| HS Code | 946357 |
| Product Name | Sierbang Petrochemical HDPE PE100RC |
| Manufacturer | Sierbang Petrochemical |
| Polymer Type | High Density Polyethylene |
| Grade | PE100RC |
| Density | 0.959 g/cm³ |
| Melt Flow Rate 190 C 5 Kg | 0.23 g/10 min |
| Melt Flow Rate 190 C 2 16 Kg | 0.08 g/10 min |
| Tensile Yield Strength | ≥23 MPa |
| Elongation At Break | ≥600% |
| Flexural Modulus | ≥1000 MPa |
| Charpy Notched Impact Strength 23 C | ≥30 kJ/m² |
| Vicat Softening Temperature | ≥120°C |
| Oxidation Induction Time 200 C | ≥20 min |
| Carbon Black Content | 2.0–2.5% |
| Moisture Content | ≤0.03% |
| Minimum Required Strength Mrs | 10 MPa |
| Hydrostatic Strength Classification | PE100 |
| Crack Resistance Classification | RC |
| Slow Crack Growth Resistance | ≥5000 h |
| Environmental Stress Crack Resistance | ≥1000 h |
| Color | Black |
| Form | Pellets |
| Application | Gas and water pipes, trenchless installation |
As an accredited Sierbang Petrochemical HDPE PE100RC factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Sierbang Petrochemical HDPE PE100RC is packaged in 25 kg woven bags, palletized, and available in 1,000 kg jumbo bags. |
| Container Loading (20′ FCL) | 20′ FCL container loaded with Sierbang Petrochemical HDPE PE100RC resin in 25 kg bags, approximately 18 MT net, securely stowed. |
| Shipping | Sierbang Petrochemical HDPE PE100RC is a non-hazardous polymer shipped in moisture-proof 25 kg bags or jumbo bags, palletized and stretch-wrapped. Transport in clean, dry containers. Store cool, ventilated, away from direct sunlight, heat, and sharp objects. Handle carefully to avoid package damage. |
| Storage | Store Sierbang Petrochemical HDPE PE100RC in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, flames, and strong oxidizers. Keep original bags sealed on pallets to prevent moisture, dust, and contamination. Avoid prolonged UV exposure, excessive stacking, and damaging handling. Maintain clean, dry conditions and use first-in, first-out stock rotation. Ambient temperatures below 50°C are recommended. |
| Shelf Life | Shelf life: typically 24 months when stored unopened in a cool, dry, ventilated place, protected from direct sunlight and moisture. |
Single-screw extrusion of Sierbang Petrochemical HDPE PE100RC into potable water pressure pipe is governed by a melt-temperature window of 190–225 °C, with the grooved feed section of a 30:1 to 37:1 L/D barrier screw extruder providing sufficient shear to homogenize the bimodal high-density polyethylene without exceeding the stabilizer package’s oxidation induction threshold. The resin is supplied in pellet form pre-stabilized with hindered phenolic antioxidants; additional processing stabilizer is not introduced unless rework exceeds 10 wt%, at which point a supplemental antioxidant masterbatch at 0.3–0.5 phr is incorporated only after processor validation. For black pipe, a 40 wt% carbon black masterbatch is metered at 5.0–6.0 phr to achieve the final carbon black mass fraction of 2.0–2.5 wt% specified in ISO 4427-1; for blue potable water pipe, a blue pigment masterbatch is typically added at 3.0–5.0 phr, with final pigment loading adjusted to the pipe manufacturer’s L*a*b* target rather than a globally fixed numeric value. The pipe is extruded through a spiral mandrel die with vacuum sizing calibration sleeves at −30 to −60 kPa, followed by staged spray cooling to manage residual stress and wall-thickness roundness. Terminal products include SDR 11 and SDR 17 PE100 pipes from DN 20 mm to DN 1200 mm for municipal distribution, service laterals, and building supply lines. Compliance for potable water contact is evaluated under ISO 4427-1, EN 12201-1, NSF/ANSI/CAN 61, and GB/T 13663.1, while long-term hydrostatic strength classification is anchored to the 10.0 MPa minimum required strength at 20 °C for 50 years defined in ISO 12162. Pre-drying is not required for sealed original packaging; when visible surface condensation is observed after storage at high humidity, a hopper dryer at 80 °C for 2–3 h prevents surface splay and micro-voiding in the finished pipe wall.
