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High density polyethylene oxide homopolymer

High density oxidized polyethylene homopolymer is a polyethylene product modified by oxidation. It has unique physical and chemical properties and a wide range of applications. Its molecular structure contains oxygen-containing polar groups. The oxidation process changes the original molecular chain arrangement of polyethylene. High density polyethylene oxide homopolymer has a high melting point. Its density is usually between 0.94-0.97g/cm ³. Has good thermal stability. Chemical corrosion resistance is superior to ordinary polyethylene. The tensile strength can reach a certain range of values. The hardness has increased compared to unoxidized polyethylene. The surface energy undergoes significant changes due to oxidation. Crystallinity has a significant impact on its performance. Its performance can be controlled through different oxidation processes. The type of initiator affects the oxidation reaction process. The reaction temperature is a key parameter in the oxidation process. The reaction time determines the degree of oxidation. It can be used as a plasticizer in plastic processing. Can improve the flexibility of plastic products. Used in the ink industry to improve ink adhesion. In the field of coatings, it can enhance the wear resistance of coatings. As a lubricant, it can reduce the coefficient of friction. Has good compatibility with other polymers. Can enhance the comprehensive performance of composite materials. Used for packaging materials to extend shelf life. Improve the moisture resistance of packaging materials. It has special applications in the field of electronic appliances. Can be used to manufacture insulation components. Its weather resistance is enhanced compared to ordinary polyethylene. Can resist environmental erosion when used outdoors. The color is usually white or slightly yellow. The particle size will affect its application effect. Solubility exhibits certain properties in specific solvents. The melt flow rate is one of the important indicators. Has a good dispersing effect on fillers. Can improve the uniformity of the filling system. Further expansion of performance can be achieved through grafting modification. Grafting different monomers yields different functional products. The production process requires strict quality control. Quality inspection includes the determination of multiple indicators. Market demand continues to grow with industrial development.

High density polyethylene oxide homopolymers have diverse properties. There will be broad application prospects in more fields in the future.