| HS Code | 557816 |
As an accredited PCC (Iran) HDPE HB5003 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | PCC (Iran) HDPE HB5003 is supplied in 25 kg PE-lined woven bags, palletized at 55 bags (1,375 kg) per pallet. |
| Container Loading (20′ FCL) | 20' FCL loading description: PCC (Iran) HDPE HB5003 in 25kg bags, palletized, shrink-wrapped, securely stuffed, approx 22 MT net per container. |
| Shipping | PCC (Iran) HDPE HB5003, a non-hazardous polyethylene resin, is typically shipped from Iranian ports in 25 kg PP woven bags or 500–1,000 kg jumbo bags. Cargo is palletized, stretch-wrapped, and loaded into standard 20'/40' dry containers by sea. Normal MSDS/customs documents apply; no IMDG class required. |
| Storage | Store PCC (Iran) HDPE HB5003 in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, sparks, and flames. Keep original bags or containers tightly closed on pallets, protected from moisture, dust, and contaminants. Segregate from oxidizers, acids, and strong chemicals. Avoid prolonged UV exposure and static buildup. Maintain good housekeeping, use first-in/first-out rotation, and follow manufacturer/MSDS instructions and local regulations. |
| Shelf Life | PCC (Iran) HDPE HB5003 has a 24-month shelf life in unopened original packaging, stored cool, dry, and protected from sunlight. |
Extrusion blow molding of 20 L to 30 L tight-head jerrycans from PCC (Iran) HDPE HB5003 on a single-station accumulator machine requires screw plasticising capacity of at least 90 kg/h when the target cycle is 75 s for a 1.9 kg shot weight. The grade’s nominal melt mass-flow rate of 0.30 g/10 min at 190 °C/2.16 kg under ISO 1133-1:2022 places it in the high-melt-strength segment required for vertical wall stability, while density at 0.950 g/cm³ per ISO 1183-1:2019 sets part mass and stack-load calculations. On an 80 mm, 24:1 L/D grooved-feed extruder, typical barrel setpoints are 180 °C, 195 °C, 210 °C, and 220 °C, with accumulator head held at 215 °C and die at 205 °C; die-temperature variation exceeding ±3 °C produces parison thickness banding because local viscosity shifts alter wall distribution before blow-off. Parison programming with a 30-point controller compensates for swell in the range 35–50% and thins the pinch-off zone below the chime to avoid fold cracks. Formulation for UN 3H1 jerrycans in lubricant and light chemical service commonly uses 97.0 wt% virgin HB5003, 2.5 wt% carbon black masterbatch, 0.3 wt% antioxidant concentrate, and 0.2 wt% fluoropolymer processing aid. Carbon black below 1.8 wt% is insufficient for export containers stored outdoors beyond 12 months; loadings above 3.0 wt% reduce notched impact at −18 °C without improving indoor chemical service. The compound should not combine with free amines or unsaturated amide slip additives because extended accumulator residence can yellow the neck region and reduce ESCR. Drop-test qualification at −18 °C after 24 h conditioning, leakproofness at 30 kPa for 10 min, and hydraulic pressure testing per 49 CFR 178.509 control the design type; a 25 L jerrycan at 850 g typically requires minimum sidewall 1.8 mm and pinch-off land 2.2 mm.
