| HS Code | 574122 |
As an accredited LyondellBasell HDPE H6012EC factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | LyondellBasell HDPE H6012EC is typically packaged in 25 kg polyethylene bags, palletized, stretch-wrapped, and shipped as 1,000 kg pallets. |
| Container Loading (20′ FCL) | 20′ FCL container loading for LyondellBasell HDPE H6012EC high-density polyethylene resin, palletized in 25 kg bags for export. |
| Shipping | LyondellBasell HDPE H6012EC is a non-hazardous high-density polyethylene resin. Ship in original sealed bags, FIBCs, or bulk containers. Keep dry, cool, and protected from UV and contaminants. Not regulated for transport; standard freight applies. Avoid puncturing packaging. Store under cover; follow manufacturer’s safety data sheet. |
| Storage | Store LyondellBasell HDPE H6012EC in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, sparks, flames, and strong oxidizers. Keep original packaging sealed, palletized, off the floor, and protected from moisture, dust, and contamination. Avoid prolonged UV exposure and excessive stacking. Maintain stable ambient temperature and use first-in, first-out stock rotation. Follow supplier SDS. Do not store outdoors. |
| Shelf Life | Typically 24 months when stored unopened in a cool, dry, well-ventilated area, away from direct sunlight and heat. |
Thin-wall dairy and short-shelf-life food containers molded from LyondellBasell HDPE H6012EC are produced on high-cavitation hot-runner injection machines with clamp force ratings from 2,500 kN to 8,000 kN. The supplier datasheet reports a melt flow rate of 12 g/10 min under ISO 1133-1:2022 and a density of 0.960 g/cm³ under ISO 1183-1:2019. These values allow short injection times at wall thicknesses between 0.45 mm and 1.2 mm. Barrel temperatures are divided into rear, middle, front, and nozzle zones of 180°C, 200°C, 210°C, and 220°C. Mold temperatures are held between 10°C and 30°C to shorten cooling time and reduce post-ejection warpage. The formulation for natural food-contact deli pots and yogurt cups is typically 98.0 wt% H6012EC blended with 2.0 wt% low-migration white or food-approved color masterbatch. The masterbatch carrier is HDPE or LDPE. If white pigmentation with titanium dioxide is required, the masterbatch dosage is adjusted so that the final titanium dioxide concentration in the molded part remains below the masterbatch supplier’s food-contact migration limit. For translucent lids, no pigment masterbatch is used. The material is dried only when ambient relative humidity exceeds 60% because surface moisture can create splay in vented multi-cavity tools. The melt is injected through valve-gated hot runner drops with diameters of 1.2 mm to 2.5 mm. Injection pressure at the nozzle typically ranges from 80 MPa to 120 MPa. Hold pressure is set at 55% to 75% of peak injection pressure for 0.8 s to 2.5 s to pack out gate-area sinks. Final part qualifying tests include a drop test at 5°C from 1.2 m onto a steel plate. An unthreaded lid and body fitment evaluation under 15 N to 30 N axial load is also applied. Migration testing follows EU Regulation No 10/2011 Annex I with simulant D1 for dairy products. In the United States, the grade is listed in supplier documentation as conforming to FDA 21 CFR 177.1520 for food-contact use under conditions of use.
For non-carbonated beverage, dairy, and still water closures, H6012EC is run in multi-cavity unscrewing or collapsing-core injection molds with cavity counts from 32 to 96. The melt flow rate of 12 g/10 min permits filling of cap geometries with wall thickness from 0.5 mm to 1.1 mm without excessive injection pressure. Melt temperatures are maintained between 200°C and 240°C. Mold temperatures are held between 10°C and 35°C. Holding pressures range from 60 MPa to 100 MPa to maintain dimensional stability of the tamper-evident band. The resin is commonly dry-blended with 1.0 wt% to 3.0 wt% of a color masterbatch based on an HDPE carrier. For white dairy closures, titanium dioxide masterbatch dosage is limited by required opacity and migration compliance. Silicone-based mold release sprays are avoided because they can interfere with plug seal printing and tamper-evident band breakage. If mold release is required, a food-contact ester-based release is applied only to the core. The gate is located in the center of the top panel. Gate diameter is kept between 0.6 mm and 1.2 mm to ensure gate-string removal without leaving a sharp edge. Closure functional tests are performed according to the relevant GPI neck finish specifications for 28 mm and 38 mm finishes. Application torque, removal torque, and sealing force are measured after 1 h, 24 h, and 7 days at 23°C and 50% RH. Because H6012EC is a high-density homopolymer, environmental stress crack resistance is lower than that of hexene- or butene-copolymer HDPE. The grade is therefore not recommended for carbonated soft drink closures or aggressive surfactant-containing pharmaceutical closures where cyclic stress and wetting agents create stress cracking.
