| HS Code | 334160 |
| Polymer Type | High Density Polyethylene (HDPE) copolymer |
| Density | 0.955 g/cm3 |
| Melt Index 190 C 2 16 Kg | 0.35 g/10 min |
| Tensile Strength At Yield | 27 MPa |
| Tensile Strength At Break | 30 MPa |
| Elongation At Break | >500% |
| Flexural Modulus | 1100 MPa |
| Environmental Stress Crack Resistance 100 Igepal | >1000 h |
| Vicat Softening Point | 125°C |
| Shore D Hardness | 65 |
| Brittleness Temperature | < -70°C |
| Melting Point | 130°C |
| Thermal Conductivity | 0.4 W/m·K |
| Coefficient Of Linear Thermal Expansion | 1.2E-4 /°C |
| Water Absorption | <0.01% |
| Dielectric Constant | 2.3 at 1 MHz |
| Volume Resistivity | >1E16 ohm·cm |
| Processing Temperature | 180-220°C |
As an accredited Formosa Plastics HDPE 8001 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Formosa Plastics HDPE 8001 is supplied in 25 kg (55 lb) polyethylene-lined paper bags stacked on pallets. |
| Container Loading (20′ FCL) | 20′ FCL fully loaded with 25 kg bags of Formosa Plastics HDPE 8001, palletized and shrink-wrapped for secure ocean transport. |
| Shipping | Formosa Plastics HDPE 8001 is shipped as nonhazardous, odorless high-density polyethylene pellets. Standard packaging includes 25-kg bags, octabins, or bulk trucks, palletized and stretch-wrapped. Keep dry and away from direct sunlight, heat, and ignition sources. Use covered transport; no special DOT/IMDG hazard classification. |
| Storage | Store Formosa Plastics HDPE 8001 in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, flames, and oxidizers. Keep bags or containers sealed, palletized, and off the floor to prevent moisture, odor, and contamination. Avoid dust generation and static discharge. Use appropriate PPE and follow the manufacturer’s SDS for safe handling and storage. |
| Shelf Life | Formosa Plastics HDPE 8001 has indefinite shelf life if stored dry, sealed, cool, away from sunlight and contaminants. |
Continuous shuttle blow molding lines running Formosa Plastics HDPE 8001 for closed-head industrial drums and jerrycans are configured around the resin’s high melt strength, which is conventionally indexed by a melt flow rate of 0.80 g/10 min at 190°C under 2.16 kg load as per ASTM D1238-20 and a density of 0.956 g/cm³ per ASTM D1505-18. The material is not pre-dried unless silo or hopper condensation is present above 60% relative humidity; wet feed manifests on accumulator-head machines as microporosity along the pinch-off weld and as surface streaking on the outer parison wall. In production of 20–220 L UN-rated containers, the parison programmer is set to thicken the tail section to 8–10 mm and the sidewall to 4–5 mm, while the die head temperature is held between 195°C and 210°C. Above 220°C, the parison sag rate increases to the point that the bottom pinch-off welds on 200 L drums become the primary drop-test failure location; below 185°C, tail fusion is incomplete and the hydrostatic leakproofness test exposes channel welds. Terminal articles include open-head and tight-head drums from 25 L to 220 L, 1H1 closed-head drums, 1H2 open-head drums, 3H1 closed-head jerrycans, and 3H2 open-head jerrycans. The applicable compliance matrix includes the UN Model Regulations Chapter 6.1, ADR/RID 6.1, IMDG Code 6.1, and for the United States 49 CFR Part 178. Each packaging type must pass hydrostatic pressure, drop, stacking, and leakproofness tests; the table below summarizes the qualification regime for a typical 220 L 1H1 drum used for Packing Group II liquids.
