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CNOOC & Shell (CSPC Huizhou) HDPE 5021Y

    • Product Name: CNOOC & Shell (CSPC Huizhou) HDPE 5021Y
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
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    Specifications
    HS Code 808425
    Density 0.950 g/cm³
    Melt Flow Rate Mfr 20 g/10 min (190°C/2.16 kg)
    Tensile Strength At Yield 28 MPa
    Tensile Strength At Break 20 MPa
    Elongation At Break 500%
    Flexural Modulus 1200 MPa
    Notched Izod Impact Strength At 23 C 5 kJ/m²
    Notched Izod Impact Strength At 20 C 2 kJ/m²
    Vicat Softening Temperature 125°C
    Heat Deflection Temperature 75°C
    Shore Hardness 65 Shore D
    Mold Shrinkage 1.5-2.5%
    Water Absorption <0.01%
    Melting Point 130°C
    Thermal Conductivity 0.4 W/m·K
    Dielectric Constant 2.3
    Volume Resistivity >10^16 Ω·cm
    Dielectric Strength 20 kV/mm
    Flammability UL94 HB
    Environmental Stress Cracking Resistance Escr 10 h
    Molecular Weight Distribution Narrow
    Crystallinity 80-90%
    Coefficient Of Friction 0.2
    Specific Heat 1.9 kJ/kg·K
    Linear Thermal Expansion 1.2E-4 /°C

    As an accredited CNOOC & Shell (CSPC Huizhou) HDPE 5021Y factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing CNOOC & Shell HDPE 5021Y: typically packed in 25 kg PP woven bags, palletized at 1,000 kg per pallet.
    Container Loading (20′ FCL) CNOOC & Shell (CSPC Huizhou) HDPE 5021Y, 25kg bags, palletized, securely loaded into a 20′ FCL container for sea freight.
    Shipping CNOOC & Shell (CSPC Huizhou) HDPE 5021Y ships as a non-hazardous thermoplastic in 25 kg moisture-barrier bags, palletized and stretch-wrapped. Transport by truck or containerized sea freight under dry, cool conditions, away from direct sunlight, heat, and moisture. Standard cargo handling applies; no special dangerous-goods documentation required.
    Storage Store in a cool, dry, well-ventilated area, out of direct sunlight. Keep original packaging sealed, on pallets, away from heat, sparks, flames, and strong oxidizing agents. Protect from moisture, dust, and contamination. Store at ambient temperature, preferably below 50 °C. Maintain good housekeeping, avoid prolonged UV exposure, and follow local regulations and manufacturer recommendations.
    Shelf Life Shelf life typically 24 months under recommended storage: dry, cool, ventilated area, away from direct sunlight, in original packaging.
    Application of CNOOC & Shell (CSPC Huizhou) HDPE 5021Y

    Accumulator-head extrusion blow moulding of 200 L tight-head HDPE drums for liquid dangerous goods subjects a 9.5–10.5 kg parison to an 8–14 s hang time before mould transfer, during which the CSPC Huizhou HDPE 5021Y must retain hoop melt strength without necking beyond 10% of the programmed wall-thickness envelope. The downstream production process uses a 25:1 L/D extruder with grooved-feed barrel and barrier screw, melt temperature at 195–210 °C, die-head pressure 22–32 MPa, blow air 0.55–0.70 MPa, mould temperature 10–18 °C, and hydraulic clamp force 450–650 kN; cycle time is 150–220 s per drum. Pinch-off weld thickness at the bottom chime is the controlling variable for drop impact resistance when regrind is introduced. Formulation addition ratio: 100% virgin HDPE 5021Y, or 85–90 wt% virgin with 10–15 wt% clean in-house regrind from rejected parisons and trimmed flash; carbon black masterbatch is added at 1.5–2.5 wt% only for UV-stable export packaging, and a fluoropolymer processing-aid masterbatch is dosed at 300–700 ppm by weight to control sharkskin melt fracture at die gaps below 1.0 mm. Compliance is anchored to UN Model Regulations 6.1.5.3 for packaging group II liquids, requiring no rupture or leakage after a 1.2 m drop at 15 °C, with additional stack and leakproofness obligations under ADR 6.1 and IMDG Code 6.1. Terminal finished products are UN 1H1 closed-head drums for aliphatic hydrocarbon solvents, ester-based paint strippers, and lubricant additive concentrates.

