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    High-density polyethylene pipe grade-GC100S
    • High-density polyethylene pipe grade-GC100S
    • High-density polyethylene pipe grade-GC100S
    • High-density polyethylene pipe grade-GC100S
    • High-density polyethylene pipe grade-GC100S

    High-density polyethylene pipe grade-GC100S

    HDPE pipe grade can be used in the production of pressure pipes, such as pressurized water pipes, fuel gas pipelines and other industrial pipes.

    HS code:3901100090

    Melt flow rate:0.20-0.26 g/10min

    Grade:Pipe grade

    Packing:25KG/Bags 

    Brand:Sinopec

    Applications of the Product

    HDPE pipe grade can be used in the production of pressure pipes, such as pressurized water pipes, fuel gas pipelines and other industrial pipes. It can also be used for making non-pressure pipes such as double-wall corrugated pipes, hollow-wall winding pipes, silicon-core pipes, agricultural irrigation pipes and aluminum-plastics compound pipes. In addition, through reactive extrusion (silane cross-linking), it can be used for producing crosslinked polyethylene pipes (PEX) for supplying cold and hot water.

    Hot Tags: High-density polyethylene pipe grade-GC100S, manufacturers, suppliers, factory, Customized

    China National Petroleum Corporation Jilin Petrochemical Company

    Product Quality Certificate


     

    Brand:Kunlun                                                                                                 Number:JH-042-03-050

    Product name:High-density polyethylene resin                                            Specifications:JHMGC100S

    Product lot number:B170425                                                                        Batch:450 tons

    Implementation StandardQ/SY 1679-2014                                               Production time: 2017.04.25

    Analysis Item

    Limited

    Test Result

    Test Method

    Color pellet,g/kg

    0-10

    0

    SH/T 1541

    Density,g/cm3

    0.946-0.950

    0.950

    GB/T 1033.2

    Meltmass-flow rate,(190/5.00)g/10min

    0.20-0.26

    0.24

    GB/T3682

    Tensile stress at yield,Mpa

    20.0

    21.6

    GB/T1040.2

    Nominal strain at break,%

    450

    741

    GB/T1040.2

    Charpy impact strength,KJ/M2

    20

    32

    GB/T1043.1

    Volatility,mg/kg

    300

    132

    GB/T 15558.1


    Related Industry Products
    • Polyethylene is a lightweight, durable thermoplastic with variable crystalline structure. It is one of the most widely produced plastics in the world (tens of millions of tons are produced worldwide each year). Polyethylene is used in applications ranging for films, tubes, plastic parts, laminates, etc. in several markets (packaging, automotive, electrical, etc.).
    • 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.
    • 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.
    • Thermoplastic resin extrusion or injection molding of the tubular plastic billet, while hot (or heated to soften the state), placed in the split mold, closed immediately after the billet into the compressed air, the plastic billet blowing and close to the inner wall of the mold, after cooling stripping, that is, a variety of hollow products.

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