This article explores five key factors causing color variation and discoloration in flame retardant modified materials, including raw material stability, flame retardant thermal resistance, filler impurities, additive interactions, and environmental impact. YINSU Flame Retardant Company offers specialized solutions to optimize performance and ensure long-term color stability in complex processing environments.
The growth of the engineering plastics market is benefiting from its application in various industries, especially in electrical and electronics, packaging, and automotive. The engineering plastics market is expected to continue to grow with the increasing demand for high performance materials.
The flame retardants used in engineering plastics are mainly halogenated flame retardants and phosphorus flame retardants.
red phosphorus is flammable, but in the resin, the action process of red phosphorus and other phosphorus-containing additives is not simple oxidation. The phosphorus-containing additives mainly work in the condensed phase. The flame retardant mechanism isI. When the resin burns it combines with
With the development of modern technology, plastic products play an important role in our daily life. However, the burning nature of plastic products brings certain safety hazards to our life and environment. In order to solve this problem, flame retardants have emerged as an important chemical substance. In this paper, the application of flame retardants in plastic products will be introduced and illustrated and supported by data for a better understanding of the performance evaluation of flame retardants.
Flame retardant of injection plastic parts The flame retardant in the shape of the powder is unevenly scattered during the processing process, and the product often appears. Therefore, it is suitable for plastic modified plants to modify granules. And other additives need to be added for completion