| HS Code | 367953 |
As an accredited LyondellBasell HDPE LB502-01 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | LyondellBasell HDPE LB502-01 is typically packaged in 25 kg polyethylene bags or 1,000 kg bulk bags. |
| Container Loading (20′ FCL) | 20′ FCL loading of LyondellBasell HDPE LB502-01: palletized 25 kg bags, shrink-wrapped, strapped, and secured for safe ocean transport. |
| Shipping | LyondellBasell HDPE LB502-01 is a non-hazardous polyethylene resin pellet. Ship in original sealed bags, octabins, or bulk trucks/railcars. Store in cool, dry areas away from sunlight, moisture, and contamination. Use clean, covered equipment and follow applicable transport regulations. Avoid puncturing packaging. |
| Storage | Store LyondellBasell HDPE LB502-01 in a cool, dry, well-ventilated area away from direct sunlight, heat, flames, and strong oxidizers. Keep containers or bags sealed, dry, and off the floor on pallets. Prevent moisture, dust, and contamination. Avoid prolonged UV exposure and extreme temperatures. Store in original packaging, rotate stock, and follow the manufacturer’s SDS and local regulations. |
| Shelf Life | LyondellBasell HDPE LB502-01 has a typical shelf life of 24 months if stored unopened, dry, at ambient temperature, away from direct sunlight. |
Within UN 1H1 hazardous goods packaging lines, LyondellBasell HDPE LB502-01 is specified at 100 wt% base resin for monolayer jerry can bodies, with 1.0–2.0 wt% colour concentrate or UV masterbatch and 0.05–0.15 wt% external processing lubricant added only where continuous shuttle presses record die-lip wear beyond 0.1 mm per 500 h of run time. The grade is qualified under the UN Model Regulations Chapter 6.1 for design types 1H1 and 1H2, requiring stacked-load performance at 40°C for 28 days, drop testing at -18°C from 1.2 m, and hydraulic pressure hold at 100 kPa for 30 min. Extrusion blow moulding is conducted on grooved-feed single-screw extruders with 24:1 L/D and servo-controlled accumulator heads; melt temperature is held at 180–210°C, die temperature at 190–200°C, parison programming gap from 2.0 mm to 0.8 mm, blow air at 0.5–0.8 MPa, and mould cooling water at 8–15°C. A production-scale failure mode observed when accumulator shot volume exceeds 5 kg is centreline thinning caused by parison sag velocities above 3 mm/s; correction involves reducing programming stroke ramp to 0.2 mm/s and maintaining MFR at or below 0.30 g/10 min. Terminal articles are 5–25 L UN 1H1 jerry cans, 30 L open-head drums, and nested industrial containers for liquid agrochemical, cleaning product, and water-based emulsion transport.
Where accumulator-extruder heads exceed 5 kg shot capacity, six-layer coextrusion blow moulding of 10–20 L diesel exhaust fluid reservoirs imposes a viscosity-matching constraint between the HDPE substrate layer and the EVOH barrier layer. LB502-01 is dosed at 85–90 wt% as the structural layer, with EVOH at 2–4 wt%, maleic anhydride-grafted tie resin at 2–6 wt%, and internal regrind entering the substrate layer at up to 30 wt%. The governing standards include ISO 22241-3 for DEF material compatibility and ECE R34 for plastic fuel system integrity, supplemented by oxygen transmission testing of the coextruded wall per ASTM D3985 at 23°C and 0% RH. Melt temperature for the HDPE layer is held at 200–220°C, EVOH at 190–210°C, and the die head uses a spiral mandrel design with layer sequencing that prevents EVOH contact with the die lip; interlayer adhesion is checked by T-peel testing at 23°C per ASTM D1876, with minimum tie-layer peel values of 15 N/25 mm. A recurring bottleneck on production lines is layer thickness deviation exceeding ±5% when internal regrind moisture exceeds 0.08 wt%; hot-air drying at 80°C for 2 h is applied at ambient relative humidity above 60%. Terminal articles are sealed DEF reservoirs, coolant surge tanks, and fuel filler necks where high ESCR and pinch-off weld strength are required.
