| HS Code | 922819 |
As an accredited Lotte Chemical Titan HDPE HI1600 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Lotte Chemical Titan HDPE HI1600 is supplied as pellets in 25 kg woven bags, palletized, or 1,000 kg jumbo bags. |
| Container Loading (20′ FCL) | 20′ FCL container loaded with Lotte Chemical Titan HDPE HI1600 in 25 kg bags, palletized, shrink-wrapped, and securely stowed for ocean freight. |
| Shipping | Lotte Chemical Titan HDPE HI1600 is typically shipped as solid pellets in 25 kg PP bags or 500–1000 kg jumbo bags, palletized and stretch-wrapped. Transport in clean, dry containers or trucks, protected from moisture, sunlight, heat, and contamination. Generally non-hazardous; handle according to local regulations and supplier safety data sheets. |
| Storage | Store in a cool, dry, well-ventilated warehouse. Keep original packaging sealed and off the ground on pallets. Protect from direct sunlight, heat, flames, moisture, contamination, and strong oxidizing agents. Avoid excessive stacking and maintain FIFO stock rotation. Use appropriate PPE when handling. Inspect containers regularly for damage or leaks, and follow local regulations and the supplier’s SDS. |
| Shelf Life | Lotte Chemical Titan HDPE HI1600 shelf life is typically 24 months when stored unopened in original packaging, cool, dry, away from sunlight. |
The mass-flow advantage of Lotte Chemical Titan HDPE HI1600—reported by grade documentation at a nominal melt flow rate of 16 g/10 min under ISO 1133-1:2022 conditions of 190 °C/2.16 kg—translates in thin-wall food packaging tooling into cavity fill pressures that remain below the pressure drop thresholds that trigger flash on multi-cavity stack moulds. In dairy container injection moulding, melt temperature is held at 200–230 °C, with mould temperature set at 10–30 °C to maintain a frozen-skin-to-melt-core ratio suitable for minimum wall sections of 0.45–0.80 mm. Additive formulation uses 100 parts HI1600 as the base polymer, 0–30 wt% internally generated trimmings and reject-ground flake that has passed an optical sort and melt-flow check, and 1–2 wt% white or custom colour masterbatch; when the moulded article is intended for high-fat dairy contact, the masterbatch carrier is selected from LLDPE or HDPE resins already covered by the same food-contact framework. Downstream production typically runs on all-electric or servo-hydraulic injection moulding machines with screw L/D ratios of 20:1–25:1, accumulator-assisted injection velocities above 120 mm/s, and hot-runner valve-gate drops; gate diameter is set at 0.8–1.2 mm to balance gate-stringing against shear heating. Compliance for European and North American markets rests on EU No 10/2011, FDA 21 CFR 177.1520(c), REACH SVHC screening, and GB 4806.7-2016 for China-bound finished goods. Terminal part types include margarine tubs, chilled dairy dessert cups, snap-on lids, overcap inserts, and thin-wall single-serve condiment cups; published production data for HI1600 in hot-fill or retort applications is limited, and such uses are outside the demonstrated operating window.
Closure performance of HI1600 is governed less by tensile yield than by the interaction of neck finish geometry, tamper-evident band orientation, and post-mould shrinkage under elevated warehouse temperatures. For 28 mm PCO 1881 water and carbonated soft-drink closures, the resin is processed at melt temperature 210–235 °C; mould temperature 15–25 °C; holding pressure 40–60 MPa; and cycle time 6–9 s on 96-cavity rotary or linear hot-runner tools. Formulation is typically 100 parts HI1600, with up to 30 wt% clean closed-loop PCR returned through a dedicated HDPE closure stream; colourant addition is 1–2 wt%, and slip agents—when required for low application torque—are dosed at 0.05–0.15 wt% erucamide, with pre-compounding because direct dry-blending at the press creates inconsistent torque retention. Downstream production includes continuous closure assembly with slitting of tamper-evident bands after moulding, with folded band geometry validated by ASTM D2063 torque retention measurement and dimensional checks against neck finish standards such as ISBT 28 mm PCO 1881. Food-contact compliance requires FDA 21 CFR 177.1520(c) with conditions of use covering aqueous, acidic, and low-alcohol foods, EU No 10/2011 overall migration limits of 10 mg/dm², and REACH Annex XVII restrictions. Terminal articles include 28 mm water closures, 38 mm dairy closures, 48 mm edible-oil closures, and push-pull sports caps.
