| HS Code | 314603 |
As an accredited LyondellBasell HDPE ALATHON M5010 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | LyondellBasell HDPE ALATHON M5010 is supplied in 25 kg polyethylene bags or 1,000 kg bulk bags. |
| Container Loading (20′ FCL) | Loading LyondellBasell HDPE ALATHON M5010 into 20′ FCL containers: palletized 25 kg bags, shrink-wrapped, secured, dry, ready for ocean shipment. |
| Shipping | LyondellBasell HDPE ALATHON M5010 is a non-hazardous polyethylene resin. It typically ships in 25 kg bags, 1,000 kg octabins, or bulk trucks/railcars. No special DOT/IMDG/IATA hazard classification applies. Store dry, away from direct sunlight and heat; use standard covered transport. |
| Storage | Store LyondellBasell HDPE ALATHON M5010 in a cool, dry, well-ventilated area away from direct sunlight, heat, and ignition sources. Keep containers sealed to prevent moisture, dust, and odor contamination. Avoid contact with strong oxidizers. Protect from prolonged UV exposure. Maintain clean handling areas and stable, moderate temperatures. Do not stack excessively. Follow the manufacturer’s SDS and local regulations. |
| Shelf Life | Shelf life is typically 12 months from manufacture when stored in original packaging, cool, dry, and away from direct sunlight. |
The specification of a high-density polyethylene copolymer with a density of 0.954 g/cm³ and a high-load melt index of 10 g/10 min measured under ISO 1133-1:2022 is driven by the need to maintain parison stability in extrusion blow moulding of 0.5 L to 20 L crop protection containers while preserving environmental stress crack resistance after contact with emulsifiable concentrate carriers such as xylene, cyclohexanone, and aromatic petroleum fractions. On production-scale shuttle and accumulator-head blow moulding lines, Alathon M5010 is processed with barrel temperatures from 180 °C to 220 °C, die head temperatures of 200 °C to 215 °C, mould temperatures between 10 °C and 30 °C, and blow air pressure of 0.7 MPa to 1.0 MPa. The extruder typically has a screw L/D ratio of 24:1 to 30:1 and a compression ratio of 2.5:1 to 3.0:1 with a grooved feed section. Because HDPE is essentially non-hygroscopic, predrying is not required except where surface condensation from ambient storage is visible, in which case a 80 °C dehumidified-air hopper drying step for 2 h is applied to prevent surface splay in moulded parts. Formulation addition ratios are limited to 2.0 wt%–3.5 wt% carbon black masterbatch for outdoor UV protection and 1.0 wt%–2.5 wt% UV stabilizer masterbatch for colour-moulded packages; additive concentrates must use an HDPE carrier with a melt index lower than the base resin to prevent melt disturbance in the handle region. Regulatory compliance for packages used to transport or store pesticides is set by the UN Model Regulations and regional road/rail rules; containers are design-type tested as UN 3H1 and qualified through leakproofness testing at 20 kPa internal pressure, hydraulic pressure testing at 100 kPa for 30 minutes, and drop testing at 1.2 m for medium hazard Packing Group II formulations. Terminal part types include narrow-neck bottles, wide-mouth jugs, and stackable jerrycans for herbicide, fungicide, and insecticide concentrates, as well as water-soluble sachet overpacking buckets.
