| HS Code | 682526 |
As an accredited LyondellBasell HDPE ETP H4557X02 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | LyondellBasell HDPE ETP H4557X02 is supplied in 25 kg polyethylene bags, palletized and stretch-wrapped for transport. |
| Container Loading (20′ FCL) | 20′ FCL container loading of LyondellBasell HDPE ETP H4557X02: 25 kg bags, palletized, shrink-wrapped, and secured for ocean transport. |
| Shipping | LyondellBasell HDPE ETP H4557X02 is shipped as non-hazardous polyethylene resin pellets in bags, octabins, or bulk containers. Not regulated by DOT, IMDG, IATA, or ADR. No UN number, hazard class, or packing group assigned. Avoid moisture, contamination, and excessive heat; store in a cool, dry, ventilated area. |
| Storage | Store LyondellBasell HDPE ETP H4557X02 indoors in a cool, dry, well-ventilated area, on pallets, away from direct sunlight, heat, sparks, flames, and strong oxidizers. Keep original packaging closed to prevent moisture, dust, and contamination. Avoid prolonged UV exposure and excessive stacking. Use first-in, first-out rotation, good housekeeping, and follow the SDS/local regulations. Do not smoke or use open flames. |
| Shelf Life | The shelf life is 12 months from date of manufacture when stored in a dry, well-ventilated area away from direct sunlight and heat. |
Processing of LyondellBasell HDPE ETP H4557X02 in monoextrusion lines for PE100 pressure pipe used in potable water and gaseous fuel distribution is controlled by a melt-temperature window between 190 °C and 215 °C at the die entry. On a 36:1 L/D grooved-feed single-screw extruder equipped with a barrier screw, the feed zone is normally maintained at 40–80 °C, the compression zone at 180–210 °C, and the metering zone at 205–215 °C, while the spiral mandrel die is held at 200–210 °C. Lower melt temperatures below 185 °C are associated with shark-skin melt fracture at higher haul-off speeds, and melt temperatures above 220 °C increase oxidative gel formation and die-head pressure drift. The formulation addition ratio for black external service pipe is 2.0–2.5 wt% of high-dispersion carbon black masterbatch measured by ISO 6964:2019, with the final carbon black content controlled at 2.0–2.5 wt%; a stabilizer masterbatch is added at 0.3–0.8 wt% depending on the base antioxidant package. The downstream production process includes vacuum tank calibration at −0.6 to −0.3 bar, spray cooling at 15–20 °C, and continuous ultrasonic wall-thickness measurement with a laser diameter gauge. Terminal product types include SDR 11 and SDR 17 PE100 pipe from DN 20 through DN 1600 for potable water mains, gas distribution laterals, and industrial process water lines where the compound is listed for potable water contact under national transpositions of Directive (EU) 2020/2184 and for gas under ISO 4437-1:2020. Pre-drying is not normally required below 60 % RH; if surface condensation is visible, hot-air drying at 80 °C for 2 h is applied before the feed hopper enters the grooved barrel. The resin should not remain stagnant at melt temperatures above 230 °C for more than 15 min to avoid localized chain degradation.
| Processing zone | Set point | Measurement or alarm threshold |
|---|---|---|
| Feed zone | 40–80 °C | Contact thermocouple at grooved barrel |
| Compression zone | 180–210 °C | Melt pressure 18–25 MPa |
| Metering zone | 205–215 °C | Melt temperature 190–215 °C |
| Spiral mandrel die | 200–210 °C | Die-head pressure not exceeding 28 MPa |
| Vacuum calibration | −0.6 to −0.3 bar | Vacuum tank pressure transducer |
| Spray cooling | 15–20 °C | Water temperature at tank inlet |
Hydrostatic design basis is evaluated by regression analysis according to ISO 9080:2012, and PE100 classification requires a minimum required strength of 10 MPa at 20 °C for 50 years under ISO 12162-1:2019. Slow crack growth resistance is assessed by the notched pipe test ISO 13479:2022, and rapid crack propagation is screened by the S4 small-scale steady-state test ISO 13477:2008; the manufacturer’s datasheet values should be confirmed before the resin is used in gas distribution, because published data for this specific configuration is limited. On production-scale lines, die-head pressure excursions above 28 MPa have been associated with reduced melt homogeneity and surface pitting in large-diameter pipes, so screen packs of 100/200/400/100 mesh are replaced when pressure rises beyond the alarm threshold. Butt fusion jointing of finished pipe is performed under ISO 21307:2017, and continuous service temperature is limited to 60 °C.
