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Borealis HDPE BS4641

    • Product Name: Borealis HDPE BS4641
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications
    HS Code 781855
    Material Type High Density Polyethylene (HDPE)
    Density 0.954 g/cm3
    Melt Flow Rate 190 C 2 16 Kg 0.2 g/10 min
    Tensile Stress At Yield 26 MPa
    Tensile Strain At Break >600 %
    Tensile Modulus 1200 MPa
    Flexural Modulus 1300 MPa
    Charpy Notched Impact Strength At 23 C 20 kJ/m2
    Charpy Notched Impact Strength At 30 C 8 kJ/m2
    Vicat Softening Temperature 125 C
    Melting Temperature 135 C
    Ball Indentation Hardness 50 MPa
    Water Absorption <0.01 %
    Thermal Conductivity 0.40 W/m.K
    Coefficient Of Linear Thermal Expansion 1.5E-4 /C
    Dielectric Constant At 1 Mhz 2.3
    Volume Resistivity >1E14 ohm.cm

    As an accredited Borealis HDPE BS4641 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Borealis HDPE BS4641 is typically packaged in 25 kg polyethylene bags, palletized and shrink-wrapped for secure industrial transport.
    Container Loading (20′ FCL) Borealis HDPE BS4641 in 25 kg bags, palletized, 20 pallets per 20′ FCL, dry container, uniform stacking, secured for transport.
    Shipping Borealis HDPE BS4641 is shipped as non-hazardous polyethylene pellets, typically in 25 kg moisture-proof bags or octabins, palletized and stretch-wrapped. Transport in clean, dry vehicles. Store cool, dry, away from direct sunlight and ignition sources. No dangerous goods classification applies; follow standard handling and spill precautions.
    Storage Store Borealis HDPE BS4641 in a cool, dry, well-ventilated area, away from direct sunlight, heat, ignition sources, and strong oxidizers. Keep in original, closed packaging on pallets to prevent moisture and contamination. Avoid excessive stacking and prolonged UV exposure. Maintain good housekeeping; spilled pellets are slippery. Use first-in, first-out stock rotation. Observe local regulations and manufacturer’s recommendations.
    Shelf Life Shelf life is typically 24 months from delivery when stored unopened in original packaging, dry, and protected from direct sunlight.
    Application of Borealis HDPE BS4641

    Container manufacture for 2,4-D amine salt concentrates and emulsifiable concentrate crop protection products is constrained less by the top-load strength of the HDPE than by the environmental stress cracking resistance of the pinch-off weld after the filled pack is conditioned for 72 h at 40 °C and subjected to a 1.2 m drop at -18 °C in accordance with UN Model Regulations 6.1.5.3. Borealis HDPE BS4641, produced via the Borstar bimodal process, combines a density of approximately 0.964 g/cm³ under ISO 1183-1 with a melt flow rate of 0.45 g/10 min under ISO 1133-1:2022 at 190 °C/2.16 kg, which controls parison sag on accumulator-head machines. The resin is not an injection moulding grade; its high-molecular-weight tail provides the hang strength required for monolayer jerrycan walls with a target thickness of 1.2 mm to 2.0 mm.

    For a white 5 L jerrycan, the masterbatch let-down ratio is set at 4.0 wt% when a 60 wt% TiO2 colour concentrate is used, producing a wall-level TiO2 loading of 2.4 wt%. A UV-stabilised concentrate containing 10 wt% HALS is let down at 1.5 wt%, resulting in an active HALS concentration of 0.15 wt%. Regrind from trimmed flash is restricted to 20 wt% for UN Packing Group II liquids because higher regrind fractions reduce the notched constant tensile load ESCR under ISO 16770:2004 and increase crack initiation probability at the handle weld. Validation of the final pack with the actual solvent blend is required under ISO 16101:2004; published data for this specific UN drop-test combination with BS4641 is limited.

    Extrusion is carried out on a grooved-barrel single-screw extruder with a 24:1 L/D and a barrier screw geometry. Die-head melt temperature is held between 180 °C and 195 °C; below 175 °C, the melt fracture risk at the die lip increases, while above 200 °C, parison hang strength falls on long-stroke tools. The accumulator head uses a 10-point parison programming profile to shift wall thickness from the shoulder region to the base. Mould cooling water is maintained at 10 °C to 15 °C; cycle time for a 5 L container on a single-station shuttle machine is 55 s to 75 s depending on bottle weight. Terminal articles include 1 L and 5 L F-style bottles, 10 L and 20 L jerrycans, and tamper-evident closures.

    TestRegulatory referenceConditionPass criterion
    Drop testUN 6.1.5.31.2 m drop at -18 °C, Packing Group IINo leak or rupture
    LeakproofnessUN 6.1.5.420 kPa air pressure for 5 minNo leakage at closures
    Hydraulic pressureUN 6.1.5.5Internal pressure per Packing Group IINo leakage or deformation
    Stack loadUN 6.1.5.6Load equivalent to 3 m stack, 28 days, 40 °CNo deformation affecting contents

    When Sodium Hypochlorite Is Filled at 500 mL, Which Failure Mode Migrates from the Weld Line to the Pinch-Off Zone?

