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NOVA Chemicals HDPE 59A

    • Product Name: NOVA Chemicals HDPE 59A
    • 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 294632

    As an accredited NOVA Chemicals HDPE 59A factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing NOVA Chemicals HDPE 59A is supplied in 25 kg multilayer bags, palletized at 1,000 kg per pallet for convenient handling.
    Container Loading (20′ FCL) NOVA Chemicals HDPE 59A is packed in 25 kg bags, palletized and shrink-wrapped, with about 18 MT per 20′ FCL.
    Shipping NOVA Chemicals HDPE 59A is supplied as non-hazardous polyethylene pellets, typically shipped in 25 kg bags, 1,000 kg bulk bags, or bulk trucks/railcars. Not regulated for transport. Keep containers closed, dry, and away from heat, sunlight, and ignition sources. Handle with standard industrial hygiene; avoid dust and environmental release.
    Storage Store NOVA Chemicals HDPE 59A in its original, sealed packaging in a cool, dry, well-ventilated warehouse. Protect from direct sunlight, heat, moisture, and contamination. Keep pallets stable and avoid excessive stacking. Maintain good housekeeping to prevent dust and slipping. Keep away from ignition sources and incompatible materials. Close containers when not in use. Follow the manufacturer’s SDS and local regulations.
    Shelf Life NOVA Chemicals HDPE 59A has no defined shelf life; stable under normal storage. Keep cool, dry, away from sunlight, heat, ignition sources.
    Application of NOVA Chemicals HDPE 59A

    NOVA Chemicals SCLAIR 59A high-density polyethylene homopolymer is specified by downstream converters where a linear polymer chain with a solid-state density of 0.960 g/cm³ measured by ISO 1183-1:2019 and a melt flow rate of 0.95 g/10 min under ISO 1133-1:2022 at 190 °C and 2.16 kg permits high-output conversion without the low-viscosity surface defects associated with fractional-melt HDPE. The grade contains no intentional copolymer phase; therefore, applications requiring low-temperature impact below −20 °C concentrate stress at injection weld lines and must be evaluated using ASTM D256-23 notched Izod and ASTM D1693-15b environmental stress crack resistance rather than ductile film tear methods. The downstream scenarios below are confined to conversion routes documented in NOVA Chemicals technical literature and independent polymer processing references: injection-moulded returnable logistics containers, extrusion blow-moulded industrial packagings, heavy-gauge sheet-fed thermoformed dunnage, masterbatch carrier compounding, and structural profile extrusion. Each scenario lists the applicable regulatory clause, the formulation addition ratio range, the production equipment boundary, and the terminal article class.

    Compliance frameworkRelevant clause / test methodThreshold or application boundary
    U.S. FDA21 CFR 177.1520Olefin polymers; extractive limitations apply according to food type, packaging ratio, and service temperature
    European UnionRegulation (EU) No 10/2011, Annex I, Article 12Overall migration ≤ 10 mg/dm²; specific migration limits apply to authorised substances
    REACHRegulation (EC) No 1907/2006, Annex XVIISubstance restrictions in articles; Annex II applies to safety data sheet communication for masterbatch and compound supply
    RoHSDirective 2011/65/EU as amended by (EU) 2015/863, Annex IIPb, Hg, Cr(VI), PBB, PBDE, DEHP, BBP, DBP, DIBP ≤ 0.1%; Cd ≤ 0.01% in homogeneous material
    UN dangerous goods packagingUN Model Regulations, Chapter 6.1, type 3H1Drop, leakproofness, hydraulic pressure, and stack loading per Packing Group II or III