| Requirement | Standard | Condition / criterion |
|---|---|---|
| PE100 classification | ISO 12162-1:2019 | MRS ≥ 10 MPa at 20 °C |
| Long-term hydrostatic strength | ISO 9080:2012 | Regression of internal pressure data |
| Internal pressure resistance | ISO 1167-1:2006 | 20 °C/100 h, 80 °C/165 h, 80 °C/1000 h |
| Slow crack growth | ISO 13479:2022 | Notched pipe test at 80 °C |
| Rapid crack propagation | ISO 13477:2008 | S4 critical pressure at 0 °C |
| Carbon black content | ISO 6964:2019 | 2.0–2.5 wt% |
| Carbon black dispersion | ISO 18553:2021 | ≤ grade 3 |
| Gas supply systems | ISO 4437-1:2020 | PE100 compound qualification |
| Butt fusion jointing | ISO 21307:2017 | Qualified weld procedure record |
Corrugated high-density polyethylene drainage pipe manufactured from HDPE ETP H4557X02 is classified as a non-pressure buried structure under ASTM F2306-21 and AASHTO M294-22 in North America, and under EN 13476-3:2018+A1:2023 in the EU. The compound for black utility-grade drainage pipe contains 2.0–2.5 wt% carbon black masterbatch measured by ISO 6964:2019; clean in-house HDPE regrind may be incorporated up to 25 wt% only when the regrind lot shows a melt flow rate shift of less than 0.05 g/10 min by ISO 1133-1:2022 and an oxidation induction time of at least 20 min at 200 °C by EN 728:1997. The downstream production process is a continuous vacuum corrugator line in which the melt tube is inflated into moving corrugation blocks under −0.7 to −0.4 bar, water is sprayed at 15–25 °C, and the haul-off speed is matched to the block speed to preserve consistent crest-wall thickness. Ring stiffness is determined by ISO 9969:2016, and common terminal pipe classes are SN4, SN6, and SN8 from DN 100 to DN 1200 for storm sewer, agricultural land drainage, and sub-soil dewatering. The operational boundary is that corrugated drainage pipe is not for hydrostatic pressure service; continuous wastewater temperature is limited to 60 °C, and jointing uses EPDM or nitrile rubber gaskets rather than solvent cement.
High-output corrugator lines running above 800 kg/h exhibit a known process conflict when melt temperature exceeds 230 °C: the molten tube sags between the die and corrugator entry, creating thin-wall sectors at the 3 o'clock and 9 o'clock positions and reducing the measured ring stiffness below the required minimum. The corrective action is to reduce the die temperature to 200–210 °C and to adjust the inner cooling air temperature to 20–30 °C before increasing output; this keeps the tube geometry stable without increasing melt pressure beyond 25 MPa.
Electrical and telecommunications conduit extrusion from HDPE ETP H4557X02 is a low-pressure, high-ductility application in which the resin is selected for crush resistance and low-temperature impact rather than hydrostatic strength. The compound for black outdoor conduit is formulated with 2.0–3.0 wt% carbon black masterbatch, sometimes with 0.2–0.5 wt% processing aid masterbatch to reduce melt viscosity in grooved-feed extruders, and the final carbon black dispersion is assessed by ISO 18553:2021. The production line uses a 30:1 to 33:1 L/D single-screw extruder, a spider-leg die, and vacuum calibration at −0.5 to −0.2 bar, with cooling water at 18–25 °C; multi-layer coextrusion can place a thin virgin outer layer over a foamed or recycled core only when the outer layer retains a minimum thickness of 0.8 mm for impact resistance. Compliance is tested under IEC 61386-24:2010 and ASTM F2160-21 for solid-wall HDPE conduit, with cable protection ducts also evaluated for ring stiffness according to ISO 9969:2016. Terminal product types include 25 mm to 160 mm power cable duct, microduct outer sheaths, and fiber-optic access conduit in direct-buried or concrete-embedded installations. These conduits are not pressure-rated; continuous service temperature is limited to 60 °C, and rocky soil installation requires a sand bedding or geotextile wrap to prevent point-load collapse.
