| HS Code | 447854 |
As an accredited LyondellBasell HDPE M6061 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | LyondellBasell HDPE M6061 is typically supplied as pellets in 25 kg polyethylene bags or 1,000 kg bulk bags. |
| Container Loading (20′ FCL) | Container Loading (20′ FCL): LyondellBasell HDPE M6061, 25 kg bags, palletized, approximately 20 MT per 20-foot container. |
| Shipping | LyondellBasell HDPE M6061 ships as nonhazardous polyethylene resin pellets in 25 kg polyethylene-lined bags, bulk boxes, trucks, or railcars. Store cool, dry, clean, and away from direct sunlight, moisture, and contaminants. Use standard handling equipment and PPE; not regulated for transport. |
| Storage | Store LyondellBasell HDPE M6061 in a cool, dry, well-ventilated area away from direct sunlight, heat, flames, and strong oxidizers. Keep original packaging sealed to prevent moisture and contamination. Stack pallets securely to avoid deformation or bag damage. Avoid prolonged UV exposure and extreme temperatures. Follow the manufacturer’s safety data sheet and local regulations for handling and storage. |
| Shelf Life | LyondellBasell HDPE M6061 has a 24-month shelf life when stored in original packaging in a cool, dry place away from sunlight. |
In closure and dispensing-cap moulding, the primary specification constraint is gate temperature management rather than a single melt-flow-rate value. HDPE M6061 exhibits a melt mass-flow rate of 6 g/10 min at 190 °C under 2.16 kg load as determined by ISO 1133-1:2022 and a nominal density of 0.960 g/cm³ according to ISO 1183-1:2019. These two values place the grade inside the stiff-flow window for tamper-evident caps, dispensing plugs, jar lids, and closure shells with wall thickness between 0.8 mm and 1.2 mm. In 48–96 cavity hot-runner tools, the observed process failure is not short-shot but gate-stringing and premature gate freeze when the nozzle-tip temperature falls below the crystallisation onset of the resin. The corrective action is not to raise barrel temperature uniformly but to hold the nozzle and hot-drop temperature band at 240–255 °C while keeping the metering-zone temperature at 210–225 °C. Hot-runner systems with valve-gate pins shorter than 1.5 mm from the gate orifice generate excessive shear heating at fill velocities above 100 mm/s, resulting in surface burn marks and odour formation in food-contact closures. For this reason, valve-pin stroke and gate annulus dimensions are set before the melt-flow specification is considered.
Compliance in this segment is anchored to FDA 21 CFR 177.1520(c) 3.1a for high-density polyolefin food-contact articles and to Commission Regulation (EU) 10/2011 for food-contact plastics sold in the European market; the overall migration limit is 10 mg/dm². Finished closures are tested under worst-case food-simulant conditions: aqueous, acidic, and fatty simulants depending on the packaged matrix. For pharmaceutical syrup closures, additional pharmacopoeial extractables testing is required and is not a property of the base resin alone. Typical addition ratios for food-contact closure formulations are 0.3–0.8 wt% slip/anti-block masterbatch, 0.8–2.0 wt% colour masterbatch, and 10–30 wt% post-consumer recycled HDPE only when end-use migration and organoleptic testing confirm that overall migration remains below 10 mg/dm² and off-taste transfer is absent. Virgin M6061 is run at 100 wt% base resin; processing aid masterbatches are limited to 0.1–0.3 wt% to avoid closure surface defects.
Moulders produce closure stock on toggle presses of 120–450 t clamp force with shot capacity per cavity between 1.2 g and 8 g. Melt temperature is held at 210–245 °C, mould temperature at 10–25 °C, and holding pressure at 30–60 MPa hydraulic pressure. Cycle time for 1.0 mm wall closures ranges from 5 s to 8 s. Carbonated beverage closures are generally outside the creep-resistance window for unreinforced HDPE; linered or multilayer sealing systems are required for sustained internal head pressure. Finished product types include tamper-evident caps for dairy, edible oil, sauces, condiment jars, water-based pharmaceutical closures, and dispensing plugs.