In returnable logistics packaging, HI1600 is processed near the top of its recommended melt-temperature band to avoid jetting at high injection speeds on thick bosses and thin rib intersections. The material is formulated as 100 parts HI1600 with 10–25 wt% post-industrial regrind from edge trim and rejected crates, 0.5–1.5 wt% UV stabiliser masterbatch for outdoor stacking yards, and 0.2–0.5 wt% antioxidant masterbatch where long heat history is expected in multi-cavity family moulds. Moulding equipment for bottle crates and logistics totes commonly specifies clamp force from 800 t to 1200 t, sequential valve-gate hot runners, melt temperature 210–240 °C, mould temperature 15–30 °C, packing pressure 50–80 MPa, and cycle time 35–70 s depending on part mass and rib depth. Thick-wall sections at corner bosses are controlled by holding duration rather than elevated holding pressure, because HI1600 tends to freeze at the gate before full packing in sections above 4 mm if the gate is undersized. Compliance for general returnable crates falls under REACH SVHC screening and RoHS 2011/65/EU; dairy crate applications with direct food contact require FDA 21 CFR 177.1520(c) and EU No 10/2011, while pallet-box load performance is verified according to ISO 8611-1:2021. Terminal product types include bottle crates, dairy crates, logistics totes, collapsible bulk containers, and industrial pallet boxes.
Open-head pails in the 1–25 L range moulded from HI1600 require gate sizing and hold-pressure profiles configured for thick sidewalls of 1.8–2.6 mm, not for thin-wall dairy packaging. Compliance for dangerous-goods pails is demonstrated under UN 1H2/Y1.5/100 performance tests for stacking, drop, and leakproofness, with food-grade pails falling under FDA 21 CFR 177.1520(c) and EU No 10/2011; industrial pails require REACH Annex XVII and RoHS 2011/65/EU screening. Formulation uses 100 parts HI1600, 0–20 wt% clean regrind from non-food pail production, and 1–2 wt% colour masterbatch; for outdoor chemical storage, 0.3–0.8 wt% hindered amine light stabiliser masterbatch is pre-blended into the regrind stream to avoid uneven distribution during direct press-side dosing. Downstream injection moulding uses accumulator-assisted fill speed above 80 mm/s, melt temperature 200–230 °C, mould temperature 15–35 °C, and back pressure 5–10 bar; sidewall sink above the pail handle is controlled by maintaining screw rotation speed within the supplier-recommended range and lowering melt temperature only when cycle time allows. Terminal articles include 5 L paint pails, 10 L adhesive pails, 20 L food-ingredient pails with tamper-evident lids, and UN-certified 1H2/Y1.5/100 chemical containers.
Drop-in replacement of a 6–10 g/10 min HDPE with HI1600 in non-food housewares requires compensation for lower gate-seal time, because the higher melt flow reduces holding pressure decay time and can shift sink depth on thick ribs. In storage totes and drawer organisers with nominal wall sections of 1.0–2.0 mm, HI1600 is run at 100 parts with 5–15 wt% post-industrial regrind and 1–3 wt% colour or effect masterbatch; metallic or pearlescent masterbatches are pre-dried at 80 °C for 2–4 h if moisture-sensitive carriers are used. Downstream production uses cold-runner or hot-runner tools with melt temperature 190–230 °C, mould temperature 10–30 °C, injection velocity 60–120 mm/s, and back pressure 4–8 bar; part ejection problems on deep drawers are controlled by 0.5–1.0° draft angles and mould-release sprays only where texturing depth exceeds 12 µm. Regulatory requirements are limited to REACH and RoHS 2011/65/EU for general articles; California Proposition 65 screening applies where black colour concentrates use carbon black containing low PAH content. Terminal products include storage totes, laundry baskets, drawer modules, display trays, and dustpans; load-bearing claims should be verified by ASTM D638 and ASTM D790 or ISO 178 on test plaques before product release.
Although thick-section toy components are outside the ideal injection envelope of HI1600, thin-wall playset panels and ride-on body parts with nominal walls at 1.5–2.5 mm can be moulded when the tool is gated for high-flow cavity filling. Regulatory compliance for toys sold in the European Union and North America includes EN 71-3:2019+A1:2021 migration limits for nineteen elements, ASTM F963-23, REACH Annex XVII, and CPSIA phthalate and lead restrictions; migration testing is performed on the finished composite, not on unfilled resin pellets. The moulding formulation uses 100 parts HI1600, 0–10 wt% clean internal regrind from the same colour family, and 1–4 wt% colourant masterbatch selected from suppliers with heavy-metal test certificates. Processing on conventional hydraulic or electric injection moulding machines uses melt temperature 190–220 °C, mould temperature 15–30 °C, screw L/D ratio 20:1–25:1, and gate size 1.0–2.0 mm; thin-wall sand toys and construction blocks are produced with cycle times below 25 s on multi-cavity cold-runner tools. Terminal product types include ride-on body panels, sand toys, construction blocks, and outdoor play components; published data for HI1600 in soft-touch overmoulding or high-temperature exposure is limited.
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