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Chevron Phillips Chemical HDPE HEXENE-1

    • Product Name: Chevron Phillips Chemical HDPE HEXENE-1
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
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    Specifications
    HS Code 181720
    Polymer Type High Density Polyethylene (HDPE)
    Comonomer Hexene-1
    Density 0.946 g/cm³
    Melt Flow Rate 0.35 g/10 min
    Tensile Strength At Yield 27.6 MPa
    Tensile Strength At Break 22.1 MPa
    Elongation At Break 600%
    Flexural Modulus 1.24 GPa
    Notched Izod Impact 0.534 J/cm
    Vicat Softening Point 127°C
    Brittleness Temperature < -70°C
    Hardness Shore D 66
    Thermal Expansion Coefficient 1.2E-4 /°C
    Specific Heat 1.9 J/g°C
    Thermal Conductivity 0.49 W/m-K
    Melting Point 130°C

    As an accredited Chevron Phillips Chemical HDPE HEXENE-1 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Chevron Phillips Chemical HDPE HEXENE-1 is available in 25 kg polyethylene-lined bags, 1,000 kg bulk bags, and bulk trucks or railcars.
    Container Loading (20′ FCL) 20′ FCL container loaded with Chevron Phillips Chemical HDPE HEXENE-1 in 25 kg bags, palletized and securely stowed for shipment.
    Shipping Chevron Phillips Chemical HDPE HEXENE-1 is a non-hazardous polyethylene resin. It ships in 25 kg bags, 1,000 kg bulk bags, or bulk trucks/railcars. Keep dry, clean, and away from heat or ignition sources. It is not regulated as dangerous goods for transport.
    Storage Store Chevron Phillips Chemical HDPE HEXENE-1 in a cool, dry, well-ventilated warehouse away from direct sunlight, heat, sparks, and flames. Keep original bags or containers closed to prevent moisture, dust, and contamination. Stack pallets safely, avoid prolonged UV exposure, and follow the SDS. Maintain clean handling areas and avoid contact with strong oxidizers.
    Shelf Life Stable under normal conditions; no specific shelf life when stored cool, dry, sealed, and away from heat, sunlight, and oxidizers.
    Application of Chevron Phillips Chemical HDPE HEXENE-1

    In UN/DOT-certified industrial packaging lines processing hexene-1 comonomer high-density polyethylene supplied by Chevron Phillips Chemical, the primary resin-selection criterion is not melt index alone but the retained notched constant tensile load resistance after pinch-off weld formation. The resin is processed on continuous shuttle or reciprocating-screw blow molding machines with screw diameters of 80–120 mm and L/D ratios of 24:1–30:1; barrel temperatures are maintained at 190–215 °C, die-head temperatures at 180–200 °C, and mold temperatures at 15–30 °C to control side-wall deflection and top-load deformation after demolding. The formulation addition ratio of post-industrial regrind from flash and reject containers is typically 20–40 wt% when stabilized with 0.3–0.5 wt% hindered amine light stabilizer and 0.1–0.3 wt% phenolic antioxidant masterbatch, while carbon black masterbatch at 2.0–2.5 wt% is added for outdoor storage containers to suppress UV-initiated chain scission. Compliance with the United Nations Model Regulations Chapter 6.1 and 49 CFR 178.253 requires low-temperature drop testing, hydrostatic pressure retention, and stack-load verification for dangerous-goods packagings; food-contact variants are additionally assessed under FDA 21 CFR 177.1520 and EU Regulation (EU) No 10/2011. Terminal finished product types include tight-head 200 L drums, 5–30 L jerry cans, 1,000 L intermediate bulk container inner bottles, and agricultural chemical packagings. Operational boundary: sustained melt temperature above 235 °C increases oxidative chain scission and measurably reduces environmental stress-crack resistance evaluated by ASTM D1693 Condition B, so die-bleed purging and shutdown procedures are required after process interruptions.

    What Prevents Slow Crack Growth in Hexene-1 HDPE Pressure Pipe Sockets?