Because M5010 exhibits a high-load melt index of 10 g/10 min but a comparatively low standard melt index under the 2.16 kg load, accumulator-head machines must be programmed with a parison die gap curve that compensates for weight-induced sag over shot times longer than 12 s; this is particularly critical on containers for aliphatic hydrocarbon solvents, paint thinners, and adhesive diluents, where wall thickness uniformity below 0.8 mm can result in permeation failure or top-load collapse. Downstream production is carried out on accumulator-head machines with shot sizes from 1 kg to 4 kg, extruder L/D ratios of 24:1 to 26:1, and barrel temperatures from 185 °C to 215 °C. After moulding, inline surface fluorination is performed using a fluorine-nitrogen gas mixture with fluorine concentration held below 1.0 % by volume, followed by forced-air evacuation to remove residual hydrogen fluoride; this fluorinated surface layer reduces solvent permeation by 50 % to 90 % depending on wall thickness, treatment time, and container geometry, although published data for M5010 in this specific treatment configuration is limited, and a permeation test under ASTM D2684 is required for each container design. Formulation additions are tightly controlled: 100 wt% virgin M5010 is preferred because post-consumer recyclate reduces fluorination uniformity and may introduce low-molecular-weight species that increase solvent uptake; internal slip agents and antistatic additives are avoided due to interference at the fluorinated surface. Compliance for solvent containers falls under UN packaging design-type approvals for Class 3 flammable liquids, with the relevant test designation UN 3H1 for single-pack HDPE jerrycans and UN 3H2 for crates; test conditions include drop height assignment according to Packing Group, hydraulic pressure testing at 100 kPa for 30 minutes, and closure leakproofness under 20 kPa. Terminal products include 1 L, 3 L, and 5 L rectangular containers for mineral spirits, brush cleaners, and acetone-free adhesive diluents; containers intended for neat acetone or methyl ethyl ketone are excluded unless permeation testing demonstrates compliance with the shelf-life specification.
Bottles for sodium hypochlorite solutions at 2 % to 10 % available chlorine represent an aggressive validation case because the oxidizer attacks polyethylene at the amorphous tie chains while the container neck and handle weld lines are under residual moulding stress; therefore converters select a high-molecular-weight HDPE grade with a density of 0.954 g/cm³ and specify environmental stress crack resistance tested under ASTM D1693 Condition B in 100 % Igepal CO-630, with a typical F50 criterion above 600 h for qualification lots. Processing on continuous extrusion blow moulding lines uses barrel temperatures of 190 °C to 215 °C, die temperatures of 210 °C to 225 °C, mould temperatures of 15 °C to 35 °C, and blow air pressure of 0.6 MPa to 0.9 MPa; parison programming is adjusted to increase wall thickness at the pinch-off tail from 1.2 mm to 2.0 mm because the tail weld is the most frequent initiation site for oxidative stress cracking. Formulation addition ratios are set at 2.0 wt% to 4.0 wt% titanium dioxide masterbatch for opacity and 0 wt% to 15 wt% clean post-consumer HDPE recyclate in non-critical cap-side walls; metal stearate-containing processing aids are avoided above 0.05 wt% because they can catalyse oxidative chain scission in hypochlorite-containing product contact. Regulatory compliance for bleach packaging depends on classification: sodium hypochlorite solutions above 5 % available chlorine may be regulated as UN 1791, Class 8, and containers must be design-type tested under UN requirements for Packing Group II or III as assigned by the shipper, including the 3H1 tight-head jerrycan drop test and the leakproofness test at 20 kPa for 5 minutes. Terminal product types include 750 mL, 1 L, 2 L, and 5 L round and square bottles with tamper-evident neck finishes and child-resistant closures; the same profile is used for thickened bleach gels and chlorinated hard-surface cleaners, provided the concentrate does not exceed the tested oxidizer concentration.
Across automotive chemical packaging lines, high-output rotary blow moulding machines running at 12 to 18 bottles per clamp minute are used to convert M5010 into 1 L, 2 L, and 4 L windshield washer fluid jugs. The base formulation is 100 wt% virgin M5010 with 1.0 wt% to 2.0 wt% carbon black masterbatch for UV screening or 2.0 wt% to 4.0 wt% opaque white masterbatch for brand colour; erucamide slip masterbatch may be incorporated at 0.2 wt% to 0.5 wt% to reduce capping torque variation, but this addition requires cap seal evaluation under ASTM D2063 after accelerated ageing. The process is designed around continuous extrusion with an L/D ratio of 24:1, barrel temperatures of 190 °C to 215 °C, die head temperature of 210 °C to 220 °C, blow air pressure of 0.6 MPa to 0.9 MPa, and blow-up ratios between 2.5:1 and 3.0:1; mould temperature is maintained at 10 °C to 25 °C to control surface clarity on translucent blue washer fluid bottles. Compliance for these non-dangerous goods containers is driven by OEM chain specifications rather than UN packaging certifications, typically requiring no leakage after a 1.8 m drop at -18 °C, top-load capacity above 250 N after 24 h at 40 °C under ASTM D2659, and dimensional stability of the cap neck within ±0.2 mm through filling and palletisation. Terminal products include single-layer HDPE jugs, coextruded three-layer jugs containing 20 wt% to 30 wt% post-consumer recyclate in the core, and compressed-air assisted 4 L cubitainers for summer and winter washer concentrates.