    A water-white 4% sodium hypochlorite formulation filled into monolayer HDPE generates a specific failure sequence that is not governed by top-load compression but by environmental stress cracking at the handle pinch-off and the cap-torque seat. Unlike agrochemical concentrates, the oxidising hypochlorite environment attacks secondary crystallite tie molecules at the same time as it converts brominated or chlorinated organic residues in unsuitable masterbatches into surface discolouration. For this reason, the regulatory path for the container is not limited to the filled product rules under EC 648/2004; the material formulation must also meet REACH (EC) 1907/2006 and the heavy-metal restrictions in 94/62/EC, with a combined lead, cadmium, mercury, and hexavalent chromium ceiling of 100 mg/kg.

    An opaque 1 L bleach bottle usually uses a 3.0 wt% let-down of a 50 wt% TiO2 white masterbatch, giving 1.5 wt% TiO2 in the final wall. Regrind is restricted to 30 wt% because heat history from repeated extrusion increases the concentration of hydroperoxide species; when regrind reaches 50 wt%, the F50 value under ASTM D1693-15 condition A in 10% Igepal CO-630 can fall below the 48 h threshold that many detergent packers set as a batch release criterion. Published data for this specific concentration of sodium hypochlorite with BS4641 is limited, so the 48 h F50 threshold is a packer-generated specification rather than an ISO minimum.

    Production is run on multi-head shuttle blow moulding machines with clamp force per cavity between 80 kN and 150 kN. The melt temperature measured at the die entry is kept between 175 °C and 190 °C; exceeding 195 °C increases the concentration of short-chain oxidation products at the inner wall and accelerates bleach-induced cracking. The pinch-off zone is trimmed after demoulding and inspected at 10× magnification for incomplete fusion; a minimum weld thickness of 0.8 mm is maintained for a 1 L bottle with a nominal wall thickness of 0.65 mm. Terminal products include 500 mL, 750 mL, 1 L, and 2 L bottles with screw-neck finishes.

    High-Gloss Bottle Production for Personal Care Formulations under Organoleptic Drift Limits

    For opacified HDPE bottles in the 150 mL to 800 mL range, mould surface replication and batch-to-batch colour drift are secondary to the migration threshold set by Regulation EC 1223/2009 Article 17, which requires that packaging leachables do not compromise the safety of the finished cosmetic product. The container is not a food-contact article in this application, but it is assessed for organoleptic neutrality, non-visible migration, and absence of substances classified as CMR under Annex II of EC 1223/2009. The resin’s low odour and low extractables profile is maintained when aromatic hydrocarbon-based external lubricants are excluded and only high-purity polyethylene waxes are used.

    A white/pearlescent concentrate with 25 wt% mica and 8 wt% TiO2 is let down at 2.0 wt% to 3.0 wt%, yielding 0.5 wt% to 0.75 wt% mica and 0.16 wt% to 0.24 wt% TiO2 in the wall. Metal stearate mould release agents are not compounded into the resin; if demoulding is marginal on deep-draw handles, a food-contact-approved silicone mould spray is applied externally. The addition ratio must be re-validated when the masterbatch carrier is LLDPE rather than HDPE, as effective LLDPE content above 1.5 wt% in the final wall can reduce surface gloss and increase die-lip plate-out.

    Tooling consists of polished aluminium blow moulds maintained at 12 °C to 18 °C; lower mould temperatures raise surface gloss but increase cooling stress at the handle root. Extrusion uses a 60 mm to 80 mm single-screw extruder with a 25:1 L/D and a low-shear Maddock mixing section. Melt temperature is kept at 170 °C to 185 °C, deliberately lower than the agrochemical container process, because high melt temperature accelerates the formation of low-molecular-weight oxidation products that can alter fragrance headspace in the filled product. Terminal articles include 150 mL to 800 mL cylindrical and oval bottles with 24/410 and 28/410 neck finishes, surface-gloss readings above 85 GU at 60° as measured by ISO 2813.

    Food-contact extrusion blow moulding of HDPE for edible oil, soy sauce, vinegar, and dry powder scoops is governed by global migration limits rather than mechanical strength alone. Under EU 10/2011, the overall migration limit is 10 mg/dm² of food contact surface area; under FDA 21 CFR 177.1520, the olefin polymer must meet density and extractables conditions for the intended food type. Borealis HDPE BS4641 is an olefin polymerisation product without intentionally added bisphenol A, phthalates, or heavy-metal pigments; therefore food-grade compliance is primarily controlled by masterbatch selection, regrind stream segregation, and extruder purge practice.

    A food-grade white masterbatch with a 60 wt% TiO2 loading is let down at 2.0 wt% to 4.0 wt%, yielding 1.2 wt% to 2.4 wt% TiO2 in the container wall. If a mixed metal oxide pigment concentrate is required for colour coding, the let-down is held at ≤1.5 wt% because transition metal migration must remain below the specific migration limits in Annex II of EU 10/2011. Regrind from food-grade trimming is restricted to 20 wt%; higher regrind fractions introduce repeated heat history that increases low-molecular-weight oxidation products and can shift overall migration values upward in finished article testing.