Batch-to-batch variation in apparent melt viscosity of more than 3 % on a 24:1 extruder torque curve is commonly traced to masterbatch lot changes or surface moisture; the remedy is to pre-dry the masterbatch at 60 °C for 4 h and to verify the final melt flow rate by ISO 1133-1:2022 at 190 °C/5 kg.
Flat-die extrusion of HDPE ETP H4557X02 into thick-wall sheet is performed at a melt temperature of 200–215 °C on a 33:1 L/D single-screw extruder feeding a coat-hanger or fishtail die with a 1000–3000 mm width. The sheet gauge range is 4–30 mm, and the three-roll calendering stack is held at 60–95 °C to control residual stress and warpage. The formulation addition ratio for chemical containment sheet is 2.0–2.5 wt% carbon black masterbatch for UV resistance, with the melt pumping stability controlled by a screen pack of 100/200/400/100 mesh; batch-to-batch variation in melt pressure greater than 1.5 MPa at constant screw speed indicates masterbatch incompatibility or surface moisture. Compliance and design references include ISO 14632:2021 for extruded polyethylene sheet, ASTM D1998-21 for polyethylene upright storage tanks, and DVS 2207-1 for hot gas extrusion welding; welds are qualified by tensile testing at 50 mm/min using ASTM D638-14 with failure required in the parent material rather than the weld zone. Terminal product types include fabricated secondary containment sumps, tank linings, transition plates, and open-top chemical dosing bunds. The material should not be used for long-term continuous contact with strong oxidizing acids above 50 °C, and field welding must not proceed when the sheet surface temperature is below 10 °C without preheating. Edge trim regrind may be returned to the extruder up to 15 wt% only if the regrind is dried and free of weld slag; higher fractions can reduce dart drop impact and create die lines.
Pipe manufactured from HDPE ETP H4557X02 for sliplining and pipe-bursting rehabilitation is specified under ASTM F585-21 for insertion guidance and ISO 11296-1:2018 for renovation of gravity and pressure pipelines. The formulation addition ratio for trenchless rehabilitation pipe keeps carbon black masterbatch at 2.0–2.5 wt%; regrind fractions above 10 wt% are excluded from the outer wall to preserve slow crack growth resistance under long-term pull-in stress. The downstream production process extrudes the pipe to a controlled outside diameter with SDR 17 or SDR 26, followed by butt fusion according to ISO 21307:2017 and insertion through the host pipe by winch. During installation the governing stress is not internal pressure but axial pull force, so the tensile load is limited to 50 % of the pipe yield tensile strength at 23 °C determined by ASTM D638-14; the safe pulling force is calculated from the pipe wall cross-sectional area. Terminal product types include slipliner pipes for gravity sewer rehabilitation, outer liners for water main renewal, and sacrificial pulling heads with swivel couplings. Published data for this specific configuration is limited; pre-qualification tests should be run under job-specific temperature and pull-in conditions, and the bending radius during insertion is maintained above 40 times the outside diameter to avoid kinking.
Spiral-wound large-diameter non-pressure pipe production uses a continuously extruded hollow profile that is wound around a rotating mandrel to build up a stiffened cylinder. HDPE ETP H4557X02 is formulated with 2.0–2.5 wt% carbon black masterbatch and may incorporate up to 20 wt% clean internal HDPE regrind when the melt flow rate shift is less than 0.07 g/10 min under ISO 1133-1:2022. Compliance for agricultural, surface water, and retention applications is covered by ASTM F1741-21 and EN 13476-2:2018+A1:2020, with ring stiffness tested by ISO 9969:2016. The downstream production process uses a 30:1 L/D single-screw extruder feeding a profile die at 190–210 °C; the profile is wound with a continuous interlocking tongue-and-groove joint that is self-welded by a heated roller at 220–240 °C, followed by internal and external carbon black stabilized surfaces. Terminal products include 800 mm to 4000 mm diameter storm water retention tanks, manhole risers, agricultural runoff conduits, and temporary flood diversion culverts. Operational limitations include a maximum continuous liquid temperature of 50 °C, the need for a stone-free bedding layer with compaction to 90 % Proctor density, and exclusion from potable water pressure service unless a separate inner liner system is pressure-rated.
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