    Compliance test matrix for UN 1H1 closed-head HDPE drums
    TestReferenceCritical parameter
    Drop shockUN Model Regulations 6.1.5.31.2 m for PG II liquids at 15 °C
    Stack compressionUN Model Regulations 6.1.5.624 h static load
    Melt mass-flow rateISO 1133-1:2022190 °C/2.16 kg
    Environmental stress-cracking resistanceASTM D1693-2150 °C, 10% Igepal CO-630

    Does 15–30 wt% Post-Consumer HDPE Compromise Drop Impact of 20 L UN 3H1 Fluorinated Jerrycans?

    Fluorinated 20 L jerrycans in UN 3H1 configuration are produced on shuttle blow-moulding machines with twin-cavity tools and a melt temperature of 195–210 °C. Formulation addition ratio: 70–85 wt% virgin HDPE 5021Y, 15–30 wt% washed post-consumer HDPE derived from non-food detergent and fabric-softener bottles, 1.5–2.5 wt% carbon black masterbatch, and 300–700 ppm fluoropolymer processing-aid masterbatch. The post-consumer recyclate fraction is limited because the pinch-off weld loses interlock after surface fluorination; failure shifts from body-wall puncture to weld opening under drop testing. Industry compliance is set by UN Model Regulations 6.1.5.3 for packaging group II liquids at 1.2 m drop height, ADR 6.1 for dangerous goods carriage, and ASTM D1693-21 for environmental stress-cracking resistance at 50 °C in 10% Igepal CO-630. The downstream production process uses continuous extrusion through a ring-shaped die head at 22–30 MPa, 100-point axial parison programming, blow air at 0.6–0.8 MPa, mould temperature at 12–18 °C, and cycle time of 55–75 s per two cavities. Post-mould surface fluorination is conducted in a sealed chamber with a fluorine/nitrogen mixture at a fluorine concentration below 2 vol%, temperature 25–35 °C, and dwell time 20–40 min; the resulting fluorocarbon surface reduces permeation of ketones and esters. Terminal finished products are 20 L UN 3H1 jerrycans for methyl ethyl ketone, butyl acetate, and toluene-containing formulations. Published data for this specific grade in fluorinated jerrycan structures is limited; surface fluorine uptake must be confirmed by X-ray photoelectron spectroscopy using the F 1s signal at 688–690 eV.

    In 1,000 L composite IBC inner-bottle production, an accumulator head must deliver a 9–10 kg parison while maintaining a programmed wall-thickness window of 5–10 mm over the 1,200 mm axial length. Formulation addition ratio: 90–100 wt% virgin HDPE 5021Y, 0–10 wt% clean in-house regrind from tops and tails, 1.0–1.5 wt% UV-stabiliser masterbatch, and 0.5–1.0 wt% antioxidant masterbatch. External post-consumer recyclate is not introduced unless tensile impact and environmental stress-cracking resistance are re-validated. Industry compliance is governed by UN Model Regulations Chapter 6.5 for rigid plastics IBCs, ISO 16101:2004 for transport package performance testing, and EU Regulation (EC) No 1907/2006 REACH for chemical constituents. The downstream production process uses a single-station blow-moulding machine with a 120–150 mm extruder, 30:1 L/D ratio, melt temperature 180–195 °C, accumulator shot capacity 15 kg, 100-point parison programmer, blow air 0.5–0.7 MPa, clamp force 600–800 kN, and cycle time 8–12 min. Corner-wall profiles are biased by 1.5–2.0 mm to compensate for thinning during deep-draw inflation. Terminal finished products are inner bottles for 1,000 L composite IBCs used in water-treatment polymer dispersions, paper-sizing emulsions, and textile dye auxiliaries.