Injection-molded open-head pails of 10 L to 25 L produced in H6012EC are processed on single-face or stack molds with hydraulic clamp force from 6,000 kN to 16,000 kN. The pail tool uses a full-round gate of 8.0 mm to 12.0 mm at the base center or a hot-tip gate with a valve pin of 2.5 mm to 4.0 mm. The high flow of H6012EC allows filling of sidewall thickness from 1.2 mm to 2.5 mm. Thin-wall pails with sidewall below 1.5 mm require higher packing pressure and longer hold time to minimize sink at handle hinges and the gate area. Barrel temperatures are set from 190°C to 230°C. Mold temperature is held between 10°C and 30°C. For non-food industrial pails, post-industrial regrind of the same grade is added at 15 wt% to 25 wt% after grinding through a screen size of 8 mm and dust removal. For food-contact pails, virgin HDPE is used unless the recycler holds a letter of no objection from the relevant authority. In dangerous goods packaging, the molded pail must pass drop testing at -18°C, stack testing, and leakproofness testing according to UN 1H2 provisions. The tensile yield stress of 29.0 MPa under ISO 527-1:2019 and flexural modulus of 1,450 MPa under ISO 178:2019 provide sidewall stiffness for stacked pails. At temperatures below -20°C, notched Izod impact measured under ASTM D256-23 drops rapidly and brittle failure can initiate at the handle aperture. Cold ductility is therefore validated by instrumented impact tests on sidewall plaques at -18°C before production release. The main process bottleneck observed on production lines is warpage at the sealing ridge. This is controlled by maintaining a mold temperature difference across the rim of less than 5°C. A hold pressure profile that decays from 75 MPa to 40 MPa over 4 s to 8 s is used. Cooling times range from 10 s to 18 s depending on wall thickness.
Logistics containers, folding crates, and pallet feet are molded from H6012EC when high stiffness and acceptable low-temperature impact are required. In closed-loop recyclate streams, H6012EC is dry-blended with washed post-consumer HDPE crumb at addition levels from 10 wt% to 30 wt%. The crumb is screened to 10 mm maximum particle size. Contamination levels are controlled by melt filtration through a 120 mesh screen during a separate melt-compounding step if the recyclate is supplied as flake. If the recyclate is supplied as pellets, a drum-tumble dry blend is used. Blending H6012EC with post-consumer HDPE reduces the melt flow rate of the blend by roughly 10% to 25% depending on the recyclate melt flow index. A melt flow measurement according to ISO 1133-1:2022 is performed on each incoming recyclate batch. The blend must remain above 8 g/10 min for filling thin crate ribs. The barrel temperature profile for thick crate bases with reinforcing ribs is set from 200°C to 240°C. Mold temperature is maintained between 15°C and 35°C to improve reproduced surface gloss without increasing cycle time beyond 35 s to 60 s for a 2.0 mm to 4.0 mm wall. Injection speed is profiled with a fast initial fill of 200 mm/s to 350 mm/s and a slower packing phase to prevent jetting at the gate. Hold pressure is set to 60% of peak pressure for 5 s to 12 s. Pallet feet are tested under static compression to 3,000 kg per block and under dynamic impact at -10°C. Crates are tested for lateral impact and base deflection using defined loads in ISO 8611-1:2011 or the purchaser’s industrial specification. The main discontinuity is reduction in notched Izod impact when recyclate content exceeds 20 wt%. Published data for this specific H6012EC and recyclate configuration is limited. Each formulation must therefore be qualified with batch-specific impact specimens at the lowest service temperature. The recyclate blend is not used for food-contact crate applications unless the recyclate is approved under a relevant food-contact recycling process for the intended food type.
