| HS Code | 381842 |
As an accredited Jinhua (待核实) HDPE 5502 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Jinhua (待核实) HDPE 5502 is packed in 25 kg moisture-resistant woven bags, palletized, and stretch-wrapped for industrial bulk delivery. |
| Container Loading (20′ FCL) | 20′ FCL loading for Jinhua (to be confirmed) HDPE 5502: palletized 25 kg bags, shrink-wrapped, evenly stacked, secured, and moisture-protected for shipment. |
| Shipping | Jinhua (待核实) HDPE 5502 is typically a non-hazardous polyethylene resin in pellet form. Shipping uses 25 kg PP bags, 500–1000 kg jumbo bags, or bulk liners. Transport in clean, dry trucks, railcars, or containers. Store dry, ventilated, away from sunlight, heat, and moisture; avoid package damage. |
| Storage | Store Jinhua (待核实) HDPE 5502 in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, flames, and strong oxidizers. Keep original bags or containers closed, palletized, and off the floor to prevent moisture, dust, oil, and contamination. Avoid prolonged UV exposure. Store separately from incompatible materials. Follow the supplier’s SDS and confirm product identity because the grade is marked 待核实. |
| Shelf Life | HDPE 5502 shelf life is generally 24–36 months if kept dry, cool, and sealed; confirm exact duration with Jinhua's datasheet. |
For polyethylene containers intended to carry hazardous liquid chemicals under UN 3H1 certification, HDPE 5502 is processed on shuttle extrusion blow moulding machines equipped with 24:1 to 30:1 L/D barrier screws and accumulator heads with parison programmers. The grade is specified at a nominal density of 0.955 g/cm³ (ASTM D1505-18) and a nominal melt index of 0.35 g/10 min at 190 °C/2.16 kg (ASTM D1238-20). In production-scale lines, melt temperature is held at 180–205 °C, die gap is set between 1.5 mm and 2.5 mm, and blow air pressure is maintained at 0.6–0.8 MPa. Parison programming is not optional on containers above 5 L; without programmed wall thickness, the upper sidewall of 20 L jerrycans thins below 1.8 mm and stacking test failures occur. The compliance envelope references UN Model Regulations Chapter 6.1, including drop test 6.1.5.3, stacking test 6.1.5.4, and leakproofness test 6.1.5.2.3, with transport-mode recognition under ADR, RID, and IMDG where required.
Formulation addition ratios in this segment are set by drop-test performance at packing group I, II, and III. A working blend uses 70–85 wt% virgin HDPE 5502, 15–30 wt% clean in-plant regrind, 2–4 wt% carbon black or colour masterbatch, and 0.02–0.05 wt% fluoropolymer processing aid. Regrind above 30 wt% has been observed on shuttle machines to reduce ESCR and increase die-entry melt fracture. Pre-drying of regrind is required when storage relative humidity exceeds 60%; moisture above 0.05% causes surface pitting and pinholes, and predrying at 80 °C for 2–4 h restores an acceptable moisture level. The upper thermal boundary is narrow: melt temperatures above 220 °C for more than eight minutes increase gel counts and produce dark specks in natural and light-coloured parts. Table 1 summarises the minimum UN drop-test conditions applied to 3H1 containers before shipment.
| Packing group | Drop height | Conditioning temperature | Fill condition |
|---|---|---|---|
| I | 1.8 m | −18 °C for 24 h | Not less than 98% maximum capacity |
| II | 1.2 m | −18 °C for 24 h | Not less than 98% maximum capacity |
| III | 0.8 m | −18 °C for 24 h | Not less than 98% maximum capacity |
Finished product types from this route include 5 L, 10 L, 20 L, and 25 L UN-marked jerrycans for agrochemical concentrates, industrial solvents, lubricant additives, inks, and water treatment chemicals. The structural requirement in this segment is not tensile yield but cold drop sidewall split resistance; lot qualification should therefore include ESCR testing under ASTM D1693-21 Condition B and 100% in-line leak testing after tail trimming. The operational boundary for HDPE 5502 is that it should not be combined with low-molecular-weight injection-grade HDPE beyond 10 wt% because the parison melt strength drops and pinch weld integrity at the bottom corners becomes marginal.
Where an automotive reservoir or duct is produced on a suction blow moulding line, HDPE 5502 provides the low-sag parison body required for complex three-dimensional geometries. Compliance for interior parts references FMVSS 302 and ISO 3795 flammability limits; IMDS data entries and REACH SVHC declarations are part of the PPAP package under IATF 16949. A typical formulation in this sector is 85–100 wt% virgin HDPE 5502, 0–15 wt% same-resin plant regrind, 2 wt% carbon black/UV masterbatch, and 0.02–0.05 wt% fluoropolymer processing aid. The downstream process uses suction blow moulding with parison manipulation or robot-assisted three-dimensional placement, melt temperature 190–210 °C, mould temperature 12–25 °C, and wall thickness 2–4 mm. Tooling must account for die swell values in the range of 18–30% at these shear rates. Finished part types include windscreen washer reservoirs, coolant expansion tanks, air intake ducts, resonator chambers, and battery vent elbows. HDPE 5502 is not a direct fuel-contact layer; if the same geometry is converted for fuel tank service, a coextruded barrier structure is required. Published data for HDPE 5502 in fuel tank inner-layer configurations is limited, so barrier layer compatibility must be verified at the producer level.
