| HS Code | 792524 |
As an accredited Guangdong Zhongke HDPE XS10N factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Guangdong Zhongke HDPE XS10N: packed in 25 kg woven bags, palletized; also supplied in 1,000 kg jumbo bags. |
| Container Loading (20′ FCL) | Container Loading (20′ FCL): Guangdong Zhongke HDPE XS10N, 25 kg bags, unpalletized, approx. 25 MT net per container. |
| Shipping | Guangdong Zhongke HDPE XS10N is a non-hazardous solid high-density polyethylene resin. Shipped in 25 kg bags or 1,000 kg jumbo bags, palletized and shrink-wrapped. Transport in clean, dry containers; keep cool, dry, and away from sunlight, moisture, and contamination. Not regulated as dangerous goods for ocean freight. |
| Storage | Guangdong Zhongke HDPE XS10N should be stored in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, and ignition sources. Keep bags or containers sealed and palletized to prevent moisture, dust, and contamination. Avoid contact with strong oxidizers, acids, and bases. Maintain clean handling areas and follow local regulations for combustible polymer storage. |
| Shelf Life | Typically stable for 12 months if stored unopened in a cool, dry, well-ventilated area, away from direct sunlight and moisture. |
Extrusion lines producing potable water pressure pipe from Guangdong Zhongke HDPE XS10N operate as PE100 class only after the compound’s long-term hydrostatic strength has been confirmed by regression analysis under ISO 9080: the 20 °C, 50-year lower confidence limit must reach 10 MPa after testing at 20 °C, 12.4 MPa, ≥100 h, 60 °C, 8.0 MPa, ≥1000 h, and 80 °C, 5.0 MPa, ≥1000 h per ISO 1167-1. Compliance for potable water distribution includes ISO 4427-1:2019 and ISO 4427-2:2019 for system design and pipe dimensions, GB/T 13663.2-2018 for Chinese municipal projects, and migration testing under NSF/ANSI/CAN 61 or AS/NZS 4020 where local certification applies. The formulation for black pressure pipe is built on a carbon black masterbatch added at 6–8 wt% of a 40% carbon black concentrate to yield a final carbon black content of 2.0–2.5 wt%, with antioxidant masterbatch added at 0.2–0.5 wt% so that oxidative induction time remains above 20 min at 200 °C under ISO 11357-6; blue pipe grades replace carbon black with 0.3–0.5 wt% pigment masterbatch and are not used for outdoor exposed pressure mains unless additional UV stabilization is specified. Downstream production uses single-screw extruders with grooved feed sections and L/D 30:1–38:1, feed throat temperature 40–60 °C, barrel zone temperatures 190–230 °C, die head temperature 210–220 °C, and melt temperature held below 240 °C to avoid crosslinked gel formation; vacuum calibration is set at −0.02 to −0.05 MPa with spray water at 15–20 °C, and screen packs typically use 60/120/60 mesh to trap agglomerates while keeping melt pressure below 25 MPa. Cross-contamination with polypropylene above 2 wt% must be avoided because immiscible PP domains reduce butt-fusion weld toughness. Terminal products are SDR11 and SDR17 solid-wall PE100 pipes from DN 20 to DN 1200, supplied in straight lengths or coils up to DN 110, used for potable water mains, service connections, and rehabilitation sliplining.
Gas distribution pipe produced from HDPE XS10N requires additional control of rapid crack propagation and slow crack growth because the failure mode is directional and can propagate along a buried main faster than leak detection systems respond. The compound is evaluated under ISO 4437-1:2019, EN 1555-2, and GB 15558.1; pipe-wall hydrostatic performance is confirmed at 20 °C, 12.4 MPa, ≥100 h, 80 °C, 5.4 MPa, ≥165 h, and 80 °C, 5.0 MPa, ≥1000 h per ISO 1167-1, while small-scale steady-state rapid crack propagation is measured under ISO 13477 at test temperatures from 0 °C to −25 °C with critical pressure values that must exceed the service design pressure at the minimum operating temperature. Carbon black is held at 2.0–2.5 wt% final content and its dispersion is assessed by microscopic method ISO 18553 to limit agglomerates above 25 μm; yellow stripe identification is coextruded using 0.3–0.8 wt% pigment masterbatch in a thin outer layer while the black structural wall carries the pressure load. Processing uses coextruded spiral mandrel dies, melt temperature 200–220 °C, gear pump-controlled output, and maximum residence time below 20 min at melt temperature; grooved feed bushings and hard-faced screw flights are specified to reduce black speck formation from abrasive carbon black. Terminal products are SDR11 and SDR17.6 PE100 gas mains from DN 32 to DN 630, service lines, and electrofusion saddle connections for distribution pressures up to 0.4 MPa in natural gas service unless de-rated per ISO 4437-1.
Abrasive slurry and mine tailings lines consume high-molecular-weight HDPE in solid-wall pipe because the operational cost is driven by wall loss rather than pressure alone. For XS10N in this service, the formulation uses 2.0–2.5 wt% final carbon black content and 0.1–0.3 wt% processing aid masterbatch to reduce melt fracture at high throughput; antioxidant masterbatch is maintained at 0.2–0.5 wt%. Compliance verification follows ISO 9080 for long-term hydrostatic strength, ISO 1167-1 for pressure resistance, and ISO 13479 for slow crack growth of notched pipe in the 80 °C, 5.0 MPa, 1000 h regime. Downstream processing uses a single-screw extruder with barrier screw and grooved feed, melt temperature 210–230 °C, die draw ratio controlled between 1.1:1 and 1.4:1, and vacuum sizing that holds outside diameter tolerance within ±0.2 mm up to DN 315; cooling is staged from 60 °C to 20 °C to reduce residual stress in thick walls. Terminal products include tailings discharge lines, dredge transfer pipe, mine dewatering mains, and limestone slurry lines, commonly in SDR11 to SDR21 with plain ends or flange adapters. Published wear-rate data for this specific XS10N configuration in silica slurry is limited; pipe-wall abrasion is monitored on site through periodic ultrasonic thickness measurement rather than extrapolated from laboratory sand-slurry tests.
