LFT-G Nylon 66 PA66/6I-50%LGF 94V0-Flame Resistance Engineer Compound Material

LFT-G Nylon 66 PA66/6I-50%LGF 94V0-Flame Resistance Engineer Compound Material

Details
Product Name:LFT-G Nylon 66 PA66/6I-50%LGF 94V0-Flame Resistance Engineer compound material Form: Length about 12mm; Color:As Required
Category
PA66 LGF Compound
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Description
Technical Parameters

PRODUCT INFORMATION

LFT-G Nylon 66 PA66/6I-50%LGF 94V0-Flame Resistance Engineer compound material is  a newly developed ,by XIAMEN LFT-G company,engineering plastic masterbatch with high performance nylon 66/6I-LGF50 94-V0 flame retardant grade. LFT-G PA66/6I-LGF50 material has excellent mechanical and mechanical properties such as high impact, high toughness, low warpage, high flame retardancy, fatigue resistance, etc. It is an excellent plastic masterbatch for injection molding auto parts, household appliance parts, and various engineering parts.

LFT-G PA66 6I-LGF50-94-V0 flame retardant material




Nylon (PA) is a thermoplastic resin with an amide bond in its molecular chain structure. Due to its good mechanical and operational properties, nylon is widely used in the automotive, mechanical, electronic and chemical industries, and has become the world's most productive and widely used engineering plastic.The LFT-PA66 material can be used in high-strength products such as industrial fan blades. 

PA66 LGF COMPOSITE


PA66 LGF


Nylon without flame retardant modification has poor flame retardancy. The oxygen index of different types of nylon varies.

The oxygen index of nylon varies from 24. 3% for nylon 66, 25. 5% for nylon 1010 and 26. 4% for nylon 6. In vertical combustion tests, the molten droplets of nylon lead to a potential fire hazard during use. The synthesis of new flame retardants and reactive flame retardant technology for nylon is currently the main research in this field, while the early widely used halogen-containing flame retardant system only adds a small amount that has a good flame retardant effect, however, halogen-containing flame retardants in the combustion process will decompose to produce dioxins and other toxic gases that are ecologically harmful to the environment. Therefore, while continuing to research new flame retardant technologies, halogen-free flame retardants have also become a mainstream research trend.

While the flame retardant performance is improved, maintaining the mechanical properties of the LFT-PA66/6I-LGF composite material is still a hot spot for research, which is related to the larger amount of halogen-free flame retardant added, which has a greater impact on the mechanical properties of the composite material. Therefore, the search for methods that can make the mechanical properties of the material improve has also become a hot spot for nylon flame retardant research. Although the addition of glass fiber reinforced modification is a more common method to improve the mechanical properties of composite materials, but the composite material will produce the "candle wick effect", therefore, in the glass fiber reinforced nylon composite materials, special attention needs to be paid to the design of flame retardant system.


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