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LyondellBasell HDPE L5885

    • Product Name: LyondellBasell HDPE L5885
    • 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 179312

    As an accredited LyondellBasell HDPE L5885 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing LyondellBasell HDPE L5885 comes in 25 kg polyethylene bags, typically shipped on 1,000 kg pallets for convenient handling.
    Container Loading (20′ FCL) 20′ FCL loaded with 25 kg bags of LyondellBasell HDPE L5885, palletized, stretch-wrapped, and securely braced for ocean shipment.
    Shipping Shipping description: Polyethylene, solid (HDPE L5885), non-hazardous. Not regulated for transport by DOT/IMDG/IATA/ADR. Packaged in 25-kg bags, jumbo bags, or bulk trucks/railcars. Keep dry, clean, and protected from heat and direct sunlight. Follow the manufacturer’s SDS and local regulations.
    Storage Store LyondellBasell HDPE L5885 in a cool, dry, well-ventilated area away from direct sunlight, heat, sparks, flames, and strong oxidizers. Keep material in original, closed containers or bags to prevent moisture, dust, and contamination. Protect from UV radiation. Avoid excessive stacking and ensure pallets are stable. Use first-in, first-out inventory. Maintain clean housekeeping and minimize dust accumulation.
    Shelf Life Recommended shelf life is two years when stored unopened in a cool, dry area, away from direct sunlight and contaminants.
    Application of LyondellBasell HDPE L5885

    Why Does Agricultural Chemical Packaging Demand F50 ESCR Beyond 600 Hours?

    In emulsifiable concentrate and suspension concentrate pesticide packaging, the bottle wall is exposed to surfactant-loaded formulations that can reduce polyethylene stress-cracking resistance by more than 50% compared with water alone. LyondellBasell HDPE L5885 is specified at 96.0–98.0 wt% of the polymer fraction with 2.0–3.5 wt% of a 40% carbon black UV masterbatch and 0.2–0.4 wt% of a hindered amine light stabilizer for direct-weathered agricultural service. In the United States, containers for liquid pesticides must satisfy FIFRA labels and 40 CFR Part 165 containment requirements; internationally, UN 3H1 certification under ADR 6.1.5.3 drop testing at -18 °C, ADR 6.1.5.5 hydraulic pressure testing at 250 kPa, and ISO 16103:2005 quality assurance for recycled plastic content are the relevant compliance markers. Extrusion-blow molding of these bottles uses a low-shear single-screw with L/D 25:1 and compression ratio 2.8:1 to limit shear heating; melt temperature at the accumulator head is held at 190–205 °C, the spiral mandrel die gap is set to 2.5–3.0 mm, and the parison programmer is configured to maintain a minimum sidewall thickness of 2.2 mm and chime thickness of 1.8 mm for a 20 L container. The conversion route is direct extrusion-blow molding, followed by leak testing at 20 kPa and weld-line burst testing at ≥300 kPa to detect parison pinch-off defects. Terminal products are 1 L to 20 L tight-head containers for emulsifiable concentrates, aqueous suspension pesticides, and surfactant adjuvants, often with externally glued or in-mold labels and induction-seal closures.

    Sheet extrusion of L5885 at die temperatures from 215 °C to 235 °C and roll-stack temperatures of 80–100 °C yields monolayer sheet of 0.35–2.50 mm for contact with aqueous, acidic, and fatty foods under EU Regulation 10/2011/EC and FDA 21 CFR 177.1520(c) 2.1, with overall migration limited to 10 mg/dm² under EN 1186-1:2002 total immersion testing. The food-contact layer is formulated at 100 wt% L5885; when pigmentation is required, the color masterbatch is capped at 2.0 wt% and must use only food-contact-listed carrier resins. Post-consumer recyclate is excluded from the food-contact layer, and post-industrial regrind of the same sheet is limited to 10 wt% only when covered by a migration test batch protocol. Extrusion uses a barrier screw with L/D 30:1, screen pack of 60/80/100 mesh, and a melt pump to maintain die pressure below 28 MPa; cast-roll gap is set at 0.30–0.80 mm for thin-gauge sheet and the polishing stack is run with a roll-to-roll temperature differential of 1.5 °C maximum to prevent transverse thickness drift. Pre-drying at 80 °C for 2 h is required only when storage RH exceeds 60%, as surface splay from adsorbed moisture becomes visible in the sheet edge trim. Thermoforming downstream operates with sheet surface temperatures of 135–155 °C, plug assist dwell of 0.5–0.8 s, and mold temperatures of 60–80 °C; formed parts retain the resin’s flexural modulus near 1,450 MPa per ASTM D790-17 and ESCR F50 above 600 h per ASTM D1693. Terminal product types include dairy cups, margarine tubs, deli trays, and short-shelf-life frozen food trays that are heat-sealed with aluminum-foil lidding films.