Flat-die extrusion of HDPE geomembrane liners from XS10N requires extended oxidative stability because the liner must remain functional for decades under leachate exposure without access to periodic replacement. The compound is assessed against GRI-GM13, ASTM D6693 for tensile yield and break properties, ASTM D5397 for notched constant tensile load stress-crack resistance, and ASTM D5885 for high-pressure oxidative induction time. Formulation for geomembrane-grade compounds includes 2.0–3.0 wt% carbon black, 0.2–0.5 wt% primary hindered phenolic antioxidant, and 0.1–0.3 wt% secondary phosphite stabilizer; the exact stabilizer ratio is adjusted to maintain a standard high-pressure oxidative induction time of at least 400 min at 200 °C where specified by GRI-GM13. Processing is performed on flat-die sheet lines with a 2.0–3.5 m wide sheet die and polished three-roll stack temperature 40–70 °C; die gap is set between 1.0 mm and 1.5 mm, and calendered gauge is controlled from 0.75 mm to 2.5 mm. Edge trim is returned at no more than 10 wt% unless a validated in-house recycling stream is used, because repeated heat history lowers oxidative induction time and shifts the stress-crack resistance distribution. Terminal products are landfill base and cap liners, heap leach pads, chemical secondary containment liners, and lagoon covers.
In extrusion blow molding of large chemical containers, HDPE XS10N is processed only where the parison hang strength and melt strength are verified on the specific accumulator-head machine, because broad-molecular-weight HDPE grades can otherwise exhibit parison length oscillation and wall-thickness variation. Compliance for dangerous goods packaging follows UN 1H1 for tight-head drums, UN 31H1 for rigid plastic IBCs, and 49 CFR 178.509; mechanical integrity is evaluated through stack load tests at 40 °C and drop tests at −18 °C according to ASTM D4919. Formulation includes 1.0–2.0 wt% color masterbatch, 0.2–0.5 wt% UV stabilizer masterbatch for outdoor storage, and 0–0.5 wt% processing aid; regrind is added at 10–25 wt% only when the specific UN certification assembly permits and after density and melt flow ratio testing confirms batch consistency. Blow molding process conditions on industrial units include barrel temperature profile 170–210 °C, accumulator head temperature 190–210 °C, mold temperature 8–15 °C, and blow pressure 0.6–0.9 MPa. Terminal products include 200 L tight-head drums, 1000 L IBC inner bottles, and intermediate containers for agricultural and industrial chemicals. Published data for this specific XS10N configuration is limited; low-temperature drop-test performance is not inferred from resin density alone but requires full container certification.
Telecom microduct and electrical conduit extrusion converts XS10N into small-diameter solid-wall and structured-wall ducting where low melt fracture and dimensional stability are primary process requirements. Product compliance is evaluated under IEC 61386-24, UL 651A, EN 61386-1, and GB/T 13381.1, with ring stiffness classes N450 to N750 depending on wall corrugation and diameter. The formulation for black ducting uses 2.0–2.5 wt% carbon black content to stabilize against ultraviolet degradation during open-trench installation; silicone-based slip masterbatch is dosed at 0.5–2.0 wt% for low-friction inner surfaces in microduct bundles. Downstream processing employs a vacuum-corrugated pipe line or smooth-wall vacuum sizing at line speeds from 10 m/min to 60 m/min for microduct diameters 5–16 mm, with screw speed set to limit melt temperature to 200–220 °C; corrugator molds use water temperature 15–25 °C and vacuum −0.01 to −0.03 MPa. Terminal products include buried telecom duct bundles, fiber-to-the-home microducts, direct-burial electrical conduits, and cable protection tubes.
Non-pressure drainage pipes made from HDPE XS10N are produced with solid walls or corrugated profiles for sewage and land drainage where earth loads and installation damage govern wall design. Product compliance is evaluated under ISO 8772, EN 12666-1, and ASTM F2306/F2306M, with ring stiffness classes SN4, SN6, SN8, and SN16 selected from the project’s backfill and traffic-loading calculations. The formulation relies on 2.0–2.5 wt% carbon black for UV resistance and 0.2–0.4 wt% antioxidant masterbatch; post-consumer recyclate is not introduced into the XS10N pipe skin layer because repeated heat histories shift the melt flow ratio and can reduce slow crack growth resistance. Manufacturing uses corrugated pipe lines with a twin-screw extruder or single-screw grooved barrel, melt temperature 190–220 °C, and corrugator vacuum lower than −0.02 MPa; in-line bell-and-spigot sockets are formed from DN 100 to DN 800. Terminal products are municipal gravity sewer laterals, stormwater drainage lines, and agricultural field drainage pipe with slotted walls where soil particle filtration is controlled by slot width 0.5–2.0 mm.
Competitive Guangdong Zhongke HDPE XS10N prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please contact us at +8618136850665 or mail to admin@ascent-chem.com.
We will respond to you as soon as possible.
Tel: +8618136850665
Email: admin@ascent-chem.com
Flexible payment, competitive price, premium service - Inquire now!