Table 1 Compliance and test matrix for downstream conversion of Alathon M5010.
| Application segment | Standard or code | Test designation | Typical qualification criterion |
| Agrochemical containers | UN 3H1, ADR/RID/IMDG | Leakproofness, hydraulic, drop | 20 kPa; 100 kPa for 30 min; 1.2 m |
| Solvent containers | UN 3H1, ASTM D2684 | Permeation after fluorination | 50 %–90 % reduction, design validation |
| Bleach containers | UN 1791, ASTM D1693 | ESCR Condition B, 100 % Igepal | F50 > 600 h |
| Automotive washer fluid | ASTM D2659, ASTM D2063 | Column crush, cap seal | > 250 N after 24 h at 40 °C |
| Lubricant jerrycans | UN 3H1 | Hydraulic, drop | 100 kPa for 30 min; Packing Group drop height |
| Food contact | FDA 21 CFR 177.1520, EU No 10/2011 | Overall migration | ≤ 10 mg/dm² |
Heavy-wall blow mouldings for 10 L to 25 L tight-head jerrycans and open-top pails intended for gear lubricants, hydraulic oils, and cutting fluids are produced on single-station accumulator machines with a 90 mm grooved-feed extruder, accumulator head capacity of 2.5 kg to 4.0 kg, and parison programming that shifts wall thickness from 2.5 mm at the shoulder to 4.0 mm at the pinch-off tail and bottom chime. This thickness distribution is required to pass the UN design-type drop test for UN 3H1 tight-head plastics jerrycans at the drop height assigned to the Packing Group of the liquid lubricant formulation, as well as the hydraulic pressure test at 100 kPa for 30 minutes and the leakproofness test under 20 kPa after closure. The base material is 100 wt% virgin M5010; regrind from trimmed flash may be reintroduced up to 20 wt% only when derived from the same production lot and after passing a melt-flow stability check, while calcium carbonate or talc fillers are kept below 1.0 wt% to prevent weld-line failure at the handle insert. Processing conditions include melt temperature at the die of 220 °C to 235 °C, mould temperature of 10 °C to 25 °C, and cooling air at 0.7 MPa to 1.0 MPa; in-mould cooling times of 45 s to 90 s are used depending on wall thickness to prevent post-ejection ovalisation at the top openings. Terminal products include 10 L, 20 L, and 25 L tight-head jerrycans with 42 mm and 60 mm neck finishes, open-top pails with gasketed lids, and heavy-duty outer shells for high-viscosity industrial lubricants.
When ambient-filled edible oil and vinegar containers are moulded on dedicated food-grade lines, the same high-density polyethylene grade is processed without internal release agents and with a maximum regrind level of 20 wt% from the same food-grade production run. The downstream process uses continuous extrusion blow moulding with closed-loop internal cooling and filtered compressed air at 0.6 MPa to 0.9 MPa to minimise microbial contamination inside the parison; barrel temperatures are held at 190 °C to 215 °C and the die head at 210 °C to 220 °C. For white opaque bottles, 1.5 wt% to 2.5 wt% titanium dioxide masterbatch is added, and the masterbatch carrier must be a food-contact HDPE or polypropylene with the same base density to prevent local viscosity variation; no antioxidants or UV stabilisers beyond those already present in the base resin are added. Compliance is determined on the finished article under FDA 21 CFR 177.1520 for olefin polymers and EU Regulation (EU) No 10/2011, with overall migration testing against food simulants using the assigned test conditions for long-term ambient storage; the converter must verify that masterbatch and processing aids do not increase overall migration above 10 mg/dm² or the applicable specific migration limit. Terminal product types include 1 L, 3 L, and 5 L bottles for cooking oil, vinegar, and ambient-filled liquid condiments; hot-fill above 60 °C is outside the typical operating window because the container may undergo unacceptable post-fill deformation unless a separate heat-set process is validated.
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