    On injection-moulded returnable distribution crates, automotive dunnage trays, and industrial tote bins, SCLAIR 59A is run at a formulation ratio of 100 parts virgin resin with 1.5–2.5% colour masterbatch and 10–25 parts clean post-industrial regrind from the same grade; the regrind fraction is held below 30% because higher fractions shift the notched Izod impact distribution measured by ASTM D256-23 at 23 °C and reduce the environmental stress crack resistance measured by ASTM D1693-15b, Condition B, 100% Igepal CO-630, 50 °C. Published data for this specific grade at regrind fractions above 30% is limited; production audits should therefore generate ASTM D256-23 and ASTM D1693-15b datasets for each batch. Hydraulic injection-moulding machines equipped with general-purpose screws of 20:1 to 24:1 L/D and shut-off nozzles maintain barrel set-points from 180 °C feed to 220 °C nozzle, with mould temperature controlled at 20–35 °C; when melt temperature exceeds 250 °C, gas splay and molecular-weight degradation become observable on the part surface, and when the mould temperature drops below 15 °C, frozen-in orientation increases flow-direction shrinkage anisotropy by more than 0.4% as measured by ASTM D955-21, a condition corrected by raising the mould manifold temperature rather than by extending cooling time. The applicable compliance documentation includes FDA 21 CFR 177.1520 for dry- or fatty-food crates where the article is intended as a single-use or repeat-use food-contact surface, Regulation (EU) No 10/2011 with an overall migration limit of 10 mg/dm² for food-contact totes sold into the EU, and Directive 2011/65/EU as amended by (EU) 2015/863 for restricted metals and brominated flame retardants, with cadmium limited to 0.01% and the remaining restricted substances to 0.1% by weight in the homogeneous material. Terminal article classes include reusable collapsible bulk totes, closed-top distribution crates, automotive layer pads, and industrial pail liners, with wall thickness specifications typically above 2.5 mm to prevent brittle tear at injection weld lines during multi-trip use.

    What Limits Accumulator-Head Wall Thickness Consistency in 10–30 L Industrial Jerrycan Production?

    Extrusion blow moulding of 10–30 L UN-certified industrial jerrycans places SCLAIR 59A as the base resin because the 0.95 g/10 min melt flow rate positions the parison within the melt-strength corridor required for accumulator-head tooling; formulations are compounded at 100 parts SCLAIR 59A with 1.0–2.0% of a hindered-amine light stabiliser/antioxidant masterbatch and 1.0–2.0% of pigment masterbatch, while conductive solvent-containment articles replace standard colourant with 2–4% of a conductive carbon black masterbatch and must not exceed 5% total masterbatch because sidewall thickness scatter widens beyond 0.4 mm when additive-phase melt viscosity diverges from the base resin. Accumulator-head machines equipped with parison programmers and diverging die gaps maintain die bush temperatures of 195–210 °C and mould temperatures of 10–30 °C; when the melt temperature measured at the die bush exceeds 220 °C, parison sag on 20 L containers reduces pinch-off thickness and sidewall uniformity, while melt temperatures below 180 °C raise the head pressure above 35 MPa and initiate shark-skin on the parison surface. The regulatory envelope includes UN Model Regulations Chapter 6.1 type 3H1 performance tests for drop, leakproofness, hydraulic pressure, and stack loading under Packing Group II or III, ADR, RID, and IMDG multimodal dangerous goods transport requirements, FDA 21 CFR 177.1520 for food-contact or pharmaceutical intermediate containers, and REACH Regulation (EC) No 1907/2006 Annex XVII substance restrictions in articles. Terminal products include 10–30 L industrial jerrycans, 20–60 L automotive DEF and coolant bottles, and laboratory waste containers, with a typical 10 L jerrycan wall weight above 120 g to meet drop tests at −18 °C.

    Sheet-Gauge HDPE for Load-Bearing Thermoformed Dunnage Without a Copolymer Impact Modifier

