Detailed introduction of flame retardant formulation components

Flame retardant formula ingredients halogen-containing flame retardants: Clone, chlorinated paraffin, CPE, octabromo ether, brominated polystyrene, brominated epoxy resin and other phosphorus flame retardants: ammonium polyphosphate, red phosphorus, phosphate ester flame retardant plasticizer and so on. Intumescent flame retardants: melamine, pentaerythritol, ammonium polyphosphate; Inorganic flame retardants: aluminum hydroxide, zinc borate, antimony trioxide, brucite; Provide inorganic flame retardants, organophosphorus flame retardants, Intumescent flame retardants, high-efficiency flame retardants, composite flame retardants and other flame retardants formula analysis and testing, through component analysis, reduction formula, provide analysis services to help reduce costs. ABS flame retardant formula analysis: chemical high

flame retardantFormula Ingredients
Halogen-containing flame retardants: Clone, chlorinated paraffin, CPE, octabromo ether, brominated polystyrene, brominated epoxy resin, etc.
Phosphorus flame retardant: ammonium polyphosphate, red phosphorus, phosphate ester flame retardant plasticizer, etc.
Intumescent flame retardant: melamine, pentaerythritol, ammonium polyphosphate;
Inorganic flame retardants: aluminum hydroxide, zinc borate, antimony trioxide, brucite;
Provide inorganic flame retardants, organic phosphorus flame retardants, intumescent flame retardants, high-efficiency flame retardants, composite flame retardants and other flame retardant formula analysis and testing, through component analysis, reduction formula, to provide analysis services to help reduce costs.
ABS flame retardant formula analysis: chemical polymers can be detected under instrument detection, and the detection limit reaches more than 90%. After sample separation, it can go through five steps of evaluation, pretreatment, instrument analysis, spectrum library matching and secondary verification. More than 10 instruments of NMR nuclear magnetic resonance, XRD/XRF, IR infrared, GC-MS and other sizes can be used for accurate analysis to obtain accurate spectrum information, reverse analysis formula and understand composition and ratio.





Real-time information

Zhongke Flame Retardant Organization Watches 20 Closing Ceremonies

On the morning of October 22, 2022, members of Zhongke Flame Retardant New Materials Co., Ltd. watched the closing ceremony of the 20th Congress under the leadership of General Manager Wang Ligui.

What are the reasons for the failure of flame retardant after adding aluminum hydroxide flame retardant?

Everyone knows that there are two common flame retardants. Today we are going to talk about only one of them. Aluminum hydroxide flame retardant is an environmentally friendly halogen-free flame retardant, which can be widely used in fabrics, wood, plastics, and rubber., Polyurethane and other industries have ideal flame retardant effect. In the process of industrial application, it is found that flame retardant failure occurs when aluminum hydroxide flame retardant is added. The following are the reasons for the failure of aluminum hydroxide flame retardant, how to prevent it, how to deal with the operation, and restore the original function.

As a flame retardant, magnesium hydroxide also need to improve what aspects?

When it comes to flame retardants, everyone is familiar with them. Although we usually have less contact with them, we can know what they are used for from the name. Have to talk about magnesium hydroxide, we all know that its main presentation state is a granular, at present, the market sales of magnesium hydroxide particle size is larger, part of the commodity particle size up to tens of microns, immediately used as a flame retardant, poor dispersion, the physical properties of raw materials greater harm. In industrial production, physical grinding methods are generally used to reduce the particle size to 1 micron. The surface of magnesium hydroxide has high polarity and is easy to agglomerate. As the compatibility of refractory materials and polymer substrates, it not only reduces its flame retardant grade, but also causes more serious harm to the physical properties of raw materials.