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Chevron Phillips Chemical HDPE HXM 50100-02

    • Product Name: Chevron Phillips Chemical HDPE HXM 50100-02
    • 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 841426
    Density 0.950 g/cm3
    High Load Melt Index 10.0 g/10 min (190°C/21.6 kg)
    Tensile Strength At Yield 25.5 MPa
    Tensile Strength At Break 30.3 MPa
    Elongation At Break 600%
    Flexural Modulus 1.10 GPa
    Notched Izod Impact 0.800 ft-lb/in
    Environmental Stress Crack Resistance >1000 h (100% Igepal)
    Vicat Softening Point 124 °C
    Brittleness Temperature -70 °C
    Shore D Hardness 66
    Thermal Conductivity 0.45 W/m·K
    Coefficient Of Linear Thermal Expansion 1.2E-4 /°C
    Specific Gravity 0.950

    As an accredited Chevron Phillips Chemical HDPE HXM 50100-02 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 HXM 50100-02 is packaged in 25 kg bags, palletized and stretch-wrapped for safe transport.
    Container Loading (20′ FCL) Chevron Phillips HDPE HXM 50100-02 loads in 20′ FCL: 20 pallets, 55 x 25 kg bags, 27.5 MT total.
    Shipping Chevron Phillips Chemical HDPE HXM 50100-02 is shipped as non-hazardous polyethylene resin pellets in 25-kg bags, bulk boxes, 1,000-kg FIBCs, or bulk trucks/railcars. Transport clean, dry, contamination-free; avoid moisture, direct sunlight, and container damage. No DOT hazmat placards required.
    Storage Store Chevron Phillips Chemical HDPE HXM 50100-02 indoors in a cool, dry, well-ventilated area, away from direct sunlight, heat, ignition sources, and strong oxidizers. Keep original packaging closed to prevent moisture, dust, and contamination. Place on pallets off the floor, avoid physical damage, and follow first-in/first-out stock rotation. Consult the supplier’s SDS for detailed handling and storage requirements.
    Shelf Life Shelf life is typically 12 months from date of manufacture when stored in dry, unopened original packaging under normal conditions.
    Application of Chevron Phillips Chemical HDPE HXM 50100-02

    In the production of UN-certified large containers, HXM 50100-02 is processed as the virgin backbone for open-head and tight-head drums in the 200-L to 250-L range. On accumulator-head shuttle lines equipped with 80–120 mm grooved-feed extruders at 24:1 to 30:1 L/D, barrel temperatures are profiled from 180 °C to 210 °C, adapter and head zones are held at 210–220 °C, and melt pressure at the die is maintained between 22 MPa and 35 MPa. The high melt strength of HXM 50100-02 is used to limit parison drawdown over vertical lengths exceeding 1.8 m. A 220-L tight-head drum with a nominal sidewall of 3.0–4.0 mm and a chime section of 4.5–5.5 mm requires a shot mass in the 8–12 kg range. Parison programming is set across 20–40 wall-thickness points so that pinch-off and shoulder zones retain adequate thickness following mold closure. Recirculating mold water at 8–12 °C and post-cooling air at 0.4–0.6 MPa are applied to bring cycle times into the 180–280 s window. Formulation practice for UN 1H1/Y1.9/200 packaging typically uses 15–25 wt% clean regrind derived from flash and rejected drums. A carbon black masterbatch is added at 1.5–2.5 wt% when more than 12 months of outdoor storage is specified. Density is verified at 0.950–0.955 g/cm³ per ISO 1183-1:2019, and stress-crack resistance is monitored by ASTM D1693-15 condition B with F50 values above 600 h. Drop testing under 49 CFR 178.603 at −18 °C from 1.2 m, 1.5 m, or 1.8 m depending on packing group validates sidewall integrity and chime fusion. Published data specific to HXM 50100-02 for very low-temperature drop performance below −30 °C remains limited; grade selection should therefore be confirmed with instrumented impact testing at the intended minimum service temperature.

    What limits the evaporative emission compliance of a coextruded fuel tank based on HXM 50100-02?

    When HXM 50100-02 is specified for automotive fuel tanks, the primary processing constraint is not melt strength but layer distribution inside the coextrusion blow moulding die. A conventional six-layer structure places an EVOH barrier between regrind-bearing tie layers: outer HDPE/regrind/tie/EVOH/tie/regrind/inner conductive HDPE. The outer virgin layer may be 10–16 wt% of total wall thickness, the regrind-bearing layers 40–55 wt%, the EVOH layer 1.5–2.5 wt%, and the inner conductive layer 20–30 wt%. The innermost layer is a carbon-black-compounded high-density polyethylene with surface resistivity below 10⁶ Ω/sq per IEC 61340-5-1. HXM 50100-02 is used in the outer and regrind layers because the grade provides parison integrity during a shot mass of 5–9 kg and vertical parison lengths above 1.2 m. Coextrusion lines use six extruders feeding a multilayer accumulator head or continuous blow moulder. Melt temperature is held at 200–230 °C, die gap is set between 1.5 mm and 3.0 mm, preblow pressure is controlled at 0.03–0.08 MPa, and final blow air is supplied at 0.6–0.8 MPa. Cycle times range from 90 s to 180 s depending on tank wall thickness, which is typically 4–6 mm. Post-mould fluorination uses fluorine concentrations below 2% in nitrogen at low positive pressure. Treatment time is adjusted to achieve barrier improvement measured by hydrocarbon permeation testing. Emission certification is performed by sealed housing for evaporative determination under 40 CFR Part 86, and permeation is evaluated per SAE J1737. Published data specific to HXM 50100-02 for absolute permeation rate after fluorination is limited; direct SHED testing on the finished tank geometry is required because fluorination depth and barrier performance vary with surface area, tank wall thickness, and residual mold release.