| Application zone | Regulatory or mechanical requirement | Test standard or condition |
|---|---|---|
| Thin-wall food containers | Specific migration of monomers and additives | EU Regulation No 10/2011, FDA 21 CFR 177.1520 |
| Dangerous goods pails | Drop, stack, leakproofness | UN 1H2, drop at -18°C |
| Logistics crates and pallet feet | Load capacity and deflection | ISO 8611-1:2011, static compression 3,000 kg/block |
| Appliance components | Flammability | UL 94 HB |
| Sharps containers | Puncture and leak resistance | ISO 23907-1:2019, ASTM F1306-21 |
High-flow HDPE in appliance and houseware components is selected where thin ribs and snap-fit features must fill consistently at low injection pressure. H6012EC is processed into refrigerator shelf bins, washing machine dispenser trays, and small appliance covers using melt temperatures of 200°C to 230°C and mold temperatures of 15°C to 40°C. The formulation uses 98 wt% to 100 wt% H6012EC. When pigment masterbatch is added, the dosage is 1.0 wt% to 4.0 wt% and the carrier is matched to HDPE to avoid delamination at weld lines. For parts exposed to UV light or exterior conditions, 0.5 wt% to 1.5 wt% of a hindered amine light stabilizer masterbatch is added. The final part must satisfy the applicable appliance flammability classification such as UL 94 HB for household appliances. Snap-fit designs require maximum strain below the tensile elongation at yield of the material. The datasheet value of 29.0 MPa yield stress under ISO 527-1:2019 is used for finite element analysis. Molded-in stress is verified by annealing a sample at 100°C for 30 min and measuring dimensional change. Gate locations are placed away from snap-fit features and weld lines. Flow leaders are added to maintain balanced filling in multi-cavity tools. The main processing fault observed on production lines is sink over bosses. This is corrected by reducing boss wall thickness to 50% to 60% of the nominal wall and by using hold pressure of 70 MPa to 90 MPa for 3 s to 6 s.
Horticultural nursery pots and propagation trays are injection molded from H6012EC at wall thicknesses of 0.6 mm to 1.5 mm for single-use seedling and transplant containers. The melt flow rate of 12 g/10 min permits filling of large-area tray tools with up to 72 cavities without exceeding the clamp capacity of a 5,000 kN machine. Melt temperature is set between 200°C and 235°C. Mold temperature is held at 15°C to 30°C for cycle times between 10 s and 18 s. For outdoor exposure, the resin is dry-blended with 1.0 wt% to 2.0 wt% of a polyolefin UV masterbatch. The carrier resin is HDPE-based to maintain weld-line strength and avoid delamination in the cell wall. Black pots use carbon black masterbatch at 1.0 wt% to 2.5 wt%. White pots use titanium dioxide at 2.0 wt% to 4.0 wt%. Final parts are tested for impact after accelerated weathering according to ISO 4892-2:2013 for 1,000 h. Drop testing is performed at 5°C from 1.0 m onto concrete. Because the containers are used with soil and water extracts, additive migration is assessed under EU Regulation No 10/2011 if the pots are used for edible seedlings. For non-edible plants, the main requirement is mechanical integrity under UV exposure for one growing season.
Medical waste sharps containers are molded from H6012EC when the part design requires a rigid, puncture-resistant body with an integral locking lid. The container body is typically injection molded with wall thickness between 1.0 mm and 2.0 mm. The base and rim are thickened to 2.5 mm to 3.5 mm for stacking stability and closure engagement. Melt temperature is set from 200°C to 230°C. Mold temperature is kept between 10°C and 30°C for cycle times of 15 s to 35 s depending on container volume. The formulation is typically 100 wt% H6012EC or 98 wt% H6012EC with 2 wt% red or yellow color masterbatch. The masterbatch must be non-leachable and supplied with a medical device biocompatibility statement if the container is used in clinical settings. Puncture resistance is influenced by tensile yield stress and flexural modulus. Test specimens are cut from molded container sidewalls and tested according to a puncture probe method based on ASTM F1306-21 with a 0.9 mm radius probe at 23°C and 4°C. The hinge area of the lid is designed as an integral living hinge with a thickness from 0.25 mm to 0.45 mm. After molding, the hinge is flexed immediately while the part is still warm to orient the polymer in the hinge. Low-temperature hinge integrity is checked at 4°C by cycling the lid through 10 open-close cycles. The main operational limitation is that H6012EC, as a high-density homopolymer, has lower hinge fatigue life than polypropylene. Repeated flexing beyond the design number of cycles may produce white stress marks and hinge failure. The container must comply with regional sharps container requirements such as ISO 23907-1:2019 for puncture resistance and leak resistance. For clinical waste applications, shelf-life labeling and disposal instructions are additional.
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