Products

Borealis HDPE HE1102

    • Product Name: Borealis HDPE HE1102
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications
    HS Code 683731
    Material Type High Density Polyethylene (HDPE)
    Density 0.958 g/cm³
    Melt Flow Rate 190 C 2 16 Kg 0.2 g/10 min
    Tensile Strength At Yield 28 MPa
    Tensile Modulus 1200 MPa
    Elongation At Break >600%
    Charpy Notched Impact Strength 23 C 15 kJ/m²
    Charpy Notched Impact Strength 30 C 8 kJ/m²
    Shore D Hardness 60
    Vicat Softening Temperature 75°C
    Brittleness Temperature -70°C
    Environmental Stress Crack Resistance Escr >1000 h
    Water Absorption <0.01%
    Thermal Conductivity 0.4 W/m·K
    Coefficient Of Linear Thermal Expansion 1.5E-4 /°C
    Melting Temperature 130°C
    Volume Resistivity >1E14 ohm·cm
    Dielectric Constant 2.3

    As an accredited Borealis HDPE HE1102 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Borealis HDPE HE1102 is packaged in 25 kg polyethylene bags, stacked on pallets and wrapped for transport.
    Container Loading (20′ FCL) Container loading (20′ FCL): Borealis HDPE HE1102 in palletized 25 kg bags, shrink-wrapped, secured, and stowed for dry ocean shipment.
    Shipping Borealis HDPE HE1102 ships as non-hazardous high-density polyethylene resin pellets. It is not regulated for transport by DOT, IMDG, IATA, or ADR; no UN number, hazard class, or packing group applies. Use sealed bags or bulk containers, keep dry, and avoid excessive heat, sunlight, and contamination.
    Storage Store Borealis HDPE HE1102 in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, sparks, and open flames. Keep original packaging closed to prevent moisture, dust, and contamination. Avoid prolonged UV exposure and temperatures above 50°C. Stack pallets safely to prevent damage. Handle with care to avoid bag tears. Keep away from strong oxidizers and follow local regulations.
    Shelf Life Borealis HDPE HE1102 typically has a 24-month shelf life when stored dry, cool, and protected from direct sunlight in unopened original packaging.
    Application of Borealis HDPE HE1102

    The conversion of Borealis HDPE HE1102 into extrusion blow-moulded containers for hypochlorite bleach, quaternary ammonium disinfectants, and anionic surfactant detergents places simultaneous demands on environmental stress crack resistance, parison melt strength, and pinch-off weld integrity. On single-cavity shuttle blow moulders with screw L/D ratios of 24:1 to 30:1, barrel temperature profiles ranging from 190 °C to 210 °C and die-head temperatures between 200 °C and 220 °C are used to maintain a uniform melt without initiating oxidative degradation. The die gap is typically set at 0.8 mm to 1.5 mm, producing a parison die swell of 1.5 to 2.0; parison programming adjusts wall thickness from 0.7 mm at the thread area to 1.2 mm at the sidewall to compensate for axial thinning. Environmental stress crack resistance is evaluated according to ASTM D1693-15, condition B, using 100% Igepal CO-630 at 50 °C, while slow crack growth under a constant tensile load is measured following ISO 16770:2004 at 6.3 MPa in 2% nonylphenoxy polyethyleneglycol sulfate solution. Drop-impact resistance after filling is confirmed by ASTM D2463-15 bruceton staircase testing at −18 °C; top-load capacity is measured according to ISO 12048:1994. Bleach formulations containing above 5 wt% available chlorine shorten the crack-initiation window, so qualification testing on full containers under accelerated 40 °C storage is required for each cap and bottle geometry. Regrind from edge trim and reject bottles may be reintroduced up to 20 wt% only when the regrind is free of paper labels, adhesive residues, and alkaline product residues; higher regrind fractions reduce weld-line strength at the pinch-off and increase the incidence of bottom flash cracking. Published grade-specific ESCR data under concentrated hypochlorite exposure is limited, and the processor should validate a minimum notched constant tensile load time of 100 h for industrial chemical containers rather than relying on generic HDPE datasheet values.