The conversion of HB5003 into 220 L tight-head polyethylene drums inverts the normal regrind economics of injection molding because environmental stress crack resistance, not stiffness, controls service life with aggressive hydrocarbons. The 0.30 g/10 min melt index permits parison lengths above 1.5 m without sag-induced wall thinning at shot masses of 9.5 kg. Accumulator-head equipment with die diameter 400 mm and adjustable die gap 1.2–3.0 mm is required; a continuous-extrusion shuttle machine cannot plasticise the shot between cycles below 150 s. Common barrel settings are 170 °C, 190 °C, 210 °C, and 220 °C, die 210 °C, mold coolant 12–18 °C, and cooling time 180 s for a 220 L drum. The critical process conflict is regrind level versus ESCR. For low-odour solvent service, 100% virgin HB5003 is normally specified; in-plant closed-loop regrind above 20 wt% can reduce F50 according to ASTM D1693-15 condition B, 10% Igepal CO-630, 50 °C, because multiple heat histories create gel nuclei and oxidative degradation products. The reduction is not linear with regrind percentage; it follows extruder residence-time distribution and barrel overshoot above 230 °C. For UN 1H1 drums carrying Packing Group I and II liquids, regrind should be limited to 15 wt% unless lot-specific F50 exceeds 300 h. For solid prill or paste service, regrind up to 30 wt% is practical, but top-chime impact at −18 °C then becomes the limiting property. Tensile yield on compression-moulded plaques per ISO 527-2:2012 should remain above 24 MPa; elongation at break below 700% indicates overdegradation. The end product is a 9.5 kg drum with minimum sidewall 2.4 mm and top/bottom pinch-off designed for 3-high warehouse stacking at 40 °C.
HB5003 serves as the structural skin and regrind-carrier layers in coextruded containers for emulsifiable concentrates, where xylene, cyclohexanone, and chlorinated solvents require either PA6 or EVOH barrier. Conventional layer sequence from outer to inner is outer HDPE 18–22 wt%, adhesive 2 wt%, PA6 3–5 wt%, regrind 35–45 wt%, adhesive 2 wt%, inner HDPE 20–25 wt%. A continuous PA6 layer at 3 wt% of total structure reduces xylene permeation by roughly one order of magnitude compared with monetarily equivalent monolayer HDPE, but only if the barrier layer is free of folds and melt-temperature mismatch. At 230 °C and 100 s⁻¹, the apparent shear viscosity of HB5003 is typically 1,800–2,200 Pa·s; published data for specific adhesive and barrier grades in this exact configuration is limited, and rheology must be confirmed by capillary rheometry per ISO 11443:2021. Layer-to-layer viscosity ratio outside 60–140% at the same shear rate produces interfacial wave instability, visible as haze bands in the bottle sidewall. Six extruders feed a spiral mandrel die with per-layer melt setpoints of HDPE 215 °C, regrind 210 °C, PA6 240 °C, and adhesive 225 °C; die gap is 1.4 mm. Blow-pin internal cooling with 6–8 bar air and mold temperature 8–12 °C accelerate part set without excessive crystallinity. End product is a 5 L F-style jug at 240 g with wall thickness 1.2 mm; xylene permeation is measured under ASTM F739-20 at 40 °C, with control limit 0.5 g/m²·day for high-solvent formulations.
| Application zone | Governing standard or method | Test condition | Control limit |
|---|---|---|---|
| 20 L–30 L jerrycans | 49 CFR 178.509, UN 3H1 | drop −18 °C, 1.2 m | no leak, no rupture |
| 220 L tight-head drums | ASTM D1693-15 condition B | 50 °C, 10% Igepal CO-630 | F50 > 300 h |
| Agrochemical barrier bottles | ASTM F739-20 | 40 °C, xylene challenge | ≤ 0.5 g/m²·day |
| Diesel fuel tanks | SAE J1737 | 40 °C, hydrocarbon permeation | ≤ 1.5 g/m²·day |
| Automotive washer reservoirs | OEM low-temperature drop method | −18 °C, 1.0 m | no crack, no leak |
| Potable water tanks | NSF/ANSI/CAN 61, Regulation (EU) No 10/2011 | total migration | 10 mg/dm² |
Diesel fuel tanks for off-highway equipment and generator sets are blow molded from HB5003 in multilayer configurations where the grade occupies the outer cap layer and the regrind layer. Shot weights for a 60 L tank reach 7 kg, exceeding the plastification capacity of small shuttle machines; production on an accumulator blow molder with 100 mm, 25:1 L/D screw is standard. Barrel setpoints are lower than those used for jerrycans: 170 °C feed, 190 °C, 205 °C, 215 °C, head 210 °C, die 205 °C. Melt temperature must not exceed 220 °C because diesel-contact ESCR depends on the high-molecular-weight tail of the resin, which is shear-sensitive; barrel overshoot reduces the molecular weight distribution and lowers crack resistance under cyclic fuel exposure. Layer distribution for a six-layer tank is typically outer HDPE 10 wt%, adhesive 1 wt%, EVOH 1.5 wt%, adhesive 1 wt%, regrind 40 wt%, inner HDPE 46.5 wt%. Barrier value is validated under SAE J1737 at 40 °C. Pinch-off geometry determines low-temperature weld integrity: pinch-off width 5 mm, depth 3 mm, and melt temperature at the parting line 210 °C are required to prevent weld-line cracking in drop tests at −30 °C. The end product is a 50 L diesel tank with tooled inserts for fuel pickup and return lines, leak-tested at 30 kPa for 30 s after full assembly.