| Qualification test | Reference clause | Relevant condition | Pass criterion |
|---|---|---|---|
| Hydrostatic pressure | ADR 6.1.5.5 | 100 kPa for 30 min at ambient | No leakage through weld or body |
| Drop test | ADR 6.1.5.3 | 1.2 m after -18°C conditioning | No rupture in weld area; contents retained |
| Stacking test | ADR 6.1.5.6 | 24 h under load equivalent to 3 m stack height | No deformation causing leakage |
| Leakproofness | UN 6.1.5.4 | Internal air pressure 20–30 kPa | No continuous bubble stream |
The pinch-off weld is the primary structural discontinuity in large blow-molded drums. On a 200 L closed-head drum, the tail pinch-off is formed by two mold halves closing against a molten parison at 8–10 mm programmed thickness; if the temperature at the pinch line drops below 170°C before mold closure, incomplete fusion produces a cold-weld channel that passes visual inspection but fails the ADR 6.1.5.5 hydrostatic test. Conversely, if mold closure is delayed and the parison reaches 220°C, the melt flows out of the pinch zone and leaves sidewall thinning above the weld. Accumulator drop time is therefore kept below 8 s for a 200 L shot mass of 9–11 kg. Barrel profile is normally set with feed zone 170–180°C, compression zone 190–200°C, metering zone 200–210°C, and head/die 195–205°C. Clamp force on large-drum presses is 1,000–1,500 kN per mold half for 220 L drums, with blow pressure 0.7–0.9 MPa and exhaust air recovery cycles to reduce surface condensation. The formulation window for industrial drums is deliberately narrow: 2.0–2.5 wt% carbon black masterbatch is used for outdoor UV resistance, while a 0.15–0.25 wt% hindered amine light stabilizer is added only when the container is stored in unshaded yards. Internal regrind from the same production line is permitted at up to 30 wt% for non-food, non-hazardous service after melt-flow confirmation; above 30 wt%, the reduced elongation at break measured under ASTM D638-14 increases cold-drop fracture probability. For chemical compatibility, HDPE 8001 is suitable for oxidizing and non-oxidizing acids below 60°C, but it is incompatible with strong halogenated solvents and aromatic hydrocarbons above 50°C in continuous contact; high aromatic content causes environmental stress cracking unless ESC-resistant design margins are preserved. Post-consumer resin is not permitted in UN hazardous-material packaging unless the full qualification test sequence is repeated on the final resin mix.
In underhood windshield washer reservoirs, coolant expansion tanks, and diesel exhaust fluid reservoirs, HDPE 8001 is processed on suction blow molding or accumulator-head machines because the part geometry includes convoluted baffles, insert interfaces, and slender neck sections that are difficult to fill with lower-melt-strength grades. The controlling variable is the die gap program rather than screw recovery: a 2.5–4.0 L windshield washer bottle typically requires a shot mass of 0.6–1.2 kg, with the die gap profile closed from 8 mm at the neck to 4 mm along the body and reopened to 6 mm at the tail. Melt temperature is held at 190–210°C. Above 215°C, the parison sags unevenly and the ears of a 3D suction-molded reservoir show wall thinning below 2 mm; below 185°C, the flash at the insert bosses becomes brittle and cracks during vehicle vibration testing. Mold temperature is maintained at 15–30°C, and blow air pressure is 0.7–0.9 MPa. Cycle times are 45–75 s for side-by-side tooling with two cavities.
Compliance for automotive reservoirs is anchored to ISO 175:2010 for fluid immersion resistance, ISO 16750-3 for mechanical and temperature exposure on road vehicles, and ISO 22241-3 for diesel exhaust fluid compatibility where the part is used as an AdBlue reservoir. Formulation uses a 2.0 wt% carbon black masterbatch for parts with direct engine-compartment light exposure; for coolant expansion tanks, a 0.1–0.2 wt% thermal stabilizer masterbatch may be included to protect against long-term hot glycol contact at 90°C. Regrind addition is usually limited to 20 wt% because insert encapsulation and pinch-off integrity degrade at higher ratios. Terminal parts include windshield washer tanks in the 2.0–8.0 L range, radiator coolant overflow bottles of 0.5–2.0 L, and 10–20 L diesel exhaust fluid reservoirs.