    The pipe-grade resin is extruded with carbon black masterbatch at 2.0–2.5 wt% because ISO 4427-2 and EN 12201-2 impose the same dispersion requirement for water-pressure applications; the carbon black masterbatch must be free of zinc stearate and incompatible carrier resins that can appear as undispersed particles under ISO 18553 dispersion assessment. The antioxidant package is maintained at 0.10–0.25 wt% using a phenolic/phosphite combination, and a fluorine-free polymer processing aid is added at 0.02–0.05 wt% to suppress melt fracture in high-shear die-land regions. Production-scale equipment for this segment includes single-screw extruders with grooved feed bushings, 30:1–36:1 L/D, and spiral or basket-type dies; barrel temperature zoning is 190–230 °C, die-head temperature is 190–210 °C, and vacuum calibration pressures range from −0.02 to −0.08 MPa. Melt temperature excursions beyond 240 °C reduce slow crack growth resistance evaluated by ISO 13479, even when short-term hydrostatic performance remains acceptable. Compliance qualification uses long-term hydrostatic strength per ISO 9080, ISO 1167-1, and ASTM D2837, with potable water grades assessed under NSF/ANSI 61 and gas distribution grades under ISO 4437-2; resin cell classification is verified against ASTM D3350, with hexene-1 comonomer grades typically targeted at PE4710-type hydrostatic design stress. Terminal finished product types include SDR 11 and SDR 17 potable water mains from 16 mm to 1600 mm, gas distribution pipes from 20 mm to 630 mm, industrial slurry transfer lines, and force mains in municipal wastewater service. Published data for this specific Chevron Phillips Chemical HDPE hexene-1 configuration should be confirmed by short-term hydrostatic testing because lot-to-lot resin rheology and pipe-grade blending history influence the final failure mode distribution.

    Where 2.0 mm HDPE geomembrane is specified for heap leach pads and landfill liner cells, the hexene-1 copolymer is selected over butene-1 alternatives because weld-toe stress-crack resistance under ASTM D5397 and GRI GM13 determines liner integrity after installation and thermal cycling. The extrusion formulation uses carbon black masterbatch at 2.0–3.0 wt%, antioxidant at 0.2–0.5 wt%, and hindered amine stabilizer at 0.1–0.3 wt% to meet oxidative induction time targets measured by ASTM D3895. Processing is performed on flat-die calendered lines or blown-film lines with melt temperatures of 180–230 °C and roll-stack temperatures controlled between 50–90 °C to limit thickness variation below ±10%; sheet thickness is typically 0.5–3.0 mm, with textured surface layers introduced by blown-film coextrusion or embossing. Seam formation uses hot-wedge welding at wedge temperatures between 420–450 °C, and destructive seam peel tests are conducted per ASTM D6693 with peel strength requirements generally above 70 N/25 mm for 2.0 mm liner. Terminal finished product types include 1.5–2.5 mm landfill bottom liners, 2.0 mm mining heap leach pads, 0.5–1.0 mm canal liners, and 1.0–2.0 mm lagoon covers. Operational limitation: continuous exposure to highly acidic pregnant leach solution requires supplemental antioxidant stabilization beyond standard landfill liner formulations, and geosynthetic clay liner interfaces should be checked for desiccation during high-temperature installation.

    Downstream segmentObserved addition ratioKey compliance standardCritical test designation
    Blow molded UN packagingRegrind 20–40 wt%; carbon black 2.0–2.5 wt%49 CFR 178.253; UN Model Regulations Ch. 6.1ASTM D1693
    Pressure pipeCarbon black 2.0–2.5 wt%; antioxidant 0.10–0.25 wt%ISO 4427-2; ISO 4437-2ISO 13479; ISO 9080
    GeomembraneCarbon black 2.0–3.0 wt%; antioxidant 0.2–0.5 wt%GRI GM13; ASTM D3350ASTM D5397; ASTM D6693
    Injection molded pallets and cratesNucleating agent 0.05–0.2 wt%; carbon black 1.0–2.0 wt%FDA 21 CFR 177.1520; REACHASTM D638; ASTM D790
    ClosuresErucamide 500–1000 ppm; antioxidant 0.05–0.10 wt%FDA 21 CFR 177.1520; (EU) No 10/2011ISO 1133-1; ASTM D638
    Rotomolded storage tanksUV stabilizer 0.2–0.5 wt%; carbon black 0.5–2.0 wt%ASTM D1998; NSF/ANSI 61ASTM D638; ISO 11469

