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Hanwha HDPE 3392

    • Product Name: Hanwha HDPE 3392
    • 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 598867

    As an accredited Hanwha HDPE 3392 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Hanwha HDPE 3392 is packaged in 25 kg PE-lined bags on pallets, with 1,000 kg jumbo bags available.
    Container Loading (20′ FCL) Hanwha HDPE 3392 in 20′ FCL: 25 kg bags, palletized, shrink-wrapped, securely floor-loaded; approximately 18–22 MT per container.
    Shipping Hanwha HDPE 3392 is a non-hazardous high-density polyethylene resin, not regulated for transport. It ships in 25 kg bags, 500–1000 kg jumbo bags, or bulk containers on pallets by truck or sea. Keep dry, sealed, and away from direct sunlight, heat, and moisture.
    Storage Store Hanwha HDPE 3392 in a cool, dry, well-ventilated area away from direct sunlight, heat, sparks, and flames. Keep original containers or bags closed to prevent moisture, dust, and contamination. Avoid contact with strong oxidizers. Maintain clean floors because spilled pellets can be slippery. Store on pallets, do not overload, and follow local regulations and supplier recommendations.
    Shelf Life Hanwha HDPE 3392 shelf life: indefinite when stored unopened in a cool, dry, ventilated area, away from heat and sunlight.
    Application of Hanwha HDPE 3392

    Hanwha HDPE 3392 is an injection-moulding grade high-density polyethylene with a nominal melt flow rate of 8.0 g/10 min at 190 °C/2.16 kg (ISO 1133-1:2022) and a density of 0.956 g/cm³ (ISO 1183-1:2019). The grade is characterised by a narrow molecular weight distribution which controls die swell and melt elasticity in high-speed multi-cavity tooling; typical tensile yield stress is 25 MPa (ISO 527-2:2012) and flexural modulus is 980 MPa (ISO 178:2019). Because high-density polyethylene is non-hygroscopic, pre-drying is not normally required, but granulate stored in unheated humid warehouses at RH above 70% may carry surface condensation; a hopper dryer set at 60–70 °C for 1–2 h prevents splay and internal voids. The grade is not suitable for continuous use above 80 °C or immersion in strong oxidizing acids, aromatic hydrocarbons, and concentrated non-ionic surfactant solutions; environmental stress cracking initiates at molded-in stresses and surface scratches. The following application scenarios are limited to downstream injection-moulding sectors where the melt flow, stiffness, and molecular architecture are directly relevant.

    In thin-wall dairy and delicatessen container production, the resin’s low die swell permits filling of wall sections between 0.6 mm and 1.2 mm without excessive drool at the valve gate when melt temperature is held between 210 °C and 240 °C. Compliance for food contact is established under FDA 21 CFR 177.1520 for olefin polymers and, in the European Union, under Regulation (EU) 10/2011 with the Annex II overall migration limit of 10 mg/dm²; converters must still confirm the finished container because any colour masterbatch may have its own positive-list status under 21 CFR 176.170(c) Table 1 or EU 10/2011 Article 5. The formulation addition ratio in virgin production is typically 100 wt% Hanwha HDPE 3392 with 0.5–2.0 wt% food-approved colour masterbatch and 0.05–0.10 wt% phenolic antioxidant masterbatch; if in-house reclaim is added, the loading should not exceed 20 wt% unless the finished container is re-tested for overall migration under the intended food simulant. Downstream production runs on accumulator-assisted injection moulding machines with clamp force from 250 t to 600 t and screw L/D ratio 20:1 to 25:1; hot runner manifolds are maintained at 210–230 °C, back pressure at 0.5–1.0 MPa, and mould walls at 10–20 °C to minimize cycle time. Containers are ejected at 40–60 °C surface temperature and stacked only after 24 h to reduce rim deformation from post-demoulding crystallinity development. Final article categories include 250–1,000 ml dairy tubs, delicatessen cups, takeaway containers, and snap-on lids in high-speed packaging lines.

    What Limits Torque Retention in Tamper-Evident HDPE Closures?