Because large-format composite intermediate bulk containers require a seamless inner bottle with uniform wall distribution, HDPE 8001 is extrusion blow molded on large accumulator-head machines with a 120 mm screw diameter, 30:1 L/D ratio, and a shot capacity of 12–15 kg. The process window is set for parison integrity: die head temperature 190–205°C, mold temperature 10–25°C, and blow air pressure 0.8–1.0 MPa. A 1,000 L IBC liner is programmed to place 3.5–5.0 mm wall thickness in the sidewall and 7–9 mm at the top and bottom knuckle radii; the wall-thickness profile is adjusted to avoid thinning at the transition where the bottle enters the steel frame. In service, the liner must pass UN 31HA1 performance tests under ADR Chapter 6.5 and IMDG Code Chapter 6.5, including a drop test from 1.2 m at -18°C after filling to 98% capacity with water. For food-contact use, the resin falls under FDA 21 CFR 177.1520 and Regulation (EU) No 10/2011; no post-consumer regrind is added, and virgin process regrind is kept below 20 wt% to maintain overall migration below the 10 mg/dm² limit. Outdoor IBC liners are compounded with 2.0–2.5 wt% carbon black masterbatch to resist UV embrittlement; indoor chemical liners are typically unpigmented. The addition of more than 5 wt% of a linear low-density polyethylene modifier is not recommended because it lowers parison melt strength and shifts the die swell, causing thickness control problems on 1,250 L tools. Operational boundaries include a maximum continuous service temperature of 60°C for aggressive hypochlorite solutions and a prohibition on aromatic solvents above 40°C unless the liner is coextruded with a barrier layer or surface-fluorinated. Terminal products include 1,000–1,250 L composite IBC bottles, 250 L chemical liners, and 600 L discharge bottles used in water treatment and industrial liquid feed systems.
When agricultural packaging lines fill emulsifiable concentrates, suspension concentrates, and adjuvant premixes based on xylene, cyclohexanone, or heavy aromatic naphtha, HDPE 8001 is selected for its stress-cracking resistance and blow-mold process stability. The compliance framework is dominated by the UN Model Regulations for 3H1 packaging, ADR 6.1, and in the United States 40 CFR Part 165 for pesticide container standards, with additional permeation and storage stability tests required by registrants. Formulation typically involves 2.5 wt% carbon black masterbatch with a particle size of 45–50 nm, which provides UV shielding and also reduces light transmission into light-sensitive active ingredients. The addition of 0.15–0.25 wt% hindered amine light stabilizer is used for multi-year warehouse and field storage. Regrind is limited to 15 wt% of internally generated, clean bottle trim; higher levels are associated with weld-line stress cracking in containers filled with xylene-based emulsifiable concentrates. Production is performed on shuttle blow molding machines with 60–80 mm screw diameters and 24:1–30:1 L/D ratios, at melt temperatures of 190–210°C and mold temperatures of 10–20°C. For low-solvent formulations, a standard monolayer wall of 0.8–1.5 mm is used; for high-solvent-strength products, inline fluorination of the inner surface is applied to reduce permeation, with the final barrier level verified by toluene transmission rate testing rather than by fluorination line residence time alone. Terminal products include 1 L, 5 L, 10 L, and 20 L round and F-style jugs, stackable containers with tamper-evident closures, and calibrated induction-sealed necks for bright-stock products.
Formosa Plastics HDPE 8001 is used in extrusion blow molded water storage tanks, rainwater harvesting cisterns, and marine potable-water reservoirs where the part must pass both short-term cold-impact testing and long-term hydrostatic stress requirements. The governing standards are NSF/ANSI/CAN 61 for potable water contact, AS/NZS 4020:2018 where Australian or New Zealand compliance is required, BS 6920:2000 for United Kingdom water-contact suitability, and FDA 21 CFR 177.1520 for food-contact formulations. Production is on large accumulator machines with shot capacities of 10–20 kg, producing vessels from 200 L to 3,000 L. The parison is programmed to create a bottom knuckle radius wall of 6–9 mm and a sidewall of 4–6 mm; mold cooling at 10–20°C is applied to control shrinkage and maintain dimensional fit for tank lids and fittings. Melt temperature is held between 195°C and 215°C; excursions above 220°C produce visible oxidation yellowing and reduced cold-impact resistance at -20°C.
The formulation for black outdoor tanks uses 2.0–2.5 wt% carbon black masterbatch; blue or natural tanks use 0.3 wt% UV stabilizer plus 0.05 wt% blue pigment. No post-consumer regrind is added for potable-water service. Process regrind is limited to 25 wt% for non-potable service. The material is not intended for continuous pressurized hot water above 60°C; above this threshold the long-term hydrostatic strength declines and creep rupture data from ASTM D1598 must be consulted for pipe-connected installations. Terminal articles include vertical cylindrical tanks, horizontal transportable water tanks, marine holding tanks, and septic/holding tank bodies that require blow-molded cylindrical geometry rather than rotomolded rectangle-type parts.
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