Aluminum hydroxide manufacturers analyze its advantages as a flame retardant

We have more or less heard the flame retardant these three words, although not very understanding. In our life more common is aluminum hydroxide flame retardant, relative to other flame retardants is more common safe and non-toxic, of course, compared with other flame retardants, aluminum hydroxide also has many significant advantages. Next, aluminum hydroxide flame retardant manufacturers will take us to understand the following:

We have more or less heard the flame retardant these three words, although not very understanding. In our life more common is aluminum hydroxide flame retardant, relative to other flame retardants is more common safe and non-toxic, of course, compared with other flame retardants,aluminum hydroxideIt also has a number of significant advantages. Next, aluminum hydroxide flame retardant manufacturers will take us to understand the following:

氢氧化铝

  (1)aluminum hydroxideAs a flame retardant, it has many unique advantages, such as rich source, low price, wide application range and many varieties;

(2) Heating and decomposition will release a large amount of water vapor. The water vapor produced by the reaction can dilute the polymerized combustible gas and continue to burn and diffuse. The newly formed alumina also has high activity, which can absorb smoke particles and suppress smoke;

(3) Aluminum hydroxide can also prevent dripping, promote carbonization, and can be retained in the polymer for a long time to improve arc resistance;

(4) Aluminum Hydroxide The flame retardant contains a hydroxide radical which generates water. The decomposition temperature of aluminum hydroxide is 200 degrees. Basically complete the dehydration reaction in the range of 245-300 degrees, release crystal water, absorb latent heat, and reduce the temperature. That is, in the flame retardant technology, a large amount of water vapor can dilute the combustible gas and play a cooling role.

After dehydration,aluminum hydroxideThe uniformly distributed metal alumina is produced on the combustible surface, which can form a dense flame retardant barrier with other carbides, isolate air, reduce the combustion rate, reduce the mass loss rate of decomposition products, and prevent flame spread. I believe you can see that you have a deeper understanding of aluminum hydroxide flame retardant. If you have any other questions, please call our customer service and provide you with more information.

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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.