Efficient flame-retardant nylon 6 resin and preparation method thereof

A flame-retardant nylon and high-efficiency technology, applied in the field of low-halogen high-efficiency flame-retardant nylon 6 resin and its preparation, can solve the problems of secondary disasters, reduced processing performance, fluidity and mechanical properties, and greatly different flame retardant effects. To achieve the effect of improving carbon formation and flame retardancy, good UV resistance, and improving flame retardant effect

Inactive Publication Date: 2017-02-01
ZHEJIANG AILA BUILDING ENERGY SAVING TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Traditional halogen-based flame retardants are widely used in the production of flame-retardant materials due to their high flame-retardant efficiency, but because halogen-based flame-retardant products produce a large amount of smoke and toxic corrosive gases during combustion, it hinders rescue and personnel evacuation , leading to secondary disasters
Therefore, the application of halogen flame retardant products is limited
At present, compared with halogenated flame retardants, flame retardant products on the market have very different flame retardant effects. Generally, halogenated flame retardants need less than 5% to have excellent flame retardant effects, while many organic flame retardants even It needs to be added in an amount of more than 30% to have a flame retardant effect, and the price is much higher than that of halogenated flame retardants
In addition to the price factor, the negative impact of high addition is also extremely obvious. The processing performance, fluidity and mechanical properties of the material are greatly reduced due to the addition of a large amount of flame retardants. The compatibility of flame retardants in materials is poor, and it is easy to Precipitation, which further affects the flame retardant effect and mechanical effect, which is also the biggest problem of inorganic flame retardants
On the other hand, with the popularity of automation today, the requirements for halogen-free flame retardants in modern industry are relatively low, and the market still needs a large amount of halogen-based flame retardants to meet the needs of industries, etc. Many companies still completely rely on halogen flame retardant systems. For Environmental protection is clearly detrimental

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] Put 5% of calcium hypophosphite, 2% of decabromodiphenylethane and 0.25% of NOR116, which account for the total mass percentage of flame-retardant nylon 6, into a mixer and mix evenly, and then pulverize with a pulverizer to obtain a flame retardant combination.

[0025] The flame retardant composition is melt-blended with nylon 6 resin accounting for 92.75% of the total mass percentage of flame-retardant nylon 6, injected into a tape, cooled, and pelletized to obtain a flame-retardant grade of UL94V-0 (1.6mm). Burn nylon 6 pellets.

Embodiment 2

[0027] Put 5% of calcium hypophosphite, 2% of decabromodiphenylethane and 1% of NOR116, which account for the total mass percentage of flame-retardant nylon 6, into a mixer and mix evenly, and then pulverize with a pulverizer to obtain a flame retardant combination.

[0028] The flame retardant composition is melt-blended with nylon 6 resin accounting for 92% of the total mass percentage of flame-retardant nylon 6, injected into a tape, cooled, and pelletized to obtain a flame-retardant grade of UL94V-0 (1.6mm). Burn nylon 6 pellets.

Embodiment 3

[0030] Put 5% of calcium hypophosphite, 12% of decabromodiphenylethane and 0.25% of NOR116, which account for the total mass percentage of flame-retardant nylon 6, into a mixer and mix evenly, and then pulverize with a pulverizer to obtain a flame retardant combination.

[0031] The flame retardant composition is melt-blended with nylon 6 resin accounting for 82.75% of the total mass percentage of flame-retardant nylon 6, injected into a tape, cooled, and pelletized to obtain a flame-retardant grade of UL94V-0 (1.6mm). Burn nylon 6 pellets.

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PUM

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Abstract

The invention relates to a low-halogen efficient nylon 6 resin composition and a preparation method thereof. 2,2',3,3',4,4',5,5',6,6'-decabromobibenzyl and calcium hypophosphite are adopted as main flame retardant and compounded with NOR116 to prepare the efficient flame-retardant nylon 6 resin composition. The composition contains bromine, phosphorus and nitrogen, has good compatibility, and is high in thermal stability and hydrolytic resistance. The amount of added 2,2',3,3',4,4',5,5',6,6'-decabromobibenzyl is obviously reduced, adding of antimony trioxide is not needed, in this way, the fuming amount is substantially reduced, and a good flame-retardant effect is still achieved. In addition, the flame-retardant nylon 6 resin further has good ultraviolet resistance, is not prone to discoloring, and is quite high in thermal stability and capable of meeting the machining requirements for all kinds of materials.

Description

technical field [0001] The invention relates to a flame-retardant nylon 6 resin, in particular to a low-halogen high-efficiency flame-retardant nylon 6 resin compounded with NOR116 and a preparation method thereof. Background technique [0002] Polyamide is one of the four major engineering plastics, and it is a member that cannot be underestimated in today's life and economy in terms of application fields, consumption and transaction volume. Nylon 6, or polyamide 6, is the most common type of polyamide, and its demand for flame retardancy is particularly obvious. [0003] Traditional halogen-based flame retardants are widely used in the production of flame-retardant materials due to their high flame-retardant efficiency, but because halogen-based flame-retardant products produce a large amount of smoke and toxic corrosive gases during combustion, it hinders rescue and personnel evacuation , leading to secondary disasters. Therefore, the application of halogen flame retard...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L77/02C08K5/03C08K3/32C08K5/17
CPCC08K5/03C08K3/32C08K5/17C08L2201/02C08L2201/08C08L77/02
Inventor 肖建龙
Owner ZHEJIANG AILA BUILDING ENERGY SAVING TECH
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