    Agricultural chemical bottles require environmental stress-crack resistance beyond standard UN 3H1 qualification because Igepal CO-630, xylene, and ester-based formulations can initiate slow crack growth in HDPE sidewalls. HXM 50100-02 is processed on continuous shuttle or reciprocating screw blow moulding machines with 50–80 mm extruders at 20:1 to 24:1 L/D. Melt temperatures are maintained at 190–210 °C, blow air is supplied at 0.6–0.8 MPa, and mold water is held at 10–15 °C. For a 1-L to 20-L container, the parison is programmed to maintain 0.8–1.5 mm minimum wall thickness at the shoulder and lower chime because both axial load and drop impact concentrate stress in these sections. Formulation for aggressive organophosphate or solvent-based products uses 100% virgin HXM 50100-02. Less aggressive aqueous formulations may incorporate 15–20 wt% clean post-industrial regrind. Black or color masterbatch is added at 0.5–2.0 wt%. Amine-based antistatic additives are avoided because they can accelerate environmental stress cracking in HDPE closure zones. The neck finish is moulded to 28/410, 38/439, or 45/400 dimensions depending on the closure. The end item is qualified by ASTM D1693-15 condition A with F50 above 300 h for moderate exposure and condition C for solvent-heavy fluids, together with drop testing at 1.2 m after −18 °C conditioning. For products containing hydrocarbons above 30% aromatic content, a coextruded HDPE/tie/PA or HDPE/tie/EVOH structure is produced. HXM 50100-02 forms the outer and inner plies, while the barrier layer is kept below 5 wt% of total wall thickness to retain recyclability.

    When a 1,000-litre IBC outer bottle is produced from HXM 50100-02, parison sag rather than melt fracture governs the process

    In intermediate bulk container outer bottles, HXM 50100-02 is selected because the vertical wall length and shot mass exceed those of standard drums. A 1,000-L outer container may require a parison length of 2.0–2.5 m and a shot mass of 12–18 kg. Accumulator-head machines with 120–150 mm extruders and 25:1 L/D deliver melt at 195–215 °C. Parison programming is extended to 50–100 points to create a sidewall of 5.0–8.0 mm below the top frame and above the pallet seat. Because HXM 50100-02 retains sufficient melt stiffness, preblow pressures of 0.03–0.08 MPa are used during mould closing, followed by blow air at 0.5–0.7 MPa. Mold water is held at 10–15 °C, and cycle times range from 300 s to 480 s. Formulation for potable water contact includes 100% virgin HXM 50100-02 or 10–20 wt% in-house regrind that meets FDA 21 CFR 177.1520(c) 3.2a and NSF/ANSI 61. For outdoor storage, 2.0–2.5 wt% UV-stabilized black masterbatch is used. Tensile property retention after 4,000 h of xenon-arc exposure per ISO 4892-2:2013 is specified as not more than 30% loss in elongation at break. The completed IBC outer bottle is subjected to hydraulic pressure testing at 100 kPa for 10 min, top-lift testing per ISO 16467, and stack-load testing at 1,000 kg for 28 days at 40 °C. Published data for this specific HXM 50100-02 hydraulic-pressure creep response is limited and should be confirmed with prototype testing.

    Marine float and outdoor structural blow mouldings with UV-stabilised formulations

    HXM 50100-02 is used in large buoyancy shells and dock floats where wall section is over 6 mm and continuous water immersion demands high environmental stress-crack resistance. The manufacturing route is accumulator-head blow moulding in a parting-line or needle-blow configuration. Post-mould filling with closed-cell polyurethane or expanded polystyrene is used to meet buoyancy retention after 24 h submersion. A typical compound contains 95–97 wt% HXM 50100-02 and 2–3 wt% carbon black masterbatch with a polyethylene carrier. Antioxidant packages are adjusted to avoid excessive surface bloom that weakens weld lines. Melt temperature is held at 200–215 °C, mold temperature at 8–15 °C, and blow air at 0.5–0.7 MPa. The finished shell is tested for notched Izod impact at −20 °C per ASTM D256-10(2018), tensile yield per ASTM D638-14, and ESCR per ASTM D1693-15 condition B. Where black is unavailable due to visibility requirements, 1.0–2.0 wt% hindered amine light stabilizer masterbatch and 0.3–0.8 wt% benzotriazole UV absorber are incorporated. Color is limited to medium or dark shades to maintain ultraviolet screening. Published data for the specific ultraviolet resistance of HXM 50100-02 after 5 years of marine immersion is limited. Field qualification should therefore include tensile elongation retention after accelerated weathering per ISO 4892-2:2013 and hydrostatic pressure testing at 1.5 times the service depth.

    For industrial carboys in the 20-L to 60-L range, HXM 50100-02 is formed into thick-walled containers with minimum wall thickness of 2.0–2.8 mm to prevent paneling under aggressive venting cycles. The grade is typically run on a continuous extrusion blow moulding line at 185–205 °C melt temperature, with blow mold water at 10–15 °C and cycle times of 45–90 s. The formulation contains 100% virgin resin when the end chemical is a strong inorganic acid such as 85% phosphoric acid. For less critical fluids, 12–18 wt% clean regrind is accepted. Closure bungs are induction-welded, which requires the additive system of HXM 50100-02 to be free of materials that depress surface energy below 36 mN/m. Qualification includes ASTM D1998-15 for molded polyethylene tanks, ASTM D543-14 chemical resistance after 30 days at 23 °C, and hydraulic pressure testing at 70 kPa for 1 h. For sodium hypochlorite above 10%, published data on HXM 50100-02 stress-crack resistance is limited and long-term compatibility testing under ASTM D1693-15 condition C with the actual chemical mixture is required.

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