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Composition, and flame-retardant resin composition

A composition and resin technology, applied in the direction of fireproof coatings, etc., can solve the problems of compromised safety, high volatility, and low heat-resistant temperature of pentaerythritol dimer

Active Publication Date: 2020-04-17
ADEKA CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in the composition described in this document, since the heat-resistant temperature of pentaerythritol dimer used as a carbonizing agent is low, there is a problem that the volatility during combustion becomes high, and the safety during combustion is impaired.
In addition, the content of aluminum hydroxide, which is an inorganic substance, is large, and there is a problem in formability during processing.

Method used

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  • Composition, and flame-retardant resin composition
  • Composition, and flame-retardant resin composition

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1~6 and comparative example 1~6

[0111] 0.1 part by mass of calcium stearate, 0.3 part by mass of glycerol monostearate, tetrakis[3-(3,5-di-tert-butyl-4-hydroxyl 0.1 parts by mass of phenyl) methyl propionate] methane, 0.1 parts by mass of 2,2'-methylenebis(4,6-di-tert-butylphenyl)-2-ethylhexyl phosphite, using Henscher The mixture was pre-mixed with a Er mixer to obtain a thermoplastic polyurethane resin composition. The compositions shown in Table 1 or 2 were blended in parts by mass described in the table with respect to the obtained thermoplastic polyurethane resin composition, and mixed with a Henschel mixer to obtain a resin composition.

Embodiment 7~12 and comparative example 7~12

[0113] 0.1 parts by mass of calcium stearate (higher fatty acid metal salt), tetrakis[3- (3,5-di-tert-butyl-4-hydroxyphenyl) methyl propionate] methane (phenolic antioxidant) 0.1 parts by mass, tris (2,4-di-tert-butylphenyl) phosphite (phosphorus 0.1 parts by mass of an antioxidant) were premixed with a Henschel mixer to obtain a polypropylene resin composition. The compositions shown in Table 1 or Table 2 were blended in parts by mass described in the table with respect to the obtained polypropylene resin composition, and mixed with a Henschel mixer to obtain a resin composition.

[0114] Each resin composition obtained above was prepared into pellets by the following method, and a test piece for flame retardancy evaluation was prepared from the pellets, and the evaluation piece was used for the following flame retardancy evaluation and moldability evaluation. The results are shown in Tables 1 and 2 below.

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Abstract

A composition according to the present invention contains component (A), component (B), and component (C) below, wherein component (A)is at least one melamine salt selected from the group consisting of melamine orthophosphate, melamine pyrophosphate, and melamine polyphosphate; component (B)is at least one piperazine salt selected from the group consisting of piperazine orthophosphate, piperazinepyrophosphate, and piperazine polyphosphate; and component (C)is a monohydrate of alumina. According to the present invention, a composition is provided, which, when mixed with a resin, can impart excellent processability and moldability and flame retardancy to the resin.

Description

technical field [0001] The present invention relates to a composition comprising a phosphate of piperazine and a phosphate of melamine, and a flame-retardant resin composition containing the composition. Background technique [0002] Conventionally, synthetic resins have been widely used in construction materials, automobile parts, packaging materials, agricultural materials, casing materials for home appliances, and toys due to their excellent chemical and mechanical properties. However, most synthetic resins are combustible, and flame retardancy is indispensable depending on the application. As a flame retardant method, halogen-based flame retardants, inorganic phosphorus-based flame retardants represented by polyphosphate-based flame retardants such as red phosphorus and ammonium polyphosphate, organic flame retardants represented by triaryl phosphate compounds, etc. Phosphorous flame retardants, metal hydroxides or antimony oxide, melamine compounds as flame retardant a...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K21/04C08K3/22C08K5/3492C08L101/00C09K21/02C09K21/10C09K21/12C09K21/14
CPCC08K3/22C08L101/00C09K21/02C09K21/04C09K21/10C09K21/12C09K21/14C08K5/5205C08K5/34928C08K2003/2227C08K2003/2296C08K2201/014C08K3/26C08K2003/265C08L75/04C08L23/12C08K5/3492C08K5/0066C08K3/016C08K5/34922C08K5/10C08K5/1515C08K5/3462C08L83/04C08L2201/02
Inventor 倪阳米泽豊丹治直子
Owner ADEKA CORP
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