For gas distribution pipe manufactured from Sierbang Petrochemical HDPE PE100RC, the governing material requirement is ISO 4437-1, which recognizes PE100 compounds with MRS 10.0 MPa and imposes the same carbon black mass fraction of 2.0–2.5 wt% for black pipe as the water sector; yellow gas pipes or black pipes with co-extruded yellow identification stripes are produced using a yellow masterbatch at 4.0–6.0 phr depending on pigment concentration, but the carbon black grade remains preferred for UV stabilization in above-grade storage conditions. Processing on single-screw grooved-barrel extruders proceeds at melt temperatures of 200–230 °C; die head pressure is typically held in the 15–35 MPa range to maintain melt homogeneity and stable wall-thickness control. Terminal products cover DN 20 mm to DN 630 mm SDR 11 and SDR 17 gas mains, service laterals, and distribution laterals for natural gas and manufactured gas. Butt fusion joining of fabricated pipe follows ISO 21307; heating plate temperature is set to 200–240 °C, and the bead-up force and fusion force are recalculated for each wall thickness based on pipe surface area. The PE100RC grade’s high slow crack growth resistance is relevant at squeeze-off and scratch-prone installation sites, but it does not remove the requirement for visual re-rounding and scraping of oxidized pipe surfaces before fusion. Formulation deviations such as adding calcium carbonate filler or nonspecific recycled PE are not permitted without full revalidation because they reduce the fusion window and increase the risk of slow crack growth at interface notches; this is an operational boundary rather than a theoretical limitation.
| Downstream sector | Governing standards | Carbon black or pigment addition | Jointing method | Terminal products |
|---|---|---|---|---|
| Potable water pipe | ISO 4427-1, EN 12201-1, NSF/ANSI/CAN 61, GB/T 13663.1 | 40 wt% CB masterbatch at 5.0–6.0 phr; blue non-black masterbatch at 3.0–5.0 phr | Butt fusion per ISO 21307 | DN 20–1200 mm SDR 11/17 mains, laterals, service lines |
| Gas distribution | ISO 4437-1, EN 1555-1 | 40 wt% CB masterbatch at 5.0–6.0 phr; yellow masterbatch at 4.0–6.0 phr | Butt fusion per ISO 21307 | DN 20–630 mm gas mains, service laterals |
| Trenchless installation | ASTM F1962, ISO 13479 | 40 wt% CB masterbatch at 5.0–6.0 phr | Field butt fusion, pullback with load-cell monitoring | DN 90–1200 mm HDD, pipe-bursting, sliplining strings |
| Mining slurry and dredge | ISO 9080, ASTM D3350, ISO 13479 | 40 wt% CB masterbatch at 5.0–6.0 phr; no talc or calcium carbonate filler | Butt fusion per ISO 21307 | DN 90–1200 mm tailings, dredge, hydrotransport lines |
| Chemical plant reticulation | ISO/TR 10358, ISO 4427-1 | 40 wt% CB masterbatch at 5.0–6.0 phr; coloured masterbatch at 3.0–5.0 phr | Butt fusion, electrofusion, flanged backing rings | DN 25–630 mm demineralised water, cooling water, dilute aqueous lines |
| Wastewater force main | EN 12201-1, ISO 13479 | 40 wt% CB masterbatch at 5.0–6.0 phr | Butt fusion per ISO 21307, slip-lining with annular grout | DN 90–1200 mm sewer force mains, sludge transfer lines |
The selection of Sierbang Petrochemical HDPE PE100RC for trenchless pipeline construction—horizontal directional drilling, pipe bursting, and sliplining—is driven by the material’s response to point loads and the ISO 13479 notched pipe test, which applies a constant internal pressure at 80 °C to a pipe specimen with four external notches. In this application the formulation remains identical to standard pressure pipe: a 40 wt% carbon black masterbatch is metered at 5.0–6.0 phr to maintain the ISO 4427-1 carbon black window of 2.0–2.5 wt%; no internal processing lubricant is added to the polymer because external drilling fluid and bentonite-based borehole mud provide pullback lubrication. The downstream process consists of butt fusing long string sections in the field, then pulling the string through a reamed bore; the pullback force calculation follows ASTM F1962, using live borehole friction coefficients rather than published resin-only values. Terminal products include DN 90–1200 mm water and gas mains installed under roads, rivers, and existing utilities, as well as pipe-bursting replacement liners. The critical process conflict is the notch-sensitivity transition at the outer wall surface: excessive pullback speed or worn backreamer teeth can introduce longitudinal scratches that act as slow crack growth initiators despite the RC designation. Therefore, installation specifications commonly require non-metallic centralizers, maximum pullback force monitoring with load cells, and post-installation pressure testing at 1.5× the design pressure according to the project’s hydrostatic acceptance standard. Published data for the specific interaction between PE100RC and high-density polyethylene slurry additives in long HDD pilot holes is limited; project-specific qualification is necessary when bentonite circulation is replaced by synthetic polymer drilling fluids.