    Vehicle Washer-Fluid Reservoirs and Low-Pressure Seat-Back Ductwork

    Parison suction blow moulding of windscreen washer-fluid reservoirs with integrated filler necks and catch-tank passages exposes HDPE 5021Y to local wall-thickness reductions to 0.5 mm in deep-draw corner radii, where shear-induced orientation is lowest and post-mould shrinkage can exceed 2.0% if cooling is non-uniform. Formulation addition ratio per 100 parts by weight: 100 parts virgin HDPE 5021Y and 2.0–2.5 parts carbon black masterbatch for opacity and UV stability; no reprocessed regrind is introduced where outer-surface grain is a cosmetic conformance criterion. Industry compliance is defined by EU Directive 2000/53/EC end-of-life vehicles, REACH Annex XVII, ISO 11469:2016 for polymer marking, and the absence of low-molecular-weight plasticiser migration for interior-air quality. The downstream production process uses continuous shuttle blow moulding with a four-cavity mould, 55–65 mm extruder at 24:1 L/D, melt temperature 185–200 °C, parison length 450–600 mm, blow air 0.4–0.55 MPa, mould temperature 15–20 °C, and cycle time 45–70 s; flash removal is completed by robotic trimming. Terminal finished products are windscreen washer reservoirs, headlamp cleaning system bottles, and low-pressure seat-back air-duct shells. Components requiring continuous service above 80 °C are outside this formulation’s long-term thermal stability window.

    When EN 13341 Static Heating-Oil Tanks Are Blow-Moulded Without External Reinforcement

    For 250 L and 500 L static heating-oil tanks covered by EN 13341:2005+A1:2011, HDPE 5021Y is selected for long-term hydrostatic stress-cracking resistance rather than short-term stiffness. Formulation addition ratio per 100 parts by weight: 100 parts virgin HDPE 5021Y, 2.0–2.5 parts carbon black masterbatch, 0.5–1.0 parts antioxidant masterbatch, and 0–10 parts clean in-house regrind; regrind above 10 parts is excluded unless tank-wall environmental stress-cracking resistance is re-validated to ASTM D1693-21 at 50 °C in 10% Igepal CO-630 for not less than 200 h. Industry compliance is anchored to EN 13341:2005+A1:2011, CE marking under the EU Construction Products Regulation, and national heating-oil storage codes that adopt EN 13341. The downstream production process uses a single-station blow-moulding machine with 30:1 L/D extruder, 120–150 mm screw, melt temperature 180–195 °C, parison mass 12–15 kg for 250 L tanks, 100-point axial parison programmer, blow air 0.5–0.7 MPa, mould temperature 10–15 °C, and cycle time 10–15 min. Terminal finished products are 250 L and 500 L static heating-oil tanks installed indoors or in unventilated cellar bunds.

    Six-layer coextrusion die heads running 1 L round bottles for solvent-borne graphic arts chemicals distribute HDPE 5021Y across the outer skin, sub-skin, and inner skin at a combined mass fraction of 65–70 wt% of the bottle. Layer addition ratio by total bottle weight: EVOH barrier resin 3–5 wt%, maleic anhydride-grafted tie resin 2–3 wt%, carbon black masterbatch 1.8–2.2 wt% in the outer skin only, with the balance supplied by HDPE 5021Y. The exact layer distribution is stabilised by melt temperature 190–205 °C and die-head pressure 25–35 MPa. Industry compliance is defined by EU Regulation (EC) No 1907/2006 REACH, EU Directive 94/62/EC on packaging and packaging waste, and ADR Chapter 3.4 limited-quantity provisions for 1 L inner packagings. The downstream production process uses continuous coextrusion blow moulding on a rotary wheel with 8 stations, 24:1 L/D extruder, melt temperature 190–205 °C, blow air 0.5–0.7 MPa, mould temperature 10–15 °C, and cycle time 1.5–2.5 s per cavity. Termination of the EVOH layer below 3 wt% raises oxygen transmission above 0.3 cm³/(m²·day·0.21 atm) at 23 °C and 50% relative humidity. Terminal finished products are 1 L round bottles with aluminium-thread neck finishes for solvent-based inks, screen-printing solvents, and polyurethane adhesive solvents.

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