When wall thickness falls between 0.8 mm and 1.5 mm, the moulding criterion shifts from simple fill pressure to bending stiffness and lid-fit circularity. The 0.960 g/cm³ density and 6 g/10 min melt-mass flow rate of M6061 permit melt filling across 2–16 cavity stack moulds for round dairy tubs, rectangular deli trays, and lidded dry-food containers at shot weights between 8 g and 50 g. On high-speed side-entry robot lines and in-mould label cells, warpage in this grade is dominated by differential crystallisation across the wall thickness, not by inadequate injection pressure. Maintaining a core-to-cavity mould temperature differential below 5 °C is the standard control band for circularity; differentials above 8 °C create elliptical lid fit and seal-channel distortion. Food-contact compliance requires FDA 21 CFR 177.1520(c) 3.1a for US material safety and Commission Regulation (EU) 10/2011 for EU overall migration below 10 mg/dm². Kosher and Halal certification is handled through supply-chain documentation; the base resin is not a source of animal-derived components. High-opacity white masterbatch is added at 3–5 wt% in dairy spread tubs, while natural or translucent deli containers carry 0–2 wt% colour masterbatch. A nucleating agent masterbatch is dosed at 0.05–0.15 wt% to stabilise spherulite size and reduce surface haze in translucent grades; processing lubricant is limited to 0.1–0.3 wt%. Thin-wall stack moulds run on toggle presses of 250–500 t, with melt temperature at 215–235 °C and mould temperature at 8–15 °C for plain moulds. In-mould label production requires the mould surface to be held at 15–25 °C to prevent label-edge delamination. Cooling time for 1.0 mm walls is 4–7 s, with total cycle time from 6 s to 10 s. Screw recovery speed is fixed to prevent melt inhomogeneity; recovery time shorter than 3 s is not recommended because the high-flow melt may carry unmelted granules into thin ribs. Finished product types include margarine tubs, butter tubs, deli containers, salad trays, refrigerated dairy dessert cups, and lidded dry-food containers.
At pail wall sections of 1.2–1.8 mm, the technical conflict is between top-load capacity and environmental stress cracking resistance. Open-head pails moulded from M6061 are used in water-based paints, adhesives, construction chemicals, detergent powders, and food-grade dry mixes. The high density of 0.960 g/cm³ provides stiffness but also increases moulded-in stress when the handle-bearing side is overpacked; sink marks around the handle lugs are the most common surface defect in 10 L and 20 L pails. The pail body must pass a UN stacking test conducted for a period of 28 days at 40 °C, but the final result is controlled more by cooling uniformity and mould-side temperature balance than by resin stiffness alone. Moulders report that stabilising the mould temperature at 20–35 °C and using a holding pressure between 45 MPa and 70 MPa reduces top-load variation between cavities. When ESCR is evaluated according to ASTM D1693-15, Condition B, in 100% Igepal CO-630 at 50 °C, the pass criterion is set by the filler formulation rather than by the resin supplier; M6061 is not the limiting variable in properly cooled pail bodies. For dangerous-goods packaging, open-head plastic pails are tested under the UN Model Regulations, Chapter 6.1, and marked with the appropriate 1H2 plastics packaging code. Food-grade pails must comply with FDA 21 CFR 177.1520(c) 3.1a and EU 10/2011; construction chemical pails require REACH Regulation (EC) 1907/2006 documentation and, where relevant, classification under CLP Regulation (EC) 1272/2008. Because M6061 is an injection-moulding grade with a relatively narrow crystallisation window, ESCR in detergent and chemical service is improved by blending 10–20 wt% LLDPE or 10–15 wt% bimodal HDPE blow-moulding grade. UV-stabiliser masterbatch is added at 0.5–1.0 wt% for outdoor storage; carbon black or colour masterbatch is dosed at 1.0–2.5 wt%; and external processing lubricant at 0.2–0.5 wt% prevents mould deposit on textured pail surfaces. Pail moulding uses injection machines of 500–1500 t clamp force with 4–8 cavity tools. Melt temperature is set at 220–250 °C, mould temperature at 20–35 °C, screw back pressure at 6–12 bar, and hold pressure at 45–70 MPa. Cooling time for a nominal 1.5 mm wall ranges from 12 s to 22 s. If the melt temperature exceeds 250 °C for more than 5 min residence time, oxidative degradation reduces ESCR and creates yellowing in unpigmented pails. Finished product types include 5 L, 10 L, 20 L, and 25 L open-head pails, tamper-evident pail lids with a tear-band skirt, pour spouts, and bail-handle containers. Conical nestable pails with wall sections below 1.2 mm are possible if side-wall ribs are used to prevent ovalisation.