Mineral processing and dredging applications use Sierbang Petrochemical HDPE PE100RC in solid-wall pressure pipe rather than in modified compounds. The formulation is deliberately kept free of inorganic fillers such as talc or calcium carbonate because filler platelets create micro-discontinuities that can accelerate crack propagation under coarse-particle impact; carbon black masterbatch remains at 5.0–6.0 phr of a 40 wt% carbon black concentrate to yield 2.0–2.5 wt% carbon black in the wall. The extrusion process for thick-wall slurry pipes differs from thin-wall municipal pipe in cooling strategy: after the vacuum sizing tank, additional water baths or spray chambers are used to cool the 20–100 mm wall thickness gradually, with cooling water temperature stepped from 40 °C to 15 °C to minimize frozen-in stresses at the inner wall. Terminal products include tailings transport lines, dredge floating lines, process water pipes, and hydrotransport lines with working pressures typically from 0.8 MPa to 2.5 MPa, though design pressure depends on SDR and temperature derating. Governing standards include ISO 9080 for long-term hydrostatic strength extrapolation, ISO 13479 for notched slow crack growth, and ASTM D3350 for PE material cell classification; mining operators may supplement these with internal rubber-wheel abrasion tests, but the absence of a globally harmonized slurry abrasion standard means published comparative data for PE100RC against other PE100 grades in high-solids slurry is limited. The operational boundary is clear: PE100RC does not remove the need for sacrificial wear plates at elbows and pump discharge sections, because concentrated abrasive slurry at flow velocities above 3.5 m/s can erode the inner wall even when the resin has high crack resistance.
Within industrial chemical plants, Sierbang Petrochemical HDPE PE100RC is converted into pressure pipes for demineralised water, cooling water return lines, and dilute aqueous chemical transfer where chemical compatibility has been verified under ISO/TR 10358. The formulation is identical to potable water black pipe—2.0–2.5 wt% carbon black final via 5.0–6.0 phr masterbatch—unless blue or grey identification is required, in which case a coloured masterbatch at 3.0–5.0 phr replaces the carbon black concentrate. Downstream production includes both pipe extrusion and injection molding of flanged stub ends and backing rings; injection molding uses a melt temperature of 200–240 °C, a mold temperature of 20–40 °C, and clamp force calculated from projected part area for thick flanged fittings. Terminal products include DN 25–630 mm chemical drain and pressure lines, demineralised water loops, and cooling water distribution headers. The material’s MRS classification remains 10.0 MPa, but chemical derating factors must be applied according to the specific fluid and operating temperature under ISO 4427-1 and ISO/TR 10358; exposure to strong oxidising acids, aromatics, or chlorinated solvents above 40 °C is outside the standard design envelope and requires immersion testing before specification. Because PE100RC is not inherently antistatic, pipelines conveying flammable non-aqueous fluids at flow velocities above 1.0 m/s require external grounding or conductive tracing if an explosive atmosphere is present.
Municipal wastewater force mains and sludge transfer lines constructed from Sierbang Petrochemical HDPE PE100RC are specified where hydrogen sulfide-induced crown corrosion and external soil movement have caused premature failure in rigid pipe materials. The extrusion formulation mirrors water pipe practice: black compounds contain 2.0–2.5 wt% carbon black as a UV stabilizer, metered as a 40 wt% masterbatch at 5.0–6.0 phr; no processing aid is necessary in modern grooved-barrel extrusion lines. Pipe is produced in SDR 11 to SDR 26 from DN 90 mm to DN 1200 mm, with butt fusion jointing under ISO 21307 or electrofusion for constrained repair locations. Downstream construction includes open-cut installation, but the most common rehabilitation method is slip-lining of deteriorated concrete or cast iron sewers, where the PE100RC pipe is pulled into the host pipe and the annular space is grouted; the outer surface tolerates insertion scratches better than conventional PE100 grades, as demonstrated by ISO 13479 notched pipe testing. Compliance for pressure sewer applications generally follows EN 12201-1 for the pipe system, with local health and safety requirements for confined space entry governing installation rather than the resin specification. A critical limitation is sulfur-rich sludge streams: while HDPE is chemically resistant to sulfide corrosion, the external grout and annular water chemistry must be checked to avoid aggressive low-pH conditions that can accelerate slow crack growth in any PE100 pipe if the outer surface is continuously exposed to acidic groundwater below pH 4.
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