Mechanical recycling streams entering non-food industrial pail production use LB502-01 as the virgin backbone at 70 wt%, washed post-consumer HDPE at 30 wt%, and 2 wt% universal colour concentrate. Traceability is maintained under EN 15343:2007, and finished pails are marked per ISO 11469 with recycle content when requested by the converter. Compounding is carried out on a co-rotating twin-screw extruder with 40:1 L/D, screw speed 300–400 min⁻¹, and barrel temperature profile 160–195°C, followed by continuous blow moulding at 180–200°C melt temperature. Batch-to-batch variance from PCR widens MFR by up to ±15%; when incoming MFR rises above 0.30 g/10 min, accumulator head temperature is reduced by 2–4°C to preserve parison hang strength. The incoming QC gate is ESCR per ASTM D1693 Condition B, with minimum 50 h before failure accepted for recycled-content lots; lots failing this threshold are diverted to sheet extrusion rather than blow moulding. Terminal articles are 20–25 L tight-head pails and conical open-top pails for non-food chemical concentrates, lubricant additive packages, and water-based emulsion storage.
| Application segment | Compliance standard | Test method | Control parameter |
|---|---|---|---|
| UN hazardous goods jerry cans | UN Model Regulations Ch. 6.1; ADR/RID/IMDG | Drop, hydraulic pressure | -18°C drop; 100 kPa 30 min |
| DEF reservoirs | ISO 22241-3; ECE R34 | ASTM D3985 oxygen transmission; ASTM D1876 peel | Peel ≥ 15 N/25 mm |
| Non-food pails with PCR | EN 15343:2007 | ASTM D1693 Condition B | ESCR ≥ 50 h |
| Agrochemical containers | UN 1H1; ADR | ASTM D1693 Condition C | ESCR ≥ 100 h |
| Heavy-gauge sheet | ASTM D4801 | ASTM D1822 | Tensile impact ≥ 300 kJ/m² |
| Pharmaceutical bottles | FDA 21 CFR 177.1520(c); EU 10/2011; Ph. Eur. 3.1.3 | USP 661.1 migration | Overall migration ≤ 10 mg/dm² |
Extrusion blow moulding of agrochemical containers shifts the resin selection criterion from short-term impact to long-term stress crack resistance under quiescent hexane exposure. LB502-01 is formulated at 100 wt% with 0.5–1.0 wt% UV stabilizer masterbatch and 0.1–0.2 wt% antistatic concentrate; no filler is used because filler platelets reduce ESCR. The resin acceptance threshold is ASTM D1693 Condition C failure time above 100 h in 10% Igepal CO-630 at 50°C, and finished container qualification follows UN 1H1 with stack loading at 40°C for 28 days. Processing uses a single-station accumulator blow moulder with mould clamping force of 20–30 tonnes, melt temperature 185–205°C, die temperature 190–200°C, and parison overswell compensation of 1.5:1. Terminal articles are 1–10 L narrow-mouth bottles and jerry cans for pesticide formulation classes where high-density polyethylene is the specified contact layer. A field-observed limitation is that die swell varies by ±0.05 mm per 10°C die temperature drift; closed-loop die-lip temperature control is therefore required for calibrated neck threads and child-resistant closure interfaces.
Heavy-gauge sheet extrusion for reusable transport packaging uses LB502-01 at 80 wt% virgin resin with 20 wt% in-house regrind from thermoforming skeletons; addition of 1.5–2.0 wt% processing aid is reserved for sheets above 4 mm gauge to reduce melt fracture. The process path is flat-die extrusion on a single-screw extruder with 33:1 L/D and barrier screw, followed by three-roll calendering at roll temperatures of 50–70°C and cut-sheet thermoforming at 170–180°C surface temperature. Dimensional compliance is controlled by ASTM D4801 for HDPE sheet in thicknesses above 0.25 mm, and the sheet is tested for tensile impact per ASTM D1822 with minimum value 300 kJ/m² at 23°C. The grade’s nominal density of 0.950 g/cm³ and melt flow rate of 0.25 g/10 min per ISO 1183-1:2019 and ISO 1133-1:2022 provide sag resistance for sheets up to 1.2 m width. Terminal parts include reusable pallet liners, thermoformed dunnage trays, and edge protectors used in automotive tier-one transport loops, where creep under 3 kPa compressive load at 40°C is limited to ≤1.5% over 24 h.
In injection blow molding, the neck finish of pharmaceutical bottles is formed in the injection station before blow transfer, making melt flow and crystallization kinetics the main determinants of roundness and thread tolerance. LB502-01 is processed at 100 wt% with 0.5–1.0 wt% high-density polyethylene masterbatch only; no slip additives are introduced because extraction limits in USP 661.1 and Ph. Eur. 3.1.3 restrict leachable surfaces. The reciprocating screw injection unit maintains melt temperature at 190–220°C, injection pressure at 80–110 MPa, and preform mould temperature at 10–20°C. Blow station air pressure is 0.8–1.0 MPa with blow time 2–4 s. Neck finish roundness is held within 0.1 mm TIR for 28 mm and 33 mm closures, verified by optical comparator. Terminal articles are 50–500 mL HDPE bottles for solid dosage and ophthalmic rinse packaging, qualified under FDA 21 CFR 177.1520(c) and EU Regulation No 10/2011 with overall migration below 10 mg/dm². Published data for this specific injection blow molding configuration is limited; processing windows should be confirmed on the intended preform tooling rather than extrapolated from extrusion blow moulding datasets.
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