    Pharmaceutical Bottle Wall Thickness Uniformity and USP Migration Thresholds

    Within pharmaceutical oral liquid and solid-dose packaging, HDPE HE1102 is processed on cleanroom-configurable extrusion blow moulding lines where batch-to-batch wall thickness variation and extractables control are the principal release criteria. The melt temperature is held between 180 °C and 220 °C, and tooling is selected to maintain wall thickness uniformity of ±0.15 mm across the shoulder, sidewall, and base; this tolerance prevents the formation of thin sidewall bands that reduce child-resistant cap torque retention and increase light transmission in amber-tinted containers. Drop testing follows ISO 8318:2000 or ASTM D2463-15 at −20 °C for syrup bottles, while stacking load is measured by ISO 12048:1994. Pharmacopoeial conformity is demonstrated through USP <661.1> and Ph. Eur. 3.1.3 for polyethylene materials, with migration testing under EU 10/2011 using simulant D2 for aqueous oral formulations and overall migration limits of 10 mg/dm². Elemental impurity risk is assessed through ICH Q3D; heavy metal extraction is typically conducted by ICP-MS after 24 h at 40 °C in 3% acetic acid. Silicone-based mould release sprays are not permitted on the mould surface because silicone transfer can violate USP <661.1> non-volatile residue expectations. Regrind for pharmaceutical bottles is limited to closed-loop scrap from the same grade and the same production campaign; mixing with non-pharmacopoeial HDPE is not permitted under 21 CFR 211.65 equipment cleanliness requirements. Taste-and-odour transfer is evaluated by sensory panels according to EN 1622:2006, and any water rinse of flake before extrusion must use deionized water with conductivity below 5 µS/cm to avoid inorganic residues. The table below summarizes the principal compliance designations applied to this application sector.

    USP <661.1>Infrared spectrophotometry, non-volatile residueConforms to reference polyethylene standard
    Ph. Eur. 3.1.3Extraction in distilled water at 20 °C for 24 hNo turbidity, no colour; residue within monograph limits
    EU 10/2011Simulant D2, 40 °C, 10 daysOverall migration 10 mg/dm²
    FDA 21 CFR 177.1520Olefin polymers, food contactConforms; use conditions to be confirmed by end-user
    ICH Q3DElemental impuritiesAs, Cd, Hg, Pb below oral daily limits

    Where hair shampoo, body wash, and liquid soap formulations contain sodium laureth sulfate, cocamidopropyl betaine, and preservative blends, the blown container wall must resist slow crack propagation over shelf lives exceeding 24 months at ambient warehouse temperatures up to 35 °C. In this application, HDPE HE1102 is run with a parison profile that places 0.6 mm to 0.8 mm at the shoulder and 1.0 mm to 1.2 mm at the lower sidewall, compensating for hoop stress and fill-line flexure during repeated squeezing. Stress crack resistance is screened by ASTM D1693-15, condition B, with an F50 time exceeding 1000 h in 10% surfactant solution at 60 °C, or by ISO 22088-3:2003 U-bend tests in 10% surfactant solution at 60 °C. Fragrance and essential-oil resistance is assessed by gravimetric mass gain after 28 days at 40 °C in 100% limonene as a worst-case simulant; mass gain above 2% indicates potential wall softening, neck ovality, and child-resistant closure back-off. Blow moulds for this sector are polished to SPI A2 finish or finer to permit label adhesion and to reduce microgroove-induced stress concentrations; flame treatment is applied near the neck only if barrier or print adhesion requires surface energy above 38 mN/m. On production lines, the primary failure modes are irregular parison wall distribution at the pinch-off and entrapped air at the mould vents, which create thin spots with ESCR initiation times reduced by up to 40%. Venting is maintained at 0.05 mm to 0.10 mm channel depth and cleaned every 500 cycles to prevent gas entrapment. Grade-specific ESCR data for cosmetic surfactant systems is limited; a full container crack test at 50 °C in diluted product concentrate is therefore specified for new moulds.

    Can HE1102 Serve as a Low-Sag Parison Base for Food Contact Jerrycans Under EU 10/2011?

    Food contact jerrycans produced from HDPE HE1102 for vinegar, edible oil, soy sauce, and dry food powders operate in a regulatory and mechanical environment where low-sag parison behaviour and organoleptic neutrality must be maintained simultaneously. On accumulator-head extrusion blow moulding lines with shot sizes from 1 kg to 5 kg, the melt temperature is set between 185 °C and 210 °C to limit parison sag while retaining surface gloss; parison sag below 15% elongation under its own weight over 3 s is typical for high-molecular-weight HDPE blow moulding grades. Monolayer jerrycans are suitable for short-term room-temperature contact with aqueous and acidic food simulants, but fatty food simulant D1 under EU 10/2011 may require migration testing beyond 10 days at 40 °C because lipophilic constituents can extract low-molecular-weight polyethylene oligomers. Overall migration for aqueous simulants is below 10 mg/dm², and specific migration of antimony, chromium, and zinc remains below detection limits when the raw material is produced without catalyst residues exceeding 20 mg/kg. Organoleptic testing follows EN 1622:2006; a taste transfer threshold must be confirmed for each colour masterbatch, since low-molecular-weight colorant carriers can impart off-taste at addition levels below 0.5 wt%. The pinch-off weld for handled jerrycans is the critical stress concentration, and top-load testing according to ISO 12048:1994 on filled containers is performed at 23 °C and 40 °C after 24 h stacking at 3 m height. Hot-fill above 60 °C is outside the operational boundary for monolayer HE1102 because sidewall vacuum collapse and thread distortion occur when the internal vapour pressure drops during cooling. For fat levels above 5% and long storage, multilayer barrier structures with EVOH or polyamide are required, and HE1102 is then limited to the outer cap layer.