| Application segment | Compliance or standard code | Verification threshold or test method |
|---|---|---|
| Food-contact closures, dairy/deli containers | 21 CFR 177.1520(c) 3.1a, EU 10/2011 | Overall migration 10 mg/dm²; organoleptic absence of off-taste |
| Industrial dangerous-goods pails | UN Model Regulations Chapter 6.1 | Stacking, drop, hydraulic pressure; mark 1H2 |
| Returnable crates and totes | EU 94/62/EC, REACH 1907/2006 | Heavy metal sum Pb+Cd+Hg+Cr(VI) 100 mg/kg; SVHC 0.1 wt% |
| Household storage articles | REACH 1907/2006, EU 94/62/EC where packaging | Annex XVII restrictions; no food-contact migration claim |
Unlike thin-wall food packaging, thick-section returnable crates and totes place the failure mode in impact at frozen-in moulded-in stress rather than in short-shot or warpage. M6061 is suitable for shallow totes, divider trays, and dunnage trays with wall sections below 2.5 mm; deep crates with load-bearing corner posts above 3.0 mm often require a lower-MFR, higher-molecular-weight HDPE grade because the fast-flowing melt produces jetting and weld-line weakness when the flow-length-to-wall-thickness ratio exceeds the stable range of the grade. Production-scale moulding in logistics packaging shows that clean in-house regrind can be added at 30–50 wt% only when the regrind stream is separated from low-MFR HDPE and PP contamination; at 60 wt% regrind and above, short-shot frequency increases in thin corner ribs because the reprocessed melt has a wider residence-time distribution and inconsistent melt strength. Non-food crates and totes require REACH Regulation (EC) 1907/2006 documentation and compliance with EU Packaging Directive 94/62/EC heavy-metal concentration limits: the sum of lead, cadmium, mercury, and hexavalent chromium must not exceed 100 mg/kg by weight in packaging or packaging components. For products entering the United States, no FDA food-contact claim is made for the crates unless a separate inner food-contact liner is used. Typical addition ratios for returnable logistics moulding are 30–50 wt% clean in-house regrind, 1.5–2.5 wt% carbon black masterbatch, and 0.5–1.0 wt% UV-stabiliser masterbatch for outdoor yard exposure. Impact modification via LLDPE is used at 5–10 wt% when cold-temperature impact is specified below -20 °C. Crate and tote tools run on injection machines of 800–2000 t clamp force with multiple hot drops and sequential valve-gate control. Melt temperature is maintained at 235–255 °C, mould temperature at 15–30 °C, and injection velocity at 80–120 mm/s to prevent weld-line visibility on textured surfaces. Holding pressure is set to 35–55 MPa and cooling time from 18 s to 35 s. Thick ribs should be designed with a wall-to-rib ratio of 0.6–0.7 to prevent sink marks; gas-assist is not required for M6061 in sections below 2.5 mm. Finished product types include returnable distribution totes, divider trays, agricultural crates, dunnage trays, and stack-only logistics containers with integrated labels or RFID pockets.
| Process variable | Closures and caps | Thin-wall food packaging | Industrial pails | Returnable crates/totes | Household storage |
|---|---|---|---|---|---|
| Melt temperature | 210–245 °C | 215–235 °C | 220–250 °C | 235–255 °C | 210–240 °C |
| Mould temperature | 10–25 °C | 8–25 °C | 20–35 °C | 15–30 °C | 10–30 °C |
| Holding pressure range | 30–60 MPa | 35–65 MPa | 45–70 MPa | 35–55 MPa | 40–65 MPa |
When high gloss, stackability, and fast cycling are specified together, colour masterbatch dosage cannot be treated as a cosmetic afterthought because it alters nucleation and shrinkage. Household boxes, storage totes, under-bed bins, drawer organisers, and shelf trays are injection-moulded from M6061 when the mould requires long flow length and high surface hardness. The main production failure is gloss variation on visible surfaces caused by inconsistent masterbatch dispersion at loadings above 2 wt%; the secondary failure is differential shrinkage along the melt front when pigment particles act as heterogeneous nucleation sites. To maintain spherulite uniformity, masterbatch carriers with a melt-mass flow rate within ±2 g/10 min of the base resin and a melt temperature not more than 15 °C above the M6061 processing range are specified. Gloss variation is measured at 60° according to ISO 2813:2014, and linear shrinkage is assessed after 48 h conditioning using ISO 294-4:2018. White and opaque pastel colours require 2–4 wt% masterbatch, but translucent organisers require 0–1 wt%; above 4 wt%, the thicker colour carrier lowers the solidification temperature of the skin layer and increases sink marks over ribs. Household storage articles are not food-contact articles; compliance is governed by REACH Regulation (EC) 1907/2006, Annex XVII restrictions for substances of concern, and, where the article functions as packaging, EU Packaging Directive 94/62/EC. The products are not intended for direct skin contact with lotions or food, and migration testing under EU 10/2011 is not applicable unless the article is marketed as a food container. Typical addition ratios are 2–4 wt% colour masterbatch for opaque storage totes, 0–1 wt% colour masterbatch for translucent organisers, 0.5–1.5 wt% anti-static masterbatch when used in electronics assembly or semiconductor-clean areas, and 0.1–0.3 wt% internal mould release for highly textured surfaces. Regrind is limited to 20–40 wt% for visible-surface parts because higher regrind levels shift gloss and melt-flow stability. Stack moulds and two-platen presses of 300–800 t clamp force are used. Melt temperature is 210–240 °C, mould temperature is 10–30 °C, and holding pressure is 40–65 MPa. High-gloss surfaces require rapid cooling with a core-side mould temperature below 20 °C; textured surfaces use a mould temperature of 25–30 °C to reduce flow marks. Cycle times for 1.5–2.5 mm walls are 15–25 s. Finished product types include stackable storage boxes, under-bed storage bins, drawer organisers, shelf trays, garment dividers, and desktop organisers.
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