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LyondellBasell HDPE L5440

    • Product Name: LyondellBasell HDPE L5440
    • 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 576897

    As an accredited LyondellBasell HDPE L5440 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing LyondellBasell HDPE L5440 is supplied in 25 kg polyethylene bags, typically 40 bags per pallet, totaling 1,000 kg.
    Container Loading (20′ FCL) Standard dry 20′ FCL loading of LyondellBasell HDPE L5440: palletized 25 kg bags, evenly distributed, secured, container sealed for export.
    Shipping LyondellBasell HDPE L5440 is a non-hazardous, solid thermoplastic resin supplied as pellets. It is typically shipped in 25 kg bags, 1,000 kg jumbo bags, or bulk trucks/railcars. Keep containers closed, dry, and away from heat. No special DOT/IMDG hazardous classification applies.
    Storage Store LyondellBasell HDPE L5440 in a cool, dry, well-ventilated indoor area away from direct sunlight, heat, flames, and strong oxidizers. Keep original packaging closed and palletized to prevent moisture, dust, and contamination. Avoid prolonged UV exposure and extreme temperatures. Use first-in, first-out stock rotation. Handle with clean equipment to maintain product quality and safe processing.
    Shelf Life LyondellBasell HDPE L5440 has an indefinite shelf life when stored in original, unopened packaging under cool, dry conditions away from sunlight.
    Application of LyondellBasell HDPE L5440

    A 32-cavity hot-runner closure line molding LyondellBasell HDPE L5440 for tamper-evident beverage caps uses a 1,200 kN clamp force, a screw diameter of 35 mm, an L/D ratio of 22:1, and a compression ratio of 2.5:1. The barrel profile from feed throat to nozzle is maintained at 180/200/215/220°C. Melt temperature at the nozzle is held between 215°C and 225°C. Gate diameter for the cap body is fixed at 0.8 mm to 1.0 mm on a part wall section of 1.6 mm to 2.0 mm. Hot-runner manifold temperature is set at 215°C, which prevents gate freeze-off before the holding-pressure phase completes. Holding pressure is set at 35 MPa to 45 MPa for 0.4 s to 0.8 s, followed by a cooling time of 4.0 s to 5.5 s. Back pressure is limited to 0.5 MPa to 0.8 MPa and screw speed to 60 rpm to 90 rpm. This suppresses shear-induced melt-temperature spikes that would reduce environmental stress-crack resistance measured according to ASTM D1693-21, condition B, using a 10% Igepal CO-630 solution at 50°C. No pre-drying of natural L5440 is required when silo storage is below 60% relative humidity; if condensation is present, drying at 80°C for 2 h to 4 h is applied. The molded cap is release-tested in tension according to ISO 527-2/1B at 50 mm/min; tensile yield strength of the wall-stock specimen is expected to be not less than 20 MPa.

    Closure torque retention is measured after 24 h at 40°C and 60% relative humidity. The bridge-and-band tamper-evident structure is formed by an undercut of 0.35 mm, split-segment ejection occurs only after mold opening reaches 12 mm, and the gate vestige is maintained below 0.15 mm to avoid lip interference. Color masterbatch is loaded at 2 wt% with a 50:1 let-down ratio; the carrier is a low-viscosity HDPE, not LDPE, to avoid shifting the gate pressure curve. Erucamide-based slip masterbatch is omitted from beverage closures because migration of amide waxes to the neck finish reduces removal torque below the lower specification limit. A slip additive may be used at 0.05 wt% to 0.10 wt% only in cosmetic-closure applications where low release torque is desired. For beverage closures sold in the EU, overall migration is tested under Regulation (EU) No 10/2011 with the limit of 10 mg/dm². The dominant failure mode is not cap breakage but cap-to-neck stress whitening at the hinge point after side-load removal; this is controlled by converting with a melt temperature below 225°C.