Automotive windshield washer reservoirs blow molded from HB5003 are non-barrier, single-layer parts that must retain impact strength after exposure to methanol and ethylene glycol fluids at 60 °C under-hood temperature. The critical design input is not tensile strength but drop impact after the reservoir has been conditioned with 35 wt% methanol solution at room temperature for 24 h and then chilled to −18 °C. HB5003’s 0.30 g/10 min melt flow supports nominal wall thickness 2.0–2.5 mm without pinholing; post-mold shrinkage of 1.5–2.0% in length and 1.0–1.5% in diameter requires fixture cooling for 60 s to maintain pump suction well and filler neck dimensions. Cycle setup on a 65 mm, 24:1 L/D extruder with clamp force 350 kN uses shot weight 700 g, blow air 0.7 MPa, and mold coolant 10 °C. Formulation is 100% virgin HB5003 or up to 10 wt% internal regrind; black versions use 2.0 wt% carbon black masterbatch. Nucleation packages above 0.05 wt% should be avoided because rapid crystallization at the blow pin can generate brittle weld lines around the suction well. End product is a 4 L reservoir at 560 g with integrated pump bracket and blow-formed level-sensor boss; the part is dropped from 1.0 m at −18 °C after alcohol conditioning and must show no crack or leak.
Vertical water storage tanks in the 500 L to 2,000 L range are produced from HB5003 by extrusion blow molding when the accumulator head capacity exceeds 20 kg and mold daylight exceeds 1.8 m. The limiting property for outdoor tanks is not short-term burst but oxidative shelf life and stress crack resistance at weld lines under hydrostatic pressure. The grade should be compounded with 2.5 wt% carbon black masterbatch for UV stabilization at solar radiation levels up to 5,000 MJ/m²/year; tanks without sufficient carbon black develop surface crazing after three to five years in exposed service. Large-shot processing uses shot weight 18 kg, barrel setpoints 175 °C, 190 °C, 205 °C, die 200 °C, mold temperature 8–12 °C, and cooling time 240 s. Parison programming thickens the bottom wall to 6.0 mm while keeping the top section at 3.5 mm to resist hydrostatic pressure without excessive mass. Potable-water certification under NSF/ANSI/CAN 61 requires documented resin lot traceability and exclusion of regrind from non-food sources; European migration testing under Regulation (EU) No 10/2011 applies a total migration limit of 10 mg/dm². FDA 21 CFR 177.1520(c) 3.2a may govern aqueous food contact if the specific HB5003 lot is listed or covered by a supplier food-contact statement. End product is a 1,000 L vertical tank at 42 kg, average wall 4.8 mm, with threaded lid and 2 inch bulkhead fitting; weld-line burst testing is performed at 150 kPa for 1 h on the first article of each mold campaign.
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