Flame-retardant rigid polyurethane foam material, and preparation method and application thereof

A technology for rigid polyurethane and foam materials, applied in the field of chemical resistance material preparation, can solve the problems of no cost advantage, expensive organic flame retardants, unfavorable environmental protection and personnel evacuation and escape, etc., and achieves low production cost and high efficiency. Flame retardant performance, simple production process effect

Active Publication Date: 2019-12-03
FUZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Patent CN 109111558 A discloses a low-smoke, low-toxicity flame-retardant rigid polyurethane foam material, which consists of 100 parts of polyol, 140-260 parts of isocyanate, 0-35 parts of phosphate ester, 0-50 parts of flame-retardant polyol, inorganic 10-45 parts of fuel compound, 2-5 parts of blowing agent, 0.5-2 parts of catalyst, 0.5-5 parts of foam stabilizer; and the amount of phosphate ester and flame-retardant polyol is not equal to 0 ; Phosphate plays the role of gas phase flame retardant; flame retardant polyol is a reactive flame retardant, which can reduce the addition of phosphate ester and inorganic flame retardant while playing the role of flame retardant. The inorganic flame retardant compound mainly It plays the role of condensed phase flame retardancy and smoke suppression and detoxification, but due to the use of a large amount of chlorine-containing flame retardants, a large amount of hydrogen chloride is produced during the combustion process, which is not conducive to environmental protection and personnel evacuation and escape
In addition, since this organic flame retardant is expensive, it does not have a cost advantage

Method used

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  • Flame-retardant rigid polyurethane foam material, and preparation method and application thereof
  • Flame-retardant rigid polyurethane foam material, and preparation method and application thereof
  • Flame-retardant rigid polyurethane foam material, and preparation method and application thereof

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0038] A high-efficiency flame-retardant rigid polyurethane foam material is synthesized according to the following steps:

[0039] a. Weigh 77.47 parts of polyether polyol LY4110, 22.53 parts of ethylene glycol 2-carboxyethylphenylphosphinate, 1 part of amine catalyst triethylenediamine, 0.5 part of organotin catalyst dibutyltin, water 2 parts, 2 parts of foam stabilizer dimethyl silicone oil, 3 parts of triethanolamine, 149.1 parts of isocyanate PM-200, 13.5 parts of expandable graphite, 13.5 parts of melamine phosphate, and 7.5 parts of fly ash are raw materials;

[0040] b. Polyether polyol LY4110, ethylene glycol 2-carboxyethylphenylphosphinate, amine catalyst triethylenediamine, organotin catalyst dibutyltin, water, foam stabilizer simethicone, Triethanolamine is mixed in cup A and stirred evenly to obtain mixture A;

[0041] c. Mix isocyanate PM-200, expandable graphite, melamine phosphate, and fly ash in cup B to obtain mixture B;

[0042]d. Add the mixture B obtaine...

Embodiment 2

[0044] A high-efficiency flame-retardant rigid polyurethane foam material is synthesized according to the following steps:

[0045] a. Weigh 77.47 parts of polyether polyol LY4110, 22.53 parts of ethylene glycol 2-carboxyethylphenylphosphinate, 1 part of amine catalyst triethylenediamine, 0.5 part of organotin catalyst dibutyltin, water 2 parts, foam stabilizer simethicone oil 2 parts, triethanolamine 3 parts, isocyanate PM-200149.1 parts, expandable graphite 20.25 parts, melamine phosphate 6.75 parts, fly ash 7.5 parts as the raw material group;

[0046] b. Polyether polyol LY4110, ethylene glycol 2-carboxyethylphenylphosphinate, amine catalyst triethylenediamine, organotin catalyst dibutyltin, water, foam stabilizer simethicone, Triethanolamine is mixed in cup A and stirred evenly to obtain mixture A;

[0047] c. Mix isocyanate PM-200, expandable graphite, melamine phosphate, and fly ash in cup B to obtain mixture B;

[0048] d. Add the mixture B obtained in step c to the ...

Embodiment 3

[0050] A high-efficiency flame-retardant flame-retardant rigid polyurethane foam material is synthesized according to the following steps:

[0051] a. Weigh 77.47 parts of polyether polyol LY4110, 22.53 parts of ethylene glycol 2-carboxyethylphenylphosphinate, 1 part of amine catalyst triethylenediamine, 0.5 part of organotin catalyst dibutyltin, water 2 parts, 2 parts of foam stabilizer dimethyl silicone oil, 3 parts of triethanolamine, 149.1 parts of isocyanate PM-200, 6.75 parts of expandable graphite, 20.25 parts of melamine phosphate, and 7.5 parts of fly ash are the raw material group;

[0052] b. Polyether polyol LY4110, ethylene glycol 2-carboxyethylphenylphosphinate, amine catalyst triethylenediamine, organotin catalyst dibutyltin, water, foam stabilizer simethicone, Triethanolamine is mixed in cup A and stirred evenly to obtain mixture A;

[0053] c. Mix isocyanate PM-200, expandable graphite, melamine phosphate, and fly ash in cup B to obtain mixture B;

[0054] d...

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Abstract

The invention belongs to the field of preparation of inhibition materials, and particularly relates to a flame-retardant rigid polyurethane foam material, and a preparation method and application thereof. The material comprises a mixture A and a mixture B, wherein the mixture A comprises the following components in parts by weight: 77.47-100 parts of a polyol, 0-22.53 parts of a glycol phosphinate, 1 part of an amine catalyst, 0.5 part of an organic tin catalyst, 2 parts of water, 2 parts of a foam stabilizer and 3 parts of triethanolamine; the mixture B is prepared from the following components in parts by weight: 149 to 152 parts of an isocyanate, 0 to 20.25 parts of expandable graphite, 0 to 20.25 parts of a phosphate and 0 to 7.5 parts of coal ash. The flame-retardant rigid polyurethane foam material possesses integrated condensed phase flame resistance, gas phase flame resistance and expanded graphite physical flame resistance, and the coal ash with synergistic flame resistance effect and excellent bonding performance is added, so that the rigid polyurethane foam material has excellent flame resistance, can not only be taken as a inhibition material for preventing and treatingspontaneous combustion of coal, and can also be taken as a sealing material and a thermal insulation material.

Description

technical field [0001] The invention belongs to the field of preparation of chemical retardation materials, and in particular relates to a flame-retardant rigid polyurethane foam material and its preparation method and application. Background technique [0002] my country is a big energy consuming country, and the production and consumption of coal are among the top in the world. However, in the process of coal seam mining, a large amount of coal has the problem of spontaneous combustion. In addition, coal may spontaneously ignite during storage and transportation, which may cause fire accidents, causing serious casualties and huge economic losses. During the combustion of coal, gases such as carbon monoxide and sulfur dioxide will also be produced, which will cause certain pollution to the environment. In short, the spontaneous combustion of coal limits the safe mining, transportation and storage of coal. Therefore, it is imperative to prevent coal spontaneous combustion...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08G18/48C08K5/5313C08K7/24C08K5/3492C08K7/26C08G101/00
CPCC08G18/48C08K5/5313C08K7/24C08K5/34928C08K7/26C08G2110/0083C08G2110/0025
Inventor 施永乾蔡孙橙刘川饶小惠
Owner FUZHOU UNIV
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