    Production is run on a shuttle blow moulder with stainless steel contact surfaces, a dedicated food-grade regrind circuit, and purge protocols that exclude non-food colourants. Melt temperature is trimmed to 175 °C to 190 °C; higher temperatures increase the concentration of volatile oxidation products that contribute to organoleptic taint. The mould cooling water is set at 10 °C to 16 °C. Before first use, finished containers are subjected to EU 10/2011 overall migration testing using 95% ethanol and 3% acetic acid simulants for aqueous and acidic foods. Terminal articles include 500 mL to 5 L bottles for edible oil, soy sauce, vinegar, and dry powder scoops. Published data for specific migration behaviour of every pigment masterbatch with BS4641 is limited; each colourant must be validated in the final wall thickness and food simulant.

    If Calcium Sulfonate Detergent Additives Exceed 15 wt% in the Fill, What Happens to Regrind Levels in Barrier-Free Drums?

    Lubricant additive packages based on calcium sulfonate detergents, zinc dialkyldithiophosphate anti-wear agents, and olefin copolymer viscosity modifiers present a specific solvent-swelling and stress-cracking environment for monolayer HDPE pails. When the calcium sulfonate content in the fill exceeds 15 wt%, the aliphatic carrier oil fraction penetrates the amorphous regions of the HDPE wall, lowering the glass transition slightly but more importantly reducing the environmental stress crack resistance of the pinch-off weld at the pail rim. The container is therefore assessed under ISO 16101:2004 compatibility testing for dangerous goods packaging, even where the lubricant itself is not classified for transport.

    A carbon black masterbatch with 40 wt% furnace black is let down at 2.0 wt% to 3.0 wt%, giving 0.8 wt% to 1.2 wt% carbon black in the wall to reduce UV-assisted embrittlement during warehouse storage. Regrind is restricted to 15 wt% for 10 L and 20 L pails because oil absorption in recycled HDPE increases the free volume and accelerates crack initiation at the handle junction. Above 15 wt% regrind, the full-notch creep test time under ISO 16770:2004 with 4 MPa stress at 50 °C can fall below the 24 h criterion used in internal qualification protocols.

    The extrusion blow moulding line uses an accumulator head with a 25:1 L/D extruder and a parison programmer configured for a wall thickness of 2.5 mm to 3.5 mm at the lower sidewall. Melt temperature is held at 180 °C to 195 °C. Because thick-wall pails require extended cooling, the cycle time on a single-station long-stroke machine is 75 s to 110 s; cooling air is introduced at 8 °C to 12 °C after demoulding to reduce post-mould shrinkage before cap sealing. Terminal products include 10 L and 20 L barrier-free drums, 5 L and 6 L pails, and open-head containers for metalworking fluid concentrates.

    Cross-Batch Density Drift in Regrind-Rich Non-UN Transport Pails

    When post-industrial flash from HDPE blow moulding is recovered, ground, and reintroduced into non-UN general-purpose pails, the process shifts from single-resin rheology to a mixture whose density, melt flow rate, and dart impact resistance are batch-dependent. BS4641’s bimodal molecular weight distribution is altered by the thermal history of reprocessing; the high-molecular-weight tail begins to chain-extend or crosslink depending on residence time, while the low-molecular-weight fraction is partially consumed, causing the melt flow rate to drift downward by as much as 0.05 g/10 min per repeated pass at 190 °C/2.16 kg. This drift must be controlled with blend ratios, not by raising melt temperature, because higher temperature accelerates further oxidation.

    For non-food pails, regrind content is adjusted between 20 wt% and 50 wt%, with an antioxidant replenishment masterbatch let down at 0.5 wt% to 1.0 wt% to restore processing stability. The antioxidant masterbatch must be based on a non-staining hindered phenolic/phosphate blend; amine-based additives are avoided because they can form colour bodies and interfere with post-consumer odour specifications under REACH and voluntary packaging schemes. A batch-to-batch density check is performed under ISO 1183-1 and must remain within ±0.003 g/cm³ of the nominal 0.964 g/cm³; deviation beyond 0.967 g/cm³ indicates contamination by higher-density material or excessive filler from recycled waste streams.

    Extrusion is run on a grooved-barrel single-screw blow moulder with a 24:1 L/D and a static blender in the melt stream. Melt temperature is set at 180 °C to 190 °C; the screw speed is reduced to 35 min⁻¹ to 45 min⁻¹ to limit shear heating when running 50 wt% regrind. The parison programme is biased toward a thicker base and rim because dart impact testing under ISO 6603-2 shows that failure initiates at the transition between nominal wall and thickened rim when the wall step exceeds 1.7:1. Terminal products include non-UN transport pails of 3 L to 12 L, reconditioned industrial containers, and non-food storage bins. Published data for repeated reprocessing of BS4641 is limited; plant-specific regrind validation is required at each addition level.

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