    High-Flow Hexene-1 HDPE in Large-Part Injection Molding

    Large-part injection molding of hexene-1 HDPE requires a deliberately narrow crystallization window because thick-walled pallets and crates retain heat at the core and produce warpage when the crystallization front is nonuniform. The resin is processed on injection molding machines with 20:1–24:1 L/D general-purpose or barrier screws, melt temperatures of 200–250 °C, mold temperatures of 15–40 °C, and injection pressures of 70–110 MPa; clamp-force sizing for 1,200 mm × 1,000 mm pallets typically requires 12,000–20,000 kN. The formulation addition ratio of a nucleating agent is 0.05–0.2 wt% to raise the crystallization onset temperature and reduce cycle-time variance, while antioxidant addition is 0.1–0.3 wt%, carbon black masterbatch is 1.0–2.0 wt% for outdoor service, and an anti-static additive is added at 0.1–0.2 wt% where dust attraction on crates must be minimized. Compliance testing for food-contact beverage crates and dairy crates uses FDA 21 CFR 177.1520 and EU Regulation (EU) No 10/2011; mechanical acceptance is verified by tensile strength under ASTM D638, flexural modulus under ASTM D790, and Izod impact under ASTM D256. Terminal finished product types include 1,000–1,400 mm industrial pallets, 600 mL bottle crates, dairy crates, agricultural harvesting trays, and bulk storage bins. Operational limitation: mold temperature above 40 °C slows cooling enough to increase core crystallinity and drop impact resistance in thick sections, while melt temperatures above 260 °C generate chain degradation and viscosity reduction that destabilize the filling stage.

    During closure compression molding of hexene-1 comonomer HDPE, the critical organoleptic constraint is erucamide migration; the slip agent is added at 500–1000 ppm to reduce closure removal torque after application to PET bottle finishes, and antioxidant loading is held to 0.05–0.10 wt% to avoid taste and odor thresholds in bottled water and dairy products. The process uses continuous rotary compression molding machines from pellet feed with melt temperatures of 170–200 °C, die temperatures of 180–210 °C, and mold temperatures of 10–20 °C; injection molding for thin-wall closures requires higher melt temperatures of 210–240 °C and fast injection speeds to prevent premature freeze-off of the annular gate. Color masterbatch addition is maintained at 1.0–2.0 wt%, and titanium dioxide-based white masterbatch is used at 2.0–3.0 wt% for light-blocking dairy and pharmaceutical closures. Compliance for food-contact closures is evaluated under FDA 21 CFR 177.1520, EU Regulation (EU) No 10/2011, and EC 1935/2004; rheological consistency is measured by melt mass-flow rate under ISO 1133-1 and density under ISO 1183-1. Terminal finished product types include carbonated soft-drink closures for PCO 1881 finishes, bottled water closures, milk closure lids, and pharmaceutical tamper-evident caps. Operational boundary: erucamide loadings above 1200 ppm increase plate-out on compression tooling and reduce coefficient of friction after post-application sterilization, so dosing accuracy must be verified by headspace extraction rather than gravimetric bulk feeding alone.

    When Ambient Storage Tanks Require Stress-Crack Resistance Beyond Butene-1 HDPE

    Rotational molding of large storage vessels from hexene-1 HDPE is performed on pulverized resin with a particle-size distribution passing 35 mesh to ensure densification in low-shear biaxial rotation. The formulation addition ratio of UV stabilizer is 0.2–0.5 wt%, carbon black masterbatch is 0.5–2.0 wt% for outdoor service, and antioxidant is 0.1–0.3 wt%; internal pigmentation above 3.0 wt% is avoided because it accelerates mold release degradation in thin corner sections. Process equipment includes multi-axis rotational molding machines with rotational ratios of 4:1–12:1, oven temperatures of 280–300 °C, and peak internal air temperatures of 180–210 °C; cooling is controlled by forced air followed by water mist to avoid warpage in tanks with wall thickness of 4–20 mm. Compliance for static storage tanks is assessed under ASTM D1998 for polyethylene tanks, NSF/ANSI 61 for potable water contact, and ISO 11469 for polymer identification marking; chemical storage tanks are evaluated by hydrostatic pressure testing at rated capacity and specific gravity. Terminal finished product types include 500–20,000 L vertical water storage tanks, agricultural fertilizer tanks, diesel storage tanks, and horizontal transport tanks. Operational limitation: peak internal air temperature above 210 °C produces localized density gradients and premature environmental stress-crack resistance loss at mold parting lines, while uneven powder flow in thin-bottom corners creates pinhole defects that are detectable only after hydrostatic pressurization.

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