    What Limits Wall Thickness Reduction in Thin-Walled Dairy Containers?

    Thin-walled dairy containers molded from L5440 operate at wall sections of 0.45 mm to 0.65 mm. The processing conflict is the intersection of filling pressure, melt temperature, and off-taste. A butter tub with a flow-path length of 90 mm is filled at an injection speed of 35 mm/s to 50 mm/s; cavity fill time is 0.25 s to 0.45 s. Melt temperature above 230°C produces a detectable paraffinic off-taste in high-fat dairy contact, while melt temperature below 200°C creates short shots at the rim and hinge. Mold cooling water is set at 8°C to 12°C, and cycle time is between 4.8 s and 6.0 s for a 0.5 mm sidewall. Food-contact compliance is anchored to FDA 21 CFR 177.1520(c) 3.1b for polyolefins and EU Regulation (EU) No 10/2011. The overall migration limit is 10 mg/dm², and the article is tested with the food simulant assigned under Annex III of Regulation (EU) No 10/2011. Published data for the specific combination of L5440 with high-fat dairy simulants is limited; converter-specific migration testing is therefore mandatory before commercial release.

    A nucleating agent masterbatch is added at 0.05 wt% to 0.15 wt% active content to raise the crystallization temperature by 3°C to 5°C, permitting a cooling-time reduction of 0.8 s to 1.2 s for 0.5 mm walls. Over-nucleation above 0.20 wt% produces brittle rims and early gate freeze-off; the resulting hinge failures are detected after 200 flex cycles at 23°C. The cavity is vented to 0.02 mm depth at the rim to avoid gas burn marks at high fill speed. Because the container is in direct food contact, only additives listed in the Union List in Annex I of Regulation (EU) No 10/2011 are permitted, and the specific migration limit for any slip agent must be verified for the actual wall thickness used. Terminal products include dairy tubs, deli containers, and snap-on lids; each article is subjected to drop testing at 1.2 m onto a rigid surface after 2 h at 4°C to detect cold-temperature hinge fracture.

    Mold-Flow Path Length, Shrinkage Compensation, and Warp in Large-Area Housewares

    A 45-L rectangular storage box with a projected area of 0.25 m² is molded from L5440 using a sequential valve-gated hot runner. Melt temperature is held at 210°C to 220°C. Injection speed is profiled at 15 mm/s for the first 5% of cavity fill to prevent air entrapment, then increased to 45 mm/s. Packing pressure is set at 40 MPa for 6 s. The mold cooling channels are arranged so that the temperature difference between fixed and moving halves remains below 5°C. Differential shrinkage between the flow and transverse directions is measured at 1.3% to 1.8% using ISO 294-4; the open-rim section is compensated by a 0.3 mm inward pre-bend in the tool. Without a post-mold cooling jig, a 45-L box withdrawn at 35°C surface temperature can develop a sidewall bow of 3 mm to 4 mm on the long axis. The part is designed with a minimum rib thickness of 1.5 mm to reduce notch sensitivity at the base corner. Cycle time for a 1.8 mm sidewall is 28 s to 35 s, cooling-limited. Colorant is added at 2 wt% with a high-dispersion PE carrier; pigment survival at 220°C is validated after 3 successive regrind cycles because storage boxes are marketed with recycled content.

    For general household storage, REACH screening is applied to the resin and masterbatch package; SVHC disclosure under Article 33 of Regulation (EC) No 1907/2006 is required only if a listed substance exceeds 0.1 wt% in the final article. If the box is sold as a food-storage container, the same EU No 10/2011 overall migration limit of 10 mg/dm² applies as in dairy packaging, but the test simulant changes according to the intended food type. The long-flow dimen­sional stability of L5440 is used on 60 mm to 80 mm screw-diameter machines with clamp force from 3,000 kN to 8,000 kN; ejection is timed after the pressure transducer at the end of fill falls to 5 MPa.