    In automotive windshield washer reservoirs, coolant expansion tanks, and auxiliary fluid bottles manufactured on accumulator-head extrusion blow moulding lines, HDPE HE1102 is specified for its methanol-water and ethylene-glycol resistance combined with low-temperature impact. The wall thickness is profiled between 2 mm and 3 mm for reservoirs with capacity from 1.5 L to 5 L; parison programming maintains a thicker upper neck area and a reinforced bottom pinch-off zone because these are the regions that fail in −30 °C impact tests. Charpy notched impact values are measured according to ISO 179-1:2010 at −30 °C and are reported as kJ/m² values for quality control; tensile yield stress is tested by ISO 527-2:2012 at 23 °C with 50 mm/min crosshead speed. Blow pressure is maintained at 0.6 MPa to 0.8 MPa with compressed air filtered to 5 µm; higher pressure does not improve mould conformity and can cause flash blow-out at the parting line. Chemical compatibility screening involves immersion in 50% methanol-water and 50% ethylene glycol-water at 60 °C for 7 days; mass change above 1% or dimensional change above 0.5% triggers a design review. The application is not approved for continuous exposure to aromatic hydrocarbons, ketones, or strong oxidizing acids; windshield washer solvents containing isopropanol above 30% should be evaluated for stress cracking because alcohol-induced plasticization reduces the ESCR of HDPE. Production experience shows that insert moulding of threaded brass inserts introduces local cooling-rate differences and can create sink marks at the insert base; insert temperature must be held above 80 °C before closure to minimize post-mould cracking. Welding of brackets by hot-plate welding is performed at 210 °C for 20 s and cooled under 0.2 MPa pressure, but welded bosses are a known crack-initiation site when the reservoir is filled with concentrated washer concentrate at −20 °C. Grade-specific impact data for HE1102 in automotive fluid environments is limited; component-level validation per ISO 16750-3:2012 is required.

    When Recyclate Content Exceeds 30 wt%, Pinch-Off Weld Integrity Becomes the Limiting Variable

    Closed-loop scrap from HE1102 blow moulding operations is recompounded on twin-screw extruders with L/D ratios of 36:1 to 44:1 and melt filtration screens of 80 mesh to 120 mesh. Below 20 wt% recyclate, ESCR and notched impact retention are generally acceptable for non-food detergent containers, but above 30 wt% the limiting variable shifts to pinch-off weld integrity at the container base. The weld is formed by melt compression at the mould parting line; recycled polymer contains gel particles, degraded low-molecular-weight fractions, and residual product contamination that increase local viscosity and prevent complete interfacial welding. Pinch-off weld strength is tested by cutting a 25 mm wide strip across the weld and loading it in tensile mode at 50 mm/min; weld efficiencies below 80% of the parent wall are considered rejectable for stacked warehouse loads. ESCR testing according to ASTM D1693-15, condition B, typically shows a non-linear reduction when recyclate content rises from 20 wt% to 50 wt%, but published grade-specific data for HE1102 under these blends is limited; therefore, a three-point batch test at 20 wt%, 30 wt%, and 50 wt% recyclate is recommended before production release. Melt filtration pressure increase above 40 bar indicates screen blinding by paper fibres, aluminium foil, or PET label flakes; screen changes are then required at intervals below 8 h to avoid shear degradation. Blown containers with recyclate levels above 50 wt% are not qualified for food contact, pharmaceutical, or cosmetic applications, and they should be limited to non-regulated industrial chemical packaging with wall thickness not less than 1.2 mm. Batch-to-batch variance in recycled flake melt flow index is controlled by blending to a target MFR of 0.5 g/10 min to 1.0 g/10 min at 190 °C/2.16 kg; deviations outside this range alter parison sag and require adjustment of die gap and blow delay time.

    Free Quote

    Competitive Borealis HDPE HE1102 prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8618136850665 or mail to admin@ascent-chem.com.

    We will respond to you as soon as possible.

    Tel: +8618136850665

    Email: admin@ascent-chem.com

    Inquiry

    Get Free Quote of Ascent Petrochem Holdings Co., Limited

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    Top