In continuous shuttle blow moulding lines producing detergent bottles, HDPE 5502 is selected for resistance to stress cracking in aggressive liquid formulations such as hypochlorite bleaches, fabric softeners, and surface cleaners. The governing material standards are FDA 21 CFR 177.1520(c) and EU Regulation (EU) No 10/2011 where food-contact adjacent packaging is required, with REACH restrictions applying to additives. Formulation addition ratios for this segment use 80–100 wt% virgin HDPE 5502, 0–20 wt% clean in-plant regrind, 1–2 wt% colour masterbatch, and 0.3–1.0 wt% antistatic masterbatch only when filling-line static charge must be controlled. Process conditions on six-station shuttle machines are melt temperature 185–205 °C, mould temperature 15–25 °C, and continuous extrusion with multiple parison heads. In-line fluorination for solvent-based or oxygen-sensitive formulations is applied at 0.5–2% surface fluorine; above this window, ESCR can decline and necks may show stress whitening. The operational ceiling for regrind in bleach bottle production is 20 wt%; beyond this level, thermo-oxidative attack accelerates sidewall crack formation. Finished product types include 500 mL to 5 L bottles for laundry detergent, all-purpose cleaners, bleach, and fabric conditioners.
Bottles for solid oral dosage forms, liquid syrups, and effervescent tablet packaging require a high-density polyethylene wall stock that balances low water vapour transmission with minimal extractables. The pharmacopoeial compliance hierarchy for HDPE 5502 in this segment includes USP 661.1 for plastic materials of construction, USP 661.2 for plastic packaging systems, FDA 21 CFR 177.1520 for the base olefin polymer, and EU Regulation (EU) No 10/2011 for food-contact articles where drug product contact is not strictly covered by pharmacopoeia. Elemental impurity risk assessment aligns with ICH Q3D, and extraction studies for high-risk liquid formulations use USP 1663. Formulation is deliberately restricted: 100 wt% virgin HDPE 5502 for direct-contact monolayer containers, with regrind excluded from primary containers because lot traceability and extractables profiles must remain constant; colour masterbatch is limited to 0–2 wt% using pharma-approved pigments only. The downstream production process is continuous extrusion blow moulding inside an ISO 14644-1 Class 8 cleanroom, melt temperature 180–200 °C, no external mould release agents, closed resin transfer from silo to machine, and 100% vision inspection after trimming. Terminal product forms include prescription and over-the-counter tablet bottles, syrup bottles, dropper bottles, and desiccant canisters. The operational boundary is that HDPE 5502 in monolayer form is not assigned for parenteral or blood-contact use; published data for this specific pharmaceutical configuration is limited to oral and topical primary packaging.
When compounding for outdoor water storage, HDPE 5502 is combined with a UV-stabilised carbon black masterbatch before large-part accumulation blow moulding. Potable water contact compliance is governed by NSF/ANSI/CAN 61; markets in Australia and New Zealand may additionally require AS/NZS 4020. The formulation addition ratio is 95–97 wt% HDPE 5502, 3 wt% carbon black masterbatch at 50% carbon black concentration, yielding 1.5% final carbon black dispersion, and 0.03 wt% fluoropolymer processing aid. Regrind is omitted from potable water applications unless the regrind source and compounding process are certified under the same NSF/ANSI/CAN 61 listing. The production process uses accumulator blow moulding machines for tank volumes from 200 L to 2000 L, melt temperature 195–215 °C, mould temperature 15–25 °C, post-blow internal air cooling, and wall thickness 4–10 mm; cycle times range from 10 min for small tanks to 20 min for large-diameter vertical tanks. Finished product types include 200 L, 500 L, 1000 L, and 2000 L vertical water storage tanks, rainwater harvesting tanks, and outdoor irrigation tanks. The critical processing limitation is that reprocessed material above 20 wt% weakens base weld-line strength and reduces long-term hoop stress retention.
Stacked containers storing lubricant and agrochemical concentrates require sidewall stiffness, bottom pinch-weld integrity, and permeation resistance under tropical warehouse cycles. The compliance framework references UN Model Regulations Chapter 6.1 for single packagings, with 3H1 jerrican or 1H2 drum classification depending on size, EPA FIFRA container requirements for pesticide products, and ADR/RID/IMDG transport compatibility. A representative formulation is 80 wt% virgin HDPE 5502, 20 wt% clean plant regrind, 2 wt% colour masterbatch, and 0.03 wt% fluoropolymer processing aid. Optional in-line fluorination for solvent-containing formulations is set at 0.5–2% surface fluorine to reduce permeation without making the outer wall brittle. The process is long-stroke accumulator blow moulding, melt temperature 190–210 °C, mould temperature 12–25 °C, wall thickness 2–4 mm, and 100% automated leak testing after tail trimming. Terminal product forms include 1 L, 4 L, 5 L, and 20 L lubricant bottles, plus 1 L and 5 L agrochemical concentrate containers. The operational boundary for HDPE 5502 is the upper regrind limit of 20 wt%; above this level, creep under stacked load at warehouse temperatures above 50 °C increases sidewall bulging, and top-load collapse risk becomes measurable within three-to-six-month storage cycles. Published data for this specific high-temperature warehouse configuration is limited; the 20 wt% limit is derived from converter trials rather than a single standard test.
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