    Closure conversion of Hanwha HDPE 3392 typically occurs in 48–96-cavity valve-gated hot-runner tools where cycle time is the main cost driver and the melt is processed at 200–240 °C with mould cooling water at 8–15 °C. The formulation addition ratio usually includes 0.06–0.12 wt% erucamide slip agent, 0.05–0.10 wt% antioxidant masterbatch, and 1.0–2.0 wt% colour masterbatch; erucamide additions above 0.15 wt% are not recommended because the excess surface amide, while lowering initial coefficient of friction, also plasticizes the tamper-evident bridge and reduces torque retention by 10–18% after 72 h of ageing in purchaser-specific ASTM D2063 testing. Published data for this specific closure configuration in Hanwha HDPE 3392 is limited, so closure producers should cross-check application torque versus removal torque after 24 h and 7 days on the actual bottle finish. Regulatory compliance for beverage and dairy closures relies on FDA 21 CFR 177.1520 and EU 10/2011; pharmaceutical or personal-care closures require additional physicochemical assessment under USP <661.1>. Downstream equipment is typically a high-speed injection moulder with 250–500 t clamp force, cold-runner or hot-runner valve drop, and barrel residence time not exceeding 8 min to avoid gel specks. The tamper-evident band is produced by a collapsible core or side-action, and hinged closures require flow orientation across the living hinge; local melt temperature above 240 °C causes molecular relaxation and hinge cracking. Final article categories include 28 mm PCO 1881 carbonated soft drink closures, still water screw caps, dairy and juice screw caps, and dispensing overcaps.

    Because UN-rated pails require consistent impact toughness after drop testing at -18 °C, converters using Hanwha HDPE 3392 maintain melt temperature between 200 °C and 230 °C to prevent molecular weight reduction while still filling wall thicknesses of 1.5–3.5 mm. Compliance for transport of liquids rests on the UN Model Regulations Chapter 6.1 for plastics drums and jerricans, specifically the removable-head plastic jerrican designation 3H2, with a Packing Group II drop height of 1.9 m and a stack test at 40 °C for 28 days; ADR/RID and other national dangerous goods regulations reference the same design-type certification. Formulation loading in this sector commonly includes 1.5–2.5 wt% carbon black or UV masterbatch for outdoor storage, 0.08–0.12 wt% antioxidant package, and up to 25 wt% clean post-industrial regrind from captive pail scrap; higher regrind levels must be qualified by repeating the drop test because recycled content introduces higher surface oxidation and low-temperature brittle failure. Injection moulding of pails is carried out on thick-wall tools with one to four cavities, clamp force from 350 t to 700 t, injection pressure 80–120 MPa, and cooling time 25–40 s; the lid seat diameter is controlled by a post-mould cooling ring to avoid ovality exceeding 1.5 mm. Failure modes observed in production include top-rim sink at the handle boss and environmental stress cracking at the gate if packing pressure is prematurely released. Final articles include 5–25 L open-top pails for paints, lubricants, detergents, and edible oil, plus injection-moulded lids with tear-tab seals.

    Table 1 consolidates the certification boundaries that appear across the application scenarios; converters should treat these as pre-tooling checkpoints.

    ScenarioMandatory standard or regulationTest condition or designationTypical acceptance boundary
    Thin-wall food packagingFDA 21 CFR 177.1520; EU 10/2011Overall migration, aqueous/3% acetic acid simulant10 mg/dm² total migration
    Beverage closuresFDA 21 CFR 177.1520; ASTM D2063; ISO 8295Torque retention; coefficient of frictionRemoval torque within end-use specification; slip COF below 0.25
    Industrial pailsUN 3H2; ADR/RIDPacking Group II drop height; stack test 40 °C/28 daysNo leakage or rupture after drop at 1.9 m
    Pallets and distribution cratesISO 8611-1:2021; EN 13117-1Compression strength; racking loadNo visible crack or buckling at specified rated load
    Toy componentsEN 71-3:2019; ASTM F963-23; CPSIA Section 108Migration of elements; phthalate contentElement limits per Category III; 0.1% total regulated phthalates
    Pharmaceutical closuresUSP <661.1>; FDA 21 CFR 177.1520Physicochemical tests, total organic carbon, extractablesUSP monograph and compendial limits

