Flame retardants bring us the safety and reliability of electrical appliances.


 

In today's society, in the home, office and public buildings, the number and types of electrical and electronic equipment increased significantly. The massive growth of electronic devices, especially personal electronic devices, has led to a leap in the production of these devices. The size, weight, automaticity and design quality of the device are important criteria for consumer choice. As a result, mobile phones and computers became thinner and lighter, and televisions became more sophisticated, which made polymers the material of choice. The fire risk is increasing, which requiresflame retardantWide range of applications.
Polymers have many advantages in the design of electronic devices. They can be carefully engineered to optimize product performance; they are lightweight and strong, and can be easily molded into various shapes, as well as different colors and textures. This also means that complex components such as circuit boards, wires, cables and contactors will increasingly be used in polymers to meet the high-level reliability standards required by future technologies and customers.
The widespread use of plastics means that potential fire hazards in homes and offices are becoming more and more serious. Most electrical and electronic equipment contains 1-9kg of plastic materials, which are easily ignited when exposed to internal and external electrical currents and heat sources. Without flame retardants, so much plastic can release as much heat as 0.6 to 6 liters of gasoline.
Flame retardants play a very important role in the exposure of plastic parts in electrical and electronic equipment when burning or close to the combustion source.
Flame retardants are therefore added to combustible materials to increase their flame resistance. The rational use of flame retardants can also meet functional, aesthetic, and ecological requirements, minimizing the impact on the cost of goods.
Flame retardant science and technology is a science developed to meet the needs of social safety in production and life, prevent fires, and protect people's lives and property. Flame retardant is the application of flame retardant technology in real life. It is a special chemical additive used to improve the combustion performance of combustible and flammable materials, and is widely used in the flame retardant processing of various decoration materials. After the flame retardant processing of the material, in the external fire attack, can effectively prevent, delay or terminate the spread of the flame, so as to achieve the role of flame retardant.

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.