    Accumulator-head blow-molding lines processing LyondellBasell HDPE L5885 at melt temperatures between 190 °C and 210 °C are used for UN 3H1 tight-head jerrycans up to 20 L and UN 1H1 open-head drums up to 220 L in industrial chemical service. The monolayer formulation comprises 100 wt% L5885 as the polymer fraction, with 1.5–2.5 wt% of a 40% carbon black masterbatch and 0.2–0.5 wt% of a fluoropolymer processing aid where die-buildup is observed; clean post-production regrind from the same article may be returned to the extruder at up to 15 wt% only after the certified drop-test programme has been revalidated under UN Model Regulations 6.1.5.3. Hydraulic pressure compliance is evaluated at 250 kPa for 30 min per ADR 6.1.5.5, stack loading is conducted at 40 °C for 28 days per ADR 6.1.5.6, and the resin’s environmental stress-cracking resistance exceeds 600 h F50 under ASTM D1693 Condition B in 100% Igepal CO-630, supporting compatibility with aggressive hydrocarbon and acid formulations. Process control on single-station shuttle machines requires a diverging head-tooling angle of 30°–45°, die gap 2.5–3.5 mm, barrel temperature profile from 180 °C to 205 °C, blowing air at 0.6–0.8 MPa, and mold coolant at 10–30 °C; typical 20 L cycle times fall in the 55–70 s range. Terminal part types include 3H1 20 L jerrycans, 1H1 120 L and 220 L open-head drums, and 2H1 plastic inner receptacles for fibreboard overpacks.

    When Heavy-Gauge Sheet Sags Beyond 25 mm, Thermoforming Requires Active Loop Control

    Under heavy-gauge industrial thermoforming, L5885 is run at 70–85 wt% of the polymer fraction with 15–30 wt% post-industrial HDPE regrind and 0.5–1.0 wt% of a slip/antiblock masterbatch when nestable trays require low coefficient of friction; the regrind fraction is screened by bulk density and melt flow rate before addition. Returnable transit packaging made from this sheet is specified against ISO 18616-1:2016 for reusable rigid plastics distribution containers, with mechanical durability verified by ASTM D638-14 tensile yield, ASTM D790-17 flexural modulus, and ASTM D256-23 notched Izod impact at -20 °C. The extrusion line produces sheet of 3.0–8.0 mm through a coat-hanger die with restrictor bar and a three-roll stack heated to 85–105 °C; die temperature is set to 210–230 °C, melt temperature is measured at 220–240 °C, and the roll gap is maintained at 95–98% of final sheet thickness to control orientation and bow. Thermoforming uses upper and lower ceramic heaters set at 280–320 °C to bring the sheet surface to 140–165 °C; sag bands or photoelectric sheet-loop monitoring are required because heavy-gauge sheet sags more than 25 mm at center span before plug entry. Mold cooling water is controlled at 55–70 °C and vacuum holes are spaced at 25–40 mm centers to minimize marking on load-bearing surfaces. Terminal products are nestable transport trays, collapsible sleeve-pack bases, and automated conveyor pallets for automotive components, agricultural machinery parts, and industrial fastener distribution.

    UN 3H1 Jerrycan Coextrusion With Post-Consumer Recyclate Layers

    Lubricant and non-corrosive chemical distribution lines using three-extruder coextrusion stations run L5885 in two virgin layers and a post-consumer HDPE recyclate core to produce UN 3H1 jerrycans; the layer structure allocates 30–40 wt% outer L5885, 30–40 wt% middle post-consumer HDPE, and 20–30 wt% inner L5885, equivalent to a total L5885 loading of 50–70 wt%. The PCR core must have a melt flow rate of 0.6–1.0 g/10 min at 190 °C/2.16 kg and density of 0.950–0.960 g/cm³ to match parison hang strength; batch release requires contaminant testing and density/MFI verification under ISO 16103:2005, while the finished jerrycan must pass the UN packaging tests of ADR 6.1.5.3 drop at -18 °C, ADR 6.1.5.5 internal hydraulic pressure at 250 kPa, and ADR 6.1.5.6 stacking at 40 °C for 28 days. The coextrusion head combines melt streams at 190–210 °C through a three-layer spiral mandrel die with die gap 3.0–4.0 mm; parison programming adjusts wall thickness across the part height and at pinch-off zones to maintain a minimum post-mold wall of 1.6 mm. Post-consumer PVC contamination must be kept below 0.1 wt% because HCl evolution during extrusion causes corrosion on downstream cooling and trimming hardware. Terminal products are 20–30 L UN 3H1 jerrycans for engine oils, hydraulic fluids, and non-corrosive chemical concentrates, with the PCR core invisible under a pigmented outer layer.

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