    When a 1,200 mm × 1,000 mm Pallet Deck is Moulded Without Gas Counterpressure

    The predominant process conflict in pallet moulding arises at the junction between the 8–25 mm deck surface and the underside rib network, where differential cooling produces sink marks and warpage if cavity surface temperature varies by more than 10 °C across the tool face. Hanwha HDPE 3392 is processed here at melt 200–220 °C, lower than thin-wall processing, to reduce post-demoulding shrink and maintain the flexural modulus required for racking. Compliance for pallets and distribution crates is verified under ISO 8611-1:2021 for flat pallet testing, with rated load compression and racking tests, and EN 13117-1 for reusable rigid plastics distribution boxes; food-contact pallets may additionally be evaluated under FDA 21 CFR 177.1520 if the pallet is intended for direct hygienic contact. The formulation addition ratio for heavy-duty logistics typically includes 20–35 wt% clean post-industrial HDPE regrind, 2.0 wt% carbon black masterbatch, and 0.1 wt% process stabilizer; if 5–10 wt% linear low-density polyethylene is added to raise cold impact, flexural modulus falls by roughly 8–12%, and above 15 wt% LLDPE the deck can deflect beyond specification under rated racking load. Injection is performed on large-platen machines with clamp force from 1,200 t to 2,500 t, using a screw L/D of 20:1 to 25:1, fill time 4–8 s, packing pressure 70–110 MPa held 20–30 s, and total cycle time 180–260 s. Thick sections require mould wall temperatures of 12–25 °C and conformally cooled cores at the rib roots; post-mould flatness is checked with a granite table and feeler gauge, with a typical acceptance of ±5 mm diagonal flatness on a 1,200 mm deck. Final articles include 1,200 × 1,000 mm distribution pallets, 600 × 400 mm display pallets, 400 × 300 mm stackable crates, and pallet collars.

    Conventionally, household storage bins and hangers made from Hanwha HDPE 3392 are dry-blended with 1.0–2.0 wt% pigment masterbatch and injection-moulded on general-purpose presses at melt 200–230 °C and mould temperature 15–30 °C, with no special regulatory burden beyond REACH Annex XVII and RoHS Directive 2011/65/EU for general consumer articles.

    Toy Component Moulding and Element Migration Limits

    Toy components made from Hanwha HDPE 3392 generally fall under Category III scraped-off toy materials, for which EN 71-3:2019 sets migration limits for 19 elements across three material categories; in the United States, ASTM F963-23 heavy-element solubility and CPSIA Section 108 phthalate limits apply to the finished component. Because the resin contains no added phthalate plasticizer, the phthalate risk is confined to cross-contamination from colour masterbatches, so the formulation addition ratio is typically 2.0–3.0 wt% pigment masterbatch, 0.05–0.10 wt% hindered phenol antioxidant, and 0.2–0.5 wt% hindered amine light stabilizer when the toy part is intended for outdoor use; all additive packages must be pre-vetted for the relevant toy safety test. Downstream production uses multi-cavity cold-runner tools, clamp force 150–400 t, melt temperature 200–230 °C, mould temperature 15–30 °C, and cooling time 15–35 s depending on part thickness; the tool design should avoid sharp corners below 0.5 mm radius to prevent stress concentration at the gate. Final article categories include outdoor play panels, sandbox boards, toy storage crates, and wheeled ride-on toy platforms, each requiring batch-specific migration documentation before release.

    Pharmaceutical Closure Moulding Demands Cold Runner Polishing and USP Physicochemical Testing

    Dispensing closure conversions for lotion pumps, toothpaste flip-top caps, and pill container lids exploit the same narrow molecular weight distribution that reduces warpage in high-cavity closure tools, but pharmaceutical applications add extractable and physicochemical constraints that food packaging does not require. Compliance is demonstrated under USP <661.1> for plastic materials of construction and FDA 21 CFR 177.1520 for olefin polymer stock, while EU supply chains must also satisfy Regulation (EU) 10/2011 and USP <661.2> if the closure is part of a complete packaging system. The formulation addition ratio is held at 0.06–0.10 wt% erucamide, 0.05–0.10 wt% antioxidant masterbatch, and 0.5–1.0 wt% colour masterbatch; silicone masterbatches above 0.5 wt% are not recommended because they can deposit surface siloxane that alters seal integrity and increases extractable organic residues under USP <661.1>. Processing occurs on 32–64-cavity cold-runner or hot-runner tools with highly polished runner surfaces to reduce black specks, melt temperature 190–230 °C, mould cooling water at 10–15 °C, cycle time 10–16 s, and screw decompression 3–5 mm to prevent drool at the nozzle. The living hinge on a flip-top closure is a critical processing threshold: thickness is set at 0.25–0.50 mm and local hot spots above 240 °C cause premature flexural fatigue failure below 104 cycles in purchaser-specific hinge endurance testing. Final article categories include 5–100 ml lotion pump caps, toothpaste flip-top caps with wide hinge, and child-resistant pill container closures manufactured under certified conditions.

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