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POE

Functional Raw Materials

1. PP modification

2. Improving the performance of PP/PE recycled materials

3. Toughening and compatibility for engineering plastics such as nylon

4. Used with EVA for foaming

5. POE for modifying EVA extrusion hoses

6. Color masterbatch or filler masterbatch

7. Hot melt adhesives

8. Cable materials

9. Film products, such as PE films

Appearance :

Spherical or cylindrical granules

Minimum order quantity :

1ton

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  • Product Description
  • Our Advantages
  • Product Description

    POE is a copolymer of ethylene and octene, with an octene (C8H16) comonomer content of 20%-30%. The presence of octene in the molecular structure disrupts the crystallinity of ethylene, but also imparts excellent transparency and good elasticity to the copolymer. At room temperature, the crystallized ethylene acts as a physical crosslinking point, while at high temperatures, the decrystallized ethylene gives the copolymer plasticity. The narrow molecular weight distribution provides POE with high tensile strength and impact resistance. The branching effect of octene significantly enhances the thermal sensitivity and processability of the polymer. Compared to EPDM and EPR, the smaller proportion of α-olefin in the comonomer reduces the number of tertiary hydrogen atoms in the molecular backbone, greatly improving the thermo-oxidative aging resistance of POE.
  • Features

    1. Transparent granular form, can be directly extruded and blended with PP, making it easy to process.
     
    2. Absence of unsaturated double bonds in the molecular structure, low saturated carbon content, excellent thermal stability, and superior weather resistance compared to other elastomers.
     
    3. Uniform copolymer sequence distribution, narrow molecular weight distribution, low crystallinity, and good compatibility with polyolefins. Very low glass transition temperature and high elongation at break, suitable for toughening PP and improving its low-temperature impact toughness.
     
    4. Multiple crosslinking methods available, including peroxide, silane, and radiation. Crosslinked POE exhibits superior heat aging and UV aging resistance compared to EPDM and EPR.
     
    5. The soft, curled structure of octene chains and crystallized ethylene chains as physical crosslinking points in the molecular structure provide excellent mechanical properties and good processability.
     
    6. Good flowability, excellent dispersion with fillers, and high weld line strength in the final product. 7. High shear sensitivity and melt strength, preventing edge curling during processing, allowing for high-speed continuous extrusion and increased production.
  • Processing Methods

    1. PP modification

    2. Improving the performance of PP/PE recycled materials

    3. Toughening and compatibility for engineering plastics such as nylon

    4. Used with EVA for foaming

    5. POE for modifying EVA extrusion hoses

    6. Color masterbatch or filler masterbatch

    7. Hot melt adhesives

    8. Cable materials

    9. Film products, such as PE films

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