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    High density polyethylene N3000B
    • High density polyethylene N3000B

    High density polyethylene N3000B

    HS Code:3902100090

    Melt Flow Rate:0.3±0.6

    Grade:pipe

    Packing:25kg/bag

    Sinopec:

    Brand


    The Use:

    By injection molding, blow molding, extrusion, rolling molding and other molding methods, we produce film products, daily necessities and various sizes of industrial hollow containers, pipes, packing calendering tape and ligation tape, rope, fishing net and weaving fiber, wire and cable, etc.


    Hot Tags: High density polyethylene N3000B, manufacturers, suppliers, factory, Customized

    Trademark:   Kunlun
      Product name: High density polyethylene Implementation standard: provisional   standard
     
     

    Number:  20180911Hdpe2052 Specifications:   TUB121N3000B    Color: Black
     
     

    Analyze project

    Quality indicators

    inspection results

    Test method

    Melt flow rate (5kg),   g/10min

    0.30±0.06

    0.30

    Q/SY DS 0507

    Densitykg/m³

    960±2

    959.8

    ISO 1183-2

    Tensile yield stressMPa

    21.0

    23.5

    Q/SY DS 0501

    Tensile fracture strain%

    350

    760

    Q/SY DS 0501

    Impact strength of cylinder
      beam
    kJ/m²

    22.0

    27.2

    Q/SY DS 0503

    Carbon black dispersion,   size
      register

    3

    1.7

    Q/SY DS 0508

    Oxidation induction time (isothermal OIT) (210), min

    20

    77.7

    GB/T 19466.6-2009

    Carbon black content%
     
    m/m

    2.0-2.5

    2.24

    GB 13021

    moisture%

    measured

    0.024

    SH/T 1770-2010

     


    Related Industry Products
    • HDPE is synthesized under low pressure and is therefore also called low-pressure polyethylene. HDPE is mainly a linear molecular structure and has little branching. It has a high degree of crystallization and high density. It can withstand high temperatures and has good rigidity and mechanical strength and anti-chemical corrosion. HDPE is synthesized under low pressure and is therefore also called low-pressure polyethylene. HDPE is mainly a linear molecular structure and has little branching. It has a high degree of crystallization and high density. It can withstand high temperatures and has good rigidity and mechanical strength and anti-chemical corrosion.
    • Thermoplastic matrix polymer composites have gained commercial success in the semistructural and structural applications. Polyethylene (PE) is one of the most versatile and widely used thermoplastics in the world because of its excellent properties like toughness, near-zero moisture absorption, excellent chemical inertness, low coefficient of friction, ease of processing and unusual electrical properties.
    • Polyethylene consists of hydrocarbon chains with the most basic component being the ethylene molecule, consisting of 2 carbon and 4 hydrogen atoms. When ethylene molecules are combined together in straight or branched chains, polyethylene is formed. This process involves splitting the double bond between the 2 carbon atoms and creating a free radical to join to the next ethylene molecule. The macromolecules are not covalently joined, but are held together in a crystalline structure through intermolecular forces. The lower the number of side branches, the lower the crystallinity and hence the higher the density as can be observed in the differing properties for differing types of polyethylene.
    • EVA can be processed by many different methods, such as injection molding, extrusion molding, blow molding, calendering and foaming.

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