    Toy components molded from L5440 use a lower melt temperature of 190°C to 210°C and a mold temperature of 10°C to 20°C when tight interlocking fits are required. The cavity pressure sensor triggers holding-pressure switch-over at 30 MPa, after 95% of the cavity volume is filled. Color concentrates are dosed at 4 wt% with a polyolefin carrier. Migration of certain elements is tested according to EN 71-3:2019+A1:2021; in Category III scraped-off material, lead must not exceed 2.0 mg/kg and cadmium must not exceed 1.3 mg/kg. Since HDPE contains no orthophthalate plasticizer, REACH Annex XVII entries 51 and 52 are documented by raw-material specification rather than batch measurement. Regrind addition above 15 wt% lowers the notched Charpy impact value at 23°C below the release limit, making snap-fit tabs crack at the injection-weld line when a toy is drop-tested from 1.0 m onto a rigid surface.

    When Cosmetic Packaging Requires Organoleptic Stability and REACH Migration Compliance

    Cosmetic jars and airless piston reservoirs molded from L5440 require a barrel residence time below 5 min at melt temperature 205°C to 220°C. Screw tips with slit check rings are replaced by ball-check or open-discharge designs; dead spots behind split check rings generate brown specks after 8 h to 12 h of continuous running. High-gloss cavity steel is hardened to HRC 50 to 54 and polished to Ra 0.015 µm; holding pressure of 50 MPa for 3 s is required to replicate the tool gloss on the outer jar wall. Odor and taste transfer are evaluated by ASTM E1870-11 with a sensory panel; no panelist shall detect an off-odor from a 60°C headspace sample after 24 h conditioning. An antistatic additive is dosed at 0.3 wt% to prevent dust attraction on the outer surface. The additive must not increase overall migration above 10 mg/dm² if the jar is dual-marketed for food or oral-care contact under Regulation (EU) No 10/2011. For packages that contact essential-oil-containing formulations, compatibility testing is performed for 72 h at 60°C; weight gain above 2% indicates unacceptable oil absorption and is rejected.

    For cosmetic closures, the low-slip formulation may be used at 0.05 wt% to 0.10 wt% erucamide masterbatch to adjust release torque. The closure is then pre-conditioned at 40°C for 48 h to allow surface migration to equilibrate before torque testing. The terminal articles include cream jars, serum-pump collars, and compact bases; each part is evaluated for dimensional stability after 24 h at 50°C because secondary decoration with heat-transfer film demands a diameter tolerance of ±0.05 mm.

    Regulatory instrumentSpecified limit or test conditionApplication segment
    FDA 21 CFR 177.1520(c) 3.1bHDPE with density greater than 0.94 g/cm³ per ASTM D1505Dairy and food containers
    Regulation (EU) No 10/2011Overall migration limit 10 mg/dm²; specific limits per Annex IIFood-contact packaging
    Regulation (EC) No 1907/2006, Annex XVII entries 51 and 52DEHP, DBP, BBP, DIBP total 0.1 wt% in plasticized materialToys and childcare articles
    EN 71-3:2019+A1:2021Lead 2.0 mg/kg; cadmium 1.3 mg/kg in Category III scraped-off materialToy components
    Directive 2011/65/EU Annex IICadmium 100 mg/kg; lead 1000 mg/kg per homogeneous materialElectrical and electronic housing parts

    For 20-L industrial pails, the process is well-established. L5440 is injected at 200°C to 220°C with a mold temperature of 15°C to 25°C; the handle boss is reinforced by a rib of 2.5 mm thickness to avoid creep under a 40°C stacking load. Outdoor storage formulations incorporate a UV stabilizer masterbatch at 2 wt% and a hindered amine light stabilizer at 0.15 wt%; weathering is evaluated by ASTM D4329-21 for 200 h to 400 h. The terminal articles are pails for non-dangerous goods; UN certification for dangerous goods requires additional drop and stack testing on the actual pail design.

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