000 kg of flame retardant and fire extinguishing liquid composition.

experiment Embodiment 1

[0057] Experimental Example 1 Testing Heat Resistance Properties-Wallpaper

[0058] Each liquid composition prepared in Example 1 and Comparative Example 1 was brushed on a wallpaper with a width of 20 cm and a length of 29 cm, and the brushed wallpaper was placed in a thermostat (pyrostat) for 3 hours, and then the heat resistance property was tested. The results are shown in Table 1.

[0059]

temperature

wallpaper

Example 1

Comparative example 1

150℃

no change in outer surface

turn yellow

250℃

no change in outer surface

turn yellow

350℃

turn yellow

turn lemon yellow

450℃

turn lemon yellow

carbonization

500℃

carbonization (deposition in a specific glassy phase)

[0060] In Table 1, the flame retardant and fire extinguishing composition prepared by Example 1 has outstanding heat resistance properties. On the other hand, the composition prepared in Compara...

experiment Embodiment 2

[0062] Experimental Example 2 Test Solubility and Stability

[0063] Five 500 ml sample bottles were placed in the thermostat, and each bottle was filled with the compositions prepared in Example 1 and Comparative Example 2, respectively. The solubility and stability of the composition in the thermostat were then measured at 10, 20, 30 and 40° C. after 48 hours, and the results are shown in Table 2.

[0064] temperature

Exterior

precipitation

color

Example 1

10℃

to clarify

none

same

20℃

to clarify

none

same

40℃

to clarify

none

same

Comparative example 2

10℃

cloudy

have

same

20℃

cloudy

have

Variety

40℃

to clarify

have

turn lemon yellow

[0065] In Table 2, the flame retardant and fire extinguishing composition prepared from Example 1 is clear and free of precipitation. On the other hand, the compositio...

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PUM

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Abstract

The present invention relates to a composition for fire-resisting and fire-extinguishing with pro-environmental characteristic. More particularly, the present invention relates to the composition comprising monobasic sodium phosphate, dibasic ammonium phosphate, borax, boric acid, olyoxyalkylated alkyl phosphoric acid ester and water.

Description

technical field [0001] The present invention relates to environmentally friendly flame retardant and fire extinguishing compositions. In particular, the present invention relates to compositions comprising monobasic sodium phosphate, diammonium phosphate, borax, boric acid, polyoxyalkylated alkyl phosphates, and water. Background technique [0002] Comparing electricity and fire consumption in everyday life, living spaces, large downtown areas, factories and licensed shops are densely distributed and built into closed units, leading to increased fire hazards. Therefore, most fires all cause fires such as subway fire accidents and forest fires. To prevent fires from occurring, it is important to suppress early misfires. [0003] However, fire extinguishing compositions used in recent years have poor flame retardancy and weaken when heated. As another reaction occurs, the flame retardant effect is exhausted and it is easy to re-ignite. Furthermore, said compositions contai...

Claims

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Application Information

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IPC IPC(8): A62D1/00A62D1/02
CPCA62D1/0014
Inventor 尹旭烈
Owner 尹旭烈
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