    For heavy-gauge sheet extrusion feeding plug-assisted thermoforming of material-handling dunnage, SCLAIR 59A is processed at 220–235 °C through a coat-hanger or fishtail sheet die with a lip gap offset 0.10–0.20 mm below the target sheet thickness; the formulation uses 100 parts SCLAIR 59A, 10–20 parts of same-grade edge trim regrind, 1.0–2.0% of a mineral-filled anti-block/nucleating masterbatch, and 0.5–1.0% of processing aid when line speed exceeds 8 m/min. The three-roll polishing stack is controlled at 70–90 °C top roll, 75–95 °C middle roll, and 60–80 °C bottom roll to produce flat sheet; when the top-roll temperature falls below 65 °C, differential crystallisation creates edge curl above 5 mm/m by flatness gauge measurement, which must be removed by downstream trimming and reduces effective yield. Thermoforming is run at sheet surface temperatures of 165–180 °C using plug-assisted vacuum or pressure forming, followed by matched-metal trimming; wall-thickness variation in the formed part is maintained within ±0.3 mm by adjusting plug speed and sheet temperature, not by increasing sheet gauge, because thicker sheet above 8 mm extends heating time beyond standard quartz heater capacity and widens the sag-induced thinning window. For non-food industrial dunnage, regulatory documentation includes REACH Regulation (EC) No 1907/2006, Directive 2011/65/EU as amended by (EU) 2015/863, and customer-specific substance scripts; food-contact thermoformed trays, where manufactured, must comply with Regulation (EU) No 10/2011 for overall migration at 10 mg/dm² and FDA 21 CFR 177.1520. Terminal article classes include pallet separator sheets, interlocking layer pads for automotive stamping lines, and stackable warehouse trays, with sheet thickness from 2 mm to 8 mm and load-bearing performance verified by ASTM D642 compressive resistance or ISO 12048:2000 packaging compression methods.

    High-shear twin-screw compounding of carbon black, organic pigment, and additive masterbatches uses SCLAIR 59A as the carrier resin at 60–70 parts per 100 parts total formulation, with the remaining 30–40 parts comprising pigment or additive concentrate; carbon-black conductive masterbatches for injection-moulded conductive articles may run as high as 40–50% carbon black, with 2–4 parts per hundred carrier of a low-molecular-weight polyethylene wax. Co-rotating twin-screw compounding lines with 40:1 to 52:1 L/D barrels, side-feeders, and underwater pelletisers routinely operate at 400–800 rpm screw speed and melt temperatures below 230 °C, because filler loadings above 50% on this line configuration produce screw-slippage related torque fluctuations and pellet-surface roughness associated with carrier degradation. Regulatory compliance for masterbatch carriers includes REACH Regulation (EC) No 1907/2006 Annex II for safety data sheet communication, Directive 2011/65/EU as amended by (EU) 2015/863 for restricted substances, FDA 21 CFR 177.1520 where the masterbatch is used in food-contact final articles, and Regulation (EU) No 10/2011 migration limits if the masterbatch is carried into food-contact plastics. Terminal products are pelletized masterbatches intended for downstream HDPE pipe, blow-moulded pails, and injection-moulded crates, not for monomer isolation or direct food-contact sale as a neat carrier.

    When SCLAIR 59A Is Used for Structural Profile Extrusion Under Long-Duration Static Load

    Conveyor wear strips, chain guides, and industrial lumber profiles made from SCLAIR 59A require single-screw extruders of 24:1 to 30:1 L/D with breaker-plate filtration and a metering screw of 3:1 to 4:1 compression ratio; the formulation for unfilled profiles uses 100 parts SCLAIR 59A with 1.0–1.5% of a high-molecular-weight antioxidant package, while filled profiles add 2–5% talc or calcium carbonate to raise flexural modulus under ASTM D790-17. Filler addition above 5% reduces notched Izod impact measured by ASTM D256-23 by more than 20% and narrows the stable extrusion window to 200–215 °C, below which the increased melt viscosity elevates head pressure above 30 MPa and above which oxidation-induced surface crazing becomes detectable after 48 h of 80 °C oven ageing conducted according to ASTM D3045-18. Profile calibration is achieved with water-cooled calibration sleeves at 20–40 °C and die temperatures of 195–210 °C; dimensional tolerance on wall thickness is held to ±0.3 mm for cross-sections between 3 mm and 12 mm by controlling haul-off speed against melt pump output. The compliance framework includes REACH Regulation (EC) No 1907/2006 Annex XVII, Directive 2011/65/EU as amended by (EU) 2015/863, and FDA 21 CFR 177.1520 where profiles serve as food-plant equipment contact surfaces; tensile and elongation verification is performed by ASTM D638-22 Type IV specimens, and flexural property measurement by ASTM D790-17. Terminal article types include chain guides, wear strips, bumper profiles, and marine dock edging, in which the continuous service temperature is maintained below 60 °C under static load to avoid creep deformation beyond the design clearance.

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